Information processing methods, apparatus, terminal, and network side device

By configuring multiple sets of reference signal resources for terminals and network-side devices, and having the terminals report performance monitoring information, the problem of the lack of a unified performance monitoring scheme in the existing technology is solved, and effective performance monitoring of artificial intelligence models is achieved, thereby improving system performance.

WO2026066591A1PCT designated stage Publication Date: 2026-04-02DATANG MOBILE COMM EQUIP CO LTD
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Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-07-25
Publication Date
2026-04-02

AI Technical Summary

Technical Problem

Existing technologies do not provide a unified performance monitoring scheme for classification and regression models of artificial intelligence models in beam management, resulting in limited generalization ability and an inability to effectively determine the matching between the model and the scenario.

Method used

By configuring at least two sets of reference signal resources for the terminal and network-side devices, including reference signal resources for inference and performance monitoring, the terminal reports performance monitoring-related information, and the network-side devices perform performance monitoring based on this information.

Benefits of technology

It enables performance monitoring of artificial intelligence models, ensuring their suitability for the current scenario and improving system performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

Provided in the present disclosure are information processing methods, an apparatus, a terminal, and a network side device. A method comprises: the terminal determines at least two reference signal resource sets on the basis of a network configuration, the at least two reference signal resource sets comprising: a first reference signal resource set, and a second reference signal resource set and / or a third reference signal resource set; and, on the basis of the first reference signal resource set, and the second reference signal resource set and / or the third reference signal resource set, the terminal sends target information to the network side device, the target information being used for indicating information related to performance monitoring.
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Description

Information processing method and device, terminal and network side equipment

[0001] The present disclosure claims priority to the Chinese patent application No. 202411374546.3, filed on September 29, 2024, and entitled "Information processing method and device, terminal and network side equipment", the whole content of which is incorporated herein by reference. TECHNICAL FIELD

[0002] The present disclosure relates to the technical field of communication, and particularly refers to an information processing method, device, terminal and network side equipment. BACKGROUND

[0003] When an Artificial Intelligence (AI) model or a Machine Learning (ML) model is used for beam management, the output of the AI / ML model can be the probability of the Top-1 beam of the predicted resource set A (classification model), or the predicted Reference Signal Receiving Power (RSRP) of the beam of the resource set A (regression model). The former can be sorted according to the size of the probability value to pick out the Top-K (the best K) beams, and the latter can be sorted according to the size of the predicted RSRP to pick out the Top-K beams.

[0004] However, the generalization ability of the Artificial Intelligence (AI) model or the Machine Learning (ML) model is limited, and different models may be deployed for different scenarios, i.e., each model is applicable to limited scenarios or configurations, so performance monitoring is needed to determine whether the used AI model matches the current scenario or configuration to ensure system performance.

[0005] The outputs of the classification model and the regression model are different, and if the performance monitoring indicators are applicable to both models, it will be beneficial to adopt a unified performance monitoring method. However, the related art does not provide a specific scheme for performance monitoring. SUMMARY

[0006] The purpose of the embodiments of the present disclosure is to provide an information processing method, device, terminal and network side equipment to solve the problem that the related art does not provide a specific scheme for performance monitoring.

[0007] To solve the above problem, the embodiments of the present disclosure provide an information processing method, which is executed by a terminal, and the method comprises:

[0008] determine at least two reference signal resource sets according to network configuration; the at least two reference signal resource sets comprise: a first reference signal resource set, and a second reference signal resource set and / or a third reference signal resource set;

[0009] send target information to a network side device according to the first reference signal resource set, and the second reference signal resource set and / or the third reference signal resource set;

[0010] The target information is used to indicate performance monitoring related information.

[0011] The embodiments of the present disclosure further provide an information processing method, executed by a network side device, comprising:

[0012] configure at least two reference signal resource sets for a terminal; the at least two reference signal resource sets comprise: a first reference signal resource set, and a second reference signal resource set and / or a third reference signal resource set;

[0013] receive target information sent by the terminal according to the at least two reference signal resource sets;

[0014] The target information is used to indicate performance monitoring related information.

[0015] The embodiments of the present disclosure further provide a terminal, comprising a memory, a transceiver and a processor:

[0016] The memory is used to store a computer program; the transceiver is used to transceive data under the control of the processor; and the processor is used to read the computer program in the memory and perform the following operations:

[0017] determine at least two reference signal resource sets according to network configuration; the at least two reference signal resource sets comprise: a first reference signal resource set, and a second reference signal resource set and / or a third reference signal resource set;

[0018] send target information to a network side device according to the first reference signal resource set, and the second reference signal resource set and / or the third reference signal resource set;

[0019] The target information is used to indicate performance monitoring related information.

[0020] The embodiments of the present disclosure further provide a network side device, comprising a memory, a transceiver and a processor:

[0021] The memory is used to store a computer program; the transceiver is used to transceive data under the control of the processor; and the processor is used to read the computer program in the memory and perform the following operations:

[0022] configuring at least two reference signal resource sets for the terminal; the at least two reference signal resource sets comprise: a first reference signal resource set, and a second reference signal resource set and / or a third reference signal resource set;

[0023] receiving target information sent by the terminal according to the at least two reference signal resource sets;

[0024] The target information is used to indicate performance monitoring related information.

[0025] The embodiments of the present disclosure further provide an information processing apparatus applied to a terminal, the apparatus comprising:

[0026] a determining unit configured to determine at least two reference signal resource sets according to network configuration; the at least two reference signal resource sets comprise: a first reference signal resource set, and a second reference signal resource set and / or a third reference signal resource set;

[0027] a sending unit configured to send target information to a network side device according to the first reference signal resource set, and the second reference signal resource set and / or the third reference signal resource set;

[0028] The target information is used to indicate performance monitoring related information.

[0029] The embodiments of the present disclosure further provide an information processing apparatus applied to a network side device, the apparatus comprising:

[0030] a configuring unit configured to configure at least two reference signal resource sets for the terminal; the at least two reference signal resource sets comprise: a first reference signal resource set, and a second reference signal resource set and / or a third reference signal resource set;

[0031] a receiving unit configured to receive target information sent by the terminal according to the at least two reference signal resource sets;

[0032] The target information is used to indicate performance monitoring related information.

[0033] The embodiments of the present disclosure further provide a processor readable storage medium, which stores a program for causing a processor to execute the method described above.

[0034] The above technical solutions of the present disclosure have at least the following beneficial effects:

[0035] In the information processing method, apparatus, terminal and network-side device provided in the embodiments of the present disclosure, the network-side device configures at least two reference signal resource sets for inference and performance monitoring for the terminal, and the terminal reports information related to performance monitoring according to the at least two reference signal resource sets, so that the network-side device can perform performance monitoring according to the information related to performance monitoring. BRIEF DESCRIPTION OF DRAWINGS

[0036] FIG. 1 shows a block diagram of a wireless communication system to which the embodiments of the present disclosure can be applied;

[0037] FIG. 2 shows a flowchart of steps of an information processing method according to an embodiment of the present disclosure;

[0038] FIG. 3 shows a schematic diagram of a relevant beam of a performance monitoring indicator according to an embodiment of the present disclosure;

[0039] FIG. 4 shows a flowchart of steps of an information processing method according to another embodiment of the present disclosure;

[0040] FIG. 5 shows a schematic diagram of a structure of a terminal according to an embodiment of the present disclosure;

[0041] FIG. 6 shows a schematic diagram of a structure of a network-side device according to an embodiment of the present disclosure;

[0042] FIG. 7 shows a schematic diagram of a structure of an information processing apparatus according to an embodiment of the present disclosure;

[0043] FIG. 8 shows a schematic diagram of a structure of an information processing apparatus according to another embodiment of the present disclosure. DETAILED DESCRIPTION

[0044] To make the technical problems solved by the present disclosure, technical solutions and advantages clearer, the following will be described in detail with reference to the drawings and specific embodiments.

[0045] FIG. 1 shows a block diagram of a wireless communication system to which the embodiments of the present disclosure can be applied. The wireless communication system includes a terminal device 11 and a network-side device 12. The terminal device 11 can also be referred to as a terminal or a user terminal (UE). It should be noted that the specific type of the terminal 11 is not limited in the embodiments of the present disclosure. The network-side device 12 can be a base station or a core network. It should be noted that the base station in the NR system is taken as an example in the embodiments of the present disclosure, but the specific type of the base station is not limited.

[0046] In the embodiments of the present disclosure, the term “and / or” is used to describe the association relationship of the associated objects, which means that there can be three relationships, for example, A and / or B can mean that A exists alone, A and B exist together, and B exists alone. The character “ / ” generally represents an “or” relationship between the associated objects before and after it.

[0047] The term “plurality” in the embodiments of the present disclosure refers to two or more, and other quantifiers are similar.

[0048] The technical solutions in the embodiments of the present disclosure will be described clearly and completely in combination with the drawings in the embodiments of the present disclosure. Obviously, the described embodiments are only part of the embodiments of the present disclosure, not all the embodiments. Based on the embodiments in the present disclosure, all other embodiments obtained by those skilled in the art without creative labor are within the protection scope of the present disclosure.

[0049] The technical solutions provided by the embodiments of the present disclosure can be applied to various systems. For example, the applicable systems can be a long term evolution (LTE) system, an LTE frequency division duplex (FDD) system, an LTE time division duplex (TDD) system, a long term evolution advanced (LTE-A) system, a universal mobile system (UMTS), a worldwide interoperability for microwave access (WiMAX) system, a 5th Generation Mobile Communication Technology (5G) New Radio (NR) system and its evolved communication system, a 6th Generation Mobile Communication Technology (6G) system, etc. The various systems can include terminal devices and network devices. The system can also include a core network part, such as an evolved packet system (EPC), a 5G core network (5GC), etc.

[0050] The terminal device to which the embodiments of the present disclosure relate can refer to a device providing voice and / or data connectivity to a user, a handheld device with wireless connection function, or other processing devices connected to a wireless modem, etc. In different systems, the name of the terminal device can also be different, for example, in the 5G system, the terminal device can be called user equipment (UE). The wireless terminal device can communicate with one or more core networks (CN) through a radio access network (RAN). The wireless terminal device can be a mobile terminal device, such as a mobile phone (or called "cellular" phone) and a computer with a mobile terminal device, for example, it can be a portable, pocket, handheld, computer built-in or vehicle-mounted mobile device, which exchanges language and / or data with the radio access network. For example, personal communication service (PCS) phones, cordless phones, session initiation protocol (SIP) phones, wireless local loop (WLL) stations, personal digital assistants (PDAs), etc. The wireless terminal device can also be called a system, a subscriber unit, a subscriber station, a mobile station, a mobile, a remote station, an access point, a remote terminal, an access terminal, a user terminal, a user agent, a user device, which is not limited in the embodiments of the present disclosure.

[0051] The network device related to the embodiments of the present disclosure can be a base station, which can include a plurality of cells serving terminals. According to different application scenarios, the base station can also be referred to as an access point, or can be a device in an access network that communicates with wireless terminal devices through one or more sectors over an air interface, or other names. The network device can be used to exchange received air frames and Internet Protocol (IP) packets as a router between the wireless terminal device and the rest of the access network, which can include an Internet Protocol (IP) communication network. The network device can also coordinate the management of the properties of the air interface. For example, the network device related to the embodiments of the present disclosure can be a network device (Base Transceiver Station, BTS) in the Global System for Mobile Communications (GSM) or Code Division Multiple Access (CDMA), or a network device (NodeB) in Wide-band Code Division Multiple Access (WCDMA), or an evolved network device (evolutional Node B, eNB or e-NodeB) in a long term evolution (LTE) system, or a 5G base station (gNB) in a next generation system, or a Home evolved Node B (HeNB), a relay node, a femto, a pico, etc., which are not limited in the embodiments of the present disclosure. In some network structures, the network device can include a centralized unit (CU) node and a distributed unit (DU) node, and the centralized unit and the distributed unit can also be geographically separated.

[0052] The network device and the terminal device can each use one or more antennas for multi-input multi-output (MIMO) transmission, which can be single-user MIMO (SU-MIMO) or multiple-user MIMO (MU-MIMO). According to the form and number of root antenna combinations, the MIMO transmission can be two-dimensional MIMO (2D-MIMO), three-dimensional MIMO (3D-MIMO), full-dimensional MIMO (FD-MIMO), or massive-MIMO, and can also be diversity transmission or precoding transmission or beamforming transmission, etc.

[0053] As shown in FIG. 2, the embodiment of the present disclosure provides an information processing method, which is executed by a terminal, and the method comprises the following steps:

[0054] In step 201, at least two reference signal resource sets are determined according to network configuration; the at least two reference signal resource sets comprise a first reference signal resource set, a second reference signal resource set, and / or a third reference signal resource set.

[0055] In step 202, target information is sent to a network side device according to the first reference signal resource set, the second reference signal resource set, and / or the third reference signal resource set.

[0056] The target information is used to indicate performance monitoring related information.

[0057] In the embodiment of the present disclosure, the reference signal included in the first reference signal resource set is an inference reference signal; the reference signal included in the second reference signal resource set and / or the third reference signal resource set is a performance monitoring reference signal.

[0058] In some embodiments, the performance monitoring reference signal is used to obtain a ground truth or a reference value.

