Processing method, communication device, and storage medium

WO2025050900A3PCT designated stage Publication Date: 2025-06-05SHENZHEN TRANSSION HLDG CO LTD
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Patent Information

Application Number
PCT/CN2024/109594
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-08-02
Publication Date
2025-06-05

AI Technical Summary

Technical Problem

There is no provision in the prior art on how to measure the prediction accuracy of prediction information, resulting in the inability to effectively evaluate the prediction accuracy of the beam/reference signal.

Method used

By a first index determined based on the first set of reference signals and/or the second set of reference signals, a method is provided to measure the prediction accuracy of the prediction information. The method includes counting the number of times or number of time units that meet a certain condition within a certain statistical range to represent the prediction accuracy of the beam and/or reference signal.

Benefits of technology

Quantitative evaluation of prediction accuracy of prediction information is realized, and the suitability of the current model and/or function can be judged, thereby improving the downlink transmission quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

In the technical solution of the present application, a first index is determined on the basis of a first reference signal set and / or a second reference signal set. A method for measuring the prediction precision for predicted information is provided.
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Description

Processing method, communication device and storage medium Technical Field

[0001] The present application relates to the field of communication technology, and in particular to a processing method, communication equipment, and storage medium. Background Art

[0002] In wireless communication systems, beam / reference signal (RS) prediction information refers to information about the beam / reference signal at a certain moment in the future predicted based on measurement information, and plays an important role in improving downlink transmission quality.

[0003] During the process of conceiving and implementing this application, the inventors discovered that there are at least the following problems: How to measure the prediction accuracy of prediction information is not specified in the existing protocol and urgently needs to be clarified.

[0004] The preceding description is intended to provide general background information and does not necessarily constitute prior art. Technical Solutions

[0005] The main purpose of this application is to provide a processing method, a communication device and a storage medium, aiming to provide a method for measuring the prediction accuracy of prediction information.

[0006] To achieve the above objectives, the present application provides a processing method that can be applied to a terminal device (such as a mobile phone), comprising the steps of:

[0007] S1: Determine a first indicator based on a first reference signal set and / or a second reference signal set.

[0008] Optionally, the first reference signal set and / or the second reference signal set is used to determine prediction information.

[0009] Optionally, the second reference signal set is used to determine measurement information.

[0010] Optionally, the method further comprises at least one of the following:

[0011] The prediction information includes a predicted reference signal index value and / or signal quality;

[0012] The prediction information includes a first number of predicted reference signal index values ​​and / or signal qualities;

[0013] The measurement information includes a measured reference signal index value and / or signal quality;

[0014] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured;

[0015] The predicted information and / or the measured information is used to determine a first indicator;

[0016] The prediction information is determined based on a time unit corresponding to a reference signal of the second reference signal set;

[0017] The measurement information is determined based on a reference signal of a second reference signal set;

[0018] The first indicator is the number of times the first condition is met in the first statistical range;

[0019] The first indicator is the number of time units that meet the first condition in the first statistical range;

[0020] The first indicator represents the accuracy of the previous beam and / or reference signal prediction.

[0021] Optionally, the first statistical range includes at least one of a third number of time units, a fourth number of time units, a fifth number of time units, a sixth number of prediction windows, and a monitoring timer duration.

[0022] Optionally, the signal quality includes layer 1 reference signal received power and / or layer 1 signal to interference and noise ratio.

[0023] Optionally, satisfying the first condition includes at least one of the following:

[0024] The predicted first reference signal index value is the same as the measured first reference signal index value;

[0025] The measured first reference signal index value is one of the predicted first first number of reference signal index values;

[0026] The predicted first reference signal index value is one of the first second number of measured reference signal index values;

[0027] The difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to a first threshold;

[0028] An average of the differences between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to a first threshold.

[0029] Optionally, the method further comprises at least one of the following:

[0030] The first signal quality is the measured signal quality corresponding to the first reference signal predicted;

[0031] The first signal quality is the signal quality of the first reference signal measured;

[0032] Predicted information in the first statistical range:

[0033] The measurement information is determined based on a reference signal of a second reference signal set that is less than a first interval from the prediction information in a time domain;

[0034] The measurement information is determined based on a most recent reference signal of a second reference signal set;

[0035] The measurement information is determined based on a reference signal of a second reference signal set in a first statistical range;

[0036] The fifth quantity is the product of the fourth quantity and the sixth quantity;

[0037] The method of determining the first indicator in the first statistical range includes at least one of the following:

[0038] Counting the number of times the first condition is satisfied in the first statistical range as a first indicator;

[0039] Counting the number of time units that meet the first condition in the first statistical range as a first indicator;

[0040] Counting the number of times the first condition is satisfied in each time unit in a prediction window in a first statistical range as a first indicator;

[0041] Counting the number of times a first condition is satisfied in a prediction window in a first statistical range as a first indicator;

[0042] Counting the number of times the first condition is met within the duration of the monitoring timer as a first indicator;

[0043] The number of time units that meet the first condition during the duration of the monitoring timer is counted as the first indicator.

[0044] Optionally, counting the number of times and / or the number of time units that meet the first condition includes at least one of the following:

[0045] If the predicted last reference signal index value is the same as the measured last reference signal index value, the number of times and / or the number of time units is increased by 1;

[0046] If the measured last reference signal index value is one of the predicted first number of reference signal index values, the number of times and / or the number of time units is increased by 1;

[0047] If the predicted first reference signal index value is one of the first second number of measured reference signal index values, the number of times and / or the number of time units is increased by 1;

[0048] If the difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0049] If the average value of the difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1.

[0050] Optionally, the method further includes: reporting indicator information.

[0051] Optionally, the indicator information includes at least one of a first indicator, a number of time units, an event index value, an accuracy indication, an index value of a model, an index value of a function, a monitoring decision type, and a beam and / or reference signal index value.

[0052] Optionally, the indicator information is reported on the first uplink channel.

[0053] Optionally, the indicator information is reported when the second condition is met.

[0054] Optionally, the second condition is satisfied, including at least one of the following:

[0055] The number of time units is greater than or equal to the second threshold;

[0056] Monitoring timer timeout;

[0057] The conditions for the first event are met.

[0058] Optionally, the reference signal includes CSI-RS and / or SS / PBCH Block.

[0059] Optionally, the time unit includes at least one of a timestamp, a measurement instance, a time instance, a transmission opportunity, an opportunity, a frame, a subframe, a time slot, a symbol, a timestamp index, a measurement instance index, a time instance index, a transmission opportunity index, an opportunity index, a frame index, a subframe index, a time slot index, and a symbol index.

[0060] The present application also provides a processing method, which can be applied to a network device (such as a base station), comprising the steps of:

[0061] s3: Receive a first indicator, where the first indicator is determined by the terminal device based on the first reference signal set and / or the second reference signal set.

[0062] Optionally, the first reference signal set and / or the second reference signal set is used to determine prediction information.

[0063] Optionally, the second reference signal set is used to determine measurement information.

[0064] Optionally, the method further comprises at least one of the following:

[0065] The prediction information includes a predicted reference signal index value and / or signal quality;

[0066] The prediction information includes a first number of predicted reference signal index values ​​and / or signal qualities;

[0067] The prediction information is determined based on a time unit corresponding to a reference signal of the second reference signal set;

[0068] The measurement information includes a measured reference signal index value and / or signal quality;

[0069] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured;

[0070] The measurement information is determined based on a reference signal of a second reference signal set;

[0071] The predicted information and / or the measured information is used to determine a first indicator;

[0072] The first indicator is the number of times the first condition is met in the first statistical range;

[0073] The first indicator is the number of time units that meet the first condition in the first statistical range;

[0074] The first indicator represents the accuracy of the previous beam and / or reference signal prediction.

[0075] Optionally, the method further comprises at least one of the following:

[0076] The first statistical range includes at least one of a third number of time units, a fourth number of time units, a fifth number of time units, a sixth number of prediction windows, and a monitoring timer duration;

[0077] Signal quality includes layer 1 reference signal received power and / or layer 1 signal to interference and noise ratio;

[0078] The first condition includes at least one of the following:

[0079] The predicted first reference signal index value is the same as the measured first reference signal index value;

[0080] The measured first reference signal index value is one of the predicted first first number of reference signal index values;

[0081] The predicted first reference signal index value is one of the first second number of measured reference signal index values;

[0082] The difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to a first threshold;

[0083] An average of the differences between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to a first threshold.

[0084] Optionally, the method further comprises at least one of the following:

[0085] The first signal quality is the measured signal quality corresponding to the first reference signal predicted;

[0086] The first signal quality is the signal quality of the first reference signal measured;

[0087] The forecast information is in the first statistical range;

[0088] The measurement information is determined based on a reference signal of a second reference signal set that is less than a first interval from the prediction information in a time domain;

[0089] The measurement information is determined based on a most recent reference signal of a second reference signal set;

[0090] The measurement information is determined based on a reference signal of a second reference signal set in a first statistical range;

[0091] The fifth quantity is the product of the fourth quantity and the sixth quantity;

[0092] The method of determining the first indicator in the first statistical range includes at least one of the following:

[0093] Counting the number of times the first condition is satisfied in the first statistical range as a first indicator;

[0094] Counting the number of time units that meet the first condition in the first statistical range as a first indicator;

[0095] Counting the number of times the first condition is satisfied in each time unit in a prediction window in a first statistical range as a first indicator;

[0096] Counting the number of times a first condition is satisfied in a prediction window in a first statistical range as a first indicator;

[0097] Counting the number of times the first condition is met within the duration of the monitoring timer as a first indicator;

[0098] The number of time units that meet the first condition during the duration of the monitoring timer is counted as the first indicator.

[0099] Optionally, counting the number of times and / or the number of time units that meet the first condition includes at least one of the following:

[0100] If the predicted last reference signal index value is the same as the measured last reference signal index value, the number of times and / or the number of time units is increased by 1;

[0101] If the measured last reference signal index value is one of the predicted first number of reference signal index values, the number of times and / or the number of time units is increased by 1;

[0102] If the predicted first reference signal index value is one of the first second number of measured reference signal index values, the number of times and / or the number of time units is increased by 1;

[0103] If the difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0104] If the average value of the difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1.

[0105] Optionally, the method further includes: receiving indicator information.

[0106] Optionally, the method further includes: performing at least one of activation, deactivation, and rollback on the model and / or function based on the indicator information.

[0107] Optionally, the indicator information includes at least one of a first indicator, a number of time units, an event index value, an accuracy indication, an index value of a model, an index value of a function, a monitoring decision type, and a beam and / or reference signal index value.

[0108] Optionally, the indicator information is reported on the first uplink channel.

[0109] Optionally, the indicator information is reported when the second condition is met.

[0110] Optionally, the second condition is satisfied, including at least one of the following:

[0111] The number of time units is greater than or equal to the second threshold;

[0112] Monitoring timer timeout;

[0113] The conditions for the first event are met.

[0114] Optionally, the reference signal includes CSI-RS and / or SS / PBCH Block.

[0115] Optionally, the time unit includes at least one of a timestamp, a measurement instance, a time instance, a transmission opportunity, an opportunity, a frame, a subframe, a time slot, a symbol, a timestamp index, a measurement instance index, a time instance index, a transmission opportunity index, an opportunity index, a frame index, a subframe index, a time slot index, and a symbol index.

[0116] The present application also provides a communication device, including: a memory and a processor, wherein a processing program is stored in the memory, and when the processing program is executed by the processor, the steps of any of the processing methods described above are implemented.

[0117] The communication device in this application can be a terminal device (such as a mobile phone) or a network device (such as a base station). The specific reference needs to be clarified based on the context.

[0118] The present application also provides a storage medium having a computer program stored thereon, and when the computer program is executed by a processor, the steps of any of the above-described processing methods are implemented.

[0119] The technical solution of the present application provides a method for measuring the prediction accuracy of prediction information by determining a first indicator based on a first reference signal set and / or a second reference signal set. BRIEF DESCRIPTION OF THE DRAWINGS

[0120] The accompanying drawings herein are incorporated into and constitute a part of the specification, illustrate embodiments consistent with the present application, and together with the specification, are used to explain the principles of the present application. In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following is a brief introduction to the drawings required for describing the embodiments. Obviously, for those skilled in the art, other drawings can be obtained based on these drawings without inventive work.

[0121] FIG1 is a schematic diagram of the hardware structure of a mobile terminal for implementing various embodiments of the present application;

[0122] FIG2 is a diagram of a communication network system architecture provided by an embodiment of the present application;

[0123] FIG3 is a schematic diagram of the hardware structure of a controller 140 provided in this application;

[0124] FIG4 is a schematic diagram of the hardware structure of a network node 150 provided in this application;

[0125] FIG5 is a schematic flow chart of a processing method according to the first embodiment;

[0126] FIG6 is a schematic flow chart of a processing method according to a second embodiment;

[0127] FIG7 is a schematic diagram showing the time relationship between prediction information and a second reference signal set according to the second embodiment;

[0128] FIG8 is a schematic flow chart of a processing method according to a sixth embodiment;

[0129] FIG9 is a schematic flow chart of a processing method according to a seventh embodiment;

[0130] FIG10 is a schematic diagram of an interaction sequence according to an eighth embodiment;

[0131] FIG11 is a first structural diagram of a processing device provided in an embodiment of the present application;

[0132] FIG12 is a second structural diagram of a processing device provided in an embodiment of the present application;

[0133] FIG13 is a schematic diagram of the structure of the communication device provided in an embodiment of the present application.

[0134] The purpose of this application, its features, and advantages will be further described in conjunction with the embodiments and with reference to the accompanying drawings. The accompanying drawings illustrate specific embodiments of this application, which will be described in more detail below. These drawings and the accompanying text are not intended to limit the scope of the present application in any way, but rather to illustrate the concepts of this application to those skilled in the art by reference to specific embodiments.

[0135] Implementation Methods of the Application

[0136] Exemplary embodiments will be described in detail herein, with examples illustrated in the accompanying drawings. In the following description, when referring to the drawings, identical numerals in different figures represent identical or similar elements, unless otherwise indicated. The embodiments described in the following exemplary embodiments are not intended to represent all embodiments consistent with the present application. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the present application, as detailed in the appended claims.

[0137] It should be noted that, in this document, the terms "comprises", "includes" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, an element defined by the sentence "comprises a ..." does not exclude the presence of other identical elements in the process, method, article or device comprising the element, and / or, components, features, and elements with the same name in different embodiments of the present application may have the same meaning or different meanings, and their specific meanings need to be determined by their explanation in the specific embodiment or further combined with the context of the specific embodiment.

[0138] It should be understood that although the terms first, second, third, etc. may be used herein to describe various information, such information should not be limited to these terms. These terms are used only to distinguish information of the same type from one another. For example, without departing from the scope of this document, first information may also be referred to as second information, and similarly, second information may also be referred to as first information. Depending on the context, the term "if" as used herein may be interpreted as "when...", "when...", or "in response to a determination." Furthermore, as used herein, the singular forms "a," "an," and "the" are intended to include the plural forms as well, unless the context indicates otherwise. It should be further understood that the terms "comprising" and "including" indicate the presence of the described features, steps, operations, elements, components, items, types, and / or groups, but do not exclude the presence, occurrence, or addition of one or more other features, steps, operations, elements, components, items, types, and / or groups. The terms "or," "and / or," "including at least one of the following," etc., used herein, may be interpreted as inclusive, or mean any one or any combination. For example, “comprising at least one of the following: A, B, C” means “any of the following: A; B; C; A and B; A and C; B and C; A and B and C”; and for another example, “A, B or C” or “A, B and / or C” means “any of the following: A; B; C; A and B; A and C; B and C; A and B and C”. An exception to this definition will occur only when a combination of elements, functions, steps or operations are inherently mutually exclusive in some manner.

[0139] It should be understood that, although the various steps in the flowchart in the embodiment of the present application are shown in sequence according to the indication of the arrows, these steps are not necessarily performed in sequence in the order indicated by the arrows. Unless clearly stated herein, the execution of these steps is not strictly limited in order, and they can be performed in other orders. Moreover, at least a portion of the steps in the figure may include multiple sub-steps or multiple stages, and these sub-steps or stages are not necessarily performed at the same time, but can be performed at different times, and their execution order is not necessarily performed in sequence, but can be performed in turn or alternately with at least a portion of other steps or sub-steps or stages of other steps.

[0140] As used herein, the words "if" and "if" may be interpreted as "at the time of" or "when" or "in response to determining" or "in response to detecting," depending on the context. Similarly, the phrases "if it is determined" or "if (stated condition or event) is detected" may be interpreted as "when it is determined" or "in response to the determination" or "when detecting (stated condition or event)" or "in response to detecting (stated condition or event)," depending on the context.

[0141] It should be noted that in this article, step codes such as S1 and S2 are used for the purpose of expressing the corresponding content more clearly and concisely, and do not constitute a substantial restriction on the order. When implementing the step, those skilled in the art may execute S2 first and then S1, etc., but these should all be within the scope of protection of this application.

