A measurement method, apparatus, device, and readable storage medium

By sending capability indication information to network equipment and executing measurement configuration information from user equipment, the problem of cross-link interference on TDD carriers in 5G is solved, the measurement and service scheduling of user equipment are optimized, and the processing capacity is improved.

CN116636250BActive Publication Date: 2026-02-10BEIJING XIAOMI MOBILE SOFTWARE CO LTD
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Patent Information

Application Number
CN202180004634.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-12-20
Publication Date
2026-02-10
Estimated Expiration
2041-12-20

AI Technical Summary

Technical Problem

In 5G wireless communication, cross-link interference (CLI) between user equipment on the same time-division duplex (TDD) carrier causes problems in service scheduling and UE measurement behavior, which are difficult to mitigate effectively with existing technologies.

Method used

User equipment sends capability indication information to network equipment, receives and executes measurement configuration information configured by network equipment based on the information, including measurement interval, time domain proportion and priority indication, in order to optimize the measurement of detection reference signal (SRS) of interfering equipment.

Benefits of technology

By optimizing the measurement configuration, cross-link interference was reduced, improving the processing capacity of user equipment and the rationality of service scheduling.

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Abstract

The present disclosure provides a measurement method, device and readable storage medium, the method is applied to a wireless communication system, the method comprises: a user equipment timely reports capability indication information including receiving capability and / or measurement capability to a network equipment, so that the network equipment reasonably schedules and configures the user equipment according to the capability of the user equipment, and improves the processing capability of the user equipment. In the present disclosure, the user equipment timely reports capability indication information including receiving capability and / or measurement capability to the network equipment, so that the network equipment reasonably schedules and configures the user equipment according to the capability of the user equipment, and improves the processing capability of the user equipment.
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Description

Technical Field

[0001] This disclosure relates to the field of wireless communication technology, and in particular to a measurement method, apparatus, and readable storage medium. Background Technology

[0002] In wireless communication technologies, such as 5G, cross-link interference (CLI) can occur between user equipment (UE) that communicate (including sending and / or receiving) simultaneously on the same time-division duplex (TDD) carrier according to different scheduling commands.

[0003] To mitigate cross-link interference, the UE measures the Sounding Reference Signal-Reference Signal Receiving Power (SRS-RSRP) of the uplink sounding reference signal and / or the Received Signal Strength Indication (CLI-RSSI) of cross-link interference.

[0004] For example, a group of attacker UEs transmits data on the same TTD carrier, while another group of victim UEs receives data on the same TTD carrier. After measuring SRS-RSRP and / or CLI-RSSI, the UEs report the measurement results, and network devices (e.g., gNBs) can assess the interference of the attacker UEs to the victim UEs based on the measurement results. The attacker UE transmits SRS signals in a configured way, and the victim UE performs interference measurements on the SRS signals in a corresponding configuration.

[0005] Therefore, issues such as service scheduling of the serving cell and UE measurement behavior need to be addressed during UE SRS-RSRP and / or CLI-RSSI measurements. Summary of the Invention

[0006] In view of the above, this disclosure provides a measurement method, apparatus and readable storage medium.

[0007] In a first aspect, a measurement method is provided, which is executed by a user device, comprising:

[0008] Send capability indication information to the network device; the capability indication information is used to indicate receiving capability and / or measurement capability;

[0009] Receive measurement configuration information from the network device; wherein the measurement configuration information is configuration information determined by the network device based on the capability indication information for instructing the user equipment to measure the detection reference signal (SRS) of the interference device.

[0010] In one possible implementation, the capability indication information includes first information, which is whether the user equipment supports simultaneously receiving the PDCH and measuring the SRS of the interfering device when the subcarrier spacing SCS of the physical downlink channel PDCH configured in the serving cell of the user equipment is different from the subcarrier spacing SCS of the detection reference signal SRS of the interfering device.

[0011] In one possible implementation, the capability indication information includes second information, which is whether a measurement interval is supported, the measurement interval being used to measure the SRS of interfering devices.

[0012] In one possible implementation, the method further includes:

[0013] In response to the second information corresponding to a supported measurement interval and the detection reference signal (SRS) of the interfering device not being within the active BWP of the serving cell, the measurement configuration information includes measurement interval configuration information, which indicates the measurement interval used when measuring the SRS of the interfering device.

[0014] The user equipment uses the measurement interval to measure the SRS of the interfering device.

[0015] In one possible implementation, the method further includes:

[0016] In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: time domain proportion configuration information, wherein the time domain proportion configuration information includes: a first proportion for measuring the downlink reference signal of the serving cell of the user equipment, and a second proportion for measuring the detection reference signal (SRS) of the interfering device;

[0017] The user equipment uses the first percentage to measure the downlink reference signal of the serving cell of the user equipment, and uses the second percentage to measure the detection reference signal (SRS) of the interfering device.

[0018] In one possible implementation, the sum of the first proportion and the second proportion is 1.

[0019] In one possible implementation, in response to the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device being wholly or partially overlapped in the time domain, the measurement configuration information includes: information for indicating that the downlink reference signal of the serving cell of the user equipment should be measured preferentially within a preset time period;

[0020] The user equipment shall preferentially measure the downlink reference signal of the serving cell of the user equipment within a preset time period.

[0021] In one possible implementation, in response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: information for indicating that the detection reference signal of the interfering device should be measured preferentially within a preset time period;

[0022] The user equipment shall prioritize measuring the detection reference signal of the interference device within a preset time period.

[0023] In one possible implementation, in response to the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device being wholly or partially overlapped in the time domain, the measurement configuration information includes: priority indication information; wherein the priority indication information is used to indicate the priority of the downlink reference signal of the serving cell of the user equipment and the priority of the detection reference signal of the interfering device.

[0024] The user equipment prioritizes measuring the reference signal corresponding to the highest priority in the priority indication information within a preset time period.

[0025] In one possible implementation, measuring the SRS of the jamming device includes measuring the SRS-RSRP and / or CLI-RSSI of the jamming device.

[0026] Secondly, a measurement method is provided, which is executed by a network device, including:

[0027] Receive capability indication information sent by the user equipment; the capability indication information is used to indicate receiving capability and / or measurement capability;

[0028] The measurement configuration information is determined based on the capability indication information;

[0029] Send measurement configuration information to the user equipment; wherein the measurement configuration information is configuration information used to instruct the user equipment to measure the detection reference signal (SRS) of the interference device.

[0030] In one possible implementation, the capability indication information includes first information, which is whether the user equipment supports simultaneously receiving the PDCH and measuring the SRS of the interfering device when the subcarrier spacing SCS of the physical downlink channel PDCH configured in the serving cell of the user equipment is different from the subcarrier spacing SCS of the detection reference signal SRS of the interfering device.

[0031] In one possible implementation, the method further includes:

[0032] In response to the first information corresponding to supporting simultaneous reception of the PDCH and measurement of the SRS of the interfering device, the physical downlink channel PDCH is scheduled during the measurement of the detection reference signal SRS of the interfering device by the user equipment.

[0033] or,

[0034] In response to the first information corresponding to not supporting simultaneous reception of the PDCH and measurement of the SRS of the interfering device, the physical downlink channel PDCH is not scheduled during the measurement of the detection reference signal SRS of the interfering device by the user equipment.

[0035] or,

[0036] In response to the first information corresponding to not supporting simultaneous reception of the PDCH and measurement of the SRS of the interfering device, the physical downlink channel PDCH is not scheduled during the extended period of the measurement of the detection reference signal SRS of the interfering device by the user equipment.

[0037] In one possible implementation, the extended period is a time-domain region from the first N symbols of the measurement period to the last M symbols of the measurement period, where N and M may be the same or different.

[0038] In one possible implementation, the capability indication information includes second information, which is whether a measurement interval is supported, the measurement interval being used to measure the SRS of interfering devices.

