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

CN122802960APending Publication Date: 2026-09-22VIVO SOFTWARE TECHNOLOGY CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510328667.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-19
Publication Date
2026-09-22

AI Technical Summary

Technical Problem

[0003]然而,现有的性能监测结果上报流程中,在未达到配置监测次数的情况下,终端可能已经达到了性能监测结果的上报时机

Benefits of technology

[0033]在本申请实施例中,终端通过网络侧发送的第一报告配置信息,执行第一操作(例如,不上报第一报告,或丢弃第一报告,或跳过第一报告的上报,或不期望网络侧激活用于推理的第二报告),或者,执行第二操作(例如,上报第一报告或确认第一报告生效)。这样终端可以根据实际实际情况选择是否上报第一报告,从而可以防止网络侧接收到的性能监测结果无法真实反映AI单元的实际性能情况。此外,这也减少了网络侧基于终端上报的第一报告而错误判断AI单元推理性能的风险,提高了网络侧对AI单元推理性能评估的准确性。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN122802960A_ABST
    Figure CN122802960A_ABST
Patent Text Reader

Abstract

The application discloses a transmission processing method, device and equipment and a readable storage medium, and belongs to the technical field of communication. The method comprises the following steps: a terminal receives configuration information of a first report, wherein the first report is used for indicating a monitoring result of an AI unit; the terminal performs a first operation or a second operation according to the configuration information; wherein the execution of the first operation comprises at least one of the following: not reporting the first report; discarding the first report; skipping the reporting of the first report; not expecting the network side to deactivate a second report, wherein the second report is used for indicating an inference result of the AI unit, and the second report is associated with the first report; the execution of the second operation comprises at least one of the following: reporting the first report; determining that the first report takes effect.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

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

[0002] Artificial Intelligence (AI) units can infer optimal beam information and its quality information for the current time or future time periods. However, these inference results only reflect the output of the AI ​​unit and cannot directly verify its accuracy. In related technologies, the terminal can monitor the performance of the AI ​​unit and report the performance monitoring results to the network side, which then evaluates the inference performance of the AI ​​unit based on the performance monitoring results.

[0003] However, in the existing performance monitoring result reporting process, the terminal may have already reached the reporting time for performance monitoring results even if the configured number of monitoring attempts has not been reached. If the terminal reports the performance monitoring results under such circumstances, the network side may mistakenly believe that the terminal has reached the configured number of monitoring attempts, leading to an incorrect assessment of the inference performance of the AI ​​unit by the network side. Summary of the Invention

[0004] This application provides a transmission processing method, apparatus, device, and readable storage medium to address the problem of how to avoid network-side errors in evaluating the inference performance of AI units.

[0005] Firstly, a transmission processing method is provided, including:

[0006] The terminal receives configuration information for the first report, which is used to indicate the monitoring results of the AI ​​unit;

[0007] The terminal performs a first operation or a second operation based on the configuration information;

[0008] The first operation includes at least one of the following: not reporting the first report; discarding the first report; skipping the reporting of the first report; not expecting the network side to activate the second report, the second report being used to indicate the inference results of the AI ​​unit, and the second report being associated with the first report;

[0009] The second operation includes at least one of the following: reporting the first report; confirming that the first report is effective.

[0010] Secondly, a transmission processing method is provided, including:

[0011] The network-side device sends configuration information for the first report, which is used to indicate the monitoring results of the AI ​​unit;

[0012] The network-side device performs a third or fourth operation based on the configuration information;

[0013] The third operation includes at least one of the following: not receiving the first report; not expecting the terminal to report the first report;

[0014] The fourth operation includes at least one of the following: receiving the first report; determining that the first report is effective.

[0015] Thirdly, a transmission processing apparatus is provided for use in a terminal, comprising:

[0016] The first transceiver unit is used to receive configuration information of the first report, which is used to indicate the monitoring results of the AI ​​unit.

[0017] The first processing unit is configured to perform a first operation or a second operation based on the configuration information.

[0018] The first operation includes at least one of the following: not reporting the first report; discarding the first report; skipping the reporting of the first report; not expecting the network side to activate the second report, the second report being used to indicate the inference results of the AI ​​unit, and the second report being associated with the first report;

[0019] The second operation includes at least one of the following: reporting the first report; confirming that the first report is effective.

[0020] Fourthly, a transmission processing apparatus is provided, applied to network-side equipment, comprising:

[0021] The second transceiver unit is used to send configuration information for the first report, which is used to indicate the monitoring results of the AI ​​unit.

[0022] The second processing unit is used to perform a third or fourth operation based on the configuration information.

[0023] The third operation includes at least one of the following: not receiving the first report; not expecting the terminal to report the first report;

[0024] The fourth operation includes at least one of the following: receiving the first report; determining that the first report is effective.

[0025] Fifthly, a terminal is provided, the device including a processor and a memory, the memory storing a program or instructions executable on the processor, the program or instructions, when executed by the processor, implementing the steps of the method as described in the first aspect.

[0026] In a sixth aspect, a terminal is provided, including a processor and a communication interface, wherein the communication interface is used to receive configuration information of a first report, the first report being used to indicate the monitoring results of an AI unit; the processor is used to perform a first operation or a second operation according to the configuration information; wherein performing the first operation includes at least one of the following: not reporting the first report; discarding the first report; skipping the reporting of the first report; not expecting the network side to activate a second report, the second report being used to indicate the inference results of the AI ​​unit, and the second report being associated with the first report; performing the second operation includes at least one of the following: reporting the first report; determining that the first report is effective.

[0027] In a seventh aspect, a network-side device is provided, the device including a processor and a memory, the memory storing a program or instructions executable on the processor, the program or instructions, when executed by the processor, implementing the steps of the method as described in the second aspect.

[0028] Eighthly, a network-side device is provided, including a processor and a communication interface, wherein the communication interface is used to send configuration information of a first report, the first report being used to indicate the monitoring results of an AI unit; the processor is used to perform a third operation or a fourth operation according to the configuration information; wherein performing the third operation includes at least one of the following: not receiving the first report; not expecting the terminal to report the first report; performing the fourth operation includes at least one of the following: receiving the first report; determining that the first report is effective.

[0029] A ninth aspect provides a readable storage medium on which a program or instructions are stored, which, when executed by a processor, implement the steps of the method described in the first aspect, or implement the steps of the method described in the second aspect.

[0030] In a tenth aspect, a wireless communication system is provided, comprising: a terminal and a network-side device, wherein the terminal is configured to perform the steps of the method described in the first aspect, and the network-side device is configured to perform the steps of the method described in the second aspect.

[0031] Eleventhly, a chip is provided, the chip including a processor and a communication interface coupled to the processor, the processor being configured to run a program or instructions to implement the steps of the method described in the first aspect, or to implement the steps of the method described in the second aspect.

[0032] In a twelfth aspect, a computer program / program product is provided, the computer program or program product being stored in a storage medium, the computer program or program product being executed by at least one processor to implement the steps of the method as described in the first aspect, or to implement the steps of the method as described in the second aspect.

[0033] In this embodiment, the terminal performs a first operation (e.g., not reporting the first report, discarding the first report, skipping the reporting of the first report, or not expecting the network to activate the second report for inference) or a second operation (e.g., reporting the first report or confirming the first report is effective) based on the first report configuration information sent by the network side. This allows the terminal to choose whether to report the first report based on actual circumstances, thereby preventing the performance monitoring results received by the network side from failing to accurately reflect the actual performance of the AI ​​unit. Furthermore, this reduces the risk of the network side misjudging the AI ​​unit's inference performance based on the first report reported by the terminal, improving the accuracy of the network side's evaluation of the AI ​​unit's inference performance. Attached Figure Description

[0034] Figure 1 This is a schematic diagram of a communication system provided in an embodiment of this application;

[0035] Figure 2 This is a flowchart of a transmission processing method provided in an embodiment of this application;

[0036] Figure 3 This is a flowchart of another transmission processing method provided in the embodiments of this application;

[0037] Figure 4 This is a schematic diagram of time-domain prediction provided in an embodiment of this application;

[0038] Figure 5 This is a schematic diagram of spatial domain prediction provided in an embodiment of this application;

[0039] Figure 6 This is a structural diagram of another transmission processing apparatus provided in an embodiment of this application;

[0040] Figure 7 This is a structural diagram of another transmission processing apparatus provided in an embodiment of this application;

[0041] Figure 8 This is a structural diagram of a communication device provided in an embodiment of this application;

[0042] Figure 9 This is a structural diagram of a terminal provided in an embodiment of this application;

[0043] Figure 10 This is a structural diagram of a network-side device provided in an embodiment of this application. Detailed Implementation

[0044] The technical solutions of the embodiments of this application will be clearly described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application are within the scope of protection of this application.

[0045] The terms "first," "second," etc., used in this application are used to distinguish similar objects and not to describe a specific order or sequence. It should be understood that such terms can be used interchangeably where appropriate so that embodiments of this application can be implemented in orders other than those illustrated or described herein, and the objects distinguished by "first" and "second" are generally of the same class, not limited in number; for example, the first object can be one or more. Furthermore, "or" in this application indicates at least one of the connected objects. For example, the scope of protection for "A or B" covers at least three scenarios: Scenario 1: including A but not B; Scenario 2: including B but not A; Scenario 3: including both A and B. In addition, the terms "A and / or B," "at least one of A and B," and "at least one of A or B" also cover at least the above three scenarios. The character " / " generally indicates that the preceding and following objects are in an "or" relationship.

[0046] The term "instruction" in this application can be either a direct instruction (or explicit instruction) or an indirect instruction (or implicit instruction). A direct instruction can be understood as one in which the sender explicitly informs the receiver of specific information, the operation to be performed, or the requested result, etc., in the instruction sent. An indirect instruction can be understood as one in which the receiver determines the corresponding information based on the instruction sent by the sender, or makes a judgment and determines the operation to be performed or the requested result, etc., based on the judgment result.

[0047] It is worth noting that the technology described in this application is not limited to Long Term Evolution (LTE) / LTE-Advanced (LTE-A) systems, but can also be used in other wireless communication systems, such as Code Division Multiple Access (CDMA), Time Division Multiple Access (TDMA), Frequency Division Multiple Access (FDMA), Orthogonal Frequency Division Multiple Access (OFDMA), Single-Carrier Frequency-Division Multiple Access (SC-FDMA), or other systems, such as NTN systems, vehicle-to-everything (V2X), vehicle-to-everything (V2X), machine-type communications (MTC), the Internet of Things (IoT), machine-to-machine (M2M), or future mobile communication systems. As a possible application scenario, NTN systems may include satellite systems. Based on satellite altitude, i.e., satellite orbital altitude, satellites can be classified into highly elliptical orbit (HEO) satellites, geosynchronous earth orbit (GEO) satellites, medium earth orbit (MEO) satellites, and low earth orbit (LEO) satellites. In addition, NTN systems may also include non-terrestrial network-side equipment (or airborne network-side equipment) such as High Altitude Platform Station (HAPS) communication systems. The non-terrestrial network-side equipment involved in this application is not limited to the examples mentioned above.

[0048] The terms "system" and "network" used in the embodiments of this application are often used interchangeably, and the described technologies can be used with respect to the systems and radio technologies mentioned above, as well as other systems and radio technologies. The following description describes a New Radio (NR) system for illustrative purposes, and the term NR is used in most of the following description; however, these technologies can also be applied to systems other than NR systems, such as 6th generation (6G) systems. th Generation 6G communication system.

[0049] To facilitate understanding of the embodiments of this application, the following technical points are introduced first:

[0050] 1. AI-based beam prediction - model training.

[0051] In the beam prediction use cases discussed in 5G mobile communication technology, a training data sample includes model input and labels during training data collection. The model input includes at least one of the following: (historical) partial or complete beam quality, beam identifier, measurement resource identifier, timestamp, etc.; the labels include at least one of the following: (future) all beam quality, strongest beam identifier, timestamp, etc.

[0052] 2. AI-based beam prediction - model inference.

[0053] In the AI-based beam prediction use cases discussed in related technologies, during model inference, an inference sample includes model inputs. These model inputs include at least one of the following: (historical) partial or complete beam quality, beam identifier, measurement resource identifier, timestamp, etc.

[0054] Using the Reference Signal Received Power (RSRP) of a subset of beam pairs as input, the AI ​​unit outputs the RSRP of all beam pairs. A beam pair includes both the transmit and receive beams. The number of inputs to the AI ​​unit is the number of selected subsets of beam pairs, and the number of outputs is the total number of beam pairs.

