Communication processing method, apparatus, device, and readable storage medium

CN122534616APending Publication Date: 2026-08-07CHINA MOBILE COMM LTD RES INST +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
CHINA MOBILE COMM LTD RES INST
Filing Date
2025-02-06
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0004]本申请实施例在于提供一种通信处理方法、装置、设备及可读存储介质,解决如何保证CSI-RS测量以及CSI上报结果的有效性的问题

Benefits of technology

[0089]在本申请中,终端通过接收网络侧设备发送的第一配置信息,和/或终端通过接收网络侧设备发送的第二配置信息和第三配置信息中的至少一项,其中,所述第一配置信息用于指示第一测量资源和信道状态信息CSI上报的第一符号类型,所述第二配置信息用于指示所述第一测量资源的第一符号类型,所述第三配置信息指示CSI上报的第一符号类型,所述第一符号类型包括以下至少一项:有效符号类型、无效符号类型,通过明确和动态配置符号类型,确保测量和上报在正确的资源上进行,减少干扰和错误,提供准确的CSI测量结果,这样能够保证CSI-RS测量以及CSI上报结果的有效性,从而帮助网络侧设备实现更加合理的调度。同时,模块化的配置提高了灵活性和效率,适应不同的网络环境和需求。

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Abstract

Embodiments of the present application provide a communication processing method, device and equipment, and a readable storage medium. The method comprises: performing a first operation, the first operation comprising at least one of the following: receiving first configuration information sent by a network side device; receiving at least one of second configuration information and third configuration information sent by the network side device; wherein the first configuration information is used to indicate a first symbol type of a first measurement resource and channel state information (CSI) reporting; the first measurement resource is used to measure a reference signal, the second configuration information is used to indicate a first symbol type of the first measurement resource, and the third configuration information indicates a first symbol type of CSI reporting; wherein the first symbol type comprises at least one of the following: a valid symbol type and an invalid symbol type.
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Description

Technical Field

[0001] This application relates to the field of communication technology, specifically to a communication processing method, apparatus, device, and readable storage medium. Background Technology

[0002] During communication, for periodic or semi-persistent Channel State Information-Reference Signal (CSI-RS) resources and periodic or semi-persistent Channel State Information (CSI) reporting, there may be situations where transmission occurs across two symbol types, such as Subband Non-overlapping Full Duplex (SBFD) symbols and non-SBFD symbols.

[0003] Since the available frequency domain resources and interference conditions differ between the two symbol types, ensuring the validity of CSI-RS measurements and CSI reporting results is an urgent problem to be solved. Summary of the Invention

[0004] This application provides a communication processing method, apparatus, device, and readable storage medium to address the problem of ensuring the validity of CSI-RS measurements and CSI reporting results.

[0005] Firstly, a communication processing method is provided, applied to a terminal, the method comprising:

[0006] Perform a first operation, the first operation including at least one of the following:

[0007] Receive the first configuration information sent by the network-side device;

[0008] Receive at least one of the second configuration information and the third configuration information sent by the network-side device;

[0009] The first configuration information is used to indicate the first symbol type reported by the first measurement resource and channel state information (CSI);

[0010] The first measurement resource is used to measure a reference signal, the second configuration information is used to indicate the first symbol type of the first measurement resource, and the third configuration information indicates the first symbol type reported by CSI;

[0011] The first symbol type includes at least one of the following: valid symbol type and invalid symbol type.

[0012] Optionally, the method further includes:

[0013] The first measurement resource and the first symbol type reported by CSI are determined based on the first configuration information;

[0014] When receiving the Channel State Information Reference Signal (CSI-RS) transmission timing on the first symbol, perform measurements to obtain the measurement results of the Channel State Information;

[0015] The measurement result is sent to the network-side device through the uplink channel corresponding to the first symbol;

[0016] or,

[0017] Discard the transmission timing of the Channel State Information Reference Signal (CSI-RS) on the first symbol, and perform measurements on symbols other than the first symbol to obtain the measurement results of the Channel State Information.

[0018] The measurement results are sent to the network-side device through the uplink channel corresponding to the symbols other than the first symbol;

[0019] The first symbol includes the symbol corresponding to the first measurement resource indicated by the first configuration information and the first symbol type reported by CSI.

[0020] Optionally, the first configuration information is carried in serving cell configuration signaling or channel state information measurement configuration signaling.

[0021] Optionally, the method further includes:

[0022] The first symbol type reported by CSI and the first symbol type of the first measurement resource associated with the CSI report are determined based on the first configuration information.

[0023] The measurement results of the channel state information are obtained by receiving the CSI-RS transmission timing on the second symbol and performing measurements.

[0024] The measurement results are sent to the network-side device via the uplink channel corresponding to the third symbol;

[0025] or,

[0026] Discard the CSI-RS transmission opportunity on the second symbol, and perform measurements on symbols other than the second symbol to obtain the measurement results of channel state information;

[0027] The measurement results are sent to the network-side device through the uplink channel corresponding to the symbols other than the third symbol.

[0028] The second symbol includes the symbol corresponding to the first symbol type of the first measurement resource, and the third symbol includes the symbol corresponding to the first symbol type reported by the CSI.

[0029] Optionally, the first configuration information is carried in the configuration signaling reported by CSI.

[0030] Optionally, the method further includes:

[0031] The first symbol type of the first measurement resource and the first symbol type of the CSI report associated with the first measurement resource are determined based on the first configuration information.

[0032] The CSI-RS transmission timing on the fourth symbol is received, and the measurement results of the channel state information are obtained.

[0033] The measurement result is sent to the network-side device through the uplink channel corresponding to the fifth symbol;

[0034] or,

[0035] Discard the CSI-RS transmission opportunity on the fourth symbol, and perform measurements on symbols other than the fourth symbol to obtain the measurement results of channel state information;

[0036] The measurement results are sent to the network-side device through the uplink channel corresponding to the symbols other than the fifth symbol.

[0037] The fourth symbol includes the symbol corresponding to the first symbol type of the first measurement resource, and the fifth symbol includes the symbol corresponding to the first symbol type reported by the CSI.

[0038] Optionally, the first configuration information is carried in the configuration signaling of the first measurement resource.

[0039] Optionally, the method further includes:

[0040] The first symbol type of the first measurement resource is determined based on the second configuration information;

[0041] The CSI-RS transmission timing on the sixth symbol is received, and the measurement result of the channel state information is obtained by measurement. The sixth symbol includes the symbol corresponding to the first symbol type of the first measurement resource.

[0042] or,

[0043] The CSI-RS transmission opportunity on the sixth symbol is discarded, and the measurement results of the channel state information are obtained by measuring on symbols other than the sixth symbol. The sixth symbol includes the symbol corresponding to the first symbol type of the first measurement resource.

[0044] Optionally, the second configuration information is carried in the configuration signaling of the first measurement resource.

[0045] Optionally, the method further includes:

[0046] The first symbol type reported by the CSI is determined based on the third configuration information;

[0047] A CSI report is sent to the network-side device via the uplink channel corresponding to the seventh symbol, wherein the seventh symbol includes the symbol corresponding to the first symbol type of the CSI report;

[0048] or,

[0049] The CSI report is sent to the network-side device through the uplink channel corresponding to the symbols other than the seventh symbol, wherein the seventh symbol includes the symbol corresponding to the first symbol type reported by the CSI.

[0050] Optionally, the third configuration information is carried in the configuration signaling reported by the CSI.

