Measurement report reporting method, communication apparatus, and storage medium
By determining the triggering method and reporting mode of measurement reports, terminal devices can distinguish the priority of event-triggered CSI reporting and traditional CSI reporting, resolve the conflict of transmission order, realize the orderly reporting of measurement reports, and improve the efficiency and reliability of the communication system.
Patent Information
- Application Number
- PCT/CN2025/107860
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-07-11
- Filing Date
- 2025-07-10
- Publication Date
- 2026-01-15
AI Technical Summary
When a conflict arises between event-triggered CSI reporting and traditional CSI reporting, the terminal device cannot determine the sending order, leading to priority confusion.
By determining the triggering method and reporting mode of the measurement report, the terminal device can determine the sending order of event-triggered CSI reporting and traditional CSI reporting based on the priority of the measurement report, and use different priority parameters to distinguish and sort them.
This resolves the transmission conflict between event-triggered CSI reports and traditional CSI reports, ensuring the orderly reporting of measurement reports and improving the efficiency and reliability of the communication system.
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Figure CN2025107860_15012026_PF_FP_ABST
Abstract
Description
A measurement report submission method, communication device, and storage medium
[0001] This application claims priority to Chinese Patent Application No. 202410936735.9, filed on July 11, 2024, entitled "A Measurement Report Submission Method, Communication Device and Storage Medium", the entire contents of which are incorporated herein by reference. Technical Field
[0002] This application relates to the field of communication technology, and in particular to a measurement report reporting method, communication device, and storage medium. Background Technology
[0003] Network devices and terminal devices can determine the beams used for uplink and downlink data transmission through beam management. Beam management first performs coarse beam alignment based on the synchronization signal and physical broadcasting channel block (SSB), and then performs fine beam adjustment based on the channel state information reference signal (CSI-RS). The terminal device reports channel state information (CSI) based on the feedback reporting resources configured by the network device.
[0004] During CSI reporting by the terminal device, the terminal device determines the priority value of the CSI report based on the feedback reporting resources. The lower the priority value of the CSI report, the higher the priority. When two CSI reports conflict, the terminal device can determine the order in which the CSI reports are sent based on their priority values.
[0005] In Release 19, event-triggered CSI reporting was introduced. Terminal devices cannot determine the priority between event-triggered CSI reporting and beam-managed conventional CSI reporting. This results in the terminal device being unable to determine the transmission order of event-triggered CSI reports and beam-managed conventional CSI reports when conflicts arise between them. Summary of the Invention
[0006] This application provides a measurement report reporting method, communication device, and storage medium, which can determine the priority of CSI reporting triggered by events based on the triggering method of the measurement report. This allows the terminal device to determine the transmission order between event-triggered CSI reports and traditional CSI reports based on beam management, thus solving the problem of conflict between event reporting and traditional reporting.
[0007] The first aspect of this application provides a measurement report reporting method. Optionally, the executing entity of this method can be a terminal device, a component or device applied to the terminal device (e.g., a processor, chip, or chip system), or a logic module or software capable of implementing all or part of the terminal device's functions. Taking a terminal device as an example, in this method, the terminal device measures a reference signal from a network device and obtains a measurement report. The measurement report is triggered by either event-triggered reporting or non-event-triggered reporting. The terminal device determines the reporting priority of the report based on the triggering method. The terminal device reports the measurement report according to the reporting priority.
[0008] In this embodiment, the terminal device can determine the priority of CSI reporting triggered by the event based on the triggering method of the measurement report. This allows the terminal device to determine the transmission order between the CSI report triggered by the event and the traditional CSI report based on beam management, thus solving the problem of conflict between event reporting and traditional reporting.
[0009] In one possible implementation, non-event-triggered reporting has a higher priority than event-triggered reporting, or non-event-triggered reporting has a lower priority than event-triggered reporting.
[0010] In one possible implementation, the terminal device can determine the reporting priority of the measurement report based on the triggering method of the measurement report and the reporting mode of the event-triggered reporting. The reporting mode of the event-triggered reporting includes at least one of event-triggered reporting based on a first mode and event-triggered reporting based on a second mode, wherein:
[0011] Event-triggered reporting based on the first mode has a higher priority than non-event-triggered reporting, and non-event-triggered reporting has a higher priority than event-triggered reporting based on the second mode.
[0012] Alternatively, event-triggered reporting based on the first mode has a higher priority than event-triggered reporting based on the second mode, and event-triggered reporting based on the second mode has a higher priority than non-event-triggered reporting.
[0013] Alternatively, non-event-triggered reporting has a higher priority than event-triggered reporting based on the first mode, and event-triggered reporting based on the first mode has a higher priority than event-triggered reporting based on the second mode.
[0014] Alternatively, event-triggered reporting based on the second mode has a higher priority than non-event-triggered reporting, and non-event-triggered reporting has a higher priority than event-triggered reporting based on the first mode.
[0015] Alternatively, event-triggered reporting based on the second mode has a higher priority than event-triggered reporting based on the first mode, and event-triggered reporting based on the first mode has a higher priority than non-event-triggered reporting.
[0016] Alternatively, non-event-triggered reporting has a higher priority than event-triggered reporting based on the second mode, and event-triggered reporting based on the second mode has a higher priority than event-triggered reporting based on the first mode.
[0017] In one possible implementation, the terminal device can determine the reporting priority of the measurement report based on the triggering method of the measurement report, the reporting mode of event-triggered reporting, and the reporting mode of non-event-triggered reporting. The reporting mode of event-triggered reporting includes at least one of event-triggered reporting based on a first mode and event-triggered reporting based on a second mode. The reporting mode of non-event-triggered reporting includes reporting aperiodic channel state information (CSI) via the physical uplink shared channel (PUSCH), semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via the physical uplink control channel (PUCCH), and periodic CSI reporting via PUCCH. The triggering method of the measurement report includes event-triggered reporting based on the first mode, event-triggered reporting based on the second mode, aperiodic CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUCCH, or periodic CSI reporting via PUCCH, wherein:
[0018] The priority of event-triggered reporting based on the first mode is higher than the priority of non-periodic CSI reporting via PUSCH. The priority of non-periodic CSI reporting via PUSCH is higher than the priority of event-triggered reporting based on the second mode. The priority of event-triggered reporting based on the second mode is higher than semi-persistent CSI reporting via PUSCH. The priority of semi-persistent CSI reporting via PUSCH is higher than semi-persistent CSI reporting via PUCCH. The priority of semi-persistent CSI reporting via PUCCH is higher than periodic CSI reporting via PUCCH.
[0019] Alternatively, event-triggered reporting based on the first mode has a higher priority than non-periodic CSI reporting via PUSCH, non-periodic CSI reporting via PUSCH has a higher priority than semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH has a higher priority than semi-persistent CSI reporting via PUCCH, and event-triggered reporting based on the second mode via PUCCH has a higher priority than periodic CSI reporting via PUCCH.
[0020] In one possible implementation, the terminal device can determine a first priority parameter based on at least one of the following: the triggering method of the measurement report, the reporting mode of event-triggered reporting, the reporting mode of non-event-triggered reporting, and the reporting content of the measurement report. The reporting mode of event-triggered reporting includes at least one of event-triggered reporting based on the first mode and event-triggered reporting based on the second mode. The reporting mode of non-event-triggered reporting includes aperiodic CSI reporting via the Physical Uplink Shared Channel (PUSCH), semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via the Physical Uplink Control Channel (PUCCH), and periodic CSI reporting via PUCCH. The first priority parameter is used to determine a first priority value, and the first priority value is used to determine the reporting priority of the measurement report.
[0021] In one possible implementation, the first priority value is Pri. iCSI (m,y,k,c,s)=8·N cells ·M s ·m+2·N cells ·M s ·y+N cells ·M s ·k+M s ·c+s, N cells M is the maximum number of cells served. s The maximum number of measurement reports is configured, y indicates the reporting mode of event-triggered reporting or non-event-triggered reporting, k indicates the content of the measurement report, c is the serving cell index, s is the report configuration identifier ID, and the first priority parameter is m.
[0022] In one possible implementation, if the measurement report is triggered by a non-event-triggered reporting method, then the first priority parameter is determined to be the first value;
[0023] If the measurement report is triggered by an event, then the first priority parameter is set to the second value.
[0024] In one possible implementation, the first value is 0 and the second value is 1; or, the first value is 1 and the second value is 0.
[0025] In one possible implementation, if the measurement report is triggered by an event-triggered report and the event-triggered report mode is event-triggered report based on the first mode, then the first priority parameter is determined to be the first value.
[0026] If the measurement report is triggered by a non-event-triggered reporting method, then the first priority parameter is determined to be the second value;
[0027] If the measurement report is triggered by an event-triggered report and the event-triggered report mode is event-triggered report based on the second mode, then the first priority parameter is determined to be the third value.
[0028] In one possible implementation, the first, second, and third values are integers, and the range of the first, second, and third values is 0, 1, and 2, respectively, and the first, second, and third values are not equal.
[0029] In one possible implementation, the first priority value is Pri. iCSI (y,k,c,s)=2·N cells ·M s ·y+N cells ·M s ·k+M s ·c+s, N cells M is the maximum number of cells served. s The maximum number of measurement reports is configured. y indicates the triggering method of the measurement report, the reporting mode of event-triggered reporting and the reporting mode of non-event-triggered reporting, k indicates the reporting content of the measurement report, c is the serving cell index, s is the report configuration ID, and the first priority parameter includes y and / or k.
[0030] In one possible implementation, the first priority parameter includes y;
[0031] If the measurement report is triggered by an event-triggered report and the event-triggered report mode is event-triggered report based on the first mode, then y is determined to be the first value;
[0032] If the measurement report is triggered by a non-event-triggered reporting method and the non-event-triggered reporting mode is non-periodic CSI reporting via PUSCH, then y is determined to be the second value.
[0033] If the measurement report is triggered by an event-triggered report and the event-triggered report mode is event-triggered report based on the second mode, then y is determined to be the third value;
[0034] If the measurement report is triggered by a non-event-triggered reporting method and the non-event-triggered reporting mode is semi-persistent CSI reporting via PUSCH, then y is determined to be the fourth value.
[0035] If the measurement report is triggered by a non-event-triggered reporting method and the non-event-triggered reporting mode is semi-persistent CSI reporting via PUCCH, then y is determined to be the fifth value.
[0036] If the measurement report is triggered by a non-event-triggered reporting method and the non-event-triggered reporting mode is periodic CSI reporting via PUCCH, then y is determined to be the sixth value.
[0037] In one possible implementation, the first, second, third, fourth, fifth, and sixth values are all integers, and the range of the first, second, third, fourth, fifth, and sixth values is 0, 1, 2, 3, 4, and 5, and the first, second, third, fourth, fifth, and sixth values are not equal.
[0038] In one possible implementation, the first priority parameter includes y;
[0039] If the measurement report is triggered by a non-event-triggered reporting method and the event-triggered reporting mode is non-periodic CSI reporting via PUSCH, then y is determined to be the first value;
[0040] If the measurement report is triggered by an event, then y is determined to be the second value;
[0041] If the measurement report is triggered by a non-event-triggered reporting method and the non-event-triggered reporting mode is semi-persistent CSI reporting via PUSCH, then y is determined to be the third value.
[0042] If the measurement report is triggered by a non-event-triggered reporting method and the non-event-triggered reporting mode is semi-persistent CSI reporting via PUCCH, then y is determined to be the fourth value.
[0043] If the measurement report is triggered by a non-event-triggered report and the non-event-triggered report mode is periodic CSI reporting via PUCCH, then y is determined to be the fifth value.
[0044] In one possible implementation, the first, second, third, fourth, and fifth values are all integers, and the range of the first, second, third, fourth, and fifth values is 0, 1, 2, 3, and 4, and the first, second, third, fourth, and fifth values are not equal.
[0045] In one possible implementation, the first priority parameter includes k;
[0046] If the measurement report includes event information, then k is determined to be the seventh value;
[0047] If the measurement report includes L1-RSRP or L1-SINR but does not include event information, then k is determined to be the eighth value;
[0048] If the measurement report does not include any of the L1-RSRP, L1-SINR, or event information, then k is determined to be the ninth value.
[0049] In one possible implementation, the smaller the first priority value, the higher the reporting priority of the measurement report;
[0050] Alternatively, the higher the first priority value, the higher the reporting priority of the measurement report.
[0051] In one possible implementation, if the measurement report is triggered by an event-triggered report based on the first mode, the terminal device can send a first uplink signaling message to request the network device to schedule a second uplink signaling message. The terminal device receives a scheduling signaling message from the network device, which instructs the transmission of the second uplink signaling message. The terminal device sends the second uplink signaling message according to a first priority value, and the second uplink signaling message carries the event-triggered measurement report.
[0052] In one possible implementation, if the measurement report is an event-triggered report based on the second mode, the terminal device can send a first uplink signaling message. This first uplink signaling message instructs the network device that the terminal device will send the measurement report via a second uplink signaling message. The terminal device sends the second uplink signaling message according to a first priority value; this second uplink signaling message carries the event-triggered measurement report.
[0053] A second aspect of this application provides a measurement report reporting method. Optionally, the executing entity of this method can be a terminal device, a component or device applied to the terminal device (e.g., a processor, chip, or chip system), or a logic module or software capable of implementing all or part of the terminal device's functions. Taking a terminal device as an example, in this method, the terminal device measures a reference signal from a network device to obtain a measurement report, which is a measurement report associated with a first event. The terminal device determines the reporting priority of the measurement report based on the event information of the first event and / or the reporting mode corresponding to the measurement report. The reporting mode corresponding to the measurement report includes at least one of event-triggered reporting based on a first mode and event-triggered reporting based on a second mode. The terminal device reports the measurement report according to the reporting priority of the measurement report.
[0054] In this embodiment, the terminal device determines the priority between different events, thereby enabling the terminal device to determine the sending order of measurement reports associated with multiple events, thus resolving the reporting conflict problem of measurement reports associated with different events.
[0055] In one possible implementation, the event information of the first event includes the priority of the first event, and the terminal device can determine the reporting priority of the measurement report based on the priority of the first event.
[0056] In one possible implementation, the event information of the first event includes an index of the first event. The terminal device can determine a second priority parameter based on the index of the first event. The second priority parameter is used to determine a second priority value, which is used to indicate the reporting priority of the measurement report.
[0057] In one possible implementation, the second priority value is Pri. iCSI (z,a,c,b)=2·X cells ·Y s ·z+X cells ·Y s ·a+Y s ·c+b,X cells To configure the maximum number of cells or the maximum number of serving cells for event-related reporting, Y s The maximum number of event-related reports is configured, z is the index of the first event, a is used to indicate the reporting mode corresponding to the measurement report, c is the serving cell index, b is the reporting configuration index corresponding to the measurement report, and the second priority parameter is z.
[0058] In one possible implementation, the second priority value is Pri. iCSI (z,a,c,b)=K events ·X cells ·Y s ·z+X cells ·Y s ·a+Y s ·c+b, K events X is the maximum number of events. cells To configure the maximum number of cells or the maximum number of serving cells for event-related reporting, Y s The maximum number of event-related reports is specified, z indicates the reporting mode corresponding to the measurement report, a is the index of the first event, c is the index of the serving cell, b is the reporting configuration index corresponding to the measurement report, and a is the second priority parameter.
[0059] In one possible implementation, the terminal device can determine a second priority parameter based on the reporting mode corresponding to the measurement report. The second priority parameter is used to determine a second priority value, which in turn indicates the reporting priority of the measurement report.
[0060] In one possible implementation, the second priority value is Pri. iCSI (a,c,b)=X cells ·Y s ·a+Y s ·c+b,X cells To configure the maximum number of cells or the maximum number of serving cells for event-related reporting, Y s The maximum number of event-related reports is configured, 'a' indicates the reporting mode corresponding to the measurement report, 'c' is the serving cell index, 'b' is the index of the event reporting configuration corresponding to the measurement report, and 'a' is the second priority parameter.
[0061] In one possible implementation, the terminal device determines a second priority parameter based on the reporting mode and the reporting type corresponding to the measurement report. The reporting type corresponding to the measurement report includes at least one of an event-triggered reporting type based on the first mode and an event-triggered reporting type based on the second mode. The event-triggered reporting type based on the first mode includes at least one of an event-triggered reporting via PUSCH based on the first mode and an event-triggered reporting via PUCCH based on the first mode. The event-triggered reporting type based on the second mode includes at least one of an event-triggered reporting via PUSCH based on the second mode and an event-triggered reporting via PUCCH based on the second mode.
[0062] The second priority value is Pri. iCSI (z,a,c,b)=2·X cells ·Y s ·z+X cells ·Y s ·a+Y s ·c+b,X cells To configure the maximum number of cells or the maximum number of serving cells for event-related reporting, Y s The maximum number of event-related reports is configured, z indicates the reporting mode corresponding to the measurement report, a indicates the reporting type corresponding to the measurement report, c is the cell index or serving cell index for configuring event-related reporting, b is the reporting configuration index corresponding to the measurement report, and the second priority parameter is z and / or a.
[0063] A third aspect of this application provides a communication device. Optionally, the communication device may be a terminal device, a component or apparatus applied to the terminal device (e.g., a processor, chip, or chip system), or a logic module or software capable of implementing all or part of the functions of the terminal device. The communication device includes:
[0064] The processing module is used to measure reference signals from network devices and obtain measurement reports. The measurement reports are triggered by either event-triggered reporting or non-event-triggered reporting.
[0065] The processing module is also used to determine the reporting priority of the measurement report based on the triggering method of the measurement report;
[0066] The transceiver module is used to report measurement reports according to their reporting priority.
[0067] In one possible implementation, non-event-triggered reporting has a higher priority than event-triggered reporting, or non-event-triggered reporting has a lower priority than event-triggered reporting.
[0068] In another possible implementation, the processing module is specifically used for:
[0069] The reporting priority of the measurement report is determined based on the triggering method of the measurement report and the reporting mode of the event-triggered reporting. The reporting mode of the event-triggered reporting includes at least one of the event-triggered reporting based on the first mode and the event-triggered reporting based on the second mode, wherein:
[0070] Event-triggered reporting based on the first mode has a higher priority than non-event-triggered reporting, and non-event-triggered reporting has a higher priority than event-triggered reporting based on the second mode.
[0071] Alternatively, event-triggered reporting based on the first mode has a higher priority than event-triggered reporting based on the second mode, and event-triggered reporting based on the second mode has a higher priority than non-event-triggered reporting.
[0072] Alternatively, non-event-triggered reporting has a higher priority than event-triggered reporting based on the first mode, and event-triggered reporting based on the first mode has a higher priority than event-triggered reporting based on the second mode.
[0073] Alternatively, event-triggered reporting based on the second mode has a higher priority than non-event-triggered reporting, and non-event-triggered reporting has a higher priority than event-triggered reporting based on the first mode.
[0074] Alternatively, event-triggered reporting based on the second mode has a higher priority than event-triggered reporting based on the first mode, and event-triggered reporting based on the first mode has a higher priority than non-event-triggered reporting.
[0075] Alternatively, non-event-triggered reporting has a higher priority than event-triggered reporting based on the second mode, and event-triggered reporting based on the second mode has a higher priority than event-triggered reporting based on the first mode.
[0076] In another possible implementation, the processing module is specifically used for:
[0077] The reporting priority of measurement reports is determined based on the triggering method, event-triggered reporting mode, and non-event-triggered reporting mode. Event-triggered reporting modes include at least one of event-triggered reporting based on a first mode and event-triggered reporting based on a second mode. Non-event-triggered reporting modes include aperiodic CSI reporting via the Physical Uplink Shared Channel (PUSCH), semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via the Physical Uplink Control Channel (PUCCH), and periodic CSI reporting via PUCCH. The triggering method of measurement reports includes event-triggered reporting based on the first mode, event-triggered reporting based on the second mode, aperiodic CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUCCH, or periodic CSI reporting via PUCCH, wherein:
[0078] The priority of event-triggered reporting based on the first mode is higher than the priority of non-periodic CSI reporting via PUSCH. The priority of non-periodic CSI reporting via PUSCH is higher than the priority of event-triggered reporting based on the second mode. The priority of event-triggered reporting based on the second mode is higher than semi-persistent CSI reporting via PUSCH. The priority of semi-persistent CSI reporting via PUSCH is higher than semi-persistent CSI reporting via PUCCH. The priority of semi-persistent CSI reporting via PUCCH is higher than periodic CSI reporting via PUCCH.
[0079] Alternatively, event-triggered reporting based on the first mode has a higher priority than non-periodic CSI reporting via PUSCH, non-periodic CSI reporting via PUSCH has a higher priority than semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH has a higher priority than semi-persistent CSI reporting via PUCCH, and event-triggered reporting based on the second mode via PUCCH has a higher priority than periodic CSI reporting via PUCCH.
[0080] In another possible implementation, the processing module is specifically used for:
[0081] The first priority parameter is determined by at least one of the following: the triggering method of the measurement report, the reporting mode of event-triggered reporting, the reporting mode of non-event-triggered reporting, and the reporting content of the measurement report. The reporting mode of event-triggered reporting includes at least one of event-triggered reporting based on the first mode and event-triggered reporting based on the second mode. The reporting mode of non-event-triggered reporting includes aperiodic CSI reporting via the Physical Uplink Shared Channel (PUSCH), semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via the Physical Uplink Control Channel (PUCCH), and periodic CSI reporting via PUCCH. The first priority parameter is used to determine the first priority value, and the first priority value is used to determine the reporting priority of the measurement report.
[0082] In another possible implementation, the first priority value is Pri. iCSI (m,y,k,c,s)=8·N cells ·M s ·m+2·N cells ·M s ·y+N cells ·M s ·k+M s ·c+s, N cells M is the maximum number of cells served. s The maximum number of measurement reports is configured, y indicates the reporting mode of event-triggered reporting or non-event-triggered reporting, k indicates the content of the measurement report, c is the serving cell index, s is the ID of the report configuration identifier, and the first priority parameter is m.
[0083] In another possible implementation, the processing module is specifically used for:
[0084] If the measurement report is triggered by a non-event-triggered reporting method, then the first priority parameter is determined to be the first value;
[0085] If the measurement report is triggered by an event, then the first priority parameter is set to the second value.
[0086] In another possible implementation, the first value is 0 and the second value is 1; or, the first value is 1 and the second value is 0.
[0087] In another possible implementation, the processing module is specifically used for:
[0088] If the measurement report is triggered by an event-triggered report and the event-triggered report mode is event-triggered report based on the first mode, then the first priority parameter is determined to be the first value.
[0089] If the measurement report is triggered by a non-event-triggered reporting method, then the first priority parameter is determined to be the second value;
[0090] If the measurement report is triggered by an event-triggered report and the event-triggered report mode is event-triggered report based on the second mode, then the first priority parameter is determined to be the third value.
[0091] In another possible implementation, the first, second, and third values are integers, and the range of the first, second, and third values is 0, 1, and 2, respectively, and the first, second, and third values are not equal.
[0092] In another possible implementation, the first priority value is Pri. iCSI (y,k,c,s)=2·N cells ·M s ·y+N cells ·M s ·k+M s ·c+s, N cells M is the maximum number of cells served. s The maximum number of measurement reports is configured. y indicates the triggering method of the measurement report, the reporting mode of event-triggered reporting and the reporting mode of non-event-triggered reporting, k indicates the reporting content of the measurement report, c is the serving cell index, s is the report configuration ID, and the first priority parameter includes y and / or k.
[0093] In another possible implementation, the first priority parameter includes y, and the processing module is specifically used for:
[0094] If the measurement report is triggered by an event-triggered report and the event-triggered report mode is event-triggered report based on the first mode, then y is determined to be the first value;
[0095] If the measurement report is triggered by a non-event-triggered reporting method and the non-event-triggered reporting mode is non-periodic CSI reporting via PUSCH, then y is determined to be the second value.
[0096] If the measurement report is triggered by an event-triggered report and the event-triggered report mode is event-triggered report based on the second mode, then y is determined to be the third value;
[0097] If the measurement report is triggered by a non-event-triggered reporting method and the non-event-triggered reporting mode is semi-persistent CSI reporting via PUSCH, then y is determined to be the fourth value.
[0098] If the measurement report is triggered by a non-event-triggered reporting method and the non-event-triggered reporting mode is semi-persistent CSI reporting via PUCCH, then y is determined to be the fifth value.
[0099] If the measurement report is triggered by a non-event-triggered reporting method and the non-event-triggered reporting mode is periodic CSI reporting via PUCCH, then y is determined to be the sixth value.
[0100] In another possible implementation, the first, second, third, fourth, fifth, and sixth values are all integers, and the range of the first, second, third, fourth, fifth, and sixth values is 0, 1, 2, 3, 4, and 5, and the first, second, third, fourth, fifth, and sixth values are not equal.
[0101] In another possible implementation, the first priority parameter includes y, and the processing module is specifically used for:
[0102] If the measurement report is triggered by a non-event-triggered reporting method and the event-triggered reporting mode is non-periodic CSI reporting via PUSCH, then y is determined to be the first value;
[0103] If the measurement report is triggered by an event, then y is determined to be the second value;
[0104] If the measurement report is triggered by a non-event-triggered reporting method and the non-event-triggered reporting mode is semi-persistent CSI reporting via PUSCH, then y is determined to be the third value.
[0105] If the measurement report is triggered by a non-event-triggered reporting method and the non-event-triggered reporting mode is semi-persistent CSI reporting via PUCCH, then y is determined to be the fourth value.
[0106] If the measurement report is triggered by a non-event-triggered report and the non-event-triggered report mode is periodic CSI reporting via PUCCH, then y is determined to be the fifth value.
[0107] In another possible implementation, the first, second, third, fourth, and fifth values are all integers, and the range of the first, second, third, fourth, and fifth values is 0, 1, 2, 3, and 4, and the first, second, third, fourth, and fifth values are not equal.
[0108] In another possible implementation, the first priority parameter includes k, and the processing module is specifically used for:
[0109] If the measurement report includes event information, then k is determined to be the seventh value;
[0110] If the measurement report includes L1-RSRP or L1-SINR but does not include event information, then k is determined to be the eighth value;
[0111] If the measurement report does not include any of the L1-RSRP, L1-SINR, or event information, then k is determined to be the ninth value.
[0112] In another possible implementation, the smaller the first priority value, the higher the reporting priority of the measurement report; or, the higher the first priority value, the higher the reporting priority of the measurement report.
[0113] A fourth aspect of this application provides a communication device. Optionally, the communication device may be a terminal device, a component or apparatus applied to the terminal device (e.g., a processor, chip, or chip system), or a logic module or software capable of implementing all or part of the functions of the terminal device. The communication device includes:
[0114] The processing module is used to measure reference signals from network devices and obtain measurement reports, which are measurement reports associated with the first event.
[0115] The processing module is also configured to determine the reporting priority of the measurement report based on the event information of the first event and / or the reporting mode corresponding to the measurement report. The reporting mode corresponding to the measurement report includes at least one of event-triggered reporting based on the first mode and event-triggered reporting based on the second mode.
[0116] The transceiver module is used to report measurement reports according to their reporting priority.
[0117] In one possible implementation, the event information of the first event includes the priority of the first event, and the processing module is specifically used for:
[0118] The reporting priority of measurement reports is determined based on the priority of the first event.
[0119] In another possible implementation, the event information of the first event includes the index of the first event, and the processing module is specifically used for:
[0120] The second priority parameter is determined based on the index of the first event. The second priority parameter is used to determine the second priority value, which is used to indicate the reporting priority of the measurement report.
[0121] In another possible implementation, the second priority value is Pri. iCSI (z,a,c,b)=2·X cells ·Y s ·z+X cells ·Y s ·a+Y s ·c+b,X cells To configure the maximum number of cells or the maximum number of serving cells for event-related reporting, Y sThe maximum number of event-related reports is configured, z is the index of the first event, a is used to indicate the reporting mode corresponding to the measurement report, c is the serving cell index, b is the reporting configuration index corresponding to the measurement report, and the second priority parameter is z.
[0122] In another possible implementation, the second priority value is Pri. iCSI (z,a,c,b)=K events ·X cells ·Y s ·z+X cells ·Y s ·a+Y s ·c+b, K events X is the maximum number of events. cells To configure the maximum number of cells or the maximum number of serving cells for event-related reporting, Y s The maximum number of event-related reports is specified, z indicates the reporting mode corresponding to the measurement report, a is the index of the first event, c is the index of the serving cell, b is the reporting configuration index corresponding to the measurement report, and a is the second priority parameter.
[0123] In another possible implementation, the processing module is specifically used for:
[0124] The second priority parameter is determined based on the reporting mode corresponding to the measurement report. The second priority parameter is used to determine the second priority value, which in turn indicates the reporting priority of the measurement report.
[0125] In another possible implementation, the second priority value is Pri. iCSI (a,c,b)=X cells ·Y s ·a+Y s ·c+b,X cells To configure the maximum number of cells or the maximum number of serving cells for event-related reporting, Y s The maximum number of event-related reports is configured, 'a' indicates the reporting mode corresponding to the measurement report, 'c' is the serving cell index, 'b' is the index of the event reporting configuration corresponding to the measurement report, and the second priority parameter is 'b'.
[0126] In another possible implementation, the processing module is specifically used to determine the second priority parameter based on the reporting mode and the reporting type corresponding to the measurement report. The reporting type corresponding to the measurement report includes at least one of the event-triggered reporting type based on the first mode and the event-triggered reporting type based on the second mode. The event-triggered reporting type based on the first mode includes at least one of the event-triggered reporting via PUSCH based on the first mode and the event-triggered reporting via PUCCH based on the first mode. The event-triggered reporting type based on the second mode includes at least one of the event-triggered reporting via PUSCH based on the second mode and the event-triggered reporting via PUCCH based on the second mode.
