Information reporting method, device, system and equipment and storage medium

By implementing an information reporting method on the user equipment, reporting CSI performance monitoring related information to the network equipment, the problem of difficulty in reporting CSI performance monitoring information in the prior art is solved, and the accuracy and monitoring efficiency of CSI prediction are improved.

CN119995775APending Publication Date: 2025-05-13CHINA MOBILE COMM LTD RES INST +1
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Patent Information

Application Number
CN202311492933.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-11-10
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

The prior art cannot effectively report channel status information (CSI) performance monitoring related information to network devices, resulting in poor accuracy of CSI prediction.

Method used

By implementing an information reporting method on the user device, a CSI reporting is reported to the network device, which includes a first reporting quantity (the first type of CSI) and a second reporting quantity (the performance monitoring quantity of CSI), so that the network device can monitor the performance of the CSI.

Benefits of technology

It realizes the direct reporting of CSI performance monitoring related information to network devices, improves the accuracy of CSI prediction, reduces the delay of network devices for CSI performance monitoring, and avoids the problem of large signaling overhead.

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Abstract

The invention discloses an information reporting method, device and system, equipment and a storage medium, and aims to solve the problem that CSI performance monitoring related information cannot be reported to network equipment in the prior art. The method comprises: reporting a channel state information (CSI) report to a network device, the CSI report being used for reporting a first report amount and a second report amount, the first report amount being a first type of CSI, the second report amount being a performance monitoring amount, and the performance monitoring amount being a performance monitoring amount of the first type of CSI. The technical scheme of the invention can be applied to the field of wireless communication.
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Description

Technical Field

[0001] The present application relates to the field of communication technology, and in particular to an information reporting method, apparatus, system, device and storage medium. Background Art

[0002] Channel State Information (CSI) prediction can be achieved through artificial intelligence (AI) technology. Specifically, a pre-set AI model can be used to predict the CSI at a future moment based on the CSI at a measured historical moment.

[0003] However, due to changes in configuration parameters or scenarios, the AI ​​model may no longer adapt to the current environment, causing the performance of the AI ​​model in predicting CSI to deteriorate, resulting in inaccurate predicted CSI.

[0004] In order to solve the above problems, network devices, such as base stations, need to monitor the accuracy of predicted CSI. How to report CSI performance monitoring related information to the network device so that the network device can determine the accuracy of CSI prediction based on the CSI performance monitoring related information has become a problem to be solved urgently. Summary of the invention

[0005] The embodiments of the present application provide an information reporting method, apparatus, system, device and storage medium to solve the problem that the prior art cannot report CSI performance monitoring related information to the network device.

[0006] In a first aspect, an embodiment of the present application provides an information reporting method, which is applied to a user equipment, and the method includes:

[0007] Report channel state information CSI reporting to the network device, the CSI reporting is used to report a first reporting amount and a second reporting amount, the first reporting amount is a first type of CSI, the second reporting amount is a performance monitoring amount, and the performance monitoring amount is a performance monitoring amount of the first type of CSI.

[0008] Optionally, reportQuantity of the CSI reporting configuration is cri-RI-LI-PMI-CQI-performance monitoring quantity, or cri-RI-PMI-CQI-performance monitoring quantity.

[0009] Optionally, when the time domain type of the CSI reporting is semi-persistent, the CSI reporting is associated with a semi-persistent or periodic CSI-RS resource; or,

[0010] When the time domain type of the CSI reporting is periodic, the CSI reporting is associated with periodic CSI-RS resources.

[0011] Optionally, when the time domain type of the CSI report is semi-continuous or periodic, the CSI report is used to report the first reporting amount when it is reported for the first preset number of times, and the CSI report is used to report the first reporting amount and the second reporting amount when it is reported for other times, and the preset number of times is greater than or equal to 1.

[0012] Optionally, one time interval for CSI reporting or one time interval corresponding to a precoding matrix corresponds to one performance monitoring quantity.

[0013] Optionally, when the CSI report is used to report K performance monitoring quantities, K=T, T is the number of time intervals associated with the precoding matrix indication PMI in the CSI report, the t-th performance monitoring quantity corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0014] In the case of K<T, the K performance monitoring quantities correspond to K of the T time intervals.

[0015] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report.

[0016] Optionally, the correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0017] Optionally, the manner in which the K performance monitoring quantities correspond to K of the T time intervals includes:

[0018] Based on a bitmap of length T, by setting each bit value of the bitmap, the correspondence between the K performance monitoring quantities and K of the T time intervals is represented; or,

[0019] Through an occupation The method of indicating the combination coefficient of bits represents the correspondence between the K performance monitoring quantities and K of the T time intervals.

[0020] Optionally, when K=1, the performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and / or the performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0021] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0022] In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or

[0023] When K=2, the first performance monitoring amount corresponds to the precoding matrix corresponding to the t=0th time interval or the time interval, and the precoding matrix corresponding to the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1] or the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1], l is the starting time of the earliest time interval among the T time intervals, N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report, the second performance monitoring amount corresponds to the precoding matrix corresponding to the t=T / 2th time interval or the time interval, and the precoding matrix corresponding to the t=T-1th time interval or the time interval, where T>4.

[0024] Optionally, a time interval for CSI reporting or a precoding matrix corresponding to a time interval corresponds to M performance monitoring quantities, and the M performance monitoring quantities constitute a performance monitoring quantity group, where M>1.

[0025] Optionally, M∈(1, N], where N is the period of the semi-persistent or periodic CSI-RS resources associated with the CSI reporting.

[0026] Optionally, the M performance monitoring quantities correspond to a time interval or a precoding matrix corresponding to a time interval respectively;

[0027] Each of the M performance monitoring quantities corresponds to N / M slots, where N / M is a positive integer.

[0028] Optionally, when the CSI report is used to report K performance monitoring amount groups, K=T, T is the number of time intervals associated with the PMI in the CSI report, the t-th performance monitoring amount group corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0029] In the case of K<T, the K performance monitoring quantity groups correspond to K of the T time intervals.

[0030] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resource associated with the CSI reporting;

[0031] In the case of M=N, the mth performance monitoring quantity in the tth performance monitoring quantity group corresponds to slot l+tN+m.

[0032] Optionally, the correspondence between the K performance monitoring amount groups and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0033] Optionally, the manner in which the K performance monitoring amount groups correspond to K of the T time intervals includes:

[0034] Based on a bitmap of length T, by setting each bit value of the bitmap, it is indicated that the K performance monitoring amount groups correspond to K of the T time intervals; or,

[0035] Through an occupation The method of indicating the combination coefficient of bits represents the correspondence method of the K performance monitoring quantity groups corresponding to K of the T time intervals.

[0036] Optionally, when K=1, the performance monitoring quantity group corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, or the performance monitoring quantity group corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0037] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0038] When K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, where T>1.

[0039] Optionally, when M=1, the performance monitoring amount corresponds to the first slot or the last slot of the time interval; or,

[0040] When M=2, the performance monitoring amount corresponds to the first slot and the last slot in the time interval.

[0041] In a second aspect, an embodiment of the present application provides an information reporting method, which is applied to a network device, and the method includes:

[0042] Receive a CSI report determined by a user equipment according to a channel state information CSI reporting configuration, wherein the CSI reporting configuration is configured by the network equipment, and the CSI reporting is used to report a first reporting amount and a second reporting amount, wherein the first reporting amount is a first type of CSI, and the second reporting amount is a performance monitoring amount, and the performance monitoring amount is a performance monitoring amount of the first type of CSI.

[0043] Optionally, reportQuantity of the CSI reporting configuration is cri-RI-LI-PMI-CQI-performance monitoring quantity, or cri-RI-PMI-CQI-performance monitoring quantity.

[0044] Optionally, when the time domain type of the CSI reporting is semi-persistent, the CSI reporting is associated with a semi-persistent or periodic CSI-RS resource; or,

[0045] When the time domain type of the CSI reporting is periodic, the CSI reporting is associated with periodic CSI-RS resources.

[0046] Optionally, when the time domain type of the CSI report is semi-continuous or periodic, the CSI report is used to report the first reporting amount when it is reported for the first preset number of times, and the CSI report is used to report the first reporting amount and the second reporting amount when it is reported for other times, and the preset number of times is greater than or equal to 1.

[0047] Optionally, one time interval for CSI reporting or one time interval corresponding to a precoding matrix corresponds to one performance monitoring quantity.

[0048] Optionally, when the CSI report is used to report K performance monitoring quantities, K=T, T is the number of time intervals associated with the precoding matrix indication PMI in the CSI report, the t-th performance monitoring quantity corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0049] In the case of K<T, the K performance monitoring quantities correspond to K of the T time intervals.

[0050] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report.

[0051] Optionally, the correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0052] Optionally, the manner in which the K performance monitoring quantities correspond to K of the T time intervals includes:

[0053] Based on a bitmap of length T, by setting each bit value of the bitmap, the correspondence between the K performance monitoring quantities and K of the T time intervals is represented; or,

[0054] The correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by a combination coefficient indication occupying bits.

[0055] Optionally, when K=1, the performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and / or the performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0056] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0057] In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or

[0058] When K=2, the first performance monitoring amount corresponds to the precoding matrix corresponding to the t=0th time interval or the time interval, and the precoding matrix corresponding to the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1] or the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1], l is the starting time of the earliest time interval among the T time intervals, N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report, the second performance monitoring amount corresponds to the precoding matrix corresponding to the t=T / 2th time interval or the time interval, and the precoding matrix corresponding to the t=T-1th time interval or the time interval, where T>4.

[0059] Optionally, a time interval for CSI reporting or a precoding matrix corresponding to a time interval corresponds to M performance monitoring quantities, and the M performance monitoring quantities constitute a performance monitoring quantity group, where M>1.

[0060] Optionally, M∈(1, N], where N is the period of the semi-persistent or periodic CSI-RS resources associated with the CSI reporting.

[0061] Optionally, the M performance monitoring quantities correspond to a time interval or a precoding matrix corresponding to a time interval respectively;

[0062] Each of the M performance monitoring quantities corresponds to N / M slots, where N / M is a positive integer.

[0063] Optionally, when the CSI report is used to report K performance monitoring amount groups, K=T, T is the number of time intervals associated with the PMI in the CSI report, the t-th performance monitoring amount group corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0064] In the case of K<T, the K performance monitoring quantity groups correspond to K of the T time intervals.

[0065] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resource associated with the CSI reporting;

[0066] In the case of M=N, the mth performance monitoring quantity in the tth performance monitoring quantity group corresponds to slot l+tN+m.

[0067] Optionally, the correspondence between the K performance monitoring amount groups and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0068] Optionally, the manner in which the K performance monitoring amount groups correspond to K of the T time intervals includes:

[0069] Based on a bitmap of length T, by setting each bit value of the bitmap, it is indicated that the K performance monitoring amount groups correspond to K of the T time intervals; or,

[0070] The manner of using represents the manner in which the K performance monitoring quantity groups correspond to K of the T time intervals.

[0071] Optionally, when K=1, the performance monitoring quantity group corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, or the performance monitoring quantity group corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0072] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0073] When K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, where T>1.

[0074] Optionally, when M=1, the performance monitoring amount corresponds to the first slot or the last slot of the time interval; or,

[0075] When M=2, the performance monitoring amount corresponds to the first slot and the last slot in the time interval.

[0076] In a third aspect, an embodiment of the present application provides an information reporting device, applied to a user equipment, including:

[0077] The first module is used to report channel state information CSI to the network device, and the CSI report is used to report a first reporting amount and a second reporting amount. The first reporting amount is a first type of CSI, and the second reporting amount is a performance monitoring amount. The performance monitoring amount is the performance monitoring amount of the first type of CSI.

[0078] Optionally, reportQuantity of the CSI reporting configuration is cri-RI-LI-PMI-CQI-performance monitoring quantity, or cri-RI-PMI-CQI-performance monitoring quantity.

[0079] Optionally, when the time domain type of the CSI reporting is semi-persistent, the CSI reporting is associated with a semi-persistent or periodic CSI-RS resource; or,

[0080] When the time domain type of the CSI reporting is periodic, the CSI reporting is associated with periodic CSI-RS resources.

[0081] Optionally, when the time domain type of the CSI report is semi-continuous or periodic, the CSI report is used to report the first reporting amount when it is reported for the first preset number of times, and the CSI report is used to report the first reporting amount and the second reporting amount when it is reported for other times, and the preset number of times is greater than or equal to 1.

[0082] Optionally, one time interval for CSI reporting or one time interval corresponding to a precoding matrix corresponds to one performance monitoring quantity.