[0051] Optionally, the method further includes:

[0052] The first symbol type of the first measurement resource is determined according to the second configuration information, and the first symbol type of the CSI report is determined according to the third configuration information;

[0053] Receive the CSI-RS transmission opportunity on the eighth symbol, perform measurement to obtain the channel state information measurement result, wherein the eighth symbol includes the symbol corresponding to the first symbol type of the first measurement resource; or, discard the CSI-RS transmission opportunity on the eighth symbol, and perform measurement on symbols other than the eighth symbol to obtain the channel state information measurement result, wherein the eighth symbol includes the symbol corresponding to the first symbol type of the first measurement resource.

[0054] The measurement result is sent to the network-side device via the uplink channel corresponding to the ninth symbol; or, the measurement result is sent to the network-side device via the uplink channel corresponding to a symbol other than the ninth symbol, wherein the ninth symbol includes the symbol corresponding to the first symbol type reported by the CSI.

[0055] Optionally, the first symbol type of the first measurement resource indicated by the second configuration information and the first symbol type of CSI reporting indicated by the third configuration information may be the same or different.

[0056] Optionally, the first measurement resource includes at least one of the following: CSI-RS resource or CSI-RS resource set, CSI-IM resource or CSI-IM resource set, CSI-SSB resource or CSI-SSB resource set.

[0057] Optionally, the uplink channel includes at least one of the following: PUCCH; PUSCH.

[0058] Secondly, a communication processing method is provided, applied to a network-side device, the method comprising:

[0059] Perform a second operation, which includes at least one of the following:

[0060] Send the first configuration information to the terminal;

[0061] Send at least one of the second configuration information and the third configuration information to the terminal;

[0062] The first configuration information is used to indicate the first measurement resource and the first symbol type reported by CSI;

[0063] The first measurement resource is used to measure a reference signal, the second configuration information is used to indicate the first symbol type of the first measurement resource, and the third configuration information indicates the first symbol type reported by CSI;

[0064] The first symbol type includes at least one of the following: valid symbol type and invalid symbol type.

[0065] Optionally, the first configuration information is carried in serving cell configuration signaling or channel state information measurement configuration information, and the first configuration information is used to explicitly indicate the first measurement resource and the first symbol type reported by CSI.

[0066] Optionally, the first configuration information is carried in the configuration signaling reported by the CSI. The first configuration information is used to explicitly indicate the first symbol type reported by the CSI, and the first configuration information is also used to implicitly indicate the first symbol type of the first measurement resource associated with the CSI report.

[0067] Optionally, the first configuration information is carried in the configuration signaling of the first measurement resource. The first configuration information is used to explicitly indicate the first symbol type of the first measurement resource, and the first configuration information is also used to implicitly indicate the first symbol type of the CSI reporting resource associated with the first measurement resource.

[0068] Optionally, the second configuration information is carried in the configuration signaling of the first measurement resource.

[0069] Optionally, the third configuration information is carried in the configuration signaling reported by the CSI.

[0070] Optionally, the first symbol type of the first measurement resource indicated by the second configuration information and the first symbol type of CSI reporting indicated by the third configuration information may be the same or different.

[0071] Optionally, the first measurement resource includes at least one of the following: CSI-RS resource or CSI-RS resource set, CSI-IM resource or CSI-IM resource set, CSI-SSB resource or CSI-SSB resource set.

[0072] Thirdly, a communication processing apparatus is provided for use in a terminal, comprising: a first transceiver unit and a first processing unit;

[0073] The first processing unit is configured to perform a first operation, the first operation including at least one of the following:

[0074] Receive the first configuration information sent by the network-side device;

[0075] Receive at least one of the second configuration information and the third configuration information sent by the network-side device;

[0076] The first configuration information is used to indicate the first measurement resource and the first symbol type reported by CSI;

[0077] The first measurement resource is used to measure a reference signal, the second configuration information is used to indicate the first symbol type of the first measurement resource, and the third configuration information indicates the first symbol type reported by CSI;

[0078] The first symbol type includes at least one of the following: valid symbol type and invalid symbol type.

[0079] Fourthly, a communication processing apparatus is provided for use in network-side equipment, comprising: a second transceiver unit and a second processing unit;

[0080] The second processing unit is used to perform a second operation, the second operation including at least one of the following:

[0081] Send the first configuration information to the terminal;

[0082] Send at least one of the second configuration information and the third configuration information to the terminal;

[0083] The first configuration information is used to indicate the first measurement resource and the first symbol type reported by CSI;

[0084] The first measurement resource is used to measure a reference signal, the second configuration information is used to indicate the first symbol type of the first measurement resource, and the third configuration information indicates the first symbol type reported by CSI;

[0085] The first symbol type includes at least one of the following: valid symbol type and invalid symbol type.

[0086] Fifthly, a communication device is provided, including a processor, a memory, and a program or instructions stored in the memory and executable on the processor, wherein the program or instructions, when executed by the processor, implement the steps of the method described in the first or second aspect.

[0087] A sixth aspect provides a readable storage medium on which a program or instructions are stored, which, when executed by a processor, implement the steps of the method described in the first or second aspect.

[0088] A seventh aspect provides a computer program product including computer instructions that, when executed by a processor, implement the steps of the method described in the first or second aspect.

[0089] In this application, the terminal receives first configuration information sent by a network-side device, and / or receives at least one of second and third configuration information sent by the network-side device. The first configuration information indicates the first symbol type for reporting first measurement resources and Channel State Information (CSI). The second configuration information indicates the first symbol type for the first measurement resources. The third configuration information indicates the first symbol type for CSI reporting. The first symbol type includes at least one of the following: valid symbol type and invalid symbol type. By explicitly and dynamically configuring the symbol type, it ensures that measurements and reporting are performed on the correct resources, reducing interference and errors, and providing accurate CSI measurement results. This guarantees the validity of CSI-RS measurements and CSI reporting results, thereby helping the network-side device achieve more reasonable scheduling. Simultaneously, modular configuration improves flexibility and efficiency, adapting to different network environments and needs. Attached Figure Description

[0090] Various other advantages and benefits will become apparent to those skilled in the art upon reading the following detailed description of preferred embodiments. The accompanying drawings are for illustrative purposes only and are not intended to limit the scope of this application. Furthermore, the same reference numerals denote the same parts throughout the drawings. In the drawings:

[0091] Figure 1 This is a schematic diagram of the SBFD sub-band configuration;

[0092] Figure 2 This is a schematic diagram of configuration 1;

[0093] Figure 3 This is a schematic diagram of configuration 2;

[0094] Figure 4 This is a flowchart of a communication processing method provided in an embodiment of this application;

[0095] Figure 5 This is a flowchart of another communication processing method provided by an embodiment of this application;

[0096] Figure 6 This is a configuration diagram provided in Example 1;

[0097] Figure 7 This is a configuration diagram provided in Embodiment 2;

[0098] Figure 8 This is a structural diagram of a communication processing device provided in an embodiment of this application;

[0099] Figure 9 This is a structural diagram of another communication processing device provided in an embodiment of this application;

[0100] Figure 10 This is a structural diagram of a communication device provided in an embodiment of this application. Detailed Implementation

[0101] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0102] The term "comprising," and any variations thereof, used in the specification and claims of this application, is intended to cover a non-exclusive inclusion. For example, a process, method, system, product, or apparatus that includes a series of steps or units is not necessarily limited to those explicitly listed, but may include other steps or units not explicitly listed or inherent to such process, method, product, or apparatus. Furthermore, the use of "and / or" in the specification and claims indicates at least one of the connected objects, such as A and / or B, indicating the inclusion of A alone, B alone, or both A and B.