[0127] The second priority value is Pri. iCSI (z,a,c,b)=2·X cells ·Y s ·z+X cells ·Y s ·a+Y s ·c+b,X cells To configure the maximum number of cells or the maximum number of serving cells for event-related reporting, Y s The maximum number of event-related reports is configured, z indicates the reporting mode corresponding to the measurement report, a indicates the reporting type corresponding to the measurement report, c is the cell index or serving cell index for configuring event-related reporting, b is the reporting configuration index corresponding to the measurement report, and the second priority parameter is z and / or a.
[0128] A fifth aspect of this application provides a communication device, which may be a first device or a second device, or a component applied to the first device or the second device (e.g., a processor, a chip, or a chip system), or a logic module or software (e.g., a central unit (CU), a distributed unit (DU), or a radio unit (RU)) capable of implementing all or part of the functions of the first device or the second device. The communication device includes:
[0129] A processor for executing a program that causes the communication device to perform the method as described in the first or second aspect and any possible implementation thereof.
[0130] Optionally, the communication device further includes a memory, and the processor is coupled to the memory; the memory is used to store programs.
[0131] The sixth aspect of this application provides a chip or chip system including at least one processor and a communication interface, the communication interface and at least one processor being interconnected via a line, the at least one processor being used to run computer programs or instructions to perform the information transmission method described in any of the possible implementations of the first or second aspect.
[0132] The communication interface in the chip can be an input / output interface, pins, or circuits.
[0133] In one possible implementation, the chip or chip system described above in this application further includes at least one memory storing instructions. The memory can be an internal storage unit of the chip, such as a register or cache, or it can be a storage unit of the chip itself, such as a read-only memory or random access memory.
[0134] A seventh aspect of this application provides a computer-readable storage medium including instructions that, when executed on a computer, cause the computer to perform the method described in the first aspect above, or cause the computer to perform the method described in the second aspect above.
[0135] The eighth aspect of this application provides a computer program product containing instructions that, when run on a computer, cause the computer to perform the method described in the first aspect above, or cause the computer to perform the method described in the second aspect above. Attached Figure Description
[0136] Figure 1 is a network structure diagram in an embodiment of this application;
[0137] Figure 2 is a schematic diagram of a scenario where coarse beam alignment is performed between a base station and a terminal device in an embodiment of this application.
[0138] Figure 3 is a schematic diagram of a process for coarse beam alignment between a base station and a terminal device in an embodiment of this application.
[0139] Figure 4 is a schematic diagram of a scenario for base station beam fine-tuning in an embodiment of this application;
[0140] Figure 5 is a schematic diagram of a base station beam fine-tuning process in an embodiment of this application;
[0141] Figure 6 is a schematic diagram of a scenario for beam fine-tuning of user equipment in an embodiment of this application;
[0142] Figure 7 is a schematic diagram of an embodiment of the measurement report reporting method in this application;
[0143] Figure 8 is a schematic diagram of an embodiment of event-triggered reporting based on the first mode in this application;
[0144] Figure 9 is a schematic diagram of an embodiment of event-triggered reporting based on the second mode in this application;
[0145] Figure 10 is a schematic diagram of another embodiment of the measurement report reporting method in this application;
[0146] Figure 11 is a schematic diagram of an embodiment of the communication device in this application;
[0147] Figure 12 is a schematic diagram of another embodiment of the communication device in this application;
[0148] Figure 13 is a schematic diagram of another embodiment of the communication device in this application. Detailed Implementation
[0149] This application provides a measurement report reporting method, communication device, and storage medium, which can determine the priority of CSI reporting triggered by events based on the reporting method of the measurement report. This allows the terminal device to determine the transmission order between event-triggered CSI reports and traditional CSI reports based on beam management, thus solving the problem of resource conflicts between event reporting and traditional reporting.
[0150] The embodiments of this application will now be described with reference to the accompanying drawings. Those skilled in the art will recognize that, with technological advancements and the emergence of new scenarios, the technical solutions provided in the embodiments of this application are equally applicable to similar technical problems.
[0151] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0152] References to "one embodiment" or "some embodiments" as described in this application mean that one or more embodiments of this application include a specific feature, structure, or characteristic described in connection with that embodiment. Therefore, the phrases "in one embodiment," "in some embodiments," "in other embodiments," "in still other embodiments," etc., appearing in different parts of this specification do not necessarily refer to the same embodiment, but rather mean "one or more, but not all, embodiments," unless otherwise specifically emphasized. The terms "comprising," "including," "having," and variations thereof mean "including but not limited to," unless otherwise specifically emphasized.
[0153] In the description of this application, unless otherwise stated, " / " means "or". For example, A / B can mean A or B. "And / or" in this document is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A alone, A and B simultaneously, and B alone. Furthermore, "at least one" means one or more, and "multiple" means two or more. "At least one of the following" or similar expressions refer to any combination of these items, including any combination of single or multiple items. For example, at least one of a, b, or c can represent: a, b, c; a and b; a and c; b and c; or a and b and c. Where a, b, and c can be single or multiple.
[0154] In the description of this application, A's priority is higher than B's priority, which can also be understood as A's priority being greater than B's priority. Similarly, A's priority is lower than B's priority, which can also be understood as A's priority being less than B's priority. Likewise, A's priority is the same as B's priority, which can also be understood as A's priority being equal to B's priority.
[0155] In the description of this application, A greater than B includes the case where A is greater than or equal to B. Similarly, A less than B includes the case where A is less than or equal to B.
[0156] It is understood that in this application, "instruction" can include direct instruction, indirect instruction, explicit instruction, and implicit instruction. When describing a certain instruction information to indicate A, it can be understood that the instruction information carries A, directly indicates A, or indirectly indicates A.
[0157] First, some technical terms involved in the embodiments of this application will be introduced.
[0158] 1) Beam;
[0159] A beam is a communication resource. A beam can be wide, narrow, or other types of beams, and the technology used to form a beam can be beamforming technology or other techniques. Beamforming technology can specifically be digital beamforming technology, analog beamforming technology, and hybrid digital / analog beamforming technology. Different beams can be considered different resources.
[0160] In new radio (NR) protocols, a beam can be referred to as a spatial domain filter, spatial filter, spatial domain parameter, spatial parameter, spatial domain setting, spatial setting, quasi-colocation (QCL) information, QCL assumption, or QCL indication, etc. The beam can be indicated by the transmission configuration indicator (TCI) state parameter or by the spatial relation parameter. Therefore, in this application, the beam can be replaced by spatial domain filter, spatial filter, spatial parameter, spatial parameter, spatial setting, spatial setting, QCL information, QCL assumption, QCL indication, TCI-state (including uplink TCI-state and downlink TCI-state), or spatial relation, etc. These terms are also equivalent to each other. The beam can also be replaced with other beam-related terms, which are not limited herein.
[0161] The beam used to transmit signals can be referred to as a transmission beam (Tx beam), a spatial domain transmission filter, a spatial transmission filter, a spatial domain transmission parameter, a spatial transmission parameter, a spatial domain transmission setting, or a spatial transmission setting. The transmission beam can also be called a downlink beam. In this application, the transmission beam, downlink beam, channel status information reference signal (CSI-RS), TCI-state, downlink / joint transmission configuration number state (DLorjointTCI-state), synchronization signal and PBCH block (SSB), and tracking reference signal (TRS) can be interchanged.
[0162] The beam used to receive signals can be referred to as a reception beam (Rx beam), a spatial domain reception filter, a spatial reception filter, a spatial domain reception parameter, a spatial reception parameter, a spatial domain reception setting, or a spatial reception setting. The uplink transmit beam can be indicated by any of the following: spatial relation, uplink TCI-state, or sounding reference signal (SRS) resource (indicating the transmit beam using that SRS). The receive beam can also be referred to as the uplink beam. In this application, the receive beam, uplink beam, uplink transmission configuration number state (UL TCI-state), DLorjointTCI-state, sounding reference signal (SRS), CSI-RS, SSB, and TRS can be interchanged.
[0163] The transmitting beam can refer to the distribution of signal strength in different directions in space after a signal is transmitted through an antenna, while the receiving beam can refer to the distribution of signal strength in different directions in space of a wireless signal received from an antenna.
[0164] Furthermore, the beam can be a wide beam, a narrow beam, or other types of beam. The beamforming technology can be beamforming technology or other technologies. Specifically, beamforming technology can be digital beamforming technology, analog beamforming technology, hybrid digital beamforming technology, or hybrid analog beamforming technology, etc.
[0165] Beams are generally associated with resources. For example, during beam measurement, network devices measure different beams using different resources. The terminal device provides feedback on the measured resource quality, allowing the network device to determine the quality of the corresponding beam. Similarly, during data transmission, beam information is also indicated through its corresponding resources. For instance, network devices use the Transmission Configuration Indication (TCI) field in downlink control information (DCI) to indicate the physical downlink shared channel (PDSCH) beam information of the terminal device.
[0166] In one possible implementation, multiple beams with the same or similar communication characteristics are considered as a single beam. A beam may include one or more antenna ports for transmitting data channels, control channels, and probe signals, etc. The one or more antenna ports forming a beam can also be considered as a set of antenna ports.
[0167] 2) QCL;
[0168] Quasi-co-location is used to indicate that multiple resources share one or more identical or similar communication characteristics. For multiple resources with quasi-co-location, identical or similar communication configurations can be used. For example, if two antenna ports have quasi-co-location, the large-scale channel characteristics of one port transmitting one symbol can be inferred from the large-scale channel characteristics of the other port transmitting one symbol. Large-scale characteristics can include: delay spread, average delay, Doppler spread, Doppler shift, average gain, receive parameters, terminal equipment receive beam number, transmit / receive channel correlation, receive angle of arrival, spatial correlation of receiver antennas, angel-of-arrival (AoA), average angle of arrival, AoA spread, etc. Specifically, the co-location indicator is used to indicate whether at least two sets of antenna ports have a co-location relationship, including: the co-location indicator indicates whether the channel state information reference signals transmitted by at least two sets of antenna ports originate from the same transmission point, or the co-location indicator indicates whether the channel state information reference signals transmitted by at least two sets of antenna ports originate from the same beamgroup.
[0169] 3) TCI;
[0170] TCI, also known as TCI state, is crucial for correct transmission between network devices and terminal devices in both uplink and downlink. In downlink transmission, the network device indicates its downlink transmit beam to the terminal device. The terminal device can then determine the appropriate receive beam to receive information from the network device. Similarly, in uplink transmission, the network device indicates which uplink transmit beam the terminal device uses to transmit information. The network device can determine the uplink transmit beam with better signal quality for the terminal device. Both uplink and downlink transmit beams can be indicated by their respective TCI states. Specifically, the downlink transmit beam can be indicated by the downlink TCI state, and the uplink transmit beam by the uplink TCI state.
[0171] In the 3GPP protocol, network devices can indicate the TCI status to terminal devices through the TCI field in the downlink control information (DCI). The TCI field is 3 bits in size and can be represented by 8 different codepoints. Each codepoint value in the TCI field can be associated with an index of a TCI status. This index uniquely identifies a TCI status, which can be either a downlink TCI status or an uplink TCI status. Each codepoint value in the TCI field can also be associated with two TCI status indices, which uniquely identify two TCI statuses, including one downlink TCI status and one uplink TCI status.
[0172] The downlink TCI status includes several parameters that terminal devices can use to determine information related to the downlink transmit beam, thereby determining the appropriate receive beam to receive information from the network device. The TCI status is configured by the network device for each terminal device, and the structure of the downlink TCI status is shown below:
[0173] Each TCI state includes its own index (tci-StateId) and two quasi-colocation information (QCL-info) entries. Each QCL-info entry includes a reference signal resource, indicating that the downlink transmission for that TCI state should use the same downlink timing, frequency offset, or receive beam as that reference signal resource. This is determined by the type of the QCL-info entry. The QCL type can have four values: {typeA, typeB, typeC, typeD}. When the QCL type is typeA, typeB, or typeC, the downlink transmission should use the same downlink timing and frequency offset as that reference signal resource. When the QCL type is typeD, the downlink transmission should use the same receive beam as that reference signal resource. Of the two QCL-info entries mentioned above, one is typeD, and the other is typeA, typeB, or typeC. The terminal device can determine which receive beam to use to receive the corresponding downlink transmission by using the typeD QCL-info entry. The specific execution steps are as follows:
[0174] Network devices indicate a specific downlink TCI state to terminal devices via DCI. The terminal device identifies a reference signal resource in the QCL information for this downlink TCI state (type D). The terminal device then uses the receive beam of this reference signal resource as the receive beam for downlink transmission. It should be noted that the receive beam of this reference signal resource is obtained by the terminal device in advance through a beam management process. Through this beam management process, the terminal device can determine which receive beam is optimal for receiving the reference signal resource and select that beam as the receive beam for that reference signal resource.
[0175] The uplink TCI state includes a reference signal resource, which indicates that uplink transmissions using this TCI state should employ the same uplink transmit beam as the reference signal resource. The terminal device can determine which transmit beam to use for uplink transmission by using this reference signal resource. In the uplink TCI state, the reference signal resource is not included in the QCL-info and does not distinguish between QCL types, because it does not need to reference uplink timing and frequency offset information; only the uplink transmit beam needs to be referenced. The structure of the uplink TCI state is as follows:
[0176] The specific execution steps are as follows:
[0177] Network devices indicate a specific uplink TCI state to terminal devices via DCI. The terminal device then determines the reference signal resource within that uplink TCI state. The terminal device uses the transmission beam of this reference signal resource as its uplink transmission beam. It should be noted that the transmission beam of this reference signal resource is obtained by the terminal device in advance through a beam management process.
[0178] The following describes the configuration, activation, and indication of TCI status.
[0179] TCI-state configuration: Network devices configure multiple TCI-states to terminal devices via radio resource control (RRC) signaling. Each of these TCI-states includes a QCL-Info of type type D. Network devices can also configure TCI-states that do not include a QCL-Info of type type D; however, these TCI-states are not used for data transmission beam indication and will not be discussed further here.
[0180] TCI-state activation: After configuring multiple TCI-states on a network device, eight of them need to be activated via the medium access control (MAC) control element (CE). These eight TCI-states correspond one-to-one with the eight values of the TCI field in the DCI. That is, which eight TCI-states correspond to the eight values of the TCI field in the DCI is determined by the MAC CE.
[0181] TCI Status Indication: Network devices indicate a specific TCI-state through the TCI field in the DCI. For example, if the TCI field value in the DCI sent by the network device to the terminal device is 000, it indicates that the data transmission beam uses the TCI state corresponding to 000. The reference signal contained in the type D QCL-Info within this TCI state is the channel state information-reference signal (CSI-RS) with index #1, indicating that the beam used for data transmission is the same as the receiving beam corresponding to CSI-RS with index #1. The receiving beam corresponding to CSI-RS with index #1 can be determined through beam measurement procedures and is known to the terminal device. Therefore, by using the specific value of the TCI field, the terminal device can determine the beam corresponding to the data transmission beam and thus use the appropriate beam to send or receive data.
[0182] It should be noted that the three description methods TCI-state, TCI-state and TCI state in this article can be used interchangeably.
[0183] In this application, the reference signal of type QCLtypeD in the TCI state is the reference signal resource corresponding to the reference signal resource in the QCL information of typeD in the TCI state.
[0184] Please refer to Figure 1. The network architecture on which the measurement report reporting method in this embodiment is based is briefly described below:
[0185] Figure 1 is a possible, non-limiting system schematic diagram. As shown in Figure 1, the communication system 10 includes a radio access network (RAN) 100, a core network (CN) 200, and the Internet. RAN 100 includes at least one RAN node (110a and 110b in Figure 1, collectively referred to as 110) and at least one terminal (120a-120j in Figure 1, collectively referred to as 120). RAN 100 may also include other RAN nodes, such as wireless relay equipment and / or wireless backhaul equipment (not shown in Figure 1). Terminal 120 is wirelessly connected to RAN node 110. RAN node 110 is wirelessly or wired connected to core network 200. The core network equipment in core network 200 and RAN node 110 in RAN 100 can be different physical devices, or they can be the same physical device integrating core network logical functions and radio access network logical functions.
[0186] RAN 100 can be a cellular system related to the 3rd Generation Partnership Project (3GPP), such as 4G, 5G mobile communication systems, or future mobile communication systems. RAN 100 can also be an open-radio access network (ORAN), a cloud-radio access network (CRAN), or a wireless fidelity (Wi-Fi) system. RAN 100 can also be a communication system that integrates two or more of the above systems.
[0187] RAN node 110, sometimes also referred to as access network equipment, RAN entity, or access node, constitutes part of the communication system and is used to help terminals achieve wireless access. Multiple RAN nodes 110 in communication system 10 can be of the same type or different types. In some scenarios, the roles of RAN node 110 and terminal 120 are relative. For example, network element 120i in Figure 1 can be a helicopter or drone, which can be configured as a mobile base station. For terminals 120j accessing RAN 100 through network element 120i, network element 120i is a base station; but for base station 110a, network element 120i is a terminal. RAN node 110 and terminal 120 are sometimes both referred to as communication devices. For example, network elements 110a and 110b in Figure 1 can be understood as communication devices with base station functions, and network elements 120a-120j can be understood as communication devices with terminal functions.
[0188] In one possible scenario, the RAN node can be a base station, an evolved NodeB (eNodeB), an access point (AP), a transmission reception point (TRP), a next-generation NodeB (gNB), a next-generation base station in a future mobile communication system, a base station in a future mobile communication system, or an access node in a Wi-Fi system. The RAN node can be a macro base station (as shown in Figure 1, 110a), a micro base station or indoor station (as shown in Figure 1, 110b), a relay node or donor node, or a radio controller in a CRAN scenario. Optionally, the RAN node can also be a server, wearable device, vehicle, or in-vehicle equipment. For example, the access network equipment in vehicle-to-everything (V2X) technology can be a roadside unit (RSU). All or part of the functions of the RAN node in this application can also be implemented through software functions running on hardware, or through virtualization functions instantiated on a platform (e.g., a cloud platform). The RAN node can also be equipped with communication modules, circuits, or chips that perform corresponding communication functions. The RAN node can also be configured with program instructions for performing corresponding communication functions, as well as corresponding program instructions. The RAN node in this application can also be a logical node, logical module, or software capable of implementing all or part of the RAN node's functions.
[0189] In another possible scenario, multiple RAN nodes collaborate to assist the terminal in achieving wireless access, with each RAN node performing a portion of the base station's functions. For example, RAN nodes can be central units (CUs), distributed units (DUs), CU-CPs, CU-UPs, or radio units (RUs). CUs and DUs can be configured separately or included in the same network element, such as a baseband unit (BBU). RUs can be included in radio equipment or radio units, such as remote radio units (RRUs), active antenna units (AAUs), or remote radio heads (RRHs).
[0190] In different systems, CU (or CU-CP and CU-UP), DU, or RU may have different names, but those skilled in the art will understand their meaning. For example, in an ORAN system, CU can also be called O-CU (open CU), DU can also be called O-DU, CU-CP can also be called O-CU-CP, CU-UP can also be called O-CU-UP, and RU can also be called O-RU. For ease of description, this application uses CU, CU-CP, CU-UP, DU, and RU as examples. Any of the units among CU (or CU-CP, CU-UP), DU, and RU in this application can be implemented through software modules, hardware modules, or a combination of software and hardware modules.
[0191] A terminal can be a device or module that accesses the aforementioned communication system and has corresponding communication functions. A terminal can also be called a terminal device, user equipment (UE), mobile station, mobile terminal, etc. Terminals can be widely used in various scenarios, such as device-to-device (D2D), vehicle-to-everything (V2X) communication, machine-type communication (MTC), Internet of Things (IoT), virtual reality, augmented reality, industrial control, autonomous driving, telemedicine, smart grids, smart homes, smart offices, smart wearables, intelligent transportation, smart cities, etc. Terminals can be mobile phones, tablets, computers with wireless transceiver capabilities, wearable devices, vehicles, drones, helicopters, airplanes, ships, robots, robotic arms, smart home devices, transportation vehicles with wireless communication capabilities, communication modules, etc. The embodiments of this application do not limit the device form of the terminal. Terminals typically contain communication modules, circuits, or chips that perform corresponding communication functions. Terminals can also be configured with program instructions for performing corresponding communication functions.
[0192] Furthermore, the embodiments of this application can also be applied to other future communication technologies. The network architecture and service scenarios described in this application are for the purpose of more clearly illustrating the technical solutions of this application, and do not constitute a limitation on the technical solutions provided in this application. As those skilled in the art will understand, with the evolution of network architecture and the emergence of new service scenarios, the technical solutions provided in this application are also applicable to similar technical problems.
[0193] Currently, terminal devices and network devices select appropriate beams through a beam management process and communicate using those beams. The beam management process includes: first, coarse beam alignment based on the SSB (Solar Signal Block), and then fine beam adjustment based on the CSI-RS (Cyber-Independent Signaling System). The beam management process can be divided into three stages, which are described below.
[0194] Phase 1: Coarse beam alignment between network devices and terminal devices.
[0195] The base station performs beam scanning. Specifically, as shown in Figure 2, the base station transmits SSBs to the terminal device at different times using beams from different directions. Simultaneously, the terminal device scans and receives the receiving beams; that is, the terminal device also receives SSBs from the network device at different times using beams from different directions. Based on the received signal strength, the terminal device determines the optimal beam for base station signal transmission and the optimal beam for terminal device signal reception. The beam used for base station signal transmission is simply called the base station beam, and the beam used for terminal device signal reception is simply called the terminal beam.
[0196] Specifically, the base station beam includes Terminal beams include As shown in Figure 3, the base station sends SSB resource configuration information and reports resource configuration information to the terminal device. The base station beam includes beams B0 to B5, i.e., M=5. The terminal beam includes beams U0 to U3, i.e., N=4. The base station uses beam B0 to send SSBs to the terminal device through the corresponding SSB resources, uses beam B1 to send SSBs to the terminal device, and so on, using beam B5 to send SSBs to the terminal device. The terminal device measures the SSBs sent by the base station through beams B0 to B5 respectively through beams U0 to U3, and obtains the measurement results. The terminal device can determine the base station beam with better or better signal quality based on the measurement results. The terminal device feeds back the base station beam with better or better signal quality to the network device. It should be noted that in Phase 1, both the base station beam and the terminal beam can be understood as wide beams.
[0197] Phase Two: Base Station Beam Fine-Tuning.
[0198] The base station determines multiple first candidate beams based on the base station beam with the best or better signal quality determined in Phase 1. Each first candidate beam is a narrow beam. Specifically, as shown in Figure 4, these multiple first candidate beams include beams S0 to S2. For example, beam B3 is determined in Phase 1 above. This beam B3 is a wide beam, and the base station determines beams S0 to S2 through beam B3. The terminal device determines the better terminal beam as beam U1 based on the above Phase 1. As shown in Figure 5, the base station sends CSI-RS configuration information to the terminal device. The base station uses beam S0 to send CSI-RS to the terminal device through the corresponding CSI-RS resources, uses beam S1 to send CSI-RS to the terminal device through the corresponding CSI-RS resources, and uses beam S2 to send CSI-RS to the terminal device through the corresponding CSI-RS resources. The terminal device receives the CSI-RS sent by the base station through different beams through beam U1 and obtains the measurement results. The terminal device can determine the candidate beam with the best or better signal quality based on the measurement results. The terminal device feeds back the first candidate beam with the better or best signal quality to the network device. For example, as shown in Figure 6, the first candidate beam with the better or best signal quality is beam S1. The base station uses this first candidate beam with the better or best signal quality as the beam for communication with the terminal device.
[0199] Phase 3: UE beam fine-tuning.
[0200] The base station transmits CSI-RS to the terminal device using beam S1. The terminal device determines the optimal terminal beam as beam U1 through Phase 1. Beam U1 is a wide beam. The terminal device determines multiple second candidate beams through beam U1, as shown in Figure 6. These second candidate beams include beams P1 to P4. The terminal device receives the CSI-RS transmitted by the base station through beam S1 via beams P1 to P4, obtaining the measurement results. Based on the measurement results, the terminal device can select one beam from beams P1 to P4 and use this beam as the beam for communication with network devices.
[0201] Network devices can be configured to allow terminal devices to report measurement results using one of three methods: periodic reporting, semi-persistent reporting, and aperiodic reporting. Semi-persistent reporting is also known as semi-static reporting.
[0202] Periodic Reporting: The network device sends reference signal resource configuration information to the terminal device. This reference signal resource configuration information includes periodic reference signal resources. The network device configures the terminal device with periodic measurement reference signals. The terminal device can periodically measure the reference signals based on this reference signal resource configuration information and periodically report the measurement results. Optionally, the measurement results obtained from the terminal device's periodic measurement reference signals can be carried on physical uplink control channel (PUCCH) resources.
[0203] Semi-persistent reporting: The terminal device periodically measures the reference signal, but reports the measurement results using a semi-persistent reporting method. In one possible implementation, the network device sends reference signal resource configuration information to the terminal device. This information includes periodic reference signal resources. The network device configures the terminal device's periodic measurement reference signal. When the terminal device receives an activation signaling message (e.g., MAC CE, or DCI) from the network device, it can continuously report the measurement results. Alternatively, the network device can send a deactivation command to the terminal device to deactivate its semi-persistent reporting process. In another possible implementation, both the measurement of the reference signal and the reporting of the measurement results are semi-persistent. When the terminal device receives an activation signaling message from the network device, it continuously measures the reference signal and reports the measurement results. When the terminal device receives a deactivation command from the network device, it stops reporting the measurement results. Furthermore, the measurement results can be carried on PUCCH resources or Physical Uplink Shared Channel (PUSCH) resources.
[0204] Aperiodic reporting: When the terminal device receives a trigger command from the network device, it measures a reference signal and reports the measurement result. After completing the reporting, the terminal device stops reporting the measurement result. Optionally, the reference signal can be a periodic reference signal, a semi-persistent reference signal, or an aperiodic reference signal. Optionally, the measurement result is carried on the PUSCH resource.
[0205] It should be noted that, in this application, the signal quality can optionally be reference signal received power (RSRP), signal to interference plus noise ratio (SINR), layer 1 reference signal received power (L1-RSRP), layer 1 signal to interference plus noise ratio (L1-SINR), synchronization signal reference signal received power (SS-RSRP), channel state information reference signal received power (CSI-RSRP), synchronization signal to interference plus noise ratio (SS-SINR), or channel state information signal to interference plus noise ratio (CSI-SINR), and this application does not impose any specific limitation.
[0206] The CSI reporting system defines different priority rules for CSI reports, with lower priority values indicating higher priority. The priority value is calculated as follows: Pri iCSI (y,k,c,s)=2·N cells ·M s ·y+N cells ·M s ·k+M s ·c+s
[0207] Where, N cellsFor the maximum number of serving cells (i.e., the number configured by the network device through the higher-layer parameter maxNrofServingCells), M s The maximum number of measurement report configurations (i.e., configured by the network device through the higher-layer parameter `maxNrofCSI-ReportConfigurations`) is defined as follows: `y` indicates the CSI report reporting method, `k` indicates the CSI report reporting content, `c` is the serving cell index, and `s` is the report configuration ID. In this embodiment, the report configuration and measurement report configuration can be interchanged. The values of `y` and their corresponding CSI report reporting methods are shown in Table 1 below.
[0208] Table 1
[0209] The possible values of k and the corresponding content of the CSI report are shown in Table 2 below:
[0210] Table 2
[0211] However, after the introduction of event-triggered CSI reporting in R19, the terminal device cannot determine the priority between event-triggered CSI reporting and beam-managed conventional CSI reporting. This results in the terminal device being unable to determine the transmission order of event-triggered CSI reports and beam-managed conventional CSI reports when a conflict occurs between them.
[0212] Based on this, this application provides a method for determining the priority between event-triggered CSI reports and traditional CSI reports, as well as the priority among multiple event-triggered CSI reports. In this application, an event refers to an event related to a UE-initiated report, an event related to a measurement result report initiated by the terminal device, an event related to a report (or measurement result) after the terminal device actively performs a measurement, or an event related to specific conditions in a measurement result report initiated by the terminal device. For example, the terminal device can actively perform measurements (such as beam measurements or channel measurements) to obtain event-related measurement results. When the measurement results meet the event conditions, the terminal device reports the event-related measurement results. As another example, the terminal device can perform measurements based on reference signals according to the configuration of reference signal resources to obtain event-related measurement results. When the measurement results meet the event conditions, the terminal device reports the event-related measurement results. Yet another example is that the terminal device actively performs measurements and reports event-related measurement results when specific conditions are met. The event can also be referred to as any of the following: trigger event, layer 1 (L1) trigger event, L1 event, CSI measurement reporting trigger event, beam measurement reporting trigger event, L1 CSI reporting trigger event, L1 beam measurement reporting trigger event, etc. The naming of these events is not limited in the embodiments of this application.
[0213] This application is used to determine the priority between event-triggered CSI reports and traditional CSI reports, as well as the priority among multiple event-triggered CSI reports. The priorities between event-triggered CSI reports and traditional CSI reports, as well as the priorities among multiple event-triggered CSI reports, are described below.
[0214] I. Priority between event-triggered CSI reports and traditional CSI reports.
[0215] Please refer to Figure 7. One method for reporting a measurement report in this embodiment includes:
[0216] 701. The terminal device measures the reference signal from the network device and obtains a measurement report;
[0217] Specifically, the terminal device measures the reference signal from the network device and obtains a measurement report. The triggering method for this measurement report includes at least one of event-triggered reporting or non-event-triggered reporting.