[0142] It should be understood that the specific embodiments described herein are only used to explain the present application and are not intended to limit the present application.

[0143] In the subsequent description, the use of suffixes such as "module", "component" or "unit" to represent elements is only for the purpose of facilitating the description of the present application and has no specific meaning. Therefore, "module", "component" or "unit" can be used interchangeably.

[0144] The communication device in this application can be a terminal device (such as a mobile phone) or a network device (such as a base station). The specific reference needs to be clarified based on the context.

[0145] The terminal device may be implemented in various forms. For example, the terminal device described in this application may include intelligent terminal devices such as mobile phones, tablet computers, laptop computers, PDAs, portable media players (PMPs), navigation devices, wearable devices, smart bracelets, pedometers, and other fixed terminal devices such as digital TVs and desktop computers.

[0146] The subsequent description will be made using a mobile terminal as an example. Those skilled in the art will understand that, in addition to components specifically used for mobile purposes, the configuration according to the embodiments of the present application can also be applied to fixed-type terminal devices.

[0147] Please refer to Figure 1, which is a schematic diagram of the hardware structure of a mobile terminal for implementing various embodiments of the present application. The mobile terminal 100 may include components such as an RF (Radio Frequency) unit 101, a WiFi module 102, an audio output unit 103, an A / V (audio / video) input unit 104, a sensor 105, a display unit 106, a user input unit 107, an interface unit 108, a memory 109, a processor 110, and a power supply 111. Those skilled in the art will understand that the mobile terminal structure shown in Figure 1 does not limit the mobile terminal. The mobile terminal may include more or fewer components than shown, or may combine certain components, or arrange the components differently.

[0148] The following is a detailed introduction to the various components of the mobile terminal in conjunction with Figure 1:

[0149] The RF unit 101 can be used to send and receive information or receive signals during calls. Specifically, it receives downlink information from the base station and transmits it to the processor 110 for processing. It also transmits uplink data to the base station. Typically, the RF unit 101 includes, but is not limited to, an antenna, at least one amplifier, a transceiver, a coupler, a low-noise amplifier, a duplexer, and / or other components. Furthermore, the RF unit 101 can communicate with the network and other devices via wireless communication. The above-mentioned wireless communications may use any communication standard or protocol, including but not limited to GSM (Global System of Mobile communication), GPRS (General Packet Radio Service), CDMA2000 (Code Division Multiple Access 2000), WCDMA (Wideband Code Division Multiple Access), TD-SCDMA (Time Division-Synchronous Code Division Multiple Access), FDD-LTE (Frequency Division Duplexing-Long Term Evolution), TDD-LTE (Time Division Duplexing-Long Term Evolution), 5G and 6G, etc.

[0150] WiFi is a short-range wireless transmission technology. A mobile terminal, through WiFi module 102, enables users to send and receive emails, browse web pages, and access streaming media, providing wireless broadband Internet access. Although FIG1 illustrates WiFi module 102, it is understood that it is not a required component of the mobile terminal and can be omitted as needed without altering the essence of the invention.

[0151] The audio output unit 103 can convert audio data received by the RF unit 101 or the WiFi module 102 or stored in the memory 109 into an audio signal and output it as sound when the mobile terminal 100 is in a call signal reception mode, a talk mode, a recording mode, a voice recognition mode, a broadcast reception mode, or the like. Furthermore, the audio output unit 103 can also provide audio output related to a specific function performed by the mobile terminal 100 (e.g., a call signal reception sound, a message reception sound, etc.). The audio output unit 103 may include a speaker, a buzzer, or the like.

[0152] The A / V input unit 104 is used to receive audio or video signals. The A / V input unit 104 may include a graphics processing unit (GPU) 1041 and a microphone 1042. The GPU 1041 processes image data of still images or videos captured by an image capture device (e.g., a camera) in video capture mode or image capture mode. The processed image frames may be displayed on the display unit 106. The image frames processed by the GPU 1041 may be stored in the memory 109 (or other storage medium) or transmitted via the RF unit 101 or the WiFi module 102. The microphone 1042 may receive sound (audio data) in operating modes such as a phone call mode, a recording mode, and a voice recognition mode, and may process such sound into audio data. In the phone call mode, the processed audio (voice) data may be converted into a format that can be transmitted to a mobile communication base station via the RF unit 101. The microphone 1042 may implement various types of noise cancellation (or suppression) algorithms to eliminate (or suppress) noise or interference generated during the reception and transmission of audio signals.

[0153] The mobile terminal 100 also includes at least one sensor 105, such as a light sensor, a motion sensor, and other sensors. Optionally, the light sensor includes an ambient light sensor and a proximity sensor. Optionally, the ambient light sensor can adjust the brightness of the display panel 1061 according to the brightness of the ambient light, and the proximity sensor can turn off the display panel 1061 and / or the backlight when the mobile terminal 100 is moved to the ear. As a type of motion sensor, the accelerometer sensor can detect the magnitude of acceleration in all directions (generally three axes), and can detect the magnitude and direction of gravity when stationary. It can be used for applications that recognize the posture of the mobile phone (such as horizontal and vertical screen switching, related games, magnetometer posture calibration), vibration recognition related functions (such as pedometer, tapping), etc.; as for other sensors that can be configured in the mobile phone, such as fingerprint sensors, pressure sensors, iris sensors, molecular sensors, gyroscopes, barometers, hygrometers, thermometers, infrared sensors, etc., they will not be described here.

[0154] The display unit 106 is used to display information input by the user or information provided to the user. The display unit 106 may include a display panel 1061, which may be configured in the form of a liquid crystal display (LCD), an organic light-emitting diode (OLED), or the like.

[0155] The user input unit 107 can be used to receive input digital or character information and generate key signal input related to user settings and function control of the mobile terminal. Optionally, the user input unit 107 may include a touch panel 1071 and other input devices 1072. The touch panel 1071, also known as a touch screen, can collect user touch operations on or near it (such as operations performed by the user using a finger, stylus, or any other suitable object or accessory on or near the touch panel 1071) and drive corresponding connected devices according to a pre-set program. The touch panel 1071 may include two parts: a touch detection device and a touch controller. Optionally, the touch detection device detects the user's touch direction and detects the signal generated by the touch operation, and transmits the signal to the touch controller; the touch controller receives the touch information from the touch detection device and converts it into touch point coordinates, which are then sent to the processor 110. It can also receive and execute commands sent by the processor 110. And / or, the touch panel 1071 can be implemented using various types such as resistive, capacitive, infrared, and surface acoustic wave. In addition to the touch panel 1071, the user input unit 107 may further include other input devices 1072. Optionally, the other input devices 1072 may include, but are not limited to, one or more of a physical keyboard, function keys (such as volume control keys, power keys, etc.), a trackball, a mouse, a joystick, etc., and the specifics are not limited here.

[0156] Optionally, the touch panel 1071 may overlay the display panel 1061. When the touch panel 1071 detects a touch operation on or near it, it transmits the information to the processor 110 to determine the type of touch event. The processor 110 then provides a corresponding visual output on the display panel 1061 based on the type of touch event. Although in FIG1 , the touch panel 1071 and the display panel 1061 are shown as two separate components to implement the input and output functions of the mobile terminal, in some embodiments, the touch panel 1071 and the display panel 1061 may be integrated to implement the input and output functions of the mobile terminal, which is not limited to this specific embodiment.

[0157] The interface unit 108 serves as an interface through which at least one external device can be connected to the mobile terminal 100. For example, the external device may include a wired or wireless headset port, an external power supply (or battery charger) port, a wired or wireless data port, a memory card port, a port for connecting a device with an identification module, an audio input / output (I / O) port, a video I / O port, a headphone port, etc. The interface unit 108 may be used to receive input (e.g., data information, power, etc.) from an external device and transmit the received input to one or more elements within the mobile terminal 100 or may be used to transmit data between the mobile terminal 100 and an external device.

[0158] Memory 109 can be used to store software programs and various data. Memory 109 may primarily include a program storage area and a data storage area. Optionally, the program storage area may store an operating system and at least one application required for a function (such as a sound playback function or an image playback function); the data storage area may store data generated based on the use of the mobile phone (such as audio data, a phone book, etc.). Furthermore, / or, memory 109 may include high-speed random access memory and non-volatile memory, such as at least one disk storage device, flash memory device, or other volatile solid-state storage device.

[0159] Processor 110 is the control center of the mobile terminal, connecting all components of the mobile terminal using various interfaces and circuits. By running or executing software programs and / or modules stored in memory 109 and accessing data stored in memory 109, it executes various functions of the mobile terminal and processes data, thereby providing overall monitoring of the mobile terminal. Processor 110 may include one or more processing units; preferably, processor 110 may integrate an application processor and a modem processor. Optionally, the application processor primarily handles the operating system, user interface, and application programs, while the modem processor primarily handles wireless communications. It is understood that the modem processor may not be integrated into processor 110.

[0160] The mobile terminal 100 may also include a power supply 111 (such as a battery) for supplying power to various components. Preferably, the power supply 111 may be logically connected to the processor 110 through a power management system, thereby managing functions such as charging, discharging, and power consumption through the power management system.

[0161] Although not shown in FIG. 1 , the mobile terminal 100 may further include a Bluetooth module, etc., which will not be described in detail here.

[0162] To facilitate understanding of the embodiments of the present application, the communication network system on which the mobile terminal of the present application is based is described below.

[0163] Please refer to Figure 2, which is a communication network system architecture diagram provided in an embodiment of the present application. The communication network system is an NR (New Radio) system of universal mobile communication technology. The NR system includes a UE (User Equipment) 201, an E-UTRAN (Evolved UMTS Terrestrial Radio Access Network) 202, an EPC (Evolved Packet Core) 203 and an operator's IP service 204, which are connected in sequence.

[0164] Optionally, UE201 may be the above-mentioned terminal device 100, which will not be described in detail here.

[0165] E-UTRAN 202 includes eNodeB 2021 and other eNodeBs 2022 . Optionally, eNodeB 2021 may be connected to other eNodeBs 2022 via a backhaul (eg, an X2 interface). eNodeB 2021 is connected to EPC 203 , and eNodeB 2021 may provide access from UE 201 to EPC 203 .

[0166] EPC 203 may include MME (Mobility Management Entity) 2031, HSS (Home Subscriber Server) 2032, other MMEs 2033, SGW (Serving Gate Way) 2034, PGW (PDN Gate Way) 2035, and PCRF (Policy and Charging Rules Function) 2036. MME 2031 is the control node that processes signaling between UE 201 and EPC 203, providing bearer and connection management. HSS 2032 provides registers for managing functions such as the Home Location Register (not shown) and stores user-specific information such as service features and data rates. All user data can be sent through SGW2034, PGW2035 can provide IP address allocation and other functions for UE 201, PCRF2036 is the policy and charging control policy decision point for service data flow and IP bearer resources, and it selects and provides available policy and charging control decisions for the policy and charging execution function unit (not shown in the figure).

[0167] The IP service 204 may include the Internet, an intranet, an IMS (IP Multimedia Subsystem), or other IP services.

[0168] Although the above introduction takes the LTE system as an example, those skilled in the art should know that this application is not only applicable to the LTE system, but can also be applied to other wireless communication systems, such as GSM, CDMA2000, WCDMA, TD-SCDMA, 5G and future new network systems (such as 6G), etc., which are not limited here.

[0169] FIG3 is a schematic diagram of the hardware structure of a controller 140 provided in this application. The controller 140 includes a memory 1401 and a processor 1402. The memory 1401 is used to store program instructions, and the processor 1402 is used to call the program instructions in the memory 1401 to execute the steps performed by the controller in the first embodiment of the above method. The implementation principles and beneficial effects are similar and will not be repeated here.

[0170] Optionally, the controller further includes a communication interface 1403, which can be connected to the processor 1402 via a bus 1404. The processor 1402 can control the communication interface 1403 to implement the receiving and sending functions of the controller 140.

[0171] Figure 4 is a schematic diagram of the hardware structure of a network node 150 provided in this application. Network node 150 includes: a memory 1501 and a processor 1502. Memory 1501 is used to store program instructions, and processor 1502 is used to call the program instructions in memory 1501 to execute the steps performed by the first node in the first embodiment of the above method. The implementation principles and beneficial effects are similar and will not be repeated here.

[0172] Optionally, the controller further includes a communication interface 1503, which can be connected to the processor 1502 via a bus 1504. The processor 1502 can control the communication interface 1503 to implement the receiving and sending functions of the network node 150.

[0173] The integrated modules implemented in the form of software function modules can be stored in a computer-readable storage medium. The software function modules stored in a storage medium include a number of instructions for causing a computer device (which can be a personal computer, server, or network device, etc.) or a processor to execute some of the steps of the methods of various embodiments of the present application.

[0174] In the above embodiments, it can be implemented in whole or in part by software, hardware, firmware or any combination thereof. When software is used for implementation, it can be implemented in whole or in part in the form of a computer program product. The computer program product includes one or more computer instructions. When the computer program instructions are loaded and executed on a computer, the process or function according to the embodiment of the present application is generated in whole or in part. The computer can be a general-purpose computer, a special-purpose computer, a computer network, or other programmable device. The computer instructions can be stored in a storage medium or transmitted from one storage medium to another storage medium. For example, the computer instructions can be transmitted from a website, computer, server or data center to another website, computer, server or data center via a wired (e.g., coaxial cable, optical fiber, digital subscriber line (DSL)) or wireless (e.g., infrared, wireless, microwave, etc.) method. The storage medium can be any available medium that a computer can access or a data storage device such as a server or data center that includes one or more available media integrations. The available medium can be a magnetic medium (e.g., a floppy disk, a hard disk, a tape), an optical medium (e.g., a DVD), or a semiconductor medium (e.g., a solid state drive solid state disk, SSD), etc.

[0175] Based on the above-mentioned mobile terminal hardware structure and communication network system, various embodiments of the present application are proposed.

[0176] Technical terms involved in this application:

[0177] CSI: Channel State Information, channel state information;

[0178] RS: Reference Signal, reference signal;

[0179] CSI-RS: Channel State Information-Reference Signal, channel state information reference signal;

[0180] DCI: Downlink Control Information, downlink control information;

[0181] L1-RSRP: Layer-1 Reference Signal Receiving Power, layer 1 reference signal receiving power;

[0182] L1-SINR: Layer-1 Signal to Interference plus Noise Ratio, layer 1 signal to interference plus noise ratio;

[0183] MAC: Medium Access Control, media access control;

[0184] MACCE: MAC Control Element, media access control control unit;

[0185] NR: New Radio. New Radio;

[0186] PUCCH: Physical Uplink Control Channel, physical uplink control channel;

[0187] PUSCH: Physical Uplink Shared Channel, physical uplink shared channel;

[0188] RRC: Radio Resource Control;

[0189] SR: Scheduling Request, scheduling request;

[0190] SS / PBCH Block: Synchronization Signal / PBCH Block, synchronization signal / physical broadcast channel block;

[0191] UCI: Uplink Control Information, uplink control information;

[0192] UE: User Equipment, user equipment or terminal equipment.

[0193] First embodiment

[0194] 5 , which is a flow chart of a processing method according to a first embodiment, the processing method of the embodiment of the present application can be applied to a terminal device (such as a mobile phone), including the following steps:

[0195] S1: Determine a first indicator based on a first reference signal set and / or a second reference signal set.

[0196] Optionally, the first reference signal set and / or the second reference signal set is used to determine prediction information.

[0197] Optionally, the prediction information includes a predicted reference signal index value and / or signal quality.

[0198] Optionally, the prediction information includes a first number of predicted reference signal index values ​​and / or signal qualities.

[0199] Optionally, the prediction information is determined based on a time unit corresponding to a reference signal of the second reference signal set;

[0200] Optionally, the second reference signal set is used to determine measurement information.

[0201] Optionally, the measurement information includes a measured reference signal index value and / or signal quality.

[0202] Optionally, the measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured.

[0203] Optionally, the measurement information is determined based on a reference signal of a second reference signal set.

[0204] Optionally, the first indicator may be determined based on prediction information and / or measurement information.

[0205] Optionally, the first indicator is the number of times the first condition is met in the first statistical range.

[0206] Optionally, the first indicator is the number of time units that meet the first condition in the first statistical range.

[0207] Optionally, the first indicator represents the accuracy of the previous beam and / or reference signal prediction.

[0208] Optionally, the first statistical range includes at least one of a third number of time units, a fourth number of time units, a fifth number of time units, a sixth number of prediction windows, and a monitoring timer duration.

[0209] Optionally, satisfying the first condition includes at least one of the following:

[0210] The predicted first reference signal index value is the same as the measured first reference signal index value;

[0211] The measured first reference signal index value is one of the predicted first first number of reference signal index values;

[0212] The predicted first reference signal index value is one of the first second number of measured reference signal index values;

[0213] The difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to a first threshold;

[0214] An average of the differences between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to a first threshold.

[0215] Optionally, the first signal quality is a measured signal quality corresponding to a previously predicted reference signal.

[0216] Optionally, the first signal quality is the signal quality of a previously measured reference signal.