[0103] In the embodiments of this application, the terms "exemplary" or "for example" are used to indicate that something is an example, illustration, or description. Any embodiment or design that is described as "exemplary" or "for example" in the embodiments of this application should not be construed as being more preferred or advantageous than other embodiments or design. Specifically, the use of the terms "exemplary" or "for example" is intended to present the relevant concepts in a specific manner.

[0104] To facilitate understanding of the implementation methods of this application, the following technical points are introduced first:

[0105] I. About SBFD.

[0106] To reduce transmission latency and improve uplink coverage and capacity in Time-Division Duplex (TDD) systems, Side-Side Frequency Dividing (SBFD) technology was proposed in the duplex evolution research of related technologies. SBFD divides the carrier bandwidth into uplink (UL) and downlink (DL) subbands occupying different frequency resources, allowing the base station to perform uplink and downlink transmissions simultaneously on a single symbol. Currently, SBFD research proposes configuring subbands on traditional downlink or flexible time slots or symbols, enabling the base station to implement SBFD. Time slots or symbols configured with subbands are called SBFD time slots or symbols, while those without configured subbands are called non-SBFD time slots or symbols. Figure 1 As shown, time slots #0 and #4 are not configured with subbands and can be referred to as non-SBFD symbols. Time slots #1, #2, and #3, however, are configured with subbands and can be referred to as SBFD symbols.

[0107] Considering that the available frequency domain resource bandwidths for uplink and downlink transmission differ between SBFD symbols and non-SBFD symbols, related SBFD technologies have enhanced the frequency domain resource allocation method for multi-slot transmission scenarios, such as repeated transmission on the Physical Uplink Shared Channel (PUSCH) or Physical Downlink Shared Channel (PDSCH), and scheduling-free transmission (e.g., Configured Grant (CG)). Specifically, network-side equipment can provide the terminal with one of the following two configurations (which essentially indicate whether the terminal can transmit or receive across symbol types) through higher-layer signaling or Radio Resource Control (RRC) signaling:

[0108] Configuration 1: The terminal's uplink transmission or downlink reception is restricted to one symbol type, meaning the terminal can only perform uplink transmission or downlink reception in SBFD symbols or non-SBFD symbols. See [link to configuration]. Figure 2 ;

[0109] Configuration 2: The terminal can perform uplink transmission or downlink reception on both SBFD and non-SBFD symbols. See [link / reference] Figure 3 .

[0110] However, there is currently no conclusion on how to specifically provide the above configuration to the terminal.

[0111] II. CSI Measurement and Reporting Process in NR.

[0112] 1) Network-side equipment configures CSI-RS resources, and the base station sends CSI-RS according to the configuration. The time domain type of CSI-RS resources includes three types: periodic, semi-persistent, and aperiodic. Specifically, it is configured in Information Element (IE) Channel State Information - Resource Configuration (CSI-ResourceConfig).

[0113] 2) The terminal performs CSI-RS measurements (e.g., including at least one of channel measurement and interference measurement) according to the configuration or instructions of the network-side equipment, and reports the CSI measurement results to the base station. The time domain type of CSI reporting also includes three types: periodic, semi-periodic and aperiodic, which are specifically configured in IE Channel State Information - Reporting Configuration (CSI-ReportConfig).

[0114] In the SBFD (Short-Stop Flow) research of related technologies, when a CSI report is associated with periodic or semi-persistent CSI-RS measurement resources, the period of the CSI-RS resource may differ from the period configured in the SBFD subband. This can lead to situations where the CSI-RS resource exists on both SBFD and non-SBFD symbols. Similarly, when the time-domain type of the CSI report is periodic or semi-persistent, the Physical Uplink Control Channel (PUCCH) or Physical Uplink Shared Channel (PUSCH) carrying the CSI report may also exist on both SBFD and non-SBFD symbols because the CSI report period may differ from the SBFD subband configuration period. Since the available frequency domain resources and interference conditions differ for the two symbol types, how to configure and enhance CSI-RS resources and CSI reports is a problem that needs to be considered.

[0115] See Figure 4 This application provides a communication processing method applied to a terminal, the method comprising:

[0116] Step 41: The terminal performs a first operation, which includes at least one of the following:

[0117] 1) Receive the first configuration information sent by the network-side device;

[0118] The first configuration information is used to indicate the first measurement resource and the first symbol type reported by CSI, wherein the first measurement resource is used to measure the reference signal;

[0119] Optionally, the first measurement resource includes, but is not limited to, at least one of the following: CSI-RS resource or CSI-RS resource set, Channel State Information-Interference Measurement (CSI-IM) resource or CSI-IM resource set, Channel State Information-Synchronization Signal Block (CSI-SSB) resource or CSI-SSB resource set.

[0120] 2) Receive at least one of the second configuration information and the third configuration information sent by the network-side device;

[0121] The second configuration information is used to indicate the first symbol type of the first measurement resource, and the third configuration information indicates the first symbol type reported by CSI.

[0122] The first symbol type includes at least one of the following: valid symbol type and invalid symbol type. Optionally, a valid symbol is a symbol that can be used for transmission, while an invalid symbol may be reserved or used for other purposes, such as UL / DL switching gaps.

[0123] In this embodiment, valid symbol types ensure that measurements and reporting occur in the correct time slots. For example, CSI-RS should be transmitted on DL symbols to avoid interference on UL or flexible symbols. Simultaneously, CSI reporting must be transmitted on UL symbols; otherwise, conflicts or failures will occur. Separating the configuration of resource and reporting symbol types allows for greater network flexibility, especially in dynamic TDD environments where symbol usage may change frequently. Secondly, network-side devices can adjust measurement resources or reporting configurations individually as needed without reconfiguring all parameters. This is particularly important in dynamic environments, such as during beam management or interference coordination, where the location of measurement resources may need frequent updates while the reporting configuration remains unchanged, and vice versa. Furthermore, the indication of invalid symbol types prevents terminals from performing measurements or reporting at incorrect times, reducing invalid operations, saving terminal power, and improving measurement accuracy. For example, if CSI-RS is configured on flexible symbols but the network dynamically uses it as UL, the terminal will ignore measurements on these symbols, preventing erroneous data from affecting CSI reports.

[0124] In one implementation, the SBFD symbol is a valid symbol type.

[0125] In another implementation, SBFD symbols are invalid symbol types, and non-SBFD symbols are valid symbol types.

[0126] In one embodiment of this application, the method further includes:

[0127] The first measurement resource and the first symbol type reported by CSI are determined based on the first configuration information;

[0128] The measurement results of the channel state information are obtained by receiving the CSI-RS transmission occasion on the first symbol;

[0129] The measurement result is sent to the network-side device through the uplink channel corresponding to the first symbol;

[0130] The first symbol includes the symbol corresponding to the first measurement resource indicated by the first configuration information and the first symbol type reported by CSI. For example, the first symbol type is a valid symbol type.

[0131] In another embodiment of this application, the method further includes:

[0132] The first measurement resource and the first symbol type reported by CSI are determined based on the first configuration information;

[0133] Discard the transmission timing of the Channel State Information Reference Signal (CSI-RS) on the first symbol, and perform measurements on symbols other than the first symbol to obtain the measurement results of the Channel State Information.

[0134] The measurement results are sent to the network-side device through the uplink channel corresponding to the symbols other than the first symbol;

[0135] The first symbol includes the symbol corresponding to the first measurement resource indicated by the first configuration information and the first symbol type reported by CSI. For example, the first symbol type is an invalid symbol type.

[0136] Understandably, the measurement results in this article can also be referred to as a CSI report.

[0137] Optionally, the first configuration information is carried in serving cell configuration signaling or channel state information measurement configuration signaling.