[0218] Optionally, event-triggered reporting is also referred to as CSI reporting associated with a dedicated event-triggered reporting information element configuration. For example, the dedicated event-triggered reporting information element could be L1-EventTriggered-CSI-ReportConfig, which is not specifically limited here, or the reporting corresponding to CSI-ReportConfig. This CSI-ReportConfig contains an indication (e.g., reportConfigType is configured as EventTriggered) to indicate that the report is configured as an event-triggered reporting configuration. Alternatively, if the CSI-reportConfig contains event-related information, such as the event index and the corresponding threshold, it indicates that the report is configured as an event-triggered reporting configuration. The naming of this application is not limited in this embodiment. Optionally, event-triggered reporting can also be CSI reporting containing event information. Optionally, event-triggered reporting can also be CSI reporting initiated actively by the terminal device, or in other words, the terminal device performs measurements based on the event-related reference signal to obtain event-related measurement results, and initiates a report when the measurement results meet the event conditions. The naming of this application is not limited in this embodiment.
[0219] Optionally, non-event-triggered reporting is also referred to as traditional CSI reporting, CSI reporting configured by CSI-ReportConfig, CSI reporting triggered or configured by network devices, CSI reporting without event information configured by LTM-CSI-ReportConfig, CSI reporting without event-related information in CSI-ReportConfig, or CSI reporting that does not contain event information. The naming of these reports is not limited in this application embodiment.
[0220] Optionally, event-triggered reporting may include one or two reporting modes, namely, event-triggered reporting based on a first mode and / or event-triggered reporting based on a second mode. Event-triggered reporting based on the first mode is also referred to as event-triggered reporting via Mode A, and event-triggered reporting based on the second mode is also referred to as event-triggered reporting via Mode B. The naming of these modes is not limited in the embodiments of this application.
[0221] Optionally, the event-triggered reporting based on the first mode may include one or two reporting types, namely, event-triggered reporting based on the first mode via PUSCH and / or event-triggered reporting based on the first mode via PUCCH. The naming of these types is not limited in the embodiments of this application.
[0222] Optionally, the event-triggered reporting based on the second mode may include one or two reporting types, namely, event-triggered reporting based on the second mode via PUSCH and / or event-triggered reporting based on the second mode via PUCCH. The naming of these types is not limited in the embodiments of this application.
[0223] Optionally, non-event-triggered reporting modes include aperiodic CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUCCH, and periodic CSI reporting via PUCCH.
[0224] In this invention, CSI reporting can also be referred to as CSI report, CSI measurement report, beam reporting, beam measurement report, measurement report, beam report, beam measurement result reporting, or measurement result reporting, and the aforementioned terms can be used interchangeably.
[0225] In this invention, event-triggered reporting can also be referred to as event-triggered CSI report, event-triggered CSI measurement report, event-triggered beam reporting, event-triggered beam measurement report, event-triggered measurement report, event-triggered beam report, event-triggered beam measurement result report, or event-triggered measurement result report, and the foregoing terms can be used interchangeably. Event-triggered can be replaced by UE-initiated.
[0226] In this invention, non-event-triggered reporting can also be referred to as non-event-triggered CSI report, non-event-triggered CSI measurement report, non-event-triggered beam reporting, non-event-triggered beam measurement report, non-event-triggered measurement report, non-event-triggered beam report, non-event-triggered beam measurement result report, or non-event-triggered measurement result report, and the foregoing terms can be used interchangeably. The steps performed by the terminal device and network device in event-triggered reporting based on the first mode are shown in Figure 8:
[0227] 801. The terminal device sends a first uplink signaling to the network device, and the network device receives the first uplink signaling from the terminal device accordingly.
[0228] The terminal device sends a first uplink signaling message to the network device, which requests the network device to schedule a second uplink signaling message. The first uplink signaling message is sent through a first uplink resource. The first uplink signaling message can be uplink control information (UCI) signaling or MAC CE signaling. The first uplink resource can be a PUCCH resource or a PUSCH resource, or it can be a scheduling request resource or a reporting indication resource. The first uplink resource is used to carry the first uplink signaling message, which requests the network device to schedule the second uplink signaling message. In other words, it indicates to the network device that an event-triggered measurement result needs to be reported, or it indicates that an event has occurred, or it requests the network device to schedule uplink resources to carry the event-triggered measurement result; the specifics are not limited here.
[0229] 802. The network device sends a scheduling signaling message to the terminal device, and the terminal device receives the scheduling signaling message from the network device accordingly.
[0230] The network device sends a scheduling signaling message to the terminal device based on the first uplink signaling message, which is used to schedule the transmission of the second uplink signaling message. For example, this scheduling signaling message may be a Data Interchange Message (DCI), which is used to schedule reporting resources to carry the second uplink signaling message. For instance, the DCI may be used to schedule a PUSCH or a PUCCH. For example, the DCI may be used to indicate the index of a PUCCH.
[0231] 803. The terminal device sends a second uplink signaling to the network device, and the network device receives the second uplink signaling from the terminal device.
[0232] The terminal device sends a second uplink signaling to the network device. This second uplink signaling is used to carry event-related measurement reports or event-triggered measurement reports. For example, this second uplink signaling is carried on PUSCH or PUCCH, i.e., the reporting resource scheduled by the aforementioned scheduling signaling. The terminal device determines the reporting resource for the second uplink signaling based on the scheduling signaling and sends the second uplink signaling on that reporting resource.
[0233] The reported resources can also be any of the following: PUCCH resources, PUSCH resources, event-triggered reporting resources, UE-triggered reporting resources, event-triggered second channel resources, event-triggered second uplink resources, dynamically scheduled PUSCH resources, aperiodic PUSCH resources, semi-persistent PUCCH resources, and semi-persistent PUSCH resources. No specific limitation is made here.
[0234] The steps performed by the terminal device and network device in the event-triggered reporting based on the second mode are shown in Figure 9:
[0235] 901. The terminal device sends a first uplink signaling to the network device, and the network device receives the first uplink signaling from the terminal device accordingly.
[0236] The terminal device sends a first uplink signaling message to the network device. This first uplink signaling message informs the network device that the terminal device will carry event-related measurement reports or event-triggered measurement reports via a second uplink signaling message. The first uplink signaling message is sent through a first uplink resource. The first uplink signaling message can be a UCI signaling message or a MAC CE signaling message. The first uplink resource can be a PUCCH resource or a PUSCH resource, or a scheduling request resource or a reporting indication resource. The first uplink resource is used to carry the first uplink signaling message, which is used to indicate to the network device that the event-triggered measurement results need to be reported, or in other words, to indicate that an event has occurred.
[0237] 902. The terminal device sends a second uplink signaling to the network device, and the network device receives the second uplink signaling from the terminal device.
[0238] The terminal device sends a second uplink signaling message to the network device. This second uplink signaling message is used to carry event-related measurement reporting. The second uplink signaling message is sent through a second uplink resource. The second uplink resource can be a pre-configured PUCCH or PUSCH resource, such as a pre-configured grant PUSCH (CG-PUSCH). Alternatively, the second uplink resource can be a periodic PUCCH resource. Optionally, the first uplink resource is associated with the second uplink resource.
[0239] The second uplink resource can also be any of the following: PUCCH resource, PUSCH resource, event-triggered reporting resource, UE-triggered reporting resource, event-triggered second channel resource, event-triggered second uplink resource, semi-persistent PUCCH resource, or semi-persistent PUSCH resource. No specific limitation is made here.
[0240] The first uplink resource can also be any of the following: reporting indication resource, PUCCH reporting indication resource, PUSCH reporting indication resource, scheduling request resource, pre-indication resource, pre-notification resource, event-triggered reporting scheduling request resource, first channel resource reported by UE or event-triggered resource, first uplink resource reported by UE or event-triggered resource, or UE-triggered reporting scheduling request resource. No specific limitation is made here.
[0241] It should be noted that the event-triggered reporting via PUSCH based on the first mode can be understood as the second uplink signaling in step 802 being carried on PUSCH resources; the event-triggered reporting via PUCCH based on the first mode can be understood as the second uplink signaling in step 802 being carried on PUCCH resources.
[0242] Event-triggered reporting via PUSCH in the second mode can be understood as the second uplink signaling in step 902 being carried on PUSCH resources; event-triggered reporting via PUCCH in the second mode can be understood as the second uplink signaling in step 902 being carried on PUCCH resources.
[0243] Based on the aforementioned measurement report triggering methods, event-triggered reporting modes, non-event-triggered reporting modes, event-triggered reporting types based on the first mode, and event-triggered reporting types based on the second mode, the measurement report reporting method can be any one of the following: event-triggered reporting, non-event-triggered reporting, event-triggered reporting based on the first mode, event-triggered reporting via PUSCH based on the first mode, event-triggered reporting via PUCCH based on the first mode, event-triggered reporting based on the second mode, event-triggered reporting via PUSCH based on the second mode, event-triggered reporting via PUCCH based on the second mode, non-periodic CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUCCH, or periodic CSI reporting via PUCCH.
[0244] 702. The terminal equipment determines the reporting priority of the measurement report based on the reporting method.
[0245] In one possible implementation, the terminal device can determine the reporting priority of the measurement report according to one or more priority rules. Optionally, the priority rule can be a priority rule predefined by the protocol, a priority rule configured by the network device, or a priority rule reported by the terminal. Specifically, a protocol-predefined priority rule can be understood as the protocol defining the reporting priority of the measurement report; a priority rule configured by the network device can be understood as the network device configuring a priority rule, indicating a priority rule from one or more priority rules agreed upon by the protocol, or indicating a priority rule from one or more configured priority rules; a priority rule reported by the terminal can be understood as a priority rule reported by the terminal device, or a priority rule reported by the terminal device from one or more priority rules agreed upon by the protocol, or a priority rule reported by the terminal device from one or more priority rules configured by the network.
[0246] One possible priority rule is that measurement reports submitted without being triggered by an event have a higher priority than those submitted with being triggered by an event. Optionally, measurement reports can be submitted via both event-triggered and non-event-triggered methods.
[0247] For example, the priority of measurement reports corresponding to event-triggered reports and those corresponding to non-event-triggered reports, from highest to lowest, is as follows: measurement reports corresponding to non-event-triggered reports, and measurement reports corresponding to event-triggered reports.
[0248] For example, the network device configures M measurement reports for the terminal device. These M measurement reports include a first measurement report and a second measurement report. The first measurement report is reported via event-triggered reporting, while the second measurement report is reported without event triggering. The terminal device can determine the reporting priority of the first measurement report as lower than that of the second measurement report based on priority rules; the specific details are not limited here. In this invention, the network device configuring M measurement reports for the terminal device can be understood as the network device configuring M measurement report configurations for the terminal device, with each configuration corresponding to the reporting of one measurement report.
[0249] Another possible priority rule is that measurement reports submitted without event triggering have a lower priority than those submitted with event triggering. Optionally, measurement reports can be submitted via both event triggering and non-event triggering methods.
[0250] For example, the priority of the measurement reports corresponding to event-triggered reports and those corresponding to non-event-triggered reports, from highest to lowest, is as follows: measurement reports corresponding to event-triggered reports, and measurement reports corresponding to non-event-triggered reports.
[0251] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report and a second measurement report. The first measurement report is reported in an event-triggered manner, and the second measurement report is reported in a non-event-triggered manner. The terminal device can determine that the reporting priority of the first measurement report is higher than that of the second measurement report according to the priority rules. The specific details are not limited here.
[0252] Another possible priority rule is that measurement reports corresponding to non-event-triggered reporting have a higher priority than measurement reports corresponding to event-triggered reporting based on the first mode, and measurement reports corresponding to event-triggered reporting based on the first mode have a higher priority than measurement reports corresponding to event-triggered reporting based on the second mode. Optionally, the reporting methods for measurement reports include non-event-triggered reporting, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode.
[0253] For example, the priority of the measurement reports corresponding to non-event-triggered reporting, the measurement reports corresponding to event-triggered reporting based on the first mode, and the measurement reports corresponding to event-triggered reporting based on the second mode, from high to low, is as follows: measurement reports corresponding to non-event-triggered reporting, measurement reports corresponding to event-triggered reporting based on the first mode, and measurement reports corresponding to event-triggered reporting based on the second mode.
[0254] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported in a non-event-triggered manner, the second measurement report is reported in an event-triggered manner based on a first mode, and the third measurement report is reported in an event-triggered manner based on a second mode. The terminal device can determine the reporting priority of the first measurement report to be higher than that of the second measurement report, and the reporting priority of the second measurement report to be higher than that of the third measurement report, according to the priority rules.
[0255] Another possible priority rule is that measurement reports triggered by events based on the first mode have a higher priority than measurement reports triggered by non-event events, and measurement reports triggered by non-event events have a higher priority than measurement reports triggered by events based on the second mode. Optionally, the reporting methods for measurement reports include non-event-triggered reporting, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode.
[0256] For example, the priority of the measurement reports corresponding to non-event-triggered reporting, the measurement reports corresponding to event-triggered reporting based on the first mode, and the measurement reports corresponding to event-triggered reporting based on the second mode, from high to low, is as follows: measurement reports corresponding to event-triggered reporting based on the first mode, measurement reports corresponding to non-event-triggered reporting, and measurement reports corresponding to event-triggered reporting based on the second mode.
[0257] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported in a non-event-triggered manner, the second measurement report is reported in an event-triggered manner based on a first mode, and the third measurement report is reported in an event-triggered manner based on a second mode. The terminal device can determine that the reporting priority of the second measurement report is higher than that of the first measurement report, and the reporting priority of the first measurement report is higher than that of the third measurement report, according to the priority rules.
[0258] Another possible priority rule is that measurement reports triggered by events based on the first mode have a higher priority than those triggered by events based on the second mode, and measurement reports triggered by events based on the second mode have a higher priority than those triggered by non-event events. Optionally, the reporting methods for measurement reports include non-event-triggered reporting, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode.
[0259] For example, the priority of measurement reports corresponding to non-event-triggered reporting, measurement reports corresponding to event-triggered reporting based on the first mode, and measurement reports corresponding to event-triggered reporting based on the second mode, from high to low, is as follows: measurement reports corresponding to event-triggered reporting based on the first mode, measurement reports corresponding to event-triggered reporting based on the second mode, and measurement reports corresponding to non-event-triggered reporting.
[0260] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported in a non-event-triggered manner, the second measurement report is reported in an event-triggered manner based on a first mode, and the third measurement report is reported in an event-triggered manner based on a second mode. The terminal device can determine that the reporting priority of the second measurement report is higher than that of the third measurement report, and the reporting priority of the third measurement report is higher than that of the first measurement report, according to the priority rules.
[0261] Another possible priority rule is that measurement reports corresponding to non-event-triggered reporting have a higher priority than measurement reports corresponding to event-triggered reporting based on the second mode, and measurement reports corresponding to event-triggered reporting based on the second mode have a higher priority than measurement reports corresponding to event-triggered reporting based on the first mode. Optionally, the reporting methods for measurement reports include non-event-triggered reporting, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode.
[0262] For example, the priority of the measurement reports corresponding to non-event-triggered reporting, the measurement reports corresponding to event-triggered reporting based on the first mode, and the measurement reports corresponding to event-triggered reporting based on the second mode, from high to low, is as follows: measurement reports corresponding to non-event-triggered reporting, measurement reports corresponding to event-triggered reporting based on the second mode, and measurement reports corresponding to event-triggered reporting based on the first mode.
[0263] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported in a non-event-triggered manner, the second measurement report is reported in an event-triggered manner based on a first mode, and the third measurement report is reported in an event-triggered manner based on a second mode. The terminal device can determine that the reporting priority of the first measurement report is higher than that of the third measurement report, and the reporting priority of the third measurement report is higher than that of the second measurement report, according to the priority rules.
[0264] Another possible priority rule is that the measurement report corresponding to the event-triggered report based on the second mode has a higher priority than the measurement report corresponding to the non-event-triggered report, and the measurement report corresponding to the non-event-triggered report has a higher priority than the measurement report corresponding to the event-triggered report based on the first mode.
[0265] For example, the priority of measurement reports corresponding to non-event-triggered reporting, measurement reports corresponding to event-triggered reporting based on the first mode, and measurement reports corresponding to event-triggered reporting based on the second mode, from high to low, is as follows: measurement reports corresponding to event-triggered reporting based on the second mode, measurement reports corresponding to non-event-triggered reporting, and measurement reports corresponding to event-triggered reporting based on the first mode.
[0266] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported in a non-event-triggered manner, the second measurement report is reported in an event-triggered manner based on a first mode, and the third measurement report is reported in an event-triggered manner based on a second mode. The terminal device can determine that the reporting priority of the third measurement report is higher than the reporting priority of the first measurement report, and the reporting priority of the first measurement report is higher than the reporting priority of the second measurement report, according to the priority rules.
[0267] Another possible priority rule is based on the priority of measurement reports corresponding to event-triggered reporting in the second mode, which is higher than the priority of measurement reports corresponding to event-triggered reporting in the first mode. Optionally, the reporting methods for measurement reports include non-event-triggered reporting, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode.
[0268] For example, the priority of measurement reports corresponding to non-event-triggered reporting, measurement reports corresponding to event-triggered reporting based on the first mode, and measurement reports corresponding to event-triggered reporting based on the second mode, from high to low, is as follows: measurement reports corresponding to event-triggered reporting based on the second mode, measurement reports corresponding to event-triggered reporting based on the first mode, and measurement reports corresponding to non-event-triggered reporting.
[0269] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported in a non-event-triggered manner, the second measurement report is reported in an event-triggered manner based on a first mode, and the third measurement report is reported in an event-triggered manner based on a second mode. The terminal device can determine that the reporting priority of the third measurement report is higher than the reporting priority of the second measurement report, and the reporting priority of the second measurement report is higher than the reporting priority of the first measurement report, according to the priority rules.
[0270] Another possible priority rule is as follows: measurement reports based on event-triggered reporting in the first mode have a higher priority than measurement reports based on non-periodic CSI reporting via PUSCH; measurement reports based on non-periodic CSI reporting via PUSCH have a higher priority than measurement reports based on event-triggered reporting in the second mode; measurement reports based on event-triggered reporting in the second mode have a higher priority than measurement reports based on semi-persistent CSI reporting via PUSCH; measurement reports based on semi-persistent CSI reporting via PUSCH have a higher priority than measurement reports based on semi-persistent CSI reporting via PUCCH; and measurement reports based on semi-persistent CSI reporting via PUCCH have a higher priority than measurement reports based on periodic CSI reporting via PUCCH. Optionally, the reporting methods for measurement reports include non-periodic CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUCCH, periodic CSI reporting via PUCCH, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode.
[0271] For example, the priority of reporting corresponding measurement reports via PUSCH aperiodic CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, PUCCH periodic CSI, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode, from highest to lowest, is as follows: event-triggered reporting based on the first mode, PUSCH aperiodic CSI, event-triggered reporting based on the second mode, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, and PUCCH periodic CSI.
[0272] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported by event-triggered reporting based on a first mode. The second measurement report is reported by non-periodic CSI reporting via PUSCH. The third measurement report is reported by event-triggered reporting based on a second mode. The terminal device can determine the reporting priority of the first measurement report to be higher than that of the second measurement report, and the reporting priority of the second measurement report to be higher than that of the third measurement report, according to the priority rules.
[0273] Another possible priority rule is as follows: the priority of measurement reports based on event-triggered reporting in the first mode is higher than that of measurement reports based on non-periodic CSI reporting via PUSCH; the priority of measurement reports based on non-periodic CSI reporting via PUSCH is higher than that of measurement reports based on semi-persistent CSI reporting via PUSCH; the priority of measurement reports based on semi-persistent CSI reporting via PUSCH is higher than that of measurement reports based on semi-persistent CSI reporting via PUCCH; the priority of measurement reports based on semi-persistent CSI reporting via PUCCH is higher than that of measurement reports based on event-triggered reporting in the second mode; and the priority of measurement reports based on event-triggered reporting in the second mode is higher than that of measurement reports based on periodic CSI reporting via PUCCH. Optionally, the reporting methods for measurement reports include non-periodic CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUCCH, periodic CSI reporting via PUCCH, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode.
[0274] For example, the priority of reporting corresponding measurement reports via PUSCH aperiodic CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, PUCCH periodic CSI, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode, from highest to lowest, is as follows: event-triggered reporting based on the first mode, PUSCH aperiodic CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, event-triggered reporting based on the second mode, and PUCCH periodic CSI.
[0275] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported using an event-triggered reporting method based on a first mode, the second measurement report is reported using an event-triggered reporting method based on a second mode, and the third measurement report is reported using a semi-persistent CSI reporting method via PUCCH. The terminal device can determine the reporting priority of the first measurement report to be higher than that of the third measurement report, and the reporting priority of the third measurement report to be higher than that of the second measurement report, according to the priority rules.
[0276] Another possible priority rule is as follows: the priority of measurement reports based on event-triggered reporting in the first mode is higher than that of measurement reports based on non-periodic CSI reporting via PUSCH; the priority of measurement reports based on non-periodic CSI reporting via PUSCH is higher than that of measurement reports based on semi-persistent CSI reporting via PUSCH; the priority of measurement reports based on semi-persistent CSI reporting via PUSCH is higher than that of measurement reports based on event-triggered reporting in the second mode; the priority of measurement reports based on event-triggered reporting in the second mode is higher than that of measurement reports based on semi-persistent CSI reporting via PUCCH; and the priority of measurement reports based on semi-persistent CSI reporting via PUCCH is higher than that of measurement reports based on periodic CSI reporting via PUCCH. Optionally, the reporting methods for measurement reports include non-periodic CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUCCH, periodic CSI reporting via PUCCH, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode.
[0277] For example, the priority of reporting corresponding measurement reports via PUSCH aperiodic CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, PUCCH periodic CSI, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode, from highest to lowest, is as follows: event-triggered reporting based on the first mode, PUSCH aperiodic CSI, PUSCH semi-persistent CSI, event-triggered reporting based on the second mode, PUCCH semi-persistent CSI, and PUCCH periodic CSI.
[0278] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported via semi-persistent CSI via PUSCH, the second measurement report is reported via event-triggered reporting based on the second mode, and the third measurement report is reported via semi-persistent CSI via PUCCH. The terminal device can determine the reporting priority of the first measurement report to be higher than that of the second measurement report, and the reporting priority of the second measurement report to be higher than that of the third measurement report, according to the priority rules.
[0279] Another possible priority rule is as follows: measurement reports reported via PUSCH's non-periodic CSI have higher priority than those reported via event-triggered reporting based on the first mode; measurement reports reported via event-triggered reporting based on the first mode have higher priority than those reported via PUSCH's semi-persistent CSI; measurement reports reported via PUSCH's semi-persistent CSI have higher priority than those reported via PUCCH's semi-persistent CSI; measurement reports reported via PUCCH's semi-persistent CSI have higher priority than those reported via event-triggered reporting based on the second mode; and measurement reports reported via event-triggered reporting based on the second mode have higher priority than those reported via PUCCH's periodic CSI. Optionally, the reporting methods for measurement reports include non-periodic CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUCCH, periodic CSI reporting via PUCCH, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode.
[0280] For example, the priority of reporting corresponding measurement reports via PUSCH aperiodic CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, PUCCH periodic CSI, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode, from highest to lowest, is as follows: reporting corresponding measurement reports via PUSCH aperiodic CSI, event-triggered reporting based on the first mode, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, event-triggered reporting based on the second mode, and PUCCH periodic CSI.
[0281] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported via semi-persistent CSI reporting through PUSCH, the second measurement report is reported via event-triggered reporting based on a first mode, and the third measurement report is reported via event-triggered reporting based on a second mode. The terminal device can determine the reporting priority of the first measurement report to be higher than that of the second measurement report, and the reporting priority of the second measurement report to be higher than that of the third measurement report, according to the priority rules.
[0282] Another possible priority rule is as follows: measurement reports reported via PUSCH's non-periodic CSI have higher priority than those reported via event-triggered reporting based on the first mode; measurement reports reported via event-triggered reporting based on the first mode have higher priority than those reported via PUSCH's semi-persistent CSI; measurement reports reported via PUSCH's semi-persistent CSI have higher priority than those reported via event-triggered reporting based on the second mode; measurement reports reported via event-triggered reporting based on the second mode have higher priority than those reported via PUCCH's semi-persistent CSI; and measurement reports reported via PUCCH's semi-persistent CSI have higher priority than those reported via PUCCH's periodic CSI. Optionally, the reporting methods for measurement reports include non-periodic CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUCCH, periodic CSI reporting via PUCCH, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode.
[0283] For example, the priority of reporting corresponding measurement reports via PUSCH aperiodic CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, PUCCH periodic CSI, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode, from highest to lowest, is as follows: reporting corresponding measurement reports via PUSCH aperiodic CSI, event-triggered reporting based on the first mode, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, event-triggered reporting based on the second mode, and PUCCH periodic CSI.
[0284] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported via semi-persistent CSI via PUCCH, the second measurement report is reported via event-triggered reporting based on the second mode, and the third measurement report is reported via periodic CSI via PUCCH. The terminal device can determine the reporting priority of the first measurement report to be higher than that of the second measurement report, and the reporting priority of the second measurement report to be higher than that of the third measurement report, according to the priority rules.
[0285] Another possible priority rule is as follows: measurement reports reported via PUSCH's non-periodic CSI have higher priority than those reported via PUSCH's semi-persistent CSI; measurement reports reported via PUSCH's semi-persistent CSI have higher priority than those reported via PUCCH's semi-persistent CSI; measurement reports reported via PUCCH's semi-persistent CSI have higher priority than those reported via PUCCH's periodic CSI; measurement reports reported via PUCCH's periodic CSI have higher priority than those reported via event-triggered reporting based on the first mode; and measurement reports reported via event-triggered reporting based on the first mode have higher priority than those reported via event-triggered reporting based on the second mode. Optionally, the measurement report reporting methods include non-periodic CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUCCH, periodic CSI reporting via PUCCH, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode.
[0286] For example, the priority of reporting corresponding measurement reports via PUSCH aperiodic CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, PUCCH periodic CSI, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode, from highest to lowest, is as follows: reporting corresponding measurement reports via PUSCH aperiodic CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, PUCCH periodic CSI, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode.
[0287] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported periodically via PUCCH CSI reporting, the second measurement report is reported based on event-triggered reporting in a first mode, and the third measurement report is reported based on event-triggered reporting in a second mode. The terminal device can determine the reporting priority of the first measurement report to be higher than that of the second measurement report, and the reporting priority of the second measurement report to be higher than that of the third measurement report, according to the priority rules.
[0288] Another possible priority rule is as follows: measurement reports reported via PUSCH's non-periodic CSI have higher priority than those reported via PUSCH's semi-persistent CSI; measurement reports reported via PUSCH's semi-persistent CSI have higher priority than those reported via PUCCH's semi-persistent CSI; measurement reports reported via PUCCH's semi-persistent CSI have higher priority than those reported via PUCCH's periodic CSI; measurement reports reported via PUCCH's periodic CSI have higher priority than those reported via event-triggered reporting based on the second mode; and measurement reports reported via event-triggered reporting based on the second mode have higher priority than those reported via event-triggered reporting based on the first mode. Optionally, the reporting methods for measurement reports include non-periodic CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUCCH, periodic CSI reporting via PUCCH, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode.
[0289] For example, the priority of reporting corresponding measurement reports via PUSCH aperiodic CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, PUCCH periodic CSI, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode, from highest to lowest, is as follows: reporting corresponding measurement reports via PUSCH aperiodic CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, PUCCH periodic CSI, event-triggered reporting based on the second mode, and event-triggered reporting based on the first mode.
[0290] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported periodically via PUCCH CSI reporting, the second measurement report is reported via event-triggered reporting based on a first mode, and the third measurement report is reported via PUSCH semi-persistent CSI reporting. The terminal device can determine the reporting priority of the first measurement report to be higher than that of the second measurement report, and the reporting priority of the second measurement report to be higher than that of the third measurement report, according to the priority rules.
[0291] For example, the priority of reporting corresponding measurement reports via PUSCH aperiodic CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, PUCCH periodic CSI, event-triggered reporting based on the first mode, and event-triggered reporting based on the second mode, from highest to lowest, can be at least one of the following:
[0292] 1) The corresponding measurement report is reported based on the event triggering of the first mode, the corresponding measurement report is reported based on the event triggering of the second mode, the corresponding measurement report is reported through the non-periodic CSI of PUSCH, the corresponding measurement report is reported through the semi-persistent CSI of PUSCH, the corresponding measurement report is reported through the semi-persistent CSI of PUCCH, and the corresponding measurement report is reported through the periodic CSI of PUCCH.
[0293] 2) Based on the first mode, the corresponding measurement report is reported by event triggering, the corresponding measurement report is reported by non-periodic CSI of PUSCH, the corresponding measurement report is reported by event triggering based on the second mode, the corresponding measurement report is reported by semi-persistent CSI of PUSCH, the corresponding measurement report is reported by semi-persistent CSI of PUCCH, and the corresponding measurement report is reported by periodic CSI of PUCCH.
[0294] 3) Based on the first mode, the corresponding measurement report is reported by event triggering, the corresponding measurement report is reported by non-periodic CSI of PUSCH, the corresponding measurement report is reported by semi-persistent CSI of PUSCH, the corresponding measurement report is reported by semi-persistent CSI of PUCCH, the corresponding measurement report is reported by event triggering based on the second mode, and the corresponding measurement report is reported by periodic CSI of PUCCH.