[0083] Optionally, when the CSI report is used to report K performance monitoring quantities, K=T, T is the number of time intervals associated with the precoding matrix indication PMI in the CSI report, the t-th performance monitoring quantity corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0084] In the case of K<T, the K performance monitoring quantities correspond to K of the T time intervals.

[0085] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report.

[0086] Optionally, the correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0087] Optionally, the manner in which the K performance monitoring quantities correspond to K of the T time intervals includes:

[0088] Based on a bitmap of length T, by setting each bit value of the bitmap, the correspondence between the K performance monitoring quantities and K of the T time intervals is represented; or,

[0089] Through an occupation The method of indicating the combination coefficient of bits represents the correspondence between the K performance monitoring quantities and K of the T time intervals.

[0090] Optionally, when K=1, the performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and / or the performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0091] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0092] In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or

[0093] When K=2, the first performance monitoring amount corresponds to the precoding matrix corresponding to the t=0th time interval or the time interval, and the precoding matrix corresponding to the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1] or the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1], l is the starting time of the earliest time interval among the T time intervals, N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report, the second performance monitoring amount corresponds to the precoding matrix corresponding to the t=T / 2th time interval or the time interval, and the precoding matrix corresponding to the t=T-1th time interval or the time interval, where T>4.

[0094] Optionally, a time interval for CSI reporting or a precoding matrix corresponding to a time interval corresponds to M performance monitoring quantities, and the M performance monitoring quantities constitute a performance monitoring quantity group, where M>1.

[0095] Optionally, M∈(1, N], where N is the period of the semi-persistent or periodic CSI-RS resources associated with the CSI reporting.

[0096] Optionally, the M performance monitoring quantities correspond to a time interval or a precoding matrix corresponding to a time interval respectively;

[0097] Each of the M performance monitoring quantities corresponds to N / M slots, where N / M is a positive integer.

[0098] Optionally, when the CSI report is used to report K performance monitoring amount groups, K=T, T is the number of time intervals associated with the PMI in the CSI report, the t-th performance monitoring amount group corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0099] In the case of K<T, the K performance monitoring quantity groups correspond to K of the T time intervals.

[0100] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resource associated with the CSI reporting;

[0101] In the case of M=N, the mth performance monitoring quantity in the tth performance monitoring quantity group corresponds to slot l+tN+m.

[0102] Optionally, the correspondence between the K performance monitoring amount groups and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0103] Optionally, the manner in which the K performance monitoring amount groups correspond to K of the T time intervals includes:

[0104] Based on a bitmap of length T, by setting each bit value of the bitmap, it is indicated that the K performance monitoring amount groups correspond to K of the T time intervals; or,

[0105] Through an occupation The method of indicating the combination coefficient of bits represents the correspondence method of the K performance monitoring quantity groups corresponding to K of the T time intervals.

[0106] Optionally, when K=1, the performance monitoring quantity group corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, or the performance monitoring quantity group corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0107] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0108] When K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, where T>1.

[0109] Optionally, when M=1, the performance monitoring amount corresponds to the first slot or the last slot of the time interval; or,

[0110] When M=2, the performance monitoring amount corresponds to the first slot and the last slot in the time interval.

[0111] In a fourth aspect, an embodiment of the present application provides an information reporting device, which is applied to a network device, including:

[0112] The first module is used to receive a CSI report determined by a user equipment according to a channel state information CSI reporting configuration, wherein the CSI reporting configuration is pre-configured by the network device, and the CSI report is used to report a first reporting amount and a second reporting amount, wherein the first reporting amount is a first type of CSI, and the second reporting amount is a performance monitoring amount, and the performance monitoring amount is a performance monitoring amount of the first type of CSI.

[0113] Optionally, reportQuantity of the CSI reporting configuration is cri-RI-LI-PMI-CQI-performance monitoring quantity, or cri-RI-PMI-CQI-performance monitoring quantity.

[0114] Optionally, when the time domain type of the CSI reporting is semi-persistent, the CSI reporting is associated with a semi-persistent or periodic CSI-RS resource; or,

[0115] When the time domain type of the CSI reporting is periodic, the CSI reporting is associated with periodic CSI-RS resources.

[0116] Optionally, when the time domain type of the CSI report is semi-continuous or periodic, the CSI report is used to report the first reporting amount when it is reported for the first preset number of times, and the CSI report is used to report the first reporting amount and the second reporting amount when it is reported for other times, and the preset number of times is greater than or equal to 1.

[0117] Optionally, one time interval for CSI reporting or one time interval corresponding to a precoding matrix corresponds to one performance monitoring quantity.

[0118] Optionally, when the CSI report is used to report K performance monitoring quantities, K=T, T is the number of time intervals associated with the precoding matrix indication PMI in the CSI report, the t-th performance monitoring quantity corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0119] In the case of K<T, the K performance monitoring quantities correspond to K of the T time intervals.

[0120] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report.

[0121] Optionally, the correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0122] Optionally, the manner in which the K performance monitoring quantities correspond to K of the T time intervals includes:

[0123] Based on a bitmap of length T, by setting each bit value of the bitmap, the correspondence between the K performance monitoring quantities and K of the T time intervals is represented; or,

[0124] The correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by a combination coefficient indication occupying bits.

[0125] Optionally, when K=1, the performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and / or the performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0126] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0127] In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or

[0128] When K=2, the first performance monitoring amount corresponds to the precoding matrix corresponding to the t=0th time interval or the time interval, and the precoding matrix corresponding to the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1] or the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1], l is the starting time of the earliest time interval among the T time intervals, N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report, the second performance monitoring amount corresponds to the precoding matrix corresponding to the t=T / 2th time interval or the time interval, and the precoding matrix corresponding to the t=T-1th time interval or the time interval, where T>4.

[0129] Optionally, a time interval for CSI reporting or a precoding matrix corresponding to a time interval corresponds to M performance monitoring quantities, and the M performance monitoring quantities constitute a performance monitoring quantity group, where M>1.

[0130] Optionally, M∈(1, N], where N is the period of the semi-persistent or periodic CSI-RS resources associated with the CSI reporting.

[0131] Optionally, the M performance monitoring quantities correspond to a time interval or a precoding matrix corresponding to a time interval respectively;

[0132] Each of the M performance monitoring quantities corresponds to N / M slots, where N / M is a positive integer.

[0133] Optionally, when the CSI report is used to report K performance monitoring amount groups, K=T, T is the number of time intervals associated with the PMI in the CSI report, the t-th performance monitoring amount group corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0134] In the case of K<T, the K performance monitoring quantity groups correspond to K of the T time intervals.

[0135] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resource associated with the CSI reporting;

[0136] In the case of M=N, the mth performance monitoring quantity in the tth performance monitoring quantity group corresponds to slot l+tN+m.

[0137] Optionally, the correspondence between the K performance monitoring amount groups and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0138] Optionally, the manner in which the K performance monitoring amount groups correspond to K of the T time intervals includes:

[0139] Based on a bitmap of length T, by setting each bit value of the bitmap, it is indicated that the K performance monitoring amount groups correspond to K of the T time intervals; or,

[0140] The manner of using represents the manner in which the K performance monitoring quantity groups correspond to K of the T time intervals.

[0141] Optionally, when K=1, the performance monitoring quantity group corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, or the performance monitoring quantity group corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0142] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0143] When K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, where T>1.

[0144] Optionally, when M=1, the performance monitoring amount corresponds to the first slot or the last slot of the time interval; or,

[0145] When M=2, the performance monitoring amount corresponds to the first slot and the last slot in the time interval.

[0146] In a fifth aspect, an embodiment of the present application provides an information reporting device, applied to a user equipment, including: a processor and a transceiver;

[0147] The processor is used to configure CSI reporting;

[0148] The transceiver is used to report the CSI on the network device, and the CSI reporting is used to report a first reporting amount and a second reporting amount, the first reporting amount is a first type of CSI, the second reporting amount is a performance monitoring amount, and the performance monitoring amount is a performance monitoring amount of the first type of CSI.

[0149] Optionally, reportQuantity of the CSI reporting configuration is cri-RI-LI-PMI-CQI-performance monitoring quantity, or cri-RI-PMI-CQI-performance monitoring quantity.

[0150] Optionally, when the time domain type of the CSI reporting is semi-persistent, the CSI reporting is associated with a semi-persistent or periodic CSI-RS resource; or,

[0151] When the time domain type of the CSI reporting is periodic, the CSI reporting is associated with periodic CSI-RS resources.

[0152] Optionally, when the time domain type of the CSI report is semi-continuous or periodic, the CSI report is used to report the first reporting amount when it is reported for the first preset number of times, and the CSI report is used to report the first reporting amount and the second reporting amount when it is reported for other times, and the preset number of times is greater than or equal to 1.

[0153] Optionally, one time interval for CSI reporting or one time interval corresponding to a precoding matrix corresponds to one performance monitoring quantity.

[0154] Optionally, when the CSI report is used to report K performance monitoring quantities, K=T, T is the number of time intervals associated with the precoding matrix indication PMI in the CSI report, the t-th performance monitoring quantity corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0155] In the case of K<T, the K performance monitoring quantities correspond to K of the T time intervals.

[0156] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report.

[0157] Optionally, the correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0158] Optionally, the manner in which the K performance monitoring quantities correspond to K of the T time intervals includes:

[0159] Based on a bitmap of length T, by setting each bit value of the bitmap, the correspondence between the K performance monitoring quantities and K of the T time intervals is represented; or,

[0160] Through an occupation The method of indicating the combination coefficient of bits represents the correspondence between the K performance monitoring quantities and K of the T time intervals.

[0161] Optionally, when K=1, the performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and / or the performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0162] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0163] In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or

[0164] When K=2, the first performance monitoring amount corresponds to the precoding matrix corresponding to the t=0th time interval or the time interval, and the precoding matrix corresponding to the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1] or the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1], l is the starting time of the earliest time interval among the T time intervals, N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report, the second performance monitoring amount corresponds to the precoding matrix corresponding to the t=T / 2th time interval or the time interval, and the precoding matrix corresponding to the t=T-1th time interval or the time interval, where T>4.

[0165] Optionally, a time interval for CSI reporting or a precoding matrix corresponding to a time interval corresponds to M performance monitoring quantities, and the M performance monitoring quantities constitute a performance monitoring quantity group, where M>1.

[0166] Optionally, M∈(1, N], where N is the period of the semi-persistent or periodic CSI-RS resources associated with the CSI reporting.

[0167] Optionally, the M performance monitoring quantities correspond to a time interval or a precoding matrix corresponding to a time interval respectively;

[0168] Each of the M performance monitoring quantities corresponds to N / M slots, where N / M is a positive integer.

[0169] Optionally, when the CSI report is used to report K performance monitoring amount groups, K=T, T is the number of time intervals associated with the PMI in the CSI report, the t-th performance monitoring amount group corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0170] In the case of K<T, the K performance monitoring quantity groups correspond to K of the T time intervals.

[0171] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resource associated with the CSI reporting;

[0172] In the case of M=N, the mth performance monitoring quantity in the tth performance monitoring quantity group corresponds to slot l+tN+m.

[0173] Optionally, the correspondence between the K performance monitoring amount groups and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0174] Optionally, the manner in which the K performance monitoring amount groups correspond to K of the T time intervals includes:

[0175] Based on a bitmap of length T, by setting each bit value of the bitmap, it is indicated that the K performance monitoring amount groups correspond to K of the T time intervals; or,

[0176] Through an occupation The method of indicating the combination coefficient of bits represents the correspondence method of the K performance monitoring quantity groups corresponding to K of the T time intervals.

[0177] Optionally, when K=1, the performance monitoring quantity group corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, or the performance monitoring quantity group corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0178] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0179] When K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, where T>1.

[0180] Optionally, when M=1, the performance monitoring amount corresponds to the first slot or the last slot of the time interval; or,

[0181] When M=2, the performance monitoring amount corresponds to the first slot and the last slot in the time interval.

[0182] In a sixth aspect, an embodiment of the present application provides an information reporting device, applied to a network device, including: a processor and a transceiver;

[0183] The processor is used to configure channel state information CSI reporting configuration;

[0184] The transceiver is used to receive a CSI report determined by a user equipment according to the channel state information CSI reporting configuration, wherein the CSI report is used to report a first reporting amount and a second reporting amount, wherein the first reporting amount is a first type of CSI, and the second reporting amount is a performance monitoring amount, and the performance monitoring amount is a performance monitoring amount of the first type of CSI.

