Measurement method, device, equipment, readable storage medium and computer program product

By obtaining target rules related to AIoT devices, including mobility, location and service cell quality rules, the problem of relaxing measurement in intensive scenarios of AIoT devices is solved, reducing terminal power consumption and improving mobile performance.

CN120456089APending Publication Date: 2025-08-08VIVO MOBILE COMM CO LTD
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Patent Information

Application Number
CN202410175236.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-02-07
Publication Date
2025-08-08

AI Technical Summary

Technical Problem

In the scenario where the deployment of Ambient IoT or AIoT devices with a very intensive environment-enabled environment energy is very intensive, it is difficult for existing technologies to effectively improve the relevant processes of relaxation measurement.

Method used

Relax measurements are performed by obtaining target rules related to AIoT devices, including rules related to terminal mobility, location, and service cell quality.

Benefits of technology

It has achieved the improvement of relaxed measurement in AIoT device scenarios, reducing terminal power consumption and improving mobile performance guarantees.

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Abstract

The invention belongs to the technical field of communication, and particularly relates to a measurement method, device and equipment, a readable storage medium and a computer program product, and the method comprises the steps that a terminal obtains first information; the terminal executes relaxation measurement according to the first information; wherein the first information is used for indicating at least one of the following items: a target rule related to the AIoT equipment; related parameters of the target rule; wherein the target rule comprises a first rule, or the target rule comprises the first rule and a second rule; wherein the first rule is a rule related to the AIoT device; the second rule comprises at least one of the following items: a rule related to the mobility of the terminal; a rule related to the location of the terminal in a serving cell; and a rule related to the quality of the serving cell.
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Description

Technical Field

[0001] The present application belongs to the field of communication technology, and specifically relates to a measurement method, apparatus, device, readable storage medium, and computer program product. Background Art

[0002] In related technologies, the terminal determines whether to perform relaxation measurements based on Radio Resource Management (RRM) measurements. In the future, the deployment of ambient power-enabled Internet of Things (Ambient IoT or AIoT) devices will be very dense. In this scenario, how to combine AIoT devices to improve the related processes of relaxation measurements is an urgent problem to be solved. Summary of the Invention

[0003] The embodiments of the present application provide a measurement method, apparatus, device, readable storage medium, and computer program product, which can solve the problem of how to use AIoT devices to determine the execution of relaxation measurements.

[0004] In a first aspect, a measurement method is provided, comprising:

[0005] The terminal obtains the first information;

[0006] The terminal performs relaxation measurement according to the first information;

[0007] The first information is used to indicate at least one of the following:

[0008] Target rules related to the AIoT device;

[0009] Related parameters of the target rule;

[0010] The target rule includes the first rule, or the target rule includes the first rule and the second rule;

[0011] Wherein, the first rule is a rule related to the AIoT device;

[0012] The second rule includes at least one of the following:

[0013] rules related to the mobility of the terminal;

[0014] rules related to the location of the terminal in the serving cell;

[0015] Rules related to the quality of the serving cell.

[0016] In a second aspect, a measurement method is provided, comprising:

[0017] At least one of the network-side device and the server sends first information to the terminal;

[0018] The first information is used to indicate at least one of the following:

[0019] Target rules related to the AIoT device;

[0020] Related parameters of the target rule;

[0021] The target rule includes the first rule, or the target rule includes the first rule and the second rule;

[0022] Wherein, the first rule is a rule related to the AIoT device;

[0023] The second rule includes at least one of the following:

[0024] rules related to the mobility of the terminal;

[0025] rules related to the location of the terminal in the serving cell;

[0026] Rules related to the quality of the serving cell.

[0027] In a third aspect, a measuring device is provided, comprising:

[0028] A first acquisition module, configured for a terminal to acquire first information;

[0029] an execution module, configured for the terminal to execute relaxation measurement according to the first information;

[0030] The first information is used to indicate at least one of the following:

[0031] Target rules related to the AIoT device;

[0032] Related parameters of the target rule;

[0033] The target rule includes the first rule, or the target rule includes the first rule and the second rule;

[0034] Wherein, the first rule is a rule related to the AIoT device;

[0035] The second rule includes at least one of the following:

[0036] rules related to the mobility of the terminal;

[0037] rules related to the location of the terminal in the serving cell;

[0038] Rules related to the quality of the serving cell.