[0059] In some embodiments, the target information reported by the terminal can be a result obtained based on single performance monitoring, or a result obtained based on multiple monitoring, which is not limited here.

[0060] In an implementation manner, the reference signal resource used for performance monitoring (for obtaining a ground truth or a reference value) comprises the following two cases:

[0061] Case 1: the second reference signal resource set is a performance monitoring reference signal resource set, and the performance monitoring reference signal resource set corresponds to a Set A (Set A) beam set;

[0062] Case 2: the third reference signal resource set is a performance monitoring reference signal resource set, and the performance monitoring reference signal resource set is not Set A, such as the third reference signal resource set corresponding to a synchronization signal block (SSB) beam full set; the number of beams in the third reference signal resource set is less than the number of beams in the second reference signal resource set, thereby saving overhead.

[0063] In at least one embodiment of the present disclosure, step 202 includes:

[0064] determining a first result according to the first reference signal resource set;

[0065] determining a second result according to the second reference signal resource set and / or the third reference signal resource set;

[0066] sending the target information to the network side device according to the first result and the second result.

[0067] In some embodiments, the first result is an inference result, and the second result is a performance monitoring reference signal measurement result.

[0068] For example, the terminal calculates a performance monitoring index (which can also be referred to as a performance index or a monitoring index) according to the inference result and the measurement result, and reports performance monitoring related target information to the network side.

[0069] Embodiments of the present disclosure include at least the following three reference signal configuration methods:

[0070] Method 1: the performance monitoring reference signal resource set corresponds to the second reference signal resource set, and the network configures the first reference signal resource set and the second reference signal resource set;

[0071] Method 2: the performance monitoring reference signal resource set corresponds to the third reference signal resource set, and the network configures the first reference signal resource set and the third reference signal resource set; in some embodiments, the network configures the relationship between the reference signals in the third reference signal resource set and the second reference signal resource set;

[0072] Method 3: The performance monitoring reference signal resource set includes a second reference signal resource set and a third reference signal resource set, for example, the second reference signal resource set has a larger periodicity and the third reference signal resource set has a smaller periodicity. The network configures the first reference signal resource set and the two performance monitoring reference signal resource sets, which correspond to the second reference signal resource set and the third reference signal resource set, respectively.

[0073] In the embodiments of the present disclosure, the target information reported by the terminal is related to specific performance monitoring indicators. When performance monitoring is performed based on the predicted Top-K (top K) beam Layer 1-RSRP (Layer 1-RSRP, L1-RSRP) measurement value and the L1-RSRP difference of the performance monitoring reference signal, the performance monitoring indicator can be defined as:

[0074] Indicator 1: The difference between the maximum L1-RSRP in the L1-RSRP obtained by measuring the reference signal corresponding to the predicted Top-K beam and the maximum L1-RSRP obtained by measuring the reference signal of the performance monitoring reference signal resource set; in some embodiments, the first reference signal resource set is a subset of the second reference signal resource set, the beam of the second reference signal resource set is predicted based on the beam of the first reference signal resource set, and the performance monitoring reference signal resource set is the second reference signal resource set. As shown in FIG. 3, the performance monitoring indicator is the difference between the maximum value in the L1-RSRP measurement value of the predicted Top-1 beam, the predicted Top-2 beam and the predicted Top-3 beam and the L1-RSRP of the actual Top-1 beam. This definition assumes that the base station needs to perform beam scanning on the predicted Top-K beam, and if the predicted Top-K beam includes the actual Top-1 beam, the L1-RSRP difference is 0.

[0075] Indicator 2: The difference between the L1-RSRP measurement value obtained by measuring the reference signal corresponding to the predicted Top-1 beam and the maximum L1-RSRP obtained by measuring the performance monitoring reference signal. As shown in FIG. 3, the performance monitoring indicator is the difference between the L1-RSRP measurement value of the predicted Top-1 beam and the L1-RSRP measurement value of the actual Top-1 beam.

[0076] Indicator 3: The average value of the difference (or the absolute value of the difference) between the L1-RSRP obtained by measuring the reference signal corresponding to the predicted Top-K beam and the Top-K L1-RSRP obtained by measuring the performance monitoring reference signal. As shown in FIG. 3, the performance monitoring indicator is the average value of the absolute value of the difference between the L1-RSRP measurement value of the predicted Top-i beam and the L1-RSRP measurement value of the actual Top-i beam (i = 1, 2, 3).

[0077] In an optional embodiment of the present disclosure, step 201 includes:

[0078] receiving first configuration information sent by the network-side device, the first configuration information comprising the first reference signal resource set and the second reference signal resource set.

[0079] In some embodiments, the first configuration information is configuration information for reporting target information or configuration information of reference signal resources.

[0080] Alternatively, step 201 comprises:

[0081] receiving second configuration information sent by the network-side device, the second configuration information being associated with the first reference signal resource set and the second reference signal resource set.

[0082] In some embodiments, the second configuration information is configuration information of a Channel State Information (CSI) report for reporting first results, wherein the CSI report is associated with configuration information for reporting target information.

[0083] For example, the configuration method of the reference signal comprises:

[0084] Method 1-1: The report configuration or reference signal resource configuration for reporting performance monitoring results comprises a first reference signal resource set (corresponding to SetB) and a second reference signal resource set (corresponding to SetA).

[0085] In some embodiments, the second reference signal resource set comprises multiple subsets, such as SetA, which is composed of multiple different SetB, and each subset corresponds to one SetB reference signal resource set.

[0086] Method 1-2: The report configuration for reporting performance monitoring results is associated with a CSI report for reporting inference results, and the CSI report configuration for reporting inference results is associated with the first reference signal resource set (corresponding to SetB) and the second reference signal resource set (corresponding to SetA).

[0087] In other words, the first reference signal resource set and the second reference signal resource set are directly configured in Method 1-1, and the first reference signal resource set and the second reference signal resource set are indirectly associated through the association of the CSI report for reporting inference results in Method 1-2.

[0088] In yet another optional embodiment of the present disclosure, step 201 comprises:

[0089] receive third configuration information sent by the network-side device and configuration information of a CSI report associated with the third configuration information; the third configuration information includes a third reference signal resource set, and the configuration information of the CSI report is associated with the first reference signal resource set and the second reference signal resource set; the CSI report is used to report a first result.

[0090] In some embodiments, the third configuration information is first report configuration information used to report target information.

[0091] Alternatively, step 201 includes:

[0092] receive fourth configuration information sent by the network-side device, the fourth configuration information including the first reference signal resource set and the third reference signal resource set; or, the fourth configuration information including the first reference signal resource set, the second reference signal resource set, and the third reference signal resource set.

[0093] In some embodiments, the fourth configuration information is first report configuration information used to report target information or configuration information of reference signal resources.

[0094] For example, the configuration method of the reference signal includes:

[0095] Method 2-1: the report configuration used to report the performance monitoring result includes a third reference signal resource set (corresponding to the performance monitoring reference signal resource, not SetA), and a CSI report associated with the reporting of the inference result, the CSI report configuration used to report the inference result is associated with the first reference signal resource set (corresponding to SetB) and the second reference signal resource set (corresponding to SetA).

[0096] Method 2-2: the report configuration used to report the performance monitoring result includes the first reference signal resource set (corresponding to SetB), the second reference signal resource set (corresponding to SetA), and the third reference signal resource set (corresponding to the performance monitoring reference signal resource, not SetA). Among them, the second reference signal resource set is optional.

[0097] Since the terminal infers the Top-K beams in SetA, that is, the reference signal corresponding to the inference result belongs to the second reference signal resource set (i.e. SetA), and the performance monitoring reference signal resource set in method 2 is the third reference signal resource set, the terminal needs to determine which reference signal resources in the third reference signal resource set correspond to the inference result, that is, the method for the terminal to determine the reference signal resources in the third reference signal resource set corresponding to the inference result is:

[0098] Method 2-3: determining the reference signal resource in the third reference signal resource set corresponding to the first result according to the quasi co-location information of the reference signal resources in the second reference signal resource set and the third reference signal resource set; or,

[0099] Method 2-4: determining the reference signal resource in the third reference signal resource set corresponding to the first result according to the association relationship between the reference signal resources in the second reference signal resource set and the reference signal resources in the third reference signal resource set indicated by the network;

[0100] Wherein, the first result is determined by the first reference signal resource set.

[0101] In an implementation manner, the target information comprises one or more of the following:

[0102] A first prediction accuracy, which is determined by the terminal according to the first result and the measurement result of the second reference signal resource set; for example, the reference signal resource obtained according to the maximum RSRP measurement value of the inference result obtained from the first reference signal resource set and the second reference signal resource set;

[0103] A first difference value, which is the difference value or the absolute value of the difference value between a first signal strength measurement value and a second signal strength measurement value; the first signal strength measurement value is the maximum signal strength measurement value of the reference signal resource in the second reference signal resource set corresponding to the first result; the second signal strength measurement value is the maximum signal strength measurement value of the reference signal resource in the second reference signal resource set;

[0104] A second difference value, which is the average value of the difference value between K1 third signal strength measurement values and K1 fourth signal strength measurement values, or the average value of the absolute value of the difference value between K1 third signal strength measurement values and K1 fourth signal strength measurement values; the third signal strength measurement value is the signal strength measurement value of the reference signal resource in the second reference signal resource set corresponding to the first result, and the fourth signal strength measurement value is the signal strength measurement value of the reference signal resource in the second reference signal resource set; K1 is an integer greater than or equal to 2;

[0105] A first target value, which is the average value and / or maximum value and / or minimum value of the first prediction accuracy or the first difference value or the second difference value within a first time length; or the first target value is the average value and / or maximum value and / or minimum value of the first prediction accuracy or the first difference value or the second difference value in M1 performance monitoring; M1 is an integer greater than or equal to 2;

[0106] The first indication information is used to indicate whether the first target value is greater than or equal to a first threshold value;

[0107] The second indication information is used to indicate whether the first target value is less than or equal to a second threshold value.

[0108] The first number of times is a number of times that the first target value is greater than or equal to the first threshold value.

[0109] The second number of times is a number of times that the first target value is less than or equal to the second threshold value.

[0110] In some embodiments, the signal strength measurement value is an RSRP measurement value, or an RSRP measurement value filtered by layer 1 (may be referred to as an L1-RSRP measurement value).

[0111] For example, the first prediction accuracy includes: a Top-1 beam prediction accuracy, and a Top-K / 1 beam prediction accuracy. The Top-1 beam prediction accuracy refers to a probability that a predicted Top-1 beam is an actual Top-1 beam, and the Top-K / 1 beam prediction accuracy refers to a probability that an actual Top-1 beam is included in a predicted Top-K beam.

[0112] In another implementation, the target information includes one or more of the following:

[0113] The second prediction accuracy is determined by the terminal according to the first result and a measurement result of the third reference signal resource set; for example, according to an inference result obtained from the first reference signal resource set and a reference signal resource with a maximum RSRP measurement value in the third reference signal resource set;

[0114] The third difference value is a difference value or an absolute value of a difference value between a fifth signal strength measurement value and a sixth signal strength measurement value; the fifth signal strength measurement value is a maximum signal strength measurement value of a reference signal resource in the third reference signal resource set corresponding to the first result; and the sixth signal strength measurement value is a maximum signal strength measurement value of a reference signal resource in the third reference signal resource set.

[0115] The fourth difference value is an average value of differences between K2 seventh signal strength measurement values and K2 eighth signal strength measurement values, or an average value of absolute values of the differences between the K2 seventh signal strength measurement values and the K2 eighth signal strength measurement values; the seventh signal strength measurement value is a signal strength measurement value of a reference signal resource in the third reference signal resource set corresponding to the first result; the eighth signal strength measurement value is a signal strength measurement value of a reference signal resource in the third reference signal resource set; and K2 is an integer greater than or equal to 2.

[0116] a second target value, the second target value being an average value and / or a maximum value and / or a minimum value of the second prediction accuracy or the third difference value or the fourth difference value in a second time length; or the second target value being an average value and / or a maximum value and / or a minimum value of the second prediction accuracy or the third difference value or the fourth difference value in M2 performance monitoring times; M2 being an integer greater than or equal to 2;

[0117] third indication information, the third indication information being used for indicating whether the second target value is greater than or equal to a third threshold value;

[0118] fourth indication information, the fourth indication information being used for indicating whether the second target value is less than or equal to a fourth threshold value;

[0119] a third number of times, the third number of times being a number of times that the second target value is greater than or equal to the third threshold value;

[0120] a fourth number of times, the fourth number of times being a number of times that the second target value is less than or equal to the fourth threshold value.

[0121] For example, the second prediction accuracy includes: a probability that a beam corresponding to the predicted Top-1 beam is the Top-1 beam in the performance monitoring reference signal set, and a probability that a beam corresponding to the predicted Top-K beam includes the Top-1 beam in the performance monitoring reference signal set.

[0122] In at least one embodiment of the present disclosure, the step 102 of transmitting the target information to the network side device includes:

[0123] determining a target information transmission time according to a periodic reporting configuration or a semi-persistent reporting configuration or an aperiodic reporting configuration configured by the network, and transmitting the target information to the network side device at the target information transmission time.