[0185] Optionally, reportQuantity of the CSI reporting configuration is cri-RI-LI-PMI-CQI-performance monitoring quantity, or cri-RI-PMI-CQI-performance monitoring quantity.

[0186] Optionally, when the time domain type of the CSI reporting is semi-persistent, the CSI reporting is associated with a semi-persistent or periodic CSI-RS resource; or,

[0187] When the time domain type of the CSI reporting is periodic, the CSI reporting is associated with periodic CSI-RS resources.

[0188] Optionally, when the time domain type of the CSI report is semi-continuous or periodic, the CSI report is used to report the first reporting amount when it is reported for the first preset number of times, and the CSI report is used to report the first reporting amount and the second reporting amount when it is reported for other times, and the preset number of times is greater than or equal to 1.

[0189] Optionally, one time interval for CSI reporting or one time interval corresponding to a precoding matrix corresponds to one performance monitoring quantity.

[0190] Optionally, when the CSI report is used to report K performance monitoring quantities, K=T, T is the number of time intervals associated with the precoding matrix indication PMI in the CSI report, the t-th performance monitoring quantity corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0191] In the case of K<T, the K performance monitoring quantities correspond to K of the T time intervals.

[0192] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report.

[0193] Optionally, the correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0194] Optionally, the manner in which the K performance monitoring quantities correspond to K of the T time intervals includes:

[0195] Based on a bitmap of length T, by setting each bit value of the bitmap, the correspondence between the K performance monitoring quantities and K of the T time intervals is represented; or,

[0196] The correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by a combination coefficient indication occupying bits.

[0197] Optionally, when K=1, the performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and / or the performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0198] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0199] In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or

[0200] When K=2, the first performance monitoring amount corresponds to the precoding matrix corresponding to the t=0th time interval or the time interval, and the precoding matrix corresponding to the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1] or the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1], l is the starting time of the earliest time interval among the T time intervals, N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report, the second performance monitoring amount corresponds to the precoding matrix corresponding to the t=T / 2th time interval or the time interval, and the precoding matrix corresponding to the t=T-1th time interval or the time interval, where T>4.

[0201] Optionally, a time interval for CSI reporting or a precoding matrix corresponding to a time interval corresponds to M performance monitoring quantities, and the M performance monitoring quantities constitute a performance monitoring quantity group, where M>1.

[0202] Optionally, M∈(1, N], where N is the period of the semi-persistent or periodic CSI-RS resources associated with the CSI reporting.

[0203] Optionally, the M performance monitoring quantities correspond to a time interval or a precoding matrix corresponding to a time interval respectively;

[0204] Each of the M performance monitoring quantities corresponds to N / M slots, where N / M is a positive integer.

[0205] Optionally, when the CSI report is used to report K performance monitoring amount groups, K=T, T is the number of time intervals associated with the PMI in the CSI report, the t-th performance monitoring amount group corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0206] In the case of K<T, the K performance monitoring quantity groups correspond to K of the T time intervals.

[0207] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resource associated with the CSI reporting;

[0208] In the case of M=N, the mth performance monitoring quantity in the tth performance monitoring quantity group corresponds to slot l+tN+m.

[0209] Optionally, the correspondence between the K performance monitoring amount groups and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0210] Optionally, the manner in which the K performance monitoring amount groups correspond to K of the T time intervals includes:

[0211] Based on a bitmap of length T, by setting each bit value of the bitmap, it is indicated that the K performance monitoring amount groups correspond to K of the T time intervals; or,

[0212] The manner of using represents the manner in which the K performance monitoring quantity groups correspond to K of the T time intervals.

[0213] Optionally, when K=1, the performance monitoring quantity group corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, or the performance monitoring quantity group corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0214] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0215] When K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, where T>1.

[0216] Optionally, when M=1, the performance monitoring amount corresponds to the first slot or the last slot of the time interval; or,

[0217] When M=2, the performance monitoring amount corresponds to the first slot and the last slot in the time interval.

[0218] In a seventh aspect, an embodiment of the present application provides an information reporting system, including:

[0219] A user equipment is configured to report a channel state information CSI report to a network device, wherein the CSI report is used to report a first reporting amount and a second reporting amount, wherein the first reporting amount is a first type of CSI, and the second reporting amount is a performance monitoring amount, and the performance monitoring amount is a performance monitoring amount of the first type of CSI;

[0220] The network device is used to receive the CSI report determined by the user equipment according to the channel state information CSI reporting configuration, and the CSI reporting configuration is configured by the network device.

[0221] Optionally, reportQuantity of the CSI reporting configuration is cri-RI-LI-PMI-CQI-performance monitoring quantity, or cri-RI-PMI-CQI-performance monitoring quantity.

[0222] Optionally, when the time domain type of the CSI reporting is semi-persistent, the CSI reporting is associated with a semi-persistent or periodic CSI-RS resource; or,

[0223] When the time domain type of the CSI reporting is periodic, the CSI reporting is associated with periodic CSI-RS resources.

[0224] Optionally, when the time domain type of the CSI report is semi-continuous or periodic, the CSI report is used to report the first reporting amount when it is reported for the first preset number of times, and the CSI report is used to report the first reporting amount and the second reporting amount when it is reported for other times, and the preset number of times is greater than or equal to 1.

[0225] Optionally, one time interval for CSI reporting or one time interval corresponding to a precoding matrix corresponds to one performance monitoring quantity.

[0226] Optionally, when the CSI report is used to report K performance monitoring quantities, K=T, T is the number of time intervals associated with the precoding matrix indication PMI in the CSI report, the t-th performance monitoring quantity corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0227] In the case of K<T, the K performance monitoring quantities correspond to K of the T time intervals.

[0228] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report.

[0229] Optionally, the correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0230] Optionally, the manner in which the K performance monitoring quantities correspond to K of the T time intervals includes:

[0231] Based on a bitmap of length T, by setting each bit value of the bitmap, the correspondence between the K performance monitoring quantities and K of the T time intervals is represented; or,

[0232] Through an occupation The method of indicating the combination coefficient of bits represents the correspondence between the K performance monitoring quantities and K of the T time intervals.

[0233] Optionally, when K=1, the performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and / or the performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0234] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0235] In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or

[0236] When K=2, the first performance monitoring amount corresponds to the precoding matrix corresponding to the t=0th time interval or the time interval, and the precoding matrix corresponding to the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1] or the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1], l is the starting time of the earliest time interval among the T time intervals, N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report, the second performance monitoring amount corresponds to the precoding matrix corresponding to the t=T / 2th time interval or the time interval, and the precoding matrix corresponding to the t=T-1th time interval or the time interval, where T>4.

[0237] Optionally, a time interval for CSI reporting or a precoding matrix corresponding to a time interval corresponds to M performance monitoring quantities, and the M performance monitoring quantities constitute a performance monitoring quantity group, where M>1.

[0238] Optionally, M∈(1, N], where N is the period of the semi-persistent or periodic CSI-RS resources associated with the CSI reporting.

[0239] Optionally, the M performance monitoring quantities correspond to a time interval or a precoding matrix corresponding to a time interval respectively;

[0240] Each of the M performance monitoring quantities corresponds to N / M slots, where N / M is a positive integer.

[0241] Optionally, when the CSI report is used to report K performance monitoring amount groups, K=T, T is the number of time intervals associated with the PMI in the CSI report, the t-th performance monitoring amount group corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0242] In the case of K<T, the K performance monitoring quantity groups correspond to K of the T time intervals.

[0243] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resource associated with the CSI reporting;

[0244] In the case of M=N, the mth performance monitoring quantity in the tth performance monitoring quantity group corresponds to slot l+tN+m.

[0245] Optionally, the correspondence between the K performance monitoring amount groups and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0246] Optionally, the manner in which the K performance monitoring amount groups correspond to K of the T time intervals includes:

[0247] Based on a bitmap of length T, by setting each bit value of the bitmap, it is indicated that the K performance monitoring amount groups correspond to K of the T time intervals; or,

[0248] Through an occupation The method of indicating the combination coefficient of bits represents the correspondence method of the K performance monitoring quantity groups corresponding to K of the T time intervals.

[0249] Optionally, when K=1, the performance monitoring quantity group corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, or the performance monitoring quantity group corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0250] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0251] When K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, where T>1.

[0252] Optionally, when M=1, the performance monitoring amount corresponds to the first slot or the last slot of the time interval; or,

[0253] When M=2, the performance monitoring amount corresponds to the first slot and the last slot in the time interval.

[0254] In an eighth aspect, an embodiment of the present application provides a communication device, including: a transceiver, a memory, a processor, and a program stored in the memory and executable on the processor;

[0255] The processor is used to read the program in the memory to implement the above-mentioned information reporting method.

[0256] In a ninth aspect, an embodiment of the present application provides a readable storage medium for storing a program, which, when executed by a processor, implements the above-mentioned information reporting method.

[0257] In an embodiment of the present application, a user device may report a CSI report to a network device, and report the first type of CSI and the performance monitoring amount of the first type of CSI to the network device through the first reporting amount and the second reporting amount of the CSI report, so that the network device can perform performance monitoring on the first type of CSI, thereby solving the problem that the prior art cannot report CSI performance monitoring related information to the network device. The embodiment of the present application can achieve the purpose of reporting the first type of CSI and the performance monitoring amount of the first type of CSI to the network device through two reporting amounts (the first reporting amount and the second reporting amount) of a CSI report, thereby avoiding occupying other signaling resources and causing the problem of large signaling overhead. The reported CSI performance monitoring related information is specifically the first type of CSI and the performance monitoring amount of the first type of CSI, so that the reported CSI performance monitoring related information has no redundant content, and the reported information content is more reasonable and concise, thereby avoiding the problem of excessive amount of reported data caused by redundant information. Since the performance monitoring amount of the first type of CSI is directly reported, the network device can determine the performance quality of the first type of CSI relatively quickly based on the performance monitoring amount, thereby reducing the latency of the network device in monitoring the performance of the first type of CSI. BRIEF DESCRIPTION OF THE DRAWINGS

[0258] Figure 1 This is one of the flow charts of the information reporting method provided in the embodiment of the present application;

[0259] Figure 2 yes Figure 1 One of the time domain schematic diagrams of CSI reporting by the information reporting method provided in the embodiment of the present application is shown;

[0260] Figure 3 yes Figure 1 The second time domain schematic diagram of CSI reporting by the information reporting method provided in the embodiment of the present application is shown;

[0261] Figure 4 yes Figure 1 The third time domain schematic diagram of CSI reporting by the information reporting method provided in the embodiment of the present application is shown;

[0262] Figure 5 yes Figure 1 The fourth time domain schematic diagram of CSI reporting by the information reporting method provided in the embodiment of the present application is shown;

[0263] Figure 6 yes Figure 1The fifth time domain schematic diagram of CSI reporting by the information reporting method provided in the embodiment of the present application is shown;

[0264] Figure 7 yes Figure 1 The sixth time domain schematic diagram of CSI reporting by the information reporting method provided in the embodiment of the present application is shown;

[0265] Figure 8 yes Figure 1 The seventh time domain schematic diagram of CSI reporting by the information reporting method provided in the embodiment of the present application is shown;

[0266] Fig. 9 yes Figure 1 The eighth time domain schematic diagram of CSI reporting by the information reporting method provided in the embodiment of the present application is shown;

[0267] Fig.10 yes Figure 1 The ninth time domain schematic diagram of CSI reporting by the information reporting method provided in the embodiment of the present application is shown;

[0268] Fig.11 This is the second flow chart of the information reporting method provided in the embodiment of the present application;

[0269] Fig.12 It is one of the schematic diagrams of the structure of the information reporting device provided in the embodiment of the present application;

[0270] Fig.13 This is the second schematic diagram of the structure diagram of the information reporting device provided in the embodiment of the present application;

[0271] Fig.14 This is the third schematic diagram of the structure diagram of the information reporting device provided in the embodiment of the present application;

[0272] Fig.15 This is the fourth schematic diagram of the structure diagram of the information reporting device provided in the embodiment of the present application;

[0273] Fig.16 It is a schematic diagram of the information reporting system structure provided in an embodiment of the present application. DETAILED DESCRIPTION

[0274] In the embodiments of the present application, the term "and / or" describes the association relationship of the associated objects, indicating that three relationships may exist. For example, A and / or B may represent: A exists alone, A and B exist at the same time, and B exists alone. The character " / " generally indicates that the associated objects before and after are in an "or" relationship.

[0275] In the embodiments of the present application, the term "plurality" refers to two or more than two, and other quantifiers are similar.

[0276] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.