[0295] 4) Based on the first mode, report the corresponding measurement report by event triggering, report the corresponding measurement report by non-periodic CSI of PUSCH, report the corresponding measurement report by semi-persistent CSI of PUSCH, report the corresponding measurement report by event triggering based on the second mode, report the corresponding measurement report by semi-persistent CSI of PUCCH, and report the corresponding measurement report by periodic CSI of PUCCH.
[0296] 5) Based on the first mode, report the corresponding measurement report through event triggering, report the corresponding measurement report through the non-periodic CSI of PUSCH, report the corresponding measurement report through the semi-persistent CSI of PUSCH, report the corresponding measurement report through the semi-persistent CSI of PUCCH, report the corresponding measurement report through the periodic CSI of PUCCH, and report the corresponding measurement report based on the second mode event triggering.
[0297] 6) Report the corresponding measurement report via PUSCH non-periodic CSI, report the corresponding measurement report based on event triggering in the first mode, report the corresponding measurement report based on event triggering in the second mode, report the corresponding measurement report via PUSCH semi-persistent CSI, report the corresponding measurement report via PUCCH semi-persistent CSI, and report the corresponding measurement report via PUCCH periodic CSI.
[0298] 7) Report the corresponding measurement report via PUSCH non-periodic CSI, report the corresponding measurement report based on event triggering in the first mode, report the corresponding measurement report via PUSCH semi-persistent CSI, report the corresponding measurement report based on event triggering in the second mode, report the corresponding measurement report via PUCCH semi-persistent CSI, and report the corresponding measurement report via PUCCH periodic CSI.
[0299] 8) Report the corresponding measurement report via PUSCH non-periodic CSI, report the corresponding measurement report based on event triggering in the first mode, report the corresponding measurement report via PUSCH semi-persistent CSI, report the corresponding measurement report via PUCCH semi-persistent CSI, report the corresponding measurement report based on event triggering in the second mode, and report the corresponding measurement report via PUCCH periodic CSI.
[0300] 9) Report the corresponding measurement report via PUSCH non-periodic CSI, report the corresponding measurement report based on event triggering in the first mode, report the corresponding measurement report via PUSCH semi-persistent CSI, report the corresponding measurement report via PUCCH semi-persistent CSI, report the corresponding measurement report via PUCCH periodic CSI, and report the corresponding measurement report based on event triggering in the second mode.
[0301] 10) Report the corresponding measurement report via PUSCH non-periodic CSI, report the corresponding measurement report via PUSCH semi-persistent CSI, report the corresponding measurement report based on event triggering in the first mode, report the corresponding measurement report based on event triggering in the second mode, report the corresponding measurement report via PUCCH semi-persistent CSI, and report the corresponding measurement report via PUCCH periodic CSI.
[0302] 11) Report the corresponding measurement report via PUSCH non-periodic CSI, report the corresponding measurement report via PUSCH semi-persistent CSI, report the corresponding measurement report based on event triggering in the first mode, report the corresponding measurement report via PUCCH semi-persistent CSI, report the corresponding measurement report based on event triggering in the second mode, and report the corresponding measurement report via PUCCH periodic CSI.
[0303] 12) Report the corresponding measurement report via PUSCH non-periodic CSI, report the corresponding measurement report via PUSCH semi-persistent CSI, report the corresponding measurement report based on the first mode event trigger, report the corresponding measurement report via PUCCH semi-persistent CSI, report the corresponding measurement report via PUCCH periodic CSI, and report the corresponding measurement report based on the second mode event trigger.
[0304] 13) Report the corresponding measurement report via PUSCH non-periodic CSI, report the corresponding measurement report via PUSCH semi-persistent CSI, report the corresponding measurement report via PUCCH semi-persistent CSI, report the corresponding measurement report based on event triggering in the first mode, report the corresponding measurement report based on event triggering in the second mode, and report the corresponding measurement report via PUCCH periodic CSI.
[0305] 14) Report the corresponding measurement report via the non-periodic CSI of PUSCH, report the corresponding measurement report via the semi-persistent CSI of PUSCH, report the corresponding measurement report via the semi-persistent CSI of PUCCH, report the corresponding measurement report based on the event trigger of the first mode, report the corresponding measurement report via the periodic CSI of PUCCH, and report the corresponding measurement report based on the event trigger of the second mode.
[0306] 15) Report the corresponding measurement report via PUSCH non-periodic CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, PUCCH periodic CSI, event-triggered report based on the first mode, and event-triggered report based on the second mode.
[0307] 16) Report the corresponding measurement report based on the event trigger of the second mode, report the corresponding measurement report based on the event trigger of the first mode, report the corresponding measurement report through the non-periodic CSI of PUSCH, report the corresponding measurement report through the semi-persistent CSI of PUSCH, report the corresponding measurement report through the semi-persistent CSI of PUCCH, and report the corresponding measurement report through the periodic CSI of PUCCH.
[0308] 17) Based on the second mode, report the corresponding measurement report by event triggering, report the corresponding measurement report by non-periodic CSI of PUSCH, report the corresponding measurement report by event triggering based on the first mode, report the corresponding measurement report by semi-persistent CSI of PUSCH, report the corresponding measurement report by semi-persistent CSI of PUCCH, and report the corresponding measurement report by periodic CSI of PUCCH.
[0309] 18) Based on the second mode, report the corresponding measurement report by event triggering, report the corresponding measurement report by non-periodic CSI of PUSCH, report the corresponding measurement report by semi-persistent CSI of PUSCH, report the corresponding measurement report by semi-persistent CSI of PUCCH, report the corresponding measurement report by event triggering based on the first mode, and report the corresponding measurement report by periodic CSI of PUCCH.
[0310] 19) Based on the second mode, report the corresponding measurement report by event triggering, report the corresponding measurement report by non-periodic CSI of PUSCH, report the corresponding measurement report by semi-persistent CSI of PUSCH, report the corresponding measurement report by event triggering based on the first mode, report the corresponding measurement report by semi-persistent CSI of PUCCH, and report the corresponding measurement report by periodic CSI of PUCCH.
[0311] 20) Based on the second mode, report the corresponding measurement report by event triggering, report the corresponding measurement report by non-periodic CSI of PUSCH, report the corresponding measurement report by semi-persistent CSI of PUSCH, report the corresponding measurement report by semi-persistent CSI of PUCCH, report the corresponding measurement report by periodic CSI of PUCCH, and report the corresponding measurement report by event triggering based on the first mode.
[0312] 21) Report the corresponding measurement report via PUSCH non-periodic CSI, report the corresponding measurement report based on event triggering in the second mode, report the corresponding measurement report based on event triggering in the first mode, report the corresponding measurement report via PUSCH semi-persistent CSI, report the corresponding measurement report via PUCCH semi-persistent CSI, and report the corresponding measurement report via PUCCH periodic CSI.
[0313] 22) Report the corresponding measurement report via PUSCH non-periodic CSI, report the corresponding measurement report based on the second mode event trigger, report the corresponding measurement report via PUSCH semi-persistent CSI, report the corresponding measurement report based on the first mode event trigger, report the corresponding measurement report via PUCCH semi-persistent CSI, and report the corresponding measurement report via PUCCH periodic CSI.
[0314] 23) Report the corresponding measurement report via PUSCH non-periodic CSI, report the corresponding measurement report based on the second mode event trigger, report the corresponding measurement report via PUSCH semi-persistent CSI, report the corresponding measurement report via PUCCH semi-persistent CSI, report the corresponding measurement report based on the first mode event trigger, and report the corresponding measurement report via PUCCH periodic CSI.
[0315] 24) Report the corresponding measurement report via PUSCH non-periodic CSI, report the corresponding measurement report based on the second mode event trigger, report the corresponding measurement report via PUSCH semi-persistent CSI, report the corresponding measurement report via PUCCH semi-persistent CSI, report the corresponding measurement report via PUCCH periodic CSI, and report the corresponding measurement report based on the first mode event trigger.
[0316] 25) Report the corresponding measurement report via PUSCH non-periodic CSI, report the corresponding measurement report via PUSCH semi-persistent CSI, report the corresponding measurement report based on the second mode event trigger, report the corresponding measurement report based on the first mode event trigger, report the corresponding measurement report via PUCCH semi-persistent CSI, and report the corresponding measurement report via PUCCH periodic CSI.
[0317] 26) Report the corresponding measurement report via PUSCH non-periodic CSI, report the corresponding measurement report via PUSCH semi-persistent CSI, report the corresponding measurement report based on the second mode event trigger, report the corresponding measurement report via PUCCH semi-persistent CSI, report the corresponding measurement report based on the first mode event trigger, and report the corresponding measurement report via PUCCH periodic CSI.
[0318] 27) Report the corresponding measurement report via PUSCH non-periodic CSI, report the corresponding measurement report via PUSCH semi-persistent CSI, report the corresponding measurement report based on the second mode event trigger, report the corresponding measurement report via PUCCH semi-persistent CSI, report the corresponding measurement report via PUCCH periodic CSI, and report the corresponding measurement report based on the first mode event trigger.
[0319] 28) Report the corresponding measurement report via PUSCH non-periodic CSI, report the corresponding measurement report via PUSCH semi-persistent CSI, report the corresponding measurement report via PUCCH semi-persistent CSI, report the corresponding measurement report based on event triggering in the second mode, report the corresponding measurement report based on event triggering in the first mode, and report the corresponding measurement report via PUCCH periodic CSI.
[0320] 29) Report the corresponding measurement report via PUSCH non-periodic CSI, report the corresponding measurement report via PUSCH semi-persistent CSI, report the corresponding measurement report via PUCCH semi-persistent CSI, report the corresponding measurement report based on event triggering in the second mode, report the corresponding measurement report via PUCCH periodic CSI, and report the corresponding measurement report based on event triggering in the first mode.
[0321] 30) Report the corresponding measurement report via PUSCH non-periodic CSI, report the corresponding measurement report via PUSCH semi-persistent CSI, report the corresponding measurement report via PUCCH semi-persistent CSI, report the corresponding measurement report via PUCCH periodic CSI, report the corresponding measurement report based on event triggering in the second mode, and report the corresponding measurement report based on event triggering in the first mode.
[0322] Optionally, when the above-mentioned event-triggered reporting based on the second mode includes two reporting types, namely event-triggered reporting based on the second mode via PUSCH and event-triggered reporting based on the second mode via PUCCH, the priority of the measurement report corresponding to the event-triggered reporting based on the second mode via PUSCH is higher than the priority of the measurement report corresponding to the event-triggered reporting based on the second mode via PUCCH; or, the priority of the measurement report corresponding to the event-triggered reporting based on the second mode via PUSCH is lower than the priority of the measurement report corresponding to the event-triggered reporting based on the second mode via PUCCH.
[0323] Optionally, when the above-mentioned event-triggered reporting based on the first mode includes two reporting types, namely event-triggered reporting based on the first mode via PUSCH and event-triggered reporting based on the first mode via PUCCH, the priority of the measurement report corresponding to the event-triggered reporting based on the first mode via PUSCH is higher than the priority of the measurement report corresponding to the event-triggered reporting based on the first mode via PUCCH; or, the priority of the measurement report corresponding to the event-triggered reporting based on the first mode via PUSCH is lower than the priority of the measurement report corresponding to the event-triggered reporting based on the first mode via PUCCH.
[0324] Another possible priority rule is as follows: measurement reports reported via PUSCH's non-periodic CSI have higher priority than those reported via event-triggered CSI; measurement reports reported via event-triggered CSI have higher priority than those reported via PUSCH's semi-persistent CSI; measurement reports reported via PUSCH's semi-persistent CSI have higher priority than those reported via PUCCH's semi-persistent CSI; and measurement reports reported via PUCCH's semi-persistent CSI have higher priority than those reported via PUCCH's periodic CSI. Optionally, measurement reports can be reported via PUSCH's non-periodic CSI, PUSCH's semi-persistent CSI, PUCCH's semi-persistent CSI, PUCCH's periodic CSI, and event-triggered CSI.
[0325] For example, the priority of reporting corresponding measurement reports via PUSCH aperiodic CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, PUCCH periodic CSI, and event-triggered CSI, from highest to lowest, is as follows: reporting corresponding measurement reports via PUSCH aperiodic CSI, event-triggered CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, and PUCCH periodic CSI.
[0326] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported via aperiodic CSI reporting through PUSCH, the second measurement report is reported via event-triggered reporting, and the third measurement report is reported via semi-persistent CSI reporting through PUSCH. The terminal device can determine the reporting priority of the first measurement report to be higher than that of the second measurement report, and the reporting priority of the second measurement report to be higher than that of the third measurement report, according to the priority rules.
[0327] Another possible priority rule is that measurement reports reported via PUSCH's non-periodic CSI have higher priority than those reported via PUSCH's semi-persistent CSI; measurement reports reported via PUSCH's semi-persistent CSI have higher priority than those reported via PUCCH's semi-persistent CSI; measurement reports reported via PUCCH's semi-persistent CSI have higher priority than those reported via event-triggered CSI; and measurement reports reported via event-triggered CSI have higher priority than those reported via PUCCH's periodic CSI. Optionally, measurement reports can be reported via PUSCH's non-periodic CSI, PUSCH's semi-persistent CSI, PUCCH's periodic CSI, and event-triggered CSI.
[0328] For example, the priority of reporting corresponding measurement reports via PUSCH aperiodic CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, PUCCH periodic CSI, and event-triggered CSI, in descending order, is as follows: reporting corresponding measurement reports via PUSCH aperiodic CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, event-triggered CSI, and event-triggered CSI.
[0329] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported via semi-persistent CSI via PUCCH, the second measurement report is reported via event-triggered reporting, and the third measurement report is reported via periodic CSI via PUCCH. The terminal device can determine the reporting priority of the first measurement report to be higher than that of the second measurement report, and the reporting priority of the second measurement report to be higher than that of the third measurement report, according to the priority rules.
[0330] Another possible priority rule is that measurement reports triggered by events have higher priority than those reported via PUSCH's non-periodic CSI, which in turn has higher priority than those reported via PUSCH's semi-persistent CSI, which has higher priority than those reported via PUCCH's semi-persistent CSI, which has higher priority than those reported via PUCCH's semi-persistent CSI, which has higher priority than those reported via PUCCH's periodic CSI. Optionally, measurement reports can be submitted via PUSCH's non-periodic CSI, PUSCH's semi-persistent CSI, PUCCH's semi-persistent CSI, PUCCH's periodic CSI, and event-triggered reporting.
[0331] For example, the priority of reporting corresponding measurement reports via PUSCH's non-periodic CSI, PUSCH's semi-persistent CSI, PUCCH's semi-persistent CSI, PUCCH's periodic CSI, and event-triggered CSI, from highest to lowest, is as follows: event-triggered CSI reporting, PUSCH's non-periodic CSI reporting, PUSCH's semi-persistent CSI reporting, PUCCH's semi-persistent CSI reporting, and PUCCH's periodic CSI reporting.
[0332] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported by event triggering, the second measurement report is reported by aperiodic CSI via PUSCH, and the third measurement report is reported by semi-persistent CSI via PUSCH. The terminal device can determine the reporting priority of the first measurement report to be higher than that of the second measurement report, and the reporting priority of the second measurement report to be higher than that of the third measurement report, according to the priority rules.
[0333] Another possible priority rule is that measurement reports reported via PUSCH's non-periodic CSI have higher priority than those reported via PUSCH's semi-persistent CSI; measurement reports reported via PUSCH's semi-persistent CSI have higher priority than those reported via event-triggered CSI; measurement reports reported via event-triggered CSI have higher priority than those reported via PUCCH's semi-persistent CSI; and measurement reports reported via PUCCH's semi-persistent CSI have higher priority than those reported via PUCCH's periodic CSI. Optionally, measurement report reporting methods include non-periodic CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUCCH, periodic CSI reporting via PUCCH, and event-triggered reporting.
[0334] For example, the priority of reporting corresponding measurement reports via PUSCH aperiodic CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, PUCCH periodic CSI, and event-triggered CSI, from highest to lowest, is as follows: reporting corresponding measurement reports via PUSCH aperiodic CSI, PUSCH semi-persistent CSI, event-triggered CSI, PUCCH semi-persistent CSI, and PUCCH periodic CSI.
[0335] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported via semi-persistent CSI via PUSCH, the second measurement report is reported via event-triggered reporting, and the third measurement report is reported via semi-persistent CSI via PUCCH. The terminal device can determine the reporting priority of the first measurement report to be higher than that of the second measurement report, and the reporting priority of the second measurement report to be higher than that of the third measurement report, according to the priority rules.
[0336] Another possible priority rule is that measurement reports reported via PUSCH's non-periodic CSI have higher priority than those reported via PUSCH's semi-persistent CSI; measurement reports reported via PUSCH's semi-persistent CSI have higher priority than those reported via PUCCH's semi-persistent CSI; measurement reports reported via PUCCH's semi-persistent CSI have higher priority than those reported via PUCCH's periodic CSI; and measurement reports reported via PUCCH's periodic CSI have higher priority than those reported via event-triggered reporting. Optionally, measurement report reporting methods include non-periodic CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUCCH, periodic CSI reporting via PUCCH, and event-triggered reporting.
[0337] For example, the priority of reporting corresponding measurement reports via PUSCH aperiodic CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, PUCCH periodic CSI, and event-triggered measurement reports, from highest to lowest, is as follows: reporting corresponding measurement reports via PUSCH aperiodic CSI, PUSCH semi-persistent CSI, PUCCH periodic CSI, and event-triggered measurement reports.
[0338] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported via semi-persistent CSI via PUCCH, the second measurement report is reported via periodic CSI via PUCCH, and the third measurement report is reported via event-triggered reporting. The terminal device can determine the reporting priority of the first measurement report to be higher than that of the second measurement report, and the reporting priority of the second measurement report to be higher than that of the third measurement report, according to the priority rules.
[0339] Another possible priority rule is as follows: measurement reports reported via PUSCH's non-periodic CSI have higher priority than those reported via event-triggered CSI; measurement reports reported via event-triggered CSI have higher priority than those reported via PUSCH's semi-persistent CSI; measurement reports reported via PUSCH's semi-persistent CSI have higher priority than those reported via PUCCH's semi-persistent CSI; and measurement reports reported via PUCCH's semi-persistent CSI have higher priority than those reported via PUCCH's periodic CSI. Optionally, measurement reports can be reported via PUSCH's non-periodic CSI, PUSCH's semi-persistent CSI, PUCCH's periodic CSI, and event-triggered CSI.
[0340] For example, the priority of reporting corresponding measurement reports via PUSCH aperiodic CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, PUCCH periodic CSI, and event-triggered CSI, from highest to lowest, is as follows: reporting corresponding measurement reports via PUSCH aperiodic CSI, event-triggered CSI, PUSCH semi-persistent CSI, PUCCH semi-persistent CSI, and PUCCH periodic CSI.
[0341] For example, the network device configures M measurement reports for the terminal device. The M measurement reports include a first measurement report, a second measurement report, and a third measurement report. The first measurement report is reported via semi-persistent CSI via PUCCH, the second measurement report is reported via periodic CSI via PUCCH, and the third measurement report is reported via event-triggered reporting. The terminal device can determine that the reporting priority of the third measurement report is higher than that of the first measurement report, and the reporting priority of the first measurement report is higher than that of the second measurement report, according to priority rules.
[0342] In this embodiment, the terminal device can determine the priority of CSI reports triggered by events through priority rules, thereby enabling the terminal device to determine the transmission order between event-triggered CSI reports and non-event-triggered CSI reports. In this application, when at least two measurement reports conflict in the time domain, the terminal device can prioritize which measurement reports to send based on priority rules; that is, higher priority measurement reports are sent first; or, the terminal device may choose not to send lower priority measurement reports; or, the terminal device may sort the at least two measurement reports sequentially according to priority rules, placing the higher priority measurement report first.
[0343] In another possible implementation, the terminal device can determine the reporting priority of the measurement report based on a first priority value. This first priority value is obtained based on a first priority parameter, the maximum number of serving cells, the maximum number of measurement report configurations, the serving cell index, and the report configuration identifier (identification, identifier, or identity, ID). The first priority parameter is determined based on at least one of the measurement report reporting method and the measurement report reporting content. Specifically, this can be understood as the first priority parameter being determined based on at least one of the following: the measurement report triggering method, the event-triggered reporting mode, the non-event-triggered reporting mode, the measurement report reporting content, the event-triggered reporting type based on the first mode, and the event-triggered reporting type based on the second mode.
[0344] Specifically, the first priority value can be: Pri iCSI (m,y,k,c,s)=8·N cells ·M s ·m+2·N cells ·M s ·y+N cells ·M s ·k+M s ·c+s
[0345] Where, N cells M is the maximum number of cells served. s The maximum number of report configurations for measurement reports is defined by: y indicates the reporting mode for event-triggered reporting or non-event-triggered reporting, and / or indicates the reporting type for event-triggered reporting based on the first mode or the event-triggered reporting type based on the second mode; k indicates the reporting content of the measurement report; c is the serving cell index; s is the report configuration ID; and m is the first priority parameter. In this embodiment, the report configuration and the measurement report configuration can be interchanged.
[0346] It should be noted that N cells and M s It can be configured by the network device, determined by the network device based on the capability information reported by the terminal device, or specified by the protocol; no specific limitation is made here.
[0347] In one possible implementation,
[0348] If the measurement report is reported in a non-event-triggered manner, then the first priority parameter is determined to be the first value;
[0349] If the measurement report is reported via event-triggered reporting, then the first priority parameter is set to the second value.
[0350] The correspondence between m and the reporting method of the measurement report is shown in Table 3 below:
[0351] Table 3
[0352] Wherein, the first value and the second value are both integers. Optionally, the first value and the second value can take values of 0 and 1, and the first value and the second value cannot be equal.
[0353] In another possible implementation,
[0354] If the measurement report is reported using the event-triggered reporting method based on the first mode, then the first priority parameter is determined to be the first value;
[0355] If the measurement report is reported in a non-event-triggered manner, then the first priority parameter is determined to be the second value;
[0356] If the measurement report is reported using the event-triggered reporting method based on the second mode, then the first priority parameter is determined to be the third value.
[0357] The correspondence between m and the reporting method of the measurement report is shown in Table 4 below:
[0358] Table 4
[0359] Wherein, the first value, the second value, and the third value are all integers. Optionally, the first value, the second value, and the third value can be in the range of 0, 1, and 2, and the first value, the second value, and the third value cannot be equal.
[0360] In another possible implementation,
[0361] If the measurement report is reported using the event-triggered reporting method based on the first mode, then the first priority parameter is determined to be the first value;
[0362] If the measurement report is reported in a non-event-triggered manner, then the first priority parameter is determined to be the second value;
[0363] If the measurement report is reported via PUCCH event triggering based on the second mode, then the first priority parameter is determined to be the third value.
[0364] If the measurement report is reported via PUSCH event triggering based on the second mode, then the first priority parameter is determined to be the fourth value.
[0365] The correspondence between m and the reporting method of the measurement report is shown in Table 5 below:
[0366] Table 5
[0367] The first, second, third, and fourth values are all integers. Optionally, the first, second, third, and fourth values can be in the range of 0, 1, 2, and 3, and the first, second, third, and fourth values cannot be equal.
[0368] In another possible implementation,
[0369] If the measurement report is reported via PUCCH event triggering based on the first mode, then the first priority parameter is determined to be the first value;
[0370] If the measurement report is reported via PUSCH event triggering based on the first mode, then the first priority parameter is determined to be the second value;
[0371] If the measurement report is reported in a non-event-triggered manner, then the first priority parameter is set to the third value.
[0372] If the measurement report is reported via PUCCH event triggering based on the second mode, then the first priority parameter is determined to be the fourth value.
[0373] If the measurement report is reported via PUSCH event triggering based on the second mode, then the first priority parameter is determined to be the fifth value.
[0374] The correspondence between m and the reporting method of the measurement report is shown in Table 6 below:
[0375] Table 6
[0376] Wherein, the first, second, third, fourth, and fifth values are all integers. Optionally, the first, second, third, fourth, and fifth values can be in the range of 0, 1, 2, 3, and 4, and the first, second, third, fourth, and fifth values are not equal.
[0377] In another possible implementation,
[0378] If the measurement report is reported via PUCCH event triggering based on the first mode, then the first priority parameter is determined to be the first value;
[0379] If the measurement report is reported via PUSCH event triggering based on the first mode, then the first priority parameter is determined to be the second value;
[0380] If the measurement report is reported in a non-event-triggered manner, then the first priority parameter is set to the third value.
[0381] If the measurement report is reported using the event-triggered reporting method based on the second mode, then the first priority parameter is determined to be the fourth value.
[0382] The correspondence between m and the reporting method of the measurement report is shown in Table 7 below:
[0383] Table 7
[0384] The first, second, third, and fourth values are all integers. Optionally, the first, second, third, and fourth values can be in the range of 0, 1, 2, and 3, and the first, second, third, and fourth values cannot be equal.
[0385] Specifically, the value of m can be used to indicate the reporting method of measurement reports.
[0386] Optional,
[0387] m=0 indicates that the measurement report is being submitted via non-event-triggered reporting;
[0388] m=1 indicates that the reporting method for this measurement report is event-triggered reporting.
[0389] The correspondence between the value of m and the reporting method of the measurement report is shown in Table 8 below:
[0390] Table 8
[0391] Optional,
[0392] m=0 indicates that the measurement report is reported via event triggering.
[0393] m=1 indicates that the reporting method for this measurement report is non-event-triggered reporting.
[0394] The correspondence between the values of m and the reporting methods of the measurement reports is shown in Table 9 below:
[0395] Table 9
[0396] Optionally, k=0 must be restricted to support only reporting of L1-RSRP or L1-SINR and / or event information when one or more of the following conditions are met:
[0397] 1) The value of m is used to indicate the triggering method for the measurement report;
[0398] 2) The value of m indicates that the reporting method of this measurement report is event-triggered reporting.
[0399] Optionally, under one or more of the following conditions, it is necessary to restrict k=0 to indicate reporting carrying L1-RSRP or L1-SINR, and k=1 to indicate CSI reporting without carrying L1-RSRP or L1-SINR:
[0400] 1) The value of m is used to indicate the triggering method for the measurement report;
[0401] 2) The value of m indicates that the reporting method of this measurement report is non-event triggered reporting.
[0402] Optionally, y needs to be restricted to indicate the reporting mode of event triggering when one or more of the following conditions are met: y = 0 indicates that the event triggering reporting mode is based on the first mode, and y = 1 indicates that the event triggering reporting mode is based on the second mode; or, y = 0 indicates that the event triggering reporting mode is based on the second mode, and y = 1 indicates that the event triggering reporting mode is based on the first mode. The specific details are not limited here.
[0403] 1) The value of m is used to indicate the triggering method for the measurement report;
[0404] 2) The value of m indicates that the reporting method of this measurement report is event-triggered reporting.
[0405] Optionally, y should be restricted to indicate the reporting mode for non-event-triggered reporting when one or more of the following conditions are met: y=0 indicates aperiodic CSI reporting via PUSCH, y=1 indicates semi-persistent CSI reporting via PUSCH, y=2 indicates semi-persistent CSI reporting via PUCCH, and y=3 indicates periodic CSI reporting via PUCCH:
[0406] 1) The value of m is used to indicate the triggering method for the measurement report;
[0407] 2) The value of m indicates that the reporting method of this measurement report is non-event triggered reporting.
[0408] Optionally, y needs to be restricted to indicate the reporting type of event-triggered reporting based on the first mode and the reporting type of event-triggered reporting based on the second mode, provided one or more of the following conditions are met. The value of y can be 0, 1, 2, or 3. The value of y is used to indicate any one of the following: event-triggered reporting based on the first mode via PUSCH, event-triggered reporting based on the first mode via PUCCH, event-triggered reporting based on the second mode via PUSCH, and event-triggered reporting based on the second mode via PUCCH. The value corresponding to the reporting type of different event-triggered reporting is different:
[0409] 1) The value of m is used to indicate the triggering method for the measurement report;
[0410] 2) The value of m indicates that the reporting method of this measurement report is event-triggered reporting.
[0411] Optionally, y needs to be restricted to indicate the reporting type of event-triggered reporting based on the second mode and event-triggered reporting based on the first mode when one or more of the following conditions are met. The value of y can be 0, 1, or 2. The value of y is used to indicate any one of event-triggered reporting based on the second mode, event-triggered reporting based on the first mode via PUSCH, and event-triggered reporting based on the first mode via PUCCH. Different values correspond to different reporting modes or reporting types:
[0412] 1) The value of m is used to indicate the triggering method for the measurement report;
[0413] 2) The value of m indicates that the reporting method of this measurement report is event-triggered reporting;
[0414] 3) Event-triggered reporting based on the second mode only includes one type of event-triggered reporting, namely event-triggered reporting via PUSCH based on the second mode or event-triggered reporting via PUCCH based on the second mode.
[0415] Optionally, y needs to be restricted to indicate the reporting type of event-triggered reporting based on the first mode and event-triggered reporting based on the second mode when one or more of the following conditions are met. The value of y can be 0, 1, or 2. The value of y is used to indicate any one of event-triggered reporting based on the first mode, event-triggered reporting based on the second mode via PUSCH, and event-triggered reporting based on the second mode via PUCCH. Different values correspond to different reporting modes or reporting types:
[0416] 1) The value of m is used to indicate the triggering method for the measurement report;
[0417] 2) The value of m indicates that the reporting method of this measurement report is event-triggered reporting;
[0418] 3) Event-triggered reporting based on the first mode includes only one type of event-triggered reporting, namely event-triggered reporting via PUSCH based on the first mode or event-triggered reporting via PUCCH based on the first mode.
[0419] Specifically, the value of m can also be used to indicate the triggering method of measurement reports and the reporting mode of event-triggered reporting.