[0124] In another optional embodiment of the present disclosure, the step 102 of transmitting the target information to the network side device includes:

[0125] transmitting the target information to the network side device in a case where a first condition is met; wherein the first condition includes one or more of the following:

[0126] the first target value is greater than or equal to a first threshold value;

[0127] the first target value is less than or equal to a second threshold value;

[0128] the first number of times is greater than or equal to a fifth threshold value;

[0129] the second number of times is greater than or equal to a sixth threshold value;

[0130] The second target value is greater than or equal to a third threshold value;

[0131] The second target value is less than or equal to a fourth threshold value;

[0132] The third number of times is greater than or equal to a seventh threshold value;

[0133] The fourth number of times is greater than or equal to an eighth threshold value.

[0134] It should be noted that the specific values of the first threshold value, the second threshold value, the third threshold value, the fourth threshold value, the fifth threshold value, the sixth threshold value, the seventh threshold value, the eighth threshold value, and the like can be preconfigured by the network side device, can be predefined by a protocol, or can be determined by the terminal according to its own implementation, and are not limited specifically herein.

[0135] To sum up, in the embodiments of the present disclosure, the network side device configures at least two reference signal resource sets for inference and performance monitoring for the terminal, and the terminal reports performance monitoring related information according to the at least two reference signal resource sets; so that the network side device implements performance monitoring according to the performance monitoring related information.

[0136] As shown in FIG. 4, the embodiments of the present disclosure also provide an information processing method, which is executed by a network side device, and the method comprises:

[0137] Step 401: configuring at least two reference signal resource sets for a terminal; the at least two reference signal resource sets comprise a first reference signal resource set, and a second reference signal resource set and / or a third reference signal resource set;

[0138] Step 402: receiving target information sent by the terminal according to the at least two reference signal resource sets;

[0139] The target information is used to indicate performance monitoring related information.

[0140] In the embodiments of the present disclosure, the reference signals included in the first reference signal resource set are reference signals for inference; the reference signals included in the second reference signal resource set and / or the third reference signal resource set are performance monitoring reference signals.

[0141] In some embodiments, the performance monitoring reference signals are used to obtain ground-truth or reference values.

[0142] In some embodiments, the target information reported by the terminal can be a result obtained based on single performance monitoring, or can be a result obtained based on multiple monitoring, which is not limited specifically herein.

[0143] In an implementation, the reference signal resource for performance monitoring (for obtaining true value or reference value) includes the following two cases:

[0144] Case 1: The second reference signal resource set is the performance monitoring reference signal resource set, and the performance monitoring reference signal resource set corresponds to the SetA (set A) beam set;

[0145] Case 2: The third reference signal resource set is the performance monitoring reference signal resource set, and the performance monitoring reference signal resource set is not SetA, such as the third reference signal resource set corresponding to the complete set of synchronization signal block (SSB) beams; the number of beams in the third reference signal resource set is less than the number of beams in the second reference signal resource set, thereby saving overhead.

[0146] The embodiments of the present disclosure at least include the following three reference signal configuration methods:

[0147] Method 1: The performance monitoring reference signal resource set corresponds to the second reference signal resource set, and the network configures the first reference signal resource set and the second reference signal resource set;

[0148] Method 2: The performance monitoring reference signal resource set corresponds to the third reference signal resource set, and the network configures the first reference signal resource set and the third reference signal resource set; in some embodiments, the network configures the relationship between the reference signals in the third reference signal resource set and the second reference signal resource set;

[0149] Method 3: The performance monitoring reference signal resource set includes the second reference signal resource set and the third reference signal resource set, for example, the second reference signal resource set has a larger period and the third reference signal resource set has a smaller period. The network configures the first reference signal resource set, and two performance monitoring reference signal resource sets corresponding to the second reference signal resource set and the third reference signal resource set, respectively.

[0150] In at least one embodiment of the present disclosure, step 401 includes:

[0151] Sends the first configuration information to the terminal, and the first configuration information includes the first reference signal resource set and the second reference signal resource set;

[0152] Or,

[0153] Sends the second configuration information to the terminal, and the second configuration information is associated with the first reference signal resource set and the second reference signal resource set.

[0154] In some embodiments, the first configuration information is configuration information for reporting target information, or configuration information of the reference signal resource.

[0155] In some embodiments, the second configuration information is configuration information of a channel state information (CSI) report for reporting the first result; and the CSI report is associated with the configuration information for reporting the target information.

[0156] For example, the configuration method of the reference signal includes:

[0157] Method 1-1: The report configuration or the reference signal resource configuration for reporting the performance monitoring result includes a first reference signal resource set (e.g., corresponding to SetB) and a second reference signal resource set (corresponding to SetA).

[0158] In some embodiments, the second reference signal resource set includes multiple subsets, e.g., SetA is composed of multiple different SetB, and each subset corresponds to one SetB reference signal resource set.

[0159] Method 1-2: The report configuration for reporting the performance monitoring result is associated with a CSI report for reporting the inference result, and the CSI report configuration for reporting the inference result is associated with the first reference signal resource set (corresponding to SetB) and the second reference signal resource set (corresponding to SetA).

[0160] In other words, the first reference signal resource set and the second reference signal resource set are directly configured in Method 1-1, and the first reference signal resource set and the second reference signal resource set are indirectly associated through the CSI report for reporting the inference result in Method 1-2.

[0161] In yet another optional embodiment of the present disclosure, step 301 includes:

[0162] sending third configuration information and configuration information of a CSI report associated with the third configuration information to the terminal; the third configuration information includes a third reference signal resource set, the configuration information of the CSI report is associated with the first reference signal resource set and the second reference signal resource set, and the CSI report is used for reporting the first result;

[0163] Alternatively,

[0164] sending fourth configuration information to the terminal, the fourth configuration information including the first reference signal resource set and the third reference signal resource set, or the fourth configuration information including the first reference signal resource set, the second reference signal resource set, and the third reference signal resource set.

[0165] In some embodiments, the third configuration information is first report configuration information for reporting the target information.

[0166] In some embodiments, the fourth configuration information is second reporting configuration information for reporting target information, or configuration information of a reference signal resource.

[0167] For example, the configuration method of the reference signal includes:

[0168] Method 2-1: The reporting configuration for reporting performance monitoring results includes a third reference signal resource set (corresponding to performance monitoring reference signal resources, not SetA), and a CSI report associated with reporting inference results, and the CSI report configuration for reporting inference results is associated with a first reference signal resource set (corresponding to SetB) and a second reference signal resource set (corresponding to SetA).

[0169] Method 2-2: The reporting configuration for reporting performance monitoring results includes a first reference signal resource set (corresponding to SetB), a second reference signal resource set (corresponding to SetA), and a third reference signal resource set (corresponding to performance monitoring reference signal resources, not SetA). Among them, the second reference signal resource set is optional.

[0170] Since the terminal infers Top-K beams in SetA, that is, the reference signal corresponding to the inference result belongs to the second reference signal resource set (i.e. SetA), and the performance monitoring reference signal resource set in method 2 is the third reference signal resource set, the terminal needs to determine which reference signal resources in the third reference signal resource set correspond to the inference result, that is, the method for the terminal to determine the reference signal resources in the third reference signal resource set corresponding to the inference result is:

[0171] Method 2-3: The terminal determines the reference signal resources in the third reference signal resource set corresponding to the first result according to the quasi co-location information of the reference signal resources in the second reference signal resource set and the third reference signal resource set; or,

[0172] Method 2-4: The terminal determines the reference signal resources in the third reference signal resource set corresponding to the first result according to the association relationship between the reference signal resources in the second reference signal resource set and the reference signal resources in the third reference signal resource set indicated by the network;

[0173] Among them, the first result is determined by the first reference signal resource set.

[0174] Correspondingly, the method further includes:

[0175] Indicating the terminal the association relationship between the reference signal resources in the second reference signal resource set and the third reference signal resource set.

[0176] In an implementation, the target information comprises one or more of the following:

[0177] a first prediction accuracy, the first prediction accuracy being determined by the terminal according to the first result and a measurement result of the second set of reference signal resources; for example, a result of inference according to the first set of reference signal resources and a reference signal resource with a maximum RSRP measurement value in the second set of reference signal resources;

[0178] a first difference value, the first difference value being a difference or an absolute value of a difference between a first signal strength measurement value and a second signal strength measurement value; the first signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the second set of reference signal resources corresponding to the first result; the second signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the second set of reference signal resources;

[0179] a second difference value, the second difference value being an average of differences or an average of absolute values of differences between K1 third signal strength measurement values and K1 fourth signal strength measurement values; the third signal strength measurement values being signal strength measurement values of reference signal resources in the second set of reference signal resources corresponding to the first result, the fourth signal strength measurement values being signal strength measurement values of reference signal resources in the second set of reference signal resources; K1 being an integer greater than or equal to 2;

[0180] a first target value, the first target value being an average and / or a maximum and / or a minimum of the first prediction accuracy or the first difference value or the second difference value within a first time length; or the first target value being an average and / or a maximum and / or a minimum of the first prediction accuracy or the first difference value or the second difference value in M1 performance monitoring times; M1 being an integer greater than or equal to 2;

[0181] first indication information, the first indication information being used to indicate whether the first target value is greater than or equal to a first threshold value;

[0182] second indication information, the second indication information being used to indicate whether the first target value is less than or equal to a second threshold value;

[0183] a first number of times, the first number of times being a number of times that the first target value is greater than or equal to the first threshold value;

[0184] a second number of times, the second number of times being a number of times that the first target value is less than or equal to the second threshold value;

[0185] wherein the first result is determined by the first set of reference signal resources.

[0186] In another implementation, the target information includes one or more of the following:

[0187] a second prediction accuracy, the second prediction accuracy being determined by the terminal according to the first result and a measurement result of the third set of reference signal resources; for example, a result of inference according to the first set of reference signal resources and a reference signal resource with a maximum RSRP measurement value in the third set of reference signal resources;

[0188] a third difference value, the third difference value being a difference value or an absolute value of a difference value of a fifth signal strength measurement value and a sixth signal strength measurement value; the fifth signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the third set of reference signal resources corresponding to the first result; the sixth signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the third set of reference signal resources;

[0189] a fourth difference value, the fourth difference value being an average value of difference values of K2 seventh signal strength measurement values and K2 eighth signal strength measurement values, or an average value of absolute values of difference values of K2 seventh signal strength measurement values and K2 eighth signal strength measurement values; the seventh signal strength measurement value being a signal strength measurement value of a reference signal resource in the third set of reference signal resources corresponding to the first result; the eighth signal strength measurement value being a signal strength measurement value of a reference signal resource in the third set of reference signal resources; K2 being an integer greater than or equal to 2;

[0190] a second target value, the second target value being an average value and / or a maximum value and / or a minimum value of the second prediction accuracy or the third difference value or the fourth difference value within a second time length; or the second target value being an average value and / or a maximum value and / or a minimum value of the second prediction accuracy or the third difference value or the fourth difference value in M2 performance monitoring; M2 being an integer greater than or equal to 2;

[0191] third indication information, the third indication information being used to indicate whether the second target value is greater than or equal to a third threshold value;

[0192] fourth indication information, the fourth indication information being used to indicate whether the second target value is less than or equal to a fourth threshold value;

[0193] a third number of times, the third number of times being a number of times that the second target value is greater than or equal to the third threshold value;

[0194] a fourth number of times, the fourth number of times being a number of times that the second target value is less than or equal to the fourth threshold value;

[0195] The first result is determined by the first set of reference signal resources.

[0196] To sum up, in the embodiment of the disclosure, the network side device configures at least two reference signal resource sets for inference and performance monitoring for the terminal, and the terminal reports information related to performance monitoring according to the at least two reference signal resource sets; so that the network side device realizes performance monitoring according to the information related to performance monitoring.

[0197] In order to more clearly describe the information processing method provided by the embodiment of the disclosure, an example will be described below.

[0198] Example one:

[0199] Step 1, the terminal determines the reference signal resource used to calculate the performance monitoring related result or report content according to the configuration information of the base station.

[0200] Method 1-1: The configuration information includes a first reference signal resource set (corresponding to SetB) and a second reference signal resource set (corresponding to SetA). Optionally, the second reference signal resource set includes multiple subsets (such as SetA is composed of multiple different SetB, and each subset corresponds to one SetB reference signal resource set).

[0201] Method 1-2: The report configuration for reporting the performance monitoring result is associated with the CSI report for reporting the inference result, and the CSI report configuration for reporting the inference result is associated with the first reference signal resource set (corresponding to SetB) and the second reference signal resource set (corresponding to SetA).

[0202] Method 2-1: The report configuration for reporting the performance monitoring result includes a third reference signal resource set (corresponding to the performance monitoring reference signal resource, not SetA), and is associated with the CSI report for reporting the inference result, and the CSI report configuration for reporting the inference result is associated with the first reference signal resource set (corresponding to SetB) and the second reference signal resource set (corresponding to SetA).

[0203] Method 2-2: The configuration information includes a first reference signal resource set (corresponding to SetB), a second reference signal resource set (corresponding to SetA), and a third reference signal resource set (corresponding to the performance monitoring reference signal resource). Among them, the second reference signal resource set is optional.