[0277] See also Figure 1 , Figure 1 is a flow chart of the information reporting method provided in the embodiment of the present application. The information reporting method can be applied to user equipment, such as Figure 1 As shown, the following steps are included:

[0278] Step 101: Report CSI to a network device, where the CSI report is used to report a first reporting amount and a second reporting amount, where the first reporting amount is a first type of CSI, and the second reporting amount is a performance monitoring amount, where the performance monitoring amount is a performance monitoring amount of the first type of CSI.

[0279] In this embodiment, the first type of CSI may specifically be: predicted CSI obtained by prediction based on the channel of the measured reference signal (CSI-RS#1); the performance monitoring amount of the first type of CSI may specifically be: the performance monitoring amount obtained by the user equipment based on the predicted CSI corresponding to the last CSI report and the measured CSI obtained based on the channel of the actual reference signal (CSI-RS#2) obtained in this measurement. It should be noted that this embodiment does not limit the number of predicted CSIs, and the user equipment may predict the CSI of one or more future moments based on the CSI measured at one or more historical moments, and obtain one or more predicted CSIs.

[0280] In this embodiment, CSI reporting can be configured through CSI reporting configuration, and the reporting amount of CSI reporting can be reportQuantity (reporting amount). The reportQuantity of the CSI reporting configuration can be set to channel state information reference signal resource indication-stream indication-layer indication-precoding matrix indication-channel quality indication-performance monitoring amount (CSI-RSResource Indicator-Rank Indicator-Layer Indicator-Precoding Matric Indicator-Channel Quality Indicator, cri-RI-LI-PMI-CQI-performance monitoring amount, cri-RI-LI-PMI-CQI-performance monitoring amount), or channel state information reference signal resource indication-stream indication-precoding matrix indication-channel quality indication-performance monitoring amount (CSI-RS Resource Indicator-Rank Indicator-Precoding Matric Indicator-Channel Quality Indicator-performance monitoring amount, cri-RI-PMI-CQI-performance monitoring amount).

[0281] In this embodiment, the time domain type of CSI reporting can be semi-persistent or periodic. When the time domain type of CSI reporting is semi-persistent, CSI reporting is associated with semi-persistent or periodic channel state information reference signal (CSI-RS) resources; or, when the time domain type of CSI reporting is periodic, CSI reporting is associated with periodic CSI-RS resources.

[0282] In this embodiment, when the time domain type of CSI reporting is semi-continuous or periodic, the CSI reporting is used to report the first reporting amount when the CSI reporting is reported for the first preset number of times, and the CSI reporting is used to report the first reporting amount and the second reporting amount when the CSI reporting is reported for the other times, and the preset number of times is greater than or equal to 1. For example: Figure 2 As shown, when CSI is reported for the first time, that is, when CSIReport#0 is reported, CSI Report#0 reports the first reporting amount (CSI#1, CSI#2 and CSI#3). When reporting other than the first time, Figure 2 As shown, when CSI Report#1 is reported, CSI Report#1 reports the first reporting amount (CSI#1, CSI#2, and CSI#3) and the second reporting amount (performance monitoring amount #1 and performance monitoring amount #2).

[0283] It should be noted that the preset number of times may be predefined or configured through Radio Resource Control (RRC). Of course, in actual use, it may also be set through other methods, which will not be described in detail here.

[0284] It should be noted that, when the CSI report is only used to report the first reporting amount, the second reporting amount can be set to empty.

[0285] In this embodiment, the method for CSI reporting a performance monitoring amount through a second reporting amount includes:

[0286] A method for reporting performance monitoring quantities is that one time interval reported by CSI or one time interval corresponding to a precoding matrix corresponds to one performance monitoring quantity. The method for reporting performance monitoring quantities is mainly used in scenarios where performance monitoring quantities do not support fine collection in the time domain.

[0287] In this embodiment, when CSI reporting is used to report K performance monitoring quantities, K=T, T is the number of time intervals associated with the precoding matrix indicator (PMI) in the CSI reporting, the t-th performance monitoring quantity corresponds to the t-th time interval or the precoding matrix corresponding to the time interval, t∈[0,T-1], the time interval is slot[l+tN,l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resource associated with the CSI reporting. For example: When K=T=4, N=4, the CSI reporting of K performance monitoring quantities can be as follows: Figure 3 When the system's uplink overhead is not limited, this method can be used to ensure sufficiently fine monitoring accuracy.

[0288] In this embodiment, when CSI reporting is used to report K performance monitoring quantities, and K<T, the K performance monitoring quantities correspond to K of T time intervals. The correspondence between the K performance monitoring quantities and the K of T time intervals can be indicated by the network device to the user device, or can be determined by the user device and reported to the network device. In the case where the uplink overhead of the system is limited, this method can be selected to ensure that the monitoring accuracy is as fine as possible while meeting the system overhead.

[0289] In this embodiment, the manner in which the K performance monitoring quantities correspond to K of the T time intervals may include two methods:

[0290] One is to set the value of each bit in the bitmap based on a bitmap of length T to indicate the correspondence between K performance monitoring quantities and K of the T time intervals. For example, the value of the i-th bit counting from the lowest bit of the bitmap is set to 1, indicating that the i-th performance monitoring quantity in the T time intervals is selected to be reported, and the value of the i-th bit counting from the lowest bit of the bitmap is set to 0, indicating that the i-th performance monitoring quantity in the T time intervals is not selected to be reported.

[0291] Another is to use an The manner in which the combination coefficients of bits are indicated represents the manner in which K performance monitoring quantities correspond to K of the T time intervals.

[0292] In this embodiment, when K=1, the performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, or the performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval. Figure 4 As shown, the performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval.

[0293] When the scheduling interval between the system's downlink control information (DCI) and the scheduled physical uplink control channel (PDSCH) is small, the system pays more attention to the CSI predicted by the user equipment at the first few moments, and can use the above-mentioned method corresponding to the t=0 time interval; or, usually, the prediction accuracy of the CSI predicted by the user equipment at the last few moments is lower than that of the first few moments. The system can determine the lower limit range of the AI ​​model prediction by monitoring the CSI at the last few moments, and can use the above-mentioned method corresponding to the t=T-1 time interval.

[0294] In this embodiment, when K=1, the performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval. Figure 5 As shown, the performance monitoring amount corresponds to the t=0 and t=3 time intervals or the precoding matrix corresponding to the time intervals.

[0295] When the uplink feedback overhead of the system is limited, but the system wants to monitor the predicted CSI performance at multiple times, this method can be selected. The user equipment can respectively calculate a total of two performance monitoring quantities corresponding to the above two time intervals, and then calculate the statistics of these two performance monitoring quantities, such as the average value, maximum value, minimum value, standard deviation, variance, etc., and use this statistic as the performance monitoring quantity that the user equipment needs to report.

[0296] In this embodiment, when K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1. For example: Figure 6 As shown, T=4, the first performance monitoring amount corresponds to t=0 time intervals or the precoding matrix corresponding to the time intervals, and the second performance monitoring amount corresponds to t=3 time intervals or the precoding matrix corresponding to the time intervals.

[0297] In this embodiment, when K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, where T>1. For example: Figure 7 As shown, T=4, the first performance monitoring amount corresponds to t=0 time intervals or the precoding matrix corresponding to the time intervals, and the second performance monitoring amount corresponds to t=2 time intervals or the precoding matrix corresponding to the time intervals.

[0298] In this embodiment, when K=2, the first performance monitoring amount corresponds to the precoding matrix corresponding to the t=0th time interval or the time interval, and the precoding matrix corresponding to the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1] or the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1], and the second performance monitoring amount corresponds to the precoding matrix corresponding to the t=T / 2th time interval or the time interval, and the precoding matrix corresponding to the t=T-1th time interval or the time interval, where T>4. For example: Figure 8 As shown, T=4, the first performance monitoring amount corresponds to the time intervals t=0 and t=1 or the precoding matrix corresponding to the time intervals, and the second performance monitoring amount corresponds to the time intervals t=2 and t=3 or the precoding matrix corresponding to the time intervals.

[0299] It should be noted that when a performance monitoring quantity is associated with multiple time intervals, the user equipment can calculate multiple performance monitoring quantities based on the first type of CSI of each time interval, take statistics of the above multiple performance monitoring quantities, such as the average value, etc., and use the statistics as the performance monitoring quantity corresponding to the above multiple time intervals.

[0300] Another method for reporting performance monitoring quantities is that a time interval reported by CSI or a precoding matrix corresponding to a time interval corresponds to M performance monitoring quantities, and the M performance monitoring quantities constitute a performance monitoring quantity group, where M>1. This method for reporting performance monitoring quantities is mainly used in scenarios where performance monitoring quantities support fine acquisition in the time domain.

[0301] In this embodiment, M∈(1, N], where N is the period of the semi-persistent or periodic CSI-RS resources associated with CSI reporting.

[0302] In this embodiment, the M performance monitoring quantities correspond to a time interval or a precoding matrix corresponding to a time interval respectively; each of the M performance monitoring quantities corresponds to N / M slots, where N / M is a positive integer.

[0303] In this embodiment, when CSI reporting is used to report K performance monitoring quantity groups, K=T, T is the number of time intervals associated with PMI in CSI reporting, the t-th performance monitoring quantity group corresponds to the t-th time interval or the precoding matrix corresponding to the time interval. t∈[0,T-1], the time interval is slot[l+tN,l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resource associated with the CSI report. In the case of M=N, the m-th performance monitoring quantity in the t-th performance monitoring quantity group corresponds to slot l+tN+m.

[0304] In this embodiment, when CSI reporting is used to report K performance monitoring amount groups, and K<T, the K performance monitoring amount groups correspond to K of the T time intervals. The correspondence of the K performance monitoring amount groups to the K of the T time intervals may be indicated by the network device to the user equipment, or may be determined by the user equipment and reported to the network device.

[0305] In this embodiment, the manner in which the K performance monitoring quantities correspond to K of the T time intervals may include two methods:

[0306] One is to set the value of each bit in a bitmap with a length of T to indicate the correspondence between K performance monitoring quantities and K of the T time intervals. For example, the value of the i-th bit counting from the lowest bit of the bitmap is set to 1, indicating that the i-th performance monitoring quantity in the T time intervals is selected for reporting, and the value of the i-th bit counting from the lowest bit of the bitmap is set to 0, indicating that the i-th performance monitoring quantity in the T time intervals is not selected for reporting.

[0307] Another is to use an The manner in which the combination coefficients of bits are indicated represents the manner in which K performance monitoring quantities correspond to K of the T time intervals.

[0308] In this embodiment, when K=1, the performance monitoring amount group corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, or the performance monitoring amount group corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0309] In this embodiment, when K=1 and M=1, the performance monitoring amount corresponds to the first slot or the last slot of the t=0th or t=T-1th time interval; or, when K=1 and M=2, the performance monitoring amount corresponds to the first slot and the last slot in the t=0th or t=T-1th time interval, for example: Fig. 9 As shown, when K=1 and M=2, the performance monitoring amount corresponds to the first slot and the last slot of the t=0th time interval.

[0310] In this embodiment, when K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1.

[0311] In this embodiment, when K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, where T>1.

[0312] In this embodiment, in this embodiment, when K=2 and M=1, the performance monitoring amount corresponds to the first slot or the last slot of the t=0th time interval, and the first slot or the last slot of the t=T-1th time interval; or, when K=2 and M=1, the performance monitoring amount corresponds to the first slot or the last slot of the t=0th time interval, and the first slot or the last slot of the t=T / 2th time interval, for example: Fig.10 As shown, when K=2 and M=1, the performance monitoring amount corresponds to the first slot of the t=0th time interval and the first slot of the t=2th time interval.

[0313] In an embodiment of the present application, a user device may report a CSI report to a network device, and report the first type of CSI and the performance monitoring amount of the first type of CSI to the network device through the first reporting amount and the second reporting amount of the CSI report, so that the network device can perform performance monitoring on the first type of CSI, thereby solving the problem that the prior art cannot report CSI performance monitoring related information to the network device. The embodiment of the present application can achieve the purpose of reporting the first type of CSI and the performance monitoring amount of the first type of CSI to the network device through two reporting amounts (the first reporting amount and the second reporting amount) of a CSI report, thereby avoiding occupying other signaling resources and causing the problem of large signaling overhead. The reported CSI performance monitoring related information is specifically the first type of CSI and the performance monitoring amount of the first type of CSI, so that the reported CSI performance monitoring related information has no redundant content, and the reported information content is more reasonable and concise, thereby avoiding the problem of excessive amount of reported data caused by redundant information. Since the performance monitoring amount of the first type of CSI is directly reported, the network device can determine the performance quality of the first type of CSI relatively quickly based on the performance monitoring amount, thereby reducing the latency of the network device in monitoring the performance of the first type of CSI.