[0138] In one embodiment of this application, the method further includes:

[0139] The first symbol type reported by CSI and the first symbol type of the first measurement resource associated with the CSI report are determined based on the first configuration information.

[0140] The measurement results of the channel state information are obtained by receiving the CSI-RS transmission timing on the second symbol and performing measurements.

[0141] The measurement results are sent to the network-side device via the uplink channel corresponding to the third symbol;

[0142] The second symbol includes the symbol corresponding to the first symbol type of the first measurement resource, and the third symbol includes the symbol corresponding to the first symbol type reported by the CSI. For example, the first symbol type is a valid symbol type.

[0143] In another embodiment of this application, the method further includes:

[0144] The first symbol type reported by CSI and the first symbol type of the first measurement resource associated with the CSI report are determined based on the first configuration information.

[0145] Discard the CSI-RS transmission opportunity on the second symbol, and perform measurements on symbols other than the second symbol to obtain the measurement results of channel state information;

[0146] The measurement results are sent to the network-side device through the uplink channel corresponding to the symbols other than the third symbol.

[0147] The second symbol includes the symbol corresponding to the first symbol type of the first measurement resource, and the third symbol includes the symbol corresponding to the first symbol type reported by the CSI. For example, the first symbol type is an invalid symbol type.

[0148] Optionally, the first configuration information is carried in the configuration signaling reported by CSI.

[0149] In one embodiment of this application, the method further includes:

[0150] The first symbol type of the first measurement resource and the first symbol type of the CSI report associated with the first measurement resource are determined based on the first configuration information.

[0151] The CSI-RS transmission timing on the fourth symbol is received, and the measurement results of the channel state information are obtained.

[0152] The measurement result is sent to the network-side device through the uplink channel corresponding to the fifth symbol;

[0153] The fourth symbol includes the symbol corresponding to the first symbol type of the first measurement resource, and the fifth symbol includes the symbol corresponding to the first symbol type reported by the CSI. For example, the first symbol type is a valid symbol type.

[0154] In another embodiment of this application, the method further includes:

[0155] The first symbol type of the first measurement resource and the first symbol type of the CSI report associated with the first measurement resource are determined based on the first configuration information.

[0156] The CSI-RS transmission opportunity on the fourth symbol is discarded, and the measurement results of the channel state information are obtained by measuring on symbols other than the fourth symbol; the measurement results are sent to the network-side device through the uplink channel corresponding to the symbols other than the fifth symbol.

[0157] The fourth symbol includes the symbol corresponding to the first symbol type of the first measurement resource, and the fifth symbol includes the symbol corresponding to the first symbol type reported by the CSI. For example, the first symbol type is an invalid symbol type.

[0158] Optionally, the first configuration information is carried in the configuration signaling of the first measurement resource.

[0159] In one embodiment of this application, the method further includes:

[0160] The first symbol type of the first measurement resource is determined based on the second configuration information;

[0161] The measurement result of the channel state information is obtained by receiving the CSI-RS transmission timing on the sixth symbol, where the sixth symbol includes the symbol corresponding to the first symbol type of the first measurement resource. For example, the first symbol type is a valid symbol type.

[0162] In another embodiment of this application, the method further includes:

[0163] The first symbol type of the first measurement resource is determined based on the second configuration information;

[0164] The CSI-RS transmission opportunity on the sixth symbol is discarded, and the measurement results of the channel state information are obtained by measuring on symbols other than the sixth symbol. The sixth symbol includes the symbol corresponding to the first symbol type of the first measurement resource. For example, the first symbol type is an invalid symbol type.

[0165] Optionally, the second configuration information is carried in the configuration signaling of the first measurement resource.

[0166] In one embodiment of this application, the method further includes:

[0167] The first symbol type reported by the CSI is determined based on the third configuration information;

[0168] A CSI report is sent to the network-side device via the uplink channel corresponding to the seventh symbol, where the seventh symbol includes the symbol corresponding to the first symbol type reported in the CSI. For example, the first symbol type is a valid symbol type.

[0169] In another embodiment of this application, the method further includes:

[0170] The first symbol type reported by the CSI is determined based on the third configuration information;

[0171] A CSI report is sent to the network-side device via the uplink channel corresponding to symbols other than the seventh symbol, where the seventh symbol includes the symbol corresponding to the first symbol type reported in the CSI. For example, the first symbol type is an invalid symbol type.

[0172] Optionally, the uplink channel includes at least one of the following: PUCCH; PUSCH.

[0173] Optionally, the third configuration information is carried in the configuration signaling reported by the CSI.

[0174] In one embodiment of this application, the method further includes:

[0175] The first symbol type of the first measurement resource is determined based on the second configuration information, and the first symbol type of the CSI report is determined based on the third configuration information;

[0176] The CSI-RS transmission timing on the eighth symbol is received, and the measurement result of the channel state information is obtained by measurement. The eighth symbol includes the symbol corresponding to the first symbol type of the first measurement resource.

[0177] The measurement result is sent to the network-side device via the uplink channel corresponding to the ninth symbol, where the ninth symbol includes the symbol corresponding to the first symbol type reported by the CSI. For example, the first symbol type is a valid symbol type.

[0178] In one embodiment of this application, the method further includes:

[0179] The first symbol type of the first measurement resource is determined based on the second configuration information, and the first symbol type of the CSI report is determined based on the third configuration information;

[0180] Discard the CSI-RS transmission opportunity on the eighth symbol, and perform measurements on symbols other than the eighth symbol to obtain the measurement results of channel state information. The eighth symbol includes the symbol corresponding to the first symbol type of the first measurement resource.

[0181] The measurement results are transmitted to the network-side device via the uplink channel corresponding to symbols other than the ninth symbol, where the ninth symbol includes the symbol corresponding to the first symbol type reported by the CSI. For example, the first symbol type is an invalid symbol type.

[0182] In one implementation, the first symbol type of the first measurement resource indicated by the second configuration information is the same as the first symbol type of CSI reporting indicated by the third configuration information.

[0183] In another implementation, the first symbol type of the first measurement resource indicated by the second configuration information is different from the first symbol type of CSI reporting indicated by the third configuration information.

[0184] In this embodiment, by explicitly and dynamically configuring symbol types, it is ensured that measurements and reporting are performed on the correct resources, reducing interference and errors, providing accurate CSI measurement results, and helping the network make better scheduling decisions. At the same time, modular configuration improves flexibility and efficiency, adapting to different network environments and needs.

[0185] See Figure 5 This application provides a communication processing method applied to a network-side device, the method comprising:

[0186] Step 51: The network-side device performs a second operation, which includes at least one of the following:

[0187] 1) Send the first configuration information to the terminal;

[0188] 2) Send at least one of the second configuration information and the third configuration information to the terminal;

[0189] The first configuration information is used to indicate the first measurement resource and the first symbol type reported by CSI;

[0190] The first measurement resource is used to measure a reference signal, the second configuration information is used to indicate the first symbol type of the first measurement resource, and the third configuration information indicates the first symbol type reported by CSI;

[0191] The first symbol type includes at least one of the following: valid symbol type and invalid symbol type.

[0192] In one embodiment of this application, the first configuration information is carried in serving cell configuration signaling or channel state information measurement configuration information, and the first configuration information is used to explicitly indicate the first measurement resource and the first symbol type reported by CSI.

[0193] In one embodiment of this application, the first configuration information is carried in the configuration signaling reported by the CSI. The first configuration information is used to explicitly indicate the first symbol type reported by the CSI, and the first configuration information is also used to implicitly indicate the first symbol type of the first measurement resource associated with the CSI report.