[0204] Step 2, the terminal reports one or more of the following:

[0205] The first prediction accuracy, the first prediction accuracy is determined by the terminal according to the first result and the measurement result of the second reference signal resource set;

[0206] a first difference value, the first difference value being a difference or an absolute value of a difference between a first signal strength measurement value and a second signal strength measurement value, the first signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the second reference signal resource set corresponding to the first result, the second signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the second reference signal resource set;

[0207] a second difference value, the second difference value being an average of differences or an average of absolute values of differences between K1 third signal strength measurement values and K1 fourth signal strength measurement values, the third signal strength measurement value being a signal strength measurement value of a reference signal resource in the second reference signal resource set corresponding to the first result, the fourth signal strength measurement value being a signal strength measurement value of a reference signal resource in the second reference signal resource set, K1 being an integer greater than or equal to 2;

[0208] a first target value, the first target value being an average and / or a maximum and / or a minimum of the first prediction accuracy or the first difference value or the second difference value in a first time length, or the first target value being an average and / or a maximum and / or a minimum of the first prediction accuracy or the first difference value or the second difference value in M1 performance monitoring times, M1 being an integer greater than or equal to 2;

[0209] first indication information, the first indication information being used for indicating whether the first target value is greater than or equal to a first threshold value;

[0210] second indication information, the second indication information being used for indicating whether the first target value is less than or equal to a second threshold value;

[0211] a first number of times, the first number of times being a number of times that the first target value is greater than or equal to the first threshold value;

[0212] a second number of times, the second number of times being a number of times that the first target value is less than or equal to the second threshold value;

[0213] a second prediction accuracy, the second prediction accuracy being determined by the terminal according to the first result and a measurement result of the third reference signal resource set;

[0214] a third difference value, the third difference value being a difference or an absolute value of a difference between a fifth signal strength measurement value and a sixth signal strength measurement value, the fifth signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the third reference signal resource set corresponding to the first result, the sixth signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the third reference signal resource set;

[0215] a fourth difference value, the fourth difference value being an average of differences between K2 seventh signal strength measurement values and K2 eighth signal strength measurement values, or an average of absolute values of differences between the K2 seventh signal strength measurement values and the K2 eighth signal strength measurement values, the seventh signal strength measurement values being signal strength measurement values of reference signal resources in the third reference signal resource set corresponding to the first result, the eighth signal strength measurement values being signal strength measurement values of reference signal resources in the third reference signal resource set, K2 being an integer greater than or equal to 2;

[0216] a second target value, the second target value being an average and / or maximum and / or minimum of the second prediction accuracy or the third difference value or the fourth difference value within a second time length; or the second target value being an average and / or maximum and / or minimum of the second prediction accuracy or the third difference value or the fourth difference value in M2 performance monitoring, M2 being an integer greater than or equal to 2;

[0217] third indication information, the third indication information being used for indicating whether the second target value is greater than or equal to a third threshold value;

[0218] fourth indication information, the fourth indication information being used for indicating whether the second target value is less than or equal to a fourth threshold value;

[0219] a third number of times, the third number of times being a number of times that the second target value is greater than or equal to the third threshold value;

[0220] a fourth number of times, the fourth number of times being a number of times that the second target value is less than or equal to the fourth threshold value

[0221] Step 3, if the network configures the third reference signal resource set, the terminal determines a method of a reference signal resource in the third reference signal resource set corresponding to the inference result as:

[0222] Method 2-3: determining according to quasi co-located (QCL) information of reference signal resources in the second reference signal resource set (SetA) and the third reference signal resource set (performance monitoring reference signal).

[0223] For example: a certain inference result corresponds to RS#k in the second reference signal resource set, if RS#j in the third reference signal resource set is a quasi co-located reference signal (QCL reference RS) of RS#k in the second reference signal resource set, or both correspond to the same QCL reference RS, then the prediction beam corresponds to RS#j in the third reference signal set.

[0224] Method 2-4: determining according to an association relationship indicated by the base station.

[0225] For example, the base station configures the third reference signal resource set as [RS#0, RS#1…, RS#7], and indicates the relationship between SetA and the reference signal resources in the third reference signal resource set as [0011223344556677], which means that the first and second beams in SetA correspond to RS#0 in the third reference signal resource set, the third and fourth beams correspond to RS#1 in the third reference signal resource set, …, and the fifteenth and sixteenth beams correspond to RS#7 in the third reference signal resource set.

[0226] Example Two:

[0227] The UE side deploys a spatial beam prediction model, which is used to predict Top-K beams in SetA based on the measurement results of SetB. The base station configures the UE to periodically report performance monitoring results, and the configuration information includes a first reference signal resource set (corresponding to SetB) and a second reference signal resource set (corresponding to SetA). The first reference signal resource set includes 8 reference signal resources, and the second reference signal resource set includes 32 reference signal resources.

[0228] The reported content is the difference between the maximum L1-RSRP measurement value in the reference signal resources corresponding to the Top-3 beams inferred from the first reference signal resource set (SetB) and the maximum L1-RSRP measurement value in the second reference signal resource set (SetA). The reporting condition is determined according to the periodic reporting configured by the base station, and the UE reports at the reporting time.

[0229] Suppose that in a certain performance monitoring, the UE infers the Top-3 beams as the beams corresponding to the 5th, 8th, and 32nd reference signal resources in the second reference signal set based on the measurement results of the first reference signal resource set. The UE measures the reference signal resources in the second reference signal resource set and obtains the maximum L1-RSRP of -63 dBm, and the L1-RSRP corresponding to the 5th, 8th, and 32nd reference signal resources is -73 dBm, -64 dBm, and -75 dBm, respectively. Then the UE reports 1 dB (-63 dBm-(-64 dBm)=1 dB).

[0230] Example Three:

[0231] The UE side deploys a spatial beam prediction model, which is used to predict Top-K beams in SetA based on the measurement results of SetB. The base station configures the UE to periodically report performance monitoring results, and the configuration information includes a first reference signal resource set (corresponding to SetB) and a second reference signal resource set (corresponding to SetA). The first reference signal resource set includes 8 reference signal resources, and the second reference signal resource set includes 32 reference signal resources.

[0232] The reporting content is whether the absolute value of the difference between the L1-RSRP measurement value of the Top-3 beam corresponding to the reference signal resource inferred from the first reference signal resource set (SetB) and the Top-3 L1-RSRP measurement value in the second reference signal resource set (SetA) is greater than or equal to 1 dB in one performance monitoring, if greater than or equal to 1 dB, report 1, otherwise report 0. The reporting condition is to determine the reporting time according to the periodic reporting configured by the base station, and the UE reports at the reporting time.

[0233] Suppose in one performance monitoring, the UE infers that the Top-3 beams are the beams corresponding to the 5th, 8th and 32nd reference signal resources in the second reference signal set according to the measurement results of the first reference signal resource set. The UE measures the reference signal resources in the second reference signal resource set and obtains the Top-3 L1-RSRP as -63 dBm, -65 dBm and -70 dBm. The L1-RSRP corresponding to the 5th, 8th and 32nd reference signal resources is -73 dBm, -64 dBm and -75 dBm, respectively, then the UE reports (|-63-(-73)|+|-65-(-64)|+|-70-(-75)|) / 3=16 / 3 dB.

[0234] Example four:

[0235] The UE side deploys a spatial beam prediction model, which functions to predict the Top-K beams in the SetA beam set based on the measurement results of the SetB beam set. The base station configures the first reference signal resource set (corresponding to SetB), the second reference signal resource set (corresponding to SetA) and the third reference signal resource set (non-SetA). The first reference signal resource set includes 8 reference signal resources, the second reference signal resource set includes 32 reference signal resources. The third reference signal resource set includes 16 reference signal resources.

[0236] The reporting content is the number of times that the absolute value of the difference between the maximum L1-RSRP measurement value of the reference signal resource in the third reference signal resource set corresponding to the Top-1 beam inferred from the first reference signal resource set and the maximum L1-RSRP measurement value in the third reference signal resource set is greater than 2 dB in 20 performance monitoring, and when the number of times that the absolute value of the difference is greater than 2 dB is greater than or equal to 10 times, the reporting is performed.

[0237] Assuming that in a performance monitoring, the UE predicts the Top-1 beam to be the 3rd beam in SetA, corresponding to RS#k in the second reference signal resource set, if RS#j in the third reference signal resource set and RS#k in the second reference signal resource set are both SSB#i, then the UE calculates whether the absolute value of the difference between the L1-RSRP measurement value of RS#j in the third reference signal resource set and the maximum L1-RSRP measurement value of all reference signal resources in the third reference signal resource set is greater than 2dB, and if it is greater than 2dB, the number of times is added by 1.

[0238] Assuming that in 20 performance monitoring, the maximum L1-RSRP measurement value of the reference signal resource in the third reference signal resource set corresponding to the inference result obtained by the UE according to the first reference signal resource set is greater than 2dB 12 times, then the UE reports 12.

[0239] Example five:

[0240] The UE side deploys a spatial domain beam prediction model, which functions to predict Top-K beams in a set of 16 SetA beams based on the measurement results of 4 SetB beams. The base station configures a first reference signal resource set (corresponding to SetB) and a third reference signal resource set (not SetA). The first reference signal resource set includes 4 reference signal resources, and the third reference signal resource set includes 8 reference signal resources. And the output of the AI / ML model or AI / ML function and the corresponding relationship of the reference signal in the third reference signal resource set are [0111233344556667].

[0241] The reporting content is the average value of the absolute value of the difference between the L1-RSRP measurement value of the 2 reference signal resources in the third reference signal resource set corresponding to the Top-2 beams inferred from the first reference signal resource set in 20 performance monitoring and the maximum 2 L1-RSRP measurement values in the third reference signal resource set, and when the number of times that the absolute value of the difference is greater than 2dB is greater than or equal to 10, the UE reports.

[0242] Assume that in a performance monitoring, the UE predicts the Top-2 beams as the 3rd and 4th beams in SetA, and according to the relationship [0111233344556667] indicated by the base station, the 3rd and 4th beams both correspond to the 2nd reference signal in the third reference signal resource set, then the UE calculates the average value of the absolute value of the difference between the L1-RSRP measurement value of the 2nd reference signal in the third reference signal resource set (assuming RSRP_2) and the maximum 2 L1-RSRP (assuming RSRP_12, RSRP_6) measurement values of all reference signal resources in the third reference signal resource set: diff = (|RSRP_2-RSRP_12|+|RSRP_2-RSRP_6|) / 2. If diff is greater than 2dB, the number of times is added by 1.

[0243] Assume that in 20 performance monitoring, the number of times that the UE statistics diff greater than 2dB is 6, which is less than the threshold 10, then the UE does not report.

[0244] Example six:

[0245] The UE side deploys a spatial domain beam prediction model, which functions to predict Top-K beams in a 16-beam SetA beam set based on the measurement results of 4 SetB beams. The base station configures a first reference signal resource set (corresponding to SetB) and a third reference signal resource set (not SetA). The first reference signal resource set includes 4 reference signal resources, and the third reference signal resource set includes 8 reference signal resources. And the output of the AI / ML model or AI / ML function and the corresponding relationship of the reference signals in the third reference signal resource set is [0111233344556667].

[0246] The reporting content is the average prediction accuracy obtained by the reference signal resources or identifiers corresponding to the Top-2 beams obtained by inference according to the measurement results of the first reference signal resource set in 20 performance monitoring and the reference signal resources corresponding to the maximum L1-RSRP measurement value in the third reference signal resource set.

[0247] Suppose that in a performance monitoring, the UE predicts the Top-2 beams as the 3rd and 4th beams in SetA, according to the base station indicated relationship [0111233344556667], the 3rd and 4th beams correspond to the 2nd reference signal resource in the third reference signal resource set, and the reference signal resource with the maximum L1-RSRP in the third reference signal resource set is the 5th reference signal resource, then this prediction is wrong. Suppose that in a performance monitoring, the UE predicts the Top-2 beams as the 6th and 10th beams in SetA, according to the base station indicated relationship [0111233344556667], the 3rd and 4th beams correspond to the 4th and 5th reference signal resources in the third reference signal resource set, and the reference signal resource with the maximum L1-RSRP in the third reference signal resource set is the 4th reference signal resource, then this prediction is correct.

[0248] Suppose that in 20 performance monitoring, the UE predicts correctly 18 times, then the UE reports the prediction accuracy as 0.9 or the UE reports the prediction accuracy as 18 times.

[0249] According to the method of the embodiments of the present disclosure, the L1-RSRP difference between the predicted Top-K beam and the performance monitoring reference signal can be used for performance monitoring, and the performance monitoring set can not be SetA, thereby saving the performance monitoring reference signal overhead.

[0250] As shown in FIG. 5, the embodiments of the present disclosure also provide a terminal, which includes a memory 520, a transceiver 510, and a processor 500:

[0251] The memory 520 is configured to store a computer program; the transceiver 510 is configured to transceive data under the control of the processor 500; and the processor 500 is configured to read the computer program in the memory 520 and perform the following operations:

[0252] determine at least two reference signal resource sets according to network configuration; the at least two reference signal resource sets include: a first reference signal resource set, and a second reference signal resource set and / or a third reference signal resource set;

[0253] send target information to a network side device according to the first reference signal resource set, and the second reference signal resource set and / or the third reference signal resource set;

[0254] The target information is used to indicate performance monitoring related information.