[0039] In one possible implementation, the method further includes:

[0040] In response to the second information corresponding to a supported measurement interval and the detection reference signal (SRS) of the interfering device not being within the active BWP of the serving cell, the measurement configuration information includes measurement interval configuration information, which indicates the measurement interval used when measuring the SRS of the interfering device.

[0041] or,

[0042] In response to the second information corresponding to unsupported measurement intervals, the measurement configuration information does not include measurement interval configuration information.

[0043] In one possible implementation, the method further includes:

[0044] In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: time domain proportion configuration information, wherein the time domain proportion configuration information includes: a first proportion for measuring the downlink reference signal of the serving cell of the user equipment, and a second proportion for measuring the detection reference signal (SRS) of the interfering device.

[0045] In one possible implementation, the sum of the first proportion and the second proportion is 1.

[0046] In one possible implementation, in response to the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device being wholly or partially overlapped in the time domain, the measurement configuration information includes: information for indicating that the downlink reference signal of the serving cell of the user equipment should be measured preferentially within a preset time period.

[0047] In one possible implementation, in response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: information for indicating that the detection reference signal of the interfering device should be measured preferentially within a preset time period.

[0048] In one possible implementation, in response to the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device being wholly or partially overlapped in the time domain, the measurement configuration information includes: the priority of the detection reference signal of the interfering device and the priority of the detection reference signal of the interfering device, so that the user equipment prioritizes measuring the reference signal corresponding to the highest priority in the priority indication information within a preset time period.

[0049] In one possible implementation, measuring the SRS of the jamming device includes measuring the SRS-RSRP and / or CLI-RSSI of the jamming device.

[0050] Thirdly, a communication device is provided. This communication device can be used to perform the steps executed by a network device in the first aspect or any possible design of the first aspect. The network device can implement the functions of the methods described above through hardware structures, software modules, or a combination of hardware structures and software modules.

[0051] When the communication device shown in the third aspect is implemented through software modules, the communication device includes a transceiver module and a processing module.

[0052] The transceiver module is configured to send capability indication information to the network device, the capability indication information being used to indicate receiving capability and / or measurement capability; and to receive measurement configuration information from the network device; wherein the measurement configuration information is configuration information determined by the network device based on the capability indication information, used to instruct the user equipment to measure the detection reference signal (SRS) of the interference device.

[0053] In one possible implementation, the capability indication information includes first information, which is whether the user equipment supports simultaneously receiving the PDCH and measuring the SRS of the interfering device when the subcarrier spacing SCS of the physical downlink channel PDCH configured in the serving cell of the user equipment is different from the subcarrier spacing SCS of the detection reference signal SRS of the interfering device.

[0054] In one possible implementation, the capability indication information includes second information, which is whether a measurement interval is supported, the measurement interval being used to measure the SRS of the interfering device.

[0055] In one possible implementation, in response to the second information corresponding to a support measurement interval and the detection reference signal (SRS) of the interfering device not being within the active BWP of the serving cell, the measurement configuration information includes measurement interval configuration information for indicating the measurement interval used when measuring the SRS of the interfering device;

[0056] The communication device further includes a processing module for measuring the SRS of the interfering device using the measurement interval.

[0057] In one possible implementation, in response to the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device being wholly or partially overlapped in the time domain, the measurement configuration information includes: time domain proportion configuration information, wherein the time domain proportion configuration information includes: a first proportion for measuring the downlink reference signal of the serving cell of the user equipment, and a second proportion for measuring the detection reference signal (SRS) of the interfering device;

[0058] The communication device further includes a processing module for measuring the downlink reference signal of the serving cell of the user equipment using the first percentage and measuring the detection reference signal (SRS) of the interfering device using the second percentage.

[0059] In one possible implementation, in response to the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device being wholly or partially overlapped in the time domain, the measurement configuration information includes: information for indicating that the downlink reference signal of the serving cell of the user equipment should be measured preferentially within a preset time period;

[0060] The communication device further includes a processing module for prioritizing the measurement of the downlink reference signal of the serving cell of the user equipment within a preset time period.

[0061] In one possible implementation, in response to the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device being wholly or partially overlapped in the time domain, the measurement configuration information includes: information for indicating that the detection reference signal of the interfering device should be measured preferentially within a preset time period;

[0062] The communication device also includes a processing module for prioritizing the measurement of the detection reference signal of the interference device within a preset time period.

[0063] In one possible implementation, in response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: priority indication information; wherein the priority indication information is used to indicate the priority of the downlink reference signal of the serving cell of the user equipment and the priority of the detection reference signal of the interfering device.

[0064] The communication device further includes a processing module for prioritizing the measurement of the reference signal corresponding to the highest priority in the priority indication information within a preset time period.

[0065] Fourthly, a communication device is provided. This communication device can be used to perform the steps executed by a network device in the second aspect or any possible design of the second aspect. The network device can implement the functions of the methods described above through hardware structures, software modules, or a combination of hardware structures and software modules.

[0066] When the communication device shown in the fourth aspect is implemented through software modules, the communication device includes a transceiver module and a processing module.

[0067] The transceiver module is used to receive capability indication information sent by the user equipment; the capability indication information is used to indicate receiving capability and / or measurement capability.

[0068] The processing module is used to determine measurement configuration information based on the capability indication information;

[0069] The transceiver module is further configured to send measurement configuration information to the user equipment; wherein the measurement configuration information is configuration information used to instruct the user equipment to measure the detection reference signal (SRS) of the interference device.

[0070] In one possible implementation, the capability indication information includes first information, which is whether the user equipment supports simultaneously receiving the PDCH and measuring the SRS of the interfering device when the subcarrier spacing SCS of the physical downlink channel PDCH configured in the serving cell of the user equipment is different from the subcarrier spacing SCS of the detection reference signal SRS of the interfering device.

[0071] In one possible implementation, the processing module is further configured to schedule the physical downlink channel PDCH during the measurement of the detection reference signal SRS of the jamming device by the user equipment in response to the first information corresponding to supporting simultaneous reception of the PDCH and measurement of the SRS of the jamming device.

[0072] or,

[0073] In response to the first information corresponding to not supporting simultaneous reception of the PDCH and measurement of the SRS of the interfering device, the physical downlink channel PDCH is not scheduled during the measurement of the detection reference signal SRS of the interfering device by the user equipment.

[0074] or,

[0075] In response to the first information corresponding to not supporting simultaneous reception of the PDCH and measurement of the SRS of the interfering device, the physical downlink channel PDCH is not scheduled during the extended period of the measurement of the detection reference signal SRS of the interfering device by the user equipment.

[0076] In one possible implementation, the capability indication information includes second information, which is whether a measurement interval is supported, the measurement interval being used to measure the SRS of the interfering device.

[0077] In one possible implementation, in response to the second information corresponding to a support measurement interval and the detection reference signal (SRS) of the interfering device not being within the active BWP of the serving cell, the measurement configuration information includes measurement interval configuration information for indicating the measurement interval used when measuring the SRS of the interfering device;

[0078] or,

[0079] In response to the second information corresponding to unsupported measurement intervals, the measurement configuration information does not include measurement interval configuration information.

[0080] In one possible implementation, in response to the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device being wholly or partially overlapped in the time domain, the measurement configuration information includes: time domain proportion configuration information, wherein the time domain proportion configuration information includes: a first proportion for measuring the downlink reference signal of the serving cell of the user equipment, and a second proportion for measuring the detection reference signal (SRS) of the interfering device.

[0081] In one possible implementation, in response to the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device being wholly or partially overlapped in the time domain, the measurement configuration information includes: information for indicating that the downlink reference signal of the serving cell of the user equipment should be measured preferentially within a preset time period.

[0082] In one possible implementation, in response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: information for indicating that the detection reference signal of the interfering device should be measured preferentially within a preset time period.

[0083] In one possible implementation, in response to the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device being wholly or partially overlapped in the time domain, the measurement configuration information includes: the priority of the detection reference signal of the interfering device and the priority of the detection reference signal of the interfering device.