[0194] In one embodiment of this application, the first configuration information is carried in the configuration signaling of the first measurement resource. The first configuration information is used to explicitly indicate the first symbol type of the first measurement resource, and the first configuration information is also used to implicitly indicate the first symbol type of the CSI reporting resource associated with the first measurement resource.

[0195] In one embodiment of this application, the second configuration information is carried in the configuration signaling of the first measurement resource.

[0196] In one embodiment of this application, the third configuration information is carried in the configuration signaling reported by CSI.

[0197] In one embodiment of this application, the first symbol type of the first measurement resource indicated by the second configuration information and the first symbol type of CSI reporting indicated by the third configuration information may be the same or different.

[0198] Optionally, the first measurement resource includes at least one of the following: CSI-RS resource or CSI-RS resource set, CSI-IM resource or CSI-IM resource set, CSI-SSB resource or CSI-SSB resource set.

[0199] In this embodiment, by explicitly and dynamically configuring symbol types, it is ensured that measurements and reporting are performed on the correct resources, reducing interference and errors, providing accurate CSI measurement results, and helping the network make better scheduling decisions. At the same time, modular configuration improves flexibility and efficiency, adapting to different network environments and needs.

[0200] The following example uses the case where the first measurement resource is a CSI-RS resource, the first symbol type is a valid symbol type, and the network-side device is a base station. The implementation methods for other cases are similar and will not be described in detail here.

[0201] Example 1:

[0202] The base station sends first configuration information, which indicates CSI-RS resources and valid symbol types reported by CSI.

[0203] In one possible approach, the first configuration information is carried in the serving cell configuration signaling, which is used to indicate CSI-RS resources and the valid symbol type for CSI reporting.

[0204] The corresponding UE measurement behavior is as follows: The UE only measures the CSI-RS transmission occasions on valid symbols and calculates the measurement results accordingly.

[0205] The corresponding UE reporting behavior is as follows: The UE only sends a CSI report to the base station on the PUCCH or PUSCH corresponding to the valid symbol. The CSI report includes the measurement results.

[0206] For example, when the first configuration information indicates that the valid symbol type is SBFD symbol, then non-SBFD symbols are correspondingly invalid symbol types. In this case, the UE only measures the CSI-RS transmitted on the SBFD symbol, calculates the corresponding measurement results, and sends a CSI report to the base station via PUCCH or PUSCH on the SBFD symbol. That is, the terminal can activate only the radio frequency link matched with the SBFD symbol.

[0207] Figure 6 One possible example is given, where the CSI-RS resource is configured as a periodic resource with a transmission period of 4 time slots, and the CSI report is periodically reported via PUCCH with a reporting period of 4 time slots.

[0208] In this implementation, the valid symbol types for any uplink transmission or downlink reception of a UE are the same. For example, the UE can only perform uplink transmission or downlink reception on SBFD symbols or non-SBFD symbols.

[0209] Another possible approach is that the first configuration information is carried in the configuration signaling reported by CSI, which is used to indicate the valid symbol type reported by CSI, and can also implicitly indicate the valid symbol type of CSI-RS resources.

[0210] The corresponding UE measurement behavior is as follows: The UE implicitly determines the valid symbol type of the CSI-RS resource associated with the CSI report based on the first configuration information in the CSI report configuration signaling. The UE only measures the CSI-RS transmission occasions on the valid symbols and calculates the measurement results accordingly.

[0211] The corresponding UE reporting behavior is as follows: The UE can directly determine the valid symbol type of the CSI report based on the first configuration information in the CSI reporting configuration signaling. The UE only sends the CSI report to the base station on the PUCCH or PUSCH corresponding to the valid symbol.

[0212] In this implementation, the valid symbol types for a UE's CSI-RS measurements and CSI reporting are the same. However, the valid symbol types for the UE's other uplink transmissions or downlink receptions, such as SRS transmissions or PDCCH receptions, are unrelated to the first configuration information and can be configured separately. Furthermore, the valid symbol type corresponding to a CSI-RS resource is not fixed; it depends on which CSI reporting configuration (CSI-ReportConfig) the CSI-RS resource is associated with.

[0213] Another possible approach: The first configuration information is carried in the configuration signaling of the CSI-RS resource, which is used to indicate the valid symbol type of the CSI-RS resource, and can also implicitly indicate the valid symbol type for the terminal to report CSI.

[0214] The corresponding UE measurement behavior is as follows: The UE directly determines the valid symbol type for CSI-RS measurement based on the first configuration information in the configuration signaling of CSI-RS resources. The UE only measures the CSI-RS transmission timing on the valid symbols and calculates the measurement results accordingly.

[0215] The corresponding UE reporting behavior is as follows: The UE implicitly determines the valid symbol type for CSI reporting based on the first configuration information in the configuration signaling of the CSI-RS resource associated with CSI reporting. The UE only sends CSI reports to the base station on the PUCCH or PUSCH corresponding to the valid symbol.

[0216] In this implementation, the valid symbol types for a UE's CSI-RS measurements and CSI reports are the same. However, the valid symbol types for other uplink transmissions or downlink receptions of the UE, such as SRS transmissions or PDCCH receptions, are unrelated to the first configuration information and can be configured separately. Furthermore, the valid symbol type corresponding to a CSI report is not fixed but depends on its associated CSI-RS resource (CSI-ResourceConfig).

[0217] Example 2: The base station sends second configuration information, which indicates the valid symbol type of CSI-RS resources, and / or the base station sends third configuration information, which indicates the valid symbol type reported by CSI.

[0218] One possible approach is that the second configuration information is carried in the configuration signaling of CSI-RS resources, used to indicate the valid symbol type for the terminal to perform CSI-RS measurements, and the third configuration information is carried in the configuration signaling of CSI reporting, used to indicate the valid symbol type for CSI reporting.

[0219] The corresponding UE measurement behavior is as follows: The UE determines the valid symbol type for CSI-RS measurement based on the second configuration information. The UE only measures the CSI-RS transmission timing on the valid symbols and calculates the CSI measurement results accordingly.

[0220] The corresponding UE reporting behavior is as follows: The UE determines the valid symbol type for CSI reporting based on the third configuration information, and the UE only sends CSI reports to the base station on the PUCCH or PUSCH corresponding to the valid symbol.

[0221] The valid symbol type indicated by the second configuration information and the valid symbol type indicated by the third configuration information may be the same or different.

[0222] For example, when the second configuration information indicates that the valid symbol type is SBFD symbol and the third configuration information indicates that the valid symbol type is non-SBFD symbol, the UE only measures the CSI-RS transmitted on the SBFD symbol, calculates the corresponding measurement results, and sends the CSI report to the base station via PUCCH or PUSCH on the non-SBFD symbol. Figure 7 One possible example is given, where the CSI-RS resource is configured as a periodic resource with a transmission period of 4 time slots, and the CSI reports periodically via PUCCH with a reporting period of 4 time slots.

[0223] In this implementation, the valid symbol types for a UE to perform CSI-RS measurements and CSI reporting can be the same or different. Furthermore, it is also possible to restrict CSI-RS to only one symbol type while CSI reporting can be transmitted on two symbol types, or vice versa. In other words, this approach enables more flexible CSI-RS measurements and CSI reporting.

[0224] See Figure 8 The embodiments of this application provide a communication processing device applied to a terminal. The device 800 includes: a first transceiver unit 801 and a first processing unit 802.