[0217] Optionally, the prediction information is in a first statistical range.

[0218] Optionally, the measurement information is determined based on a reference signal of a second reference signal set that is less than the first interval from the prediction information in the time domain.

[0219] Optionally, the measurement information is determined based on a most recent reference signal of the second reference signal set.

[0220] Optionally, the measurement information is determined based on reference signals of a second reference signal set in the first statistical range.

[0221] Optionally, the fifth quantity is the product of the fourth quantity and the sixth quantity.

[0222] Optionally, the method of determining the first indicator in the first statistical range includes at least one of the following:

[0223] Counting the number of times the first condition is satisfied in the first statistical range as a first indicator;

[0224] Counting the number of time units that meet the first condition in the first statistical range as a first indicator;

[0225] Counting the number of times the first condition is satisfied in each time unit in a prediction window in a first statistical range as a first indicator;

[0226] Counting the number of times a first condition is satisfied in a prediction window in a first statistical range as a first indicator;

[0227] Counting the number of times the first condition is met within the duration of the monitoring timer as a first indicator;

[0228] The number of time units that meet the first condition during the duration of the monitoring timer is counted as the first indicator.

[0229] Optionally, the reference signal includes CSI-RS and / or SS / PBCH Block.

[0230] Optionally, a method for configuring the first reference signal set and the second reference signal set includes at least one of the following:

[0231] The first reference signal set is different from the second reference signal set;

[0232] The first reference signal set is a subset of the second reference signal set;

[0233] The first reference signal set is the same as the second reference signal set.

[0234] Optionally, the signal quality includes layer 1 reference signal received power (L1-RSRP) and / or layer 1 signal to interference and noise ratio (L1-SINR).

[0235] Optionally, the first predicted beam and / or reference signal is the beam and / or reference signal corresponding to the maximum signal quality.

[0236] Optionally, the first beam and / or reference signal measured is the beam and / or reference signal corresponding to the maximum signal quality.

[0237] Optionally, the time unit includes at least one of a timestamp, a measurement instance, a time instance, a transmission opportunity, an opportunity, a frame, a subframe, a time slot, a symbol, a timestamp index, a measurement instance index, a time instance index, a transmission opportunity index, an opportunity index, a frame index, a subframe index, a time slot index, and a symbol index.

[0238] Optionally, the predicted information of the beam and / or reference signal is typically the information of the beam and / or reference signal at a certain moment in the future predicted by the model and / or function based on the measurement information. In the embodiment of the present application, the first indicator determined is used as the performance indicator of the predicted information to measure the prediction accuracy of the predicted information, thereby determining whether the current model and / or function is suitable.

[0239] Through the technical solution of this embodiment, a method for measuring the prediction accuracy of prediction information is provided by determining the first indicator based on the first reference signal set and / or the second reference signal set.

[0240] Second embodiment

[0241] 6 , which is a flow chart of a processing method according to a second embodiment, based on the first embodiment of the present application, this embodiment further discloses step S1, which includes steps S11 to S13:

[0242] Step S11, determining prediction information based on the first reference signal set and / or the second reference signal set;

[0243] Step S12: determining measurement information based on the second reference signal set;

[0244] Step S13: determining a first indicator based on the prediction information and / or the measurement information.

[0245] Optionally, in an embodiment of the present application, the second reference signal set is associated with the prediction information in the time domain, so that the terminal device determines the performance indicator based on the prediction information and the measurement information of the second reference signal set.

[0246] 7 , which is a schematic diagram illustrating the temporal relationship between a second reference signal set and prediction information according to a second embodiment, as shown in FIG7 , measurement information is determined based on a reference signal of the second reference signal set whose time domain interval with the prediction information is smaller than the first interval.

[0247] Optionally, the prediction information includes a predicted reference signal index value and / or signal quality.

[0248] Optionally, the prediction information includes a first number of predicted beam index values ​​and / or signal qualities, and / or the prediction information includes a first number of predicted reference signal index values ​​and / or signal qualities.

[0249] Optionally, for the prediction information of the third number of time units, the prediction information of one time unit includes the predicted first number of beam index values ​​and / or signal qualities, and / or, the prediction information of one time unit includes the predicted first number of reference signal index values ​​and / or signal qualities, optionally, the prediction information of one time unit includes the predicted reference signal index value and / or signal quality.

[0250] Optionally, for the prediction information of the fourth number of time units, the prediction information of one time unit includes the predicted first number of beam index values ​​and / or signal qualities, and / or, the prediction information of one time unit includes the predicted first number of reference signal index values ​​and / or signal qualities, optionally, the prediction information of one time unit includes the predicted reference signal index value and / or signal quality, optionally, the prediction information of the fourth number of time units is determined based on the measurement information of the reference signals of the first reference signal set in the seventh number of time units and / or the second reference signal set.

[0251] Optionally, a reference signal of a second reference signal set having a smaller interval with the predicted information than the first interval is selected, and the measurement information is determined based on the reference signals of the second reference signal set.

[0252] Optionally, the measurement information is determined based on a reference signal of a second reference signal set that is less than the first interval from the prediction information in the time domain.

[0253] Optionally, the prediction information corresponds to a time unit.

[0254] Optionally, a reference signal of the second reference signal set that is closest to the prediction information is selected.

[0255] Optionally, the measurement information is determined based on a most recent reference signal of the second reference signal set.

[0256] Optionally, the measurement information includes a measured reference signal index value and / or signal quality.

[0257] Optionally, the measurement information includes a reference signal index value of the second reference signal set and / or a corresponding signal quality.

[0258] Optionally, the measurement information includes the first second number of measured beam index values ​​and / or signal qualities, and / or the measurement information includes the first second number of measured reference signal index values ​​and / or signal qualities.

[0259] Optionally, a first indicator is determined based on the prediction information and the measurement information, where the first indicator includes at least one of the following:

[0260] The first indicator is the number of times the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value;

[0261] The first indicator is the number of time units in which the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value;

[0262] The first indicator is the number of times the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values;

[0263] The first indicator is the number of time units in which the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values;

[0264] The first indicator is the number of times the predicted last beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values;

[0265] The first indicator is the number of time units for which the predicted last beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values;

[0266] The first indicator is the number of times that the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold;

[0267] The first indicator is the number of time units in which the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold;

[0268] The first indicator is the number of times that the average of the differences between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold;

[0269] The first indicator is the number of time units in which the average value of the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold;

[0270] The first indicator represents the accuracy of the previous beam and / or reference signal prediction.

[0271] Optionally, for the prediction information of one time unit among the prediction information of the third, fourth, or fifth number of time units, a reference signal of a second reference signal set having a smaller interval than the first interval with the prediction information is selected, and measurement information is determined based on the reference signal of the second reference signal set.

[0272] Optionally, for prediction information of one time unit among the prediction information of the third, fourth or fifth number of time units, the measurement information is determined based on a reference signal of a second reference signal set that is less than the first interval with the prediction information in the time domain.

[0273] Optionally, prediction information for a fourth number of time units is determined based on measurement information of reference signals of the first reference signal set in a seventh number of time units and / or the second reference signal set.

[0274] Optionally, a reference signal of the second reference signal set that is closest to the prediction information is selected.

[0275] Optionally, the measurement information is determined based on a most recent reference signal of the second reference signal set.

[0276] Optionally, the measurement information includes a measured reference signal index value and / or signal quality.

[0277] Optionally, the measurement information includes a reference signal index value and / or signal quality of the second reference signal set.

[0278] Optionally, the measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured.

[0279] Optionally, the measurement information includes the first second number of measured beam index values ​​and / or corresponding signal qualities.

[0280] Optionally, a first indicator is determined based on the prediction information and the measurement information, where the first indicator includes at least one of the following:

[0281] The first indicator is the number of times the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value;

[0282] The first indicator is the number of time units in which the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value;

[0283] The first indicator is the number of times the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values;

[0284] The first indicator is the number of time units in which the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values;

[0285] The first indicator is the number of times the predicted last beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values;

[0286] The first indicator is the number of time units for which the predicted last beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values;

[0287] The first indicator is the number of times that the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold;

[0288] The first indicator is the number of time units in which the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold;

[0289] The first indicator is the number of times that the average of the differences between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold;

[0290] The first indicator is the number of time units in which the average value of the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold;

[0291] The first indicator represents the accuracy of the previous beam and / or reference signal prediction.

[0292] Optionally, the fifth quantity is the product of the fourth quantity and the sixth quantity.

[0293] Optionally, the sixth number is at least one of the number of prediction windows, the number of predictions, and the number of the fourth number of time units;

[0294] Optionally, an interval between time units corresponding to two consecutive prediction information is the same as a period of a reference signal of the second reference signal set;

[0295] Optionally, the first interval is indicated by at least one of RRC, MACCE and DCI, or is a preset value.

[0296] Optionally, determining prediction information of a third number, a fourth number, or a fifth number of time units based on time units corresponding to reference signals of the second reference signal set includes at least one of the following:

[0297] The prediction information of a time unit includes a predicted reference signal index value and / or signal quality;

[0298] The prediction information of one time unit includes a first number of predicted beam index values ​​and / or signal qualities;

[0299] The prediction information of one time unit includes a first number of predicted reference signal index values ​​and / or signal qualities;

[0300] determining prediction information for a fourth number of time units based on measurement information of reference signals of the first reference signal set in a seventh number of time units and / or the second reference signal set;

[0301] Measurement information of reference signals of the second reference signal set for a third number, a fourth number, or a fifth number of time units is determined.

[0302] Optionally, the measurement information includes a measured reference signal index value and / or signal quality.

[0303] Optionally, the measurement information includes a reference signal index value of the second reference signal set and / or a corresponding signal quality.

[0304] Optionally, the measurement information includes the first second number of measured beam index values ​​and / or signal qualities, and / or the measurement information includes the first second number of measured reference signal index values ​​and / or corresponding signal qualities.

[0305] Optionally, a first indicator is determined based on the prediction information and the measurement information, where the first indicator includes at least one of the following:

[0306] The first indicator is the number of times the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value;

[0307] The first indicator is the number of time units in which the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value;

[0308] The first indicator is the number of times the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values;

[0309] The first indicator is the number of time units in which the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values;

[0310] The first indicator is the number of times the predicted last beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values;

[0311] The first indicator is the number of time units for which the predicted last beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values;

[0312] The first indicator is the number of times that the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold;

[0313] The first indicator is the number of time units in which the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold;

[0314] The first indicator is the number of times that the average of the differences between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold;

[0315] The first indicator is the number of time units in which the average value of the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold;

[0316] The first indicator represents the accuracy of the previous beam and / or reference signal prediction.

[0317] Optionally, the prediction information and the measurement information correspond to the same time unit.

[0318] Optionally, the fifth quantity is the product of the fourth quantity and the sixth quantity.

[0319] Optionally, the sixth number is at least one of the number of prediction windows, the number of predictions, and the number of the fourth number of time units.

[0320] Optionally, an interval between time units corresponding to two consecutive pieces of prediction information is the same as a period of a reference signal in the second reference signal set.

[0321] The technical solution of this embodiment provides a method for measuring the prediction accuracy of prediction information, specifically by determining the prediction information based on the first reference signal set and / or the second reference signal set; determining the measurement information based on the second reference signal set; determining the first indicator based on the prediction information and / or the measurement information, and associating the prediction information and the second reference signal set in the time domain, so that the terminal device determines the first indicator based on the prediction information and the measurement information of the second reference signal set to determine the beam prediction accuracy, thereby judging whether the current model and / or function is appropriate, and then adjusting the current model and / or function to improve the downlink transmission effect.

[0322] Third embodiment

[0323] On the basis of any of the above embodiments, this embodiment further discloses the processing method in the above embodiments, and specifically further discloses a method for determining the first indicator.

[0324] Optionally, the first indicator is determined based on prediction information and / or measurement information.

[0325] Optionally, the prediction information includes a predicted reference signal index value and / or signal quality.

[0326] Optionally, the prediction information includes a first number of predicted reference signal index values ​​and / or signal qualities.

[0327] Optionally, the measurement information includes a measured reference signal index value and / or signal quality.

[0328] Optionally, the measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured.

[0329] Optionally, the signal quality includes layer 1 reference signal received power and / or layer 1 signal to interference and noise ratio.

[0330] Optionally, the first indicator is the number of times the first condition is met in the first statistical range.

[0331] Optionally, the first indicator is the number of time units that meet the first condition in the first statistical range.

[0332] Optionally, the first statistical range includes at least one of a third number of time units, a fourth number of time units, a fifth number of time units, a sixth number of prediction windows, and a monitoring timer duration.

[0333] Optionally, satisfying the first condition includes at least one of the following:

[0334] The predicted first reference signal index value is the same as the measured first reference signal index value;

[0335] The measured first reference signal index value is one of the predicted first first number of reference signal index values;

[0336] The predicted first reference signal index value is one of the first second number of measured reference signal index values;

[0337] The difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to a first threshold;

[0338] An average of the differences between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to a first threshold.

[0339] Optionally, satisfying the first condition further includes at least one of the following:

[0340] The predicted first reference signal index value is the same as the corresponding measured first reference signal index value;

[0341] The measured first reference signal index value is one of the corresponding predicted first first number of reference signal index values;

[0342] The predicted first reference signal index value is one of the corresponding first second number of measured reference signal index values;

[0343] The difference between the predicted signal quality of the previous reference signal and the corresponding first signal quality is less than or equal to a first threshold;

[0344] An average of the differences between the predicted signal quality of the previous reference signal and the corresponding first signal quality is less than or equal to a first threshold.

[0345] Optionally, the first signal quality is a measured signal quality corresponding to a previously predicted reference signal.

[0346] Optionally, the first signal quality is the signal quality of a previously measured reference signal.

[0347] Optionally, the prediction information is in a first statistical range.

[0348] Optionally, the measurement information is determined based on a reference signal of a second reference signal set that is less than the first interval from the prediction information in the time domain.

[0349] Optionally, the measurement information is determined based on a most recent reference signal of the second reference signal set.

[0350] Optionally, the measurement information is determined based on a reference signal of a second reference signal set.

[0351] Optionally, the measurement information is determined based on reference signals of a second reference signal set in the first statistical range.

[0352] Optionally, the method of determining the first indicator in the first statistical range includes at least one of the following:

[0353] Counting the number of times the first condition is satisfied in the first statistical range as a first indicator;

[0354] Counting the number of time units that meet the first condition in the first statistical range as a first indicator;

[0355] Counting the number of times the first condition is satisfied in each time unit in a prediction window in a first statistical range as a first indicator;

[0356] Counting the number of times a first condition is satisfied in a prediction window in a first statistical range as a first indicator;

[0357] Counting the number of times the first condition is met within the duration of the monitoring timer as a first indicator;

[0358] The number of time units that meet the first condition during the duration of the monitoring timer is counted as the first indicator.

[0359] Optionally, counting the number of times and / or the number of time units that meet the first condition includes at least one of the following:

[0360] If the predicted last reference signal index value is the same as the measured last reference signal index value, the number of times and / or the number of time units is increased by 1;

[0361] If the measured last reference signal index value is one of the predicted first number of reference signal index values, the number of times and / or the number of time units is increased by 1;

[0362] If the predicted first reference signal index value is one of the first second number of measured reference signal index values, the number of times and / or the number of time units is increased by 1;

[0363] If the difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0364] If the average value of the difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1.

[0365] Through the technical solution of this embodiment, a method for measuring the prediction accuracy of prediction information is provided by determining a first indicator based on prediction information and / or measurement information, and using the first indicator as a performance indicator to measure the prediction accuracy of the prediction information. This can realize the measurement of the model and / or function that generates the prediction information.

[0366] Fourth embodiment

[0367] On the basis of any of the above embodiments, this embodiment further discloses the processing method in the above embodiments, and specifically further discloses a specific method for determining the first indicator in the embodiments of the present application.

[0368] Optionally, the first indicator is determined based on the first reference signal set and / or the second reference signal set.

[0369] Optionally, the first indicator is the number of times the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value.

[0370] Optionally, the first indicator is the number of time units in which the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value.

[0371] Optionally, prediction information is determined based on the first reference signal set and / or the second reference signal set, the prediction information including the predicted previous beam index value and / or signal quality, and / or the prediction information including the predicted previous reference signal index value and / or signal quality, optionally, the prediction information includes the predicted beam index value and / or signal quality, and / or the prediction information includes the predicted reference signal index value and / or signal quality.

[0372] Optionally, the reference signal of the first reference signal set is measured and prediction information is determined based on the measurement information and / or the second reference signal set, the prediction information including the predicted first beam index value and / or signal quality, and / or the prediction information including the predicted first reference signal index value and / or signal quality, optionally, the prediction information includes the predicted beam index value and / or signal quality, and / or the prediction information includes the predicted reference signal index value and / or signal quality.

[0373] Optionally, measurement information is determined based on the second reference signal set and / or the reference signal of the second reference signal set, the measurement information including the last measured beam index value and / or signal quality, and / or the measurement information including the last measured reference signal index value and / or signal quality, optionally, the measurement information includes the measured reference signal index value and / or signal quality.