[0084] Fifthly, a computer-readable storage medium is provided, wherein instructions (or computer programs, programs) are stored therein, which, when invoked and executed on a computer, cause the computer to perform the first aspect or any possible design of the first aspect.

[0085] In a sixth aspect, a computer-readable storage medium is provided, wherein instructions (or computer programs, programs) are stored therein, which, when invoked and executed on a computer, cause the computer to perform the second aspect or any possible design of the second aspect.

[0086] It should be understood that the above general description and the following detailed description are exemplary and explanatory only, and are not intended to limit this disclosure.

[0087] In this disclosure, the user equipment promptly reports capability indication information, including receiving capability and / or measurement capability, to the network equipment, enabling the network equipment to allocate reasonable scheduling and configuration to the user equipment based on its capabilities, thereby improving the processing capability of the user equipment. Attached Figure Description

[0088] The accompanying drawings, which are included to provide a further understanding of the embodiments of this disclosure and form part of this application, illustrate exemplary embodiments of this disclosure and, together with their descriptions, serve to explain the embodiments of this disclosure and do not constitute an improper limitation of the embodiments of this disclosure. In the drawings:

[0089] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with the present disclosure and, together with the description, serve to explain the principles of the embodiments of the present disclosure.

[0090] Figure 1 This is a schematic diagram of a wireless communication system architecture provided in an embodiment of this disclosure;

[0091] Figure 2 This is a flowchart illustrating a measurement method according to an exemplary embodiment;

[0092] Figure 3 This is a flowchart illustrating a measurement method according to an exemplary embodiment;

[0093] Figure 4 This is a flowchart illustrating a measurement method according to an exemplary embodiment;

[0094] Figure 5 This is a flowchart illustrating a measurement method according to an exemplary embodiment;

[0095] Figure 6 This is a flowchart illustrating a measurement method according to an exemplary embodiment;

[0096] Figure 7 This is a flowchart illustrating a measurement method according to an exemplary embodiment;

[0097] Figure 8 This is a structural diagram of a measuring device according to an exemplary embodiment;

[0098] Figure 9 This is a structural diagram of a measuring device according to an exemplary embodiment;

[0099] Figure 10 This is a structural diagram of a measuring device according to an exemplary embodiment;

[0100] Figure 11 This is a structural diagram of a measuring device according to an exemplary embodiment. Detailed Implementation

[0101] The embodiments of this disclosure will now be further described in conjunction with the accompanying drawings and specific implementation details.

[0102] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numerals in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with those of this disclosure. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this disclosure as detailed in the appended claims.

[0103] like Figure 1 As shown, the measurement method provided in this embodiment can be applied to a wireless communication system 100, which may include, but is not limited to, a network device 101 and a user equipment 102. The user equipment 102 is configured to support carrier aggregation and can be connected to multiple carrier units of the network device 101, including a primary carrier unit and one or more secondary carrier units.

[0104] It should be understood that the wireless communication system 100 described above is applicable to both low-frequency and high-frequency scenarios. Application scenarios for the wireless communication system 100 include, but are not limited to, long-term evolution (LTE) systems, LTE frequency division duplex (FDD) systems, LTE time division duplex (TDD) systems, worldwide interoperability for microwave access (WiMAX) communication systems, cloud radio access network (CRAN) systems, future 5th-generation (5G) systems, new radio (NR) communication systems, or future evolved public land mobile network (PLMN) systems.

[0105] The user equipment 102 shown above can be user equipment (UE), terminal, access terminal, terminal unit, terminal station, mobile station (MS), remote station, remote terminal, mobile terminal, wireless communication equipment, terminal agent, or user equipment, etc. This user equipment 102 may have wireless transceiver capabilities, enabling it to communicate (e.g., wirelessly) with one or more network devices 101 of one or more communication systems, and to receive network services provided by the network devices 101, including but not limited to the base station shown in the figure.

[0106] User equipment 102 may be a cellular phone, cordless phone, session initiation protocol (SIP) phone, wireless local loop (WLL) station, personal digital assistant (PDA) device, handheld device with wireless communication capabilities, computing device or other processing device connected to a wireless modem, vehicle-mounted device, wearable device, user equipment in a future 5G network or user equipment in a future evolved PLMN network, etc.

[0107] Network device 101 can be an access network device (or access point). Access network device refers to equipment that provides network access functionality, such as a radio access network (RAN) base station. Specifically, network device may include base station (BS) equipment, or base station equipment and radio resource management equipment used to control the base station equipment. This network device may also include relay stations (relay equipment), access points, and base stations in future 5G networks, base stations in future evolved PLMN networks, or NR base stations. Network device can be a wearable device or an in-vehicle device. Network device can also be a communication chip with a communication module.

[0108] For example, network equipment 101 includes, but is not limited to: next-generation base stations (gnodeB, gNB) in 5G, evolved node B (eNB) in LTE systems, radio network controllers (RNC), node B (NB) in WCDMA systems, radio controllers and base station controllers (BSC) in CRAN systems, base transceiver stations (BTS) in GSM or CDMA systems, home base stations (e.g., home evolved nodeB, or home node B, HNB), baseband units (BBU), transmitting and receiving points (TRP), transmitting points (TP), or mobile switching centers, etc.

[0109] This disclosure provides a measurement method. Figure 2 This is a flowchart illustrating a measurement method according to an exemplary embodiment, such as... Figure 2 As shown, the method includes:

[0110] In step S201, user equipment 102 sends capability indication information to network device 101; the capability indication information is used to indicate reception capability and / or measurement capability.

[0111] In step S202, network device 101 receives capability indication information sent by user equipment 102;

[0112] In step S203, network device 101 sends measurement configuration information to user equipment 102; the measurement configuration information is configuration information for measuring the detection reference signal (SRS) of interference devices, determined by the network device based on the capability indication information.

[0113] In step S204, user equipment 102 receives measurement configuration information sent by network device 101.

[0114] In one possible implementation, capability indication information is used to indicate receiving capability and / or measurement capability.

[0115] In this embodiment of the disclosure, the user equipment promptly reports capability indication information, including receiving capability and / or measurement capability, to the network device, enabling the network device to allocate reasonable scheduling and configuration to the user equipment based on its capabilities, thereby improving the processing capability of the user equipment.

[0116] This disclosure provides a measurement method that is performed by a user equipment. Figure 3 This is a flowchart illustrating a measurement method according to an exemplary embodiment, such as... Figure 3 As shown, this method includes:

[0117] Step S301: Send capability indication information to the network device; the capability indication information is used to indicate receiving capability and / or measurement capability;

[0118] Step S302: Receive measurement configuration information from the network device; wherein the measurement configuration information is configuration information determined by the network device based on the capability indication information, used to instruct the user equipment to measure the detection reference signal (SRS) of the interference device.

[0119] In one possible implementation, measuring the SRS of the jamming device includes measuring the SRS-RSRP and / or CLI-RSSI of the jamming device.

[0120] In one possible implementation, the capability indication information includes: first information, which is whether the user equipment supports simultaneously receiving the PDCH and measuring the SRS of the interfering device when the subcarrier spacing SCS of the physical downlink channel PDCH configured in the serving cell of the user equipment is different from the subcarrier spacing SCS of the detection reference signal SRS of the interfering device.

[0121] In one possible implementation, the first information is capability indication information used to indicate receiving capabilities within capability indication information.

[0122] In one possible implementation, the first information corresponds to enabling the network device to schedule the physical downlink channel (PDCH) during the measurement of the detection reference signal (SRS) of the interfering device when simultaneously receiving the PDCH and measuring the SRS of the interfering device.

[0123] In one possible implementation, the first information corresponds to the network device not scheduling the physical downlink channel PDCH during the measurement of the sounding reference signal SRS of the interfering device when it does not support simultaneous reception of the PDCH and measurement of the SRS of the interfering device.