[0255] As an optional embodiment, the processor is further configured to read the computer program in the memory and perform the following operations:

[0256] determining a first result according to the first reference signal resource set;

[0257] determining a second result according to the second reference signal resource set and / or the third reference signal resource set;

[0258] sending the target information to the network side device according to the first result and the second result.

[0259] As an optional embodiment, the processor is further configured to read the computer program in the memory and perform the following operations:

[0260] receiving first configuration information sent by the network side device, the first configuration information comprising the first reference signal resource set and the second reference signal resource set;

[0261] or,

[0262] receiving second configuration information sent by the network side device, the second configuration information being associated with the first reference signal resource set and the second reference signal resource set.

[0263] As an optional embodiment, the first configuration information is configuration information for reporting target information or configuration information of reference signal resources;

[0264] the second configuration information is configuration information of channel state information (CSI) report for reporting the first result; wherein the CSI report is associated with the configuration information for reporting target information.

[0265] As an optional embodiment, the processor is further configured to read the computer program in the memory and perform the following operations:

[0266] receiving third configuration information sent by the network side device and configuration information of CSI report associated with the third configuration information; the third configuration information comprising a third reference signal resource set, the configuration information of the CSI report being associated with the first reference signal resource set and the second reference signal resource set; the CSI report being used for reporting the first result;

[0267] or,

[0268] receiving fourth configuration information sent by the network side device, the fourth configuration information comprising the first reference signal resource set and the third reference signal resource set; or, the fourth configuration information comprising the first reference signal resource set, the second reference signal resource set and the third reference signal resource set.

[0269] As an optional embodiment, the third configuration information is first reporting configuration information for reporting the target information.

[0270] The fourth configuration information is second reporting configuration information for reporting the target information or configuration information of reference signal resources.

[0271] As an optional embodiment, the processor is further configured to read a computer program in the memory and perform the following operations:

[0272] According to the quasi co-location information of the reference signal resources in the second reference signal resource set and the third reference signal resource set, determine the reference signal resource in the third reference signal resource set corresponding to the first result;

[0273] Or,

[0274] According to the association relationship between the reference signal resources in the second reference signal resource set and the reference signal resources in the third reference signal resource set indicated by the network, determine the reference signal resource in the third reference signal resource set corresponding to the first result;

[0275] The first result is determined by the first reference signal resource set.

[0276] As an optional embodiment, the target information includes one or more of the following:

[0277] A first prediction accuracy, which is determined by the terminal according to the first result and the measurement result of the second reference signal resource set;

[0278] A first difference value, which is the difference value or the absolute value of the difference value of a first signal strength measurement value and a second signal strength measurement value; the first signal strength measurement value is the maximum signal strength measurement value of the reference signal resource in the second reference signal resource set corresponding to the first result; the second signal strength measurement value is the maximum signal strength measurement value of the reference signal resource in the second reference signal resource set;

[0279] A second difference value, which is the average value of the difference value of K1 third signal strength measurement values and K1 fourth signal strength measurement values, or the average value of the absolute value of the difference value of K1 third signal strength measurement values and K1 fourth signal strength measurement values; the third signal strength measurement value is the signal strength measurement value of the reference signal resource in the second reference signal resource set corresponding to the first result, and the fourth signal strength measurement value is the signal strength measurement value of the reference signal resource in the second reference signal resource set; K1 is an integer greater than or equal to 2;

[0280] a first target value, the first target value being an average value and / or a maximum value and / or a minimum value of the first prediction accuracy or the first difference value or the second difference value in a first time length; or the first target value being an average value and / or a maximum value and / or a minimum value of the first prediction accuracy or the first difference value or the second difference value in M1 performance monitoring times; M1 being an integer greater than or equal to 2;

[0281] first indication information, the first indication information being used for indicating whether the first target value is greater than or equal to a first threshold value;

[0282] second indication information, the second indication information being used for indicating whether the first target value is less than or equal to a second threshold value;

[0283] a first number of times, the first number of times being a number of times that the first target value is greater than or equal to the first threshold value;

[0284] a second number of times, the second number of times being a number of times that the first target value is less than or equal to the second threshold value.

[0285] As an optional embodiment, the target information comprises one or more of the following:

[0286] a second prediction accuracy, the second prediction accuracy being determined by the terminal according to the first result and a measurement result of the third reference signal resource set;

[0287] a third difference value, the third difference value being a difference value or an absolute value of a difference value of a fifth signal strength measurement value and a sixth signal strength measurement value; the fifth signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the third reference signal resource set corresponding to the first result; the sixth signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the third reference signal resource set;

[0288] a fourth difference value, the fourth difference value being an average value of a difference value of K2 seventh signal strength measurement values and K2 eighth signal strength measurement values, or an average value of absolute values of the difference value of the K2 seventh signal strength measurement values and the K2 eighth signal strength measurement values; the seventh signal strength measurement value being a signal strength measurement value of a reference signal resource in the third reference signal resource set corresponding to the first result; the eighth signal strength measurement value being a signal strength measurement value of a reference signal resource in the third reference signal resource set; K2 being an integer greater than or equal to 2;

[0289] a second target value, the second target value being an average value and / or a maximum value and / or a minimum value of the second prediction accuracy or the third difference value or the fourth difference value in a second time length; or the second target value being an average value and / or a maximum value and / or a minimum value of the second prediction accuracy or the third difference value or the fourth difference value in M2 performance monitoring; M2 being an integer greater than or equal to 2;

[0290] third indication information, the third indication information being used for indicating whether the second target value is greater than or equal to a third threshold value;

[0291] fourth indication information, the fourth indication information being used for indicating whether the second target value is less than or equal to a fourth threshold value;

[0292] a third number of times, the third number of times being a number of times that the second target value is greater than or equal to the third threshold value;

[0293] a fourth number of times, the fourth number of times being a number of times that the second target value is less than or equal to the fourth threshold value.

[0294] As an optional embodiment, the processor is further used for reading the computer program in the memory and performing the following operations:

[0295] determining a target information sending moment according to a periodic reporting configuration or a semi-persistent reporting configuration or an aperiodic reporting configuration configured by the network, and sending the target information to the network side device at the target information sending moment.

[0296] As an optional embodiment, the processor is further used for reading the computer program in the memory and performing the following operations:

[0297] sending target information to a network side device in a case where a first condition is met; wherein the first condition comprises one or more of the following:

[0298] the first target value is greater than or equal to a first threshold value;

[0299] the first target value is less than or equal to a second threshold value;

[0300] the first number of times is greater than or equal to a fifth threshold value;

[0301] the second number of times is greater than or equal to a sixth threshold value;

[0302] the second target value is greater than or equal to a third threshold value;

[0303] the second target value is less than or equal to a fourth threshold value;

[0304] the third number of times is greater than or equal to a seventh threshold value;

[0305] the fourth number of times is greater than or equal to an eighth threshold value.

[0306] In FIG. 5, the bus architecture can include any number of interconnected buses and bridges, specifically, various circuitry of the one or more processors represented by the processor 500 and the memory represented by the memory 520 are linked together. The bus architecture can also link various other circuitry, such as peripheral devices, voltage regulators, and power management circuitry, which are well known in the art, and thus, are not further described herein. The bus interface provides an interface. The transceiver 510 can be a plurality of elements, i.e., including a transmitter and a receiver, providing a means for communicating with various other apparatuses over a transmission medium, including wireless channels, wired channels, optical cables, and the like. The user interface 530 can also be an interface capable of externally connecting the required devices for different user equipment, including but not limited to a keypad, a display, a speaker, a microphone, a joystick, and the like.

[0307] The processor 500 is responsible for managing the bus architecture and general processing, and the memory 520 can store data used by the processor 500 in performing operations.

[0308] Optionally, the processor 500 can be a central processing unit (CPU), an application specific integrated circuit (ASIC), a field-programmable gate array (FPGA), or a complex programmable logic device (CPLD), and the processor can also adopt a multi-core architecture.

[0309] The processor calls a computer program stored in the memory to execute any method provided by the embodiments of the present disclosure according to the obtained executable instructions. The processor and the memory can also be physically arranged separately.

[0310] In the embodiments of the present disclosure, the network side device configures at least two reference signal resource sets for inference and performance monitoring for the terminal, and the terminal reports performance monitoring related information according to the at least two reference signal resource sets; so that the network side device realizes performance monitoring according to the performance monitoring related information.

[0311] It should be noted that the above terminal provided by the embodiments of the present disclosure can implement all method steps achieved by the above method embodiments, and can achieve the same technical effects, and thus, the same parts and beneficial effects of the method embodiments in the embodiments will not be described in detail.

[0312] As shown in FIG. 6, the embodiment of the present disclosure further provides a network side device, comprising a memory 620, a transceiver 610, and a processor 600:

[0313] The memory 620 is configured to store a computer program; the transceiver 610 is configured to transceive data under the control of the processor 600; and the processor 600 is configured to read the computer program in the memory 620 and perform the following operations:

[0314] configuring at least two reference signal resource sets for the terminal; the at least two reference signal resource sets comprise a first reference signal resource set, a second reference signal resource set, and / or a third reference signal resource set;

[0315] receiving target information sent by the terminal according to the at least two reference signal resource sets;

[0316] The target information is used to indicate performance monitoring related information.

[0317] As an optional embodiment, the processor is further configured to read the computer program in the memory and perform the following operations:

[0318] sending first configuration information to the terminal, the first configuration information comprising the first reference signal resource set and the second reference signal resource set;

[0319] Alternatively,

[0320] sending second configuration information to the terminal, the second configuration information being associated with the first reference signal resource set and the second reference signal resource set.

[0321] As an optional embodiment, the processor is further configured to read the computer program in the memory and perform the following operations:

[0322] sending third configuration information and configuration information of a CSI report associated with the third configuration information to the terminal; the third configuration information comprises a third reference signal resource set, the configuration information of the CSI report is associated with the first reference signal resource set and the second reference signal resource set, and the CSI report is used to report a first result;

[0323] Alternatively,

[0324] sending fourth configuration information to the terminal, the fourth configuration information comprising the first reference signal resource set and the third reference signal resource set; or the fourth configuration information comprising the first reference signal resource set, the second reference signal resource set, and the third reference signal resource set.

[0325] As an optional embodiment, the processor is further configured to read a computer program in the memory and perform the following operations:

[0326] indicate the terminal the association relationship between the reference signal resources in the second reference signal resource set and the third reference signal resource set.

[0327] In FIG. 6, the bus architecture can include any number of interconnected buses and bridges, which link together various circuits, such as one or more processors represented by the processor 600 and the memory represented by the memory 620. The bus architecture can also link together various other circuits, such as peripheral devices, voltage regulators, and power management circuits, which are well known in the art and thus will not be described further herein. The bus interface provides an interface. The transceiver 610 can be a plurality of elements, i.e., including a transmitter and a receiver, which provide a unit for communicating with various other devices on transmission media, including wireless channels, wired channels, optical cables, and the like. The processor 600 is responsible for managing the bus architecture and general processing, and the memory 620 can store data used by the processor 600 in performing operations.

[0328] The processor 600 can be a central processing unit (CPU), an application specific integrated circuit (ASIC), a field-programmable gate array (FPGA), or a complex programmable logic device (CPLD), and the processor can also adopt a multi-core architecture.

[0329] In the embodiments of the present disclosure, the network side device configures at least two reference signal resource sets for inference and performance monitoring for the terminal, and the terminal reports performance monitoring related information according to the at least two reference signal resource sets; so that the network side device realizes performance monitoring according to the performance monitoring related information.

[0330] It should be noted that the above network side device provided by the embodiments of the present disclosure can realize all method steps realized by the above method embodiments, and can achieve the same technical effects, and thus the same parts and beneficial effects of the method embodiments will not be described in detail.

[0331] As shown in FIG. 7, the embodiments of the present disclosure also provide an information processing apparatus applied to a terminal, the apparatus comprising:

[0332] The determining unit 701 is configured to determine at least two reference signal resource sets according to network configuration; the at least two reference signal resource sets comprise a first reference signal resource set, and a second reference signal resource set and / or a third reference signal resource set.

[0333] The sending unit 702 is configured to send target information to a network side device according to the first reference signal resource set, the second reference signal resource set and / or the third reference signal resource set.

[0334] The target information is used for indicating performance monitoring related information.

[0335] As an optional embodiment, the sending unit comprises:

[0336] The first determining sub-unit is configured to determine a first result according to the first reference signal resource set.

[0337] The second determining sub-unit is configured to determine a second result according to the second reference signal resource set and / or the third reference signal resource set.

[0338] The first sending sub-unit is configured to send the target information to the network side device according to the first result and the second result.

[0339] As an optional embodiment, the determining unit comprises:

[0340] The first receiving sub-unit is configured to receive first configuration information sent by a network side device, wherein the first configuration information comprises the first reference signal resource set and the second reference signal resource set.

[0341] And / or,

[0342] The second receiving sub-unit is configured to receive second configuration information sent by a network side device, wherein the second configuration information is associated with the first reference signal resource set and the second reference signal resource set.

[0343] As an optional embodiment, the first configuration information is configuration information for reporting target information or configuration information of reference signal resources.

[0344] The second configuration information is configuration information of channel state information (CSI) report for reporting the first result; wherein the CSI report is associated with the configuration information for reporting the target information.