[0055] In related technologies, the list of resources related to the input of the AI ​​unit or used to determine input information is referred to as Set B, or the second list. The list of resources related to the output of the AI ​​unit or used to determine output information is referred to as Set A, or the first list. The first list is used by the AI ​​unit to determine the beam information of the prediction result during model inference, for example, to determine the index position of the feedback prediction result in the second list. Therefore, the first list can be a resource list, or an identity (ID) or index list without actual measurement meaning.

[0056] 3. Regarding beam measurement and beam reporting.

[0057] Analog beamforming is transmitted across the full bandwidth, and each polarization element on the panel of each high-frequency antenna array can only transmit an analog beam in a time-division multiplexed manner. The beamforming weights of the analog beam are achieved by adjusting the parameters of devices such as the RF front-end phase shifter.

[0058] Currently, in academia and industry, a polling method is commonly used to train simulated beamforming vectors. This involves each element on each antenna panel, in each polarization direction, sequentially transmitting training signals (i.e., candidate beamforming vectors) at predetermined times using time-division multiplexing. The terminal then measures these signals and sends back a beam report, which the network uses to implement simulated beam transmission in the next transmission. The beam report typically includes the identifiers of one or more optimal transmit beams and the measured received power of each transmit beam.

[0059] During beam measurement, the network configures a reference signal resource set (RS resource set), which includes at least one reference signal resource, such as a Synchronization Signal Block (SSB) resource or a Channel State Information Reference Signal (CSI-RS) resource. The terminal measures the Layer 1 Reference Signal Received Power (L1-RSRP) or Layer 1 Signal to Interference plus Noise Ratio (L1-SINR) for each RS resource and reports at least one optimal measurement result to the network. The reported information includes at least one of the following: an SSB Resource Indicator (SSBRI), a Channel State Information Resource Indicator (CRI), and an L1-RSRP / L1-SINR. This reported information reflects at least one optimal beam and its quality, allowing the network to determine the beam used to transmit channels or signals to the terminal.

[0060] 4. Performance monitoring of the AI ​​unit.

[0061] AI units can infer the optimal beam information or beam quality information for the current time, or for future time periods. However, the inferred optimal beam only represents the inference result; it cannot determine whether the result is correct, which corresponds to the accuracy of the AI ​​unit's inference. Therefore, a performance monitoring process is needed to help the network side or terminal determine the accuracy of the AI ​​unit's inference, thereby ensuring network stability.

[0062] AI unit inference yields inference results. Further verification of these results requires obtaining performance monitoring label results. This can be achieved by measuring the entire set or a subset corresponding to the AI ​​inference results to obtain the optimal beam information or beam quality information. Finally, by comparing the inference results with the label results used for performance monitoring, we can determine whether a single monitoring result is accurate or meets the requirements. Alternatively, through long-term monitoring and multiple comparisons, we can confirm the accuracy and suitability of the monitoring results.

[0063] The relevant technology configures a set of measurement resources in the performance monitoring report, which is used to obtain the labeled results of the performance monitoring. At the same time, the performance monitoring report is configured or associated with a report for inference result reporting.

[0064] 5. Regarding performance monitoring reports.

[0065] Currently, the feedback content of performance monitoring reports can include performance monitoring indicator information, which can include statistical results. For example, performance monitoring indicator information can include the percentage of prediction accuracy, or it can include information on the number of times the prediction was accurate, or the number of times the prediction was inaccurate, in relation to prediction accuracy.

[0066] 6. Introduction to relevant terms used in this application.

[0067] In this application, the AI ​​unit may also be referred to as an AI model, AI structure, etc., or the AI ​​unit may refer to a processing unit capable of implementing specific algorithms, formulas, processing flows, capabilities, etc. related to AI, or the AI ​​unit may be a processing method, algorithm, function, module, or unit for a specific dataset, or the AI ​​unit may be a processing method, algorithm, function, module, or unit running on AI-related hardware such as a Graphics Processing Unit (GPU), Neural Network Processing Unit (NPU), Tensor Processing Unit (TPU), or Application Specific Integrated Circuit (ASIC). This application does not specifically limit the form of the AI ​​unit. Optionally, the specific dataset includes the input or output of the AI ​​unit.

[0068] Optionally, the identifier of the AI ​​unit includes at least one of the following: AI model identifier, AI structure identifier, AI algorithm identifier, identifier of a specific dataset associated with the AI ​​unit, identifier of a specific AI-related scenario, identifier of an AI-related environment, identifier of AI-related channel characteristics, identifier of AI-related devices, identifier of AI-related functions, identifier of AI-related characteristics, identifier of AI-related capabilities, and identifier of AI-related modules.

[0069] Optionally, the input or output of the AI ​​unit includes at least one of the following: reference signal, channel-bearing signal, channel state information, beam information, channel prediction information, interference information, positioning information, trajectory information, specified prediction information and management information, and control signaling;

[0070] Optionally, the AI ​​unit may include at least one of the following functions:

[0071] a) Reference signal processing;

[0072] The reference signal processing includes, but is not limited to, at least one of the following: signal detection, filtering, equalization, etc.

[0073] Optionally, the reference signal includes, but is not limited to, at least one of the following: demodulation reference signal (DMRS), sounding reference signal (SRS), SSB, CSI-RS, tracking reference signal (TRS), positioning reference signal (PRS), phase tracking reference signal (PTRS), etc.

[0074] b) Transmission, reception, demodulation, or transmission of channel signals;

[0075] The channel signals include, but are not limited to: Physical Downlink Control Channel (PDCCH), Physical Downlink Shared Channel (PDSCH), Physical Uplink Control Channel (PUCCH), Physical Uplink Shared Channel (PUSCH), Physical Random Access Channel (PRACH), and Physical Broadcast Channel (PBCH).

[0076] c) Acquisition of channel state information.

[0077] Optionally, channel state information acquisition includes:

[0078] i. Channel state information feedback, wherein the channel state information includes at least one of the following: channel-related information, channel matrix-related information, channel feature information, channel matrix feature information, precoding matrix indicator (PMI), rank indicator (RI), CRI, channel quality indicator (CQI), and layer indicator (LI).

[0079] ii. Frequency Division Duplexing (FDD) uplink and downlink reciprocity.

[0080] For FDD systems, based on partial reciprocity, the base station obtains angle and delay information from the uplink channel. It can notify the terminal of the angle and delay information through CSI-RS precoding or direct indication. The terminal reports according to the base station's indication or selects and reports within the range indicated by the base station, thereby reducing the terminal's computational load and CSI reporting overhead.

[0081] d) Beam management.

[0082] Optionally, beam management includes, but is not limited to, at least one of beam measurement, beam reporting, beam prediction, beam failure detection, beam failure recovery, and new beam indication during beam failure recovery.

[0083] e) Channel prediction.

[0084] Optionally, channel prediction includes, but is not limited to, at least one of channel state information prediction and beam prediction.

[0085] f) Channel or source encoding / decoding.

[0086] Optionally, channel or source encoding and decoding includes, but is not limited to, at least one of channel coding, channel decoding, source coding, source decoding, joint source-channel coding, and joint source-channel decoding.

[0087] g) Interference suppression.

[0088] Optionally, interference suppression includes, but is not limited to, at least one of intra-cell interference, inter-cell interference, out-of-band interference, and intermodulation interference.

[0089] h) Positioning.

[0090] For example, the specific location (including horizontal or vertical position) or possible future trajectory of the terminal can be estimated using a reference signal (e.g., SRS), or information for auxiliary location or trajectory estimation.

[0091] i) Forecasting and management of high-level business and parameters.

[0092] Optionally, the prediction and management of high-level services and parameters include, but are not limited to, at least one of the following: throughput, required packet size, service demand, mobility, noise information, etc.

[0093] j) Parsing of control signaling.

[0094] Optionally, the control signaling includes, but is not limited to, at least one of the following: power control related signaling, beam management related signaling, etc.

[0095] Optionally, the AI ​​unit includes at least one of the following: a first AI unit used by the communication device, a reference AI unit of a second AI unit used by the communication device, a third AI unit used by the terminal, network-side device, or test device in the test, and a reference AI unit of a fourth AI unit used by the terminal, network-side device, or test device in the test.

[0096] Optionally, the communication equipment includes at least one of a terminal and a network-side device.

[0097] Optionally, the performance monitoring report may be carried in a manner including but not limited to at least one of the following: L1 layer signaling bearer, higher layer signaling bearer, data plane bearer, or signaling bearer for feedback beam information.

[0098] Optionally, beam quality information includes, but is not limited to, at least one of the following: L1-SINR, L1-RSRP, Layer 1 Reference Signal Received Quality (L1-RSRQ), Layer 3 Signal to Interference plus Noise Ratio (L3-SINR), Layer 3 Reference Signal Received Power (L3-RSRP), Layer 3 Reference Signal Received Quality (L3-RSRQ), probability-related information, confidence-related information, etc.

[0099] Among them, probability-related information is used to characterize the probability that a beam information is the optimal beam, the second best beam, the top k (top-k) optimal beams, or the probability of indicating beam information;

[0100] Optionally, confidence-related information is used to characterize the credibility of a beam information.

[0101] Optionally, probability-related or confidence-related information can be obtained from the AI ​​unit output or determined based on the results of the AI ​​unit output; no limitation is made here.

[0102] Optionally, beam information may include, but is not limited to, at least one of the following: beam identification (ID) information, beam angle information, beam gain information, beamwidth information, desired information, beam quality information, etc.

[0103] Optionally, the beam ID information is used to characterize the beam's identity and includes, but is not limited to, at least one of the following: transmit beam ID, receive beam ID, beam ID, reference signal set identifier (setIDs) corresponding to the beam, reference signal resource ID corresponding to the beam, uniquely identified random ID, encoded value after additional AI network processing, beam angle information, resource set index information, resource index information, resource ID, resource set ID, CRI, SSBRI, transmission configuration indication state (TCI state), etc.

[0104] Optionally, beam angle information is used to characterize the angle information corresponding to the beam, and the beam angle information includes, but is not limited to, at least one of the following: angle information, transmission angle information, and reception angle information.

[0105] Optionally, angle information is related information used to characterize angle or identity, such as angle, radians, index encoded value, ID value, or encoded value processed by additional AI units.

[0106] In related technologies, when performance monitoring reports include performance monitoring metrics, whether using statistical results or reporting the number of accurate predictions, a long-term statistical period is required. After the network side configures the performance monitoring report, it reports the performance monitoring metrics according to the configured method. However, it's unclear how the terminal should report the performance monitoring report when sufficient monitoring results are needed. Relying on the terminal for this may lead to issues with the validity of the performance monitoring report, resulting in the network misjudging the inference performance of the current AI unit.

[0107] Taking the performance monitoring metric information as an example, which uses the number of correct results, the performance monitoring report corresponds to a total number of monitoring times N, and the number of times the performance monitoring metric information reports correct results M, where M <= N. That is, the performance monitoring report contains N monitoring results, of which M are correct. However, according to the current reporting configuration, the terminal may not have monitored N times before the corresponding performance monitoring report needs to be issued. In this case, how the terminal should report the performance monitoring report is not defined. Secondly, if the terminal only monitors N1 times, where N1 is less than N and M1 are correct, and the terminal directly reports M1 correct results, the network side will think that M1 out of N times are correct, rather than M1 out of N times being correct. This indirectly creates the illusion of poor performance monitoring results, thus causing the network side to incorrectly assess the inference performance of the AI ​​unit.

[0108] Figure 1This diagram illustrates a block diagram of a wireless communication system applicable to embodiments of this application. The wireless communication system includes a terminal 11 and a network-side device 12.

[0109] Terminal 11 can be a mobile phone, tablet computer, laptop computer, notebook computer, personal digital assistant (PDA), handheld computer, netbook, ultra-mobile personal computer (UMPC), mobile internet device (MID), augmented reality (AR), virtual reality (VR) device, robot, wearable device, flight vehicle, vehicle user equipment (VUE), shipboard equipment, pedestrian user equipment (PUE), smart home (home devices with wireless communication capabilities, such as refrigerators, televisions, washing machines, or furniture), game console, personal computer (PC), ATM, or self-service machine, etc. Wearable devices include: smartwatches, smart bracelets, smart earphones, smart glasses, smart jewelry (smart bracelets, smart chains, smart rings, smart necklaces, smart anklets, smart anklets, etc.), smart wristbands, smart clothing, etc. Among these, in-vehicle devices can also be referred to as in-vehicle terminals, in-vehicle controllers, in-vehicle modules, in-vehicle components, in-vehicle chips, or in-vehicle units, etc. It should be noted that the specific type of terminal 11 is not limited in the embodiments of this application.