[0124] In one possible implementation, the first information corresponds to the situation where simultaneous reception of the PDCH and measurement of the SRS of the interfering device are not supported, causing the network device not to schedule the Physical Downlink Channel (PDCH) during the extended period of the measurement period of the Detection Reference Signal (SRS) of the interfering device measured by the user equipment. In one example, the extended period of the measurement period is the time-domain region from the first N symbols of the measurement period to the last M symbols of the measurement period, where N and M may be the same or different.

[0125] In one possible implementation, the capability indication information includes second information: whether a measurement interval is supported. This measurement interval is used to measure the SRS of the interfering device. When the second information corresponds to a supported measurement interval and the SRS of the interfering device is not within the active BWP of the serving cell, the network device sends measurement configuration information including measurement interval configuration information. This measurement interval configuration information indicates the measurement interval used to measure the SRS of the interfering device. When the second information corresponds to a non-supported measurement interval, the measurement configuration information does not include measurement interval configuration information; that is, regardless of whether the SRS of the interfering device is within the active BWP of the serving cell, no measurement gap is configured for the user equipment. Specifically, when the SRS of the interfering device is within the active BWP of the serving cell, the UE can measure the SRS of the interfering device without using a measurement interval. When the SRS of the interfering device is not within the active BWP of the serving cell, the UE needs to use a measurement interval to measure the SRS of the interfering device.

[0126] This disclosure provides a measurement method, which is executed by a user equipment. The method includes:

[0127] Send capability indication information to the network device; the capability indication information is used to indicate receiving capabilities;

[0128] Receive measurement configuration information from the network device; wherein the measurement configuration information is configuration information determined by the network device based on the capability indication information, used to instruct the user equipment to measure the detection reference signal (SRS) of the interference device.

[0129] In one possible implementation, measuring the SRS of the jamming device includes measuring the SRS-RSRP and / or CLI-RSSI of the jamming device.

[0130] In one possible implementation, the capability indication information includes: first information, which is whether the user equipment supports simultaneously receiving the PDCH and measuring the SRS of the interfering device when the subcarrier spacing SCS of the physical downlink channel PDCH configured in the serving cell of the user equipment is different from the subcarrier spacing SCS of the detection reference signal SRS of the interfering device.

[0131] In one possible implementation, the first information is capability indication information used to indicate receiving capabilities within capability indication information.

[0132] In one possible implementation, the first information corresponds to enabling the network device to schedule the physical downlink channel (PDCH) during the measurement of the detection reference signal (SRS) of the interfering device when simultaneously receiving the PDCH and measuring the SRS of the interfering device.

[0133] In one possible implementation, the first information corresponds to the network device not scheduling the physical downlink channel PDCH during the measurement of the sounding reference signal SRS of the interfering device when it does not support simultaneous reception of the PDCH and measurement of the SRS of the interfering device.

[0134] In one possible implementation, the first information corresponds to the situation where simultaneous reception of the PDCH and measurement of the SRS of the interfering device are not supported, causing the network device not to schedule the Physical Downlink Channel (PDCH) during the extended period of the measurement period of the Detection Reference Signal (SRS) of the interfering device measured by the user equipment. In one example, the extended period of the measurement period is the time-domain region from the first N symbols of the measurement period to the last M symbols of the measurement period, where N and M may be the same or different.

[0135] This disclosure provides a measurement method, which is executed by a user equipment, and the method includes:

[0136] Send capability indication information to network devices; the capability indication information is used to indicate measurement capabilities;

[0137] Receive measurement configuration information from the network device; wherein the measurement configuration information is configuration information determined by the network device based on the capability indication information, used to instruct the user equipment to measure the detection reference signal (SRS) of the interference device.

[0138] In one possible implementation, measuring the SRS of the jamming device includes measuring the SRS-RSRP and / or CLI-RSSI of the jamming device.

[0139] In one possible implementation, the capability indication information includes second information: whether a measurement interval is supported. This measurement interval is used to measure the SRS of the interfering device. When the second information corresponds to a supported measurement interval and the SRS of the interfering device is not within the active BWP of the serving cell, the network device sends measurement configuration information including measurement interval configuration information. This measurement interval configuration information indicates the measurement interval used to measure the SRS of the interfering device. Furthermore, when the second information corresponds to a non-supported measurement interval, the measurement configuration information does not include measurement interval configuration information; that is, regardless of whether the SRS of the interfering device is within the active BWP of the serving cell, no measurement gap is configured for the user equipment. Specifically, when the SRS of the interfering device is within the active BWP of the serving cell, the UE can measure the SRS of the interfering device without using a measurement interval. When the SRS of the interfering device is not within the active BWP of the serving cell, the UE needs to use a measurement interval to measure the SRS of the interfering device.

[0140] This disclosure provides a measurement method that is performed by a user equipment. Figure 4 This is a flowchart illustrating a measurement method according to an exemplary embodiment, such as... Figure 4 As shown, this method includes:

[0141] Step S401: Send capability indication information to the network device; the capability indication information is used to indicate receiving capability and / or measurement capability;

[0142] Step S402: Receive measurement configuration information from the network device; wherein, in response to the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device being wholly or partially overlapping in the time domain, the measurement configuration information includes: time domain proportion configuration information, wherein the time domain proportion configuration information includes: a first proportion for measuring the downlink reference signal of the serving cell of the user equipment, and a second proportion for measuring the detection reference signal (SRS) of the interfering device.

[0143] In one possible implementation, the sum of the first proportion and the second proportion is 1.

[0144] This disclosure provides a measurement method that is performed by a user equipment. Figure 4 This is a flowchart illustrating a measurement method according to an exemplary embodiment, such as... Figure 4 As shown, this method includes:

[0145] Step S401: Send capability indication information to the network device; the capability indication information is used to indicate receiving capability and / or measurement capability;

[0146] Step S402: Receive measurement configuration information from the network device; in response to the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device being wholly or partially overlapping in the time domain, wherein the measurement configuration information includes: information for indicating priority measurement of the downlink reference signal of the serving cell of the user equipment within a preset time period; or, the measurement configuration information includes: information for indicating priority measurement of the detection reference signal of the interfering device within a preset time period; or, in a possible implementation, the measurement configuration information includes: priority indication information; wherein, the priority indication information is used to indicate the priority of the downlink reference signal of the serving cell of the user equipment and the priority of the detection reference signal of the interfering device, so that the user equipment prioritizes measurement of the reference signal corresponding to the highest priority in the priority indication information within the preset time period.

[0147] In one example, the measurement configuration information also includes a preset time period, and the priority in the priority indication information is used for the preset time period. For example, within the preset time period T, if the priority of the downlink reference signal of the serving cell is higher than that of the detection reference signal of the interfering device, then the UE prioritizes measuring the downlink reference signal of the serving cell; otherwise, the UE prioritizes measuring the detection reference signal of the interfering device.

[0148] This disclosure provides a measurement method that is performed by a network device. Figure 5 This is a flowchart illustrating a measurement method according to an exemplary embodiment, such as... Figure 5 As shown, this method includes:

[0149] Step S501: Receive capability indication information sent by the user equipment; the capability indication information is used to indicate reception capability and / or measurement capability;

[0150] Step S502: Determine measurement configuration information based on the capability indication information;

[0151] Step S503: Send measurement configuration information to the user equipment; wherein the measurement configuration information is configuration information used to instruct the user equipment to measure the detection reference signal SRS of the interference device.

[0152] In one possible implementation, measuring the SRS of the jamming device includes measuring the SRS-RSRP and / or CLI-RSSI of the jamming device.

[0153] In one possible implementation, the capability indication information includes: first information, which is whether the user equipment supports simultaneously receiving the PDCH and measuring the SRS of the interfering device when the subcarrier spacing SCS of the physical downlink channel PDCH configured in the serving cell of the user equipment is different from the subcarrier spacing SCS of the detection reference signal SRS of the interfering device.

[0154] In one possible implementation, the first information is capability indication information used to indicate receiving capabilities within capability indication information.