[0314] See also Fig.11 , Fig.11 is a flow chart of the information reporting method provided in the embodiment of the present application. The information reporting method can be applied to network devices, such as Fig.11 As shown, the following steps are included:

[0315] Step 1101, receive a CSI report determined by a user equipment according to a channel state information CSI reporting configuration, wherein the CSI reporting configuration is configured by the network device, and the CSI reporting is used to report a first reporting amount and a second reporting amount, wherein the first reporting amount is a first type of CSI, and the second reporting amount is a performance monitoring amount, and the performance monitoring amount is a performance monitoring amount of the first type of CSI.

[0316] Optionally, reportQuantity of the CSI reporting configuration is cri-RI-LI-PMI-CQI-performance monitoring quantity, or cri-RI-PMI-CQI-performance monitoring quantity.

[0317] Optionally, when the time domain type of the CSI reporting is semi-persistent, the CSI reporting is associated with a semi-persistent or periodic CSI-RS resource; or,

[0318] When the time domain type of the CSI reporting is periodic, the CSI reporting is associated with periodic CSI-RS resources.

[0319] Optionally, when the time domain type of the CSI report is semi-continuous or periodic, the CSI report is used to report the first reporting amount when it is reported for the first preset number of times, and the CSI report is used to report the first reporting amount and the second reporting amount when it is reported for other times, and the preset number of times is greater than or equal to 1.

[0320] Optionally, one time interval for CSI reporting or one time interval corresponding to a precoding matrix corresponds to one performance monitoring quantity.

[0321] Optionally, when the CSI report is used to report K performance monitoring quantities, K=T, T is the number of time intervals associated with the precoding matrix indication PMI in the CSI report, the t-th performance monitoring quantity corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0322] In the case of K<T, the K performance monitoring quantities correspond to K of the T time intervals.

[0323] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report.

[0324] Optionally, the correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0325] Optionally, the manner in which the K performance monitoring quantities correspond to K of the T time intervals includes:

[0326] Based on a bitmap of length T, by setting each bit value of the bitmap, the correspondence between the K performance monitoring quantities and K of the T time intervals is represented; or,

[0327] The correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by a combination coefficient indication occupying bits.

[0328] Optionally, when K=1, the performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and / or the performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0329] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0330] In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or

[0331] When K=2, the first performance monitoring amount corresponds to the precoding matrix corresponding to the t=0th time interval or the time interval, and the precoding matrix corresponding to the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1] or the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1], l is the starting time of the earliest time interval among the T time intervals, N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report, the second performance monitoring amount corresponds to the precoding matrix corresponding to the t=T / 2th time interval or the time interval, and the precoding matrix corresponding to the t=T-1th time interval or the time interval, where T>4.

[0332] Optionally, a time interval for CSI reporting or a precoding matrix corresponding to a time interval corresponds to M performance monitoring quantities, and the M performance monitoring quantities constitute a performance monitoring quantity group, where M>1.

[0333] Optionally, M∈(1, N], where N is the period of the semi-persistent or periodic CSI-RS resources associated with the CSI reporting.

[0334] Optionally, the M performance monitoring quantities correspond to a time interval or a precoding matrix corresponding to a time interval respectively;

[0335] Each of the M performance monitoring quantities corresponds to N / M slots, where N / M is a positive integer.

[0336] Optionally, when the CSI report is used to report K performance monitoring amount groups, K=T, T is the number of time intervals associated with the PMI in the CSI report, the t-th performance monitoring amount group corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0337] In the case of K<T, the K performance monitoring quantity groups correspond to K of the T time intervals.

[0338] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resource associated with the CSI reporting;

[0339] In the case of M=N, the mth performance monitoring quantity in the tth performance monitoring quantity group corresponds to slot l+tN+m.

[0340] Optionally, the correspondence between the K performance monitoring amount groups and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0341] Optionally, the manner in which the K performance monitoring amount groups correspond to K of the T time intervals includes:

[0342] Based on a bitmap of length T, by setting each bit value of the bitmap, it is indicated that the K performance monitoring amount groups correspond to K of the T time intervals; or,

[0343] The manner of using represents the manner in which the K performance monitoring quantity groups correspond to K of the T time intervals.

[0344] Optionally, when K=1, the performance monitoring quantity group corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, or the performance monitoring quantity group corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0345] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0346] When K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, where T>1.

[0347] Optionally, when M=1, the performance monitoring amount corresponds to the first slot or the last slot of the time interval; or,

[0348] When M=2, the performance monitoring amount corresponds to the first slot and the last slot in the time interval.

[0349] The information reporting method provided in this embodiment can be specifically implemented as shown in Figure 1-10 The embodiments shown in the figure are described in detail and will not be described again here.

[0350] In an embodiment of the present application, a user device may report a CSI report to a network device, and report the first type of CSI and the performance monitoring amount of the first type of CSI to the network device through the first reporting amount and the second reporting amount of the CSI report, so that the network device can perform performance monitoring on the first type of CSI, thereby solving the problem that the prior art cannot report CSI performance monitoring related information to the network device. The embodiment of the present application can achieve the purpose of reporting the first type of CSI and the performance monitoring amount of the first type of CSI to the network device through two reporting amounts (the first reporting amount and the second reporting amount) of a CSI report, thereby avoiding occupying other signaling resources and causing the problem of large signaling overhead. The reported CSI performance monitoring related information is specifically the first type of CSI and the performance monitoring amount of the first type of CSI, so that the reported CSI performance monitoring related information has no redundant content, and the reported information content is more reasonable and concise, thereby avoiding the problem of excessive amount of reported data caused by redundant information. Since the performance monitoring amount of the first type of CSI is directly reported, the network device can determine the performance quality of the first type of CSI relatively quickly based on the performance monitoring amount, thereby reducing the latency of the network device in monitoring the performance of the first type of CSI.

[0351] See also Fig.12 , Fig.12 1 is a schematic diagram of the structure of an information reporting device provided in an embodiment of the present application. The information reporting device 1200 is applied to a user equipment, including:

[0352] The first module 1201 is used to report channel state information CSI to the network device, and the CSI report is used to report a first reporting amount and a second reporting amount. The first reporting amount is a first type of CSI, and the second reporting amount is a performance monitoring amount. The performance monitoring amount is the performance monitoring amount of the first type of CSI.

[0353] Optionally, reportQuantity of the CSI reporting configuration is cri-RI-LI-PMI-CQI-performance monitoring quantity, or cri-RI-PMI-CQI-performance monitoring quantity.

[0354] Optionally, when the time domain type of the CSI reporting is semi-persistent, the CSI reporting is associated with a semi-persistent or periodic CSI-RS resource; or,

[0355] When the time domain type of the CSI reporting is periodic, the CSI reporting is associated with periodic CSI-RS resources.

[0356] Optionally, when the time domain type of the CSI report is semi-continuous or periodic, the CSI report is used to report the first reporting amount when it is reported for the first preset number of times, and the CSI report is used to report the first reporting amount and the second reporting amount when it is reported for other times, and the preset number of times is greater than or equal to 1.

[0357] Optionally, one time interval for CSI reporting or one time interval corresponding to a precoding matrix corresponds to one performance monitoring quantity.

[0358] Optionally, when the CSI report is used to report K performance monitoring quantities, K=T, T is the number of time intervals associated with the precoding matrix indication PMI in the CSI report, the t-th performance monitoring quantity corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0359] In the case of K<T, the K performance monitoring quantities correspond to K of the T time intervals.

[0360] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report.

[0361] Optionally, the correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0362] Optionally, the manner in which the K performance monitoring quantities correspond to K of the T time intervals includes:

[0363] Based on a bitmap of length T, by setting each bit value of the bitmap, the correspondence between the K performance monitoring quantities and K of the T time intervals is represented; or,

[0364] Through an occupation The method of indicating the combination coefficient of bits represents the correspondence between the K performance monitoring quantities and K of the T time intervals.

[0365] Optionally, when K=1, the performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and / or the performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0366] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0367] In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or

[0368] When K=2, the first performance monitoring amount corresponds to the precoding matrix corresponding to the t=0th time interval or the time interval, and the precoding matrix corresponding to the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1] or the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1], l is the starting time of the earliest time interval among the T time intervals, N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report, the second performance monitoring amount corresponds to the precoding matrix corresponding to the t=T / 2th time interval or the time interval, and the precoding matrix corresponding to the t=T-1th time interval or the time interval, where T>4.

[0369] Optionally, a time interval for CSI reporting or a precoding matrix corresponding to a time interval corresponds to M performance monitoring quantities, and the M performance monitoring quantities constitute a performance monitoring quantity group, where M>1.

[0370] Optionally, M∈(1, N], where N is the period of the semi-persistent or periodic CSI-RS resources associated with the CSI reporting.

[0371] Optionally, the M performance monitoring quantities correspond to a time interval or a precoding matrix corresponding to a time interval respectively;

[0372] Each of the M performance monitoring quantities corresponds to N / M slots, where N / M is a positive integer.

[0373] Optionally, when the CSI report is used to report K performance monitoring amount groups, K=T, T is the number of time intervals associated with the PMI in the CSI report, the t-th performance monitoring amount group corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0374] In the case of K<T, the K performance monitoring quantity groups correspond to K of the T time intervals.

[0375] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resource associated with the CSI reporting;

[0376] In the case of M=N, the mth performance monitoring quantity in the tth performance monitoring quantity group corresponds to slot l+tN+m.

[0377] Optionally, the correspondence between the K performance monitoring amount groups and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0378] Optionally, the manner in which the K performance monitoring amount groups correspond to K of the T time intervals includes:

[0379] Based on a bitmap of length T, by setting each bit value of the bitmap, it is indicated that the K performance monitoring amount groups correspond to K of the T time intervals; or,

[0380] Through an occupation The method of indicating the combination coefficient of bits represents the correspondence method of the K performance monitoring quantity groups corresponding to K of the T time intervals.

[0381] Optionally, when K=1, the performance monitoring quantity group corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, or the performance monitoring quantity group corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0382] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0383] When K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, where T>1.

[0384] Optionally, when M=1, the performance monitoring amount corresponds to the first slot or the last slot of the time interval; or,

[0385] When M=2, the performance monitoring amount corresponds to the first slot and the last slot in the time interval.

[0386] In an embodiment of the present application, a user device may report a CSI report to a network device, and report the first type of CSI and the performance monitoring amount of the first type of CSI to the network device through the first reporting amount and the second reporting amount of the CSI report, so that the network device can perform performance monitoring on the first type of CSI, thereby solving the problem that the prior art cannot report CSI performance monitoring related information to the network device. The embodiment of the present application can achieve the purpose of reporting the first type of CSI and the performance monitoring amount of the first type of CSI to the network device through two reporting amounts (the first reporting amount and the second reporting amount) of a CSI report, thereby avoiding occupying other signaling resources and causing the problem of large signaling overhead. The reported CSI performance monitoring related information is specifically the first type of CSI and the performance monitoring amount of the first type of CSI, so that the reported CSI performance monitoring related information has no redundant content, and the reported information content is more reasonable and concise, thereby avoiding the problem of excessive amount of reported data caused by redundant information. Since the performance monitoring amount of the first type of CSI is directly reported, the network device can determine the performance quality of the first type of CSI relatively quickly based on the performance monitoring amount, thereby reducing the latency of the network device in monitoring the performance of the first type of CSI.

[0387] See also Fig.13 , Fig.131 is a schematic diagram of the structure of an information reporting device provided in an embodiment of the present application. The information reporting device 1300 is applied to a network device, including:

[0388] The first module 1301 is used to receive a CSI report determined by a user equipment according to a channel state information CSI reporting configuration, wherein the CSI reporting configuration is pre-configured by the network device, and the CSI report is used to report a first reporting amount and a second reporting amount, wherein the first reporting amount is a first type of CSI, and the second reporting amount is a performance monitoring amount, and the performance monitoring amount is a performance monitoring amount of the first type of CSI.

[0389] Optionally, reportQuantity of the CSI reporting configuration is cri-RI-LI-PMI-CQI-performance monitoring quantity, or cri-RI-PMI-CQI-performance monitoring quantity.

[0390] Optionally, when the time domain type of the CSI reporting is semi-persistent, the CSI reporting is associated with a semi-persistent or periodic CSI-RS resource; or,

[0391] When the time domain type of the CSI reporting is periodic, the CSI reporting is associated with periodic CSI-RS resources.