[0374] Optionally, the reference signal of the second reference signal set is measured and measurement information is determined, the measurement information including the last measured beam index value and / or signal quality, and / or the measurement information including the last measured reference signal index value and / or signal quality, optionally, the measurement information includes the measured reference signal index value and / or signal quality.

[0375] Optionally, for the prediction information and corresponding measurement information of the third number of time units, the first indicator is the number of times that the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value, and / or the first indicator is the number of time units in which the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value, including at least one of the following:

[0376] The prediction information of one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or the prediction information of one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities. Optionally, the prediction information is determined based on the first reference signal set and / or the second reference signal set.

[0377] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0378] If the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value, the number of times and / or time units is increased by 1;

[0379] If the predicted last beam and / or reference signal index value of a time unit is the same as the measured last beam and / or reference signal index value, the number of times and / or the number of time units is increased by 1;

[0380] If the predicted last beam and / or reference signal index value is the same as the corresponding measured last beam and / or reference signal index value, the number of times and / or time units is increased by 1;

[0381] If the predicted last beam and / or reference signal index value of a time unit is the same as the corresponding measured last beam and / or reference signal index value, the number of times and / or the number of time units is increased by 1;

[0382] The third number of time units are future or future time units.

[0383] Optionally, for the prediction information and corresponding measurement information of the fourth number of time units, the first indicator is the number of times that the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value, and / or the first indicator is the number of time units in which the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value, including at least one of the following:

[0384] determining prediction information for a fourth number of time units based on measurement information of reference signals of the first reference signal set in a seventh number of time units and / or the second reference signal set, optionally, the prediction information for one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or the prediction information for one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities;

[0385] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0386] If the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value, the number of times and / or time units is increased by 1;

[0387] If the predicted last beam and / or reference signal index value of a time unit is the same as the measured last beam and / or reference signal index value, the number of times and / or the number of time units is increased by 1;

[0388] If the predicted last beam and / or reference signal index value is the same as the corresponding measured last beam and / or reference signal index value, the number of times and / or time units is increased by 1;

[0389] If the predicted last beam and / or reference signal index value of a time unit is the same as the corresponding measured last beam and / or reference signal index value, the number of times and / or the number of time units is increased by 1;

[0390] The fourth number of time units are future or future time units.

[0391] Optionally, for the prediction information and corresponding measurement information of a prediction window, the first indicator is the number of times that the predicted first beam and / or reference signal index value in the prediction window is the same as the measured first beam and / or reference signal index value, and / or the first indicator is the number of time units in which the predicted first beam and / or reference signal index value in the prediction window is the same as the measured first beam and / or reference signal index value, including at least one of the following:

[0392] determining a prediction window based on measurement information of reference signals of the first reference signal set in a seventh number of time units and / or the second reference signal set, optionally, one prediction window includes a fourth number of time units, optionally, the prediction information of one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or, the prediction information of one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities;

[0393] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0394] The fourth number of time units is the future or future time units;

[0395] If the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value, the number of times and / or time units is increased by 1;

[0396] If the predicted last beam and / or reference signal index value of a time unit is the same as the measured last beam and / or reference signal index value, the number of times and / or the number of time units is increased by 1;

[0397] If the predicted last beam and / or reference signal index value is the same as the corresponding measured last beam and / or reference signal index value, the number of times and / or time units is increased by 1;

[0398] If the predicted last beam and / or reference signal index value of a time unit is the same as the corresponding measured last beam and / or reference signal index value, the number of times and / or time units is increased by 1.

[0399] Optionally, for the prediction information and corresponding measurement information of the fifth number of time units, the first indicator is the number of times that the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value, and / or the first indicator is the number of time units in which the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value, including at least one of the following:

[0400] The fifth quantity is the product of the fourth quantity and the sixth quantity;

[0401] The fifth number of time units is the future or future time unit;

[0402] The sixth number is at least one of the number of prediction windows, the number of predictions, and the number of the fourth number of time units;

[0403] determining prediction information for a fourth number of time units based on measurement information of reference signals of the first reference signal set in a seventh number of time units and / or the second reference signal set, optionally, the prediction information for one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or the prediction information for one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities;

[0404] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0405] If the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value, the number of times and / or time units is increased by 1;

[0406] If the predicted last beam and / or reference signal index value of a time unit is the same as the measured last beam and / or reference signal index value, the number of times and / or the number of time units is increased by 1;

[0407] If the predicted last beam and / or reference signal index value is the same as the corresponding measured last beam and / or reference signal index value, the number of times and / or time units is increased by 1;

[0408] If the predicted last beam and / or reference signal index value of a time unit is the same as the corresponding measured last beam and / or reference signal index value, the number of times and / or time units is increased by 1.

[0409] Optionally, for the prediction information and corresponding measurement information of the sixth number of prediction windows, the first indicator is the number of times that the predicted first beam and / or reference signal index value of each time unit in a prediction window is the same as the measured first beam and / or reference signal index value, and / or the first indicator is the number of time units in which the predicted first beam and / or reference signal index value of each time unit in a prediction window is the same as the measured first beam and / or reference signal index value, including at least one of the following:

[0410] determining a prediction window based on measurement information of reference signals of the first reference signal set in a seventh number of time units and / or the second reference signal set, optionally, one prediction window includes a fourth number of time units, optionally, the prediction information of one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or, the prediction information of one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities;

[0411] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0412] The fourth number of time units is the future or future time units;

[0413] If the predicted last beam and / or reference signal index value of each time unit in a prediction window is the same as the measured last beam and / or reference signal index value, the number of times and / or time units is increased by 1;

[0414] If the predicted last beam and / or reference signal index value of each time unit in a prediction window is the same as the corresponding measured last beam and / or reference signal index value, the number of times and / or time units is increased by 1;

[0415] The sixth number of prediction windows are future or future prediction windows.

[0416] Optionally, for the prediction information and corresponding measurement information within the duration of the monitoring timer, the first indicator is the number of times that the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value, and / or the first indicator is the number of time units in which the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value, including at least one of the following:

[0417] The monitoring timer duration includes a third number of time units, optionally, the third number of time units being time units in the future or future;

[0418] In the third number of time units, the prediction information of one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or the prediction information of one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities. Optionally, the prediction information is determined based on the first reference signal set and / or the second reference signal set.

[0419] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0420] If the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value, the number of times and / or time units is increased by 1;

[0421] If the predicted last beam and / or reference signal index value of a time unit is the same as the measured last beam and / or reference signal index value, the number of times and / or the number of time units is increased by 1;

[0422] If the predicted last beam and / or reference signal index value is the same as the corresponding measured last beam and / or reference signal index value, the number of times and / or time units is increased by 1;

[0423] If the predicted last beam and / or reference signal index value of a time unit is the same as the corresponding measured last beam and / or reference signal index value, the number of times and / or the number of time units is increased by 1;

[0424] Monitor the time when the timer is turned on, including at least one of the following:

[0425] Upon receiving the first indication information, starting the monitoring timer;

[0426] After sending the monitoring request, start the monitoring timer;

[0427] After the first prediction information is determined, the monitoring timer is started.

[0428] Optionally, the first indication information is monitoring indication information.

[0429] Optionally, the terminal device performs monitoring based on the first indication information.

[0430] Optionally, the first indication information includes at least one of the following:

[0431] The first indication information is MAC CE and / or DCI;

[0432] The first indication information is radio resource control configuration.

[0433] Optionally, the radio resource control configuration includes at least one of a first reference signal set configuration, a second reference signal set configuration, and a CSI report configuration.

[0434] Optionally, the first indicator is the number of times that a measured last beam and / or reference signal index value is one of a first number of predicted first beam and / or reference signal index values.

[0435] Optionally, the first indicator is the number of time units in which the measured last beam and / or reference signal index value is one of the predicted first first number of beam and / or reference signal index values.

[0436] Optionally, prediction information is determined based on the first reference signal set and / or the second reference signal set, the prediction information including the predicted first number of beam index values ​​and / or signal qualities, and / or, the prediction information includes the predicted first number of reference signal index values ​​and / or signal qualities, optionally, the prediction information includes the predicted beam index value and / or signal quality, and / or, the prediction information includes the predicted reference signal index value and / or signal quality.

[0437] Optionally, the reference signals of the first reference signal set are measured and prediction information is determined based on the measurement information and / or the second reference signal set, the prediction information including the predicted first number of beam index values ​​and / or signal qualities, and / or the prediction information including the predicted first number of reference signal index values ​​and / or signal qualities, optionally, the prediction information includes the predicted beam index value and / or signal quality, and / or the prediction information includes the predicted reference signal index value and / or signal quality.

[0438] Optionally, measurement information is determined based on the second reference signal set and / or the reference signal of the second reference signal set, the measurement information including the last measured beam index value and / or signal quality, and / or the measurement information including the last measured reference signal index value and / or signal quality, optionally, the measurement information includes the measured reference signal index value and / or signal quality.

[0439] Optionally, the reference signal of the second reference signal set is measured and measurement information is determined, the measurement information including the last measured beam index value and / or signal quality, and / or the measurement information including the last measured reference signal index value and / or signal quality, optionally, the measurement information includes the measured reference signal index value and / or signal quality.

[0440] Optionally, for the prediction information and corresponding measurement information of the third number of time units, the first indicator is the number of times the measured last beam and / or reference signal index value is one of the predicted first number of beams and / or reference signal index values, and / or the first indicator is the number of time units in which the measured last beam and / or reference signal index value is one of the predicted first number of beams and / or reference signal index values, including at least one of the following:

[0441] The prediction information of one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or the prediction information of one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities. Optionally, the prediction information is determined based on the first reference signal set and / or the second reference signal set.

[0442] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0443] If the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0444] If the measured last beam and / or reference signal index value is one of the first number of beam and / or reference signal index values ​​predicted in one time unit, the number of times and / or the number of time units is increased by 1;

[0445] If the corresponding measured last beam and / or reference signal index value is one of the predicted first number of beams and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0446] If the corresponding measured last beam and / or reference signal index value is one of the first number of predicted beams and / or reference signal index values ​​of a time unit, the number of times and / or the number of time units is increased by 1;

[0447] The third number of time units are future or future time units.

[0448] Optionally, for the prediction information and corresponding measurement information of the fourth number of time units, the first indicator is the number of times the measured last beam and / or reference signal index value is one of the predicted first number of beams and / or reference signal index values, and / or the first indicator is the number of time units in which the measured last beam and / or reference signal index value is one of the predicted first number of beams and / or reference signal index values, including at least one of the following:

[0449] determining prediction information for a fourth number of time units based on measurement information of reference signals of the first reference signal set in a seventh number of time units and / or the second reference signal set, optionally, the prediction information for one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or the prediction information for one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities;

[0450] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0451] If the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0452] If the measured last beam and / or reference signal index value is one of the first number of beam and / or reference signal index values ​​predicted in one time unit, the number of times and / or the number of time units is increased by 1;

[0453] If the corresponding measured last beam and / or reference signal index value is one of the predicted first number of beams and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0454] If the corresponding measured last beam and / or reference signal index value is one of the first number of predicted beams and / or reference signal index values ​​of a time unit, the number of times and / or the number of time units is increased by 1;

[0455] The fourth number of time units are future or future time units.

[0456] Optionally, for the prediction information and corresponding measurement information of a prediction window, the first indicator is the number of times that the first beam and / or reference signal index value measured in the prediction window is one of the first first number of beams and / or reference signal index values ​​predicted, and / or the first indicator is the number of time units in which the first beam and / or reference signal index value measured in the prediction window is one of the first first number of beams and / or reference signal index values ​​predicted, including at least one of the following:

[0457] determining a prediction window based on measurement information of reference signals of the first reference signal set in a seventh number of time units and / or the second reference signal set, optionally, one prediction window includes a fourth number of time units, optionally, the prediction information of one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or, the prediction information of one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities;

[0458] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0459] The fourth number of time units is the future or future time units;

[0460] If the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0461] If the measured last beam and / or reference signal index value is one of the first number of beam and / or reference signal index values ​​predicted in one time unit, the number of times and / or the number of time units is increased by 1;

[0462] If the corresponding measured last beam and / or reference signal index value is one of the predicted first number of beams and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0463] If the corresponding measured last beam and / or reference signal index value is one of the predicted first first number of beams and / or reference signal index values ​​of one time unit, the number of times and / or the number of time units is increased by 1.

[0464] Optionally, for the prediction information and corresponding measurement information of the fifth number of time units, the first indicator is the number of times the measured last beam and / or reference signal index value is one of the predicted first number of beams and / or reference signal index values, and / or the first indicator is the number of time units in which the measured last beam and / or reference signal index value is one of the predicted first number of beams and / or reference signal index values, including at least one of the following:

[0465] The fifth quantity is the product of the fourth quantity and the sixth quantity;

[0466] The fifth number of time units is the future or future time unit;

[0467] The sixth number is at least one of the number of prediction windows, the number of predictions, and the number of the fourth number of time units;

[0468] determining prediction information for a fourth number of time units based on measurement information of reference signals of the first reference signal set in a seventh number of time units and / or the second reference signal set, optionally, the prediction information for one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or the prediction information for one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities;

[0469] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0470] If the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0471] If the measured last beam and / or reference signal index value is one of the first number of beam and / or reference signal index values ​​predicted in one time unit, the number of times and / or the number of time units is increased by 1;

[0472] If the corresponding measured last beam and / or reference signal index value is one of the predicted first number of beams and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0473] If the corresponding measured last beam and / or reference signal index value is one of the predicted first first number of beams and / or reference signal index values ​​of one time unit, the number of times and / or the number of time units is increased by 1.

[0474] Optionally, for the prediction information and corresponding measurement information in the sixth number of prediction windows, the first indicator is the number of times that the measured first beam and / or reference signal index value corresponding to the prediction information of each time unit in a prediction window is one of the predicted first first number of beams and / or reference signal index values, and / or the first indicator is the number of time units in which the measured first beam and / or reference signal index value corresponding to the prediction information of each time unit in a prediction window is one of the predicted first first number of beams and / or reference signal index values, including at least one of the following:

[0475] determining a prediction window based on measurement information of reference signals of the first reference signal set in a seventh number of time units and / or the second reference signal set, optionally, one prediction window includes a fourth number of time units, optionally, the prediction information of one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or, the prediction information of one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities;

[0476] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0477] The fourth number of time units is the future or future time units;

[0478] If the last measured beam and / or reference signal index value corresponding to the prediction information of each time unit in a prediction window is one of the first first number of predicted beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0479] The sixth number of prediction windows are future or future prediction windows.

[0480] Optionally, for the prediction information and corresponding measurement information within the duration of the monitoring timer, the first indicator is the number of times that the measured last beam and / or reference signal index value is one of the predicted first number of beams and / or reference signal index values, and / or the first indicator is the number of time units in which the measured last beam and / or reference signal index value is one of the predicted first number of beams and / or reference signal index values, including at least one of the following:

[0481] The monitoring timer duration includes a third number of time units, optionally, the third number of time units being time units in the future or future;

[0482] In the third number of time units, the prediction information of one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or the prediction information of one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities. Optionally, the prediction information is determined based on the first reference signal set and / or the second reference signal set.

[0483] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0484] If the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0485] If the measured last beam and / or reference signal index value is one of the first number of beam and / or reference signal index values ​​predicted in one time unit, the number of times and / or the number of time units is increased by 1;

[0486] If the corresponding measured last beam and / or reference signal index value is one of the predicted first number of beams and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0487] If the corresponding measured last beam and / or reference signal index value is one of the first number of predicted beams and / or reference signal index values ​​of a time unit, the number of times and / or the number of time units is increased by 1;

[0488] Monitor the time when the timer is turned on, including at least one of the following:

[0489] Upon receiving the first indication information, starting the monitoring timer;

[0490] After sending the monitoring request, start the monitoring timer;

[0491] After the first prediction information is determined, the monitoring timer is started.

[0492] Optionally, the first indication information is monitoring indication information.

[0493] Optionally, the terminal device performs monitoring based on the first indication information.

[0494] Optionally, the first indication information includes at least one of the following:

[0495] The first indication information is MAC CE and / or DCI;

[0496] The first indication information is radio resource control configuration.

[0497] Optionally, the radio resource control configuration includes at least one of a first reference signal set configuration, a second reference signal set configuration, and a CSI report configuration.

[0498] Optionally, the first indicator is the number of times the predicted last beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values.

[0499] Optionally, the first indicator is the number of time units in which the predicted last beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values.

[0500] Optionally, prediction information is determined based on the first reference signal set and / or the second reference signal set, the prediction information including the predicted previous beam index value and / or signal quality, and / or the prediction information including the predicted previous reference signal index value and / or signal quality, optionally, the prediction information includes the predicted beam index value and / or signal quality, and / or the prediction information includes the predicted reference signal index value and / or signal quality.

[0501] Optionally, the reference signal of the first reference signal set is measured and prediction information is determined based on the measurement information and / or the second reference signal set, the prediction information including the predicted first beam index value and / or signal quality, and / or the prediction information including the predicted first reference signal index value and / or signal quality, optionally, the prediction information includes the predicted beam index value and / or signal quality, and / or the prediction information includes the predicted reference signal index value and / or signal quality.