[0110] Network-side equipment 12 may include access network equipment or core network equipment. Access network equipment may also be referred to as Radio Access Network (RAN) equipment, radio access network function, radio access network unit, or satellite. Access network equipment may include base stations, Wireless Local Area Network (WLAN) access points (APs), or Wireless Fidelity (WiFi) nodes, etc. The term "base station" can be referred to as Node B (NB), Evolved Node B (eNB), Next Generation Node B (gNB), New Radio Node B (NR Node B), Access Point, Relay Base Station (RBS), Serving Base Station (SBS), Base Transceiver Station (BTS), Radio Base Station, Radio Transceiver, Basic Service Set (BSS), Extended Service Set (ESS), Home Node B (HNB), Home Evolved Node B, Transmit Receive Point (TRP), or any other suitable term in the relevant field, as long as the same technical effect is achieved. The term "base station" is not limited to any specific technical terminology. It should be noted that this application embodiment only uses a base station in an NR system as an example for description and does not limit the specific type of base station.

[0111] Core network equipment, also known as core network nodes, core network functions, or core network elements, includes, but is not limited to, at least one of the following: Mobility Management Entity (MME), Access and Mobility Management Function (AMF), Session Management Function (SMF), User Plane Function (UPF), Policy Control Function (PCF), Policy and Charging Rules Function (PCRF), Edge Application Server Discovery Function (EASDF), Unified Data Management (UDM), Unified Data Repository (UDR), Home Subscriber Server (HSS), Centralized Network Configuration (CNC), Network Repository Function (NRF), Network Exposure Function (NEF), Local NEF (or L-NEF), and Binding Support Function. Support Functions (BSF), Application Functions (AF), Location Management Functions (LMF), Gateway Mobile Location Centres (GMLC), and Network Data Analytics Functions (NWDAF), etc. It should be noted that this application embodiment only uses core network equipment in the NR system as an example and does not limit the specific type of core network equipment. If the name of the core network equipment mentioned in this application embodiment changes in subsequent protocol versions (e.g., 6G), it will still be within the scope of protection of this application.

[0112] Optionally, the core network equipment can be implemented by one or more functional modules in a single device, or by multiple devices working together; this application does not specifically limit this. It is understood that the aforementioned functional modules can be network elements in hardware devices, software functional modules running on dedicated hardware, or virtualized functional modules instantiated on a platform (e.g., a cloud platform).

[0113] The following description, in conjunction with the accompanying drawings, details the transmission processing method, apparatus, device, and readable storage medium provided in the embodiments of this application through some examples and application scenarios.

[0114] See Figure 2 The embodiments of this application provide a transmission processing method, the specific steps of which include:

[0115] Step 21: The terminal receives the configuration information of the first report, which is used to indicate the monitoring results of the AI ​​unit;

[0116] Optionally, the first report may also be called a monitoring report, a performance monitoring report, or a first CSI report.

[0117] Optionally, the first report satisfies at least one of the following: a report for performance monitoring, a report associated with predictive feedback, or a report associated with measurement indications.

[0118] Optionally, monitoring results can be obtained by comparing the inference results of the AI ​​unit with the label results or measurement results used for performance monitoring of the AI ​​unit.

[0119] Optionally, the monitoring results may also be referred to as performance monitoring results or performance monitoring indicator information.

[0120] Optionally, the monitoring results may be beam prediction accuracy, beam prediction quality difference, channel state matching degree, or channel state prediction matching accuracy, etc., which are not limited here.

[0121] Step 22: The terminal performs either the first operation or the second operation according to the configuration information;

[0122] The first operation includes at least one of the following: a) not reporting the first report; b) discarding the first report; c) skipping the reporting of the first report; d) not expecting the network side to deactivate the second report used for inference, the second report being associated with the first report;

[0123] The second operation includes at least one of the following: a) reporting the first report; b) confirming that the first report is effective.

[0124] In this embodiment, the terminal can perform a second operation based on the configuration information, which enables the network side to accurately determine the inference performance of the AI ​​unit based on the first report reported by the terminal. Alternatively, the terminal can also perform a first operation based on the configuration information. For example, even if the first report is reached, the terminal may not report the first report, discard the first report, or skip the reporting of the first report before obtaining a predetermined number of monitoring results. This can prevent the network side from incorrectly judging the inference performance of the AI ​​unit based on the first report.

[0125] Optionally, determining that the first report is effective includes determining that the first report can be submitted.

[0126] Optionally, the second report may also be referred to as an inference report of the AI ​​unit, or a report for reporting inference results, or a CSI report for prediction, or a CSI report for prediction associated with the first report, or a second CSI report.

[0127] Optionally, the second report is used to report at least one of the following: predicted reference signal received power, predicted channel state information resource indication, and predicted synchronization signal block resource indication.

[0128] Optionally, the second report is associated with the inference function of the AI ​​unit.

[0129] Optionally, the configuration information can be used for first report configuration or first report reconfiguration.

[0130] Optionally, the configuration information can also be referred to as CSI report configuration information.

[0131] In one embodiment of this application, the content in the configuration information is associated with at least one of the following:

[0132] 1) Information about the first resource, which is used for performance monitoring;

[0133] Optionally, the first resource may include resources for measuring and obtaining measurement results (or labeling results) for performance monitoring.

[0134] Optionally, the first resource may also be referred to as the first resource set, the monitoring resource set, or the monitoring set, where the monitoring resource set includes resources used to measure and obtain measurement results for performance monitoring.

[0135] 2) First quantity, which indicates the number of monitoring times or monitoring instances associated with the first report;

[0136] Optionally, the monitoring results indicated in the first report are related to the number of monitoring sessions.

[0137] Optionally, the monitoring results indicated in the first report are related to the number of monitoring instances.

[0138] Optionally, the number of monitoring sessions can be used to represent the number of times the inference results of the AI ​​unit are compared with the measurement results used for performance monitoring of the AI ​​unit.

[0139] Optionally, a monitoring instance can be used to represent an instance in which the inference results of the AI ​​unit are compared with the measurement results used for performance monitoring of the AI ​​unit.

[0140] Optionally, the number of monitoring sessions or monitoring instances can be used to represent the number of times the first resource associated with a performance monitoring report is transmitted.

[0141] It should be noted that in this application, the number of monitoring sessions and monitoring instances can be used interchangeably. Optionally, the aforementioned number of monitoring sessions or monitoring instances may correspond to a resource or a set of resources, or may be the total number of monitoring sessions at multiple prediction times in a single prediction, or the number of monitoring sessions at each prediction time in a single prediction, etc., and are not limited here.

[0142] 3) A first window, wherein the first window is used for at least one of the following: indicating the monitoring window or monitoring window length associated with the first report, determining whether the first report should be reported or not, and determining the information reported by the first report;

[0143] Optionally, the monitoring window refers to the time window in which the inference results of the AI ​​unit are compared with the measurement results used for performance monitoring of the AI ​​unit.

[0144] Optionally, determining the information reported in the first report means determining which monitoring results are included or excluded from the first report.

[0145] 4) A second quantity, wherein the second quantity is used for at least one of the following: determining whether the first report is submitted or not, determining the information submitted by the first report, determining the number of monitoring times or monitoring instances associated with the first report, and determining the number of transmission opportunities for the monitoring resources or monitoring resource sets associated with the first report;

[0146] See Figure 4 For spatial domain prediction: the M monitoring instances or M monitoring times in the first report can be understood as M monitoring resources or a set of M monitoring resources, or the M transmission times of the monitoring resources, or the M transmission times of the set of monitoring resources.

[0147] See Figure 5 For time domain prediction: The first report corresponds to M monitoring instances and M monitoring times (referring to the M transmission times of the monitoring resource set, or the M transmission times of the monitoring resource, from an individual perspective, similar to the spatial domain).

[0148] Optionally, the monitoring results indicated in the first report are related to the number of transmission opportunities of the monitoring resource or the set of monitoring resources. Optionally, the second number may be determined based on at least one of the first number and the first window.

[0149] Optionally, the second quantity can be less than or equal to the first quantity.

[0150] Optionally, the second quantity can be configured on the network side, for example, in the Channel State Information Report Configuration (CSI-reportConfig), or the second quantity can be determined by the terminal.

[0151] In this embodiment, if a second quantity is configured, the terminal can perform the first operation before the second quantity is met, or the terminal can perform the second operation after the second quantity is met. In this way, the terminal can choose whether to report the first report based on whether the second quantity is met, thereby preventing the performance monitoring results received by the network side from failing to accurately reflect the actual performance of the AI ​​unit. This reduces the risk that the network side may misjudge the inference performance of the AI ​​unit based on the first report reported by the terminal, and improves the accuracy of the network side's evaluation of the inference performance of the AI ​​unit.

[0152] 5) First ratio, the first ratio is used to calculate the second quantity with the first quantity.

[0153] For example, the second quantity is equal to the product of the first quantity and the first proportion, wherein the first proportion can be configured on the network side in CSI-reportConfig for performance monitoring, or the first proportion can be reported by the terminal in the first report.

[0154] Taking the information in the configuration information related to the first resource as an example, "the information in the configuration information related to the first resource" means that the configuration information includes the information of the first resource, or that the configuration information includes information related to the information of the first resource. In other words, the configuration information can explicitly or implicitly contain the information of the first resource. It is understandable that the association of the configuration information with the first quantity, first window, second quantity, or first ratio is similar, and will not be elaborated further here.

[0155] In one embodiment of this application, the terminal performs a first operation based on the configuration information, including:

[0156] If the number of monitoring times or monitoring instances corresponding to the monitoring result is less than or equal to the second number, or if the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is less than or equal to the second number, the first operation is performed.

[0157] For example, if the monitoring result is obtained when the number of monitoring times or the number of monitoring instances is less than or equal to the second number, the terminal performs the first operation; or, if the monitoring result is obtained when the number of transmission opportunities of the monitoring resources or the set of monitoring resources is less than or equal to the second number, the terminal performs the first operation.

[0158] For example, before the number of monitoring times or monitoring instances corresponding to the monitoring results meet the second quantity, or before the number of transmission opportunities of the monitoring resources or monitoring resource sets corresponding to the monitoring results meet the second quantity, the terminal performs the first operation.

[0159] In one embodiment of this application, when the number of monitoring times or monitoring instances corresponding to the monitoring result is less than or equal to a second number, or the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is less than or equal to the second number, a first operation is performed, including:

[0160] If the number of monitoring times or monitoring instances corresponding to the monitoring results is less than or equal to the second number before the first time position or after the second time position, the first operation is performed;

[0161] or,

[0162] If the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is less than or equal to the second number before the first time position or after the second time position, the first operation is performed.

[0163] Wherein, the first time position is used to determine the reference time position of the first report, and the second time position is used to determine the start time position of the first quantity or the second quantity or the first window.

[0164] It should be noted that "before the first time position" can mean only before the first time position, or it can include the first time position. Similarly, "after the second time position" can mean only after the second time position, or it can include the second time position.

[0165] In one embodiment of this application, the terminal performs a second operation based on the configuration information, including:

[0166] If the number of monitoring times or monitoring instances corresponding to the monitoring result is greater than or equal to the second number, or if the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is greater than or equal to the second number, the second operation is performed.

[0167] For example, if the monitoring result is obtained when the number of monitoring times or the number of monitoring instances is greater than or equal to the second number, the terminal performs the second operation; or, if the monitoring result is obtained when the number of transmission opportunities of the monitoring resource or the set of monitoring resources is greater than or equal to the second number, the terminal performs the second operation.

[0168] For example, after the number of monitoring times or monitoring instances corresponding to the monitoring results meet the second quantity, or after the number of transmission opportunities of the monitoring resources or monitoring resource sets corresponding to the monitoring results meet the second quantity, the terminal performs the second operation.

[0169] In one embodiment of this application, when the number of monitoring times or monitoring instances corresponding to the monitoring result is greater than or equal to a second number, or when the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is greater than or equal to a second number, a second operation is performed, including:

[0170] If, before the third time position, the number of monitoring times or monitoring instances corresponding to the monitoring result is greater than or equal to the second number, or the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is greater than or equal to the second number, then the second operation is performed.

[0171] The third time position is used to determine the reference time position of the first report.

[0172] For example, after the first report is configured or reconfigured, or after the serving cell is activated, or after a BWP handover, or after the semi-static channel state information (SP-CSI) is activated, the terminal will only report the first report if it receives the transmission of at least a second number of resources for model monitoring before the CSI reference resource; otherwise, the terminal will discard or skip the first report.