[0420] Optional,
[0421] m=0 indicates that the reporting method of this measurement report is event-triggered reporting based on the first mode;
[0422] m=1 indicates that the reporting method of this measurement report is event-triggered reporting based on the second mode;
[0423] m=2 indicates that the reporting method for this measurement report is non-event-triggered reporting.
[0424] The correspondence between the value of m and the reporting method of the measurement report is shown in Table 10 below:
[0425] Table 10
[0426] Optional,
[0427] m=0 indicates that the reporting method of this measurement report is event-triggered reporting based on the first mode;
[0428] m=1 indicates that the measurement report is submitted in a non-event-triggered manner;
[0429] m=2 indicates that the reporting method for this measurement report is event-triggered reporting based on the second mode.
[0430] The correspondence between the value of m and the reporting method of the measurement report is shown in Table 11 below:
[0431] Table 11
[0432] Optional,
[0433] m=0 indicates that the measurement report is being submitted via non-event-triggered reporting;
[0434] m=1 indicates that the reporting method of this measurement report is event-triggered reporting based on the first mode;
[0435] m=2 indicates that the reporting method for this measurement report is event-triggered reporting based on the second mode.
[0436] The correspondence between the value of m and the reporting method of the measurement report is shown in Table 12 below:
[0437] Table 12
[0438] Optional,
[0439] m=0 indicates that the reporting method of this measurement report is event-triggered reporting based on the second mode;
[0440] m=1 indicates that the reporting method of this measurement report is event-triggered reporting based on the first mode;
[0441] m=2 indicates that the reporting method for this measurement report is non-event-triggered reporting.
[0442] The correspondence between the values of m and the reporting methods of the measurement reports is shown in Table 13 below:
[0443] Table 13
[0444] Optional,
[0445] m=0 indicates that the measurement report is being submitted via non-event-triggered reporting;
[0446] m=1 indicates that the reporting method of this measurement report is event-triggered reporting based on the second mode;
[0447] m=2 indicates that the reporting method of this measurement report is event-triggered reporting based on the first mode.
[0448] The correspondence between the value of m and the reporting method of the measurement report is shown in Table 14 below:
[0449] Table 14
[0450] Optional,
[0451] m=0 indicates that the reporting method of this measurement report is event-triggered reporting based on the second mode;
[0452] m=1 indicates that the measurement report is submitted in a non-event-triggered manner;
[0453] m=2 indicates that the reporting method of this measurement report is event-triggered reporting based on the first mode.
[0454] The correspondence between the value of m and the reporting method of the measurement report is shown in Table 15 below:
[0455] Table 15
[0456] Optionally, k=0 must be restricted to support only reporting of L1-RSRP or L1-SINR and / or event information when one or more of the following conditions are met:
[0457] 1) The value of m is used to indicate the triggering method of the measurement report and the reporting mode of the event-triggered report;
[0458] 2) The value of m indicates whether the measurement report is reported in the first mode of event-triggered reporting or the second mode of event-triggered reporting.
[0459] Optionally, under one or more of the following conditions, k=0 indicates reporting carrying L1-RSRP or L1-SINR, and k=1 indicates CSI reporting without carrying L1-RSRP or L1-SINR:
[0460] 1) The value of m is used to indicate the triggering method of the measurement report and the reporting mode of the event-triggered report;
[0461] 2) The value of m indicates that the reporting method of this measurement report is non-event triggered reporting.
[0462] Optionally, y needs to be restricted to indicate the reporting type of event-triggered reporting based on the first mode when one or more of the following conditions are met. The value of y can be 0 or 1. The value of y is used to indicate either event-triggered reporting based on the first mode via PUSCH or event-triggered reporting based on the first mode via PUCCH. The value corresponding to different reporting methods is different:
[0463] 1) The value of m is used to indicate the triggering method of the measurement report and the reporting mode of the event-triggered report;
[0464] 2) The value of m indicates that the reporting method of the measurement report is event-triggered reporting based on the first mode.
[0465] Optionally, y needs to be restricted to indicate the reporting type of event-triggered reporting based on the second mode when one or more of the following conditions are met. The value of y can be 0 or 1. The value of y is used to indicate either event-triggered reporting based on the second mode via PUSCH or event-triggered reporting based on the second mode via PUCCH. The value corresponding to different reporting methods is different:
[0466] 1) The value of m is used to indicate the triggering method of the measurement report and the reporting mode of the event-triggered report;
[0467] 2) The value of m indicates that the reporting method of the measurement report is event-triggered reporting based on the second mode.
[0468] Optionally, y may be restricted to indicate the reporting mode for non-event-triggered reporting when one or more of the following conditions are met: y = 0 indicates non-periodic CSI reporting via PUSCH, y = 1 indicates semi-persistent CSI reporting via PUSCH, y = 2 indicates semi-persistent CSI reporting via PUCCH, and y = 3 indicates periodic CSI reporting via PUCCH.
[0469] 1) The value of m is used to indicate the triggering method of the measurement report and the reporting mode of the event-triggered report;
[0470] 2) The value of m indicates that the reporting method of this measurement report is non-event triggered reporting.
[0471] Specifically, the value of m can also be used to indicate the triggering method of the measurement report, the reporting mode of the event-triggered report, and the reporting type of the event-triggered report based on the first mode.
[0472] Optional,
[0473] m=0 indicates that the measurement report is being submitted via non-event-triggered reporting;
[0474] m=1 indicates that the measurement report is reported via PUSCH event triggering based on the first mode;
[0475] m=2 indicates that the measurement report is reported via event-triggered reporting through PUCCH based on the first mode;
[0476] m=3 indicates that the measurement report is submitted via event triggering based on the second mode.
[0477] The correspondence between the value of m and the reporting method of the measurement report is shown in Table 16 below:
[0478] Table 16
[0479] Optional,
[0480] m=0 indicates that the measurement report is being submitted via non-event-triggered reporting;
[0481] m=1 indicates that the measurement report is reported via event-triggered reporting through PUCCH based on the first mode;
[0482] m=2 indicates that the measurement report is reported in the first mode via PUSCH event triggering.
[0483] m=3 indicates that the measurement report is submitted via event triggering based on the second mode.
[0484] The correspondence between the value of m and the reporting method of the measurement report is shown in Table 17 below:
[0485] Table 17
[0486] Optional,
[0487] m=0 indicates that the measurement report is reported in the first mode via PUSCH event triggering.
[0488] m=1 indicates that the measurement report is submitted in a non-event-triggered manner;
[0489] m=2 indicates that the measurement report is reported via event-triggered reporting through PUCCH based on the first mode;
[0490] m=3 indicates that the measurement report is submitted via event triggering based on the second mode.
[0491] The correspondence between the value of m and the reporting method of the measurement report is shown in Table 18 below:
[0492] Table 18
[0493] Optional,
[0494] m=0 indicates that the measurement report is reported in the first mode via PUSCH event triggering.
[0495] m=1 indicates that the measurement report is reported via event-triggered reporting through PUCCH based on the first mode;
[0496] m=2 indicates that the measurement report is submitted in a non-event-triggered manner;
[0497] m=3 indicates that the measurement report is submitted via event triggering based on the second mode.
[0498] The correspondence between the value of m and the reporting method of the measurement report is shown in Table 19 below:
[0499] Table 19
[0500] Specifically, the value of m can also be used to indicate the triggering method of measurement reports, the reporting mode of event-triggered reporting, and the reporting type of event-triggered reporting based on the second mode.
[0501] Optional,
[0502] m=0 indicates that the measurement report is being submitted via non-event-triggered reporting;
[0503] m=1 indicates that the reporting method of this measurement report is event-triggered reporting based on the first mode;
[0504] m=2 indicates that the measurement report is reported via PUSCH event triggering based on the second mode;
[0505] m=3 indicates that the measurement report is reported via event-triggered reporting through PUCCH based on the second mode.
[0506] The correspondence between the value of m and the reporting method of the measurement report is shown in Table 20 below:
[0507] Table 20
[0508] Optional,
[0509] m=0 indicates that the measurement report is being submitted via non-event-triggered reporting;
[0510] m=1 indicates that the reporting method of this measurement report is event-triggered reporting based on the first mode;
[0511] m=2 indicates that the measurement report is reported via event-triggered reporting through PUCCH based on the second mode;
[0512] m=3 indicates that the measurement report is reported via PUSCH event triggering based on the second mode.
[0513] The correspondence between the value of m and the reporting method of the measurement report is shown in Table 21 below:
[0514] Table 21
[0515] Optional,
[0516] m=0 indicates that the reporting method of this measurement report is event-triggered reporting based on the first mode;
[0517] m=1 indicates that the measurement report is submitted in a non-event-triggered manner;
[0518] m=2 indicates that the measurement report is reported via PUSCH event triggering based on the second mode;
[0519] m=3 indicates that the measurement report is reported via event-triggered reporting through PUCCH based on the second mode.
[0520] The correspondence between the value of m and the reporting method of the measurement report is shown in Table 22 below:
[0521] Table 22
[0522] Optionally, k=0 must be restricted to support only reporting of L1-RSRP or L1-SINR and / or event information when one or more of the following conditions are met:
[0523] 1) The value of m is used to indicate the triggering method of the measurement report, the reporting mode of the event-triggered reporting, and the reporting type of the event-triggered reporting based on the first mode;
[0524] 2) The value of m is used to indicate the triggering method of the measurement report, the reporting mode of the event-triggered reporting, and the reporting type of the event-triggered reporting based on the second mode;
[0525] 3) The value of m represents the event-triggered reporting based on the first mode, the event-triggered reporting based on the second mode via PUCCH, or the event-triggered reporting based on the second mode via PUSCH.
[0526] 4) The value of m represents the event-triggered reporting based on the first mode via PUSCH, the event-triggered reporting based on the first mode via PUCCH, or the event-triggered reporting based on the second mode.
[0527] 5) Event-triggered reporting based on the first mode includes only one type of event-triggered reporting, namely event-triggered reporting via PUSCH based on the first mode or event-triggered reporting via PUCCH based on the first mode.
[0528] 6) Event-triggered reporting based on the second mode includes only one type of event-triggered reporting, namely event-triggered reporting via PUSCH based on the second mode or event-triggered reporting via PUCCH based on the second mode.
[0529] Optionally, under one or more of the following conditions, k=0 indicates reporting carrying L1-RSRP or L1-SINR, and k=1 indicates CSI reporting without carrying L1-RSRP or L1-SINR:
[0530] 1) The value of m is used to indicate the triggering method of the measurement report, the reporting mode of the event-triggered reporting, and the reporting type of the event-triggered reporting based on the first mode;
[0531] 2) The value of m is used to indicate the triggering method of the measurement report, the reporting mode of the event-triggered reporting, and the reporting type of the event-triggered reporting based on the second mode;
[0532] 3) The value of m indicates that the reporting method of this measurement report is non-event triggered reporting.
[0533] 4) Event-triggered reporting based on the first mode includes only one type of event-triggered reporting, namely event-triggered reporting via PUSCH based on the first mode or event-triggered reporting via PUCCH based on the first mode.
[0534] 5) Event-triggered reporting based on the second mode only includes one type of event-triggered reporting, namely event-triggered reporting via PUSCH based on the second mode or event-triggered reporting via PUCCH based on the second mode.
[0535] Optionally, y may be restricted to indicate the reporting mode for non-event-triggered reporting when one or more of the following conditions are met: y = 0 indicates non-periodic CSI reporting via PUSCH, y = 1 indicates semi-persistent CSI reporting via PUSCH, y = 2 indicates semi-persistent CSI reporting via PUCCH, and y = 3 indicates periodic CSI reporting via PUCCH.
[0536] 1) The value of m is used to indicate the triggering method of the measurement report, the reporting mode of the event-triggered reporting, and the reporting type of the event-triggered reporting based on the first mode;
[0537] 2) The value of m is used to indicate the triggering method of the measurement report, the reporting mode of the event-triggered reporting, and the reporting type of the event-triggered reporting based on the second mode;
[0538] 3) The value of m indicates that the reporting method of this measurement report is non-event-triggered reporting;
[0539] 4) Event-triggered reporting based on the first mode only includes one type of event-triggered reporting, namely event-triggered reporting via PUSCH based on the first mode or event-triggered reporting via PUCCH based on the first mode.
[0540] 5) Event-triggered reporting based on the second mode only includes one type of event-triggered reporting, namely event-triggered reporting via PUSCH based on the second mode or event-triggered reporting via PUCCH based on the second mode.
[0541] Specifically, the value of m can also be used to indicate the triggering method of measurement reports, the reporting mode of event-triggered reporting, the reporting type of event-triggered reporting based on the first mode, and the reporting type of event-triggered reporting based on the second mode.
[0542] Optional,
[0543] m=0 indicates that the measurement report is being submitted via non-event-triggered reporting;
[0544] m=1 indicates that the measurement report is reported via PUSCH event triggering based on the first mode;
[0545] m=2 indicates that the measurement report is reported via event-triggered reporting through PUCCH based on the first mode;
[0546] m=3 indicates that the measurement report is reported via PUSCH event triggering based on the second mode;
[0547] m=4 indicates that the measurement report is reported via event-triggered reporting through PUCCH based on the second mode.
[0548] The correspondence between the value of m and the reporting method of the measurement report is shown in Table 23 below:
[0549] Table 23
[0550] Optional,
[0551] m=0 indicates that the measurement report is reported in the first mode via PUSCH event triggering.
[0552] m=1 indicates that the measurement report is reported via event-triggered reporting through PUCCH based on the first mode;
[0553] m=2 indicates that the measurement report is submitted in a non-event-triggered manner;
[0554] m=3 indicates that the measurement report is reported via PUSCH event triggering based on the second mode;
[0555] m=4 indicates that the measurement report is reported via event-triggered reporting through PUCCH based on the second mode.
[0556] The correspondence between the value of m and the reporting method of the measurement report, the reporting mode of the event-triggered report, and the reporting type of the event-triggered report is shown in Table 24 below:
[0557] Table 24
[0558] Optional,
[0559] m=0 indicates that the measurement report is reported via PUSCH event triggering based on the second mode;
[0560] m=1 indicates that the measurement report is reported via event-triggered reporting through PUCCH in the second mode;
[0561] m=2 indicates that the measurement report is submitted in a non-event-triggered manner;
[0562] m=3 indicates that the measurement report is reported in the first mode via PUSCH event triggering.
[0563] m=4 indicates that the measurement report is reported via event-triggered reporting through PUCCH based on the first mode.
[0564] The correspondence between the value of m and the reporting method of the measurement report is shown in Table 25 below:
[0565] Table 25
[0566] Optionally, k=0 must be restricted to support only reporting of L1-RSRP or L1-SINR and / or event information when one or more of the following conditions are met:
[0567] 1) The value of m is used to indicate the triggering method of the measurement report, the reporting mode of the event-triggered report, the reporting type of the event-triggered report based on the first mode, and the reporting type of the event-triggered report based on the second mode;
[0568] 2) The value of m represents the event-triggered reporting based on the first mode via PUSCH, the event-triggered reporting based on the first mode via PUCCH, the event-triggered reporting based on the second mode via PUCCH, or the event-triggered reporting based on the second mode via PUSCH.
[0569] Optionally, under one or more of the following conditions, it is necessary to restrict k=0 to indicate reporting carrying L1-RSRP or L1-SINR, and k=1 to indicate CSI reporting without carrying L1-RSRP or L1-SINR:
[0570] 1) The value of m is used to indicate the triggering method of the measurement report, the reporting mode of the event-triggered report, the reporting type of the event-triggered report based on the first mode, and the reporting type of the event-triggered report based on the second mode;
[0571] 2) The value of m indicates that the reporting method of this measurement report is non-event triggered reporting.
[0572] Optionally, y may be restricted to indicate the reporting mode for non-event-triggered reporting when one or more of the following conditions are met: y = 0 indicates non-periodic CSI reporting via PUSCH, y = 1 indicates semi-persistent CSI reporting via PUSCH, y = 2 indicates semi-persistent CSI reporting via PUCCH, and y = 3 indicates periodic CSI reporting via PUCCH.
[0573] 1) The value of m is used to indicate the triggering method of the measurement report, the reporting mode of the event-triggered report, the reporting type of the event-triggered report based on the first mode, and the reporting type of the event-triggered report based on the second mode;
[0574] 2) The value of m indicates that the reporting method of this measurement report is non-event triggered reporting.
[0575] It should be understood that there may be other correspondences between the value of m and the reporting method of the measurement report, but these are not specified here.
[0576] In another possible implementation, the first priority value could be: Pri iCSI (y,k,c,s)=2·N cells ·M s ·y+N cells ·M s ·k+M s ·c+s
[0577] Where, N cells M is the maximum number of cells served. s The maximum number of report configurations for measurement reports is specified. 'y' indicates any one of the following: the triggering method for the measurement report, the reporting mode for event-triggered reporting, the reporting mode for non-event-triggered reporting, the reporting type for event-triggered reporting based on the first mode, or the reporting type for event-triggered reporting based on the second mode. 'k' indicates the content of the measurement report, 'c' is the serving cell index, and 's' is the report configuration ID. The first priority parameter includes 'y' and / or 'k'. In this embodiment, the report configuration and the measurement report configuration can be interchanged.
[0578] It should be noted that N cells and M s It can be configured by the network device, determined by the network device based on the capability information reported by the terminal device, or specified by the protocol; no specific limitation is made here.
[0579] When the first priority parameter includes y, one possible implementation is as follows:
[0580] If the measurement report is reported using the event-triggered reporting method based on the first mode, then y is determined to be the first value;
[0581] If the measurement report is submitted via PUSCH's non-periodic CSI, then y is determined to be the second value;
[0582] If the measurement report is reported using the event-triggered reporting method based on the second mode, then y is determined to be the third value;
[0583] If the measurement report is submitted via PUSCH semi-continuous CSI, then y is determined to be the fourth value;
[0584] If the measurement report is submitted via PUCCH semi-continuous CSI submission, then y is determined to be the fifth value;
[0585] If the measurement report is submitted via periodic CSI reporting through PUCCH, then y is determined to be the sixth value.
[0586] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 26 below:
[0587] Table 26
[0588] Wherein, the first, second, third, fourth, fifth, and sixth values are all integers. Optionally, the first, second, third, fourth, fifth, and sixth values can be in the range of 0, 1, 2, 3, 4, and 5, and the first, second, third, fourth, fifth, and sixth values are not equal.
[0589] When the first priority parameter includes y, another possible implementation is:
[0590] If the measurement report is submitted via PUSCH's non-periodic CSI, then y is determined as the first value;
[0591] If the measurement report is reported via event triggering, then y is determined to be the second value;
[0592] If the measurement report is submitted via PUSCH semi-continuous CSI, then y is determined to be the third value;
[0593] If the measurement report is submitted via PUCCH semi-continuous CSI, then y is determined to be the fourth value;
[0594] If the measurement report is submitted via periodic CSI reporting through PUCCH, then y is determined to be the fifth value.
[0595] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 27 below:
[0596] Table 27
[0597] Wherein, the first, second, third, fourth, and fifth values are all integers. Optionally, the first, second, third, fourth, and fifth values can be in the range of 0, 1, 2, 3, and 4, and the first, second, third, fourth, and fifth values are not equal.
[0598] When the first priority parameter includes y, one possible implementation is as follows:
[0599] If the measurement report is reported via PUSCH event triggering based on the first mode, then y is determined to be the first value;
[0600] If the measurement report is reported via PUCCH event triggering based on the first mode, then y is determined to be the second value;
[0601] If the measurement report is submitted via PUSCH's non-periodic CSI, then y is determined to be the third value;
[0602] If the measurement report is reported using the event-triggered reporting method based on the second mode, then y is determined to be the fourth value;
[0603] If the measurement report is submitted via PUSCH semi-continuous CSI, then y is determined to be the fifth value;
[0604] If the measurement report is submitted via PUCCH semi-continuous CSI, then y is determined to be the sixth value;
[0605] If the measurement report is submitted via periodic CSI reporting through PUCCH, then y is determined to be the seventh value.
[0606] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 28 below:
[0607] Table 28
[0608] Wherein, the first, second, third, fourth, fifth, sixth, and seventh values are all integers. Optionally, the first, second, third, fourth, fifth, sixth, and seventh values can be in the range of 0, 1, 2, 3, 4, 5, and 6, and the first, second, third, fourth, fifth, sixth, and seventh values are not equal.
[0609] When the first priority parameter includes y, one possible implementation is as follows:
[0610] If the measurement report is reported using the event-triggered reporting method based on the first mode, then y is determined to be the first value;
[0611] If the measurement report is submitted via PUSCH's non-periodic CSI, then y is determined to be the second value;
[0612] If the measurement report is reported via PUSCH event triggering based on the second mode, then y is determined to be the third value;
[0613] If the measurement report is reported via PUCCH event triggering based on the second mode, then y is determined to be the fourth value;
[0614] If the measurement report is submitted via PUSCH semi-continuous CSI, then y is determined to be the fifth value;
[0615] If the measurement report is submitted via PUCCH semi-continuous CSI, then y is determined to be the sixth value;
[0616] If the measurement report is submitted via periodic CSI reporting through PUCCH, then y is determined to be the seventh value.
[0617] The correspondence between the values of y and the reporting modes of event-triggered reporting, non-event-triggered reporting, and event-triggered reporting types is shown in Table 29 below:
[0618] Table 29
[0619] Wherein, the first, second, third, fourth, fifth, sixth, and seventh values are all integers. Optionally, the first, second, third, fourth, fifth, sixth, and seventh values can be in the range of 0, 1, 2, 3, 4, 5, and 6, and the first, second, third, fourth, fifth, sixth, and seventh values are not equal.
[0620] When the first priority parameter includes y, one possible implementation is as follows:
[0621] If the measurement report is reported via PUSCH event triggering based on the first mode, then y is determined to be the first value;
[0622] If the measurement report is reported via PUCCH event triggering based on the first mode, then y is determined to be the second value;
[0623] If the measurement report is submitted via PUSCH's non-periodic CSI, then y is determined to be the third value;
[0624] If the measurement report is reported via PUSCH event triggering based on the second mode, then y is determined to be the fourth value;
[0625] If the measurement report is reported via PUCCH event triggering based on the second mode, then y is determined to be the fifth value;
[0626] If the measurement report is submitted via PUSCH semi-continuous CSI, then y is determined to be the sixth value.
[0627] If the measurement report is submitted via PUCCH semi-continuous CSI, then y is determined to be the seventh value;
[0628] If the measurement report is submitted via periodic CSI reporting through PUCCH, then y is determined to be the eighth value.
[0629] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 30 below:
[0630] Table 30
[0631] Wherein, the first to eighth values are all integers. Optionally, the range of the first to eighth values is 0, 1, 2, 3, 4, 5, 6 and 7, and the first, second, third, fourth, fifth, sixth, seventh and eighth values are not equal.
[0632] When the first priority parameter includes k
[0633] If the measurement report includes event information, then k is determined to be the ninth value;
[0634] If the measurement report includes L1-RSRP or L1-SINR but does not include event information, then k is determined to be the tenth value;
[0635] If the measurement report does not include any of the L1-RSRP, L1-SINR, or event information, then k is determined to be the eleventh value.
[0636] The ninth, tenth, and eleventh values are all integers. Optionally, the values of the ninth, tenth, and eleventh values can be 0, 1, and 2, and the values of the ninth, tenth, and eleventh values are not equal.
[0637] When the first priority parameter includes y and k, one possible implementation is as follows:
[0638] If the measurement report is reported via PUSCH non-periodic CSI reporting or event-triggered reporting based on the first mode, then y is determined to be the first value;
[0639] If the measurement report is submitted via PUSCH semi-continuous CSI, then y is determined to be the second value;
[0640] If the measurement report is submitted via PUCCH semi-continuous CSI, then y is determined to be the third value;
[0641] If the measurement report is reported via periodic CSI reporting through PUCCH or event-triggered reporting based on the second mode, then y is determined to be the fourth value.
[0642] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 31 below:
[0643] Table 31
[0644] The first, second, third, and fourth values are all integers. Optionally, the first, second, third, and fourth values can be in the range of 0, 1, 2, and 3, and the first, second, third, and fourth values cannot be equal.
[0645] When the first priority parameter includes y and k, one possible implementation is as follows:
[0646] If the measurement report is reported via PUSCH non-periodic CSI reporting or event-triggered reporting based on the first mode, then y is determined to be the first value;
[0647] If the measurement report is reported via PUSCH semi-continuous CSI reporting or event-triggered reporting based on the second mode, then y is determined to be the second value.
[0648] If the measurement report is submitted via PUCCH semi-continuous CSI, then y is determined to be the third value;
[0649] If the measurement report is submitted via periodic CSI reporting through PUCCH, then y is determined to be the fourth value.
[0650] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 32 below:
[0651] Table 32
[0652] Wherein, the first, second, third, and fourth values are all integers. Optionally, the first, second, third, and fourth values can take values of 0, 1, 2, and 3, and the first, second, third, and fourth values cannot be equal.
[0653] When the first priority parameter includes y and k, one possible implementation is as follows:
[0654] If the measurement report is reported via PUSCH non-periodic CSI reporting or event-triggered reporting based on the first mode, then y is determined to be the first value;
[0655] If the measurement report is submitted via PUSCH semi-continuous CSI, then y is determined to be the second value;
[0656] If the measurement report is reported via PUCCH semi-continuous CSI reporting or event-triggered reporting based on the second mode, then y is determined to be the third value;
[0657] If the measurement report is submitted via periodic CSI reporting through PUCCH, then y is determined to be the fourth value.
[0658] The correspondence between the values of y and the reporting methods of the measurement report is shown in Table 33 below:
[0659] Table 33
[0660] Wherein, the first, second, third, and fourth values are all integers. Optionally, the first, second, third, and fourth values can take values of 0, 1, 2, and 3, and the first, second, third, and fourth values cannot be equal.
[0661] When the first priority parameter includes y and k, another possible implementation is:
[0662] If the measurement report is reported via PUSCH non-periodic CSI reporting or event-triggered reporting based on the first mode, then y is determined to be the first value;
[0663] If the measurement report is reported via semi-continuous CSI via PUSCH, or via event-triggered reporting via PUSCH based on the second mode, then y is determined to be the second value.
[0664] If the measurement report is reported via semi-continuous CSI via PUCCH, or via event-triggered reporting via PUCCH based on the second mode, then y is determined to be the third value;
[0665] If the measurement report is submitted via periodic CSI reporting through PUCCH, then y is determined to be the fourth value.
[0666] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 34 below:
[0667] Table 34
[0668] The first, second, third, and fourth values are all integers. Optionally, the first, second, third, and fourth values can be in the range of 0, 1, 2, and 3, and the first, second, third, and fourth values cannot be equal.
[0669] When the first priority parameter includes y and k, another possible implementation is:
[0670] If the measurement report is reported via non-periodic CSI through PUSCH, or via event-triggered reporting through PUSCH based on the first mode, then y is determined to be the first value.
[0671] If the measurement report is reported via semi-continuous CSI via PUSCH, or via event-triggered reporting via PUCCH based on the first mode, then y is determined to be the second value.
[0672] If the measurement report is submitted via PUCCH semi-continuous CSI, then y is determined to be the third value;
[0673] If the measurement report is reported via periodic CSI reporting through PUCCH or event-triggered reporting based on the second mode, then y is determined to be the fourth value.
[0674] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 35 below:
[0675] Table 35
[0676] The first, second, third, and fourth values are all integers. Optionally, the first, second, third, and fourth values can be in the range of 0, 1, 2, and 3, and the first, second, third, and fourth values cannot be equal.
[0677] When the first priority parameter includes y and k, another possible implementation is:
[0678] If the measurement report is reported via non-periodic CSI through PUSCH, or via event-triggered reporting through PUSCH based on the first mode, then y is determined to be the first value.
[0679] If the measurement report is reported via semi-continuous CSI via PUSCH, or via event-triggered reporting via PUCCH based on the first mode, then y is determined to be the second value.
[0680] If the measurement report is reported via semi-continuous CSI via PUCCH, or via event-triggered reporting via PUSCH based on the second mode, then y is determined to be the third value.
[0681] If the measurement report is reported via periodic CSI reporting through PUCCH, or via event-triggered reporting through PUCCH based on the second mode, then y is determined to be the fourth value.
[0682] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 36 below:
[0683] Table 36
[0684] The first, second, third, and fourth values are all integers. Optionally, the first, second, third, and fourth values can be in the range of 0, 1, 2, and 3, and the first, second, third, and fourth values cannot be equal.
[0685] The following descriptions are based on different cases of the first priority parameter:
[0686] 1) The first priority parameter is y;
[0687] In one possible implementation, y is used to indicate any one of the following: event-triggered reporting based on the first mode, event-triggered reporting based on the second mode, aperiodic CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUCCH, or periodic CSI reporting via PUCCH.
[0688] Specifically, the value of y can be any integer from 0 to 5, and the corresponding value is different for different reporting methods.
[0689] Optional,
[0690] y = 0 indicates that the reporting method of this measurement report is event-triggered reporting based on the first mode;
[0691] y = 1 indicates that the measurement report is submitted via PUSCH's non-periodic CSI reporting method;
[0692] y=2 indicates that the reporting method of this measurement report is event-triggered reporting based on the second mode;
[0693] y=3 indicates that the measurement report is submitted via PUSCH semi-continuous CSI reporting;
[0694] y=4 indicates that the measurement report is submitted via PUCCH semi-continuous CSI reporting;
[0695] y=5 indicates that the measurement report is submitted via periodic CSI reporting through PUCCH.