[0502] Optionally, measurement information is determined based on the second reference signal set and / or the reference signal of the second reference signal set, the measurement information including the first second number of beam index values ​​and / or signal qualities measured, and / or the measurement information including the first second number of reference signal index values ​​and / or signal qualities measured, optionally, the measurement information includes the measured reference signal index value and / or signal quality.

[0503] Optionally, the reference signals of the second reference signal set are measured and measurement information is determined, the measurement information including the first second number of beam index values ​​and / or signal qualities measured, and / or the measurement information including the first second number of reference signal index values ​​and / or signal qualities measured, optionally, the measurement information includes the measured reference signal index value and / or signal quality.

[0504] Optionally, for the prediction information and corresponding measurement information of the third number of time units, the first indicator is the number of times the predicted last beam and / or reference signal index value is one of the first second number of beams and / or reference signal index values ​​measured, and / or the first indicator is the number of times the predicted last beam and / or reference signal index value is one of the first second number of beams and / or reference signal index values ​​measured, and / or the number of time units, including at least one of the following:

[0505] The prediction information of one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or the prediction information of one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities. Optionally, the prediction information is determined based on the first reference signal set and / or the second reference signal set.

[0506] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0507] If the predicted last beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0508] If the predicted last beam and / or reference signal index value of a time unit is one of the first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0509] If the predicted first beam and / or reference signal index value is one of the corresponding first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0510] If the predicted first beam and / or reference signal index value of a time unit is one of the corresponding first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0511] The third number of time units are future or future time units.

[0512] Optionally, for the prediction information and corresponding measurement information of the fourth number of time units, the first indicator is the number of times the predicted last beam and / or reference signal index value is one of the first second number of beams and / or reference signal index values ​​measured, and / or the first indicator is the number of times the predicted last beam and / or reference signal index value is one of the first second number of beams and / or reference signal index values ​​measured, and / or the number of time units, including at least one of the following:

[0513] determining prediction information for a fourth number of time units based on measurement information of reference signals of the first reference signal set in a seventh number of time units and / or the second reference signal set, optionally, the prediction information for one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or the prediction information for one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities;

[0514] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0515] If the predicted last beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0516] If the predicted last beam and / or reference signal index value of a time unit is one of the first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0517] If the predicted first beam and / or reference signal index value is one of the corresponding first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0518] If the predicted first beam and / or reference signal index value of a time unit is one of the corresponding first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0519] The fourth number of time units are future or future time units.

[0520] Optionally, for the prediction information and corresponding measurement information of a prediction window, the first indicator is the number of times the predicted first beam and / or reference signal index value in the prediction window is one of the first second number of beams and / or reference signal index values ​​measured, and / or the first indicator is the number of time units in which the predicted first beam and / or reference signal index value in the prediction window is one of the first second number of beams and / or reference signal index values ​​measured, including at least one of the following:

[0521] determining a prediction window based on measurement information of reference signals of the first reference signal set in a seventh number of time units and / or the second reference signal set, optionally, one prediction window includes a fourth number of time units, optionally, the prediction information of one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or, the prediction information of one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities;

[0522] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0523] The fourth number of time units is the future or future time units;

[0524] If the predicted last beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0525] If the predicted last beam and / or reference signal index value of a time unit is one of the first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0526] If the predicted first beam and / or reference signal index value is one of the corresponding first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0527] If the predicted first beam and / or reference signal index value of a time unit is one of the corresponding first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1.

[0528] Optionally, for the prediction information and corresponding measurement information of the fifth number of time units, the first indicator is the number of times the predicted last beam and / or reference signal index value is one of the first second number of beams and / or reference signal index values ​​measured, and / or the first indicator is the number of time units in which the predicted last beam and / or reference signal index value is one of the first second number of beams and / or reference signal index values ​​measured, including at least one of the following:

[0529] The fifth quantity is the product of the fourth quantity and the sixth quantity;

[0530] The fifth number of time units is the future or future time unit;

[0531] The sixth number is at least one of the number of prediction windows, the number of predictions, and the number of the fourth number of time units;

[0532] determining prediction information for a fourth number of time units based on measurement information of reference signals of the first reference signal set in a seventh number of time units and / or the second reference signal set, optionally, the prediction information for one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or the prediction information for one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities;

[0533] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0534] If the predicted last beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0535] If the predicted last beam and / or reference signal index value of a time unit is one of the first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0536] If the predicted first beam and / or reference signal index value is one of the corresponding first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0537] If the predicted first beam and / or reference signal index value of a time unit is one of the corresponding first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1.

[0538] Optionally, for the prediction information and corresponding measurement information in the sixth number of prediction windows, the first indicator is the number of times the predicted first beam and / or reference signal index value of each time unit in a prediction window is one of the first second number of beams and / or reference signal index values ​​measured, and / or the first indicator is the number of time units in which the predicted first beam and / or reference signal index value of each time unit in a prediction window is one of the first second number of beams and / or reference signal index values ​​measured, including at least one of the following:

[0539] determining a prediction window based on measurement information of reference signals of the first reference signal set in a seventh number of time units and / or the second reference signal set, optionally, one prediction window includes a fourth number of time units, optionally, the prediction information of one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or, the prediction information of one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities;

[0540] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0541] The fourth number of time units is the future or future time units;

[0542] If the predicted last beam and / or reference signal index value for each time unit in a prediction window is one of the first second number of beam and / or reference signal index values ​​measured, the number of times and / or the number of time units is increased by 1;

[0543] If the predicted first beam and / or reference signal index value for each time unit in a prediction window is one of the corresponding first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0544] The sixth number of prediction windows are future or future prediction windows.

[0545] Optionally, for the prediction information and corresponding measurement information within the duration of the monitoring timer, the first indicator is the number of times the predicted last beam and / or reference signal index value is one of the first second number of beams and / or reference signal index values ​​measured, and / or the first indicator is the number of time units in which the predicted last beam and / or reference signal index value is one of the first second number of beams and / or reference signal index values ​​measured, including at least one of the following:

[0546] The monitoring timer duration includes a third number of time units, optionally, the third number of time units being time units in the future or future;

[0547] In the third number of time units, the prediction information of one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or the prediction information of one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities. Optionally, the prediction information is determined based on the first reference signal set and / or the second reference signal set.

[0548] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0549] If the predicted last beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0550] If the predicted last beam and / or reference signal index value of a time unit is one of the first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0551] If the predicted first beam and / or reference signal index value is one of the corresponding first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0552] If the predicted first beam and / or reference signal index value of a time unit is one of the corresponding first second number of measured beam and / or reference signal index values, the number of times and / or the number of time units is increased by 1;

[0553] Monitor the time when the timer is turned on, including at least one of the following:

[0554] Upon receiving the first indication information, starting the monitoring timer;

[0555] After sending the monitoring request, start the monitoring timer;

[0556] After the first prediction information is determined, the monitoring timer is started.

[0557] Optionally, the first indication information is monitoring indication information.

[0558] Optionally, the terminal device performs monitoring based on the first indication information.

[0559] Optionally, the first indication information includes at least one of the following:

[0560] The first indication information is MAC CE and / or DCI;

[0561] The first indication information is radio resource control configuration.

[0562] Optionally, the radio resource control configuration includes at least one of a first reference signal set configuration, a second reference signal set configuration, and a CSI report configuration.

[0563] Through the technical solution of this embodiment, specifically by determining a first indicator based on prediction information and / or measurement information, the first indicator is the number of times that the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value, and / or, the first indicator is the number of time units that the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value, the number of times that the measured last beam and / or reference signal index value is one of the predicted first first number of beams and / or reference signal index values, and / or, the measured last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value. The reference value is the number of time units of one of the first number of predicted beams and / or reference signal index values, the number of times the predicted first beam and / or reference signal index value is one of the second number of measured beams and / or reference signal index values, and / or the number of time units of one of the second number of measured beams and / or reference signal index values. The first indicator is used as a performance indicator to measure the prediction accuracy of the prediction information, and a method for measuring the prediction accuracy of the prediction information is provided, which can realize the measurement of the model and / or function of generating the prediction information.

[0564] Fifth embodiment

[0565] On the basis of any of the above embodiments, this embodiment further discloses the processing method in the above embodiments, and specifically further discloses another specific method for determining the first indicator in the embodiments of the present application.

[0566] Optionally, the first indicator is determined based on the first reference signal set and / or the second reference signal set.

[0567] Optionally, the first indicator is the number of times that the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to a first threshold.

[0568] Optionally, the first indicator is the number of time units in which the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to a first threshold.

[0569] Optionally, the first signal quality is a measured signal quality corresponding to a predicted previous beam and / or reference signal.

[0570] Optionally, the first signal quality is the signal quality of the first beam and / or reference signal measured.

[0571] Optionally, prediction information is determined based on the first reference signal set and / or the second reference signal set, the prediction information including the predicted previous beam index value and / or signal quality, and / or the prediction information including the predicted previous reference signal index value and / or signal quality, optionally, the prediction information includes the predicted beam index value and / or signal quality, and / or the prediction information includes the predicted reference signal index value and / or signal quality.

[0572] Optionally, the reference signal of the first reference signal set is measured and prediction information is determined based on the measurement information and / or the second reference signal set, the prediction information including the predicted first beam index value and / or signal quality, and / or the prediction information including the predicted first reference signal index value and / or signal quality, optionally, the prediction information includes the predicted beam index value and / or signal quality, and / or the prediction information includes the predicted reference signal index value and / or signal quality.

[0573] Optionally, measurement information is determined based on the second reference signal set and / or the reference signal of the second reference signal set, the measurement information including the measured last beam index value and / or signal quality, and / or the measurement information includes the measured last reference signal index value and / or signal quality, optionally, the measurement information includes the measured signal quality corresponding to the predicted last beam and / or reference signal.

[0574] Optionally, the reference signal of the second reference signal set is measured and measurement information is determined, the measurement information including the measured last beam index value and / or signal quality, and / or the measurement information includes the measured last reference signal index value and / or signal quality, optionally, the measurement information includes the measured signal quality corresponding to the predicted last beam and / or reference signal.

[0575] Optionally, the signal quality of the last beam and / or reference signal measured is the measured signal quality corresponding to the last beam and / or reference signal measured.

[0576] Optionally, for the prediction information and corresponding measurement information of the third number of time units, the first indicator is the number of times and / or the number of time units in which the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold, including at least one of the following:

[0577] The prediction information of one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or the prediction information of one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities. Optionally, the prediction information is determined based on the first reference signal set and / or the second reference signal set.

[0578] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0579] The measurement information includes the measured signal quality corresponding to the predicted previous beam and / or reference signal;

[0580] If the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0581] If the difference between the signal quality of the predicted previous beam and / or reference signal in one time unit and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0582] If the difference between the predicted signal quality of the previous beam and / or reference signal and the corresponding first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0583] If the difference between the signal quality of the predicted previous beam and / or reference signal of a time unit and the corresponding first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0584] The third number of time units are future or future time units.

[0585] Optionally, for the prediction information and corresponding measurement information of the fourth number of time units, the first indicator is the number of times and / or the number of time units in which the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold, including at least one of the following:

[0586] determining prediction information for a fourth number of time units based on measurement information of reference signals of the first reference signal set in a seventh number of time units and / or the second reference signal set, optionally, the prediction information for one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or the prediction information for one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities;

[0587] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0588] The measurement information includes the measured signal quality corresponding to the predicted previous beam and / or reference signal;

[0589] If the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0590] If the difference between the signal quality of the predicted previous beam and / or reference signal in one time unit and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0591] If the difference between the predicted signal quality of the previous beam and / or reference signal and the corresponding first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0592] If the difference between the signal quality of the predicted previous beam and / or reference signal of a time unit and the corresponding first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0593] The fourth number of time units are future or future time units.

[0594] Optionally, for the prediction information and corresponding measurement information of a prediction window, the first indicator is the number of times and / or the number of time units in which the difference between the signal quality of the predicted first beam and / or reference signal in the prediction window and the first signal quality is less than or equal to the first threshold, including at least one of the following:

[0595] determining a prediction window based on measurement information of reference signals of the first reference signal set in a seventh number of time units and / or the second reference signal set, optionally, one prediction window includes a fourth number of time units, optionally, the prediction information of one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or, the prediction information of one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities;

[0596] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0597] The measurement information includes the measured signal quality corresponding to the predicted previous beam and / or reference signal;

[0598] The fourth number of time units is the future or future time units;

[0599] If the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0600] If the difference between the signal quality of the predicted previous beam and / or reference signal in one time unit and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0601] If the difference between the predicted signal quality of the previous beam and / or reference signal and the corresponding first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0602] If the difference between the signal quality of the predicted previous beam and / or reference signal of a time unit and the corresponding first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1.

[0603] Optionally, for the prediction information and corresponding measurement information of the fifth number of time units, the first indicator is the number of times and / or the number of time units in which the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold, including at least one of the following:

[0604] The fifth quantity is the product of the fourth quantity and the sixth quantity;

[0605] The fifth number of time units is the future or future time unit;

[0606] The sixth number is at least one of the number of prediction windows, the number of predictions, and the number of the fourth number of time units;

[0607] determining prediction information for a fourth number of time units based on measurement information of reference signals of the first reference signal set in a seventh number of time units and / or the second reference signal set, optionally, the prediction information for one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or the prediction information for one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities;

[0608] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0609] The measurement information includes the measured signal quality corresponding to the predicted previous beam and / or reference signal;

[0610] If the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0611] If the difference between the signal quality of the predicted previous beam and / or reference signal in one time unit and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0612] If the difference between the predicted signal quality of the previous beam and / or reference signal and the corresponding first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0613] If the difference between the signal quality of the predicted previous beam and / or reference signal of a time unit and the corresponding first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0614] Optionally, for the prediction information and corresponding measurement information of the sixth number of prediction windows, the first indicator is the number of times and / or the number of time units in which the difference between the signal quality of the predicted previous beam and / or reference signal of each time unit in the prediction window and the first signal quality is less than or equal to the first threshold, including at least one of the following:

[0615] determining a prediction window based on measurement information of reference signals of the first reference signal set in a seventh number of time units and / or the second reference signal set, optionally, one prediction window includes a fourth number of time units, optionally, the prediction information of one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or, the prediction information of one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities;

[0616] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0617] The measurement information includes the measured signal quality corresponding to the predicted previous beam and / or reference signal;

[0618] The fourth number of time units is the future or future time units;

[0619] If the difference between the signal quality of the predicted previous beam and / or reference signal of each time unit in a prediction window and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0620] If the difference between the signal quality of the predicted previous beam and / or reference signal of each time unit in a prediction window and the corresponding first signal quality is less than or equal to a first threshold, the number of times and / or the number of time units is increased by 1;

[0621] The sixth number of prediction windows are future or future prediction windows.

[0622] Optionally, for the prediction information and corresponding measurement information within the duration of the monitoring timer, the first indicator is the number of times and / or the number of time units in which the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold, including at least one of the following:

[0623] The monitoring timer duration includes a third number of time units, optionally, the third number of time units being time units in the future or future;

[0624] In the third number of time units, the prediction information of one time unit includes a predicted first number of beam index values ​​and / or signal qualities, and / or the prediction information of one time unit includes a predicted first number of reference signal index values ​​and / or signal qualities. Optionally, the prediction information is determined based on the first reference signal set and / or the second reference signal set.

[0625] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured. Optionally, the measurement information is determined based on the second reference signal set;

[0626] The measurement information includes the measured signal quality corresponding to the predicted previous beam and / or reference signal;

[0627] If the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0628] If the difference between the signal quality of the predicted previous beam and / or reference signal in one time unit and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0629] If the difference between the predicted signal quality of the previous beam and / or reference signal and the corresponding first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0630] If the difference between the signal quality of the predicted previous beam and / or reference signal of a time unit and the corresponding first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0631] Monitor the time when the timer is turned on, including at least one of the following:

[0632] Upon receiving the first indication information, starting the monitoring timer;

[0633] After sending the monitoring request, start the monitoring timer;

[0634] After the first prediction information is determined, the monitoring timer is started.

[0635] Optionally, the first indication information is monitoring indication information.

[0636] Optionally, the terminal device performs monitoring based on the first indication information.

[0637] Optionally, the first indication information includes at least one of the following:

[0638] The first indication information is MAC CE and / or DCI;

[0639] The first indication information is radio resource control configuration.

[0640] Optionally, the radio resource control configuration includes at least one of a first reference signal set configuration, a second reference signal set configuration, and a CSI report configuration.

[0641] Optionally, the first predicted beam and / or reference signal is the beam and / or reference signal corresponding to the maximum signal quality.

[0642] Optionally, the first beam and / or reference signal measured is the beam and / or reference signal corresponding to the maximum signal quality.

[0643] Optionally, the predicted last beam and / or reference signal index value and the measured last beam and / or reference signal index value correspond to the same time unit.