[0155] In one possible implementation, in response to the first information corresponding to supporting simultaneous reception of the PDCH and measurement of the SRS of the interfering device, the physical downlink channel PDCH is scheduled during the measurement of the detection reference signal SRS of the interfering device by the user equipment.

[0156] In one possible implementation, in response to the first information corresponding to not supporting simultaneous reception of the PDCH and measurement of the SRS of the interfering device, the physical downlink channel PDCH is not scheduled during the measurement of the detection reference signal SRS of the interfering device by the user equipment.

[0157] In one possible implementation, in response to the first information corresponding to not supporting simultaneous reception of the PDCH and measurement of the SRS of the interfering device, the Physical Downlink Channel (PDCH) is not scheduled during the extended period of the measurement period of the Detection Reference Signal (SRS) of the interfering device by the user equipment. In one example, the extended period is the time-domain region from the first N symbols of the measurement period to the last M symbols of the measurement period, where N and M may be the same or different.

[0158] In one possible implementation, the first information corresponds to the situation where simultaneous reception of the PDCH and measurement of the SRS of the interfering device are not supported, causing the network device not to schedule the Physical Downlink Channel (PDCH) during the extended period of the measurement period of the Detection Reference Signal (SRS) of the interfering device measured by the user equipment. In one example, the extended period of the measurement period is the time-domain region from the first N symbols of the measurement period to the last M symbols of the measurement period, where N and M may be the same or different.

[0159] In one possible implementation, the capability indication information includes second information: whether a measurement interval is supported, the measurement interval being used to measure the SRS of the interfering device. In one example, in response to the second information corresponding to supported measurement intervals and the SRS of the interfering device not being within the active BWP of the serving cell, the measurement configuration information includes measurement interval configuration information, which indicates the measurement interval used when measuring the SRS of the interfering device. In one example, in response to the second information corresponding to unsupported measurement intervals, the measurement configuration information does not include measurement interval configuration information; that is, regardless of whether the SRS of the interfering device is within the active BWP of the serving cell, no measurement GAP is configured for the user equipment. Wherein, when the SRS of the interfering device is within the active BWP of the serving cell, the UE can measure the SRS of the interfering device without using a measurement interval; when the SRS of the interfering device is not within the active BWP of the serving cell, the UE needs to use a measurement interval to measure the SRS of the interfering device.

[0160] This disclosure provides a measurement method that is performed by a network device. Figure 6 This is a flowchart illustrating a measurement method according to an exemplary embodiment, such as... Figure 6 As shown, this method includes:

[0161] Step S601: Receive capability indication information sent by the user equipment; the capability indication information is used to indicate reception capability and / or measurement capability;

[0162] Step S602: Determine measurement configuration information based on the capability indication information;

[0163] Step S603: Send measurement configuration information to the user equipment; in response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are fully or partially overlapped in the time domain, the measurement configuration information includes: time domain proportion configuration information, wherein the time domain proportion configuration information includes: a first proportion for measuring the downlink reference signal of the serving cell of the user equipment, and a second proportion for measuring the detection reference signal (SRS) of the interfering device.

[0164] In one example, the sum of the first percentage and the second percentage is 1.

[0165] In one possible implementation, measuring the SRS of the jamming device includes measuring the SRS-RSRP and / or CLI-RSSI of the jamming device.

[0166] This disclosure provides a measurement method that is performed by a network device. Figure 7This is a flowchart illustrating a measurement method according to an exemplary embodiment, such as... Figure 7 As shown, this method includes:

[0167] Step S701: Receive capability indication information sent by the user equipment; the capability indication information is used to indicate reception capability and / or measurement capability;

[0168] Step S702: Determine measurement configuration information based on the capability indication information;

[0169] Step S703: In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, measurement configuration information is sent to the user equipment; the measurement configuration information includes: information for indicating priority measurement of the downlink reference signal of the serving cell of the user equipment within a preset time period; or, the measurement configuration information includes: information for indicating priority measurement of the detection reference signal of the interfering device within a preset time period; or, the measurement configuration information includes: priority indication information; wherein, the priority indication information is used to indicate the priority of the downlink reference signal of the serving cell of the user equipment and the priority of the detection reference signal of the interfering device.

[0170] The user equipment prioritizes measuring the reference signal corresponding to the highest priority in the priority indication information within a preset time period.

[0171] In one possible implementation, measuring the SRS of the jamming device includes measuring the SRS-RSRP and / or CLI-RSSI of the jamming device.

[0172] Based on the same concept as the above method embodiments, this application also provides a communication device that can have the functions of the user equipment 101 in the above method embodiments and can be used to execute the steps performed by the user equipment 101 provided in the above method embodiments. This function can be implemented in hardware, or in software, or in hardware executing corresponding software. The hardware or software includes one or more modules corresponding to the above functions.

[0173] In one possible implementation, such as Figure 8 The communication device 800 shown can serve as the user equipment involved in the above method embodiments and execute the steps performed by the user equipment in the above method embodiments. For example... Figure 8As shown, the communication device 800 may include a transceiver module 801 and a processing module 802, which are coupled to each other. The transceiver module 801 can be used to support the communication device 800 in communication, and the transceiver module 801 may have wireless communication capabilities, such as being able to communicate wirelessly with other communication devices through a wireless air interface. The processing module 802 can be used to support the communication device 800 in performing the processing actions in the above method embodiments, including but not limited to: generating information or messages sent by the transceiver module 801, and / or demodulating and decoding signals received by the transceiver module 801, etc.

[0174] When performing the steps implemented by the user equipment 101, the transceiver module 801 is configured to send capability indication information to the network device, the capability indication information being used to indicate receiving capability and / or measurement capability; and is also configured to receive measurement configuration information from the network device; wherein the measurement configuration information is configuration information determined by the network device based on the capability indication information for instructing the user equipment to measure the detection reference signal (SRS) of the interference device.

[0175] In one possible implementation, the capability indication information includes first information, which is whether the user equipment supports simultaneously receiving the PDCH and measuring the SRS of the interfering device when the subcarrier spacing SCS of the physical downlink channel PDCH configured in the serving cell of the user equipment is different from the subcarrier spacing SCS of the detection reference signal SRS of the interfering device.

[0176] In one possible implementation, the capability indication information includes second information, which is whether a measurement interval is supported, the measurement interval being used to measure the SRS of interfering devices.

[0177] In one possible implementation, in response to the second information corresponding to a support measurement interval and the detection reference signal (SRS) of the interfering device not being within the active BWP of the serving cell, the measurement configuration information includes measurement interval configuration information, which indicates the measurement interval used when measuring the SRS of the interfering device, and the processing module 802 is configured to measure the SRS of the interfering device using the measurement interval.

[0178] In one possible implementation, in response to the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device being wholly or partially overlapping in the time domain, the measurement configuration information includes: time domain proportion configuration information, wherein the time domain proportion configuration information includes: a first proportion for measuring the downlink reference signal of the serving cell of the user equipment, and a second proportion for measuring the detection reference signal (SRS) of the interfering device. The processing module 802 is configured to measure the downlink reference signal of the serving cell of the user equipment using the first proportion, and to measure the detection reference signal (SRS) of the interfering device using the second proportion.

[0179] In one possible implementation, the sum of the first proportion and the second proportion is 1.

[0180] In one possible implementation, the measurement configuration information includes: information for indicating that the downlink reference signal of the serving cell of the user equipment should be measured preferentially within a preset time period. Processing module 802 is configured to preferentially measure the downlink reference signal of the serving cell of the user equipment within the preset time period.

[0181] In one possible implementation, the measurement configuration information includes information indicating that the detection reference signal of the interfering device should be measured preferentially within a preset time period. A processing module 802 is configured to preferentially measure the detection reference signal of the interfering device within the preset time period.

[0182] In one possible implementation, the measurement configuration information includes: priority indication information; wherein the priority indication information is used to indicate the priority of the downlink reference signal of the serving cell of the user equipment and the priority of the detection reference signal of the interfering device, and the processing module 802 is used to preferentially measure the reference signal corresponding to the highest priority in the priority indication information within a preset time period.