[0345] As an optional embodiment, the determining unit comprises:

[0346] a third receiving subunit, configured to receive third configuration information sent by a network-side device and configuration information of a CSI report associated with the third configuration information; the third configuration information comprises a third reference signal resource set, and the configuration information of the CSI report is associated with the first reference signal resource set and the second reference signal resource set; the CSI report is used to report a first result;

[0347] and / or,

[0348] a fourth receiving subunit, configured to receive fourth configuration information sent by the network-side device, the fourth configuration information comprising the first reference signal resource set and the third reference signal resource set; or, the fourth configuration information comprising the first reference signal resource set, the second reference signal resource set and the third reference signal resource set.

[0349] As an optional embodiment, the third configuration information is first report configuration information used to report target information.

[0350] or,

[0351] the fourth configuration information is second report configuration information used to report target information or configuration information of reference signal resources.

[0352] As an optional embodiment, the apparatus further comprises:

[0353] a second determining unit, configured to determine, according to quasi-co-location information of reference signal resources in the second reference signal resource set and the third reference signal resource set, a reference signal resource in the third reference signal resource set corresponding to the first result.

[0354] or,

[0355] a third determining unit, configured to determine, according to an association relationship between reference signal resources in the second reference signal resource set and reference signal resources in the third reference signal resource set indicated by the network, a reference signal resource in the third reference signal resource set corresponding to the first result.

[0356] wherein, the first result is determined by the first reference signal resource set.

[0357] As an optional embodiment, the target information comprises one or more of the following:

[0358] a first prediction accuracy, which is determined by the terminal according to the first result and a measurement result of the second reference signal resource set;

[0359] a first difference value, the first difference value being a difference or an absolute value of a difference between a first signal strength measurement value and a second signal strength measurement value, the first signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the second reference signal resource set corresponding to the first result, the second signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the second reference signal resource set;

[0360] a second difference value, the second difference value being an average of differences or an average of absolute values of differences between K1 third signal strength measurement values and K1 fourth signal strength measurement values, the third signal strength measurement value being a signal strength measurement value of a reference signal resource in the second reference signal resource set corresponding to the first result, the fourth signal strength measurement value being a signal strength measurement value of a reference signal resource in the second reference signal resource set, K1 being an integer greater than or equal to 2;

[0361] a first target value, the first target value being an average and / or a maximum and / or a minimum of the first prediction accuracy or the first difference value or the second difference value in a first time length, or the first target value being an average and / or a maximum and / or a minimum of the first prediction accuracy or the first difference value or the second difference value in M1 performance monitoring times, M1 being an integer greater than or equal to 2;

[0362] first indication information, the first indication information being used for indicating whether the first target value is greater than or equal to a first threshold value;

[0363] second indication information, the second indication information being used for indicating whether the first target value is less than or equal to a second threshold value;

[0364] a first number of times, the first number of times being a number of times that the first target value is greater than or equal to the first threshold value;

[0365] a second number of times, the second number of times being a number of times that the first target value is less than or equal to the second threshold value.

[0366] As an optional embodiment, the target information comprises one or more of the following:

[0367] a second prediction accuracy, the second prediction accuracy being determined by the terminal according to the first result and a measurement result of the third reference signal resource set;

[0368] a third difference value, the third difference value being a difference value or an absolute value of a difference value of a fifth signal strength measurement value and a sixth signal strength measurement value, the fifth signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the third reference signal resource set corresponding to the first result, the sixth signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the third reference signal resource set;

[0369] a fourth difference value, the fourth difference value being an average value of difference values of K2 seventh signal strength measurement values and K2 eighth signal strength measurement values, or an average value of absolute values of difference values of the K2 seventh signal strength measurement values and the K2 eighth signal strength measurement values, the seventh signal strength measurement value being a signal strength measurement value of a reference signal resource in the third reference signal resource set corresponding to the first result, the eighth signal strength measurement value being a signal strength measurement value of a reference signal resource in the third reference signal resource set, K2 being an integer greater than or equal to 2;

[0370] a second target value, the second target value being an average value and / or a maximum value and / or a minimum value of the second prediction accuracy or the third difference value or the fourth difference value in a second time length, or the second target value being an average value and / or a maximum value and / or a minimum value of the second prediction accuracy or the third difference value or the fourth difference value in M2 performance monitoring times, M2 being an integer greater than or equal to 2;

[0371] third indication information, the third indication information being used for indicating whether the second target value is greater than or equal to a third threshold value;

[0372] fourth indication information, the fourth indication information being used for indicating whether the second target value is less than or equal to a fourth threshold value;

[0373] a third number of times, the third number of times being a number of times that the second target value is greater than or equal to the third threshold value;

[0374] a fourth number of times, the fourth number of times being a number of times that the second target value is less than or equal to the fourth threshold value.

[0375] As an optional embodiment, the sending unit comprises:

[0376] a third sending sub-unit, configured to determine a target information sending moment according to a periodic reporting configuration or a semi-persistent reporting configuration or an aperiodic reporting configuration configured by the network, and send the target information to the network side device at the target information sending moment.

[0377] As an optional embodiment, the sending unit comprises:

[0378] The fourth sending sub-unit is configured to send target information to the network-side device in the case where a first condition is satisfied; wherein the first condition comprises one or more of the following:

[0379] The first target value is greater than or equal to a first threshold value;

[0380] The first target value is less than or equal to a second threshold value;

[0381] The first number of times is greater than or equal to a fifth threshold value;

[0382] The second number of times is greater than or equal to a sixth threshold value;

[0383] The second target value is greater than or equal to a third threshold value;

[0384] The second target value is less than or equal to a fourth threshold value;

[0385] The third number of times is greater than or equal to a seventh threshold value;

[0386] The fourth number of times is greater than or equal to an eighth threshold value.

[0387] In the embodiments of the present disclosure, the network-side device configures at least two reference signal resource sets for the terminal for inference and performance monitoring, and the terminal reports performance monitoring related information according to the at least two reference signal resource sets; so that the network-side device realizes performance monitoring according to the performance monitoring related information.

[0388] It should be noted that the above device provided by the embodiments of the present disclosure can realize all the method steps realized by the above method embodiments, and achieve the same technical effects. Therefore, the same parts and beneficial effects of the method embodiments will not be described in detail.

[0389] As shown in FIG. 8, the embodiments of the present disclosure also provide an information processing device applied to a network-side device, the device comprises:

[0390] The configuration unit 801 is configured to configure at least two reference signal resource sets for a terminal; the at least two reference signal resource sets comprise a first reference signal resource set, and a second reference signal resource set and / or a third reference signal resource set;

[0391] The receiving unit 802 is configured to receive target information sent by the terminal according to the at least two reference signal resource sets;

[0392] The target information is used to indicate performance monitoring related information.

[0393] As an optional embodiment, the configuration unit comprises:

[0394] The first configuration subunit is configured to send first configuration information to the terminal, wherein the first configuration information comprises the first reference signal resource set and the second reference signal resource set.

[0395] Alternatively,

[0396] The second configuration subunit is configured to send second configuration information to the terminal, wherein the second configuration information is associated with the first reference signal resource set and the second reference signal resource set.

[0397] As an optional embodiment, the first configuration information is configuration information for reporting target information, or configuration information of reference signal resources.

[0398] The second configuration information is configuration information of channel state information (CSI) reporting for reporting first results, wherein the CSI reporting is associated with the configuration information for reporting target information.

[0399] As an optional embodiment, the configuration unit comprises:

[0400] The third configuration subunit is configured to send third configuration information and configuration information of CSI reporting associated with the third configuration information to the terminal, wherein the third configuration information comprises a third reference signal resource set, the configuration information of CSI reporting is associated with the first reference signal resource set and the second reference signal resource set, and the CSI reporting is used for reporting first results.

[0401] Alternatively,

[0402] The fourth configuration subunit is configured to send fourth configuration information to the terminal, wherein the fourth configuration information comprises the first reference signal resource set and the third reference signal resource set, or the fourth configuration information comprises the first reference signal resource set, the second reference signal resource set and the third reference signal resource set.

[0403] As an optional embodiment, the third configuration information is first reporting configuration information for reporting target information.

[0404] The fourth configuration information is second reporting configuration information for reporting target information, or configuration information of reference signal resources.

[0405] As an optional embodiment, the apparatus further comprises:

[0406] The indication unit is configured to indicate the terminal of an association relationship of reference signal resources in the second reference signal resource set and the third reference signal resource set.

[0407] As an optional embodiment, the target information comprises one or more of the following:

[0408] a first prediction accuracy, the first prediction accuracy being determined by the terminal according to the first result and a measurement result of the second set of reference signal resources;

[0409] a first difference value, the first difference value being a difference or an absolute value of a difference between a first signal strength measurement value and a second signal strength measurement value; the first signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the second set of reference signal resources corresponding to the first result; the second signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the second set of reference signal resources;

[0410] a second difference value, the second difference value being an average of differences or an average of absolute values of differences between K1 third signal strength measurement values and K1 fourth signal strength measurement values; the third signal strength measurement value being a signal strength measurement value of a reference signal resource in the second set of reference signal resources corresponding to the first result, the fourth signal strength measurement value being a signal strength measurement value of a reference signal resource in the second set of reference signal resources; K1 being an integer greater than or equal to 2;

[0411] a first target value, the first target value being an average and / or a maximum and / or a minimum of the first prediction accuracy or the first difference value or the second difference value within a first time length; or the first target value being an average and / or a maximum and / or a minimum of the first prediction accuracy or the first difference value or the second difference value in M1 performance monitoring times; M1 being an integer greater than or equal to 2;

[0412] first indication information, the first indication information being used for indicating whether the first target value is greater than or equal to a first threshold value;

[0413] second indication information, the second indication information being used for indicating whether the first target value is less than or equal to a second threshold value;

[0414] a first number of times, the first number of times being a number of times that the first target value is greater than or equal to the first threshold value;

[0415] a second number of times, the second number of times being a number of times that the first target value is less than or equal to the second threshold value;

[0416] wherein the first result is determined by the first set of reference signal resources.

[0417] As an optional embodiment, the target information comprises one or more of the following:

[0418] a second prediction accuracy, the second prediction accuracy being determined by the terminal according to the first result and a measurement result of the third set of reference signal resources;

[0419] a third difference value, the third difference value being a difference value or an absolute value of a difference value of a fifth signal strength measurement value and a sixth signal strength measurement value; the fifth signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the third set of reference signal resources corresponding to the first result; the sixth signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the third set of reference signal resources;

[0420] a fourth difference value, the fourth difference value being an average value of difference values of K2 seventh signal strength measurement values and K2 eighth signal strength measurement values, or an average value of absolute values of difference values of the K2 seventh signal strength measurement values and the K2 eighth signal strength measurement values; the seventh signal strength measurement value being a signal strength measurement value of a reference signal resource in the third set of reference signal resources corresponding to the first result; the eighth signal strength measurement value being a signal strength measurement value of a reference signal resource in the third set of reference signal resources; K2 being an integer greater than or equal to 2;

[0421] a second target value, the second target value being an average value and / or a maximum value and / or a minimum value of the second prediction accuracy or the third difference value or the fourth difference value within a second time length; or the second target value being an average value and / or a maximum value and / or a minimum value of the second prediction accuracy or the third difference value or the fourth difference value in M2 performance monitoring; M2 being an integer greater than or equal to 2;

[0422] third indication information, the third indication information being used to indicate whether the second target value is greater than or equal to a third threshold value;

[0423] fourth indication information, the fourth indication information being used to indicate whether the second target value is less than or equal to a fourth threshold value;

[0424] a third number of times, the third number of times being a number of times that the second target value is greater than or equal to the third threshold value;

[0425] a fourth number of times, the fourth number of times being a number of times that the second target value is less than or equal to the fourth threshold value;

[0426] The first result is determined by the first set of reference signal resources.

[0427] In the embodiments of the present disclosure, a network side device configures at least two sets of reference signal resources for a terminal for inference and performance monitoring, and the terminal reports information related to performance monitoring according to the at least two sets of reference signal resources; so that the network side device implements performance monitoring according to the information related to performance monitoring.

[0428] It should be noted that the above device provided by the embodiments of the present disclosure can realize all the method steps achieved by the method embodiments and achieve the same technical effects. The same parts and beneficial effects of the embodiments of the present disclosure as the method embodiments will not be described in detail.

[0429] It should be noted that the division of units in the embodiments of the present disclosure is illustrative, and is only a logical functional division. In actual implementation, another division mode can be used. In addition, each functional unit in each embodiment of the present disclosure can be integrated in one processing unit, or each unit can exist physically independently, or two or more units can be integrated in one unit. The integrated unit can be realized in the form of hardware or in the form of a software functional unit.

[0430] When the integrated unit is realized 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 solutions of the present disclosure, essentially or the part that contributes to the related art, or all or part of the technical solutions can be embodied in the form of a software product. The computer software product is stored in a storage medium, and includes a number of instructions to make a computer device (which can be a personal computer, a server, or a network device, etc.) or a processor execute all or part of the steps of the methods described in the embodiments of the present disclosure. The aforementioned storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, and various media that can store program codes.