[0039] In a fourth aspect, a measuring device is provided, comprising:

[0040] A first sending module, configured to send first information to a terminal from at least one of a network-side device and a server;

[0041] The first information is used to indicate at least one of the following:

[0042] Target rules related to the AIoT device;

[0043] Related parameters of the target rule;

[0044] The target rule includes the first rule, or the target rule includes the first rule and the second rule;

[0045] Wherein, the first rule is a rule related to the AIoT device;

[0046] The second rule includes at least one of the following:

[0047] rules related to the mobility of the terminal;

[0048] rules related to the location of the terminal in the serving cell;

[0049] Rules related to the quality of the serving cell.

[0050] In a fifth aspect, a terminal is provided, comprising a processor and a memory, wherein the memory stores a program or instruction that can be run on the processor, and when the program or instruction is executed by the processor, the steps of the method described in the first aspect are implemented.

[0051] In a sixth aspect, a terminal is provided, comprising a processor and a communication interface, wherein:

[0052] The processor is used for the terminal to obtain first information;

[0053] The terminal performs relaxation measurement according to the first information;

[0054] The first information is used to indicate at least one of the following:

[0055] Target rules related to the AIoT device;

[0056] Related parameters of the target rule;

[0057] The target rule includes the first rule, or the target rule includes the first rule and the second rule;

[0058] Wherein, the first rule is a rule related to the AIoT device;

[0059] The second rule includes at least one of the following:

[0060] rules related to the mobility of the terminal;

[0061] rules related to the location of the terminal in the serving cell;

[0062] Rules related to the quality of the serving cell.

[0063] In the seventh aspect, a network side device is provided, which includes a processor and a memory, wherein the memory stores programs or instructions that can be run on the processor, and when the program or instructions are executed by the processor, the steps of the method described in the second aspect are implemented.

[0064] In an eighth aspect, a network side device is provided, including a processor and a communication interface, wherein:

[0065] The processor is configured to send first information to the terminal by at least one of the network-side device and the server;

[0066] The first information is used to indicate at least one of the following:

[0067] Target rules related to the AIoT device;

[0068] Related parameters of the target rule;

[0069] The target rule includes the first rule, or the target rule includes the first rule and the second rule;

[0070] Wherein, the first rule is a rule related to the AIoT device;

[0071] The second rule includes at least one of the following:

[0072] rules related to the mobility of the terminal;

[0073] rules related to the location of the terminal in the serving cell;

[0074] Rules related to the quality of the serving cell.

[0075] In the ninth aspect, a readable storage medium is provided, on which a program or instruction is stored. When the program or instruction is executed by a processor, the steps of the method described in the first aspect are implemented, or the steps of the method described in the second aspect are implemented.

[0076] In the tenth aspect, a wireless communication system is provided, comprising: a terminal and a network side device, wherein the terminal can be used to execute the steps of the method described in the first aspect, and the network side device can be used to execute the steps of the method described in the second aspect.

[0077] In the eleventh aspect, a chip is provided, which includes a processor and a communication interface, wherein the communication interface is coupled to the processor, and the processor is used to run programs or instructions to implement the method as described in the first aspect, or to implement the method as described in the second aspect.

[0078] In the twelfth aspect, a computer program / program product is provided, which is stored in a storage medium and is executed by at least one processor to implement the method as described in the first aspect, or to implement the method as described in the second aspect.

[0079] In an embodiment of the present application, by obtaining rules related to AIoT and performing relaxation measurements according to the rules related to AIoT devices, it is possible to use AIoT devices to determine and perform relaxation measurements, thereby improving the relevant processes of relaxation measurements in scenarios where AIoT devices exist in the network. BRIEF DESCRIPTION OF THE DRAWINGS

[0080] Figure 1a is a block diagram of a wireless communication system to which embodiments of the present application may be applied;

[0081] Figure 1b This is one of the schematic diagrams of AIoT communication application scenarios;

[0082] Figure 1c This is the second schematic diagram of AIoT communication application scenario;

[0083] Figure 1d This is the third diagram of AIoT communication application scenarios;

[0084] Figure 1e This is the fourth diagram of AIoT communication application scenarios;

[0085] Figure 2a This is one of the flow charts of the measurement method provided in the embodiment of the present application;

[0086] Figure 2b This is the second flow chart of the measurement method provided in the embodiment of the present application;

[0087] Figure 3a This is one of the structural diagrams of the measuring device provided in the embodiment of the present application;

[0088] Figure 3b This is the second structural diagram of the measuring device provided in the embodiment of the present application;

[0089] Figure 4 is a structural diagram of a communication device provided in an embodiment of the present application;

[0090] Figure 5 is a schematic diagram of the structure of the terminal provided in an embodiment of the present application;

[0091] Figure 6 This is one of the structural diagrams of the network side device provided in the embodiment of the present application;

[0092] Figure 7 This is the second structural diagram of the network side device provided in the embodiment of the present application. DETAILED DESCRIPTION

[0093] The following will be combined with the accompanying drawings in the embodiments of this application to clearly describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field are within the scope of protection of this application.