[0392] Optionally, when the time domain type of the CSI report is semi-continuous or periodic, the CSI report is used to report the first reporting amount when it is reported for the first preset number of times, and the CSI report is used to report the first reporting amount and the second reporting amount when it is reported for other times, and the preset number of times is greater than or equal to 1.

[0393] Optionally, one time interval for CSI reporting or one time interval corresponding to a precoding matrix corresponds to one performance monitoring quantity.

[0394] Optionally, when the CSI report is used to report K performance monitoring quantities, K=T, T is the number of time intervals associated with the precoding matrix indication PMI in the CSI report, the t-th performance monitoring quantity corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0395] In the case of K<T, the K performance monitoring quantities correspond to K of the T time intervals.

[0396] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report.

[0397] Optionally, the correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0398] Optionally, the manner in which the K performance monitoring quantities correspond to K of the T time intervals includes:

[0399] Based on a bitmap of length T, by setting each bit value of the bitmap, the correspondence between the K performance monitoring quantities and K of the T time intervals is represented; or,

[0400] The correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by a combination coefficient indication occupying bits.

[0401] Optionally, when K=1, the performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and / or the performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0402] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0403] In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or

[0404] When K=2, the first performance monitoring amount corresponds to the precoding matrix corresponding to the t=0th time interval or the time interval, and the precoding matrix corresponding to the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1] or the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1], l is the starting time of the earliest time interval among the T time intervals, N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report, the second performance monitoring amount corresponds to the precoding matrix corresponding to the t=T / 2th time interval or the time interval, and the precoding matrix corresponding to the t=T-1th time interval or the time interval, where T>4.

[0405] Optionally, a time interval for CSI reporting or a precoding matrix corresponding to a time interval corresponds to M performance monitoring quantities, and the M performance monitoring quantities constitute a performance monitoring quantity group, where M>1.

[0406] Optionally, M∈(1, N], where N is the period of the semi-persistent or periodic CSI-RS resources associated with the CSI reporting.

[0407] Optionally, the M performance monitoring quantities correspond to a time interval or a precoding matrix corresponding to a time interval respectively;

[0408] Each of the M performance monitoring quantities corresponds to N / M slots, where N / M is a positive integer.

[0409] Optionally, when the CSI report is used to report K performance monitoring amount groups, K=T, T is the number of time intervals associated with the PMI in the CSI report, the t-th performance monitoring amount group corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0410] In the case of K<T, the K performance monitoring quantity groups correspond to K of the T time intervals.

[0411] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resource associated with the CSI reporting;

[0412] In the case of M=N, the mth performance monitoring quantity in the tth performance monitoring quantity group corresponds to slot l+tN+m.

[0413] Optionally, the correspondence between the K performance monitoring amount groups and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0414] Optionally, the manner in which the K performance monitoring amount groups correspond to K of the T time intervals includes:

[0415] Based on a bitmap of length T, by setting each bit value of the bitmap, it is indicated that the K performance monitoring amount groups correspond to K of the T time intervals; or,

[0416] The manner of using represents the manner in which the K performance monitoring quantity groups correspond to K of the T time intervals.

[0417] Optionally, when K=1, the performance monitoring quantity group corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, or the performance monitoring quantity group corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0418] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0419] When K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, where T>1.

[0420] Optionally, when M=1, the performance monitoring amount corresponds to the first slot or the last slot of the time interval; or,

[0421] When M=2, the performance monitoring amount corresponds to the first slot and the last slot in the time interval.

[0422] In an embodiment of the present application, a user device may report a CSI report to a network device, and report the first type of CSI and the performance monitoring amount of the first type of CSI to the network device through the first reporting amount and the second reporting amount of the CSI report, so that the network device can perform performance monitoring on the first type of CSI, thereby solving the problem that the prior art cannot report CSI performance monitoring related information to the network device. The embodiment of the present application can achieve the purpose of reporting the first type of CSI and the performance monitoring amount of the first type of CSI to the network device through two reporting amounts (the first reporting amount and the second reporting amount) of a CSI report, thereby avoiding occupying other signaling resources and causing the problem of large signaling overhead. The reported CSI performance monitoring related information is specifically the first type of CSI and the performance monitoring amount of the first type of CSI, so that the reported CSI performance monitoring related information has no redundant content, and the reported information content is more reasonable and concise, thereby avoiding the problem of excessive amount of reported data caused by redundant information. Since the performance monitoring amount of the first type of CSI is directly reported, the network device can determine the performance quality of the first type of CSI relatively quickly based on the performance monitoring amount, thereby reducing the latency of the network device in monitoring the performance of the first type of CSI.

[0423] See also Fig.14 , Fig.1414 is a structural diagram of an information reporting device provided in an embodiment of the present application. The information reporting device is applied to a user equipment. The device includes: a processor 1401 and a transceiver 1402;

[0424] The processor 1401 is used to configure CSI reporting;

[0425] The transceiver 1402 is used to report the CSI on the network device, and the CSI reporting is used to report a first reporting amount and a second reporting amount, the first reporting amount is a first type of CSI, the second reporting amount is a performance monitoring amount, and the performance monitoring amount is a performance monitoring amount of the first type of CSI.

[0426] Optionally, reportQuantity of the CSI reporting configuration is cri-RI-LI-PMI-CQI-performance monitoring quantity, or cri-RI-PMI-CQI-performance monitoring quantity.

[0427] Optionally, when the time domain type of the CSI reporting is semi-persistent, the CSI reporting is associated with a semi-persistent or periodic CSI-RS resource; or,

[0428] When the time domain type of the CSI reporting is periodic, the CSI reporting is associated with periodic CSI-RS resources.

[0429] Optionally, when the time domain type of the CSI report is semi-continuous or periodic, the CSI report is used to report the first reporting amount when it is reported for the first preset number of times, and the CSI report is used to report the first reporting amount and the second reporting amount when it is reported for other times, and the preset number of times is greater than or equal to 1.

[0430] Optionally, one time interval for CSI reporting or one time interval corresponding to a precoding matrix corresponds to one performance monitoring quantity.

[0431] Optionally, when the CSI report is used to report K performance monitoring quantities, K=T, T is the number of time intervals associated with the precoding matrix indication PMI in the CSI report, the t-th performance monitoring quantity corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0432] In the case of K<T, the K performance monitoring quantities correspond to K of the T time intervals.

[0433] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report.

[0434] Optionally, the correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0435] Optionally, the manner in which the K performance monitoring quantities correspond to K of the T time intervals includes:

[0436] Based on a bitmap of length T, by setting each bit value of the bitmap, the correspondence between the K performance monitoring quantities and K of the T time intervals is represented; or,

[0437] Through an occupation The method of indicating the combination coefficient of bits represents the correspondence between the K performance monitoring quantities and K of the T time intervals.

[0438] Optionally, when K=1, the performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and / or the performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0439] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0440] In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or

[0441] When K=2, the first performance monitoring amount corresponds to the precoding matrix corresponding to the t=0th time interval or the time interval, and the precoding matrix corresponding to the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1] or the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1], l is the starting time of the earliest time interval among the T time intervals, N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report, the second performance monitoring amount corresponds to the precoding matrix corresponding to the t=T / 2th time interval or the time interval, and the precoding matrix corresponding to the t=T-1th time interval or the time interval, where T>4.

[0442] Optionally, a time interval for CSI reporting or a precoding matrix corresponding to a time interval corresponds to M performance monitoring quantities, and the M performance monitoring quantities constitute a performance monitoring quantity group, where M>1.

[0443] Optionally, M∈(1, N], where N is the period of the semi-persistent or periodic CSI-RS resources associated with the CSI reporting.

[0444] Optionally, the M performance monitoring quantities correspond to a time interval or a precoding matrix corresponding to a time interval respectively;

[0445] Each of the M performance monitoring quantities corresponds to N / M slots, where N / M is a positive integer.

[0446] Optionally, when the CSI report is used to report K performance monitoring amount groups, K=T, T is the number of time intervals associated with the PMI in the CSI report, the t-th performance monitoring amount group corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0447] In the case of K<T, the K performance monitoring quantity groups correspond to K of the T time intervals.

[0448] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resource associated with the CSI reporting;

[0449] In the case of M=N, the mth performance monitoring quantity in the tth performance monitoring quantity group corresponds to slot l+tN+m.

[0450] Optionally, the correspondence between the K performance monitoring amount groups and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0451] Optionally, the manner in which the K performance monitoring amount groups correspond to K of the T time intervals includes:

[0452] Based on a bitmap of length T, by setting each bit value of the bitmap, it is indicated that the K performance monitoring amount groups correspond to K of the T time intervals; or,

[0453] Through an occupation The method of indicating the combination coefficient of bits represents the correspondence method of the K performance monitoring quantity groups corresponding to K of the T time intervals.

[0454] Optionally, when K=1, the performance monitoring quantity group corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, or the performance monitoring quantity group corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0455] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0456] When K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, where T>1.

[0457] Optionally, when M=1, the performance monitoring amount corresponds to the first slot or the last slot of the time interval; or,

[0458] When M=2, the performance monitoring amount corresponds to the first slot and the last slot in the time interval.

[0459] In an embodiment of the present application, a user device may report a CSI report to a network device, and report the first type of CSI and the performance monitoring amount of the first type of CSI to the network device through the first reporting amount and the second reporting amount of the CSI report, so that the network device can perform performance monitoring on the first type of CSI, thereby solving the problem that the prior art cannot report CSI performance monitoring related information to the network device. The embodiment of the present application can achieve the purpose of reporting the first type of CSI and the performance monitoring amount of the first type of CSI to the network device through two reporting amounts (the first reporting amount and the second reporting amount) of a CSI report, thereby avoiding occupying other signaling resources and causing the problem of large signaling overhead. The reported CSI performance monitoring related information is specifically the first type of CSI and the performance monitoring amount of the first type of CSI, so that the reported CSI performance monitoring related information has no redundant content, and the reported information content is more reasonable and concise, thereby avoiding the problem of excessive amount of reported data caused by redundant information. Since the performance monitoring amount of the first type of CSI is directly reported, the network device can determine the performance quality of the first type of CSI relatively quickly based on the performance monitoring amount, thereby reducing the latency of the network device in monitoring the performance of the first type of CSI.

[0460] See also Fig.15 , Fig.15 15 is a structural diagram of an information reporting device provided in an embodiment of the present application, the information reporting device is applied to a network device, and the device includes: a processor 1501 and a transceiver 1502;

[0461] The processor 1501 is used to configure channel state information CSI reporting configuration;

[0462] The transceiver 1502 is used to receive a CSI report determined by a user equipment according to the channel state information CSI reporting configuration, wherein the CSI report is used to report a first reporting amount and a second reporting amount, wherein the first reporting amount is a first type of CSI, and the second reporting amount is a performance monitoring amount, and the performance monitoring amount is a performance monitoring amount of the first type of CSI.

[0463] Optionally, reportQuantity of the CSI reporting configuration is cri-RI-LI-PMI-CQI-performance monitoring quantity, or cri-RI-PMI-CQI-performance monitoring quantity.

[0464] Optionally, when the time domain type of the CSI reporting is semi-persistent, the CSI reporting is associated with a semi-persistent or periodic CSI-RS resource; or,

[0465] When the time domain type of the CSI reporting is periodic, the CSI reporting is associated with periodic CSI-RS resources.

[0466] Optionally, when the time domain type of the CSI report is semi-continuous or periodic, the CSI report is used to report the first reporting amount when it is reported for the first preset number of times, and the CSI report is used to report the first reporting amount and the second reporting amount when it is reported for other times, and the preset number of times is greater than or equal to 1.

[0467] Optionally, one time interval for CSI reporting or one time interval corresponding to a precoding matrix corresponds to one performance monitoring quantity.

[0468] Optionally, when the CSI report is used to report K performance monitoring quantities, K=T, T is the number of time intervals associated with the precoding matrix indication PMI in the CSI report, the t-th performance monitoring quantity corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0469] In the case of K<T, the K performance monitoring quantities correspond to K of the T time intervals.

[0470] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report.

[0471] Optionally, the correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0472] Optionally, the manner in which the K performance monitoring quantities correspond to K of the T time intervals includes:

[0473] Based on a bitmap of length T, by setting each bit value of the bitmap, the correspondence between the K performance monitoring quantities and K of the T time intervals is represented; or,

[0474] The correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by a combination coefficient indication occupying bits.