[0173] In one embodiment of this application, the terminal performs a first operation based on the configuration information, including:

[0174] If the time length from the fourth time position to the fifth time position is less than or equal to the length of the first window, perform the first operation;

[0175] The fourth time position is used to determine the start time position of the first quantity or the second quantity or the first window, and the fifth time position is used to determine the reference time position of the first report.

[0176] In one embodiment of this application, the terminal performs a second operation based on the configuration information, including:

[0177] If the time length from the sixth time position to the seventh time position is greater than or equal to the length of the first window, perform the second operation;

[0178] The sixth time position is used to determine the start time position of the first quantity or the second quantity or the first window, and the seventh time position is used to determine the reference time position of the first report.

[0179] In one embodiment of this application, the monitoring result includes at least one of the following:

[0180] 1) Information used to indicate the correct number of monitoring sessions;

[0181] Optionally, the number of correct monitoring counts refers to the number of times the AI ​​unit's inference results are correct.

[0182] "The reasoning result of the AI ​​unit is correct" means that the reasoning result of the AI ​​unit is consistent with, similar to or close to the measurement result used for performance monitoring of the AI ​​unit.

[0183] 2) Information used to indicate the correct number of monitoring instances;

[0184] Optionally, a correct monitoring instance refers to a monitoring instance where the inference result of the AI ​​unit is correct.

[0185] 3) Information used to indicate the correct number of valid monitoring sessions;

[0186] "Effective monitoring" refers to monitoring results that can find corresponding matching inference results to determine whether the monitoring results are correct, or monitoring results that overlap with the top 1 or top-k inference results, or monitoring results that can be found to determine whether the top-1 or top-k inference results are correct or incorrect.

[0187] 4) Information used to indicate the correct number of valid monitoring instances;

[0188] 5) Information used to indicate the correct monitoring ratio;

[0189] Optionally, the correct monitoring ratio refers to the ratio of the correct number of monitoring sessions to the total number of monitoring sessions.

[0190] Optionally, the correct monitoring ratio is determined based on the correct monitoring instances and the initial quantity.

[0191] 6) Information used to indicate the correct proportion of effective monitoring;

[0192] Optionally, "information on the correct effective monitoring ratio" refers to the ratio of the correct effective monitoring count to the total number of monitoring counts.

[0193] Optionally, the information used to indicate the correct effective monitoring ratio includes at least one of the following:

[0194] a) Information used to indicate the correct first effective monitoring ratio;

[0195] The correct first effective monitoring ratio is determined based on the correct number of effective monitoring times or the number of effective monitoring instances and the number of monitoring times or monitoring instances corresponding to the first report; wherein the number of monitoring instances corresponding to the first report corresponds to the third number.

[0196] For example, the correct first effective monitoring ratio = the number of correct effective monitoring times or monitoring instances / the number of monitoring times or monitoring instances corresponding to the first report. Furthermore, the final correct first effective monitoring ratio can be obtained by rounding or quantifying the divisor calculated by the above formula, which is not limited here.

[0197] b) Information used to indicate the correct second effective monitoring ratio;

[0198] The correct second effective monitoring ratio is determined based on the correct number of effective monitoring times or effective monitoring instances and the number of effective monitoring times or effective monitoring instances corresponding to the first report. The number of effective monitoring times or monitoring instances corresponding to the first report can correspond to the fourth quantity.

[0199] 7) The third quantity of information;

[0200] The third quantity indication information is used to indicate the number of monitoring times or monitoring instances associated with the first report, or the third quantity is used to indicate the number of transmission opportunities of the monitoring resources or monitoring resource set associated with the first report;

[0201] Optionally, the third quantity can be equal to either the first or the second quantity.

[0202] Optionally, the third quantity can be selected from the second quantity to the first quantity.

[0203] Optionally, the cost of the third quantity is determined based on either the first or the second quantity.

[0204] For example, the cost of the third quantity is equal to one of the following: rounded up log2(first quantity), rounded up log2(second quantity), rounded up log2(first quantity + 1), rounded up log2(second quantity + 1), rounded up log2(first quantity - second quantity), rounded up log2(first quantity - second quantity + 1).

[0205] 8) The fourth quantity of instruction information;

[0206] The fourth quantity indication information is used to indicate the number of valid monitoring times or valid monitoring instances associated with the first report, or the fourth quantity is used for the transmission timing of valid monitoring resources or valid monitoring resource sets associated with the first report.

[0207] Optionally, the fourth quantity is equal to either the first or the second quantity.

[0208] Optionally, the fourth quantity can be any value from the second quantity to the first quantity.

[0209] Optionally, the cost of the fourth quantity is determined based on either the first or the second quantity.

[0210] For example, the cost of the fourth quantity is equal to one of the following: rounded up log2(first quantity), rounded up log2(second quantity), rounded up log2(first quantity + 1), rounded up log2(second quantity + 1), rounded up log2(first quantity - second quantity), rounded up log2(first quantity - second quantity + 1).

[0211] In one implementation, if the number of monitoring times or monitoring instances corresponding to the monitoring result is less than or equal to a second number, or if the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is less than or equal to a second number, the monitoring result may include a third number of indication information, or information for indicating the correct number of monitoring times, or information for indicating the correct monitoring ratio.

[0212] In another implementation, if the time length from the fourth time position to the fifth time position is less than or equal to the length of the first window, the monitoring result may include a third quantity of indication information, or information indicating the correct number of monitoring sessions, or information indicating the correct monitoring ratio.

[0213] In another implementation, if the number of monitoring times or monitoring instances corresponding to the monitoring result is greater than or equal to the second number, or if the number of transmission opportunities of the monitoring resources or monitoring resource set corresponding to the monitoring result is greater than or equal to the second number, the monitoring result may include a fourth number of indication information, or information for indicating the correct number of valid monitoring times, or information for indicating the correct first valid monitoring ratio, or information for indicating the correct second valid monitoring ratio.

[0214] In another implementation, if the time length from the sixth time position to the seventh time position is greater than or equal to the length of the first window, the monitoring result may include a fourth quantity of indication information, or information indicating the correct number of valid monitoring, or information indicating the correct first effective monitoring ratio, or information indicating the correct second effective monitoring ratio.

[0215] In another implementation, the monitoring results may include: information indicating the correct monitoring ratio, information indicating a third quantity, or information indicating the correct second effective monitoring ratio.

[0216] In another implementation, the monitoring results may include: information indicating the correct first effective monitoring ratio, and information indicating the correct effective monitoring instances.

[0217] In one embodiment of this application, the time slot offset of the non-periodic first report is greater than or equal to the time length from the eighth time position to the ninth time position;

[0218] The eighth time position is used to determine the start time position of the first quantity, the second quantity, or the first window, and the ninth time position is used to determine the reference time position of the first report.

[0219] In one embodiment of this application, the second time position, the fourth time position, the sixth time position, or the eighth time position is at least one of the following;

[0220] 1) A first time domain position, or a first time domain position plus a first offset, wherein the first time domain position is the time domain position at which the configuration information is received;

[0221] Optionally, the time-domain characteristic of the first report is periodic reporting.

[0222] 2) The second time domain position, or the second time domain position plus the second offset, wherein the second time domain position is the time domain position for receiving the first information, and the first information is used to activate the configuration information;

[0223] Optionally, the time-domain characteristic of the first report is a semi-persistent report.

[0224] Optionally, the first piece of information is the Medium Access Control Element (MAC CE).

[0225] 3) The third time domain position, or the third time domain position plus the third offset, wherein the third time domain position is the time domain position for receiving the second information, and the second information is used to activate the first report.

[0226] Optionally, the time-domain characteristic of the first report is a non-periodic report.

[0227] Optionally, the second information is Downlink Control Information (DCI), which is specifically used to activate the non-periodic first report.

[0228] It should be noted that the first offset, second offset, and third offset can be configured on the network side, agreed upon by the protocol, or reported by the terminal. This application does not specifically limit the first offset, second offset, and third offset.

[0229] 4) Temporal location of Serving Cell Activation;

[0230] 5) Temporal location of the Bandwidth Part (BWP) change;

[0231] 6) The temporal location of the second report configuration or reconfiguration;

[0232] For example, the second time position, or the fourth time position, the sixth time position, or the eighth time position can be associated with a second report configuration or reconfiguration.

[0233] 7) The temporal location where the second report is activated;

[0234] For example, the second time position, or the fourth time position, or the sixth time position, or the eighth time position can be associated with the second report being activated by MAC CE.

[0235] In one embodiment of this application, the first time position, the third time position, the fifth time position, the seventh time position, or the ninth time position is at least one of the following:

[0236] 1) The temporal location of the first report;

[0237] 2) The temporal location of the Channel State Information (CSI) reference resource in the first report;

[0238] 3) The temporal location of the monitoring resource or set of monitoring resources corresponding to the first report;

[0239] 4) The temporal location of the second report corresponding to the first report;

[0240] Optionally, the time domain location of the second report corresponding to the first report includes: the time domain location of the most recent second report corresponding to the first report.

[0241] 5) The time-domain location of the channel state information reference resource for the second report corresponding to the first report;

[0242] Optionally, the time-domain location of the channel state information reference resource of the second report corresponding to the first report includes: the time-domain location of the channel state information reference resource of the most recent second report corresponding to the first report;

[0243] 6) The time domain location of the most recent monitoring instance corresponding to the first report.

[0244] In one embodiment of this application, the time-domain location includes at least one of the following: the starting position of the occupied time slot, the starting time slot position of the occupied time slot position, and the starting position of the occupied symbol.

[0245] In one embodiment of this application, the first resource is associated with a second resource, the second resource (or Set A or second resource set) being a resource used to determine the output of the AI ​​unit or to determine the prediction result.

[0246] Optionally, associating the first resource with the second resource includes associating the third information of the first resource with the fourth information of the second resource; wherein the third information and the fourth information are respectively resource identifiers (RS ID); or, the third information is a resource identifier and the fourth information is a virtual identifier; or, the third information and the fourth information are respectively resource indexes; or, the third information and the fourth information are respectively bitmaps; or, the third information and the fourth information are respectively subset identifiers; or, the third information and the fourth information are respectively quasi-co-location (QCL) information.

[0247] In one implementation, resource identifiers are used to determine the association between a first resource and a second resource. For example, if the resources in the second resource and the first resource use the same, similar, or nearly identical resource identifiers, it indicates that the first resource and the second resource are associated.

[0248] Optionally, resources in the second resource but not in the first resource are not rate-matched.

[0249] Optionally, resources in the second resource that are also resources in the first resource need to be rate matched.

[0250] In another implementation, resource identifiers and virtual identifiers are used to determine the association between the first resource and the second resource. That is, resources in the second resource use virtual identifiers, and resources in the first resource use resource identifiers. If the resource identifiers and virtual identifiers are the same, similar, or nearly identical, it indicates that the first resource and the second resource are associated.

[0251] Optionally, the resources in the second resource are not used for transmission.

[0252] Optionally, the resources in the second resource are not rate-matched.

[0253] Optionally, resources in the second resource but not in the first resource are not rate-matched.

[0254] Optionally, rate matching needs to be performed on the resources in the first resource.

[0255] In another implementation, the association between the first resource and the second resource is determined using other indication information, including but not limited to at least one of resource index, bitmap, subset ID, QCL information, etc.

[0256] Optionally, the resources in the second resource are not used for transmission.

[0257] Optionally, the resources in the second resource are not rate-matched.

[0258] In another implementation, the second resource is located in a second list, and the first list is a list corresponding to related technologies, with resources in the first list used for measurement.

[0259] Optionally, resources in the second resource that are not in the first list are not rate-matched.

[0260] Optionally, those resources in the second resource but also in the first list need to be rate matched, or need to be received by the terminal or need to be measured by the terminal.

[0261] Optionally, resources in the second list are not rate-matched.

[0262] Optionally, resources in the second list that are also in the first list may require rate matching, or terminal reception or measurement.

[0263] Optionally, resources in the second list but not in the first list do not need to be rate matched.

[0264] It should be noted that the second resource mentioned above can also be replaced with the second list (i.e., the second resource is the second list), and the first resource can also be replaced with the first list (the first resource is the first list), but in this case, the first list refers to the resource list used for channel measurement.