[0696] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 37 below:
[0697] Table 37
[0698] Optional,
[0699] y = 0 indicates that the reporting method of this measurement report is event-triggered reporting based on the first mode;
[0700] y = 1 indicates that the measurement report is submitted via PUSCH's non-periodic CSI reporting method;
[0701] y=2 indicates that the measurement report is submitted via PUSCH semi-continuous CSI reporting;
[0702] y=3 indicates that the measurement report is submitted via PUCCH semi-continuous CSI reporting;
[0703] y=4 indicates that the reporting method of this measurement report is event-triggered reporting based on the second mode;
[0704] y=5 indicates that the measurement report is submitted via periodic CSI reporting through PUCCH.
[0705] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 38 below:
[0706] Table 38
[0707] Optional,
[0708] y = 0 indicates that the measurement report is submitted via PUSCH's non-periodic CSI reporting method;
[0709] y=1 indicates that the reporting method of this measurement report is event-triggered reporting based on the first mode;
[0710] y=2 indicates that the measurement report is submitted via PUSCH semi-continuous CSI reporting;
[0711] y=3 indicates that the measurement report is submitted via PUCCH semi-continuous CSI reporting;
[0712] y=4 indicates that the reporting method of this measurement report is event-triggered reporting based on the second mode;
[0713] y=5 indicates that the measurement report is submitted via periodic CSI reporting through PUCCH.
[0714] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 39 below:
[0715] Table 39
[0716] Optional,
[0717] y = 0 indicates that the measurement report is submitted via PUSCH's non-periodic CSI reporting method;
[0718] y=1 indicates that the reporting method of this measurement report is event-triggered reporting based on the first mode;
[0719] y=2 indicates that the reporting method of this measurement report is event-triggered reporting based on the second mode;
[0720] y=3 indicates that the measurement report is submitted via PUSCH semi-continuous CSI reporting;
[0721] y=4 indicates that the measurement report is submitted via PUCCH semi-continuous CSI reporting;
[0722] y=5 indicates that the measurement report is submitted via periodic CSI reporting through PUCCH.
[0723] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 40 below:
[0724] Table 40
[0725] Optional,
[0726] y = 0 indicates that the measurement report is being submitted using the second mode of event-triggered reporting.
[0727] y = 1 indicates that the measurement report is submitted via PUSCH's non-periodic CSI reporting method;
[0728] y=2 indicates that the reporting method of this measurement report is event-triggered reporting based on the first mode;
[0729] y=3 indicates that the measurement report is submitted via PUSCH semi-continuous CSI reporting;
[0730] y=4 indicates that the measurement report is submitted via PUCCH semi-continuous CSI reporting;
[0731] y=5 indicates that the measurement report is submitted via periodic CSI reporting through PUCCH.
[0732] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 41 below:
[0733] Table 41
[0734] Optional,
[0735] y = 0 indicates that the measurement report is being submitted using the second mode of event-triggered reporting.
[0736] y = 1 indicates that the measurement report is submitted via PUSCH's non-periodic CSI reporting method;
[0737] y=2 indicates that the measurement report is submitted via PUSCH semi-continuous CSI reporting;
[0738] y=3 indicates that the measurement report is submitted via PUCCH semi-continuous CSI reporting;
[0739] y=4 indicates that the reporting method of this measurement report is event-triggered reporting based on the first mode;
[0740] y=5 indicates that the measurement report is submitted via periodic CSI reporting through PUCCH.
[0741] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 42 below:
[0742] Table 42
[0743] Optional,
[0744] y = 0 indicates that the measurement report is submitted via PUSCH's non-periodic CSI reporting method;
[0745] y=1 indicates that the reporting method of this measurement report is event-triggered reporting based on the second mode;
[0746] y=2 indicates that the measurement report is submitted via PUSCH semi-continuous CSI reporting;
[0747] y=3 indicates that the measurement report is submitted via PUCCH semi-continuous CSI reporting;
[0748] y=4 indicates that the reporting method of this measurement report is event-triggered reporting based on the first mode;
[0749] y=5 indicates that the measurement report is submitted via periodic CSI reporting through PUCCH.
[0750] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 43 below:
[0751] Table 43
[0752] In another possible implementation, y is used to indicate any one of the following: event-triggered reporting, aperiodic CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUCCH, or periodic CSI reporting via PUCCH.
[0753] Specifically, the value of y can be any integer from 0 to 4, and the corresponding value is different for different reporting methods.
[0754] Optional,
[0755] y = 0 indicates that the measurement report is submitted via PUSCH's non-periodic CSI reporting method;
[0756] y = 1 indicates that the measurement report is being submitted via event-triggered reporting.
[0757] y=2 indicates that the measurement report is submitted via PUSCH semi-continuous CSI reporting;
[0758] y=3 indicates that the measurement report is submitted via PUCCH semi-continuous CSI reporting;
[0759] y=4 indicates that the measurement report is submitted via periodic CSI reporting through PUCCH.
[0760] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 44 below:
[0761] Table 44
[0762] Optional,
[0763] y = 0 indicates that the measurement report is submitted via PUSCH's non-periodic CSI reporting method;
[0764] y=1 indicates that the measurement report is submitted via PUSCH semi-continuous CSI reporting;
[0765] y=2 indicates that the measurement report is submitted via PUCCH semi-continuous CSI reporting;
[0766] y=3 indicates that the measurement report is being submitted via event-triggered reporting;
[0767] y=4 indicates that the measurement report is submitted via periodic CSI reporting through PUCCH.
[0768] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 45 below:
[0769] Table 45
[0770] Optional,
[0771] y = 0 indicates that the measurement report is being submitted via event-triggered reporting.
[0772] y = 1 indicates that the measurement report is submitted via PUSCH's non-periodic CSI reporting method;
[0773] y=2 indicates that the measurement report is submitted via PUSCH semi-continuous CSI reporting;
[0774] y=3 indicates that the measurement report is submitted via PUCCH semi-continuous CSI reporting;
[0775] y=4 indicates that the measurement report is submitted via periodic CSI reporting through PUCCH.
[0776] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 46 below:
[0777] Table 46
[0778] Optional,
[0779] y = 0 indicates that the measurement report is reported via PUSCH event triggering based on the first mode;
[0780] y=1 indicates that the measurement report is reported via event-triggered reporting through PUCCH based on the first mode;
[0781] y = 2 indicates that the measurement report is submitted via PUSCH's non-periodic CSI reporting method;
[0782] y=3 indicates that the reporting method of this measurement report is event-triggered reporting based on the second mode;
[0783] y=4 indicates that the measurement report is submitted via PUSCH semi-continuous CSI reporting;
[0784] y=5 indicates that the measurement report is submitted via PUCCH semi-continuous CSI reporting;
[0785] y=6 indicates that the measurement report is submitted via periodic CSI reporting through PUCCH.
[0786] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 47 below:
[0787] Table 47
[0788] Optional,
[0789] y = 0 indicates that the reporting method of this measurement report is event-triggered reporting based on the first mode;
[0790] y = 1 indicates that the measurement report is submitted via PUSCH's non-periodic CSI reporting method;
[0791] y=2 indicates that the measurement report is reported via PUSCH event triggering based on the second mode;
[0792] y=3 indicates that the measurement report is reported via event-triggered reporting through PUCCH based on the second mode;
[0793] y=4 indicates that the measurement report is submitted via PUSCH semi-continuous CSI reporting;
[0794] y=5 indicates that the measurement report is submitted via PUCCH semi-continuous CSI reporting;
[0795] y=6 indicates that the measurement report is submitted via periodic CSI reporting through PUCCH.
[0796] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 48 below:
[0797] Table 48
[0798] Optional,
[0799] y = 0 indicates that the measurement report is reported via PUSCH event triggering based on the first mode;
[0800] y=1 indicates that the measurement report is reported via event-triggered reporting through PUCCH based on the first mode;
[0801] y = 2 indicates that the measurement report is submitted via PUSCH's non-periodic CSI reporting method;
[0802] y=3 indicates that the measurement report is reported via event-triggered reporting through PUSCH based on the second mode;
[0803] y=4 indicates that the measurement report is reported via event-triggered reporting through PUCCH in the second mode;
[0804] y=5 indicates that the measurement report is submitted via PUSCH semi-continuous CSI reporting;
[0805] y=6 indicates that the measurement report is submitted via PUCCH semi-continuous CSI reporting;
[0806] y=7 indicates that the measurement report is submitted via periodic CSI reporting through PUCCH.
[0807] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 49 below:
[0808] Table 49
[0809] Optional,
[0810] y=0 indicates that the measurement report is reported via PUSCH event triggering based on the second mode;
[0811] y=1 indicates that the measurement report is reported via event-triggered reporting through PUCCH in the second mode;
[0812] y = 2 indicates that the measurement report is submitted via PUSCH's non-periodic CSI reporting method;
[0813] y=3 indicates that the measurement report is reported in the first mode via PUSCH event triggering.
[0814] y=4 indicates that the measurement report is reported via event-triggered reporting through PUCCH based on the first mode;
[0815] y=5 indicates that the measurement report is submitted via PUSCH semi-continuous CSI reporting;
[0816] y=6 indicates that the measurement report is submitted via PUCCH semi-continuous CSI reporting;
[0817] y=7 indicates that the measurement report is submitted via periodic CSI reporting through PUCCH.
[0818] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 50 below:
[0819] Table 50
[0820] It should be understood that there may be other correspondences between the value of y and the reporting method of the measurement report, but these are not specified here.
[0821] Optionally, when the first priority parameter is y, the value of k can be as shown in Table 51 below:
[0822] Table 51
[0823] 2) The first priority parameter is k;
[0824] In one possible implementation, k is used to indicate the content of the measurement report. The content of the measurement report may include event information, L1-RSRP, or L1-SINR.
[0825] Optional,
[0826] k=0 indicates that the reported content of the measurement report includes event information;
[0827] k=1 indicates that the measurement report includes L1-RSRP or L1-SINR but does not include event information;
[0828] k=2 indicates that the reported content of the measurement report does not include any of the L1-RSRP, L1-SINR, or event information.
[0829] The correspondence between the values of k and the content reported in the measurement report is shown in Table 52 below:
[0830] Table 52
[0831] Optional,
[0832] k=0 indicates that the measurement report includes L1-RSRP or L1-SINR but does not include event information;
[0833] k=1 indicates that the reported content of the measurement report includes event information;
[0834] k=2 indicates that the reported content of the measurement report does not include any of the L1-RSRP, L1-SINR, or event information.
[0835] The correspondence between the values of k and the content reported in the measurement report is shown in Table 53 below:
[0836] Table 53
[0837] It should be noted that when the first priority parameter is k, the value of k can also be determined according to Tables 51, 52 and 53 above, and no specific limit is made here.
[0838] 3) The first priority parameters include y and k;
[0839] In one possible implementation, k is used to indicate the content of the measurement report, and y is used to indicate any one of the following: event-triggered reporting based on the first mode, event-triggered reporting based on the second mode, event-triggered reporting based on the second mode via PUSCH, event-triggered reporting based on the second mode via PUCCH, non-periodic CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUCCH, or periodic CSI reporting via PUCCH.
[0840] Optional,
[0841] k=0 indicates that the reported content of the measurement report includes event information;
[0842] k=1 indicates that the measurement report includes L1-RSRP or L1-SINR but does not include event information;
[0843] k=2 indicates that the reported content of the measurement report does not include any of the L1-RSRP, L1-SINR, or event information.
[0844] or,
[0845] k=0 indicates that the measurement report includes L1-RSRP or L1-SINR but does not include event information;
[0846] k=1 indicates that the reported content of the measurement report includes event information;
[0847] k=2 indicates that the reported content of the measurement report does not include any of the L1-RSRP, L1-SINR, or event information.
[0848] at this time,
[0849] y = 0 indicates that the measurement report is submitted via PUSCH non-periodic CSI reporting or event-triggered reporting based on the first mode;
[0850] y=1 indicates that the measurement report is submitted via PUSCH semi-continuous CSI reporting;
[0851] y=2 indicates that the measurement report is submitted via PUCCH semi-continuous CSI reporting;
[0852] y=3 indicates that the measurement report is submitted via periodic CSI reporting through PUCCH or event-triggered reporting based on the second mode.
[0853] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 54 below:
[0854] Table 54
[0855] It should be noted that y = 0 indicates that the measurement report is submitted via PUSCH aperiodic CSI reporting or event-triggered reporting based on the first mode. This can be understood as the first value corresponding to event-triggered reporting based on the first mode and the second value corresponding to aperiodic CSI reporting via PUSCH being the same value, i.e., both the first and second values are 0. Similarly, y = 3 indicates that the measurement report is submitted via PUCCH periodic CSI reporting or event-triggered reporting based on the second mode. This can be understood as the third value corresponding to event-triggered reporting based on the second mode and the sixth value corresponding to periodic CSI reporting via PUCCH being the same value, i.e., both the third and sixth values are 3. Specific details are not specified here.
[0856] Optional,
[0857] k=0 indicates that the reported content of the measurement report includes event information;
[0858] k=1 indicates that the measurement report includes L1-RSRP or L1-SINR but does not include event information;
[0859] k=2 indicates that the reported content of the measurement report does not include any of the L1-RSRP, L1-SINR, or event information.
[0860] or,
[0861] k=0 indicates that the measurement report includes L1-RSRP or L1-SINR but does not include event information;
[0862] k=1 indicates that the reported content of the measurement report includes event information;
[0863] k=2 indicates that the reported content of the measurement report does not include any of the L1-RSRP, L1-SINR, or event information.
[0864] at this time,
[0865] y = 0 indicates that the measurement report is submitted via PUSCH non-periodic CSI reporting or event-triggered reporting based on the first mode;
[0866] y=1 indicates that the measurement report is reported via semi-persistent CSI via PUSCH or via event-triggered reporting via PUSCH based on the second mode;
[0867] y=2 indicates that the measurement report is reported via semi-persistent CSI via PUCCH or via event-triggered reporting via PUCCH based on the second mode;
[0868] y=3 indicates that the measurement report is submitted via periodic CSI reporting through PUCCH.
[0869] The correspondence between the values of y and the reporting methods of the measurement reports is shown in Table 55 below:
[0870] Table 55
[0871] It should be noted that when y represents the reporting triggered by an event, k must be restricted to not being 2.
[0872] Of all the methods mentioned above, optionally, if the reports corresponding to event-triggered reporting and non-event-triggered reporting are configured with a unified number, i.e., report configuration index 0, 1, ... M, then... s -1 corresponds to the report configuration for all event-triggered and non-event-triggered reporting. Therefore, in the above formula, M... s The maximum number of event-triggered reporting configurations and the maximum number of non-event-triggered reporting configurations for a given cell can also be understood as M. s This corresponds to the maximum number of CSI reports configured for a given cell (i.e., event-triggered reporting configured via traditional CSI-reportConfig). The value of 's' above ranges from 0, 1, ..., M. s -1 corresponds to the index or report configuration ID of Ms report configurations. In this embodiment, report configurations and measurement report configurations can be interchanged.
[0873] Optionally, among all the above methods, if event-triggered reporting and non-event-triggered reporting are configured with independent numbering, for example, the maximum number of event-triggered reporting configurations for a cell is M. e Then the configuration index for event triggering and reporting corresponds to 0, 1, ... M. e -1; The maximum number of non-event reporting configurations for this cell is M. k Then the configuration index for non-event reporting corresponds to 0, 1, ... M. k -1. Therefore, the values of Ms and the range of values of s can be determined according to at least one of the following implementation methods:
[0874] In one possible implementation, M s =M e +M k s can be determined in at least one of the following ways:
[0875] When the value of m indicates that the measurement report is reported via event triggering, then the value of s ranges from 0, 1, ..., M. e -1; When the value of m represents the non-event-triggered reporting method of the measurement report, then the value of s ranges from 0, 1, ..., M.k -1.
[0876] When the value of y represents the event-triggered reporting method of the measurement report, then the value range of s is 0, 1, ..., M. e -1; When the value of y represents a non-event-triggered reporting method for the measurement report, then the value of s ranges from 0, 1, ..., M. k -1.
[0877] When the value of k represents the content of the measurement report that includes event information, then the value of s ranges from 0, 1, ..., M. e -1; when the value of k represents a measurement report that does not include event information, then the value of s ranges from 0, 1, ..., M. k -1.
[0878] In another possible implementation, M s =M e +M k s can be determined in at least one of the following ways:
[0879] When the value of m represents the event-triggered reporting method of the measurement report, then the value range of s is 0, 1, ..., M. e -1; When the value of m represents the non-event-triggered reporting method of the measurement report, then the range of s is M. e M e +1,...M e +M k -1.
[0880] Alternatively, when the value of m represents the reporting method of the measurement report as event-triggered reporting, then the range of values for s is M. k M k +1,...M k +M e -1; When the value of m represents the non-event-triggered reporting method of the measurement report, then the value of s ranges from 0, 1, ..., M. k -1.
[0881] When the value of y represents the event-triggered reporting method of the measurement report, then the value range of s is 0, 1, ..., M. e -1; when the value of y represents a non-event-triggered reporting method for the measurement report, then the range of s is M. e M e +1,...M e +M k -1.
[0882] Alternatively, when the value of y represents the reporting method of the measurement report as event-triggered reporting, then the range of values for s is M. k M k +1,...M k +M e -1; When the value of y represents a non-event-triggered reporting method for the measurement report, then the value of s ranges from 0, 1, ..., M. k -1.
[0883] When the value of k represents the content of the measurement report that includes event information, then the value of s ranges from 0, 1, ..., M. e -1; when the value of k represents a measurement report that does not include event information, then the range of s is M. e M e +1,...M e +M k -1.
[0884] Alternatively, when the value of k represents the content reported in the measurement report, including event information, then the range of values for s is M. k M k +1,...M k +M e -1; when the value of k represents a measurement report that does not include event information, then the value of s ranges from 0, 1, ..., M. k -1.
[0885] In this embodiment of the application, the terminal device determines a first priority value by determining a first priority parameter, so that the terminal device can determine the priority of the CSI report triggered by the event based on the first priority value, thereby enabling the terminal device to determine the transmission order between the CSI report triggered by the event and the traditional CSI report based on beam management.
[0886] It should be understood that the magnitude of the first priority value and the level of priority can be either negatively or positively correlated. Specifically, the smaller the first priority value of the measurement report, the higher the priority of the measurement report; conversely, the larger the first priority value of the measurement report, the higher the priority of the measurement report.
[0887] In another possible implementation, the terminal device can determine the reporting priority of the measurement report based on the measurement report priority configured in the network device.
[0888] For example, the network device configures M measurement report configurations for the terminal device, each corresponding to one of the M measurement reports. These M reports include X event-triggered measurement reports and Y non-event-triggered measurement reports, where X and Y are both integers greater than or equal to 0, and neither X nor Y is simultaneously 0. The network device can assign priorities to these M measurement reports. For instance, the X event-triggered measurement reports may include a first and a second measurement report, and the Y non-event-triggered measurement reports may include a third and a fourth measurement report. The network device assigns priorities to these four measurement reports such that the first measurement report has a higher priority than the third measurement report, the third measurement report has a higher priority than the second measurement report, and the second measurement report has a higher priority than the fourth measurement report.
[0889] Optionally, the network device can assign priorities to the M measurement reports by assigning priority values. That is, each of the M measurement reports is assigned a priority value, with different priority values corresponding to different priorities. For example, the lower the priority value, the higher the priority of the measurement report.
[0890] For example, the X event-triggered measurement reports include a first measurement report and a second measurement report, while the Y non-event-triggered measurement reports include a third measurement report and a fourth measurement report. The priority value ranges from 0, 1, 2, and 3, with different priority values for different measurement reports.
[0891] For example, the network device assigns a priority value of 0 to the first measurement report, a priority value of 2 to the second measurement report, a priority value of 1 to the third measurement report, and a priority value of 3 to the fourth measurement report. The lower the priority value, the higher the priority of the measurement report. Therefore, the priorities of these four measurement reports, from highest to lowest, are: first measurement report, third measurement report, second measurement report, and fourth measurement report.
[0892] Optionally, the network device can be configured with a priority list to assign priorities to the M measurement reports. That is, the priority list can be configured by sorting the M measurement reports by their corresponding configuration indices from highest to lowest priority, or by sorting the M measurement reports by their corresponding configuration indices from lowest to highest priority.
[0893] For example, the X event-triggered measurement reports include a first measurement report and a second measurement report, and the Y non-event-triggered measurement reports include a third measurement report and a fourth measurement report. The priority list includes the corresponding measurement report configuration indexes for M measurement reports, and the priority of the M measurement reports is determined according to the order of the measurement report indices in this list. For example, if the measurement report indices in the priority list, from first to last, correspond to the following measurement reports: first measurement report, third measurement report, second measurement report, and fourth measurement report, then the priority from highest to lowest is: first measurement report, third measurement report, second measurement report, and fourth measurement report. The reverse is also true.
[0894] When Y=0, it means that all M measurement reports of the network device are configured to be event-triggered, i.e., M=X. The network device can assign priorities to the X event-triggered measurement reports.
[0895] The above method of configuring network device priorities is only an example. In actual applications, network devices can also be assigned priorities in other ways, which are not limited here.
[0896] 703. The terminal device reports a measurement report to the network device, and the network device receives the measurement report from the terminal device accordingly.
[0897] Terminal devices report measurement reports to network devices according to reporting priorities. When multiple reporting resources conflict, terminal devices can determine which reports need to be reported or which need to be discarded based on reporting priorities, and reuse resources to report multiple measurement reports according to priority.
[0898] Optionally, the embodiment shown in FIG7 further includes step 700a. Step 700a may be performed before step 701.
[0899] 700a. The terminal device reports capability information to the network device, and the network device receives the capability information from the terminal device accordingly.
[0900] The capability information includes whether the terminal device supports event-triggered reporting; or whether the terminal device supports configuring both event-triggered reporting and traditional CSI reporting simultaneously.
[0901] In this context, "event" refers to an event related to a UE-initiated report, a measurement report initiated by the terminal device, a report (or measurement report) submitted after active measurement by the terminal device, or a specific condition related to an active measurement report submitted by the terminal device. For example, the terminal device may actively perform measurements (such as beam measurements or channel measurements) to obtain an event-related measurement report. Another example is that the terminal device may perform measurements based on reference signals according to the configuration of reference signal resources to obtain an event-related measurement report. Yet another example is that the terminal device actively performs measurements and submits an event-related measurement report when specific conditions are met. The event can also be referred to as any of the following: trigger event, layer 1 (L1) trigger event, CSI measurement report trigger event, beam measurement report trigger event, L1 CSI report trigger event, L1 beam measurement report trigger event, etc. The naming of these events is not limited in this embodiment.
[0902] Event-triggered reporting or reporting may be referred to as any of the following: event-related reporting or reporting, event-triggered or UE-initiated reporting or reporting, event-triggered or UE-initiated beam reporting or reporting, event-triggered or UE-initiated CSI report, event-triggered or UE-initiated beam measurement result report, event-triggered or UE-initiated interference measurement report, interference measurement report, CSI report, beam measurement result report, etc. Optionally, the capability information includes first indication information, which indicates whether the terminal device supports the capability of event-triggered reporting.
[0903] One possible implementation is that whether a terminal device supports event-triggered reporting is indicated by at least one bit. For example, suppose one bit is used to indicate whether the terminal device supports event-triggered reporting. For instance, if the bit is set to "0", it means the terminal device supports event-triggered reporting; if the bit is set to "1", it means the terminal device does not support event-triggered reporting. It should be understood that the above is merely an illustrative example and is not intended to be limiting.
[0904] Another possible implementation is to indicate whether the terminal device supports event-triggered reporting by reporting whether it does so. For example, if the terminal device does not report that it does not support event-triggered reporting, it can be assumed that the terminal device supports event-triggered reporting. Or, for example, if the terminal device does not report that it supports event-triggered reporting, it can be assumed that the terminal device does not support event-triggered reporting.
[0905] The above is an illustrative example, and the embodiments of this application are not limited thereto. For example, whether a terminal device supports the ability to trigger event reporting can also be indicated by a specific field. If the first indication information includes the specific field, it indicates that the terminal device supports the ability to trigger event reporting; if the first indication information does not include the specific field, it indicates that the terminal device does not support the ability to trigger event reporting.
[0906] Optionally, the capability information includes second indication information, which indicates whether the terminal device supports configuring both event-triggered reporting and non-event-triggered reporting capabilities simultaneously. The indication method of this second indication information can be similar to that of the first indication information, and will not be elaborated further here.
[0907] The above is an illustrative example, and the embodiments of this application are not limited thereto. The terminal device can indicate various information related to events supported by the terminal device to the network device.
[0908] Optionally, the embodiment shown in FIG7 further includes step 700b. Step 700b may be performed after step 700a.
[0909] 700b. The network device sends configuration information to the terminal device, and the terminal device receives the configuration information from the network device accordingly.
[0910] The network device sends configuration information to the terminal device to configure information related to event-triggered reporting. This configuration information can also be referred to as measurement report configuration. For example, the event-triggered reporting information is the event-triggered measurement report configuration, which can be CSI-reportConfig. This CSI-reportConfig contains an indication (e.g., reportConfigType is configured as EventTriggered) to indicate that the report is configured as an event-triggered measurement report configuration. Alternatively, the CSI-reportConfig may contain event-related information, such as the event index and the corresponding threshold, indicating that the report is configured as an event-triggered measurement report configuration. Or, the event-triggered measurement report configuration may be configured using a dedicated information element, such as L1-EventTriggered-CSI-ReportConfig. The naming of this element is not limited in this embodiment. Each CSI-reportConfig corresponds to one measurement report, or each event-triggered measurement report configuration corresponds to one measurement report. This configuration information also includes or is associated with one or more of the following:
[0911] 1) Community information;
[0912] Cell information is used to indicate the cell to which the measurement resource related to the event belongs. For example, cell information can be indicated by a serving cell index or identifier. This serving cell can be a primary cell (Pcell), a secondary cell (Scell), or a primary secondary cell (PScell). A Pcell can also be called a cell on a primary component carrier (PCC), and an Scell can be called a cell on a secondary component carrier (SCC). Another example is the indication of cell information through an additional physical cell identifier (PCI). This cell corresponds to a neighboring cell of the serving cell, and each neighboring cell can also correspond to a physical cell identifier (PCI), meaning there is a one-to-one correspondence between an additional PCI and a PCI. Cell information can also be indicated through a candidate cell index, a component carrier (CC) index, or a PCI.
[0913] 2) Event information (eventType);
[0914] Event information can also be referred to as event types, and the naming of these events is not limited in this application embodiment. Events configured by the network device for the terminal device, events specified by the protocol, and / or events reported by the terminal that are supported may include at least one of the following:
[0915] Event #1: There exists at least one new beam whose signal quality is greater than that of the serving beam, and the difference between the signal quality of the at least one new beam and the signal quality of the serving beam is greater than or equal to a first threshold value.
[0916] Optionally, the first item above can be replaced by the description that: there exists at least one new beam whose signal quality is greater than or equal to the signal quality of the serving beam, and the difference between the signal quality of the at least one new beam and the signal quality of the serving beam is greater than a first threshold value.
[0917] Event #2: There exists a new beam whose signal quality is greater than the second threshold.
[0918] Optionally, the second item above can be replaced by the description that: there exists at least one new beam whose signal quality is greater than or equal to the second threshold value.
[0919] Event #3: The signal quality of the serving beam is less than the third threshold, and there is at least one new beam whose signal quality is greater than the fourth threshold, and the fourth threshold is greater than or equal to the third threshold.
[0920] Optionally, the third item above can be replaced with the description: the signal quality of the serving beam is less than the third threshold, and there exists at least one new beam whose signal quality is greater than or equal to the fourth threshold, and the fourth threshold is greater than or equal to the third threshold. Alternatively, the signal quality of the serving beam is less than or equal to the third threshold, and there exists at least one new beam whose signal quality is greater than the fourth threshold, and the fourth threshold is greater than or equal to the third threshold. Alternatively, the signal quality of the serving beam is less than or equal to the third threshold, and there exists at least one new beam whose signal quality is greater than or equal to the fourth threshold, and the fourth threshold is greater than the third threshold. Alternatively, the signal quality of the serving beam is less than or equal to the third threshold, and there exists at least one new beam whose signal quality is greater than or equal to the fourth threshold, and the fourth threshold is greater than or equal to the third threshold.
[0921] Event #4: There exists at least one new beam whose signal quality is less than the fifth threshold value in absolute terms of the difference between the signal quality of the new beam and the signal quality of the serving beam.
[0922] Optionally, the fourth item above can be replaced by the description that: there exists at least one new beam whose signal quality is less than or equal to the signal quality of the serving beam, and the absolute value of the difference between the two is less than or equal to the fifth threshold value.
[0923] Event #5: The serving beam is not among the K best-quality new beams measured by the terminal device, where K is an integer greater than or equal to 1.
[0924] Event #6: There exists a new beam whose signal quality differs from the signal quality of the beam with the worst signal quality among the beams corresponding to the TCI state activated by the network device for the terminal device by the network device by a value greater than the sixth threshold.
[0925] Optionally, the sixth item above can be described as follows: there exists at least one new beam whose signal quality differs from the signal quality of the beam with the worst signal quality among the beams corresponding to the TCI state activated by the network device for the terminal device by the terminal device by a value greater than or equal to the sixth threshold value.
[0926] Event #7: There exists a new beam whose signal quality differs from the best-quality beam among the beams corresponding to the TCI state activated by the network device for the terminal device by a value greater than the seventh threshold.
[0927] Optionally, the seventh item above can be described as follows: the difference between the signal quality of one or more new beams and the signal quality of the beam with the best signal quality among the beams corresponding to the TCI state activated by the network device for the terminal device is greater than or equal to the seventh threshold value.
[0928] Event #8: There are at least two new beams whose signal quality differs from the serving beam's signal quality by more than the eighth threshold.