[0183] In one possible implementation, the processing module 802 is used to measure the SRS-RSRP and / or CLI-RSSI of the interfering device.

[0184] When the communication device is user equipment 102, its structure can also be as follows: Figure 9 As shown. (Refer to...) Figure 9 The device 900 may include one or more of the following components: a processing component 902, a memory 904, a power component 906, a multimedia component 908, an audio component 910, an input / output (I / O) interface 912, a sensor component 914, and a communication component 916.

[0185] Processing component 902 typically controls the overall operation of device 900, such as operations associated with display, telephone calls, data communication, camera operation, and recording. Processing component 902 may include one or more processors 920 to execute instructions to perform all or part of the steps of the methods described above. Furthermore, processing component 902 may include one or more modules to facilitate interaction between processing component 902 and other components. For example, processing component 902 may include a multimedia module to facilitate interaction between multimedia component 908 and processing component 902.

[0186] Memory 904 is configured to store various types of data to support the operation of device 900. Examples of this data include instructions for any application or method operating on device 900, contact data, phonebook data, messages, pictures, videos, etc. Memory 904 can be implemented by any type of volatile or non-volatile storage device or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic storage, flash memory, magnetic disk, or optical disk.

[0187] The power supply component 906 provides power to the various components of the device 900. The power supply component 906 may include a power management system, one or more power sources, and other components associated with generating, managing, and distributing power to the device 900.

[0188] Multimedia component 908 includes a screen that provides an output interface between the device 900 and the user. In some embodiments, the screen may include a liquid crystal display (LCD) and a touch panel (TP). If the screen includes a touch panel, the screen may be implemented as a touchscreen to receive input signals from the user. The touch panel includes one or more touch sensors to sense touches, swipes, and gestures on the touch panel. The touch sensors may sense not only the boundaries of the touch or swipe action but also the duration and pressure associated with the touch or swipe operation. In some embodiments, multimedia component 908 includes a front-facing camera and / or a rear-facing camera. When the device 900 is in an operating mode, such as a shooting mode or a video mode, the front-facing camera and / or the rear-facing camera may receive external multimedia data. Each front-facing camera and rear-facing camera may be a fixed optical lens system or have focal length and optical zoom capabilities.

[0189] Audio component 910 is configured to output and / or input audio signals. For example, audio component 910 includes a microphone (MIC) configured to receive external audio signals when device 900 is in an operating mode, such as call mode, recording mode, and voice recognition mode. The received audio signals may be further stored in memory 904 or transmitted via communication component 916. In some embodiments, audio component 910 also includes a speaker for outputting audio signals.

[0190] I / O interface 912 provides an interface between processing component 902 and peripheral interface modules, such as keyboards, click wheels, buttons, etc. These buttons may include, but are not limited to, home buttons, volume buttons, power buttons, and lock buttons.

[0191] Sensor assembly 914 includes one or more sensors for providing status assessments of various aspects of device 900. For example, sensor assembly 914 may detect the on / off state of device 900, the relative positioning of components such as the display and keypad of device 900, changes in position of device 900 or a component of device 900, the presence or absence of user contact with device 900, orientation or acceleration / deceleration of device 900, and temperature changes of device 900. Sensor assembly 914 may include a proximity sensor configured to detect the presence of nearby objects without any physical contact. Sensor assembly 914 may also include a light sensor, such as a CMOS or CCD image sensor, for use in imaging applications. In some embodiments, sensor assembly 914 may also include an accelerometer, gyroscope, magnetometer, pressure sensor, or temperature sensor.

[0192] Communication component 916 is configured to facilitate wired or wireless communication between device 900 and other devices. Device 900 can access wireless networks based on communication standards, such as WiFi, 4G, or 5G, or combinations thereof. In one exemplary embodiment, communication component 916 receives broadcast signals or broadcast-related information from an external broadcast management system via a broadcast channel. In one exemplary embodiment, communication component 916 also includes a near-field communication (NFC) module to facilitate short-range communication. For example, the NFC module may be implemented based on radio frequency identification (RFID) technology, Infrared Data Association (IrDA) technology, ultra-wideband (UWB) technology, Bluetooth (BT) technology, and other technologies.

[0193] In an exemplary embodiment, the apparatus 900 may be implemented by one or more application-specific integrated circuits (ASICs), digital signal processors (DSPs), digital signal processing devices (DSPDs), programmable logic devices (PLDs), field-programmable gate arrays (FPGAs), controllers, microcontrollers, microprocessors, or other electronic components to perform the methods described above.

[0194] In an exemplary embodiment, a non-transitory computer-readable storage medium including instructions is also provided, such as a memory 904 including instructions, which can be executed by a processor 920 of the device 900 to perform the above-described method. For example, the non-transitory computer-readable storage medium may be a ROM, random access memory (RAM), CD-ROM, magnetic tape, floppy disk, and optical data storage device, etc.

[0195] Based on the same concept as the above method embodiments, this application also provides a communication device that can have the functions of the network device 102 in the above method embodiments and can be used to execute the steps performed by the network device 102 provided in the above method embodiments. This function can be implemented by hardware, or by software, or by hardware executing corresponding software. The hardware or software includes one or more modules corresponding to the above functions.

[0196] In one possible implementation, such as Figure 10 The communication device 1000 shown can serve as a network device in the above method embodiments and execute the steps performed by the network device in the above method embodiments. For example... Figure 10 As shown, the communication device 1000 may include a transceiver module 1001 and a processing module 1002, which are coupled to each other. The transceiver module 1001 can be used to support the communication device 300 in communication, and the transceiver module 1001 may have wireless communication capabilities, such as being able to communicate wirelessly with other communication devices through a wireless air interface. The processing module 1002 can be used to support the communication device 1000 in performing the processing actions in the above method embodiments, including but not limited to: generating information or messages sent by the transceiver module 1001, and / or demodulating and decoding signals received by the transceiver module 1001, etc.

[0197] When performing the steps implemented by network device 102, transceiver module 1001 is used to receive capability indication information sent by user equipment; the capability indication information is used to indicate reception capability and / or measurement capability.

[0198] Processing module 1002 is used to determine measurement configuration information based on the capability indication information;

[0199] The transceiver module 1001 is used to send measurement configuration information to the user equipment; wherein, the measurement configuration information is configuration information used to instruct the user equipment to measure the detection reference signal (SRS) of the interference device.

[0200] In one possible implementation, the capability indication information includes first information, which is whether the user equipment supports simultaneously receiving the PDCH and measuring the SRS of the interfering device when the subcarrier spacing SCS of the physical downlink channel PDCH configured in the serving cell of the user equipment is different from the subcarrier spacing SCS of the detection reference signal SRS of the interfering device.

[0201] In one possible implementation, the processing module 1002 is configured to schedule the physical downlink channel PDCH during the measurement of the detection reference signal SRS of the interfering device by the user equipment in response to the first information corresponding to supporting simultaneous reception of the PDCH and measurement of the SRS of the interfering device.

[0202] In one possible implementation, the processing module 1002 is configured to, in response to the first information corresponding to not supporting simultaneous reception of the PDCH and measurement of the SRS of the interfering device, not schedule the physical downlink channel PDCH during the measurement of the detection reference signal SRS of the interfering device by the user equipment.

[0203] In one possible implementation, the processing module 1002 is configured to, in response to the first information corresponding to not supporting simultaneous reception of the PDCH and measurement of the SRS of the interfering device, not schedule the physical downlink channel PDCH during the extended period of the measurement of the detection reference signal SRS of the interfering device by the user equipment.

[0204] In one possible implementation, the extended period is a time-domain region from the first N symbols of the measurement period to the last M symbols of the measurement period, where N and M may be the same or different.

[0205] In one possible implementation, the capability indication information includes second information, which is whether a measurement interval is supported, the measurement interval being used to measure the SRS of interfering devices.