[0265] In this embodiment, the terminal performs a first operation (e.g., not reporting the first report, discarding the first report, skipping the reporting of the first report, or not expecting the network to activate the second report for inference) or a second operation (e.g., reporting the first report or confirming the first report is effective) based on the first report configuration information sent by the network side. This allows the terminal to choose whether to report the first report based on actual circumstances, thereby preventing the performance monitoring results received by the network side from failing to accurately reflect the actual performance of the AI ​​unit. Furthermore, this reduces the risk of the network side misjudging the AI ​​unit's inference performance based on the first report reported by the terminal, improving the accuracy of the network side's evaluation of the AI ​​unit's inference performance.

[0266] See Figure 3 The embodiments of this application provide a transmission processing method, the specific steps of which include:

[0267] Step 31: The network-side device sends the configuration information of the first report, which is used to indicate the monitoring results of the AI ​​unit;

[0268] Step 32: The network-side device performs a third or fourth operation based on the configuration information;

[0269] The third operation includes at least one of the following: not receiving the first report; not expecting the terminal to report the first report;

[0270] The fourth operation includes at least one of the following: receiving the first report; determining that the first report is effective.

[0271] In one embodiment of this application, the content in the configuration information is associated with at least one of the following:

[0272] Information about the first resource, which is used for performance monitoring;

[0273] The first quantity indicates the number of monitoring times or monitoring instances associated with the first report;

[0274] The first window is used for at least one of the following: indicating the monitoring window or monitoring window length associated with the first report, determining whether the first report should be reported or not, and determining the information reported by the first report;

[0275] The second quantity is used for at least one of the following: determining whether the first report is submitted or not, determining the information submitted by the first report, determining the number of monitoring times or monitoring instances associated with the first report, and determining the number of transmission opportunities for the monitoring resources or monitoring resource sets associated with the first report.

[0276] In one embodiment of this application, the network-side device performs a third operation based on the configuration information, including:

[0277] If the number of monitoring times or monitoring instances corresponding to the monitoring results is less than or equal to the second number, or if the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring results is less than or equal to the second number, a third operation is performed.

[0278] In one embodiment of this application, when the number of monitoring times or monitoring instances corresponding to the monitoring result is less than or equal to a second number, or the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is less than or equal to the second number, a third operation is performed, including:

[0279] If the number of monitoring times or monitoring instances corresponding to the monitoring results is less than or equal to the second number before the first time position or after the second time position, a third operation is performed.

[0280] or,

[0281] If the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is less than or equal to the second number before the first time position or after the second time position, the third operation is performed.

[0282] Wherein, the first time position is used to determine the reference time position of the first report, and the second time position is used to determine the start time position of the first quantity or the second quantity or the first window.

[0283] In one embodiment of this application, the network-side device performs a fourth operation based on the configuration information, including:

[0284] If the number of monitoring times or monitoring instances corresponding to the monitoring results is greater than or equal to the second number, or if the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring results is greater than or equal to the second number, then the fourth operation is performed.

[0285] In one embodiment of this application, when the number of monitoring times or monitoring instances corresponding to the monitoring result is greater than or equal to a second number, or the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is greater than or equal to a second number, a fourth operation is performed, including:

[0286] If, before the third time position, the number of monitoring times or monitoring instances corresponding to the monitoring result is greater than or equal to the second number, or the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is greater than or equal to the second number, then the fourth operation is performed.

[0287] The third time position is used to determine the reference time position of the first report.

[0288] In one embodiment of this application, the network-side device performs a third operation based on the configuration information, including:

[0289] If the time length from the fourth time position to the fifth time position is less than or equal to the length of the first window, perform the third operation;

[0290] The fourth time position is used to determine the start time position of the first quantity or the second quantity or the first window, and the fifth time position is used to determine the reference time position of the first report.

[0291] In one embodiment of this application, the network-side device performs a fourth operation based on the configuration information, including:

[0292] If the time length from the sixth time position to the seventh time position is greater than or equal to the length of the first window, perform the fourth operation;

[0293] The sixth time position is used to determine the start time position of the first quantity or the second quantity or the first window, and the seventh time position is used to determine the reference time position of the first report.

[0294] In one embodiment of this application, the monitoring result includes at least one of the following: information indicating the correct number of monitoring sessions, information indicating the correct number of monitoring instances, information indicating the correct number of valid monitoring sessions, information indicating the correct number of valid monitoring instances, information indicating the correct monitoring ratio, information indicating the correct valid monitoring ratio, third quantity indication information, and fourth quantity indication information.

[0295] The third quantity indication information is used to indicate the number of monitoring times or monitoring instances associated with the first report, or the third quantity is used to indicate the number of transmission opportunities of the monitoring resources or monitoring resource set associated with the first report;

[0296] The fourth quantity indication information is used to indicate the number of valid monitoring times or valid monitoring instances associated with the first report, or the fourth quantity is used for the transmission timing of valid monitoring resources or valid monitoring resource sets associated with the first report.

[0297] In one embodiment of this application, the information for indicating the correct effective monitoring ratio includes at least one of the following: information for indicating the correct first effective monitoring ratio, and information for indicating the correct second effective monitoring ratio;

[0298] The correct first effective monitoring ratio is determined based on the correct number of effective monitoring times or effective monitoring instances and the number of monitoring times or monitoring instances corresponding to the first report. The correct second effective monitoring ratio is determined based on the correct number of effective monitoring times or effective monitoring instances and the number of effective monitoring times or effective monitoring instances corresponding to the first report.

[0299] In one embodiment of this application, the time slot offset of the non-periodic first report is greater than or equal to the time length from the seventh time position to the eighth time position;

[0300] The seventh time position is used to determine the starting time position of the first quantity or the second quantity or the first window, and the eighth time position is used to determine the reference time position of the first report.

[0301] In one embodiment of this application, the second time position, the fourth time position, the sixth time position, or the eighth time position is at least one of the following;

[0302] The first time domain position, or the first time domain position plus the first offset;

[0303] The second time domain position, or the second time domain position plus the second offset;

[0304] The third time domain position, or the third time domain position plus the third offset;

[0305] The temporal location of the activated service cell;

[0306] The temporal location of the bandwidth switching;

[0307] The temporal location of the second report configuration or reconfiguration;

[0308] The second report was activated in the time domain.

[0309] Wherein, the first time domain position is the time domain position for sending the configuration information; the second time domain position is the time domain position for sending the first information, which is used to activate the configuration information; the third time domain position is the time domain position for sending the second information, which is used to activate the first report; the second report is used to indicate the inference result of the AI ​​unit, and the second report is associated with the first report.

[0310] In one embodiment of this application, the first time position, the third time position, the fifth time position, the seventh time position, or the ninth time position is at least one of the following:

[0311] The temporal location of the first report;

[0312] The channel state information in the first report refers to the time-domain location of the resource;

[0313] The temporal location of the monitoring resource corresponding to the first report;

[0314] The temporal location of the second report corresponding to the first report;

[0315] The channel state information of the second report corresponding to the first report refers to the time domain location of the resource;

[0316] The time-domain location of the most recent monitoring instance corresponding to the first report.

[0317] In one embodiment of this application, the first resource is associated with a second resource, which is a resource used to determine the output of the AI ​​unit or to determine the prediction result.

[0318] In one embodiment of this application, the association between the first resource and the second resource includes: the association between the third information of the first resource and the fourth information of the second resource;

[0319] The third and fourth pieces of information are resource identifiers, respectively.

[0320] Alternatively, the third information may be a resource identifier, and the fourth information may be a virtual identifier;

[0321] Alternatively, the third and fourth pieces of information may be resource indexes;

[0322] Alternatively, the third and fourth information may be bitmaps;

[0323] Alternatively, the third and fourth pieces of information may be subset identifiers;

[0324] Alternatively, the third and fourth information may be QCL information.

[0325] In this embodiment, the network-side device sends first report configuration information. This network-side device can perform a third operation (e.g., not receiving the first report or not expecting the terminal to report the first report), or a fourth operation (receiving the first report or confirming its effectiveness). This prevents the performance monitoring results received by the network side from failing to accurately reflect the actual performance of the AI ​​unit. Furthermore, this reduces the risk of the network side incorrectly judging the AI ​​unit's inference performance based on the first report reported by the terminal, thus improving the accuracy of the network side's evaluation of the AI ​​unit's inference performance.

[0326] The implementation methods of this application are described below with reference to Examples 1 to 3.

[0327] Example 1

[0328] The network-side configuration periodic first report needs to be monitored N times, for example, the content in the configuration information is associated with the first number (N), where N is greater than 1.

[0329] If the terminal has not yet detected N times due to the resource cycle configuration of the monitoring instance when it first submits the first report, the terminal will ignore the submission of the first report.

[0330] When the terminal submits the first report for the third time, it has already met the requirement of N monitoring times (corresponding to the third number), and then the terminal submits the first report at the corresponding time domain location.

[0331] Example 2

[0332] The network-side configuration periodic first report needs to be monitored N times, for example, the content in the configuration information is associated with the first number (N), where N is greater than 1.

[0333] When the terminal first submits the first report, it may not have detected N instances yet due to the periodic configuration of resources used for monitoring instances. Therefore, the terminal includes information in the first report indicating the correct number of valid monitoring instances and information indicating the correct first valid monitoring ratio. In this case, the network side can determine the actual number of monitoring instances in the first report based on the information indicating the correct number of valid monitoring instances and the information indicating the correct first valid monitoring ratio.

[0334] Example 3:

[0335] by Figure 4 As shown in the example, the terminal receives the configuration information of the first report, and the content in the configuration information is associated with the first quantity (N), where N = M + 1.

[0336] At the first reporting position of the first report, the terminal performs either the first operation or the second operation, wherein the number of monitoring times corresponding to the first reporting position of the first report is M.

[0337] The first operation includes at least one of the following:

[0338] 1) Failure to submit the first report;

[0339] 2) The terminal does not expect the network side to activate the second report (i.e., the inference report);

[0340] The second step includes: submitting the first report;

[0341] The first report includes at least one of the following:

[0342] a) Third quantity indication information and information used to indicate the correct number of monitoring sessions;

[0343] The third quantity is M;

[0344] b) Third quantity indication information and information used to indicate the correct number of valid monitoring sessions;

[0345] The third quantity is M;

[0346] c) Information used to indicate the correct first effective monitoring proportion and information used to indicate the correct effective monitoring frequency;

[0347] Among them, "information used to indicate the correct first effective monitoring ratio" is used to represent the ratio of "correct effective monitoring number" to "M".

[0348] It should be noted that the next first report may include information indicating the correct first effective monitoring ratio. "Information indicating the correct first effective monitoring ratio" is used to represent the ratio of "correct effective monitoring count" to "N".

[0349] See Figure 6 Embodiments of this application provide a transmission processing apparatus applied to a terminal. The apparatus 60 includes:

[0350] The first transceiver unit 61 is used to receive configuration information of the first report, which is used to indicate the monitoring results of the AI ​​unit;

[0351] The first processing unit 62 is configured to perform a first operation or a second operation according to the configuration information.

[0352] The first operation includes at least one of the following: not reporting the first report; discarding the first report; skipping the reporting of the first report; not expecting the network side to activate the second report, the second report being used to indicate the inference results of the AI ​​unit, and the second report being associated with the first report;

[0353] The second operation includes at least one of the following: reporting the first report; confirming that the first report is effective.

[0354] In one embodiment of this application, the content in the configuration information is associated with at least one of the following:

[0355] Information about the first resource, which is used for performance monitoring;

[0356] The first quantity indicates the number of monitoring times or monitoring instances associated with the first report;

[0357] The first window is used for at least one of the following: indicating the monitoring window or monitoring window length associated with the first report, determining whether the first report should be reported or not, and determining the information reported by the first report;

[0358] The second quantity is used for at least one of the following: determining whether the first report is reported or not, determining the information reported in the first report, determining the number of monitoring times or monitoring instances associated with the first report, and determining the number of transmission opportunities for the monitoring resources or monitoring resource sets associated with the first report.

[0359] The first ratio is used to calculate the second quantity from the first quantity.

[0360] In one embodiment of this application, the first processing unit 62 is further configured to:

[0361] If the number of monitoring times or monitoring instances corresponding to the monitoring result is less than or equal to the second number, or if the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is less than or equal to the second number, the first operation is performed.

[0362] In one embodiment of this application, the first processing unit 62 is further configured to:

[0363] If the number of monitoring times or monitoring instances corresponding to the monitoring results is less than or equal to the second number before the first time position or after the second time position, the first operation is performed;

[0364] or,

[0365] If the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is less than or equal to the second number before the first time position or after the second time position, the first operation is performed.

[0366] Wherein, the first time position is used to determine the reference time position of the first report, and the second time position is used to determine the start time position of the first quantity or the second quantity or the first window.