[0475] Optionally, when K=1, the performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and / or the performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0476] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0477] In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or

[0478] When K=2, the first performance monitoring amount corresponds to the precoding matrix corresponding to the t=0th time interval or the time interval, and the precoding matrix corresponding to the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1] or the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1], l is the starting time of the earliest time interval among the T time intervals, N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report, the second performance monitoring amount corresponds to the precoding matrix corresponding to the t=T / 2th time interval or the time interval, and the precoding matrix corresponding to the t=T-1th time interval or the time interval, where T>4.

[0479] Optionally, a time interval for CSI reporting or a precoding matrix corresponding to a time interval corresponds to M performance monitoring quantities, and the M performance monitoring quantities constitute a performance monitoring quantity group, where M>1.

[0480] Optionally, M∈(1, N], where N is the period of the semi-persistent or periodic CSI-RS resources associated with the CSI reporting.

[0481] Optionally, the M performance monitoring quantities correspond to a time interval or a precoding matrix corresponding to a time interval respectively;

[0482] Each of the M performance monitoring quantities corresponds to N / M slots, where N / M is a positive integer.

[0483] Optionally, when the CSI report is used to report K performance monitoring amount groups, K=T, T is the number of time intervals associated with the PMI in the CSI report, the t-th performance monitoring amount group corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0484] In the case of K<T, the K performance monitoring quantity groups correspond to K of the T time intervals.

[0485] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resource associated with the CSI reporting;

[0486] In the case of M=N, the mth performance monitoring quantity in the tth performance monitoring quantity group corresponds to slot l+tN+m.

[0487] Optionally, the correspondence between the K performance monitoring amount groups and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0488] Optionally, the manner in which the K performance monitoring amount groups correspond to K of the T time intervals includes:

[0489] Based on a bitmap of length T, by setting each bit value of the bitmap, it is indicated that the K performance monitoring amount groups correspond to K of the T time intervals; or,

[0490] The manner of using represents the manner in which the K performance monitoring quantity groups correspond to K of the T time intervals.

[0491] Optionally, when K=1, the performance monitoring quantity group corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, or the performance monitoring quantity group corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0492] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0493] When K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, where T>1.

[0494] Optionally, when M=1, the performance monitoring amount corresponds to the first slot or the last slot of the time interval; or,

[0495] When M=2, the performance monitoring amount corresponds to the first slot and the last slot in the time interval.

[0496] In an embodiment of the present application, a user device may report a CSI report to a network device, and report the first type of CSI and the performance monitoring amount of the first type of CSI to the network device through the first reporting amount and the second reporting amount of the CSI report, so that the network device can perform performance monitoring on the first type of CSI, thereby solving the problem that the prior art cannot report CSI performance monitoring related information to the network device. The embodiment of the present application can achieve the purpose of reporting the first type of CSI and the performance monitoring amount of the first type of CSI to the network device through two reporting amounts (the first reporting amount and the second reporting amount) of a CSI report, thereby avoiding occupying other signaling resources and causing the problem of large signaling overhead. The reported CSI performance monitoring related information is specifically the first type of CSI and the performance monitoring amount of the first type of CSI, so that the reported CSI performance monitoring related information has no redundant content, and the reported information content is more reasonable and concise, thereby avoiding the problem of excessive amount of reported data caused by redundant information. Since the performance monitoring amount of the first type of CSI is directly reported, the network device can determine the performance quality of the first type of CSI relatively quickly based on the performance monitoring amount, thereby reducing the latency of the network device in monitoring the performance of the first type of CSI.

[0497] See also Fig.16 , Fig.16 : is a structural diagram of an information reporting system provided in an embodiment of the present application, the information reporting system comprising:

[0498] The user equipment 1601 is configured to report a channel state information CSI report to the network device 1602, where the CSI report is used to report a first reporting amount and a second reporting amount, where the first reporting amount is a first type of CSI, and the second reporting amount is a performance monitoring amount, where the performance monitoring amount is a performance monitoring amount of the first type of CSI;

[0499] The network device 1602 is used to receive the CSI report determined by the user equipment 1601 according to the channel state information CSI reporting configuration, and the CSI reporting configuration is configured by the network device.

[0500] Optionally, reportQuantity of the CSI reporting configuration is cri-RI-LI-PMI-CQI-performance monitoring quantity, or cri-RI-PMI-CQI-performance monitoring quantity.

[0501] Optionally, when the time domain type of the CSI reporting is semi-persistent, the CSI reporting is associated with a semi-persistent or periodic CSI-RS resource; or,

[0502] When the time domain type of the CSI reporting is periodic, the CSI reporting is associated with periodic CSI-RS resources.

[0503] Optionally, when the time domain type of the CSI report is semi-continuous or periodic, the CSI report is used to report the first reporting amount when it is reported for the first preset number of times, and the CSI report is used to report the first reporting amount and the second reporting amount when it is reported for other times, and the preset number of times is greater than or equal to 1.

[0504] Optionally, one time interval for CSI reporting or one time interval corresponding to a precoding matrix corresponds to one performance monitoring quantity.

[0505] Optionally, when the CSI report is used to report K performance monitoring quantities, K=T, T is the number of time intervals associated with the precoding matrix indication PMI in the CSI report, the t-th performance monitoring quantity corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0506] In the case of K<T, the K performance monitoring quantities correspond to K of the T time intervals.

[0507] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report.

[0508] Optionally, the correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0509] Optionally, the manner in which the K performance monitoring quantities correspond to K of the T time intervals includes:

[0510] Based on a bitmap of length T, by setting each bit value of the bitmap, the correspondence between the K performance monitoring quantities and K of the T time intervals is represented; or,

[0511] Through an occupation The method of indicating the combination coefficient of bits represents the correspondence between the K performance monitoring quantities and K of the T time intervals.

[0512] Optionally, when K=1, the performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and / or the performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0513] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0514] In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or

[0515] When K=2, the first performance monitoring amount corresponds to the precoding matrix corresponding to the t=0th time interval or the time interval, and the precoding matrix corresponding to the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1] or the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1], l is the starting time of the earliest time interval among the T time intervals, N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report, the second performance monitoring amount corresponds to the precoding matrix corresponding to the t=T / 2th time interval or the time interval, and the precoding matrix corresponding to the t=T-1th time interval or the time interval, where T>4.

[0516] Optionally, a time interval for CSI reporting or a precoding matrix corresponding to a time interval corresponds to M performance monitoring quantities, and the M performance monitoring quantities constitute a performance monitoring quantity group, where M>1.

[0517] Optionally, M∈(1, N], where N is the period of the semi-persistent or periodic CSI-RS resources associated with the CSI reporting.

[0518] Optionally, the M performance monitoring quantities correspond to a time interval or a precoding matrix corresponding to a time interval respectively;

[0519] Each of the M performance monitoring quantities corresponds to N / M slots, where N / M is a positive integer.

[0520] Optionally, when the CSI report is used to report K performance monitoring amount groups, K=T, T is the number of time intervals associated with the PMI in the CSI report, the t-th performance monitoring amount group corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or,

[0521] In the case of K<T, the K performance monitoring quantity groups correspond to K of the T time intervals.

[0522] Optionally, t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resource associated with the CSI reporting;

[0523] In the case of M=N, the mth performance monitoring quantity in the tth performance monitoring quantity group corresponds to slot l+tN+m.

[0524] Optionally, the correspondence between the K performance monitoring amount groups and K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

[0525] Optionally, the manner in which the K performance monitoring amount groups correspond to K of the T time intervals includes:

[0526] Based on a bitmap of length T, by setting each bit value of the bitmap, it is indicated that the K performance monitoring amount groups correspond to K of the T time intervals; or,

[0527] Through an occupation The method of indicating the combination coefficient of bits represents the correspondence method of the K performance monitoring quantity groups corresponding to K of the T time intervals.

[0528] Optionally, when K=1, the performance monitoring quantity group corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, or the performance monitoring quantity group corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

[0529] Optionally, in the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, where T>1; or

[0530] When K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, where T>1.

[0531] Optionally, when M=1, the performance monitoring amount corresponds to the first slot or the last slot of the time interval; or,

[0532] When M=2, the performance monitoring amount corresponds to the first slot and the last slot in the time interval.

[0533] In an embodiment of the present application, a user device may report a CSI report to a network device, and report the first type of CSI and the performance monitoring amount of the first type of CSI to the network device through the first reporting amount and the second reporting amount of the CSI report, so that the network device can perform performance monitoring on the first type of CSI, thereby solving the problem that the prior art cannot report CSI performance monitoring related information to the network device. The embodiment of the present application can achieve the purpose of reporting the first type of CSI and the performance monitoring amount of the first type of CSI to the network device through two reporting amounts (the first reporting amount and the second reporting amount) of a CSI report, thereby avoiding occupying other signaling resources and causing the problem of large signaling overhead. The reported CSI performance monitoring related information is specifically the first type of CSI and the performance monitoring amount of the first type of CSI, so that the reported CSI performance monitoring related information has no redundant content, and the reported information content is more reasonable and concise, thereby avoiding the problem of excessive amount of reported data caused by redundant information. Since the performance monitoring amount of the first type of CSI is directly reported, the network device can determine the performance quality of the first type of CSI relatively quickly based on the performance monitoring amount, thereby reducing the latency of the network device in monitoring the performance of the first type of CSI.

[0534] An embodiment of the present application provides a communication device, including: a transceiver, a memory, a processor, and a program stored in the memory and executable on the processor;

[0535] The processor is used to read the program in the memory to implement the above-mentioned information reporting method.

[0536] It should be noted that the division of units in the embodiments of the present application is schematic and is only a logical function division. There may be other division methods in actual implementation. In addition, each functional unit in each embodiment of the present application may be integrated into a processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit. The above-mentioned integrated unit may be implemented in the form of hardware or in the form of software functional units.

[0537] If the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a processor-readable storage medium. Based on this understanding, the technical solution of the present application is essentially or the part that contributes to the prior art or all or part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a storage medium, including a number of instructions to enable a computer device (which can be a personal computer, server, or network device, etc.) or a processor (processor) to perform all or part of the steps of the method described in each embodiment of the present application. The aforementioned storage medium includes: U disk, mobile hard disk, read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory, RAM), disk or optical disk and other media that can store program codes.

[0538] The embodiment of the present application also provides a readable storage medium, on which a program is stored, and when the program is executed by the processor, each process of the above-mentioned information reporting method embodiment is implemented, and the same technical effect can be achieved. To avoid repetition, it is not repeated here. Among them, the readable storage medium can be any available medium or data storage device that can be accessed by the processor, including but not limited to magnetic storage (such as floppy disk, hard disk, magnetic tape, magneto-optical disk (MO), etc.), optical storage (such as CD, DVD, BD, HVD, etc.), and semiconductor storage (such as ROM, EPROM, EEPROM, non-volatile memory (NAND FLASH), solid state drive (SSD)), etc.

[0539] It should be noted that, in this article, the terms "include", "comprises" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, an element defined by the sentence "comprises a ..." does not exclude the existence of other identical elements in the process, method, article or device including the element.

[0540] Through the description of the above implementation methods, those skilled in the art can clearly understand that the above-mentioned embodiment methods can be implemented by means of software plus a necessary general hardware platform, and of course by hardware, but in many cases the former is a better implementation method. Based on this understanding, the technical solution of the present application, or the part that contributes to the prior art, can be embodied in the form of a software product, which is stored in a storage medium (such as ROM / RAM, disk, CD), and includes a number of instructions for a terminal (which can be a mobile phone, computer, server, air conditioner, or network device, etc.) to execute the methods described in each embodiment of the present application.

[0541] The embodiments of the present application are described above in conjunction with the accompanying drawings, but the present application is not limited to the above-mentioned specific implementation methods. The above-mentioned specific implementation methods are merely illustrative and not restrictive. Under the guidance of the present application, ordinary technicians in this field can also make many forms without departing from the purpose of the present application and the scope of protection of the claims, all of which are within the protection of the present application.

Claims

1. An information reporting method, applied to a user equipment, characterized in that: The method comprises: Report channel state information CSI reporting to the network device, the CSI reporting is used to report a first reporting amount and a second reporting amount, the first reporting amount is a first type of CSI, the second reporting amount is a performance monitoring amount, and the performance monitoring amount is a performance monitoring amount of the first type of CSI.

2. The method according to claim 1, characterized in that The reporting quantity reportQuantity of the CSI reporting configuration is channel state information reference signal resource indication-stream indication-layer indication-precoding matrix indication-channel quality indication-performance monitoring quantity cri-RI-LI-PMI-CQI-performance monitoring quantity, or channel state information reference signal resource indication-stream indication-precoding matrix indication-channel quality indication-performance monitoring quantity cri-RI-PMI-CQI-performance monitoring quantity.