[0431] The embodiments of the present disclosure further provide a processor-readable storage medium, which stores a computer program for causing a processor to perform each process in the method embodiments and achieve the same technical effects as described above. To avoid repetition, details are not described herein. The processor-readable storage medium can be any available medium or data storage device that a processor can access, including but not limited to a magnetic storage (e.g., floppy disk, hard disk, magnetic tape, magneto-optical disk (MO), etc.), an optical storage (e.g., compact disc (CD), digital video disc (DVD), Blu-ray disc (BD), high-definition versatile disc (HVD), etc.), and a semiconductor storage (e.g., ROM, erasable programmable read-only memory (EPROM), electrically erasable programmable read-only memory (EEPROM), non-volatile memory (NAND FLASH), solid state disk (SSD), etc.), etc.

[0432] The embodiments of the present disclosure further provide a computer program product, which includes computer instructions, and the computer instructions, when executed by a processor, implement each process in the method embodiments and achieve the same technical effects as described above. To avoid repetition, details are not described herein.

[0433] Those skilled in the art should understand that the embodiments of the present disclosure can be provided as a method, a system, or a computer program product. Therefore, the present disclosure can take the form of an entirely hardware embodiment, an entirely software embodiment, or an embodiment combining software and hardware aspects. Moreover, the present disclosure can take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to disk storage and optical storage, etc.) containing computer-usable program code.

[0434] The computer executable instructions can also be loaded onto a computer or other programmable data processing apparatus to cause a series of operations steps to be performed on the computer or other programmable apparatus to produce a computer implemented process such that the instructions which execute on the computer or other programmable apparatus provide steps for implementing the functions specified in the flowchart block or blocks.

[0435] These processor-executable instructions can also be stored in a processor-readable memory that can direct the computer or other programmable data processing apparatus to function in a particular manner, such that the instructions stored in the processor-readable memory produce an article of manufacture including instructions which implement the function specified in the flowchart block or blocks.

[0436] These processor-executable instructions can also be loaded onto a computer or other programmable data processing apparatus to cause a series of operations steps to be performed on the computer or other programmable apparatus to produce a computer implemented process such that the instructions which execute on the computer or other programmable apparatus provide steps for implementing the functions specified in the flowchart block or blocks.

[0437] Further, it is required to point out that in the apparatus and the method of the present disclosure, it is obvious that each component or each step can be decomposed and / or recombined. These decompositions and / or recombinations should be considered as equivalent solutions of the present disclosure. Moreover, the steps of performing the above series of processes can be executed in time sequence naturally according to the order of description, but it is not necessary to be executed in time sequence, and some steps can be executed in parallel or independently of each other. It can be understood by those skilled in the art that all or any steps or components of the method and apparatus of the present disclosure can be implemented in hardware, firmware, software or a combination thereof in any computing device (including processors, storage media, etc.) or network of computing devices, which can be realized by those skilled in the art with their basic programming skills by reading the description of the present disclosure.

[0438] It should be noted that the division of the above modules is only a logical functional division, and all or part of them can be integrated into a physical entity or physically separated in actual implementation. These modules can all be implemented in the form of software called by a processing element; all can be implemented in the form of hardware; or some modules can be implemented in the form of software called by a processing element, and some modules can be implemented in the form of hardware. For example, a certain module can be a separately established processing element, or can be integrated into a certain chip of the above device, in addition, it can also be stored in the form of program code in the memory of the above device, and the function of the above determination module is called and executed by a certain processing element of the above device. The implementation of other modules is similar. In addition, all or part of these modules can be integrated together or independently implemented. The processing element described herein can be an integrated circuit with signal processing capability. In the implementation process, each step of the above method or each module can be completed by the integrated logic circuit of the hardware in the processor element or the instruction in the form of software.

[0439] For example, each module, unit, sub-unit or sub-module can be one or more integrated circuits configured to implement the above method, such as one or more application specific integrated circuits (ASICs), or one or more digital signal processors (DSPs), or one or more field programmable gate arrays (FPGAs), etc. For another example, when a certain module above is implemented in the form of program code called by a processing element, the processing element can be a general-purpose processor, such as a central processing unit (CPU) or other processor that can call program code. For another example, these modules can be integrated together to implement in the form of system on a chip (SOC).

[0440] The terminology used in the description and the claims of the present disclosure is intended to be interpreted in only its broadest reasonable manner, even though it is used in conjunction with a general symbolic representation of the concepts. The terms "comprises," "comprising," "includes," "including" and "contains," "containing," are intended to be open-ended, meaning that they include at least the elements specified after such terms, but do not exclude other elements. The terms "first," "second," and the like, do not denote any ordinal, sequential, or high-low relationship, but are used to distinguish one from another. The terms "and / or," and / or "and / or" are intended to cover all possible combinations of the elements, including individual elements, combinations, and / or sub-combinations of the elements, and can be used interchangeably with the term "and / or". The term "or" is intended to mean an inclusive "or" rather than an exclusive "or". That is, unless specified otherwise, or clear from the context, the phrase "X employs A or B" is intended to mean that the alternative of "A or B" is the

[0441] It will be apparent to those skilled in the art that various modifications and variations can be made to the present disclosure without departing from the spirit or scope of the disclosure. Thus, it is intended that the present disclosure cover the modifications and variations of this disclosure provided such modifications and variations come within the scope of the application and the equivalents thereof.

Claims

1. An information processing method, performed by a terminal, the method comprising: determining, according to network configuration, at least two reference signal resource sets; the at least two reference signal resource sets comprising: a first reference signal resource set, and a second reference signal resource set and / or a third reference signal resource set; transmitting, to a network-side device, target information according to the first reference signal resource set, and the second reference signal resource set and / or the third reference signal resource set; wherein the target information is used to indicate performance monitoring related information. The transmitting, to the network-side device, target information according to the first reference signal resource set, and the second reference signal resource set and / or the third reference signal resource set comprises: determining a first result according to the first reference signal resource set; determining a second result according to the second reference signal resource set and / or the third reference signal resource set; and transmitting, to the network-side device, the target information according to the first result and the second result. The determining, according to network configuration, at least two reference signal resource sets comprises: receiving first configuration information transmitted by the network-side device, the first configuration information comprising the first reference signal resource set and the second reference signal resource set; or receiving second configuration information transmitted by the network-side device, the second configuration information being associated with the first reference signal resource set and the second reference signal resource set.

4. The method of claim 3, wherein the first configuration information is configuration information for reporting target information or configuration information of reference signal resources; and the CSI report is associated with the configuration information for reporting target information. The determining, according to network configuration, at least two reference signal resource sets comprises: receiving third configuration information transmitted by the network-side device and configuration information of a CSI report associated with the third configuration information; the third configuration information comprising a third reference signal resource set, the configuration information of the CSI report being associated with the first reference signal resource set and the second reference signal resource set, and the CSI report being used to report a first result; or receiving fourth configuration information transmitted by the network-side device, the fourth configuration information comprising the first reference signal resource set and the third reference signal resource set, or the fourth configuration information comprising the first reference signal resource set, the second reference signal resource set, and the third reference signal resource set.

2. The method of claim 1, wherein, 6. The method of claim 5, wherein the third configuration information is first reporting configuration information for reporting target information; and the fourth configuration information is second reporting configuration information for reporting target information or configuration information of reference signal resources.

7. The method of claim 5, further comprising: determining, according to quasi co-location information of reference signal resources in the second reference signal resource set and the third reference signal resource set, a reference signal resource in the third reference signal resource set corresponding to the first result; or ​ ​ 3. The method of claim 1, wherein, ​ ​ ​ ​ ​ The second configuration information is configuration information of a channel state information (CSI) report for reporting the first result. ​ 5. The method of claim 1, wherein, ​ ​ ​ ​ ​ ​ ​ ​ ​ determining, according to an association relationship between a reference signal resource in the second reference signal resource set and a reference signal resource in the third reference signal resource set, a reference signal resource corresponding to the first result in the third reference signal resource set; wherein the first result is determined by the first reference signal resource set.

8. The method according to any one of claims 2-7, wherein, The target information includes one or more of the following: a first prediction accuracy, which is determined by the terminal according to a measurement result of the first result and the second reference signal resource set; a first difference value, which is a difference value or an absolute value of a difference value of a first signal strength measurement value and a second signal strength measurement value; the first signal strength measurement value is a maximum signal strength measurement value of a reference signal resource in the second reference signal resource set corresponding to the first result; and the second signal strength measurement value is a maximum signal strength measurement value of a reference signal resource in the second reference signal resource set; a second difference value, which is an average value of a difference value of K1 third signal strength measurement values and K1 fourth signal strength measurement values, or an average value of absolute values of the difference values; the third signal strength measurement value is a signal strength measurement value of a reference signal resource in the second reference signal resource set corresponding to the first result, and the fourth signal strength measurement value is a signal strength measurement value of a reference signal resource in the second reference signal resource set; K1 is an integer greater than or equal to 2; a first target value, which is an average value and / or a maximum value and / or a minimum value of the first prediction accuracy or the first difference value or the second difference value within a first time length; or the first target value is an average value and / or a maximum value and / or a minimum value of the first prediction accuracy or the first difference value or the second difference value in M1 performance monitoring times; M1 is an integer greater than or equal to 2; first indication information, which is used to indicate whether the first target value is greater than or equal to a first threshold value; second indication information, which is used to indicate whether the first target value is less than or equal to a second threshold value; a first number of times, which is a number of times that the first target value is greater than or equal to the first threshold value; a second number of times, which is a number of times that the first target value is less than or equal to the second threshold value.

9. The method according to any one of claims 2-7, wherein, The target information includes one or more of the following: a second prediction accuracy, which is determined by the terminal according to a measurement result of the first result and the third reference signal resource set; a third difference value, which is a difference value or an absolute value of a difference value of a fifth signal strength measurement value and a sixth signal strength measurement value; the fifth signal strength measurement value is a maximum signal strength measurement value of a reference signal resource in the third reference signal resource set corresponding to the first result; and the sixth signal strength measurement value is a maximum signal strength measurement value of a reference signal resource in the third reference signal resource set. a fourth difference value, the fourth difference value being an average of differences between K2 seventh signal strength measurement values and K2 eighth signal strength measurement values, or an average of absolute values of differences between the K2 seventh signal strength measurement values and the K2 eighth signal strength measurement values, the seventh signal strength measurement values being signal strength measurement values of reference signal resources in a third reference signal resource set corresponding to the first result, the eighth signal strength measurement values being signal strength measurement values of the reference signal resources in the third reference signal resource set, K2 being an integer greater than or equal to 2; a second target value, the second target value being an average and / or maximum and / or minimum of the second prediction accuracy or the third difference value or the fourth difference value in a second time length, or the second target value being an average and / or maximum and / or minimum of the second prediction accuracy or the third difference value or the fourth difference value in M2 performance monitoring times, M2 being an integer greater than or equal to 2; third indication information, the third indication information being used to indicate whether the second target value is greater than or equal to a third threshold value; fourth indication information, the fourth indication information being used to indicate whether the second target value is less than or equal to a fourth threshold value; a third number of times, the third number of times being a number of times that the second target value is greater than or equal to the third threshold value; a fourth number of times, the fourth number of times being a number of times that the second target value is less than or equal to the fourth threshold value.

10. The method of claim 1, wherein, The sending of the target information to the network side device includes: determining a target information sending time according to a periodic reporting configuration or a semi-persistent reporting configuration or an aperiodic reporting configuration configured by the network, and sending the target information to the network side device at the target information sending time.

11. The method of claim 8 or 9, wherein, The sending of the target information to the network side device includes: in a case where a first condition is met, sending the target information to the network side device, wherein the first condition includes one or more of the following: the first target value is greater than or equal to a first threshold value; the first target value is less than or equal to a second threshold value; the first number of times is greater than or equal to a fifth threshold value; the second number of times is greater than or equal to a sixth threshold value; the second target value is greater than or equal to a third threshold value; the second target value is less than or equal to a fourth threshold value; the third number of times is greater than or equal to a seventh threshold value; the fourth number of times is greater than or equal to an eighth threshold value.

12. An information processing method, performed by a network side device, the method comprising: configuring at least two reference signal resource sets for a terminal; the at least two reference signal resource sets including a first reference signal resource set, and a second reference signal resource set and / or a third reference signal resource set; receiving target information sent by the terminal according to the at least two reference signal resource sets; wherein the target information is used to indicate performance monitoring related information.

13. The method of claim 12, wherein, configuring at least two reference signal resource sets for a terminal includes: sending first configuration information to the terminal, the first configuration information including the first reference signal resource set and the second reference signal resource set; or, sending second configuration information to the terminal, the second configuration information being associated with the first reference signal resource set and the second reference signal resource set.

14. The method of claim 13, wherein the first configuration information is configuration information for reporting target information or configuration information of reference signal resources. The second configuration information is configuration information of a channel state information (CSI) report for reporting the first result. The CSI report is associated with the configuration information for reporting target information.

15. The method of claim 12, wherein, configuring the terminal with at least two reference signal resource sets, including: sending third configuration information and configuration information of a CSI report associated with the third configuration information to the terminal, the third configuration information including a third reference signal resource set, the configuration information of the CSI report being associated with the first reference signal resource set and the second reference signal resource set, the CSI report being used for reporting a first result. Or, sending fourth configuration information to the terminal, the fourth configuration information including the first reference signal resource set and the third reference signal resource set, or the fourth configuration information including the first reference signal resource set, the second reference signal resource set and the third reference signal resource set.