[0225] The first processing unit 802 is configured to perform a first operation, the first operation including at least one of the following:

[0226] Receive the first configuration information sent by the network-side device;

[0227] Receive at least one of the second configuration information and the third configuration information sent by the network-side device;

[0228] The first configuration information is used to indicate the first symbol type reported by the first measurement resource and channel state information (CSI);

[0229] The first measurement resource is used to measure a reference signal, the second configuration information is used to indicate the first symbol type of the first measurement resource, and the third configuration information indicates the first symbol type reported by CSI;

[0230] The first symbol type includes at least one of the following: valid symbol type and invalid symbol type.

[0231] In one embodiment of this application, the first processing unit 802 is further configured to determine the first measurement resource and the first symbol type reported by CSI based on the first configuration information;

[0232] The first transceiver unit 801 is used to receive the CSI-RS transmission timing on the first symbol and perform measurements to obtain the measurement results of the channel state information.

[0233] The first transceiver unit 801 is further configured to send the measurement result to the network-side device through the uplink channel corresponding to the first symbol; or, discard the transmission opportunity of the channel state information reference signal (CSI-RS) on the first symbol, and perform measurement on symbols other than the first symbol to obtain the measurement result of the channel state information; and send the measurement result to the network-side device through the uplink channel corresponding to the symbols other than the first symbol.

[0234] The first symbol includes the symbol corresponding to the first measurement resource indicated by the first configuration information and the first symbol type reported by CSI.

[0235] In one embodiment of this application, the first configuration information is carried in serving cell configuration signaling or channel state information measurement configuration signaling.

[0236] In one embodiment of this application, the first processing unit 802 is further configured to determine the first symbol type of the CSI report and the first symbol type of the first measurement resource associated with the CSI report based on the first configuration information;

[0237] The first transceiver unit 801 is used to receive the CSI-RS transmission timing on the second symbol and perform measurements to obtain the measurement results of the channel state information.

[0238] The first transceiver unit 801 is further configured to send the measurement result to the network-side device through the uplink channel corresponding to the third symbol; or, discard the CSI-RS transmission opportunity on the second symbol, perform measurement on symbols other than the second symbol to obtain the measurement result of channel state information; and send the measurement result to the network-side device through the uplink channel corresponding to symbols other than the third symbol.

[0239] The second symbol includes the symbol corresponding to the first symbol type of the first measurement resource, and the third symbol includes the symbol corresponding to the first symbol type reported by the CSI.

[0240] In one embodiment of this application, the first configuration information is carried in the configuration signaling reported by CSI.

[0241] In one embodiment of this application, the first processing unit 802 is further configured to determine the first symbol type of the first measurement resource and the first symbol type of CSI reporting associated with the first measurement resource based on the first configuration information.

[0242] The first transceiver unit 801 is used to receive the CSI-RS transmission timing on the fourth symbol and perform measurements to obtain the measurement results of the channel state information.

[0243] The first transceiver unit 801 is further configured to send the measurement result to the network-side device through the uplink channel corresponding to the fifth symbol; or, discard the CSI-RS transmission opportunity on the fourth symbol, perform measurement on symbols other than the fourth symbol to obtain the measurement result of channel state information; and send the measurement result to the network-side device through the uplink channel corresponding to symbols other than the fifth symbol.

[0244] The fourth symbol includes the symbol corresponding to the first symbol type of the first measurement resource, and the fifth symbol includes the symbol corresponding to the first symbol type reported by the CSI.

[0245] In one embodiment of this application, the first configuration information is carried in the configuration signaling of the first measurement resource.

[0246] In one embodiment of this application, the first processing unit 802 is further configured to determine the first symbol type of the first measurement resource based on the second configuration information;

[0247] The first transceiver unit 801 is used to receive the CSI-RS transmission opportunity on the sixth symbol, perform measurement to obtain the measurement result of the channel state information, wherein the sixth symbol includes the symbol corresponding to the first symbol type of the first measurement resource; or, discard the CSI-RS transmission opportunity on the sixth symbol, and perform measurement on symbols other than the sixth symbol to obtain the measurement result of the channel state information, wherein the sixth symbol includes the symbol corresponding to the first symbol type of the first measurement resource.

[0248] In one embodiment of this application, the second configuration information is carried in the configuration signaling of the first measurement resource.

[0249] In one embodiment of this application, the first processing unit 802 is further configured to determine the first symbol type reported by the CSI based on the third configuration information;

[0250] The first transceiver unit 801 is configured to send a CSI report to the network-side device via the uplink channel corresponding to the seventh symbol, wherein the seventh symbol includes the symbol corresponding to the first symbol type reported by the CSI; or, to send a CSI report to the network-side device via the uplink channel corresponding to a symbol other than the seventh symbol, wherein the seventh symbol includes the symbol corresponding to the first symbol type reported by the CSI.

[0251] In one embodiment of this application, the third configuration information is carried in the configuration signaling reported by CSI.

[0252] In one embodiment of this application, the first processing unit 802 is further configured to determine the first symbol type of the first measurement resource according to the second configuration information, and to determine the first symbol type of the CSI reporting according to the third configuration information; the first transceiver unit 801 is configured to receive the CSI-RS transmission opportunity on the eighth symbol, perform measurement to obtain the measurement result of the channel state information, wherein the eighth symbol includes the symbol corresponding to the first symbol type of the first measurement resource; or, discard the CSI-RS transmission opportunity on the eighth symbol, and perform measurement on symbols other than the eighth symbol to obtain the measurement result of the channel state information, wherein the eighth symbol includes the symbol corresponding to the first symbol type of the first measurement resource;

[0253] The first transceiver unit 801 is further configured to send the measurement result to the network-side device through the uplink channel corresponding to the ninth symbol; or, to send the measurement result to the network-side device through the uplink channel corresponding to a symbol other than the ninth symbol, wherein the ninth symbol includes the symbol corresponding to the first symbol type reported by the CSI.

[0254] In one embodiment of this application, the first symbol type of the first measurement resource indicated by the second configuration information and the first symbol type of CSI reporting indicated by the third configuration information may be the same or different.

[0255] In one embodiment of this application, the first measurement resource includes at least one of the following: CSI-RS resource or CSI-RS resource set, CSI-Interference Measurement IM resource or CSI-IM resource set, CSI-Synchronization Signal Block (SSB) resource or CSI-SSB resource set.

[0256] In one embodiment of this application, the uplink channel includes at least one of the following: PUCCH; PUSCH.

[0257] The apparatus provided in this application embodiment can achieve... Figure 4 The various processes implemented in the method embodiments shown achieve the same technical effects, and will not be described again here to avoid repetition.

[0258] See Figure 9 The embodiments of this application provide a communication processing device applied to a network-side device. The device 900 includes: a second transceiver unit 901 and a second processing unit 902.

[0259] The second processing unit 902 is configured to perform a second operation, the second operation including at least one of the following:

[0260] Send the first configuration information to the terminal;

[0261] Send at least one of the second configuration information and the third configuration information to the terminal;

[0262] The first configuration information is used to indicate the first measurement resource and the first symbol type reported by CSI;

[0263] The first measurement resource is used to measure a reference signal, the second configuration information is used to indicate the first symbol type of the first measurement resource, and the third configuration information indicates the first symbol type reported by CSI;

[0264] The first symbol type includes at least one of the following: valid symbol type and invalid symbol type.

[0265] In one embodiment of this application, the first configuration information is carried in serving cell configuration signaling or channel state information measurement configuration information, and the first configuration information is used to explicitly indicate the first measurement resource and the first symbol type reported by CSI.

[0266] In one embodiment of this application, the first configuration information is carried in the configuration signaling reported by the CSI. The first configuration information is used to explicitly indicate the first symbol type reported by the CSI, and the first configuration information is also used to implicitly indicate the first symbol type of the first measurement resource associated with the CSI report.