3. The method according to claim 1, characterized in that When the time domain type of the CSI reporting is semi-persistent, the CSI reporting is associated with a semi-persistent or periodic channel state information reference signal CSI-RS resource; or, When the time domain type of the CSI reporting is periodic, the CSI reporting is associated with periodic CSI-RS resources.

4. The method according to claim 1, characterized in that: When the time domain type of the CSI reporting is semi-continuous or periodic, the CSI reporting is used to report the first reporting amount when it is reported for the first preset number of times, and the CSI reporting is used to report the first reporting amount and the second reporting amount when it is reported for other times, and the preset number of times is greater than or equal to 1.

5. The method according to claim 1, characterized in that One time interval for CSI reporting or one time interval corresponding to a precoding matrix corresponds to one performance monitoring quantity.

6. The method according to claim 5, characterized in that In the case where the CSI report is used to report K performance monitoring quantities, K=T, T is the number of time intervals associated with the precoding matrix indication PMI in the CSI report, the t-th performance monitoring quantity corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or, In the case of K<T, the K performance monitoring quantities correspond to K of the T time intervals.

7. The method according to claim 6, characterized in that t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI reporting.

8. The method according to claim 6, characterized in that The correspondence manner of the K performance monitoring quantities to K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

9. The method according to claim 6, characterized in that The manner in which the K performance monitoring quantities correspond to K of the T time intervals includes: Based on a bitmap of length T, by setting each bit value of the bitmap, the correspondence between the K performance monitoring quantities and K of the T time intervals is represented; or, Through an occupation The method of indicating the combination coefficient of bits represents the correspondence between the K performance monitoring quantities and K of the T time intervals.

10. The method according to claim 6, characterized in that When K=1, the performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and / or the performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

11. The method according to claim 6, characterized in that In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or When K=2, the first performance monitoring amount corresponds to the precoding matrix corresponding to the t=0th time interval or the time interval, and the precoding matrix corresponding to the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1] or the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1], l is the starting time of the earliest time interval among the T time intervals, N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report, the second performance monitoring amount corresponds to the precoding matrix corresponding to the t=T / 2th time interval or the time interval, and the precoding matrix corresponding to the t=T-1th time interval or the time interval, where T>4.

12. The method according to claim 1, characterized in that A time interval of the CSI reporting or a precoding matrix corresponding to a time interval corresponds to M performance monitoring quantities, and the M performance monitoring quantities constitute a performance monitoring quantity group, where M>1.

13. The method according to claim 12, characterized in that M∈(1, N], where N is the period of the semi-persistent or periodic CSI-RS resources associated with the CSI reporting.

14. The method according to claim 12, characterized in that The M performance monitoring quantities correspond to a time interval or a precoding matrix corresponding to a time interval respectively; Each of the M performance monitoring quantities corresponds to N / M slots, where N / M is a positive integer.

15. The method according to claim 12, characterized in that In the case where the CSI report is used to report K performance monitoring amount groups, K=T, T is the number of time intervals associated with the PMI in the CSI report, the t-th performance monitoring amount group corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or, In the case of K<T, the K performance monitoring quantity groups correspond to K of the T time intervals.

16. The method according to claim 15, characterized in that t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resource associated with the CSI reporting; In the case of M=N, the mth performance monitoring quantity in the tth performance monitoring quantity group corresponds to slot l+tN+m.

17. The method according to claim 15, characterized in that The correspondence manner of the K performance monitoring amount groups to K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

18. The method according to claim 15, characterized in that The manner in which the K performance monitoring amount groups correspond to K of the T time intervals includes: Based on a bitmap of length T, by setting each bit value of the bitmap, it is indicated that the K performance monitoring amount groups correspond to K of the T time intervals; or, Through an occupation The method of indicating the combination coefficient of bits represents the correspondence method of the K performance monitoring quantity groups corresponding to K of the T time intervals.

19. The method according to claim 15, characterized in that In the case of K=1, the performance monitoring amount group corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, or the performance monitoring amount group corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

20. The method according to claim 15, characterized in that In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or When K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, where T>1.

21. The method according to claim 19 or 20, characterized in that In the case of M=1, the performance monitoring amount corresponds to the first slot or the last slot of the time interval; or, When M=2, the performance monitoring amount corresponds to the first slot and the last slot in the time interval.

22. An information reporting method, applied to a network device, characterized in that: The method comprises: Receive a CSI report determined by a user equipment according to a channel state information CSI reporting configuration, wherein the CSI reporting configuration is configured by the network equipment, and the CSI reporting is used to report a first reporting amount and a second reporting amount, wherein the first reporting amount is a first type of CSI, and the second reporting amount is a performance monitoring amount, and the performance monitoring amount is a performance monitoring amount of the first type of CSI.

23. The method according to claim 22, characterized in that The reportQuantity of the CSI reporting configuration is cri-RI-LI-PMI-CQI-performance monitoring quantity or cri-RI-PMI-CQI-performance monitoring quantity.

24. The method according to claim 22, characterized in that When the time domain type of the CSI reporting is semi-persistent, the CSI reporting is associated with a semi-persistent or periodic CSI-RS resource; or, When the time domain type of the CSI reporting is periodic, the CSI reporting is associated with periodic CSI-RS resources.

25. The method according to claim 22, characterized in that When the time domain type of the CSI reporting is semi-continuous or periodic, the CSI reporting is used to report the first reporting amount when it is reported for the first preset number of times, and the CSI reporting is used to report the first reporting amount and the second reporting amount when it is reported for other times, and the preset number of times is greater than or equal to 1.

26. The method according to claim 22, characterized in that One time interval for CSI reporting or one time interval corresponding to a precoding matrix corresponds to one performance monitoring quantity.

27. The method according to claim 26, characterized in that In the case where the CSI report is used to report K performance monitoring quantities, K=T, T is the number of time intervals associated with the precoding matrix indication PMI in the CSI report, the t-th performance monitoring quantity corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or, In the case of K<T, the K performance monitoring quantities correspond to K of the T time intervals.

28. The method according to claim 27, characterized in that t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI reporting.

29. The method according to claim 27, characterized in that The correspondence manner of the K performance monitoring quantities to K of the T time intervals is indicated by the network device to the user equipment, or is determined by the user equipment and reported to the network device.

30. The method according to claim 27, characterized in that The manner in which the K performance monitoring quantities correspond to K of the T time intervals includes: Based on a bitmap of length T, by setting each bit value of the bitmap, the correspondence between the K performance monitoring quantities and K of the T time intervals is represented; or, The correspondence between the K performance monitoring quantities and K of the T time intervals is indicated by a combination coefficient indication occupying bits.

31. The method according to claim 27, characterized in that When K=1, the performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and / or the performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

32. The method according to claim 27, characterized in that In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or When K=2, the first performance monitoring amount corresponds to the precoding matrix corresponding to the t=0th time interval or the time interval, and the precoding matrix corresponding to the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1] or the time interval slot[l+(T / 2-1)*N, l+T / 2*N-1], l is the starting time of the earliest time interval among the T time intervals, N is the period of the semi-continuous or periodic CSI-RS resources associated with the CSI report, the second performance monitoring amount corresponds to the precoding matrix corresponding to the t=T / 2th time interval or the time interval, and the precoding matrix corresponding to the t=T-1th time interval or the time interval, where T>4.

33. The method according to claim 22, characterized in that A time interval of the CSI reporting or a precoding matrix corresponding to a time interval corresponds to M performance monitoring quantities, and the M performance monitoring quantities constitute a performance monitoring quantity group, where M>1.

34. The method according to claim 33, characterized in that M∈(1, N], where N is the period of the semi-persistent or periodic CSI-RS resources associated with the CSI reporting.

35. The method according to claim 33, characterized in that The M performance monitoring quantities correspond to a time interval or a precoding matrix corresponding to a time interval respectively; Each of the M performance monitoring quantities corresponds to N / M slots, where N / M is a positive integer.

36. The method according to claim 33, characterized in that In the case where the CSI report is used to report K performance monitoring amount groups, K=T, T is the number of time intervals associated with the PMI in the CSI report, the t-th performance monitoring amount group corresponds to the t-th time interval or the precoding matrix corresponding to the time interval; or, In the case of K<T, the K performance monitoring quantity groups correspond to K of the T time intervals.

37. The method according to claim 36, characterized in that t∈[0, T-1], the time interval is slot[l+tN, l+(t+1)N-1], l is the start time of the earliest time interval among the T time intervals, and N is the period of the semi-continuous or periodic CSI-RS resource associated with the CSI reporting; In the case of M=N, the mth performance monitoring quantity in the tth performance monitoring quantity group corresponds to slot l+tN+m.

38. The method according to claim 36, characterized in that The correspondence manner of the K performance monitoring amount groups to K of the T time intervals is indicated by the network device to the user equipment, or determined by the user equipment and reported to the network device.

39. The method according to claim 36, characterized in that The manner in which the K performance monitoring amount groups correspond to K of the T time intervals includes: Based on a bitmap of length T, by setting each bit value of the bitmap, it is indicated that the K performance monitoring amount groups correspond to K of the T time intervals; or, The manner of using represents the manner in which the K performance monitoring quantity groups correspond to K of the T time intervals.

40. The method according to claim 36, characterized in that In the case of K=1, the performance monitoring amount group corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, or the performance monitoring amount group corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval.

41. The method according to claim 36, characterized in that In the case of K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T-1th time interval or the precoding matrix corresponding to the time interval, wherein T>1; or When K=2, the first performance monitoring amount corresponds to the t=0th time interval or the precoding matrix corresponding to the time interval, and the second performance monitoring amount corresponds to the t=T / 2th time interval or the precoding matrix corresponding to the time interval, where T>1.

42. The method according to claim 40 or 41, characterized in that In the case of M=1, the performance monitoring amount corresponds to the first slot or the last slot of the time interval; or, When M=2, the performance monitoring amount corresponds to the first slot and the last slot in the time interval.

43. An information reporting device, applied to a user device, characterized in that: include: The first module is used to report channel state information CSI to the network device, and the CSI report is used to report a first reporting amount and a second reporting amount. The first reporting amount is a first type of CSI, and the second reporting amount is a performance monitoring amount. The performance monitoring amount is the performance monitoring amount of the first type of CSI.

44. An information reporting device, applied to a network device, characterized in that: include: The first module is used to receive a CSI report determined by a user equipment according to a channel state information CSI reporting configuration, wherein the CSI reporting configuration is pre-configured by the network device, and the CSI report is used to report a first reporting amount and a second reporting amount, wherein the first reporting amount is a first type of CSI, and the second reporting amount is a performance monitoring amount, and the performance monitoring amount is a performance monitoring amount of the first type of CSI.

45. An information reporting device, applied to a user device, comprising: A processor and a transceiver; characterized in that, The processor is used to configure CSI reporting; The transceiver is used to report the CSI on the network device, and the CSI reporting is used to report a first reporting amount and a second reporting amount, the first reporting amount is a first type of CSI, the second reporting amount is a performance monitoring amount, and the performance monitoring amount is a performance monitoring amount of the first type of CSI.

46. ​​An information reporting device, applied to a network device, comprising: A processor and a transceiver; characterized in that, The processor is used to configure channel state information CSI reporting configuration; The transceiver is used to receive a CSI report determined by a user equipment according to the channel state information CSI reporting configuration, wherein the CSI report is used to report a first reporting amount and a second reporting amount, wherein the first reporting amount is a first type of CSI, and the second reporting amount is a performance monitoring amount, and the performance monitoring amount is a performance monitoring amount of the first type of CSI.

47. An information reporting system, characterized in that: include: A user equipment is configured to report a channel state information CSI report to a network device, wherein the CSI report is used to report a first reporting amount and a second reporting amount, wherein the first reporting amount is a first type of CSI, and the second reporting amount is a performance monitoring amount, and the performance monitoring amount is a performance monitoring amount of the first type of CSI; The network device is used to receive the CSI report determined by the user equipment according to the channel state information CSI reporting configuration, and the CSI reporting configuration is configured by the network device.

48. A communication device comprising: A transceiver, a memory, a processor, and a program stored in the memory and executable on the processor; characterized in that: The processor is used to read the program in the memory to implement the steps in the information reporting method as described in any one of claims 1-21 or claims 22-42.

49. A readable storage medium for storing a program, characterized in that: When the program is executed by the processor, the steps in the information reporting method as described in any one of claims 1-21 or claims 22-42 are implemented.