[0367] In one embodiment of this application, the first processing unit 62 is further configured to:

[0368] If the number of monitoring times or monitoring instances corresponding to the monitoring result is greater than or equal to the second number, or if the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is greater than or equal to the second number, the second operation is performed.

[0369] In one embodiment of this application, the first processing unit 62 is further configured to:

[0370] If, before the third time position, the number of monitoring times or monitoring instances corresponding to the monitoring result is greater than or equal to the second number, or the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is greater than or equal to the second number, then the second operation is performed.

[0371] The third time position is used to determine the reference time position of the first report.

[0372] In one embodiment of this application, the first processing unit 62 is further configured to:

[0373] If the time length from the fourth time position to the fifth time position is less than or equal to the length of the first window, perform the first operation;

[0374] The fourth time position is used to determine the start time position of the first quantity or the second quantity or the first window, and the fifth time position is used to determine the reference time position of the first report.

[0375] In one embodiment of this application, the first processing unit 62 is further configured to:

[0376] If the time length from the sixth time position to the seventh time position is greater than or equal to the length of the first window, perform the second operation;

[0377] The sixth time position is used to determine the start time position of the first quantity or the second quantity or the first window, and the seventh time position is used to determine the reference time position of the first report.

[0378] In one embodiment of this application, the monitoring result includes at least one of the following: information indicating the correct number of monitoring sessions, information indicating the correct number of monitoring instances, information indicating the correct number of valid monitoring sessions, information indicating the correct number of valid monitoring instances, information indicating the correct monitoring ratio, information indicating the correct valid monitoring ratio, third quantity indication information, and fourth quantity indication information.

[0379] The third quantity indication information is used to indicate the number of monitoring times or monitoring instances associated with the first report, or the third quantity is used to indicate the number of transmission opportunities of the monitoring resources or monitoring resource set associated with the first report;

[0380] The fourth quantity indication information is used to indicate the number of valid monitoring times or valid monitoring instances associated with the first report, or the fourth quantity is used for the transmission timing of valid monitoring resources or valid monitoring resource sets associated with the first report.

[0381] In one embodiment of this application, the information for indicating the correct effective monitoring ratio includes at least one of the following: information for indicating the correct first effective monitoring ratio, and information for indicating the correct second effective monitoring ratio;

[0382] The correct first effective monitoring ratio is determined based on the correct number of effective monitoring times or effective monitoring instances and the number of monitoring times or monitoring instances corresponding to the first report. The correct second effective monitoring ratio is determined based on the correct number of effective monitoring times or effective monitoring instances and the number of effective monitoring times or effective monitoring instances corresponding to the first report.

[0383] In one embodiment of this application, the time slot offset of the non-periodic first report is greater than or equal to the time length from the eighth time position to the ninth time position;

[0384] The eighth time position is used to determine the start time position of the first quantity, the second quantity, or the first window, and the ninth time position is used to determine the reference time position of the first report.

[0385] In one embodiment of this application, the second time position, the fourth time position, the sixth time position, or the eighth time position is at least one of the following;

[0386] The first time domain position, or the first time domain position plus the first offset;

[0387] The second time domain position, or the second time domain position plus the second offset;

[0388] The third time domain position, or the third time domain position plus the third offset;

[0389] The temporal location of the activated service cell;

[0390] The temporal location of the bandwidth switching;

[0391] The second report is configured or reconfigured in the time domain;

[0392] The time-domain location where the second report is activated;

[0393] Wherein, the first time domain position is the time domain position at which the configuration information is received;

[0394] The second time-domain location is the time-domain location for receiving the first information, which is used to activate the configuration information;

[0395] The third time-domain location is the time-domain location for receiving the second information, which is used to activate the first report.

[0396] In one embodiment of this application, the first time position, the third time position, the fifth time position, the seventh time position, or the ninth time position is at least one of the following:

[0397] The temporal location of the first report;

[0398] The channel state information in the first report refers to the time-domain location of the resource;

[0399] The temporal location of the monitoring resource corresponding to the first report;

[0400] The temporal location of the second report corresponding to the first report;

[0401] The channel state information of the second report corresponding to the first report refers to the time domain location of the resource;

[0402] The time-domain location of the most recent monitoring instance corresponding to the first report.

[0403] In one embodiment of this application, the second report is used to report at least one of the following: predicted reference signal received power, predicted channel state information resource indication, predicted synchronization signal block resource indication, or the second report is associated with the inference function of the AI ​​unit.

[0404] In one embodiment of this application, the time-domain location includes at least one of the following: the starting position of the occupied time slot, the starting time slot position of the occupied time slot position, and the starting position of the occupied symbol.

[0405] In one embodiment of this application, the first resource is associated with a second resource, which is a resource used to determine the output of the AI ​​unit or to determine the prediction result.

[0406] In one embodiment of this application, the association between the first resource and the second resource includes: the association between the third information of the first resource and the fourth information of the second resource;

[0407] The third and fourth pieces of information are resource identifiers, respectively.

[0408] Alternatively, the third information may be a resource identifier, and the fourth information may be a virtual identifier;

[0409] Alternatively, the third and fourth pieces of information may be resource indexes;

[0410] Alternatively, the third and fourth information may be bitmaps;

[0411] Alternatively, the third and fourth pieces of information may be subset identifiers;

[0412] Alternatively, the third and fourth information may be QCL information.

[0413] The apparatus provided in this application embodiment can achieve... Figure 2 The various processes implemented in the method embodiments achieve the same technical effect, and will not be described again here to avoid repetition.

[0414] See Figure 7 Embodiments of this application provide a transmission processing apparatus applied to a network-side device. The apparatus 70 includes:

[0415] The second transceiver unit 71 is used to send configuration information of the first report, which is used to indicate the monitoring results of the AI ​​unit;

[0416] The second processing unit 72 is used to perform a third operation or a fourth operation according to the configuration information;

[0417] The third operation includes at least one of the following: not receiving the first report; not expecting the terminal to report the first report;

[0418] The fourth operation includes at least one of the following: receiving the first report; determining that the first report is effective.

[0419] In one embodiment of this application, the content in the configuration information is associated with at least one of the following:

[0420] Information about the first resource, which is used for performance monitoring;

[0421] The first quantity indicates the number of monitoring times or monitoring instances associated with the first report;

[0422] The first window is used for at least one of the following: indicating the monitoring window or monitoring window length associated with the first report, determining whether the first report should be reported or not, and determining the information reported by the first report;

[0423] The second quantity is used for at least one of the following: determining whether the first report is reported or not, determining the information reported in the first report, determining the number of monitoring times or monitoring instances associated with the first report, and determining the number of transmission opportunities for the monitoring resources or monitoring resource sets associated with the first report.

[0424] The first ratio is used to calculate the second quantity from the first quantity.

[0425] In one embodiment of this application, the second processing unit 72 is further configured to: perform a third operation when the number of monitoring times or monitoring instances corresponding to the monitoring result is less than or equal to a second quantity, or the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is less than or equal to a second quantity.

[0426] In one embodiment of this application, the second processing unit 72 is further configured to: perform a third operation before the first time position or after the second time position, if the number of monitoring times or monitoring instances corresponding to the monitoring result is less than or equal to the second number;

[0427] or,

[0428] If the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is less than or equal to the second number before the first time position or after the second time position, the third operation is performed.

[0429] Wherein, the first time position is used to determine the reference time position of the first report, and the second time position is used to determine the start time position of the first quantity or the second quantity or the first window.

[0430] In one embodiment of this application, the second processing unit 72 is further configured to: perform a fourth operation when the number of monitoring times or monitoring instances corresponding to the monitoring result is greater than or equal to a second quantity, or the number of transmission opportunities of the monitoring resources or monitoring resource set corresponding to the monitoring result is greater than or equal to a second quantity.

[0431] In one embodiment of this application, the second processing unit 72 is further configured to: perform a fourth operation if, before the third time position, the number of monitoring times or monitoring instances corresponding to the monitoring result is greater than or equal to the second number, or the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is greater than or equal to the second number;

[0432] The third time position is used to determine the reference time position of the first report.

[0433] In one embodiment of this application, the second processing unit 72 is further configured to: perform a third operation if the time length from the fourth time position to the fifth time position is less than or equal to the length of the first window;

[0434] The fourth time position is used to determine the start time position of the first quantity or the second quantity or the first window, and the fifth time position is used to determine the reference time position of the first report.

[0435] In one embodiment of this application, the second processing unit 72 is further configured to: perform a fourth operation if the time length from the sixth time position to the seventh time position is greater than or equal to the length of the first window;

[0436] The sixth time position is used to determine the start time position of the first quantity or the second quantity or the first window, and the seventh time position is used to determine the reference time position of the first report.

[0437] In one embodiment of this application, the monitoring result includes at least one of the following: information indicating the correct number of monitoring sessions, information indicating the correct number of monitoring instances, information indicating the correct number of valid monitoring sessions, information indicating the correct number of valid monitoring instances, information indicating the correct monitoring ratio, information indicating the correct valid monitoring ratio, third quantity indication information, and fourth quantity indication information.

[0438] The third quantity indication information is used to indicate the number of monitoring times or monitoring instances associated with the first report, or the third quantity is used to indicate the number of transmission opportunities of the monitoring resources or monitoring resource set associated with the first report;

[0439] The fourth quantity indication information is used to indicate the number of valid monitoring times or valid monitoring instances associated with the first report, or the fourth quantity is used for the transmission timing of valid monitoring resources or valid monitoring resource sets associated with the first report.

[0440] In one embodiment of this application, the information for indicating the correct effective monitoring ratio includes at least one of the following: information for indicating the correct first effective monitoring ratio, and information for indicating the correct second effective monitoring ratio;

[0441] The correct first effective monitoring ratio is determined based on the correct number of effective monitoring times or effective monitoring instances and the number of monitoring times or monitoring instances corresponding to the first report. The correct second effective monitoring ratio is determined based on the correct number of effective monitoring times or effective monitoring instances and the number of effective monitoring times or effective monitoring instances corresponding to the first report.

[0442] In one embodiment of this application, the time slot offset of the non-periodic first report is greater than or equal to the time length from the eighth time position to the ninth time position;

[0443] The eighth time position is used to determine the starting time position of the first quantity or the second quantity or the first window, and the ninth time position is used to determine the reference time position of the first report.

[0444] In one embodiment of this application, the second time position, the fourth time position, the sixth time position, or the eighth time position is at least one of the following;

[0445] The first time domain position, or the first time domain position plus the first offset;

[0446] The second time domain position, or the second time domain position plus the second offset;

[0447] The third time domain position, or the third time domain position plus the third offset;

[0448] The temporal location of the activated service cell;

[0449] The temporal location of the bandwidth switching;

[0450] The temporal location of the second report configuration or reconfiguration;

[0451] The second report was activated in the time domain.

[0452] Wherein, the first time domain position is the time domain position for sending the configuration information; the second time domain position is the time domain position for sending the first information, which is used to activate the configuration information; the third time domain position is the time domain position for sending the second information, which is used to activate the first report; the second report is used to indicate the inference result of the AI ​​unit, and the second report is associated with the first report.

[0453] In one embodiment of this application, the first time position, the third time position, the fifth time position, the seventh time position, or the ninth time position is at least one of the following:

[0454] The temporal location of the first report;

[0455] The channel state information in the first report refers to the time-domain location of the resource;

[0456] The temporal location of the monitoring resource corresponding to the first report;

[0457] The temporal location of the second report corresponding to the first report;

[0458] The channel state information of the second report corresponding to the first report refers to the time domain location of the resource;

[0459] The time-domain location of the most recent monitoring instance corresponding to the first report.

[0460] In one embodiment of this application, the first resource is associated with a second resource, which is a resource used to determine the output of the AI ​​unit or to determine the prediction result.

[0461] In one embodiment of this application, the association between the first resource and the second resource includes: the association between the third information of the first resource and the fourth information of the second resource;

[0462] The third and fourth pieces of information are resource identifiers, respectively.

[0463] Alternatively, the third information may be a resource identifier, and the fourth information may be a virtual identifier;

[0464] Alternatively, the third and fourth pieces of information may be resource indexes;

[0465] Alternatively, the third and fourth information may be bitmaps;

[0466] Alternatively, the third and fourth pieces of information may be subset identifiers;

[0467] Alternatively, the third and fourth information may be QCL information.

[0468] The apparatus provided in this application embodiment can achieve... Figure 3 The various processes implemented in the method embodiments achieve the same technical effect, and will not be described again here to avoid repetition.