[0929] Optionally, the eighth item above can be described as: the difference between the signal quality of at least two new beams and the signal quality of the serving beam is greater than or equal to the eighth threshold value.
[0930] Event #9: The signal quality of at least one new beam is greater than the ninth threshold value of the beam corresponding to the reference signal configured for the terminal device.
[0931] Optionally, the ninth item above can be described as follows: the signal quality of one or more new beams is greater than or equal to the signal quality of the beam corresponding to the reference signal configured for the terminal device.
[0932] Event #10: The signal quality of the serving beam is less than the tenth threshold.
[0933] Optionally, the tenth item above can be replaced by the description: the signal quality of the serving beam is less than or equal to the tenth threshold value.
[0934] Event #11: The difference between the signal quality of the serving beam and the signal quality of the beam corresponding to the QCL resource associated with the QCL resource in the TCI state of the serving beam is less than the eleventh threshold.
[0935] Optionally, the eleventh item above can be replaced by the description that: the difference between the signal quality of the serving beam and the signal quality of the beam corresponding to the QCL resource associated with the QCL resource in the TCI state corresponding to the serving beam is less than or equal to the eleventh threshold.
[0936] It should be noted that the units corresponding to the first to eleventh thresholds can be dBm (decibels per milliwatt) or dB (decibels). The first to eleventh thresholds can be configured or indicated by the network device, or specified by the communication protocol; no specific limitation is made here.
[0937] For example, a network device might configure an event for a terminal device that states: at least one new beam has a signal quality greater than the serving beam's signal quality, and the difference between the signal quality of the at least one new beam and the serving beam is greater than or equal to a first threshold. When this event occurs, it indicates that at least one new beam has a signal quality greater than the first threshold of the serving beam's signal quality. A new beam that meets the conditions for this event can be understood as a new beam with a signal quality greater than the first threshold of the serving beam's signal quality.
[0938] Optionally, the one or more new beams may also include new beams that do not meet the conditions for the occurrence of an event configured by the network device for the terminal device. For example, the event configured by the network device for the terminal device is: the signal quality of at least one new beam is greater than the signal quality of the serving beam, and the difference between the signal quality of the at least one new beam and the signal quality of the serving beam is greater than or equal to a first threshold. The one or more new beams include new beams with signal quality less than that of the serving beam or new beams with signal quality not higher than the first threshold of the serving beam's signal quality. New beams with signal quality less than that of the serving beam or new beams with signal quality not higher than the first threshold of the serving beam's signal quality can be understood as new beams that do not meet the conditions for the occurrence of an event configured by the network device for the terminal device.
[0939] The following describes some possible implementations of one or more service beams in a terminal device. Other implementations are also applicable to this application and are not specifically limited here. Optionally, the service beam includes any of the following:
[0940] 1. The beam corresponding to the QCL type D reference signal in the TCI status indicated by the network device for the terminal device.
[0941] Optionally, the reference signal corresponding to the service beam can also be described as a reference signal. In this implementation, optionally, the reference signal is a QCL type D reference signal in the TCI state indicated by the network device to the terminal device.
[0942] Optionally, the reference signal corresponding to the serving beam can also be described as a serving beam measurement resource. In this implementation, optionally, the serving beam measurement resource is the reference signal resource corresponding to the QCL type D reference signal in the TCI state indicated by the network device to the terminal device.
[0943] 2. The beam corresponding to the SSB resource associated with the QCL type D reference signal in the TCI state indicated by the network device for the terminal device.
[0944] The SSB resource associated with the QCL type D reference signal in the TCI state indicated by the network device to the terminal device is an SSB resource that has a QCL relationship with the QCL type D reference signal. For example, this SSB resource is the source QCL resource in the QCL chain, and the source QCL resource is an SSB resource. This QCL chain is determined based on the QCL type D reference signal in the TCI state indicated by the network device to the terminal device. For example, the QCL resource corresponding to the QCL type D reference signal in the TCI state indicated by the network device to the terminal device is a CSI-RS resource. The QCL resource corresponding to the QCL type D reference signal in the TCI state corresponding to this CSI-RS resource is a TRS resource. The TCI state corresponding to this CSI-RS resource can be understood as the TCI state used by the network device when sending the CSI-RS corresponding to this CSI-RS resource. The QCL resource corresponding to the QCL type D reference signal in the TCI state corresponding to this TRS resource is an SSB resource. The TCI state corresponding to this TRS resource can be understood as the TCI state used by the network device when sending the TRS corresponding to this TRS resource. Therefore, it can be seen that the QCL resources corresponding to the QCL type D reference signal in the TCI state indicated by the network device to the terminal device (such as CSI-RS resources), the QCL resources corresponding to the QCL type D reference signal in the TCI state corresponding to the CSI-RS resource (such as TRS resources), and the QCL resources corresponding to the QCL type D reference signal in the TCI state corresponding to the TRS resource (such as SSB resources) constitute a QCL chain. The source QCL resource of this QCL chain is the SSB resource, that is, the SSB resource associated with the QCL type D reference signal in the TCI state indicated by the network device to the terminal device is this SSB resource.
[0945] Optionally, the reference signal corresponding to the service beam can also be described as a reference signal. In this implementation, optionally, the reference signal is the SSB associated with the QCL type D reference signal in the TCI state indicated by the network device to the terminal device.
[0946] Optionally, the reference signal corresponding to the serving beam can also be described as a serving beam measurement resource. In this implementation, the serving beam measurement resource can optionally be the SSB resource associated with the QCL type D reference signal in the TCI state indicated by the network device to the terminal device.
[0947] 3. The beam corresponding to the QCL type D reference signal in the downlink / common TCI state (DLorjointTCI-state) and uplink TCI state (UL TCI-state) of the current uplink and downlink transmission applications of the terminal equipment.
[0948] Optionally, the reference signal corresponding to the service beam can also be described as a reference signal. In this implementation, the reference signal can optionally be a QCL type D reference signal in the downlink / common TCI state and uplink TCI state of the current uplink and downlink transmission application of the terminal device.
[0949] Optionally, the reference signal corresponding to the serving beam can also be described as a serving beam measurement resource. In this implementation, the serving beam measurement resource can optionally be the QCL resource corresponding to the QCL type D reference signal in the downlink / common TCI state and uplink TCI state of the current uplink and downlink transmission application of the terminal device.
[0950] 4. The beams corresponding to the SSB resources associated with the QCL type D reference signal in the downlink / common TCI state and uplink TCI state of the current uplink and downlink transmission applications of the terminal equipment.
[0951] For information on SSB resources associated with QCL type D reference signals, please refer to the aforementioned explanations; they will not be repeated here.
[0952] Optionally, the reference signal corresponding to the service beam can also be described as a reference signal. In this implementation, optionally, the reference signal is the SSB associated with the QCL type D reference signal in the downlink / common TCI state and uplink TCI state of the current uplink and downlink transmission application of the terminal device.
[0953] Optionally, the reference signal corresponding to the serving beam can also be described as a serving beam measurement resource. In this implementation, the serving beam measurement resource can optionally be the SSB resource associated with the QCL type D reference signal in the downlink / common TCI state and uplink TCI state of the current uplink and downlink transmission application of the terminal device.
[0954] 5. The beam corresponding to the reference signal with the best signal quality among the quasi-QCL type D reference signals in one or more TCI states activated by the network device for the terminal device.
[0955] Optionally, the reference signal corresponding to the service beam can also be described as a reference signal. In this implementation, optionally, the reference signal is the reference signal with the best signal quality among the quasi-QCL type D reference signals in one or more TCI states activated by the network device for the terminal device.
[0956] Optionally, the reference signal corresponding to the serving beam can also be described as a serving beam measurement resource. In this implementation, the serving beam measurement resource may optionally be: the reference signal resource with the best signal quality among one or more TCI states activated by the network device for the terminal device, specifically the quasi-QCL type D reference signals.
[0957] 6. The beam corresponding to the reference signal with the worst signal quality among the QCL type D reference signals in one or more TCI states activated by the network device for the terminal device.
[0958] Optionally, the reference signal corresponding to the service beam can also be described as a reference signal. In this implementation, optionally, the reference signal is the reference signal with the worst signal quality among the QCL type D reference signals in one or more TCI states activated by the network device for the terminal device.
[0959] Optionally, the reference signal corresponding to the serving beam can also be described as a serving beam measurement resource. In this implementation, the serving beam measurement resource can optionally be: the reference signal resource with the worst signal quality among the QCL type D reference signals in one or more TCI states activated by the network device for the terminal device.
[0960] 7. The network device configures or indicates to the terminal device one or more reference signals corresponding to the monitoring service beam.
[0961] Optionally, the reference signal corresponding to the service beam can also be described as a reference signal. In this implementation, optionally, the reference signal is one or more reference signals configured or indicated by the network device for the terminal device to monitor the service beam.
[0962] Optionally, the reference signal corresponding to the serving beam can also be described as a serving beam measurement resource. In this implementation, the serving beam measurement resource may optionally be one or more reference signal resources configured or indicated by the network device for the terminal device to monitor the serving beam.
[0963] The following describes some possible implementations of one or more new beams in a terminal device. Other implementations are also applicable to this application, and are not specifically limited herein. Optionally, the one or more new beams include any of the following:
[0964] 1. The beam corresponding to the QCL type D reference signal in the TCI state activated by the network device for the terminal device.
[0965] Optionally, the reference signal corresponding to the one or more new beams can also be described as one or more candidate reference signals.
[0966] In this implementation, optionally, the one or more candidate reference signals include QCL type D reference signals in the TCI state activated by the network device for the terminal device.
[0967] Optionally, the reference signal corresponding to the one or more new beams can also be described as one or more new beam measurement resources.
[0968] In this implementation, optionally, the one or more new beam measurement resources include reference signal resources corresponding to the QCL type D reference signal in the TCI state activated by the network device for the terminal device.
[0969] 2. The beam corresponding to the QCL type D reference signal in the TCI state configured by the network device for the terminal device.
[0970] Optionally, the reference signal corresponding to the one or more new beams can also be described as one or more candidate reference signals.
[0971] In this implementation, optionally, the network device configures the QCL type D reference signal in the TCI state for the terminal device.
[0972] Optionally, the reference signal corresponding to the one or more new beams can also be described as one or more new beam measurement resources.
[0973] In this implementation, optionally, the one or more new beam measurement resources include reference signal resources corresponding to the QCL type D reference signal in the TCI state configured by the network device for the terminal device.
[0974] 3. The beam corresponding to the reference signal configured by the network equipment for the terminal equipment to monitor the one or more new beams.
[0975] Optionally, the reference signal corresponding to the one or more new beams can also be described as one or more candidate reference signals.
[0976] In this implementation, optionally, the network device configures a reference signal for the terminal device to monitor the one or more new beams.
[0977] Optionally, the reference signal corresponding to the one or more new beams can also be described as one or more new beam measurement resources.
[0978] In this implementation, optionally, the one or more new beam measurement resources include reference signal resources configured by the network device for the terminal device to monitor the reference signals of the one or more new beams.
[0979] 4. The beam of the terminal device is different from the service beam of the terminal device.
[0980] For example, the one or more new beams are candidate beams of the terminal device. Optionally, the reference signal corresponding to the one or more new beams can be described as: a reference signal corresponding to one or more candidate beams, one or more candidate reference signals, one or more new beam measurement resources, or one or more candidate beam measurement resources, which is not specifically limited in this application.
[0981] Optionally, the reference signal may be SSB, CSI-RS, SRS, TRS, or a road loss reference signal; no specific limitation is made here.
[0982] It should be noted that the terminal device can also measure reference signals corresponding to more new beams from the network device; specific details are not limited here. The terminal device chooses to report the measurement results of one or more new beams. For example, these one or more new beams may be new beams with good signal quality measured by the terminal device.
[0983] 3) Measurement resources;
[0984] Measurement resources can be measurement resources for reference signals corresponding to one or more events. Measurement resources can be configured individually for each event, or the same reference signal measurement resources can be configured for multiple events. Specific reference signal resources refer to the reference signals corresponding to the current beam and the new beam mentioned above; they can be explicitly configured or implicitly determined.
[0985] 4) Event-triggered resource reporting;
[0986] Event-triggered reporting resources are used to carry the reporting of beam measurement results triggered by events, such as periodic PUCCH resources, aperiodic PUSCH resources, semi-persistent PUCCH resources, and semi-persistent PUSCH resources. Only one reporting resource can be configured, meaning each cell corresponds to the same reporting resource, or each cell can have its own reporting resource configured. These event-triggered reporting resources can also be referred to as PUCCH resources, PUSCH resources, event-triggered reporting resources, or UE-triggered reporting resources; the naming of these resources is not limited in this embodiment.
[0987] 5) Requesting or instructing resources;
[0988] The scheduling request or indication resource is used to carry indication information of an event occurrence. This indication information is used to indicate to the network device that beam measurement results triggered by the event need to be reported and / or that an event has occurred, or to request a reporting resource triggered by the event. Only one reporting indication resource can be configured, meaning each cell corresponds to the same scheduling request or indication resource, or each cell can have its own scheduling request or indication resource configured. The scheduling request or indication resource can also be referred to as a reporting indication resource, PUCCH indication resource, PUSCH indication resource, scheduling request resource, pre-indication resource, pre-notification resource, event-triggered reporting scheduling request resource, or UE-triggered reporting scheduling request resource. The naming of this resource is not limited in this embodiment.
[0989] 6) Reported quantity;
[0990] The reported quantity refers to the amount of data reported when one or more events occur, or in other words, the measurement results that need to be reported when one or more events occur. The reported quantity for each event can be configured by the network or defined by the protocol. The reported quantity can be one or more of the following: event index, cell index, current beam reference signal index, new beam reference signal index, L1-RSRP, L1-SINR, etc. Optionally, it may also include the number of reports corresponding to the reported quantity.
[0991] The reported quantity may include at least one of the following:
[0992] 1. Report parameter #1, the current serving beam index, can also be understood as the reference signal index of type D QCL in the currently indicated TCI-state; or, the SSB index corresponding to the reference signal of type D QCL in the currently indicated TCI-state that satisfies the QCL type D relationship; or, the reference signal index of type D QCL in the UL TCI-state applied to the current uplink transmission (PUSCH / PUCCH / SRS / PRACH); or, the reference signal index of type D QCL in the downlink or joint TCI-state (DLorjointTCI-state) applied to the current downlink transmission (PDCCH / PDSCH / CSI-RS).
[0993] 2. Report parameter #2, the quality of the current serving beam. For example, RSRP, SINR, L1-RSRP, L1-SINR, SS-RSRP, CSI-RSRP, SS-SINR, CSI-SINR of the current serving beam.
[0994] The currently serving beam may include one or more beams, and this application does not limit this. The number of currently serving beams can be determined based on the number of UL / DL / joint TCI-states indicated by the network device, such as the UL / DL / joint TCI-states indicated by DCI signaling. Alternatively, the number of beams included in the currently serving beam may be predefined by the protocol or preconfigured by the network device. Or, the maximum number of beams included in the currently serving beam may be predefined by the protocol or configured by the network device.
[0995] 3. Report parameter #3, the index of the new beam, which can also be understood as the index of the reference signal with QCL type type D in the activated TCI-states (excluding the indicated TCI-state), or it can be one or more reference signals (excluding the reference signal corresponding to the current serving beam) in the reference signals configured by the network device (such as the reference signals configured by the network device for measurement, or the reference signals configured by the network device for the terminal device to monitor the occurrence of events).
[0996] 4. Report parameter #4, the quality of the new beam. For example, RSRP, SINR, L1-RSRP, L1-SINR, SS-RSRP, CSI-RSRP, SS-SINR, CSI-SINR for the second beam.
[0997] The new beam may include one or more beams, and this application does not limit this. The number of beams included in the new beam may be predefined by the protocol or preconfigured by the network device. Alternatively, the maximum number of beams included in the new beam may be predefined by the protocol or configured by the network device.
[0998] 5. Report parameter #5, cell information, can also be understood as which cell the reported measurement report corresponds to, or the reference signal resources of which cell the reported measurement result refers to. For example, cell information can be the handover candidate cell ID, the non-serving cell ID (additional PCI), the component carrier (CC) index, the PCI, and the serving cell index.
[0999] 6. Report parameter #6, the reason why the current service beam quality is below a threshold (e.g., the first preset threshold). For example, network equipment beam misalignment, terminal equipment receiving beam misalignment, transmit / receive beam misalignment, etc. "Misalignment" can also be replaced with terms like "expired" or "invalid." Alternatively, indicate whether to trigger a CSI-RS set measurement with "repetition" set to "on" to poll the UE's receiving beam.
[1000] 7. Report parameter #7, reference signal resource set index, such as CSI-RS resource set index, CSI-IM resource set index, CSI-SSB resource set index, or reference signal resource set index configured by the network device for the terminal device to monitor the occurrence of events, to indicate which reference signal resource set the reported current serving beam and / or second beam belongs to.
[1001] 8. Report parameter #8, report configuration index, such as CSI report configuration identifier (CSI-ReportConfigId), or event-triggered report configuration index.
[1002] 9. Report parameter #9, event information, such as the index of the event that occurred, or one or more bits indicating whether the event occurred. For example, the event information includes M bits. An index used to indicate an event that has occurred. For example, event information includes X bits, each corresponding to one of X events. The x-th bit of the X bits indicates whether the event corresponding to that x-th bit has occurred, where x = 1, 2, ..., X. For instance, if the x-th bit has a value of "0", then the x-th bit indicates that the event corresponding to that x-th bit has occurred; or, if the x-th bit has a value of "1", then the x-th bit indicates that the event corresponding to that x-th bit has occurred.
[1003] 10. Report parameter #10, capabilityindex, used to determine the maximum number of SRS ports.
[1004] 11. Report parameter #11, channel state information, which may include one or more of the following: precoding matrix indication (PMI), rank indication (RI), channel quality indicator (CQI), and layer indication (LI).
[1005] 7) Event-triggered reporting mode;
[1006] The event-triggered reporting mode can be either a first mode or a second mode. The first mode can be referred to as Mode A, and the second mode can be referred to as Mode B. The naming of these modes is not limited in the embodiments of this application.
[1007] It should be noted that the embodiment shown in Figure 7 also includes step 700a. There is no fixed execution order between steps 700a and 700b. Step 700a can be executed first, followed by step 700b; or step 700b can be executed first, followed by step 700a; or, depending on the situation, steps 700a and 700b can be executed simultaneously. The specific execution order is not limited here.
[1008] II. Priority among CSI reports triggered by multiple events;
[1009] Please refer to Figure 10. One method for reporting a measurement report in this embodiment includes:
[1010] 1001. The terminal device measures the reference signal from the network device and obtains a measurement report;
[1011] Step 1001 in this embodiment is similar to step 701 in the embodiment shown in Figure 7 above, and will not be described in detail here.
[1012] 1002. The terminal device determines the reporting priority of the measurement report based on the event information of the first event and / or the reporting mode corresponding to the measurement report;
[1013] Specifically, the measurement report is a measurement report associated with the first event. The terminal device can determine the reporting priority of the measurement report based on the event information of the first event. Optionally, in this invention, the first event can be any one or more of the aforementioned events #1 to #11, or it may not be limited to the aforementioned events. The measurement report associated with the first event can be understood as the measurement report that includes measurement results related to the first event when the first event occurs (i.e., when the conditions of the first event are met). The measurement results related to the first event can be the reporting quantity corresponding to the aforementioned event.
[1014] In one possible implementation, the terminal device determines the priority of the measurement report based on the priority of different events configured in the network device.
[1015] Specifically, if one or more events are associated with a measurement report, the measurement report will report the measurement results related to one or more events according to the event priority. That is, when multiple event-related measurement results are reported, the multiple event-related measurement results are sorted according to the event priority, or only the measurement results corresponding to the highest priority event are allowed to be reported.
[1016] Optionally, when multiple events occur within an event associated with a measurement report, and it is determined, based on network configuration, protocol specifications, or terminal capabilities, that only one event-related measurement result can be reported, the terminal device reports the measurement result corresponding to the event with the highest priority. For example, if the network device configures priorities for multiple events, or the protocol specifies priorities for multiple events, with event #a having the highest priority, then when multiple events occur, and event #a is included among them, the measurement result corresponding to event #a is reported first. Specific details are not limited here. In this invention, the measurement result corresponding to an event or the measurement result related to an event can be understood as the amount of data that needs to be reported when the event occurs, as specified by the network configuration, protocol, or determined by the terminal. This reporting amount can be any one or more of the aforementioned reporting parameters. Optionally, event #a in this invention can be any one of the aforementioned events #1-#11, or it may not be limited to these events.
[1017] Optionally, when multiple events occur within the events associated with a measurement report, the terminal device can reuse or discard them according to their priority. For example, if the protocol specifies or the network configures the priorities of multiple events, with event #a having the lowest priority, then when multiple events occur, including event #a, the terminal device can discard the measurement result corresponding to event #a. Alternatively, if the protocol specifies or the network configures the priorities of multiple events, with event #a having the lowest priority, then when multiple events occur, including event #a, the terminal device can report the measurement result corresponding to event #a last; the specifics are not limited here. Another example is that if the protocol specifies or the network configures the priorities of multiple events, when multiple events occur, the terminal device reports the measurement results corresponding to these events in descending order of priority; the specifics are not limited here.
[1018] Specifically, if multiple events are associated with different measurement reports, the priority of the different measurement reports can be determined based on the priority of the events. Optionally, one measurement report can be associated with one event.
[1019] Optionally, when multiple events occur, and it is determined, based on network configuration, protocol specifications, or terminal capabilities, that only one event-related measurement report can be reported, the terminal device will report the measurement report associated with the event with the highest priority. For example, if the network device configures priorities for multiple events, or the protocol specifies priorities for multiple events, with event #a having the highest priority, then when multiple events occur, and event #a is included among these events, the measurement report associated with event #a will be reported first. Specific details are not limited here.
[1020] Optionally, when multiple events occur, the terminal device can reuse or discard them according to their priority. For example, if the protocol specifies or the network configures the priorities of multiple events, with event #a having the lowest priority, then when multiple events occur, including event #a, the terminal device can discard the measurement report associated with event #a. Alternatively, if the protocol specifies or the network configures the priorities of multiple events, with event #a having the lowest priority, then when multiple events occur, including event #a, the terminal device will place the measurement report associated with event #a last among all the measurement reports to be reported; the specifics are not limited here. Another example is that if the protocol specifies or the network configures the priorities of multiple events, when multiple events occur, the terminal device will report the measurement reports corresponding to these events in descending order of priority; the specifics are not limited here.
[1021] In another possible implementation, the terminal device can prioritize measurement reports based on the time the event occurs.
[1022] Specifically, if one or more events are associated with a measurement report, the measurement report may be reported according to the time of the event occurrence, or may only allow the reporting of measurement results corresponding to the most recent or earliest occurrence of the event.
[1023] Optionally, the terminal device may prioritize reporting the measurement results corresponding to the earliest occurring one or more events. For example, if events #a and #b occur sequentially, and event #a occurs earlier than event #b, then the terminal device may prioritize reporting the measurement results corresponding to the earliest occurring event #a. Optionally, event #b in this invention can be any one of the aforementioned events #1-#11, or it may not be limited to these events.
[1024] Optionally, the terminal device may prioritize reporting the measurement results corresponding to one or more most recently occurring events. In other words, the terminal device may prioritize reporting the one or more most recently occurring events. For example, if events #a and #b occur in chronological order, and event #a occurs earlier than event #b, then the terminal device may prioritize reporting the most recently occurring event #b. The specifics are not limited here.
[1025] Specifically, if multiple events are associated with different measurement reports, the priority of the different measurement reports can be determined based on the priority of the events. Optionally, one measurement report can be associated with one event.
[1026] Optionally, the terminal device may prioritize reporting measurement reports related to the first one or more events that occur. For example, if events #a and #b occur in chronological order, and event #a occurs before event #b, then the terminal device may prioritize reporting the measurement report associated with the first event #a.
[1027] Optionally, the terminal device may prioritize reporting measurement reports related to one or more recently occurring events. In other words, the terminal device may prioritize reporting measurement reports related to one or more recently occurring events. For example, if events #a and #b occur in chronological order, and event #a occurs earlier than event #b, then the terminal device may prioritize reporting the measurement report associated with the most recently occurring event #b. Specific details are not limited here.
[1028] In another possible implementation, the priorities of multiple events can vary, and the priorities of multiple events can be specified by network devices or protocols.
[1029] Specifically, if one or more events are associated with a measurement report, the measurement report is reported according to event priority, or only the highest priority event is allowed to be reported.
[1030] When an event occurs and is reported, its priority becomes the lowest, and the priority of all other events increases by one level. For example, a network device configures priorities for events #a, #b, and #c, where event #a has a higher priority than event #b, and event #b has a higher priority than event #c. If multiple events occur simultaneously, event #a is reported first. After event #a is reported, its priority becomes the lowest, meaning event #b has a higher priority than event #c, and event #c has a higher priority than event #a. If multiple events occur simultaneously, event #b is reported first.
[1031] Specifically, if multiple events are associated with different measurement reports, the priority of the different measurement reports can be determined based on the priority of the events. Optionally, one measurement report can be associated with one event.
[1032] When an event occurs and its associated measurement report has been submitted, the priority of that event becomes the lowest, and the priority of all other events increases by one level. For example, a network device configures priorities for events #a, #b, and #c, where event #a has a higher priority than event #b, and event #b has a higher priority than event #c. If multiple events occur simultaneously, the measurement report related to event #a is submitted first. After the measurement report related to event #a is submitted, the priority of event #a becomes the lowest, meaning event #b has a higher priority than event #c, and event #c has a higher priority than event #a. If multiple events occur simultaneously, the measurement report related to event #b is submitted first.
[1033] Event #a can be used to indicate any one of the events #1 to #11 mentioned above, or it can be used to indicate other possible events. No specific restrictions are made here.
[1034] Event #b can be used to indicate any of the events #1 to #11 mentioned above, or it can be used to indicate other possible events; no specific restrictions are made here.
[1035] Event #c can be used to indicate any of the events #1 to #11 mentioned above, or it can be used to indicate other possible events; no specific restrictions are made here.
[1036] In another possible implementation, the terminal device can determine the reporting priority of the measurement report based on a second priority value. This second priority value is determined by a second priority parameter, which can be determined based on the index of the first event or the reporting mode corresponding to the measurement report; the specific determination is not limited here. The measurement report includes measurement results related to the first event.
[1037] If the second priority parameter can be determined based on the index of the first event, then the second priority value can be: Pri iCSI (z,a,c,b)=2·X cells ·Y s ·z+X cells ·Y s ·a+Y s ·c+b
[1038] Among them, X cells To configure the maximum number of cells for event-related reporting or the maximum number of serving cells, Y s The maximum number of event-related reports is configured, with the second priority parameter being z, which is the index of the first event. 'a' indicates the reporting mode corresponding to the measurement report, 'c' is the cell index or serving cell index configured for event-related reporting, and 'b' is the reporting configuration index corresponding to the measurement report. The reporting mode corresponding to the measurement report can be replaced with the description of the reporting mode triggered by the event corresponding to the measurement report. The measurement report includes the measurement results related to the first event.
[1039] Optionally, the more important the first event, the smaller its index.
[1040] Optionally, the more important the first event, the larger its index.
[1041] Optionally, the range of values for z is determined based on the maximum number of events supported by the terminal or the maximum number of events configured for the terminal by the network device.
[1042] Optional,
[1043] If the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode, then 'a' is determined to be the first value.
[1044] If the reporting mode corresponding to the measurement report is event-triggered reporting based on the second mode, then 'a' is determined to be the second value.
[1045] The correspondence between the values of 'a' and the reporting modes of the measurement reports is shown in Table 56 below:
[1046] Table 56
[1047] Wherein, the first value and the second value are both integers. Optionally, the first value and the second value can take values of 0 and 1, and the first value and the second value cannot be equal.
[1048] For example,
[1049] a=0 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode;
[1050] a=1 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the second mode.
[1051] For example,
[1052] a=0 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the second mode;
[1053] a=1 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode.
[1054] The second priority value can also be: Pri iCSI (z,a,c,b)=K events ·X cells ·Y s ·z+X cells ·Y s ·a+Y s ·c+b
[1055] Among them, K events X is the maximum number of events. cells To configure the maximum number of cells for event-related reporting or the maximum number of serving cells, Y s The maximum number of event-related reports is configured. `z` indicates the reporting mode corresponding to the measurement report. The second priority parameter is `a`, which is the index of the first event. `c` is the cell index or serving cell index configured for event-related reporting. `b` is the reporting configuration index corresponding to the measurement report. The reporting mode corresponding to the measurement report can be replaced with the reporting mode triggered by the event corresponding to the measurement report. The measurement report includes the measurement results related to the first event.
[1056] Optionally, the more important the first event, the smaller its index.
[1057] Optionally, the more important the first event, the larger its index.
[1058] Optionally, the range of values for 'a' is determined based on the maximum number of events supported by the terminal or the maximum number of events configured for the terminal by the network device.
[1059] Optional,
[1060] If the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode, then z is determined to be the first value;
[1061] If the reporting mode corresponding to the measurement report is event-triggered reporting based on the second mode, then z is determined to be the second value.
[1062] The correspondence between the values of z and the reporting modes of the measurement reports is shown in Table 57 below:
[1063] Table 57
[1064] Wherein, the first value and the second value are both integers. Optionally, the first value and the second value can take values of 0 and 1, and the first value and the second value cannot be equal.
[1065] For example,
[1066] z=0 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode;
[1067] z=1 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the second mode.
[1068] For example,
[1069] z=0 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the second mode;
[1070] z=1 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode.