[0644] Optionally, the first indicator is the number of times that an average of the differences between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to a first threshold.

[0645] Optionally, the first indicator is the number of time units in which the average of the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold.

[0646] Through the technical solution of this embodiment, a first indicator is determined based on prediction information and / or measurement information. The first indicator is the number of times and / or the number of time units that the difference between the signal quality of the predicted previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold. The first indicator is used as a performance indicator to measure the prediction accuracy of the prediction information. A method for measuring the prediction accuracy of the prediction information is provided, which can realize the measurement of the model and / or function of generating the prediction information.

[0647] Sixth embodiment

[0648] 8 , which is a flow chart of a processing method according to a sixth embodiment, this embodiment further discloses the processing method based on any of the previous embodiments of the present application. The processing method in this embodiment further includes step S2:

[0649] Step S2: reporting indicator information.

[0650] Optionally, the indicator information includes at least one of a first indicator, a number of time units, an event index value, an accuracy indication, an index value of a model, an index value of a function, a monitoring decision type, and a beam and / or reference signal index value.

[0651] Optionally, the indicator information is reported on the first uplink channel.

[0652] Optionally, the second condition is satisfied, including at least one of the following:

[0653] The number of time units is greater than or equal to the second threshold;

[0654] Monitoring timer timeout;

[0655] The conditions for the first event are met.

[0656] Optionally, the number of time units is greater than or equal to the second threshold, including at least one of the following:

[0657] A temporal unit is a unit of time in the future or to come;

[0658] The number of time units is the number of time units counted;

[0659] The second threshold is indicated by at least one of RRC, MACCE and DCI, or is a preset value.

[0660] Optionally, the conditions for the first event are satisfied, including at least one of the following:

[0661] The number of times that the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value is less than or equal to a third threshold;

[0662] The number of time units in which the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value is less than or equal to a third threshold;

[0663] The number of times that the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values ​​is less than or equal to a fourth threshold;

[0664] The number of time units in which the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values ​​is less than or equal to a fourth threshold;

[0665] The number of times that the predicted first beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values ​​is less than or equal to a fifth threshold;

[0666] The number of time units in which the predicted last beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values ​​is less than or equal to a fifth threshold;

[0667] The number of times that the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold and / or the number of time units is less than or equal to the sixth threshold;

[0668] The number of times that the average of the differences between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold and / or the number of time units is less than or equal to the seventh threshold;

[0669] The number of times that the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is greater than the first threshold and / or the number of time units is greater than the eighth threshold;

[0670] The number of times that the average of the differences between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is greater than the first threshold and / or the number of time units is greater than the ninth threshold;

[0671] The accuracy of the previous beam and / or reference signal prediction is less than or equal to the tenth threshold.

[0672] Optionally, at least one of the third threshold, fourth threshold, fifth threshold, sixth threshold, seventh threshold, eighth threshold, ninth threshold and tenth threshold is indicated by at least one of RRC, MACCE and DCI, or is a preset value.

[0673] Optionally, the indicator information includes at least one of a first indicator, a number of time units, an index value of a model, an index value of a function, a monitoring decision type, and a beam / reference signal index value.

[0674] Optionally, the first indicator includes at least one of the following:

[0675] The first indicator is the number of times the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value;

[0676] The first indicator is the number of time units in which the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value;

[0677] The first indicator is the number of times the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values;

[0678] The first indicator is the number of time units in which the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values;

[0679] The first indicator is the number of times the predicted last beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values;

[0680] The first indicator is the number of time units for which the predicted last beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values;

[0681] The first indicator is the number of times that the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold;

[0682] The first indicator is the number of time units in which the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold;

[0683] The first indicator is the number of times that the average of the differences between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold;

[0684] The first indicator is the number of time units in which the average value of the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold;

[0685] The first indicator represents the accuracy of the previous beam and / or reference signal prediction.

[0686] Optionally, the number of time units is a number of time units in the future or in the future.

[0687] Optionally, the number of time units is a statistical number of time units.

[0688] Optionally, the monitoring decision type includes at least one of activation, deactivation, and fallback.

[0689] Optionally, the beam / reference signal index value includes at least one of the following:

[0690] The index value of the best beam / reference signal;

[0691] The index value of the predicted last beam and / or reference signal;

[0692] The index value of the beam and / or reference signal corresponding to the maximum signal quality.

[0693] Optionally, the indicator information includes at least one of an event index value, a model index value, a function index value, a monitoring decision type, and a beam / reference signal index value.

[0694] Optionally, the monitoring decision type includes at least one of activation, deactivation, and fallback.

[0695] Optionally, the beam / reference signal index value includes at least one of the following:

[0696] The index value of the best beam / reference signal;

[0697] The index value of the predicted last beam and / or reference signal;

[0698] The index value of the beam and / or reference signal corresponding to the maximum signal quality.

[0699] Optionally, the indicator information includes at least one of an accuracy indication, a model index value, a function index value, a monitoring decision type, and a beam / reference signal index value.

[0700] Optionally, the accuracy indication includes at least one of the following:

[0701] The accuracy indicator is used to indicate the accuracy of the previous beam and / or reference signal prediction;

[0702] The accuracy indicator includes X bits. Each value of the accuracy indicator corresponds to an accuracy range. The accuracy indicator includes at least one of the following optional schemes:

[0703] The accuracy is quantized using a uniform quantization method, i.e., each accuracy range is the same;

[0704] The accuracy is quantized using a non-uniform quantization method, that is, each accuracy range can be different.

[0705] Optionally, the monitoring decision type includes at least one of activation, deactivation, and fallback:

[0706] Optionally, the beam / reference signal index value includes at least one of the following:

[0707] The index value of the best beam / reference signal;

[0708] The index value of the predicted last beam and / or reference signal;

[0709] The index value of the beam and / or reference signal corresponding to the maximum signal quality.

[0710] Optionally, the first uplink channel includes PUCCH or PUSCH.

[0711] Optionally, the terminal device sends a dedicated SR and obtains uplink authorization based on the received DCI, thereby determining PUSCH resources.

[0712] Optionally, the method for obtaining a dedicated SR includes at least one of the following:

[0713] A monitoring scheduling request index value parameter (schedulingRequestID-Monitoring) is added in the radio resource control. A scheduling request index value (SchedulingRequestId) is obtained based on the value of the monitoring scheduling request index value parameter, that is, a dedicated SR;

[0714] A monitoring scheduling request index value parameter (schedulingRequestID-Monitoring) is added to the MAC cell group configuration information element (MAC-CellGroupConfig), and a scheduling request index value (SchedulingRequestId) is obtained based on the value of the monitoring scheduling request index value parameter, that is, a dedicated SR.

[0715] Optionally, the method for transmitting the indicator information on the PUSCH includes at least one of the following:

[0716] Use UCI to carry indicator information and transmit it on PUSCH;

[0717] Use MAC CE to carry indicator information and transmit it on PUSCH;

[0718] The indicator information is carried using RRC and transmitted on the PUSCH.

[0719] Optionally, the reference signal includes CSI-RS and / or SS / PBCH Block.

[0720] Optionally, a method for configuring the first reference signal set and the second reference signal set includes at least one of the following:

[0721] The first reference signal set is different from the second reference signal set;

[0722] The first reference signal set is a subset of the second reference signal set;

[0723] The first reference signal set is the same as the second reference signal set.

[0724] Optionally, the signal quality includes layer 1 reference signal received power and / or layer 1 signal to interference and noise ratio.

[0725] Optionally, the first predicted beam and / or reference signal is the beam and / or reference signal corresponding to the maximum signal quality.

[0726] Optionally, the first beam and / or reference signal measured is the beam and / or reference signal corresponding to the maximum signal quality.

[0727] Optionally, the time unit includes at least one of a timestamp, a measurement instance, a time instance, a transmission opportunity, an opportunity, a frame, a subframe, a time slot, a symbol, a timestamp index, a measurement instance index, a time instance index, a transmission opportunity index, an opportunity index, a frame index, a subframe index, a time slot index, and a symbol index.

[0728] Through the technical solution of this embodiment, specifically by reporting indicator information, and / or reporting indicator information in response to satisfying the second condition, the network device uses the first indicator as a performance indicator to measure the prediction accuracy of the prediction information, thereby providing a method for measuring the prediction accuracy of the prediction information, which can realize the measurement of the model and / or function of generating the prediction information.

[0729] Seventh embodiment

[0730] 9 is a flow chart of a processing method according to a seventh embodiment. The processing method can be applied to a network device (eg, a base station) and includes the following steps:

[0731] s3: Receive a first indicator, where the first indicator is determined by the terminal device based on the first reference signal set and / or the second reference signal set.

[0732] Optionally, the first reference signal set and / or the second reference signal set is used to determine prediction information.

[0733] Optionally, the prediction information includes a predicted reference signal index value and / or signal quality.

[0734] Optionally, the prediction information includes a first number of predicted reference signal index values ​​and / or signal qualities.

[0735] Optionally, the prediction information is determined based on a time unit corresponding to a reference signal of the second reference signal set;

[0736] Optionally, the second reference signal set is used to determine measurement information.

[0737] Optionally, the measurement information includes a measured reference signal index value and / or signal quality.

[0738] Optionally, the measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured.

[0739] Optionally, the measurement information is determined based on a reference signal of a second reference signal set.

[0740] Optionally, the first indicator may be determined based on prediction information and / or measurement information.

[0741] Optionally, the first indicator is the number of times the first condition is met in the first statistical range.

[0742] Optionally, the first indicator is the number of time units that meet the first condition in the first statistical range.

[0743] Optionally, the first indicator represents the accuracy of the previous beam and / or reference signal prediction.

[0744] Optionally, the first statistical range includes at least one of a third number of time units, a fourth number of time units, a fifth number of time units, a sixth number of prediction windows, and a monitoring timer duration.

[0745] Optionally, satisfying the first condition includes at least one of the following:

[0746] The predicted first reference signal index value is the same as the measured first reference signal index value;

[0747] The measured first reference signal index value is one of the predicted first first number of reference signal index values;

[0748] The predicted first reference signal index value is one of the first second number of measured reference signal index values;

[0749] The difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to a first threshold;

[0750] An average of the differences between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to a first threshold.

[0751] Optionally, the first signal quality is a measured signal quality corresponding to a previously predicted reference signal.

[0752] Optionally, the first signal quality is the signal quality of a previously measured reference signal.

[0753] Optionally, the prediction information is in a first statistical range.

[0754] Optionally, the measurement information is determined based on a reference signal of a second reference signal set that is less than the first interval from the prediction information in the time domain.

[0755] Optionally, the measurement information is determined based on a most recent reference signal of the second reference signal set.

[0756] Optionally, the measurement information is determined based on reference signals of a second reference signal set in the first statistical range.

[0757] Optionally, the fifth quantity is the product of the fourth quantity and the sixth quantity.

[0758] Optionally, the method of determining the first indicator in the first statistical range includes at least one of the following:

[0759] Counting the number of times the first condition is satisfied in the first statistical range as a first indicator;

[0760] Counting the number of time units that meet the first condition in the first statistical range as a first indicator;

[0761] Counting the number of times the first condition is satisfied in each time unit in a prediction window in a first statistical range as a first indicator;

[0762] Counting the number of times a first condition is satisfied in a prediction window in a first statistical range as a first indicator;

[0763] Counting the number of times the first condition is met within the duration of the monitoring timer as a first indicator;

[0764] The number of time units that meet the first condition during the duration of the monitoring timer is counted as the first indicator.

[0765] Optionally, the network device receives indicator information reported by the terminal device in response to meeting the second condition.

[0766] Optionally, the indicator information includes at least one of a first indicator, a number of time units, an event index value, an accuracy indication, an index value of a model, an index value of a function, a monitoring decision type, and a beam and / or reference signal index value.

[0767] Optionally, the indicator information is reported on the first uplink channel.

[0768] Optionally, the second condition is satisfied, including at least one of the following:

[0769] The number of time units is greater than or equal to the second threshold;

[0770] Monitoring timer timeout;

[0771] The conditions for the first event are met.

[0772] Optionally, the number of time units is greater than or equal to the second threshold, including at least one of the following:

[0773] A temporal unit is a unit of time in the future or to come;

[0774] The number of time units is the number of time units counted;

[0775] The second threshold is indicated by at least one of RRC, MACCE and DCI, or is a preset value.

[0776] Optionally, the conditions for the first event are satisfied, including at least one of the following:

[0777] The number of times that the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value is less than or equal to a third threshold;

[0778] The number of time units in which the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value is less than or equal to a third threshold;

[0779] The number of times that the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values ​​is less than or equal to a fourth threshold;

[0780] The number of time units in which the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values ​​is less than or equal to a fourth threshold;

[0781] The number of times that the predicted first beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values ​​is less than or equal to a fifth threshold;

[0782] The number of time units in which the predicted last beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values ​​is less than or equal to a fifth threshold;

[0783] The number of times that the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold and / or the number of time units is less than or equal to the sixth threshold;

[0784] The number of times that the average of the differences between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold and / or the number of time units is less than or equal to the seventh threshold;

[0785] The number of times that the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is greater than the first threshold and / or the number of time units is greater than the eighth threshold;

[0786] The number of times that the average of the differences between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is greater than the first threshold and / or the number of time units is greater than the ninth threshold;

[0787] The accuracy of the previous beam and / or reference signal prediction is less than or equal to the tenth threshold.

[0788] Optionally, at least one of the third threshold, fourth threshold, fifth threshold, sixth threshold, seventh threshold, eighth threshold, ninth threshold and tenth threshold is indicated by at least one of RRC, MACCE and DCI, or is a preset value.

[0789] Optionally, the network device performs at least one of activation, deactivation, and rollback on the model and / or function based on the indicator information.

[0790] Optionally, the reference signal includes CSI-RS and / or SS / PBCH Block.

[0791] Optionally, a method for configuring the first reference signal set and the second reference signal set includes at least one of the following:

[0792] The first reference signal set is different from the second reference signal set;

[0793] The first reference signal set is a subset of the second reference signal set;

[0794] The first reference signal set is the same as the second reference signal set.

[0795] Optionally, the signal quality includes layer 1 reference signal received power and / or layer 1 signal to interference and noise ratio.

[0796] Optionally, the first predicted beam and / or reference signal is the beam and / or reference signal corresponding to the maximum signal quality.

[0797] Optionally, the first beam and / or reference signal measured is the beam and / or reference signal corresponding to the maximum signal quality.

[0798] Optionally, the time unit includes at least one of a timestamp, a measurement instance, a time instance, a transmission opportunity, an opportunity, a frame, a subframe, a time slot, a symbol, a timestamp index, a measurement instance index, a time instance index, a transmission opportunity index, an opportunity index, a frame index, a subframe index, a time slot index, and a symbol index.

[0799] Through the technical solution of this embodiment, a first indicator is received specifically by a network device, and the first indicator is determined by a terminal device based on a first reference signal set and / or a second reference signal set, providing a method for measuring the prediction accuracy of prediction information, so that the network device determines whether the model and / or function currently used to generate prediction information is appropriate based on the first indicator, and then performs at least one of activation, deactivation and fallback on the model and / or function, thereby improving the effect of downlink transmission.

[0800] Eighth embodiment

[0801] 10 is a schematic diagram of an interaction sequence according to the eighth embodiment. In this embodiment, a terminal device (e.g., a mobile phone) determines a first indicator based on the first reference signal set and / or the second reference signal set, and reports the first indicator to a network device (e.g., a base station).

[0802] Optionally, the terminal device determines the first indicator based on the first reference signal set and / or the second reference signal set.

[0803] Optionally, the terminal device determines prediction information based on the first reference signal set and / or the second reference signal set, determines measurement information based on the second reference signal set, and determines the first indicator based on the prediction information and / or the measurement information.

[0804] Optionally, the prediction information includes a predicted reference signal index value and / or signal quality.

[0805] Optionally, the prediction information includes a first number of predicted reference signal index values ​​and / or signal qualities.

[0806] Optionally, the measurement information includes a measured reference signal index value and / or signal quality.

[0807] Optionally, the measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured.

[0808] Optionally, the prediction information is determined based on a time unit corresponding to a reference signal of the second reference signal set.

[0809] Optionally, the measurement information is determined based on a reference signal of a second reference signal set.

[0810] Optionally, the first indicator is the number of times the first condition is met in the first statistical range.

[0811] Optionally, the first indicator is the number of time units that meet the first condition in the first statistical range.

[0812] Optionally, the first statistical range includes at least one of a third number of time units, a fourth number of time units, a fifth number of time units, a sixth number of prediction windows, and a monitoring timer duration.

[0813] Optionally, the fifth quantity is the product of the fourth quantity and the sixth quantity.

[0814] Optionally, the first indicator represents the accuracy of the previous beam and / or reference signal prediction.

[0815] Optionally, the signal quality includes layer 1 reference signal received power and / or layer 1 signal to interference and noise ratio.