16. The method of claim 15, wherein the third configuration information is first reporting configuration information for reporting target information. The fourth configuration information is second reporting configuration information for reporting target information or configuration information of reference signal resources.

17. The method of claim 15, further comprising: indicating, to the terminal, an association relationship of reference signal resources in the second reference signal resource set and the third reference signal resource set.

18. The method according to any one of claims 12-17, characterized by, The target information includes one or more of: a first prediction accuracy determined by the terminal according to the first result and a measurement result of the second reference signal resource set; a first difference value, the first difference value being a difference value or an absolute value of a difference value of a first signal strength measurement value and a second signal strength measurement value; the first signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the second reference signal resource set corresponding to the first result, and the second signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the second reference signal resource set; a second difference value, the second difference value being an average value of a difference value of K1 third signal strength measurement values and K1 fourth signal strength measurement values or an average value of absolute values of the difference values, the third signal strength measurement value being a signal strength measurement value of a reference signal resource in the second reference signal resource set corresponding to the first result, and the fourth signal strength measurement value being a signal strength measurement value of a reference signal resource in the second reference signal resource set; K1 being an integer greater than or equal to 2. a first target value, the first target value being an average value and / or a maximum value and / or a minimum value of the first prediction accuracy or the first difference or the second difference within a first time length; or the first target value being an average value and / or a maximum value and / or a minimum value of the first prediction accuracy or the first difference or the second difference in M1 performance monitoring times; M1 being an integer greater than or equal to 2; M1 is an integer greater than or equal to 2; first indication information, the first indication information being used for indicating whether the first target value is greater than or equal to a first threshold value; second indication information, the second indication information being used for indicating whether the first target value is less than or equal to a second threshold value; a first number of times, the first number of times being a number of times that the first target value is greater than or equal to the first threshold value; a second number of times, the second number of times being a number of times that the first target value is less than or equal to the second threshold value; wherein the first result is determined based on the first reference signal resource set.

19. The method of any one of claims 12-17, wherein, the target information comprises one or more of the following: a second prediction accuracy, the second prediction accuracy being determined by the terminal according to the first result and a measurement result of the third reference signal resource set; a third difference, the third difference being a difference or an absolute value of a difference between a fifth signal strength measurement value and a sixth signal strength measurement value; the fifth signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the third reference signal resource set corresponding to the first result; the sixth signal strength measurement value being a maximum signal strength measurement value of a reference signal resource in the third reference signal resource set; a fourth difference, the fourth difference being an average value of differences between K2 seventh signal strength measurement values and K2 eighth signal strength measurement values, or an average value of absolute values of differences between K2 seventh signal strength measurement values and K2 eighth signal strength measurement values; the seventh signal strength measurement value being a signal strength measurement value of a reference signal resource in the third reference signal resource set corresponding to the first result; the eighth signal strength measurement value being a signal strength measurement value of a reference signal resource in the third reference signal resource set; K2 being an integer greater than or equal to 2; a second target value, the second target value being an average value and / or a maximum value and / or a minimum value of the second prediction accuracy or the third difference or the fourth difference within a second time length; or the second target value being an average value and / or a maximum value and / or a minimum value of the second prediction accuracy or the third difference or the fourth difference in M2 performance monitoring times; M2 being an integer greater than or equal to 2; third indication information, the third indication information being used for indicating whether the second target value is greater than or equal to a third threshold value; fourth indication information, the fourth indication information being used for indicating whether the second target value is less than or equal to a fourth threshold value; a third number of times, the third number of times being a number of times that the second target value is greater than or equal to the third threshold value; a fourth number of times, the fourth number of times being a number of times that the second target value is less than or equal to the fourth threshold value; wherein the first result is determined based on the first reference signal resource set.

20. A terminal comprising a memory, a transceiver, and a processor: a memory for storing a computer program; a transceiver for transceiving data under control of the processor; A processor is configured to read a computer program in the memory and perform the following operations: determining at least two reference signal resource sets according to network configuration; the at least two reference signal resource sets include a first reference signal resource set, and a second reference signal resource set and / or a third reference signal resource set; sending target information to a network side device according to the first reference signal resource set, and the second reference signal resource set and / or the third reference signal resource set; wherein the target information is used to indicate performance monitoring related information.

21. The terminal of claim 20, wherein, The processor is further configured to read a computer program in the memory and perform the following operations: determining a first result according to the first reference signal resource set; determining a second result according to the second reference signal resource set and / or the third reference signal resource set; sending the target information to the network side device according to the first result and the second result.

22. The terminal of claim 20, wherein, The processor is further configured to read a computer program in the memory and perform the following operations: receiving first configuration information sent by the network side device, the first configuration information including the first reference signal resource set and the second reference signal resource set; or, receiving second configuration information sent by the network side device, the second configuration information being associated with the first reference signal resource set and the second reference signal resource set.

23. The terminal according to claim 22, wherein the first configuration information is configuration information for reporting target information or configuration information of reference signal resources; The second configuration information is configuration information of a channel state information (CSI) report for reporting the first result. the CSI report is associated with the configuration information for reporting target information.

24. The terminal of claim 20, wherein, The processor is further configured to read a computer program in the memory and perform the following operations: receiving third configuration information sent by the network side device and configuration information of a CSI report associated with the third configuration information; the third configuration information including a third reference signal resource set, the configuration information of the CSI report being associated with the first reference signal resource set and the second reference signal resource set; the CSI report being used to report a first result; or, receiving fourth configuration information sent by the network side device, the fourth configuration information including the first reference signal resource set and the third reference signal resource set; or, the fourth configuration information including the first reference signal resource set, the second reference signal resource set and the third reference signal resource set.

25. The terminal according to claim 24, wherein the third configuration information is first report configuration information for reporting target information; the fourth configuration information is second report configuration information for reporting target information or configuration information of reference signal resources.

26. The terminal of claim 24, wherein, The processor is further configured to read a computer program in the memory and perform the following operations: determining reference signal resources in the third reference signal resource set corresponding to the first result according to quasi co-location information of reference signal resources in the second reference signal resource set and the third reference signal resource set; or, determine, according to an association relationship between a reference signal resource in the second reference signal resource set and a reference signal resource in the third reference signal resource set, a reference signal resource corresponding to the first result in the third reference signal resource set; wherein the first result is determined by the first reference signal resource set.

27. The terminal of any of claims 21-26, wherein, The target information includes one or more of the following: a first prediction accuracy, which is determined by the terminal according to a measurement result of the first result and the second reference signal resource set; a first difference value, which is a difference value or an absolute value of a difference value of a first signal strength measurement value and a second signal strength measurement value; the first signal strength measurement value is a maximum signal strength measurement value of a reference signal resource in the second reference signal resource set corresponding to the first result; and the second signal strength measurement value is a maximum signal strength measurement value of a reference signal resource in the second reference signal resource set; a second difference value, which is an average value of a difference value of K1 third signal strength measurement values and K1 fourth signal strength measurement values, or an average value of absolute values of the difference values; the third signal strength measurement value is a signal strength measurement value of a reference signal resource in the second reference signal resource set corresponding to the first result, and the fourth signal strength measurement value is a signal strength measurement value of a reference signal resource in the second reference signal resource set; K1 is an integer greater than or equal to 2; a first target value, which is an average value and / or a maximum value and / or a minimum value of the first prediction accuracy or the first difference value or the second difference value within a first time length; or the first target value is an average value and / or a maximum value and / or a minimum value of the first prediction accuracy or the first difference value or the second difference value in M1 performance monitoring times; M1 is an integer greater than or equal to 2; first indication information, which is used to indicate whether the first target value is greater than or equal to a first threshold value; second indication information, which is used to indicate whether the first target value is less than or equal to a second threshold value; a first number of times, which is a number of times that the first target value is greater than or equal to the first threshold value; a second number of times, which is a number of times that the first target value is less than or equal to the second threshold value.

28. The terminal of any of claims 21-26, wherein, The target information includes one or more of the following: a second prediction accuracy, which is determined by the terminal according to a measurement result of the first result and the third reference signal resource set; a third difference value, which is a difference value or an absolute value of a difference value of a fifth signal strength measurement value and a sixth signal strength measurement value; the fifth signal strength measurement value is a maximum signal strength measurement value of a reference signal resource in the third reference signal resource set corresponding to the first result; and the sixth signal strength measurement value is a maximum signal strength measurement value of a reference signal resource in the third reference signal resource set. a fourth difference value, the fourth difference value being an average of differences between K2 seventh signal strength measurement values and K2 eighth signal strength measurement values, or an average of absolute values of differences between the K2 seventh signal strength measurement values and the K2 eighth signal strength measurement values, the seventh signal strength measurement values being signal strength measurement values of reference signal resources in a third reference signal resource set corresponding to the first result, the eighth signal strength measurement values being signal strength measurement values of the reference signal resources in the third reference signal resource set, K2 being an integer greater than or equal to 2; a second target value, the second target value being an average and / or maximum and / or minimum of the second prediction accuracy or the third difference value or the fourth difference value in a second time length, or the second target value being an average and / or maximum and / or minimum of the second prediction accuracy or the third difference value or the fourth difference value in M2 performance monitoring times, M2 being an integer greater than or equal to 2; third indication information, the third indication information being used to indicate whether the second target value is greater than or equal to a third threshold value; fourth indication information, the fourth indication information being used to indicate whether the second target value is less than or equal to a fourth threshold value; a third number of times, the third number of times being a number of times that the second target value is greater than or equal to the third threshold value; a fourth number of times, the fourth number of times being a number of times that the second target value is less than or equal to the fourth threshold value.

29. The terminal of claim 20, wherein, The processor is further configured to read a computer program in the memory and perform the following operations: determining a target information sending time according to a periodic reporting configuration or a semi-persistent reporting configuration or an aperiodic reporting configuration configured by a network, and sending the target information to the network side device at the target information sending time.

30. The terminal according to claim 27 or 28, wherein, The processor is further configured to read a computer program in the memory and perform the following operations: sending target information to a network side device in a case where a first condition is met, wherein the first condition includes one or more of the following: the first target value is greater than or equal to a first threshold value; the first target value is less than or equal to a second threshold value; the first number of times is greater than or equal to a fifth threshold value; the second number of times is greater than or equal to a sixth threshold value; the second target value is greater than or equal to a third threshold value; the second target value is less than or equal to a fourth threshold value; the third number of times is greater than or equal to a seventh threshold value; the fourth number of times is greater than or equal to an eighth threshold value.

31. A network side device, comprising a memory, a transceiver, and a processor: a memory for storing a computer program; a transceiver for transceiving data under control of the processor; the processor is configured to read a computer program in the memory and perform the following operations: configuring at least two reference signal resource sets for a terminal; the at least two reference signal resource sets include a first reference signal resource set, and a second reference signal resource set and / or a third reference signal resource set; receiving target information sent by the terminal according to the at least two reference signal resource sets; the target information is used to indicate performance monitoring related information.

32. The network-side device of claim 31, wherein, the processor is further configured to read a computer program in the memory and perform the following operations: transmit first configuration information to the terminal, the first configuration information comprising the first set of reference signal resources and the second set of reference signal resources; alternatively, transmit second configuration information to the terminal, the second configuration information being associated with the first set of reference signal resources and the second set of reference signal resources.

33. The network-side device of claim 31, wherein, The processor is further configured to read a computer program in the memory and perform the following operations: transmit third configuration information to the terminal, the third configuration information comprising a third set of reference signal resources, and transmit configuration information of a CSI report associated with the third configuration information to the terminal, the configuration information of the CSI report being associated with the first set of reference signal resources and the second set of reference signal resources, the CSI report being used to report a first result; alternatively, transmit fourth configuration information to the terminal, the fourth configuration information comprising the first set of reference signal resources and the third set of reference signal resources, or the fourth configuration information comprising the first set of reference signal resources, the second set of reference signal resources and the third set of reference signal resources.

34. The network-side device of claim 31, wherein, The processor is further configured to read a computer program in the memory and perform the following operations: indicate an association relationship between reference signal resources in the second set of reference signal resources and the third set of reference signal resources to the terminal. 35.An information processing apparatus applied to a terminal, the apparatus comprising: a determining unit configured to determine at least two sets of reference signal resources according to network configuration; the at least two sets of reference signal resources comprising a first set of reference signal resources, and a second set of reference signal resources and / or a third set of reference signal resources; a transmitting unit configured to transmit target information to a network-side device according to the first set of reference signal resources, and the second set of reference signal resources and / or the third set of reference signal resources; wherein the target information is used to indicate performance monitoring related information. 36.An information processing apparatus applied to a network-side device, the apparatus comprising: a configuring unit configured to configure at least two sets of reference signal resources for a terminal; the at least two sets of reference signal resources comprising a first set of reference signal resources, and a second set of reference signal resources and / or a third set of reference signal resources; a receiving unit configured to receive target information transmitted by the terminal according to the at least two sets of reference signal resources; wherein the target information is used to indicate performance monitoring related information. 37.A processor readable storage medium, the processor readable storage medium storing a program, the program being used to cause the processor to perform the method in any one of claims 1 to 11, or cause the processor to perform the method in any one of claims 12 to 19.

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