[0267] In one embodiment of this application, the first configuration information is carried in the configuration signaling of the first measurement resource. The first configuration information is used to explicitly indicate the first symbol type of the first measurement resource, and the first configuration information is also used to implicitly indicate the first symbol type of the CSI reporting resource associated with the first measurement resource.

[0268] In one embodiment of this application, the second configuration information is carried in the configuration signaling of the first measurement resource.

[0269] In one embodiment of this application, the third configuration information is carried in the configuration signaling reported by CSI.

[0270] In one embodiment of this application, the first symbol type of the first measurement resource indicated by the second configuration information and the first symbol type of CSI reporting indicated by the third configuration information may be the same or different.

[0271] In one embodiment of this application, the first measurement resource includes at least one of the following: CSI-RS resource or CSI-RS resource set, CSI-IM resource or CSI-IM resource set, CSI-SSB resource or CSI-SSB resource set.

[0272] The apparatus provided in this application embodiment can achieve... Figure 5 The various processes implemented in the method embodiments shown achieve the same technical effects, and will not be described again here to avoid repetition.

[0273] like Figure 10 As shown, this application embodiment also provides a communication device 1000, including a processor 1001, a memory 1002, and a program or instructions stored in the memory 1002 and executable on the processor 1001. When the program or instructions are executed by the processor 1001, they implement the above-mentioned... Figure 4 or Figure 5 The various processes of the method embodiments shown can achieve the same technical effect. To avoid repetition, they will not be described again here.

[0274] This application embodiment also provides a readable storage medium storing a program or instructions that, when executed by a processor, implement the above-described functionality. Figure 4 or Figure 5 The various processes of the method embodiments shown can achieve the same technical effect, and will not be described again here to avoid repetition.

[0275] The processor mentioned above is the processor in the terminal described in the above embodiments. The readable storage medium includes computer-readable storage media, such as computer read-only memory (ROM), random access memory (RAM), magnetic disk, or optical disk.

[0276] The steps of the methods or algorithms described in this application can be implemented in hardware or by executing software instructions on a processor. The software instructions can consist of corresponding software modules, which can be stored in RAM, flash memory, ROM, EPROM, EEPROM, registers, hard disk, portable hard disk, read-only optical disk, or any other form of storage medium known in the art. An exemplary storage medium is coupled to the processor, enabling the processor to read information from and write information to the storage medium. Of course, the storage medium can also be a component of the processor. The processor and storage medium can be housed in an ASIC. Alternatively, the ASIC can be housed in a core network interface device. Of course, the processor and storage medium can also exist as discrete components in the core network interface device.

[0277] Those skilled in the art will recognize that, in one or more of the examples above, the functions described in this application can be implemented using hardware, software, firmware, or any combination thereof. When implemented in software, these functions can be stored in a computer-readable medium or transmitted as one or more instructions or code on a computer-readable medium. Computer-readable media include computer storage media and communication media, wherein communication media include any medium that facilitates the transfer of a computer program from one place to another. Storage media can be any available medium accessible to a general-purpose or special-purpose computer.

[0278] The specific embodiments described above further illustrate the purpose, technical solution, and beneficial effects of this application. It should be understood that the above description is only a specific embodiment of this application and is not intended to limit the scope of protection of this application. Any modifications, equivalent substitutions, improvements, etc., made on the basis of the technical solution of this application should be included within the scope of protection of this application.

[0279] Those skilled in the art will understand that embodiments of this application can be provided as methods, systems, or computer program products. Therefore, embodiments of this application can take the form of entirely hardware embodiments, entirely software embodiments, or embodiments combining software and hardware aspects. Furthermore, embodiments of this application can take the form of computer program products implemented on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.

[0280] This application describes embodiments of methods, apparatus (systems), and computer program products according to embodiments of this application with reference to flowchart illustrations and / or block diagrams. It should be understood that each block of the flowchart illustrations and / or block diagrams, and combinations of blocks in the flowchart illustrations and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, special-purpose computer, embedded processor, or other programmable data processing apparatus to produce a machine, such that the instructions, which execute via the processor of the computer or other programmable data processing apparatus, generate instructions for implementing the flowchart illustrations. Figure 1 One or more processes and / or boxes Figure 1 A device that provides the functions specified in one or more boxes.

[0281] These computer program instructions may also be stored in a computer-readable storage medium that can direct a computer or other programmable data processing device to function in a particular manner, such that the instructions stored in the computer-readable storage medium produce an article of manufacture including instruction means, which are implemented in a process Figure 1 One or more processes and / or boxes Figure 1 The function specified in one or more boxes.

[0282] These computer program instructions may also be loaded onto a computer or other programmable data processing equipment to cause a series of operational steps to be performed on the computer or other programmable equipment to produce a computer-implemented process, thereby providing instructions that execute on the computer or other programmable equipment for implementing the process. Figure 1 One or more processes and / or boxes Figure 1 The steps of the function specified in one or more boxes.

[0283] Obviously, those skilled in the art can make various modifications and variations to the embodiments of this application without departing from the spirit and scope of this application. Therefore, if these modifications and variations to the embodiments of this application fall within the scope of the claims of this application and their equivalents, this application also intends to include these modifications and variations.

Claims

1. A communication processing method, characterized in that, Applied to a terminal, the method includes: Perform a first operation, the first operation including at least one of the following: Receive the first configuration information sent by the network-side device; Receive at least one of the second configuration information and the third configuration information sent by the network-side device; The first configuration information is used to indicate the first symbol type reported by the first measurement resource and channel state information (CSI); The first measurement resource is used to measure a reference signal, the second configuration information is used to indicate the first symbol type of the first measurement resource, and the third configuration information indicates the first symbol type reported by CSI; The first symbol type includes at least one of the following: valid symbol type and invalid symbol type.

2. The method according to claim 1, characterized in that, The method further includes: The first measurement resource and the first symbol type reported by CSI are determined based on the first configuration information; When receiving the Channel State Information Reference Signal (CSI-RS) transmission timing on the first symbol, perform measurements to obtain the measurement results of the Channel State Information; The measurement result is sent to the network-side device through the uplink channel corresponding to the first symbol; or, Discard the transmission timing of the Channel State Information Reference Signal (CSI-RS) on the first symbol, and perform measurements on symbols other than the first symbol to obtain the measurement results of the Channel State Information. The measurement results are sent to the network-side device through the uplink channel corresponding to the symbols other than the first symbol; The first symbol includes the symbol corresponding to the first measurement resource indicated by the first configuration information and the first symbol type reported by CSI.

3. The method according to claim 1 or 2, characterized in that, The first configuration information is carried in the serving cell configuration signaling or the channel state information measurement configuration signaling.

4. The method according to claim 1, characterized in that, The method further includes: The first symbol type reported by CSI and the first symbol type of the first measurement resource associated with the CSI report are determined based on the first configuration information. The measurement results of the channel state information are obtained by receiving the CSI-RS transmission timing on the second symbol and performing measurements. The measurement results are sent to the network-side device via the uplink channel corresponding to the third symbol; or, Discard the CSI-RS transmission opportunity on the second symbol, and perform measurements on symbols other than the second symbol to obtain the measurement results of channel state information; The measurement results are sent to the network-side device through the uplink channel corresponding to the symbols other than the third symbol. The second symbol includes the symbol corresponding to the first symbol type of the first measurement resource, and the third symbol includes the symbol corresponding to the first symbol type reported by the CSI.

5. The method according to claim 1 or 4, characterized in that, The first configuration information is carried in the configuration signaling reported by CSI.