[0469] like Figure 8As shown, this application embodiment also provides a communication device 800, including a processor 801 and a memory 802. The memory 802 stores a program or instructions that can run on the processor 801. For example, when the communication device 800 is a terminal, the program or instructions executed by the processor 801 implement the above-mentioned... Figure 2 The various steps of the illustrated method embodiment can achieve the same technical effect. When the communication device 800 is a network-side device, the program or instructions executed by the processor 801 implement the above-described steps. Figure 3 The steps of the method embodiment shown are the same and can achieve the same technical effect. To avoid repetition, they will not be described again here.

[0470] This application embodiment also provides a terminal, including a processor and a communication interface, wherein the communication interface is coupled to the processor, and the processor is used to run programs or instructions to implement, for example... Figure 2 The steps in the method embodiment shown are illustrated. This terminal embodiment corresponds to the above-described terminal-side method embodiment. All implementation processes and methods of the above-described method embodiments can be applied to this terminal embodiment and achieve the same technical effect. The terminal can be... Figure 6 The communication processing device shown.

[0471] Specifically, Figure 9 A schematic diagram of the hardware structure of a terminal to implement an embodiment of this application.

[0472] The terminal 900 includes, but is not limited to, at least some of the following components: radio frequency unit 901, network module 902, audio output unit 903, input unit 904, sensor 905, display unit 906, user input unit 907, interface unit 908, memory 909, and processor 910.

[0473] Those skilled in the art will understand that the terminal 900 may also include a power supply (such as a battery) for supplying power to various components. The power supply may be logically connected to the processor 910 through a power management system, thereby enabling functions such as managing charging, discharging, and power consumption through the power management system. Figure 9 The terminal structure shown does not constitute a limitation on the terminal. The terminal may include more or fewer components than shown, or combine certain components, or have different component arrangements, which will not be elaborated here.

[0474] It should be understood that, in this embodiment, the input unit 904 may include a graphics processor 9041 and a microphone 9042. The graphics processor 9041 processes image data of still images or videos obtained by an image capture device (such as a camera) in video capture mode or image capture mode. The display unit 906 may include a display panel 9061, which may be configured in the form of a liquid crystal display, an organic light-emitting diode, or the like. The user input unit 907 includes at least one of a touch panel 9071 and other input devices 9072. The touch panel 9071 is also called a touch screen. The touch panel 9071 may include a touch detection device and a touch controller. Other input devices 9072 may include, but are not limited to, physical keyboards, function keys (such as volume control buttons, power buttons, etc.), trackballs, mice, and joysticks, which will not be described in detail here.

[0475] In this embodiment, after receiving downlink data from the network-side device, the radio frequency unit 901 can transmit it to the processor 910 for processing; in addition, the radio frequency unit 901 can send uplink data to the network-side device. Typically, the radio frequency unit 901 includes, but is not limited to, antennas, amplifiers, transceivers, couplers, low-noise amplifiers, duplexers, etc.

[0476] The memory 909 can be used to store software programs or instructions, as well as various data. The memory 909 may primarily include a first storage area for storing programs or instructions and a second storage area for storing data. The first storage area may store the operating system, application programs or instructions required for at least one function (such as sound playback, image playback, etc.). Furthermore, the memory 909 may include volatile memory or non-volatile memory. The non-volatile memory may be read-only memory (ROM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), electrically erasable programmable read-only memory (EEPROM), or flash memory. Volatile memory can be random access memory (RAM), static random access memory (SRAM), dynamic random access memory (DRAM), synchronous dynamic random access memory (SDRAM), double data rate synchronous dynamic random access memory (DDRSDRAM), enhanced synchronous dynamic random access memory (ESDRAM), synchronous link dynamic random access memory (SLDRAM), and direct memory bus RAM (DRRAM). The memory 909 in the embodiments of this application includes, but is not limited to, these and any other suitable types of memory.

[0477] Processor 910 may include one or more processing units; optionally, processor 910 integrates an application processor and a modem processor, wherein the application processor mainly handles operations involving the operating system, user interface, and applications, and the modem processor mainly handles wireless communication signals, such as a baseband processor. It is understood that the aforementioned modem processor may also not be integrated into processor 910.

[0478] It is understood that the implementation process of each implementation method mentioned in this embodiment can be referred to Figure 2 The relevant descriptions of the method embodiments shown herein, which achieve the same or corresponding technical effects, will not be repeated here to avoid duplication.

[0479] This application embodiment also provides a network-side device, including a processor and a communication interface, wherein the communication interface is coupled to the processor, and the processor is used to run programs or instructions to implement, for example... Figure 3The steps of the method embodiment shown are illustrated. This network-side device embodiment corresponds to the above-described network-side device method embodiment. All implementation processes and methods of the above-described method embodiments can be applied to this network-side device embodiment and can achieve the same technical effect.

[0480] Specifically, embodiments of this application also provide a network-side device, which can be... Figure 7 The communication processing device shown. (e.g.) Figure 10 As shown, the network-side device 1000 includes: an antenna 1001, a radio frequency (RF) device 1002, a baseband device 1003, a processor 1004, and a memory 1005. The antenna 1001 is connected to the RF device 1002. In the uplink direction, the RF device 1002 receives information through the antenna 1001 and transmits the received information to the baseband device 1003 for processing. In the downlink direction, the baseband device 1003 processes the information to be transmitted and sends it to the RF device 1002. The RF device 1002 processes the received information and transmits it through the antenna 1001.

[0481] The method executed by the network-side device in the above embodiments can be implemented in the baseband device 1003, which includes a baseband processor.

[0482] The baseband device 1003 may include, for example, at least one baseband board on which multiple chips are disposed, such as... Figure 10 As shown, one of the chips is, for example, a baseband processor, which is connected to memory 1005 via a bus interface to call the program in memory 1905 and execute the network device operation shown in the above method embodiment.

[0483] The network-side device may also include a network interface 1006, such as a Common Public Radio Interface (CPRI).

[0484] Specifically, the network-side device 1000 in this application embodiment further includes: instructions or programs stored in memory 1005 and executable on processor 1004, wherein processor 1004 calls the instructions or programs in memory 1005 to execute. Figure 7 The methods executed by each module shown achieve the same technical effect, and to avoid repetition, they will not be described in detail here.

[0485] It is understood that the implementation process of each implementation method mentioned in this embodiment can be referred to Figure 2 or Figure 3 The relevant descriptions of the method embodiments shown herein, which achieve the same or corresponding technical effects, will not be repeated here to avoid duplication.

[0486] This application embodiment also provides a readable storage medium storing a program or instructions that, when executed by a processor, implement the above-described functionality. Figure 2 or Figure 3 The various processes of the method embodiments shown can achieve the same technical effect, and will not be described again here to avoid repetition.

[0487] The processor mentioned above is the processor in the terminal described in the above embodiments. The readable storage medium includes computer-readable storage media, such as computer read-only memory (ROM), random access memory (RAM), magnetic disk, or optical disk. In some examples, the readable storage medium may be a non-transient readable storage medium.

[0488] This application embodiment also provides a chip, the chip including a processor and a communication interface, the communication interface being coupled to the processor, the processor being used to run programs or instructions to implement the above. Figure 2 or Figure 3 The various processes of the method embodiments shown can achieve the same technical effect, and will not be described again here to avoid repetition.

[0489] It should be understood that the chip mentioned in the embodiments of this application may also be referred to as a system-on-a-chip, system chip, chip system, or system-on-a-chip, etc.

[0490] This application embodiment also provides a computer program / program product, which is stored in a storage medium and executed by at least one processor to implement the above. Figure 2 or Figure 3 The various processes of the method embodiments shown can achieve the same technical effect, and will not be described again here to avoid repetition.

[0491] This application also provides a wireless communication system, including: a terminal and a network-side device, wherein the terminal can be used to perform the functions provided in this application. Figure 2 The steps of the method shown can be performed by the network-side device as provided in the embodiments of this application. Figure 3 The steps of the method shown.

[0492] It should be noted that, in this document, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element. Furthermore, it should be noted that the scope of the methods and apparatuses in the embodiments of this application is not limited to performing functions in the order shown or discussed, but may also include performing functions substantially simultaneously or in the reverse order, depending on the functions involved. For example, the described methods may be performed in a different order than described, and various steps may be added, omitted, or combined. Additionally, features described with reference to certain examples may be combined in other examples.

[0493] From the above description of the embodiments, those skilled in the art can clearly understand that the methods of the above embodiments can be implemented by means of computer software products plus necessary general-purpose hardware platforms, and of course, they can also be implemented by hardware. The computer software product is stored in a storage medium (such as ROM, RAM, magnetic disk, optical disk, etc.) and includes one or more instructions to cause a terminal or network-side device to execute the methods described in the various embodiments of this application.

[0494] The embodiments of this application have been described above with reference to the accompanying drawings. However, this application is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other implementations under the guidance of this application without departing from the spirit and scope of the claims. All of these implementations are within the protection scope of this application.

Claims

1. A transmission processing method, characterized in that, include: The terminal receives configuration information from the first report, which is used to indicate the monitoring results of the artificial intelligence (AI) unit. The terminal performs a first operation or a second operation based on the configuration information; The first operation includes at least one of the following: not reporting the first report; discarding the first report; skipping the reporting of the first report; not expecting the network side to activate the second report, the second report being used to indicate the inference result of the AI ​​unit, and the second report being associated with the first report; The second operation includes at least one of the following: reporting the first report; confirming that the first report is effective.

2. The method according to claim 1, characterized in that, The content in the configuration information is associated with at least one of the following: Information about the first resource, which is used for performance monitoring; The first quantity indicates the number of monitoring times or monitoring instances associated with the first report; The first window is used for at least one of the following: indicating the monitoring window or monitoring window length associated with the first report, determining whether the first report should be reported or not, and determining the information reported by the first report; The second quantity is used for at least one of the following: determining whether the first report is reported or not, determining the information reported in the first report, determining the number of monitoring times or monitoring instances associated with the first report, and determining the number of transmission opportunities for the monitoring resources or monitoring resource sets associated with the first report. The first ratio is used to calculate the second quantity from the first quantity.

3. The method according to claim 1 or 2, characterized in that, The terminal performs a first operation based on the configuration information, including: If the number of monitoring times or monitoring instances corresponding to the monitoring result is less than or equal to the second number, or if the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is less than or equal to the second number, the first operation is performed.

4. The method according to claim 3, characterized in that, If the number of monitoring times or monitoring instances corresponding to the monitoring result is less than or equal to the second number, or if the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is less than or equal to the second number, the first operation is performed, including: If the number of monitoring times or monitoring instances corresponding to the monitoring results is less than or equal to the second number before the first time position or after the second time position, the first operation is performed; or, If the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is less than or equal to the second number before the first time position or after the second time position, the first operation is performed. Wherein, the first time position is used to determine the reference time position of the first report, and the second time position is used to determine the start time position of the first quantity or the second quantity or the first window.

5. The method according to claim 1 or 2, characterized in that, The terminal performs a second operation based on the configuration information, including: If the number of monitoring times or monitoring instances corresponding to the monitoring result is greater than or equal to the second number, or if the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is greater than or equal to the second number, the second operation is performed.

6. The method according to claim 5, characterized in that, If the number of monitoring times or monitoring instances corresponding to the monitoring result is greater than or equal to the second number, or if the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is greater than or equal to the second number, a second operation is performed, including: If, before the third time position, the number of monitoring times or monitoring instances corresponding to the monitoring result is greater than or equal to the second number, or the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is greater than or equal to the second number, then the second operation is performed. The third time position is used to determine the reference time position of the first report.

7. The method according to claim 1 or 2, characterized in that, The terminal performs a first operation based on the configuration information, including: If the time length from the fourth time position to the fifth time position is less than or equal to the length of the first window, perform the first operation; The fourth time position is used to determine the start time position of the first quantity or the second quantity or the first window, and the fifth time position is used to determine the reference time position of the first report.

8. The method according to claim 1 or 2, characterized in that, The terminal performs a second operation based on the configuration information, including: If the time length from the sixth time position to the seventh time position is greater than or equal to the length of the first window, perform the second operation; The sixth time position is used to determine the start time position of the first quantity or the second quantity or the first window, and the seventh time position is used to determine the reference time position of the first report.