[0816] Optionally, satisfying the first condition includes at least one of the following:

[0817] The predicted first reference signal index value is the same as the measured first reference signal index value;

[0818] The measured first reference signal index value is one of the predicted first first number of reference signal index values;

[0819] The predicted first reference signal index value is one of the first second number of measured reference signal index values;

[0820] The difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to a first threshold;

[0821] An average of the differences between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to a first threshold.

[0822] Optionally, the first signal quality is a measured signal quality corresponding to a previously predicted reference signal.

[0823] Optionally, the first signal quality is the signal quality of a previously measured reference signal.

[0824] Optionally, the prediction information is in a first statistical range.

[0825] Optionally, the measurement information is determined based on a reference signal of a second reference signal set that is less than the first interval from the prediction information in the time domain.

[0826] Optionally, the measurement information is determined based on a most recent reference signal of the second reference signal set.

[0827] Optionally, the measurement information is determined based on reference signals of a second reference signal set in the first statistical range.

[0828] Optionally, a method of determining the first indicator in the first statistical range includes at least one of the following:

[0829] Counting the number of times the first condition is satisfied in the first statistical range as a first indicator;

[0830] Counting the number of time units that meet the first condition in the first statistical range as a first indicator;

[0831] The number of times the first condition is satisfied in each time unit in a prediction window is counted in the first statistical range as the first indicator:

[0832] Counting the number of times a first condition is satisfied in a prediction window in a first statistical range as a first indicator;

[0833] Counting the number of times the first condition is met within the duration of the monitoring timer as a first indicator;

[0834] The number of time units that meet the first condition during the duration of the monitoring timer is counted as the first indicator.

[0835] Optionally, counting the number of times and / or the number of time units that meet the first condition includes at least one of the following:

[0836] If the predicted last reference signal index value is the same as the measured last reference signal index value, the number of times and / or the number of time units is increased by 1;

[0837] If the measured last reference signal index value is one of the predicted first number of reference signal index values, the number of times and / or the number of time units is increased by 1;

[0838] If the predicted first reference signal index value is one of the first second number of measured reference signal index values, the number of times and / or the number of time units is increased by 1;

[0839] If the difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0840] If the average value of the difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1.

[0841] Optionally, the terminal device reports indicator information.

[0842] Optionally, the terminal device reports indicator information in response to satisfying the second condition.

[0843] Optionally, the network device receives indicator information reported by the terminal device in response to meeting the second condition.

[0844] Optionally, the indicator information includes at least one of a first indicator, a number of time units, an event index value, an accuracy indication, an index value of a model, an index value of a function, a monitoring decision type, and a beam and / or reference signal index value.

[0845] Optionally, the indicator information is reported on the first uplink channel.

[0846] Optionally, the second condition is satisfied, including at least one of the following:

[0847] The number of time units is greater than or equal to the second threshold;

[0848] Monitoring timer timeout;

[0849] The conditions for the first event are met.

[0850] Optionally, the number of time units is greater than or equal to the second threshold, including at least one of the following:

[0851] A temporal unit is a unit of time in the future or to come;

[0852] The number of time units is the number of time units counted;

[0853] The second threshold is indicated by at least one of RRC, MACCE and DCI, or is a preset value.

[0854] Optionally, the conditions for the first event are satisfied, including at least one of the following:

[0855] The number of times that the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value is less than or equal to a third threshold;

[0856] The number of time units in which the predicted last beam and / or reference signal index value is the same as the measured last beam and / or reference signal index value is less than or equal to a third threshold;

[0857] The number of times that the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values ​​is less than or equal to a fourth threshold;

[0858] The number of time units in which the measured last beam and / or reference signal index value is one of the predicted first number of beam and / or reference signal index values ​​is less than or equal to a fourth threshold;

[0859] The number of times that the predicted first beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values ​​is less than or equal to a fifth threshold;

[0860] The number of time units in which the predicted last beam and / or reference signal index value is one of the first second number of measured beam and / or reference signal index values ​​is less than or equal to a fifth threshold;

[0861] The number of times that the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold and / or the number of time units is less than or equal to the sixth threshold;

[0862] The number of times that the average of the differences between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is less than or equal to the first threshold and / or the number of time units is less than or equal to the seventh threshold;

[0863] The number of times that the difference between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is greater than the first threshold and / or the number of time units is greater than the eighth threshold;

[0864] The number of times that the average of the differences between the predicted signal quality of the previous beam and / or reference signal and the first signal quality is greater than the first threshold and / or the number of time units is greater than the ninth threshold;

[0865] The accuracy of the previous beam and / or reference signal prediction is less than or equal to the tenth threshold.

[0866] Optionally, at least one of the third threshold, fourth threshold, fifth threshold, sixth threshold, seventh threshold, eighth threshold, ninth threshold and tenth threshold is indicated by at least one of RRC, MACCE and DCI, or is a preset value.

[0867] Optionally, the terminal device reports indicator information on the first uplink channel.

[0868] Optionally, the network device performs at least one of activation, deactivation, and rollback on the model and / or function based on the indicator information.

[0869] Optionally, the reference signal includes CSI-RS and / or SS / PBCH Block.

[0870] Optionally, a method for configuring the first reference signal set and the second reference signal set includes at least one of the following:

[0871] The first reference signal set is different from the second reference signal set;

[0872] The first reference signal set is a subset of the second reference signal set;

[0873] The first reference signal set is the same as the second reference signal set.

[0874] Optionally, the first predicted beam and / or reference signal is the beam and / or reference signal corresponding to the maximum signal quality.

[0875] Optionally, the first beam and / or reference signal measured is the beam and / or reference signal corresponding to the maximum signal quality.

[0876] Optionally, the time unit includes at least one of a timestamp, a measurement instance, a time instance, a transmission opportunity, an opportunity, a frame, a subframe, a time slot, a symbol, a timestamp index, a measurement instance index, a time instance index, a transmission opportunity index, an opportunity index, a frame index, a subframe index, a time slot index, and a symbol index.

[0877] The technical solution of this embodiment provides a method for measuring the prediction accuracy of prediction information, specifically, the terminal device determines and reports a first indicator based on the first reference signal set and / or the second reference signal set, the network device receives the first indicator, and the network device measures the prediction accuracy of the prediction information according to the first indicator, determines whether the model and / or function currently used to generate the prediction information is appropriate, and then performs at least one of activation, deactivation and fallback on the model and / or function, thereby improving the effect of downlink transmission.

[0878] Ninth embodiment

[0879] Please refer to Figure 11, which is a schematic diagram of the structure of a processing device provided in an embodiment of the present application. The device can be installed in or is the terminal device in the above method embodiment. The processing device shown in Figure 11 can be used to perform some or all of the functions in the method embodiment described in the above embodiment. As shown in Figure 11, the processing device 1100 includes:

[0880] The processing module 1101 is configured to determine a first indicator based on the first reference signal set and / or the second reference signal set.

[0881] Optionally, the first reference signal set and / or the second reference signal set is used to determine prediction information.

[0882] Optionally, the second reference signal set is used to determine measurement information.

[0883] Optionally, the device further comprises at least one of the following:

[0884] The prediction information includes a predicted reference signal index value and / or signal quality;

[0885] The prediction information includes a first number of predicted reference signal index values ​​and / or signal qualities;

[0886] The measurement information includes a measured reference signal index value and / or signal quality;

[0887] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured;

[0888] The predicted information and / or the measured information is used to determine a first indicator;

[0889] The prediction information is determined based on a time unit corresponding to a reference signal of the second reference signal set;

[0890] The measurement information is determined based on a reference signal of a second reference signal set;

[0891] The first indicator is the number of times the first condition is met in the first statistical range;

[0892] The first indicator is the number of time units that meet the first condition in the first statistical range;

[0893] The first indicator represents the accuracy of the previous beam and / or reference signal prediction.

[0894] Optionally, the first statistical range includes at least one of a third number of time units, a fourth number of time units, a fifth number of time units, a sixth number of prediction windows, and a monitoring timer duration.

[0895] Optionally, the signal quality includes layer 1 reference signal received power and / or layer 1 signal to interference and noise ratio.

[0896] Optionally, satisfying the first condition includes at least one of the following:

[0897] The predicted first reference signal index value is the same as the measured first reference signal index value;

[0898] The measured first reference signal index value is one of the predicted first first number of reference signal index values;

[0899] The predicted first reference signal index value is one of the first second number of measured reference signal index values;

[0900] The difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to a first threshold;

[0901] An average of the differences between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to a first threshold.

[0902] Optionally, the device further comprises at least one of the following:

[0903] The first signal quality is the measured signal quality corresponding to the first reference signal predicted;

[0904] The first signal quality is the signal quality of the first reference signal measured;

[0905] The forecast information is in the first statistical range;

[0906] The measurement information is determined based on a reference signal of a second reference signal set that is less than a first interval from the prediction information in a time domain;

[0907] The measurement information is determined based on a most recent reference signal of a second reference signal set;

[0908] The measurement information is determined based on a reference signal of a second reference signal set in a first statistical range;

[0909] The fifth quantity is the product of the fourth quantity and the sixth quantity;

[0910] The method of determining the first indicator in the first statistical range includes at least one of the following:

[0911] Counting the number of times the first condition is satisfied in the first statistical range as a first indicator;

[0912] Counting the number of time units that meet the first condition in the first statistical range as a first indicator;

[0913] Counting the number of times the first condition is satisfied in each time unit in a prediction window in a first statistical range as a first indicator;

[0914] Counting the number of times a first condition is satisfied in a prediction window in a first statistical range as a first indicator;

[0915] Counting the number of times the first condition is met within the duration of the monitoring timer as a first indicator;

[0916] The number of time units that meet the first condition during the duration of the monitoring timer is counted as the first indicator.

[0917] Optionally, counting the number of times and / or the number of time units that meet the first condition includes at least one of the following:

[0918] If the predicted last reference signal index value is the same as the measured last reference signal index value, the number of times and / or the number of time units is increased by 1;

[0919] If the measured last reference signal index value is one of the predicted first number of reference signal index values, the number of times and / or the number of time units is increased by 1;

[0920] If the predicted first reference signal index value is one of the first second number of measured reference signal index values, the number of times and / or the number of time units is increased by 1;

[0921] If the difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0922] If the average value of the difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1.

[0923] Optionally, the device further comprises:

[0924] Report indicator information.

[0925] Optionally, the indicator information includes at least one of a first indicator, a number of time units, an event index value, an accuracy indication, an index value of a model, an index value of a function, a monitoring decision type, and a beam and / or reference signal index value.

[0926] Optionally, the indicator information is reported on the first uplink channel.

[0927] Optionally, the indicator information is reported when the second condition is met.

[0928] Optionally, the second condition is satisfied, including at least one of the following:

[0929] The number of time units is greater than or equal to the second threshold;

[0930] Monitoring timer timeout;

[0931] The conditions for the first event are met.

[0932] Optionally, the reference signal includes CSI-RS and / or SS / PBCH Block.

[0933] Optionally, a method for configuring the first reference signal set and the second reference signal set includes at least one of the following:

[0934] The first reference signal set is different from the second reference signal set;

[0935] The first reference signal set is a subset of the second reference signal set;

[0936] The first reference signal set is the same as the second reference signal set.

[0937] Optionally, the first predicted beam and / or reference signal is the beam and / or reference signal corresponding to the maximum signal quality.

[0938] Optionally, the first beam and / or reference signal measured is the beam and / or reference signal corresponding to the maximum signal quality.

[0939] Optionally, the time unit includes at least one of a timestamp, a measurement instance, a time instance, a transmission opportunity, an opportunity, a frame, a subframe, a time slot, a symbol, a timestamp index, a measurement instance index, a time instance index, a transmission opportunity index, an opportunity index, a frame index, a subframe index, a time slot index, and a symbol index.

[0940] The processing device provided in the embodiment of the present application has similar implementation principles and beneficial effects to the technical solutions shown in the above-mentioned corresponding method embodiments, and will not be described in detail here.

[0941] Tenth embodiment

[0942] Please refer to Figure 12, which is a second structural diagram of a processing device provided in an embodiment of the present application. The device can be installed in or is the network device in the above-mentioned method embodiment. The processing device shown in Figure 12 can be used to perform some or all of the functions in the method embodiment described in the above embodiment. As shown in Figure 12, the control device 1200 includes:

[0943] The receiving module 1201 is configured to receive a first indicator, where the first indicator is determined by a terminal device based on a first reference signal set and / or a second reference signal set.

[0944] Optionally, the first reference signal set and / or the second reference signal set is used to determine prediction information.

[0945] Optionally, the second reference signal set is used to determine measurement information.

[0946] Optionally, the device further comprises at least one of the following:

[0947] The prediction information includes a predicted reference signal index value and / or signal quality;

[0948] The prediction information includes a first number of predicted reference signal index values ​​and / or signal qualities;

[0949] The prediction information is determined based on a time unit corresponding to a reference signal of the second reference signal set;

[0950] The measurement information includes a measured reference signal index value and / or signal quality;

[0951] The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured;

[0952] The measurement information is determined based on a reference signal of a second reference signal set;

[0953] The predicted information and / or the measured information is used to determine a first indicator;

[0954] The first indicator is the number of times the first condition is met in the first statistical range;

[0955] The first indicator is the number of time units that meet the first condition in the first statistical range;

[0956] The first indicator represents the accuracy of the previous beam and / or reference signal prediction.

[0957] Optionally, the device further comprises at least one of the following:

[0958] The first statistical range includes at least one of a third number of time units, a fourth number of time units, a fifth number of time units, a sixth number of prediction windows, and a monitoring timer duration;

[0959] Signal quality includes layer 1 reference signal received power and / or layer 1 signal to interference and noise ratio;

[0960] The first condition includes at least one of the following:

[0961] The predicted first reference signal index value is the same as the measured first reference signal index value;

[0962] The measured first reference signal index value is one of the predicted first first number of reference signal index values;

[0963] The predicted first reference signal index value is one of the first second number of measured reference signal index values;

[0964] The difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to a first threshold;

[0965] An average of the differences between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to a first threshold.

[0966] Optionally, the device further comprises at least one of the following:

[0967] The first signal quality is the measured signal quality corresponding to the first reference signal predicted;

[0968] The first signal quality is the signal quality of the first reference signal measured;

[0969] Predicted information in the first statistical range:

[0970] The measurement information is determined based on a reference signal of a second reference signal set that is less than a first interval from the prediction information in a time domain;

[0971] The measurement information is determined based on a most recent reference signal of a second reference signal set;

[0972] The measurement information is determined based on a reference signal of a second reference signal set in a first statistical range;

[0973] The fifth quantity is the product of the fourth quantity and the sixth quantity;

[0974] The method of determining the first indicator in the first statistical range includes at least one of the following:

[0975] Counting the number of times the first condition is satisfied in the first statistical range as a first indicator;

[0976] Counting the number of time units that meet the first condition in the first statistical range as a first indicator;

[0977] Counting the number of times the first condition is satisfied in each time unit in a prediction window in a first statistical range as a first indicator;

[0978] Counting the number of times a first condition is satisfied in a prediction window in a first statistical range as a first indicator;

[0979] Counting the number of times the first condition is met within the duration of the monitoring timer as a first indicator;

[0980] The number of time units that meet the first condition during the duration of the monitoring timer is counted as the first indicator.

[0981] Optionally, counting the number of times and / or the number of time units that meet the first condition includes at least one of the following:

[0982] If the predicted last reference signal index value is the same as the measured last reference signal index value, the number of times and / or the number of time units is increased by 1;

[0983] If the measured last reference signal index value is one of the predicted first number of reference signal index values, the number of times and / or the number of time units is increased by 1;

[0984] If the predicted first reference signal index value is one of the first second number of measured reference signal index values, the number of times and / or the number of time units is increased by 1;

[0985] If the difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1;

[0986] If the average value of the difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1.

[0987] Optionally, the device further comprises:

[0988] Receive indicator information.

[0989] Optionally, the device further includes: performing at least one of activation, deactivation and rollback on the model and / or function based on the indicator information.

[0990] Optionally, the indicator information includes at least one of a first indicator, a number of time units, an event index value, an accuracy indication, an index value of a model, an index value of a function, a monitoring decision type, and a beam and / or reference signal index value.

[0991] Optionally, the indicator information is reported on the first uplink channel.

[0992] Optionally, the indicator information is reported when the second condition is met.

[0993] Optionally, the second condition is satisfied, including at least one of the following:

[0994] The number of time units is greater than or equal to the second threshold;

[0995] Monitoring timer timeout;

[0996] The conditions for the first event are met.

[0997] Optionally, the reference signal includes CSI-RS and / or SS / PBCH Block.

[0998] Optionally, a method for configuring the first reference signal set and the second reference signal set includes at least one of the following:

[0999] The first reference signal set is different from the second reference signal set;

[1000] The first reference signal set is a subset of the second reference signal set;

[1001] The first reference signal set is the same as the second reference signal set.

[1002] Optionally, the first predicted beam and / or reference signal is the beam and / or reference signal corresponding to the maximum signal quality.

[1003] Optionally, the first beam and / or reference signal measured is the beam and / or reference signal corresponding to the maximum signal quality.