6. The method according to claim 1, characterized in that, The method further includes: The first symbol type of the first measurement resource and the first symbol type of the CSI report associated with the first measurement resource are determined based on the first configuration information. The CSI-RS transmission timing on the fourth symbol is received, and the measurement results of the channel state information are obtained. The measurement results are sent to the network-side device via the uplink channel corresponding to the fifth symbol; or, Discard the CSI-RS transmission opportunity on the fourth symbol, and perform measurements on symbols other than the fourth symbol to obtain the measurement results of channel state information; The measurement results are sent to the network-side device through the uplink channel corresponding to the symbols other than the fifth symbol. The fourth symbol includes the symbol corresponding to the first symbol type of the first measurement resource, and the fifth symbol includes the symbol corresponding to the first symbol type reported by the CSI.

7. The method according to claim 1 or 6, characterized in that, The first configuration information is carried in the configuration signaling of the first measurement resource.

8. The method according to claim 1, characterized in that, The method further includes: The first symbol type of the first measurement resource is determined based on the second configuration information; The CSI-RS transmission timing on the sixth symbol is received, and the measurement result of the channel state information is obtained by measurement. The sixth symbol includes the symbol corresponding to the first symbol type of the first measurement resource. or, The CSI-RS transmission opportunity on the sixth symbol is discarded, and the measurement results of the channel state information are obtained by measuring on symbols other than the sixth symbol. The sixth symbol includes the symbol corresponding to the first symbol type of the first measurement resource.

9. The method according to claim 1 or 8, characterized in that, The second configuration information is carried in the configuration signaling of the first measurement resource.

10. The method according to claim 1, characterized in that, The method further includes: The first symbol type reported by the CSI is determined based on the third configuration information; A CSI report is sent to the network-side device via the uplink channel corresponding to the seventh symbol, wherein the seventh symbol includes the symbol corresponding to the first symbol type of the CSI report; or, The CSI report is sent to the network-side device through the uplink channel corresponding to the symbols other than the seventh symbol, wherein the seventh symbol includes the symbol corresponding to the first symbol type reported by the CSI.

11. The method according to claim 1 or 10, characterized in that, The third configuration information is carried in the configuration signaling reported by CSI.

12. The method according to claim 1, characterized in that, The method further includes: The first symbol type of the first measurement resource is determined according to the second configuration information, and the first symbol type of the CSI report is determined according to the third configuration information; Receive the CSI-RS transmission opportunity on the eighth symbol, perform measurement to obtain the channel state information measurement result, wherein the eighth symbol includes the symbol corresponding to the first symbol type of the first measurement resource; or, discard the CSI-RS transmission opportunity on the eighth symbol, and perform measurement on symbols other than the eighth symbol to obtain the channel state information measurement result, wherein the eighth symbol includes the symbol corresponding to the first symbol type of the first measurement resource. The measurement result is sent to the network-side device via the uplink channel corresponding to the ninth symbol; or, the measurement result is sent to the network-side device via the uplink channel corresponding to a symbol other than the ninth symbol, wherein the ninth symbol includes the symbol corresponding to the first symbol type reported by the CSI.

13. The method according to claim 1, 8, 10, or 12, characterized in that, The first symbol type of the first measurement resource indicated by the second configuration information and the first symbol type reported by CSI indicated by the third configuration information may be the same or different.

14. The method according to claim 1, 2, 4, 6, 8, or 12, characterized in that, The first measurement resource includes at least one of the following: CSI-RS resource or CSI-RS resource set, CSI-Interference Measurement IM resource or CSI-IM resource set, CSI-Synchronization Signal Block (SSB) resource or CSI-SSB set.

15. The method according to claim 2, 4, 6, 10, or 12, characterized in that, The uplink channel includes at least one of the following: Physical uplink control channel (PUCCH); Physical uplink shared channel (PUSCH).

16. A communication processing method, characterized in that, Applied to network-side devices, the method includes: Perform a second operation, which includes at least one of the following: Send the first configuration information to the terminal; Send at least one of the second configuration information and the third configuration information to the terminal; The first configuration information is used to indicate the first measurement resource and the first symbol type reported by CSI; The first measurement resource is used to measure a reference signal, the second configuration information is used to indicate the first symbol type of the first measurement resource, and the third configuration information indicates the first symbol type reported by CSI; The first symbol type includes at least one of the following: valid symbol type and invalid symbol type.

17. The method according to claim 16, characterized in that, The first configuration information is carried in the serving cell configuration signaling or channel state information measurement configuration information, and the first configuration information is used to explicitly indicate the first measurement resource and the first symbol type reported by CSI.

18. The method according to claim 16, characterized in that, The first configuration information is carried in the configuration signaling reported by the CSI. The first configuration information is used to explicitly indicate the first symbol type reported by the CSI, and the first configuration information is also used to implicitly indicate the first symbol type of the first measurement resource associated with the CSI report.

19. The method according to claim 16, characterized in that, The first configuration information is carried in the configuration signaling of the first measurement resource. The first configuration information is used to explicitly indicate the first symbol type of the first measurement resource, and the first configuration information is also used to implicitly indicate the first symbol type of the CSI reporting resource associated with the first measurement resource.

20. The method according to claim 16, characterized in that, The second configuration information is carried in the configuration signaling of the first measurement resource.

21. The method according to claim 16, characterized in that, The third configuration information is carried in the configuration signaling reported by CSI.

22. The method according to claim 16, 20, or 21, characterized in that, The first symbol type of the first measurement resource indicated by the second configuration information and the first symbol type reported by CSI indicated by the third configuration information may be the same or different.

23. The method according to any one of claims 16 to 21, characterized in that, The first measurement resource includes at least one of the following: CSI-RS resource or CSI-RS resource set, CSI-IM resource or CSI-IM resource set, CSI-SSB resource or CSI-SSB resource set.

24. A communication processing device, applied to a terminal, characterized in that, include: First transceiver unit and first processing unit; The first processing unit is configured to perform a first operation, the first operation including at least one of the following: Receive the first configuration information sent by the network-side device; Receive at least one of the second configuration information and the third configuration information sent by the network-side device; The first configuration information is used to indicate the first measurement resource and the first symbol type reported by CSI; The first measurement resource is used to measure a reference signal, the second configuration information is used to indicate the first symbol type of the first measurement resource, and the third configuration information indicates the first symbol type reported by CSI; The first symbol type includes at least one of the following: valid symbol type and invalid symbol type.

25. A communication processing apparatus, applied to network-side equipment, characterized in that, include: Second transceiver unit and second processing unit; The second processing unit is used to perform a second operation, the second operation including at least one of the following: Send the first configuration information to the terminal; Send at least one of the second configuration information and the third configuration information to the terminal; The first configuration information is used to indicate the first measurement resource and the first symbol type reported by CSI; The first measurement resource is used to measure a reference signal, the second configuration information is used to indicate the first symbol type of the first measurement resource, and the third configuration information indicates the first symbol type reported by CSI; The first symbol type includes at least one of the following: valid symbol type and invalid symbol type.

26. A communication device, characterized in that, It includes a processor, a memory, and a program or instructions stored in the memory and executable on the processor, wherein the program or instructions, when executed by the processor, implement the steps of the method as described in any one of claims 1 to 23.

27. A readable storage medium, characterized in that, The readable storage medium stores a program or instructions that, when executed by a processor, implement the steps of the method as described in any one of claims 1 to 23.

28. A computer program product, characterized in that, Includes computer instructions that, when executed by a processor, implement the steps of the method as described in any one of claims 1 to 23.