[0206] In one possible implementation, in response to the second information corresponding to a support measurement interval and the detection reference signal (SRS) of the interfering device not being within the active BWP of the serving cell, the measurement configuration information includes measurement interval configuration information, which indicates the measurement interval used when measuring the SRS of the interfering device.

[0207] or,

[0208] In response to the second information corresponding to unsupported measurement intervals, the measurement configuration information does not include measurement interval configuration information.

[0209] In one possible implementation, in response to the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device being wholly or partially overlapped in the time domain, the measurement configuration information includes: time domain proportion configuration information, wherein the time domain proportion configuration information includes: a first proportion for measuring the downlink reference signal of the serving cell of the user equipment, and a second proportion for measuring the detection reference signal (SRS) of the interfering device.

[0210] In one possible implementation, the sum of the first proportion and the second proportion is 1.

[0211] In one possible implementation, the measurement configuration information includes: information for indicating that the downlink reference signal of the serving cell of the user equipment should be measured preferentially within a preset time period.

[0212] In one possible implementation, the measurement configuration information includes information for indicating that the detection reference signal of the interfering device should be measured preferentially within a preset time period.

[0213] In one possible implementation, the measurement configuration information includes: the priority of the detection reference signal of the interference device and the priority of the detection reference signal of the interference device, so that the user equipment prioritizes measuring the reference signal corresponding to the highest priority in the priority indication information within a preset time period.

[0214] In one possible implementation, the processing module 1002 is also used to measure the SRS-RSRP and / or CLI-RSSI of the interfering device.

[0215] When the communication device is a network device 102, its structure can also be as follows: Figure 11 As shown. The structure of a communication device is illustrated using a base station as an example. (As shown...) Figure 11As shown, the device 1100 includes a memory 1101, a processor 1102, a transceiver component 1103, and a power supply component 1106. The memory 1101 is coupled to the processor 1102 and can be used to store the programs and data necessary for the communication device 1100 to implement its various functions. The processor 1102 is configured to support the communication device 1100 in performing the corresponding functions described above, which can be implemented by calling the programs stored in the memory 1101. The transceiver component 1103 can be a wireless transceiver, used to support the communication device 1100 in receiving signaling and / or data, and transmitting signaling and / or data via a wireless air interface. The transceiver component 1103 can also be referred to as a transceiver unit or communication unit. The transceiver component 1103 may include a radio frequency component 1104 and one or more antennas 1105. The radio frequency component 1104 can be a remote radio unit (RRU), specifically used for transmitting radio frequency signals and converting radio frequency signals to baseband signals. The one or more antennas 1105 are specifically used for radiating and receiving radio frequency signals.

[0216] When the communication device 1100 needs to send data, the processor 1102 performs baseband processing on the data to be sent and outputs a baseband signal to the radio frequency (RF) unit. The RF unit then performs RF processing on the baseband signal and transmits the RF signal as electromagnetic waves through an antenna. When data is sent to the communication device 1100, the RF unit receives the RF signal through the antenna, converts the RF signal into a baseband signal, and outputs the baseband signal to the processor 1102. The processor 1102 converts the baseband signal back into data and processes the data.

[0217] Other embodiments of the present disclosure will readily occur to those skilled in the art upon consideration of the specification and practice of the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of the embodiments of the present disclosure that follow the general principles of the embodiments of the present disclosure and include common knowledge or customary techniques in the art not disclosed herein. The specification and embodiments are to be considered exemplary only, and the true scope and spirit of the embodiments of the present disclosure are indicated by the following claims.

[0218] It should be understood that the embodiments disclosed herein are not limited to the precise structures described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from their scope. The scope of the embodiments disclosed herein is limited only by the appended claims.

[0219] Industrial applicability

[0220] User equipment (UE) promptly reports capability indication information, including receiving and / or measuring capabilities, to network equipment, enabling network equipment to allocate appropriate scheduling and configuration to UE based on its capabilities, thereby improving UE's processing capacity.

Claims

1. A measurement method, performed by a user equipment, comprising: Send capability indication information to network devices; The capability indication information is used to indicate receiving capability and / or measurement capability; Receive measurement configuration information; The measurement configuration information mentioned therein is configuration information determined by the network device based on the capability indication information, used to instruct the user equipment to measure the detection reference signal (SRS) of the interference device; In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: time domain proportion configuration information, wherein the time domain proportion configuration information includes: a first proportion for measuring the downlink reference signal of the serving cell of the user equipment, and a second proportion for measuring the detection reference signal (SRS) of the interfering device; the user equipment uses the first proportion to measure the downlink reference signal of the serving cell of the user equipment, and uses the second proportion to measure the detection reference signal (SRS) of the interfering device.

2. The method as described in claim 1, wherein, The capability indication information includes first information, which is: whether the user equipment supports simultaneously receiving the PDCH and measuring the SRS of the interfering device when the subcarrier spacing SCS of the physical downlink channel PDCH configured in the serving cell of the user equipment is different from the subcarrier spacing SCS of the detection reference signal SRS of the interfering device.

3. The method as described in claim 1 or 2, wherein, The capability indication information includes second information, which is whether a measurement interval is supported, the measurement interval being used to measure the SRS of the interfering device.

4. The method of claim 3, wherein, The method further includes: In response to the second information corresponding to a supported measurement interval and the detection reference signal (SRS) of the interfering device not being within the active BWP of the serving cell, the measurement configuration information includes measurement interval configuration information, which indicates the measurement interval used when measuring the SRS of the interfering device. The user equipment uses the measurement interval to measure the SRS of the interfering device.

5. The method of claim 1, wherein, The sum of the first percentage and the second percentage is 1.

6. The method of claim 1, wherein, The method further includes: In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: information for indicating that the downlink reference signal of the serving cell of the user equipment should be measured preferentially within a preset time period; The user equipment shall preferentially measure the downlink reference signal of the serving cell of the user equipment within a preset time period.

7. The method of claim 1, wherein, The method further includes: In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are fully or partially overlapped in the time domain, the measurement configuration information includes: information for indicating that the detection reference signal of the interfering device should be measured preferentially within a preset time period; The user equipment shall prioritize measuring the detection reference signal of the interference device within a preset time period.

8. The method of claim 1, wherein, The method further includes: In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: priority indication information; wherein the priority indication information is used to indicate the priority of the downlink reference signal of the serving cell of the user equipment and the priority of the detection reference signal of the interfering device. The user equipment prioritizes measuring the reference signal corresponding to the highest priority in the priority indication information within a preset time period.

9. The method of claim 1, wherein, The measurement of the SRS of the interference device includes: measuring the SRS-RSRP and / or CLI-RSSI of the interference device.

10. A measurement method, performed by a network device, comprising: Receive capability indication information sent by user equipment; The capability indication information is used to indicate receiving capability and / or measurement capability; The measurement configuration information is determined based on the capability indication information; Send measurement configuration information to the user equipment; wherein, the measurement configuration information is configuration information used to instruct the user equipment to measure the detection reference signal (SRS) of the interfering device; In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: time domain proportion configuration information, wherein the time domain proportion configuration information includes: a first proportion for measuring the downlink reference signal of the serving cell of the user equipment, and a second proportion for measuring the detection reference signal (SRS) of the interfering device.

11. The method of claim 10, wherein, The capability indication information includes first information, which is: whether the user equipment supports simultaneously receiving the PDCH and measuring the SRS of the interfering device when the subcarrier spacing SCS of the physical downlink channel PDCH configured in the serving cell of the user equipment is different from the subcarrier spacing SCS of the detection reference signal SRS of the interfering device.

12. The method of claim 10 or 11, wherein, The method further includes: In response to the first information corresponding to supporting simultaneous reception of PDCH and measurement of the SRS of the interfering device, the physical downlink channel PDCH is scheduled during the measurement of the detection reference signal SRS of the interfering device by the user equipment. or, In response to the first information corresponding to not supporting simultaneous reception of the PDCH and measurement of the SRS of the interfering device, the physical downlink channel PDCH is not scheduled during the measurement of the detection reference signal SRS of the interfering device by the user equipment. or, In response to the first information corresponding to not supporting simultaneous reception of the PDCH and measurement of the SRS of the interfering device, the physical downlink channel PDCH is not scheduled during the extended period of the measurement of the detection reference signal SRS of the interfering device by the user equipment.