9. The method according to any one of claims 1 to 8, characterized in that, The monitoring results include at least one of the following: information indicating the correct number of monitoring sessions, information indicating the correct number of monitoring instances, information indicating the correct number of valid monitoring sessions, information indicating the correct number of valid monitoring instances, information indicating the correct monitoring ratio, information indicating the correct valid monitoring ratio, third quantity indication information, and fourth quantity indication information. The third quantity indication information is used to indicate the number of monitoring times or monitoring instances associated with the first report, or the third quantity is used to indicate the number of transmission opportunities of the monitoring resources or monitoring resource set associated with the first report; The fourth quantity indication information is used to indicate the number of valid monitoring times or valid monitoring instances associated with the first report, or the fourth quantity is used for the transmission timing of valid monitoring resources or valid monitoring resource sets associated with the first report.

10. The method according to claim 9, characterized in that, The information used to indicate the correct effective monitoring ratio includes at least one of the following: information used to indicate the correct first effective monitoring ratio, and information used to indicate the correct second effective monitoring ratio; The correct first effective monitoring ratio is determined based on the correct number of effective monitoring times or effective monitoring instances and the number of monitoring times or monitoring instances corresponding to the first report. The correct second effective monitoring ratio is determined based on the correct number of effective monitoring times or effective monitoring instances and the number of effective monitoring times or effective monitoring instances corresponding to the first report.

11. The method according to claim 2, characterized in that, The time slot offset of the first report that is non-periodic is greater than or equal to the time length from the eighth time position to the ninth time position; The eighth time position is used to determine the start time position of the first quantity, the second quantity, or the first window, and the ninth time position is used to determine the reference time position of the first report.

12. The method according to claim 4, 7, 8, or 11, characterized in that, The second time position, or the fourth time position, or the sixth time position, or the eighth time position is at least one of the following; The first time domain position, or the first time domain position plus the first offset; The second time domain position, or the second time domain position plus the second offset; The third time domain position, or the third time domain position plus the third offset; The temporal location of the activated service cell; The temporal location of the bandwidth switching; The second report is configured or reconfigured in the time domain; The time-domain location where the second report is activated; Wherein, the first time domain position is the time domain position at which the configuration information is received; The second time-domain location is the time-domain location for receiving the first information, which is used to activate the configuration information; The third time-domain location is the time-domain location for receiving the second information, which is used to activate the first report.

13. The method according to claim 4, 6, 7, 8, or 11, characterized in that, The first time position, the third time position, the fifth time position, the seventh time position, or the ninth time position is at least one of the following: The temporal location of the first report; The channel state information in the first report refers to the time-domain location of the resource; The temporal location of the monitoring resource corresponding to the first report; The temporal location of the second report corresponding to the first report; The channel state information of the second report corresponding to the first report refers to the time domain location of the resource; The time-domain location of the most recent monitoring instance corresponding to the first report.

14. The method according to claim 1, 12, or 13, characterized in that, The second report is used to report at least one of the following: predicted reference signal received power, predicted channel state information resource indication, predicted synchronization signal block resource indication, or the inference function of the AI ​​unit associated with the second report.

15. The method according to claim 12 or 13, characterized in that, The time-domain location includes at least one of the following: the starting position of the occupied time slot, the starting time slot position of the occupied time slot location, and the starting position of the occupied symbol.

16. The method according to claim 2, characterized in that, The first resource is associated with the second resource, which is used to determine the output of the AI ​​unit or to determine the prediction result.

17. The method according to claim 16, characterized in that, The association between the first resource and the second resource includes: the association between the third information of the first resource and the fourth information of the second resource; The third and fourth pieces of information are resource identifiers, respectively. Alternatively, the third information may be a resource identifier, and the fourth information may be a virtual identifier; Alternatively, the third and fourth pieces of information may be resource indexes; Alternatively, the third and fourth information may be bitmaps; Alternatively, the third and fourth pieces of information may be subset identifiers; Alternatively, the third and fourth information may be QCL information.

18. A transmission processing method, characterized in that, include: The network-side device sends configuration information for the first report, which is used to indicate the monitoring results of the AI ​​unit; The network-side device performs a third or fourth operation based on the configuration information; The third operation includes at least one of the following: not receiving the first report; not expecting the terminal to report the first report; The fourth operation includes at least one of the following: receiving the first report; determining that the first report is effective.

19. The method according to claim 18, characterized in that, The content in the configuration information is associated with at least one of the following: Information about the first resource, which is used for performance monitoring; The first quantity indicates the number of monitoring times or monitoring instances associated with the first report; The first window is used for at least one of the following: indicating the monitoring window or monitoring window length associated with the first report, determining whether the first report should be reported or not, and determining the information reported by the first report; The second quantity is used for at least one of the following: determining whether the first report is reported or not, determining the information reported in the first report, determining the number of monitoring times or monitoring instances associated with the first report, and determining the number of transmission opportunities for the monitoring resources or monitoring resource sets associated with the first report. The first ratio is used to calculate the second quantity from the first quantity.

20. The method according to claim 18 or 19, characterized in that, The network-side device performs a third operation based on the configuration information, including: If the number of monitoring times or monitoring instances corresponding to the monitoring results is less than or equal to the second number, or if the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring results is less than or equal to the second number, a third operation is performed.

21. The method according to claim 20, characterized in that, If the number of monitoring times or monitoring instances corresponding to the monitoring results is less than or equal to the second number, or if the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring results is less than or equal to the second number, a third operation is performed, including: If the number of monitoring times or monitoring instances corresponding to the monitoring results is less than or equal to the second number before the first time position or after the second time position, a third operation is performed. or, If the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is less than or equal to the second number before the first time position or after the second time position, the third operation is performed. Wherein, the first time position is used to determine the reference time position of the first report, and the second time position is used to determine the start time position of the first quantity or the second quantity or the first window.

22. The method according to claim 18 or 19, characterized in that, The network-side device performs a fourth operation based on the configuration information, including: If the number of monitoring times or monitoring instances corresponding to the monitoring results is greater than or equal to the second number, or if the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring results is greater than or equal to the second number, then the fourth operation is performed.

23. The method according to claim 22, characterized in that, If the number of monitoring times or monitoring instances corresponding to the monitoring results is greater than or equal to the second number, or if the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring results is greater than or equal to the second number, a fourth operation is performed, including: If, before the third time position, the number of monitoring times or monitoring instances corresponding to the monitoring result is greater than or equal to the second number, or the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is greater than or equal to the second number, then the fourth operation is performed. The third time position is used to determine the reference time position of the first report.

24. The method according to claim 18 or 19, characterized in that, The network-side device performs a third operation based on the configuration information, including: If the time length from the fourth time position to the fifth time position is less than or equal to the length of the first window, perform the third operation; The fourth time position is used to determine the start time position of the first quantity or the second quantity or the first window, and the fifth time position is used to determine the reference time position of the first report.

25. The method according to claim 18 or 19, characterized in that, The network-side device performs a fourth operation based on the configuration information, including: If the time length from the sixth time position to the seventh time position is greater than or equal to the length of the first window, perform the fourth operation; The sixth time position is used to determine the start time position of the first quantity or the second quantity or the first window, and the seventh time position is used to determine the reference time position of the first report.

26. The method according to any one of claims 18 to 25, characterized in that, The monitoring results include at least one of the following: information indicating the correct number of monitoring sessions, information indicating the correct number of monitoring instances, information indicating the correct number of valid monitoring sessions, information indicating the correct number of valid monitoring instances, information indicating the correct monitoring ratio, information indicating the correct valid monitoring ratio, third quantity indication information, and fourth quantity indication information. The third quantity indication information is used to indicate the number of monitoring times or monitoring instances associated with the first report, or the third quantity is used to indicate the number of transmission opportunities of the monitoring resources or monitoring resource set associated with the first report; The fourth quantity indication information is used to indicate the number of valid monitoring times or valid monitoring instances associated with the first report, or the fourth quantity is used for the transmission timing of valid monitoring resources or valid monitoring resource sets associated with the first report.

27. The method according to claim 26, characterized in that, The information used to indicate the correct effective monitoring ratio includes at least one of the following: information used to indicate the correct first effective monitoring ratio, and information used to indicate the correct second effective monitoring ratio; The correct first effective monitoring ratio is determined based on the correct number of effective monitoring times or effective monitoring instances and the number of monitoring times or monitoring instances corresponding to the first report. The correct second effective monitoring ratio is determined based on the correct number of effective monitoring times or effective monitoring instances and the number of effective monitoring times or effective monitoring instances corresponding to the first report.

28. The method according to claim 18, characterized in that, The time slot offset of the first report that is non-periodic is greater than or equal to the time length from the eighth time position to the ninth time position; The eighth time position is used to determine the starting time position of the first quantity or the second quantity or the first window, and the ninth time position is used to determine the reference time position of the first report.

29. The method according to claim 21, 24, 25, or 28, characterized in that, The second time position, or the fourth time position, or the sixth time position, or the eighth time position is at least one of the following; The first time domain position, or the first time domain position plus the first offset; The second time domain position, or the second time domain position plus the second offset; The third time domain position, or the third time domain position plus the third offset; The temporal location of the activated service cell; The temporal location of the bandwidth switching; The temporal location of the second report configuration or reconfiguration; The second report was activated in the time domain. Wherein, the first time domain position is the time domain position for sending the configuration information; the second time domain position is the time domain position for sending the first information, which is used to activate the configuration information; the third time domain position is the time domain position for sending the second information, which is used to activate the first report; the second report is used to indicate the inference result of the AI ​​unit, and the second report is associated with the first report.

30. The method according to claim 21, 23, 24, 25, or 28, characterized in that, The first time position, the third time position, the fifth time position, the seventh time position, or the ninth time position is at least one of the following: The temporal location of the first report; The channel state information in the first report refers to the time-domain location of the resource; The temporal location of the monitoring resource corresponding to the first report; The temporal location of the second report corresponding to the first report; The channel state information of the second report corresponding to the first report refers to the time domain location of the resource; The time-domain location of the most recent monitoring instance corresponding to the first report.

31. The method according to claim 19, characterized in that, The first resource is associated with the second resource, which is used to determine the output of the AI ​​unit or to determine the prediction result.

32. The method according to claim 31, characterized in that, The association between the first resource and the second resource includes: the association between the third information of the first resource and the fourth information of the second resource; The third and fourth pieces of information are resource identifiers, respectively. Alternatively, the third information may be a resource identifier, and the fourth information may be a virtual identifier; Alternatively, the third and fourth pieces of information may be resource indexes; Alternatively, the third and fourth information may be bitmaps; Alternatively, the third and fourth pieces of information may be subset identifiers; Alternatively, the third and fourth information may be QCL information.

33. A transmission processing apparatus, characterized in that, include: The first transceiver unit is used to receive configuration information of the first report, which is used to indicate the monitoring results of the AI ​​unit. The first processing unit is configured to perform a first operation or a second operation based on the configuration information. The first operation includes at least one of the following: not reporting the first report; discarding the first report; skipping the reporting of the first report; not expecting the network side to activate the second report, the second report being used to indicate the inference results of the AI ​​unit, and the second report being associated with the first report; The second operation includes at least one of the following: reporting the first report; confirming that the first report is effective.

34. The apparatus according to claim 33, characterized in that, The first processing unit is further configured to: If the number of monitoring times or monitoring instances corresponding to the monitoring result is less than or equal to the second number, or if the number of transmission opportunities for the monitoring resources or monitoring resource set corresponding to the monitoring result is less than or equal to the second number, the first operation is performed.

35. A transmission processing apparatus, characterized in that, include: The second transceiver unit is used to send configuration information for the first report, which is used to indicate the monitoring results of the AI ​​unit. The second processing unit is used to perform a third or fourth operation based on the configuration information. The third operation includes at least one of the following: not receiving the first report; not expecting the terminal to report the first report; The fourth operation includes at least one of the following: receiving the first report; determining that the first report is effective.

36. The apparatus according to claim 35, characterized in that, The second processing unit is further configured to: perform a third operation when the number of monitoring times or monitoring instances corresponding to the monitoring result is less than or equal to a second quantity, or the number of transmission opportunities of the monitoring resources or monitoring resource set corresponding to the monitoring result is less than or equal to a second quantity.

37. A terminal, characterized in that, It includes a processor and a memory, the memory storing a program or instructions that can run on the processor, the program or instructions being executed by the processor to implement the steps of the method as described in any one of claims 1 to 17.

38. A network-side device, characterized in that, It includes a processor and a memory, the memory storing a program or instructions that can run on the processor, the program or instructions being executed by the processor to implement the steps of the method as described in any one of claims 18 to 32.

39. A readable storage medium, characterized in that, The readable storage medium stores a program or instructions that, when executed by a processor, implement the steps of the method as claimed in any one of claims 1 to 17, or the steps of the method as claimed in any one of claims 18 to 32.