[1004] Optionally, the time unit includes at least one of a timestamp, a measurement instance, a time instance, a transmission opportunity, an opportunity, a frame, a subframe, a time slot, a symbol, a timestamp index, a measurement instance index, a time instance index, a transmission opportunity index, an opportunity index, a frame index, a subframe index, a time slot index, and a symbol index.

[1005] The processing device provided in the embodiment of the present application has similar implementation principles and beneficial effects to the technical solutions shown in the above-mentioned corresponding method embodiments, and will not be described in detail here.

[1006] Refer to Figure 13, which is a schematic diagram of the structure of a communication device provided in an embodiment of the present application. As shown in Figure 13, the communication device 160 described in this embodiment can be the terminal device (or component that can be used for a terminal device) or network device (or component that can be used for a network device) mentioned in the aforementioned method embodiment. The communication device 160 can be used to implement the methods corresponding to the terminal device or network device described in the aforementioned method embodiment. For details, please refer to the description of the aforementioned method embodiment.

[1007] The communication device 160 may include one or more processors 161, also referred to as processing units, which may perform certain control or processing functions. Processor 161 may be a general-purpose processor or a dedicated processor. For example, it may be a baseband processor or a central processing unit. The baseband processor may be used to process communication protocols and communication data, while the central processing unit may be used to control the communication device, execute software programs, and process software program data.

[1008] Optionally, the processor 161 may also store instructions 163 or data (eg, intermediate data). Optionally, the instructions 163 may be executed by the processor 161 to enable the communication device 160 to execute the method corresponding to the terminal device or network device described in the above method embodiment.

[1009] Optionally, the communication device 160 may include a circuit that can implement the functions of sending, receiving, or communicating in the aforementioned method embodiments.

[1010] Optionally, the communication device 160 may include one or more memories 162 , on which instructions 164 may be stored. The instructions may be executed on the processor 161 , so that the communication device 160 performs the method described in the above method embodiment.

[1011] Optionally, data may also be stored in the memory 162. The processor 161 and the memory 162 may be provided separately or integrated together.

[1012] Optionally, the communication device 160 may further include a transceiver 165 and / or an antenna 166. The processor 161 may be referred to as a processing unit, and controls the communication device 160 (terminal device, core network device, or wireless access network device). The transceiver 165 may be referred to as a transceiver unit, transceiver, transceiver circuit, or transceiver, and is used to implement the transceiver functions of the communication device 160.

[1013] Optionally, if the communication device 160 is used to implement operations corresponding to the terminal device in the above-mentioned embodiments, for example, the transceiver 165 can receive the first indication information and / or the time slot offset value; and the processor 161 can determine the first indicator based on the first reference signal set and / or the second reference signal set.

[1014] Optionally, the specific implementation process of the processor 161 and the transceiver 165 can refer to the relevant description of the above embodiments, which will not be repeated here.

[1015] Optionally, if the communication device 160 is used to implement operations corresponding to the network device in the above embodiments, for example: the transceiver 165 can receive a first indicator, which is determined by the terminal device based on the first reference signal set and / or the second reference signal set.

[1016] Optionally, the specific implementation process of the processor 161 and the transceiver 165 can refer to the relevant description of the above embodiments, which will not be repeated here.

[1017] The processor 161 and transceiver 165 described in this application may be implemented on an IC (Integrated Circuit), an analog integrated circuit, an RFIC (Radio Frequency Integrated Circuit), a mixed-signal integrated circuit, an ASIC (Application Specific Integrated Circuit), a PCB (Printed Circuit Board), an electronic device, etc. The processor 161 and transceiver 165 may also be manufactured using various integrated circuit process technologies, such as CMOS (Complementary Metal Oxide Semiconductor), NMOS (N Metal-Oxide-Semiconductor), PMOS (Positive Channel Metal Oxide Semiconductor), BJT (Bipolar Junction Transistor), bipolar CMOS (BiCMOS), silicon germanium (SiGe), gallium arsenide (GaAs), etc.

[1018] In this application, a communication device may be a terminal device (such as a mobile phone) or a network device (such as a base station), and the specific definition needs to be determined based on the context. In addition, the terminal device can be implemented in various forms. For example, the terminal devices described in this application may include mobile terminals such as mobile phones, tablet computers, laptop computers, PDAs, portable media players (PMPs), navigation devices, wearable devices, smart bracelets, pedometers, etc., as well as fixed terminal devices such as digital TVs and desktop computers.

[1019] Although the communication device is described above by taking a terminal device or a network device as an example, the scope of the communication device described in this application is not limited to the above-mentioned terminal device or network device, and the structure of the communication device may not be limited to Figure 13. The communication device may be an independent device or may be part of a larger device.

[1020] An embodiment of the present application further provides a communication system, including: a terminal device as in any of the above embodiments; and a network device as in any of the above embodiments.

[1021] An embodiment of the present application also provides a communication device, including a memory and a processor, wherein a processing program is stored in the memory, and when the processing program is executed by the processor, the steps of the processing method in any of the above embodiments are implemented.

[1022] The communication device in this application can be a terminal device (such as a mobile phone) or a network device (such as a base station). The specific reference needs to be clarified based on the context.

[1023] An embodiment of the present application further provides a computer-readable storage medium, on which a processing program is stored. When the processing program is executed by a processor, the steps of the processing method in any of the above embodiments are implemented.

[1024] In the embodiments of the communication device and computer-readable storage medium provided in the embodiments of the present application, all technical features of any of the above-mentioned control method embodiments may be included. The expanded and explained contents of the specification are basically the same as those of the embodiments of the above-mentioned methods and will not be repeated here.

[1025] An embodiment of the present application further provides a computer program product, which includes computer program code. When the computer program code runs on a computer, the computer executes the methods in the various possible implementation modes described above.

[1026] An embodiment of the present application also provides a chip, including a memory and a processor, wherein the memory is used to store computer programs, and the processor is used to call and run the computer programs from the memory, so that a device equipped with the chip executes the methods in the various possible implementation modes as described above.

[1027] It is understood that the above scenarios are merely examples and do not limit the application scenarios of the technical solutions provided in the embodiments of this application. The technical solutions of this application can also be applied to other scenarios. For example, those skilled in the art will appreciate that with the evolution of system architecture and the emergence of new business scenarios, the technical solutions provided in the embodiments of this application will also be applicable to similar technical problems.

[1028] The serial numbers of the above-mentioned embodiments of the present application are for description only and do not represent the advantages or disadvantages of the embodiments.

[1029] The steps in the method of the embodiment of the present application can be adjusted in order, combined and deleted according to actual needs.

[1030] The units in the device of the embodiment of the present application can be merged, divided and deleted according to actual needs.

[1031] In this application, the same or similar terminology, technical solutions and / or application scenario descriptions are generally only described in detail the first time they appear. When they appear again later, they are generally not repeated for the sake of brevity. When understanding the technical solutions and other contents of this application, for the same or similar terminology, technical solutions and / or application scenario descriptions that are not described in detail later, you can refer to the previous relevant detailed descriptions.

[1032] In this application, the description of each embodiment has its own focus. For parts that are not described or recorded in detail in a certain embodiment, please refer to the relevant description of other embodiments.

[1033] The various technical features of the technical solution of this application can be combined arbitrarily. In order to make the description concise, not all possible combinations of the various technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this application.

[1034] Through the description of the above implementation methods, those skilled in the art can clearly understand that the above-mentioned embodiment methods can be implemented by means of software plus the necessary general hardware platform, and of course can also be implemented by hardware, but in many cases the former is a better implementation method. Based on this understanding, the technical solution of the present application is essentially or the part that contributes to the prior art can be embodied in the form of a software product, which is stored in a storage medium (such as ROM / RAM, magnetic disk, optical disk) as above, and includes a number of instructions for enabling a terminal device (which can be a mobile phone, computer, server, controlled terminal device, or network device, etc.) to execute the method of each embodiment of the present application.

[1035] In the above embodiments, it can be implemented in whole or in part by software, hardware, firmware or any combination thereof. When software is used for implementation, it can be implemented in whole or in part in the form of a computer program product. The computer program product includes one or more computer instructions. When the computer program instructions are loaded and executed on a computer, the process or function according to the embodiment of the present application is generated in whole or in part. The computer can be a general-purpose computer, a special-purpose computer, a computer network, or other programmable device. The computer instructions can be stored in a storage medium or transmitted from one storage medium to another storage medium. For example, the computer instructions can be transmitted from one website, computer, server or data center to another website, computer, server or data center by wired (e.g., coaxial cable, optical fiber, digital subscriber line) or wireless (e.g., infrared, wireless, microwave, etc.) means. The storage medium can be any available medium that a computer can access or a data storage device such as a server or data center that includes one or more available media integrations. The available medium can be a magnetic medium (e.g., a floppy disk, a storage disk, a tape), an optical medium (e.g., a DVD), or a semiconductor medium (e.g., a solid-state storage disk Solid State Disk (SSD)).

[1036] The above are only preferred embodiments of the present application and do not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made using the contents of the present application specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.

Claims

1. A processing method, wherein: Applied to terminal equipment, including the steps of: S1: Determine a first indicator based on a first reference signal set and / or a second reference signal set.

2. The method of claim 1, wherein: Include at least one of the following: The first reference signal set and / or the second reference signal set are used to determine prediction information; The second reference signal set is used to determine measurement information.

3. The method of claim 2, wherein: Also includes at least one of the following: The prediction information includes a predicted reference signal index value and / or a signal quality; The prediction information includes a first number of predicted reference signal index values ​​and / or signal qualities; The measurement information includes a measured reference signal index value and / or a signal quality; The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured; The predicted information and / or the measured information is used to determine a first indicator; The prediction information is determined based on a time unit corresponding to a reference signal of a second reference signal set; The measurement information is determined based on a reference signal of a second reference signal set; The first indicator is the number of times the first condition is met in the first statistical range; The first indicator is the number of time units that meet the first condition in the first statistical range; The first indicator represents the accuracy of the previous beam and / or reference signal prediction.

4. The method of claim 3, wherein: Also includes at least one of the following: The first statistical range includes at least one of a third number of time units, a fourth number of time units, a fifth number of time units, a sixth number of prediction windows, and a monitoring timer duration; Signal quality includes layer 1 reference signal received power and / or layer 1 signal to interference and noise ratio; The first condition includes at least one of the following: The predicted first reference signal index value is the same as the measured first reference signal index value; The measured first reference signal index value is one of the predicted first first number of reference signal index values; The predicted first reference signal index value is one of the first second number of measured reference signal index values; The difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold; The average of the differences between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold.

5. The method of claim 4, wherein: Also includes at least one of the following: The first signal quality is the measured signal quality corresponding to the predicted first reference signal; The first signal quality is the signal quality of the first reference signal measured; The forecast information is in the first statistical range; The measurement information is determined based on a reference signal of a second reference signal set that is less than the first interval with the prediction information in the time domain; The measurement information is determined based on a most recent reference signal of a second reference signal set; The measurement information is determined based on a reference signal of a second reference signal set in a first statistical range; The fifth quantity is the product of the fourth quantity and the sixth quantity; The method of determining the first indicator in the first statistical range includes at least one of the following: Counting the number of times the first condition is satisfied in the first statistical range as a first indicator; Counting the number of time units that meet the first condition in the first statistical range as a first indicator; Counting the number of times that the first condition is satisfied in each time unit in a prediction window in the first statistical range as a first indicator; Counting the number of times a first condition is satisfied in a prediction window in a first statistical range as a first indicator; Counting the number of times the first condition is met within the duration of the monitoring timer as a first indicator; The number of time units satisfying the first condition is counted within the duration of the monitoring timer as the first indicator.

6. The method of claim 5, wherein: Counting the number of times and / or the number of time units that meet the first condition includes at least one of the following: If the predicted last reference signal index value is the same as the measured last reference signal index value, the number of times and / or the number of time units is increased by 1; If the measured last reference signal index value is one of the predicted first number of reference signal index values, the number of times and / or the number of time units is increased by 1; If the predicted first reference signal index value is one of the first second number of reference signal index values ​​measured, the number of times and / or the number of time units is increased by 1; If the difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1; If the average of the differences between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1.

7. The method of claim 1, wherein: Also includes: Report indicator information.

8. The method of claim 7, wherein: Also includes at least one of the following: The indicator information includes at least one of a first indicator, a number of time units, an event index value, an accuracy indication, an index value of a model, an index value of a function, a monitoring decision type, and a beam and / or reference signal index value; The indicator information is reported on the first uplink channel; The indicator information is reported when the second condition is met.

9. The method of claim 8, wherein: The second condition is met, including at least one of the following: The number of time units is greater than or equal to the second threshold; Monitoring timer timeout; The conditions for the first event are met.

10. A processing method, wherein: Applied to network equipment, including the steps of: S3: Receive a first indicator, where the first indicator is determined by the terminal device based on the first reference signal set and / or the second reference signal set.

11. The method of claim 10, wherein: Include at least one of the following: The first reference signal set and / or the second reference signal set are used to determine prediction information; The second reference signal set is used to determine measurement information.

12. The method of claim 11, wherein: Also includes at least one of the following: The prediction information includes a predicted reference signal index value and / or a signal quality; The prediction information includes a first number of predicted reference signal index values ​​and / or signal qualities; The prediction information is determined based on a time unit corresponding to a reference signal of a second reference signal set; The measurement information includes a measured reference signal index value and / or a signal quality; The measurement information includes a first second number of reference signal index values ​​and / or signal qualities measured; The measurement information is determined based on a reference signal of a second reference signal set; The predicted information and / or the measured information is used to determine a first indicator; The first indicator is the number of times the first condition is met in the first statistical range; The first indicator is the number of time units that meet the first condition in the first statistical range; The first indicator represents the accuracy of the previous beam and / or reference signal prediction.

13. The method of claim 12, wherein: Also includes at least one of the following: The first statistical range includes at least one of a third number of time units, a fourth number of time units, a fifth number of time units, a sixth number of prediction windows, and a monitoring timer duration; Signal quality includes layer 1 reference signal received power and / or layer 1 signal to interference and noise ratio; The first condition includes at least one of the following: The predicted first reference signal index value is the same as the measured first reference signal index value; The measured first reference signal index value is one of the predicted first first number of reference signal index values; The predicted first reference signal index value is one of the first second number of measured reference signal index values; The difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold; The average of the differences between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold.

14. The method of claim 13, wherein: Also includes at least one of the following: The first signal quality is the measured signal quality corresponding to the predicted first reference signal; The first signal quality is the signal quality of the first reference signal measured; The forecast information is in the first statistical range; The measurement information is determined based on a reference signal of a second reference signal set that is less than the first interval with the prediction information in the time domain; The measurement information is determined based on a most recent reference signal of a second reference signal set; The measurement information is determined based on a reference signal of a second reference signal set in a first statistical range; The fifth quantity is the product of the fourth quantity and the sixth quantity; The method of determining the first indicator in the first statistical range includes at least one of the following: Counting the number of times the first condition is satisfied in the first statistical range as a first indicator; Counting the number of time units that meet the first condition in the first statistical range as a first indicator; Counting the number of times that the first condition is satisfied in each time unit in a prediction window in the first statistical range as a first indicator; Counting the number of times a first condition is satisfied in a prediction window in a first statistical range as a first indicator; Counting the number of times the first condition is met within the duration of the monitoring timer as a first indicator; The number of time units satisfying the first condition is counted within the duration of the monitoring timer as the first indicator.

15. The method of claim 14, wherein: Counting the number of times and / or the number of time units that meet the first condition includes at least one of the following: If the predicted last reference signal index value is the same as the measured last reference signal index value, the number of times and / or the number of time units is increased by 1; If the measured last reference signal index value is one of the predicted first number of reference signal index values, the number of times and / or the number of time units is increased by 1; If the predicted first reference signal index value is one of the first second number of reference signal index values ​​measured, the number of times and / or the number of time units is increased by 1; If the difference between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1; If the average of the differences between the predicted signal quality of the previous reference signal and the first signal quality is less than or equal to the first threshold, the number of times and / or the number of time units is increased by 1.

16. The method of claim 10, wherein: Also includes: Receive indicator information.

17. The method of claim 16, wherein: Also includes at least one of the following: Perform at least one of activation, deactivation, and rollback on the model and / or function based on the indicator information; The indicator information includes at least one of a first indicator, a number of time units, an event index value, an accuracy indication, an index value of a model, an index value of a function, a monitoring decision type, and a beam and / or reference signal index value; The indicator information is reported on the first uplink channel; The indicator information is reported when the second condition is met.

18. The method of claim 17, wherein: The second condition is met, including at least one of the following: The number of time units is greater than or equal to the second threshold; Monitoring timer timeout; The conditions for the first event are met.

19. A communication device, wherein: include: A memory, a processor, and a processing program stored in the memory and executable on the processor, wherein the processing program implements the steps of the processing method according to claim 1 or 10 when executed by the processor.

20. A storage medium, wherein: The storage medium stores a computer program, and when the computer program is executed by the processor, the steps of the processing method according to claim 1 or 10 are implemented.

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