13. The method of claim 12, wherein, The extended period is the time domain region from the first N symbols of the measurement period to the last M symbols of the measurement period, where N and M may be the same or different.

14. The method of claim 10, wherein, The capability indication information includes second information, which is whether a measurement interval is supported, the measurement interval being used to measure the SRS of the interfering device.

15. The method of claim 14, wherein, The method further includes: In response to the second information corresponding to a supported measurement interval and the detection reference signal (SRS) of the interfering device not being within the active BWP of the serving cell, the measurement configuration information includes measurement interval configuration information, which indicates the measurement interval used when measuring the SRS of the interfering device. or, In response to the second information corresponding to unsupported measurement intervals, the measurement configuration information does not include measurement interval configuration information.

16. The method of claim 10, wherein, The sum of the first percentage and the second percentage is 1.

17. The method of claim 10, wherein, In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: information for indicating that the downlink reference signal of the serving cell of the user equipment should be measured preferentially within a preset time period.

18. The method of claim 10, wherein, In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: information for indicating that the detection reference signal of the interfering device should be measured preferentially within a preset time period.

19. The method of claim 10, wherein, In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: the priority of the detection reference signal of the interfering device and the priority of the detection reference signal of the interfering device.

20. The method of claim 10, wherein, The measurement of the SRS of the interference device includes: measuring the SRS-RSRP and / or CLI-RSSI of the interference device.

21. A communication device configured in a user equipment, comprising: The transceiver module is used to send capability indication information to network devices, wherein the capability indication information is used to indicate receiving capability and / or measurement capability; It is also used to receive measurement configuration information from a network device; wherein the measurement configuration information is configuration information determined by the network device based on the capability indication information, used to instruct the user equipment to measure the detection reference signal (SRS) of the interference device; In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: time domain proportion configuration information, wherein the time domain proportion configuration information includes: a first proportion for measuring the downlink reference signal of the serving cell of the user equipment, and a second proportion for measuring the detection reference signal (SRS) of the interfering device; the communication device further includes a processing module for measuring the downlink reference signal of the serving cell of the user equipment using the first proportion, and measuring the detection reference signal (SRS) of the interfering device using the second proportion.

22. The communication device as claimed in claim 21, wherein, The capability indication information includes first information, which is: whether the user equipment supports simultaneously receiving the PDCH and measuring the SRS of the interfering device when the subcarrier spacing SCS of the physical downlink channel PDCH configured in the serving cell of the user equipment is different from the subcarrier spacing SCS of the detection reference signal SRS of the interfering device.

23. The communication device as claimed in claim 21 or 22, wherein, The capability indication information includes second information, which is whether a measurement interval is supported, the measurement interval being used to measure the SRS of the interfering device.

24. The communication apparatus of claim 23, wherein, In response to the second information corresponding to a supported measurement interval and the detection reference signal (SRS) of the interfering device not being within the active BWP of the serving cell, the measurement configuration information includes measurement interval configuration information, which indicates the measurement interval used when measuring the SRS of the interfering device. The communication device further includes a processing module for measuring the SRS of the interfering device using the measurement interval.

25. The communication device as claimed in claim 21, wherein, In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: information for indicating that the downlink reference signal of the serving cell of the user equipment should be measured preferentially within a preset time period; The communication device further includes a processing module for prioritizing the measurement of the downlink reference signal of the serving cell of the user equipment within a preset time period.

26. The communication device as claimed in claim 21, wherein, In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are fully or partially overlapped in the time domain, the measurement configuration information includes: information for indicating that the detection reference signal of the interfering device should be measured preferentially within a preset time period; The communication device also includes a processing module for prioritizing the measurement of the detection reference signal of the interference device within a preset time period.

27. The communication device as claimed in claim 21, wherein, In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: priority indication information; wherein the priority indication information is used to indicate the priority of the downlink reference signal of the serving cell of the user equipment and the priority of the detection reference signal of the interfering device. The communication device further includes a processing module for prioritizing the measurement of the reference signal corresponding to the highest priority in the priority indication information within a preset time period.

28. A communication device configured in a network device, comprising: The transceiver module is used to receive capability indication information sent by user equipment; The capability indication information is used to indicate receiving capability and / or measurement capability; The processing module is used to determine measurement configuration information based on the capability indication information; The transceiver module is also used to send measurement configuration information to the user equipment; Wherein, the measurement configuration information is configuration information used to instruct the user equipment to measure the detection reference signal (SRS) of the interfering device; In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: time domain proportion configuration information, wherein the time domain proportion configuration information includes: a first proportion for measuring the downlink reference signal of the serving cell of the user equipment, and a second proportion for measuring the detection reference signal (SRS) of the interfering device.

29. The communication device as claimed in claim 28, wherein, The capability indication information includes first information, which is: whether the user equipment supports simultaneously receiving the PDCH and measuring the SRS of the interfering device when the subcarrier spacing SCS of the physical downlink channel PDCH configured in the serving cell of the user equipment is different from the subcarrier spacing SCS of the detection reference signal SRS of the interfering device.

30. The communication device as claimed in claim 28, wherein, The processing module is further configured to schedule the physical downlink channel PDCH during the measurement of the detection reference signal SRS of the jamming device by the user equipment in response to the first information corresponding to supporting simultaneous reception of PDCH and measurement of the SRS of the jamming device; or, In response to the first information corresponding to not supporting simultaneous reception of the PDCH and measurement of the SRS of the interfering device, the physical downlink channel PDCH is not scheduled during the measurement of the detection reference signal SRS of the interfering device by the user equipment. or, In response to the first information corresponding to not supporting simultaneous reception of the PDCH and measurement of the SRS of the interfering device, the physical downlink channel PDCH is not scheduled during the extended period of the measurement of the detection reference signal SRS of the interfering device by the user equipment.

31. The communication device according to any one of claims 28 to 30, wherein, The capability indication information includes second information, which is whether a measurement interval is supported, the measurement interval being used to measure the SRS of the interfering device.

32. The communication device as claimed in claim 31, wherein, In response to the second information corresponding to a supported measurement interval and the detection reference signal (SRS) of the interfering device not being within the active BWP of the serving cell, the measurement configuration information includes measurement interval configuration information, which indicates the measurement interval used when measuring the SRS of the interfering device. Alternatively, in response to the second information corresponding to a lack of support for measurement intervals, the measurement configuration information may not include measurement interval configuration information.

33. The communication device as claimed in claim 28, wherein, In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: information for indicating that the downlink reference signal of the serving cell of the user equipment should be measured preferentially within a preset time period.

34. The communication device as claimed in claim 28, wherein, In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: information for indicating that the detection reference signal of the interfering device should be measured preferentially within a preset time period.

35. The communication device as claimed in claim 28, wherein, In response to the fact that the downlink reference signal of the serving cell of the user equipment and the detection reference signal (SRS) of the interfering device are wholly or partially overlapped in the time domain, the measurement configuration information includes: the priority of the detection reference signal of the interfering device and the priority of the detection reference signal of the interfering device.

36. A communication device, comprising a processor and a memory, wherein The memory is used to store computer programs; The processor is used to execute the computer program to implement the method as described in any one of claims 1-9.

37. A communication device, comprising a processor and a memory, wherein The memory is used to store computer programs; The processor is used to execute the computer program to implement the method as described in any one of claims 10-20.

38. A computer-readable storage medium storing instructions that, when invoked and executed on a computer, cause the computer to perform the method as described in any one of claims 1-9.

39. A computer-readable storage medium storing instructions that, when invoked and executed on a computer, cause the computer to perform the method as described in any one of claims 10-20.

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