[1071] The second priority parameter can be determined based on the index configured for the event reporting corresponding to the measurement report. Therefore, the second priority value could be: Pri iCSI (a,c,b)=X cells ·Y s ·a+Y s ·c+b
[1072] Among them, X cells To configure the maximum number of cells for event-related reporting or the maximum number of serving cells, Y sThe maximum number of event-related reports is configured. The second priority parameter is 'a', where 'a' indicates the reporting mode and / or reporting type corresponding to the measurement report, 'c' is the cell index or serving cell index configured for event-related reporting, and 'b' is the reporting configuration index corresponding to the measurement report. The reporting type corresponding to the measurement report can be replaced with the description of the reporting type triggered by the event corresponding to the measurement report. The measurement report includes the measurement results related to the first event.
[1073] One possible implementation method,
[1074] If the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode, then 'a' is determined to be the first value.
[1075] If the reporting mode corresponding to the measurement report is event-triggered reporting based on the second mode, then 'a' is determined to be the second value.
[1076] The correspondence between the values of 'a' and the reporting modes of the measurement reports is shown in Table 58 below:
[1077] Table 58
[1078] Wherein, the first value and the second value are both integers. Optionally, the first value and the second value can take values of 0 and 1, and the first value and the second value cannot be equal.
[1079] Optionally, event-triggered reporting based on the first mode includes only one type of event-triggered reporting, namely event-triggered reporting via PUSCH based on the first mode or event-triggered reporting via PUCCH based on the first mode.
[1080] Optionally, event-triggered reporting based on the second mode includes only one type of event-triggered reporting, namely event-triggered reporting via PUSCH based on the second mode or event-triggered reporting via PUCCH based on the second mode.
[1081] For example,
[1082] a=0 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode;
[1083] a=1 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the second mode.
[1084] For example,
[1085] a=0 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the second mode;
[1086] a=1 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode.
[1087] Another possible implementation,
[1088] If the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode and the reporting type is event-triggered reporting via PUSCH based on the first mode, then a is determined to be the first value.
[1089] If the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode and the reporting type is event-triggered reporting via PUCCH based on the first mode, then a is determined to be the second value;
[1090] If the reporting mode corresponding to the measurement report is event-triggered reporting based on the second mode, then 'a' is determined to be the third value.
[1091] The correspondence between the value of 'a' and the reporting mode and event-triggered reporting type of the measurement report is shown in Table 59 below:
[1092] Table 59
[1093] Wherein, the first value, the second value, and the third value are all integers. Optionally, the first value, the second value, and the third value can be in the range of 0, 1, and 2, and the first value, the second value, and the third value cannot be equal.
[1094] Optionally, event-triggered reporting based on the second mode includes only one type of event-triggered reporting, namely event-triggered reporting via PUSCH based on the second mode or event-triggered reporting via PUCCH based on the second mode.
[1095] For example,
[1096] a=0 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode, and the reporting type is event-triggered reporting via PUSCH based on the first mode;
[1097] a=1 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode, and the reporting type is event-triggered reporting via PUCCH based on the first mode;
[1098] a=2 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the second mode.
[1099] For example,
[1100] a=0 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode, and the reporting type is event-triggered reporting via PUCCH based on the first mode;
[1101] a=1 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode, and the reporting type is event-triggered reporting via PUSCH based on the first mode;
[1102] a=2 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the second mode.
[1103] For example,
[1104] a=0 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the second mode;
[1105] a=1 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode, and the reporting type is event-triggered reporting via PUSCH based on the first mode;
[1106] a=2 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode, and the reporting type is event-triggered reporting via PUCCH based on the first mode.
[1107] For example,
[1108] a=0 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the second mode;
[1109] a=1 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode, and the reporting type is event-triggered reporting via PUCCH based on the first mode;
[1110] a=2 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode, and the reporting type is event-triggered reporting via PUSCH based on the first mode.
[1111] For example,
[1112] a=0 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode, and the reporting type is event-triggered reporting via PUSCH based on the first mode;
[1113] a=1 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the second mode;
[1114] a=2 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode, and the reporting type is event-triggered reporting via PUCCH based on the first mode.
[1115] For example,
[1116] a=0 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode, and the reporting type is event-triggered reporting via PUCCH based on the first mode;
[1117] a=1 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the second mode;
[1118] a=2 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode, and the reporting type is event-triggered reporting via PUSCH based on the first mode.
[1119] Another possible implementation,
[1120] If the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode, then 'a' is determined to be the first value.
[1121] If the reporting mode corresponding to the measurement report is event-triggered reporting based on the second mode and the reporting type is event-triggered reporting via PUSCH based on the second mode, then a is determined to be the second value;
[1122] If the reporting mode corresponding to the measurement report is event-triggered reporting based on the second mode and the reporting type is event-triggered reporting via PUCCH based on the second mode, then a is determined to be the third value.
[1123] The correspondence between the value of 'a' and the reporting mode and event-triggered reporting type of the measurement report is shown in Table 60 below:
[1124] Table 60
[1125] Wherein, the first value, the second value, and the third value are all integers. Optionally, the first value, the second value, and the third value can be in the range of 0, 1, and 2, and the first value, the second value, and the third value cannot be equal.
[1126] Optionally, event-triggered reporting based on the second mode includes only one type of event-triggered reporting, namely event-triggered reporting via PUSCH based on the second mode or event-triggered reporting via PUCCH based on the second mode.
[1127] For example,
[1128] a=0 indicates that the reporting mode corresponding to the measurement report is event-triggered reporting based on the first mode;
[1129] a=1 indicates that the reporting mode correspondin...
Claims
A method for submitting measurement reports, characterized in that, include: A measurement report configuration is received, the measurement report configuration is associated with a reference signal resource, the reference signal resource is used to determine the measurement report corresponding to the measurement report configuration, wherein the reporting priority of the measurement report is determined according to a first priority value, and the reporting priority of the measurement report is used to report the measurement report. The method according to claim 1, characterized in that, The method further includes: The measurement report is reported according to the reporting priority of the measurement report. A method for submitting measurement reports, characterized in that, include: A measurement report configuration is sent, wherein the measurement report configuration is associated with a reference signal resource, and the reference signal resource is used to determine the measurement report corresponding to the measurement report configuration. The reporting priority of the measurement report is determined according to a first priority value, and the reporting priority of the measurement report is used to report the measurement report. The method according to claim 3, characterized in that, The method further includes: Receive the measurement report. The method according to any one of claims 1 to 4, characterized in that, The first priority value satisfies the following formula: Pri iCSI (y,k,c,s)=2·N cells ·M s ·y+N cells ·M s ·k+M s ·c+s Wherein, the N cells For the maximum number of serving cells, M s The maximum number of measurement reports is configured, where k indicates the content of the measurement report, c is the serving cell index, and s is the identifier ID configured for the measurement report; When y = 0, the measurement report is submitted in the event-triggered reporting mode based on the first mode; When y = 1, the measurement report is reported via aperiodic channel state information (CSI) through the Physical Uplink Shared Channel (PUSCH). When y = 2, the measurement report is submitted in an event-triggered manner based on the second mode; When y = 3, the measurement report is submitted via PUSCH semi-persistent CSI reporting; When y = 4, the measurement report is reported via semi-persistent CSI reporting through the Physical Uplink Control Channel (PUCCH). When y = 5, the measurement report is submitted via periodic CSI reporting through PUCCH. The method according to claim 5, characterized in that, When the measurement report is reported in the event-triggered reporting mode based on the first mode, the measurement report configuration includes the event-triggered reporting mode of the measurement report and the event information corresponding to the measurement report, wherein the event-triggered reporting mode in the measurement report configuration is the first mode; When the measurement report is reported in the event-triggered reporting mode based on the second mode, the measurement report configuration includes the event-triggered reporting mode of the measurement report and the event information corresponding to the measurement report, wherein the event-triggered reporting mode in the measurement report configuration is the second mode. The method according to claim 5 or 6, characterized in that, When k=0, the reported content of the measurement report includes the Layer 1 reference signal received power L1-RSRP or the Layer 1 signal-to-noise ratio L1-SINR; When k=1, the reported content of the measurement report does not include either L1-RSRP or L1-SINR. The method according to any one of claims 1 to 7, characterized in that, The smaller the first priority value, the higher the reporting priority of the measurement report. A method for submitting measurement reports, characterized in that, include: Measure reference signals from network devices to obtain measurement reports, wherein the triggering method of the measurement reports includes at least one of event-triggered reporting or non-event-triggered reporting; The reporting priority of the measurement report is determined based on the triggering method of the measurement report; The measurement report is reported according to the reporting priority of the measurement report. The method according to claim 9, characterized in that, The priority of non-event-triggered reporting is higher than the priority of event-triggered reporting, or the priority of non-event-triggered reporting is lower than the priority of event-triggered reporting. The method according to claim 9, characterized in that, The step of determining the reporting priority of the measurement report based on its triggering method includes: The reporting priority of the measurement report is determined based on the triggering method of the measurement report and the reporting mode of the event-triggered reporting. The reporting mode of the event-triggered reporting includes at least one of event-triggered reporting based on a first mode and event-triggered reporting based on a second mode, wherein: The priority of event-triggered reporting based on the first mode is higher than the priority of non-event-triggered reporting, and the priority of non-event-triggered reporting is higher than the priority of event-triggered reporting based on the second mode. Alternatively, the priority of event-triggered reporting based on the first mode is higher than the priority of event-triggered reporting based on the second mode, and the priority of event-triggered reporting based on the second mode is higher than the priority of non-event-triggered reporting. Alternatively, the priority of the non-event-triggered reporting is higher than the priority of the event-triggered reporting based on the first mode, and the priority of the event-triggered reporting based on the first mode is higher than the priority of the event-triggered reporting based on the second mode. Alternatively, the priority of event-triggered reporting based on the second mode is higher than the priority of non-event-triggered reporting, and the priority of non-event-triggered reporting is higher than the priority of event-triggered reporting based on the first mode. Alternatively, the priority of the event-triggered reporting based on the second mode is higher than the priority of the event-triggered reporting based on the first mode, and the priority of the event-triggered reporting based on the first mode is higher than the priority of the non-event-triggered reporting. Alternatively, the priority of the non-event-triggered reporting is higher than the priority of the event-triggered reporting based on the second mode, and the priority of the event-triggered reporting based on the second mode is higher than the priority of the event-triggered reporting based on the first mode. The method according to claim 9, characterized in that, The step of determining the reporting priority of the measurement report based on its triggering method includes: The reporting priority of the measurement report is determined based on the triggering method of the measurement report, the reporting mode of the event-triggered reporting, and the reporting mode of the non-event-triggered reporting. The reporting mode of the event-triggered reporting includes at least one of event-triggered reporting based on a first mode and event-triggered reporting based on a second mode. The reporting modes of the non-event-triggered reporting include aperiodic CSI reporting via PUSCH, semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via PUCCH, and periodic CSI reporting via PUCCH, wherein: The priority of event-triggered reporting based on the first mode is higher than the priority of non-periodic CSI reporting via PUSCH. The priority of non-periodic CSI reporting via PUSCH is higher than the priority of event-triggered reporting based on the second mode. The priority of event-triggered reporting based on the second mode is higher than the priority of semi-persistent CSI reporting via PUSCH. The priority of semi-persistent CSI reporting via PUSCH is higher than the priority of semi-persistent CSI reporting via PUCCH. The priority of semi-persistent CSI reporting via PUCCH is higher than the priority of periodic CSI reporting via PUCCH. Alternatively, the priority of event-triggered reporting based on the first mode is higher than the priority of non-periodic CSI reporting via PUSCH, the priority of non-periodic CSI reporting via PUSCH is higher than the priority of semi-persistent CSI reporting via PUSCH, the priority of semi-persistent CSI reporting via PUSCH is higher than the priority of semi-persistent CSI reporting via PUCCH, the priority of event-triggered reporting based on the second mode via PUCCH is higher than the priority of periodic CSI reporting via PUCCH. The method according to claim 9, characterized in that, The step of determining the reporting priority of the measurement report based on its triggering method includes: A first priority parameter is determined based on at least one of the following: the triggering method of the measurement report, the reporting mode of the event-triggered reporting, the reporting mode of the non-event-triggered reporting, and the reporting content of the measurement report. The reporting mode of the event-triggered reporting includes at least one of event-triggered reporting based on a first mode and event-triggered reporting based on a second mode. The reporting mode of the non-event-triggered reporting includes aperiodic CSI reporting via the Physical Uplink Shared Channel (PUSCH), semi-persistent CSI reporting via PUSCH, semi-persistent CSI reporting via the Physical Uplink Control Channel (PUCCH), and periodic CSI reporting via PUCCH. The first priority parameter is used to determine a first priority value, and the first priority value is used to determine the reporting priority of the measurement report. The method according to claim 13, characterized in that, The first priority value is Pri iCSI (m,y,k,c,s)=8·N cells ·M s ·m+2·N cells ·M s ·y+N cells ·M s ·k+M s ·c+s, the N cells For the maximum number of serving cells, M s The maximum number of measurement reports is configured, where y indicates the reporting mode of event-triggered reporting or the reporting mode of non-event-triggered reporting, k indicates the reporting content of the measurement report, c is the serving cell index, s is the identifier ID of the measurement report configuration, the measurement report configuration is used to determine the triggering method of the measurement report, and the first priority parameter is m. The method according to claim 13 or 14 is characterized in that, The step of determining the first priority parameter based on at least one of the following: the triggering method of the measurement report, the reporting mode of the event-triggered report, the reporting mode of the non-event-triggered report, and the reporting content of the measurement report, includes: If the measurement report is triggered by non-event-triggered reporting, then the first priority parameter is determined to be a first value; If the measurement report is triggered by an event-triggered report, then the first priority parameter is determined to be the second value. The method according to claim 15, characterized in that, The first value is 0, and the second value is 1; or, the first value is 1, and the second value is 0. The method according to claim 13 or 14 is characterized in that, The step of determining the first priority parameter based on at least one of the following: the triggering method of the measurement report, the reporting mode of the event-triggered report, the reporting mode of the non-event-triggered report, and the reporting content of the measurement report, includes: If the measurement report is triggered by the event-triggered reporting method and the event-triggered reporting mode is the event-triggered reporting based on the first mode, then the first priority parameter is determined to be the first value. If the measurement report is triggered by non-event-triggered reporting, then the first priority parameter is determined to be the second value; If the measurement report is triggered by the event-triggered reporting method and the event-triggered reporting mode is the event-triggered reporting based on the second mode, then the first priority parameter is determined to be the third value. The method according to claim 17, characterized in that, The first value, the second value, and the third value are integers, and the values of the first value, the second value, and the third value are in the range of 0, 1, and 2, and the first value, the second value, and the third value are not equal. The method according to claim 13, characterized in that, The first priority value is Pri iCSI (y,k,c,s)=2·N cells ·M s ·y+N cells ·M s ·k+M s ·c+s, the N cells M is the maximum number of serving cells. s The maximum number of measurement reports is configured, where y indicates the triggering method of the measurement report, the reporting mode of the event-triggered report, and the reporting mode of the non-event-triggered report; k indicates the reporting content of the measurement report; c is the serving cell index; s is the ID of the measurement report configuration; the measurement report configuration is used to determine the triggering method of the measurement report; and the first priority parameter includes y and / or k. The method according to claim 19, characterized in that, The first priority parameter includes y. Determining the first priority parameter based on at least one of the following: the triggering method of the measurement report, the reporting mode of the event-triggered report, the reporting mode of the non-event-triggered report, and the reporting content of the measurement report, includes: If the measurement report is triggered by the event-triggered reporting method and the event-triggered reporting mode is the event-triggered reporting based on the first mode, then y is determined to be the first value; If the measurement report is triggered by non-event-triggered reporting and the non-event-triggered reporting mode is non-periodic CSI reporting via PUSCH, then y is determined to be the second value. If the measurement report is triggered by the event-triggered reporting method and the event-triggered reporting mode is the event-triggered reporting based on the second mode, then y is determined to be the third value; If the measurement report is triggered by non-event-triggered reporting and the non-event-triggered reporting mode is semi-persistent CSI reporting via PUSCH, then y is determined to be the fourth value. If the measurement report is triggered by non-event-triggered reporting and the non-event-triggered reporting mode is semi-persistent CSI reporting via PUCCH, then y is determined to be the fifth value. If the measurement report is triggered by non-event-triggered reporting and the non-event-triggered reporting mode is periodic CSI reporting via PUCCH, then y is determined to be the sixth value. The method according to claim 20, characterized in that, The first value, the second value, the third value, the fourth value, the fifth value, and the sixth value are all integers. The range of the first value, the second value, the third value, the fourth value, the fifth value, and the sixth value is 0, 1, 2, 3, 4, and 5, and the first value, the second value, the third value, the fourth value, the fifth value, and the sixth value are not equal. The method according to claim 20 or 21, characterized in that, The first value is 0, the second value is 1, the third value is 2, the fourth value is 3, the fifth value is 4, and the sixth value is 5. The method according to claim 19, characterized in that, The first priority parameter includes y. Determining the first priority parameter based on at least one of the following: the triggering method of the measurement report, the reporting mode of the event-triggered report, the reporting mode of the non-event-triggered report, and the reporting content of the measurement report, includes: If the measurement report is triggered by non-event-triggered reporting and the non-event-triggered reporting mode is non-periodic CSI reporting via PUSCH, then y is determined to be the first value. If the measurement report is triggered by the event, then y is determined to be the second value; If the measurement report is triggered by non-event-triggered reporting and the non-event-triggered reporting mode is semi-persistent CSI reporting via PUSCH, then y is determined to be a third value. If the measurement report is triggered by non-event-triggered reporting and the non-event-triggered reporting mode is semi-persistent CSI reporting via PUCCH, then y is determined to be the fourth value. If the measurement report is triggered by non-event-triggered reporting and the reporting mode of non-event-triggered reporting is periodic CSI reporting via PUCCH, then y is determined to be the fifth value. The method according to claim 23, characterized in that, The first value, the second value, the third value, the fourth value, and the fifth value are all integers. The range of the first value, the second value, the third value, the fourth value, and the fifth value is 0, 1, 2, 3, and 4, and the first value, the second value, the third value, the fourth value, and the fifth value are not equal. The method according to any one of claims 19 to 24, characterized in that, The first priority parameter includes k. Determining the first priority parameter based on at least one of the following: the triggering method of the measurement report, the reporting mode of the event-triggered report, the reporting mode of the non-event-triggered report, and the reporting content of the measurement report, includes: If the measurement report includes event information, then k is determined to be the seventh value; If the reported content of the measurement report includes L1-RSRP or L1-SINR but does not include event information, then k is determined to be the eighth value; If the reported content of the measurement report does not include any one of the L1-RSRP, L1-SINR, or event information, then k is determined to be the ninth value. The method according to any one of claims 13 to 25 is characterized in that, The first priority value satisfies the following formula: Pri iCSI (y,k,c,s)=2·N cells ·M s ·y+N cells ·M s ·k+M s ·c+s Wherein, the N cells M is the maximum number of serving cells. s The maximum number of measurement reports is configured, where k indicates the content of the measurement report, c is the serving cell index, s is the ID of the measurement report configuration, and the measurement report configuration is used to determine the triggering method of the measurement report; When y = 0, the measurement report is submitted in the event-triggered reporting mode based on the first mode. When y = 1, the measurement report is submitted via the non-periodic CSI reporting method through PUSCH; When y = 2, the measurement report is submitted in the event-triggered reporting mode based on the second mode. When y = 3, the measurement report is submitted via semi-persistent CSI reporting through PUSCH. When y = 4, the measurement report is submitted via semi-persistent CSI reporting through PUCCH. When y = 5, the measurement report is submitted via periodic CSI reporting through PUCCH. The method according to claim 26, characterized in that, When k=0, the reported content of the measurement report includes L1-RSRP or L1-SINR; When k=1, the reported content of the measurement report does not include either L1-RSRP or L1-SINR. The method according to any one of claims 13 to 27 is characterized in that, If the first priority value is smaller, the reporting priority of the measurement report is higher; Alternatively, if the first priority value is higher, the reporting priority of the measurement report is higher. The method according to any one of claims 8 to 28, characterized in that, The measurement report is triggered via event-triggered reporting, and the method further includes: The measurement report configuration includes the triggering method of the measurement report and the event information corresponding to the measurement report. A method for submitting measurement reports, characterized in that, include: A reference signal from a network device is measured to obtain a measurement report, which is a measurement report associated with the first event; The reporting priority of the measurement report is determined based on the event information of the first event and / or the reporting mode corresponding to the measurement report. The reporting mode corresponding to the measurement report includes at least one of event-triggered reporting based on the first mode and event-triggered reporting based on the second mode. The measurement report is reported according to the reporting priority of the measurement report. The method according to claim 30, characterized in that, The event information of the first event includes the priority of the first event. Determining the reporting priority of the measurement report based on the event information of the first event and / or the reporting mode corresponding to the measurement report includes: The reporting priority of the measurement report is determined based on the priority of the first event. The method according to claim 30, characterized in that, The event information of the first event includes the index of the first event. Determining the reporting priority of the measurement report based on the event information of the first event and / or the reporting mode corresponding to the measurement report includes: A second priority parameter is determined based on the index of the first event. The second priority parameter is used to determine a second priority value, and the second priority value is used to determine the reporting priority of the measurement report. The method according to claim 32, characterized in that, The second priority value is Pri iCSI (z,a,c,b)=2·X cells ·Y s ·z+X cells ·Y s ·a+Y s ·c+b, the X cells To configure the maximum number of cells or the maximum number of serving cells for event-related reporting, the Y s The maximum number of event-related reports is configured, z is the index of the first event, a is used to indicate the reporting mode corresponding to the measurement report, c is the cell index or serving cell index of the event-related reporting configuration, b is the reporting configuration index corresponding to the measurement report, and the second priority parameter is z. The method according to claim 32, characterized in that, The second priority value is Pri iCSI (z,a,c,b)=K events ·X cells ·Y s ·z+X cells ·Y s ·a+Y s ·c+b, the K events X is the maximum number of events. cells To configure the maximum number of cells or the maximum number of serving cells for event-related reporting, the Y s The maximum number of event-related reports is configured, z is used to indicate the reporting mode corresponding to the measurement report, a is the index of the first event, c is the cell index or serving cell index of the event-related reporting configuration, b is the reporting configuration index corresponding to the measurement report, and the second priority parameter is a. The method according to claim 30, characterized in that, The step of determining the second priority parameter based on the event information of the first event and / or the reporting mode corresponding to the measurement report includes: The second priority parameter is determined according to the reporting mode corresponding to the measurement report. The second priority parameter is used to determine the second priority value, and the second priority value is used to determine the reporting priority of the measurement report. The method according to claim 35, characterized in that, The second priority value is Pri iCSI (a,c,b)=X cells ·Y s ·a+Y s ·c+b, the X cells To configure the maximum number of cells or the maximum number of serving cells for event-related reporting, the Y s The maximum number of event-related reports is configured, where 'a' indicates the reporting mode corresponding to the measurement report, 'c' is the cell index or serving cell index configured for event-related reporting, 'b' is the index configured for event reporting corresponding to the measurement report, and the second priority parameter is 'a'. The method according to claim 35, characterized in that, The step of determining the reporting priority of the measurement report based on the event information of the first event and / or the reporting mode corresponding to the measurement report includes: The second priority parameter is determined based on the reporting mode and the reporting type corresponding to the measurement report. The reporting type corresponding to the measurement report includes at least one of the event-triggered reporting type based on the first mode and the event-triggered reporting type based on the second mode. The event-triggered reporting type based on the first mode includes at least one of the event-triggered reporting via PUSCH based on the first mode and the event-triggered reporting via PUCCH based on the first mode. The event-triggered reporting type based on the second mode includes at least one of the event-triggered reporting via PUSCH based on the second mode and the event-triggered reporting via PUCCH based on the second mode. The second priority value is Pri iCSI (z,a,c,b)=2·X cells ·Y s ·z+X cells ·Y s ·a+Y s ·c+b, the X cells To configure the maximum number of cells or the maximum number of serving cells for event-related reporting, the Y s The maximum number of event-related reports is configured, z is used to indicate the reporting mode of event-triggered reporting, a is used to indicate the reporting type corresponding to the measurement report, c is the cell index or serving cell index for configuring event-related reporting, b is the reporting configuration index corresponding to the measurement report, and the second priority parameter is z and / or a. A communication device, characterized in that, include: The transceiver module is used to receive measurement report configurations, which are associated with reference signal resources. The reference signal resources are used to determine the measurement report corresponding to the measurement report configuration. The reporting priority of the measurement report is determined based on a first priority value, and the reporting priority of the measurement report is used to report the measurement report. The communication device according to claim 38 is characterized in that, The transceiver module is also used to report the measurement report according to the reporting priority of the measurement report. A communication device, characterized in that, include: The transceiver module is used to send a measurement report configuration, which is associated with a reference signal resource. The reference signal resource is used to determine the measurement report corresponding to the measurement report configuration. The reporting priority of the measurement report is determined based on a first priority value, and the reporting priority of the measurement report is used to report the measurement report. The communication device according to claim 40 is characterized in that, The transceiver module is also used to receive the measurement report. The communication device according to any one of claims 38 to 41, characterized in that, The first priority value satisfies the following formula: Pri iCSI (y,k,c,s)=2·N cells ·M s ·y+N cells ·M s ·k+M s ·c+s Wherein, the N cells For the maximum number of serving cells, M s The maximum number of measurement reports is configured, where k indicates the content of the measurement report, c is the serving cell index, s is the ID of the measurement report configuration, and the measurement report configuration is used to determine the triggering method of the measurement report; When y = 0, the measurement report is submitted in the event-triggered reporting mode based on the first mode; When y = 1, the measurement report is submitted via aperiodic CSI reporting through PUSCH; When y = 2, the measurement report is submitted in an event-triggered manner based on the second mode; When y = 3, the measurement report is submitted via PUSCH semi-persistent CSI reporting; When y = 4, the measurement report is submitted via semi-persistent CSI reporting through PUCCH; When y = 5, the measurement report is submitted via periodic CSI reporting through PUCCH. The communication device according to claim 42 is characterized in that, When the measurement report is reported in the event-triggered reporting mode based on the first mode, the measurement report configuration includes the event-triggered reporting mode of the measurement report and the event information corresponding to the measurement report, and the event-triggered reporting mode in the measurement report configuration is the first mode; When the measurement report is reported in the second mode of event-triggered reporting, the measurement report configuration includes the event-triggered reporting mode of the measurement report and the event information corresponding to the measurement report, and the event-triggered reporting mode in the measurement report configuration is the second mode. The communication device according to claim 42 or 43 is characterized in that, When k=0, the reported content of the measurement report includes L1-RSRP or L1-SINR; When k=1, the reported content of the measurement report does not include either L1-RSRP or L1-SINR. The communication device according to any one of claims 38 to 44, characterized in that, The smaller the first priority value, the higher the reporting priority of the measurement report. A communication device, characterized in that, include: The processing module is used to measure reference signals from network devices and obtain measurement reports. The measurement reports are triggered by either event-triggered reporting or non-event-triggered reporting. The processing module is also used to determine the reporting priority of the measurement report based on the triggering method of the measurement report; The transceiver module is used to report the measurement report according to the reporting priority of the measurement report. The communication device according to claim 46 is characterized in that, The first priority value satisfies the following formula: Pri iCSI (y,k,c,s)=2·N cells ·M s ·y+N cells ·M s ·k+M s ·c+s Wherein, the N cells M is the maximum number of serving cells. s The maximum number of measurement reports is configured, where k indicates the content of the measurement report, c is the serving cell index, s is the ID of the measurement report configuration, and the measurement report configuration is used to determine the triggering method of the measurement report; When y = 0, the measurement report is submitted in the event-triggered reporting mode based on the first mode. When y = 1, the measurement report is submitted via the non-periodic CSI reporting method through PUSCH; When y = 2, the measurement report is submitted in the event-triggered reporting mode based on the second mode. When y = 3, the measurement report is submitted via semi-persistent CSI reporting through PUSCH. When y = 4, the measurement report is submitted via semi-persistent CSI reporting through PUCCH. When y = 5, the measurement report is submitted via periodic CSI reporting through PUCCH. The communication device according to claim 47 is characterized in that, When k=0, the reported content of the measurement report includes L1-RSRP or L1-SINR; When k=1, the reported content of the measurement report does not include either L1-RSRP or L1-SINR. The communication device according to any one of claims 46 to 48 is characterized in that, The smaller the first priority value, the higher the reporting priority of the measurement report. A communication device, characterized in that, include: A processing module is used to measure reference signals from network devices and obtain a measurement report, wherein the measurement report is a measurement report associated with a first event; The processing module is further configured to determine the reporting priority of the measurement report based on the event information of the first event and / or the reporting mode corresponding to the measurement report; The transceiver module is used to report the measurement report according to the reporting priority of the measurement report. A communication device, characterized in that, The communication device includes a processor for executing a computer program or computer instructions in a memory to perform the method as claimed in any one of claims 1 to 8, or the method as claimed in any one of claims 9 to 29, or the method as claimed in any one of claims 30 to 37. A computer-readable storage medium, characterized in that, It stores a computer program that, when executed by a communication device, causes the communication device to perform the method as described in any one of claims 1 to 8, or causes the communication device to perform the method as described in any one of claims 9 to 29, or causes the communication device to perform the method as described in any one of claims 30 to 37. A computer program product containing instructions, characterized in that, When the computer program is executed by a communication device while running on a computer, the communication device performs the method as described in any one of claims 1 to 8, or performs the method as described in any one of claims 9 to 29, or performs the method as described in any one of claims 30 to 37.
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