[0094] The terms "first", "second", etc. in this application are used to distinguish similar objects, and are not used to describe a specific order or sequence. It should be understood that the terms used in this way are interchangeable where appropriate, so that the embodiments of the present application can be implemented in an order other than those illustrated or described herein, and the objects distinguished by "first" and "second" are generally of the same type, and do not limit the number of objects, for example, the first object can be one or more. In addition, "or" in this application represents at least one of the connected objects. For example, "A or B" covers three options, namely, Option 1: including A but not including B; Option 2: including B but not including A; Option 3: including both A and B. The character " / " generally indicates that the objects associated before and after are in an "or" relationship.

[0095] The term "indication" in this application can be either a direct indication (or explicit indication) or an indirect indication (or implicit indication). A direct indication can be understood as the sender explicitly informing the receiver of specific information, the operation to be performed, or the requested result, etc. in the instruction sent; an indirect indication can be understood as the receiver determining the corresponding information based on the instruction sent by the sender, or making a judgment and determining the operation to be performed or the requested result, etc. based on the judgment result.

[0096] It is worth noting that the technology described in the embodiments of the present application is not limited to the Long Term Evolution (LTE) / LTE-Advanced (LTE-A) system, but can also be used in other wireless communication systems, such as Code Division Multiple Access (CDMA), Time Division Multiple Access (TDMA), Frequency Division Multiple Access (FDMA), Orthogonal Frequency Division Multiple Access (OFDMA), Single-carrier Frequency Division Multiple Access (SC-FDMA) or other systems. The terms "system" and "network" in the embodiments of the present application are often used interchangeably, and the described technology can be used for the systems and radio technologies mentioned above, as well as for other systems and radio technologies. The following description describes a New Radio (NR) system for example purposes, and NR terminology is used in most of the following description, but these technologies can also be applied to systems other than NR systems, such as 6th Generation (6G) communication systems.

[0097] Figure 1aThe block diagram of a wireless communication system applicable to the embodiments of the present application is shown. The wireless communication system includes a terminal 11 and a network-side device 12. The terminal 11 can be a mobile phone, a tablet computer (Tablet Personal Computer), a laptop computer (Laptop Computer), a notebook computer, a personal digital assistant (PDA), a handheld computer, a netbook, an ultra-mobile personal computer (UMPC), a mobile internet device (MID), an augmented reality (AR), a virtual reality (VR) device, a robot, a wearable device (Wearable Device), an aircraft (flight vehicle), a vehicle user equipment (VUE), a ship-borne device, a pedestrian user equipment (PUE), a smart home (home appliances with wireless communication capabilities, such as refrigerators, televisions, washing machines, or furniture, etc.), a game console, a personal computer (PC), a teller machine, or a self-service machine, etc., and other terminal-side devices. Wearable devices include: smart watches, smart bracelets, smart headphones, smart glasses, smart jewelry (smart bracelets, smart bracelets, smart rings, smart necklaces, smart anklets, smart anklets, etc.), smart wristbands, smart clothing, etc. Among them, the vehicle-mounted device can also be called a vehicle-mounted terminal, a vehicle-mounted controller, a vehicle-mounted module, a vehicle-mounted component, a vehicle-mounted chip or a vehicle-mounted unit, etc. It should be noted that the specific type of the terminal 11 is not limited in the embodiment of the present application. The network side device 12 may include an access network device or a core network device, wherein the access network device may also be called a radio access network (Radio Access Network, RAN) device, a radio access network function or a radio access network unit. The access network device may include a base station, a wireless local area network (Wireless Local Area Network, WLAN) access point (Access Point, AS) or a wireless fidelity (Wireless Fidelity, WiFi) node, etc.Among them, the base station can be referred to as Node B (NB), Evolved Node B (eNB), the next generation Node B (gNB), New Radio Node B (NR Node B), access point, Relay Base Station (RBS), Serving Base Station (SBS), Base Transceiver Station (BTS), radio base station, radio transceiver, Basic Service Set (BSS), Extended Service Set (ESS), Home Node B (HNB), Home Evolved Node B (home evolved Node B), Transmission Reception Point (TRP) or other appropriate terms in the relevant field. As long as the same technical effect is achieved, the base station is not limited to specific technical vocabulary. It should be noted that in the embodiment of the present application, only the base station in the NR system is used as an example for introduction, and the specific type of the base station is not limited.

[0098] The core network device may include but is not limited to at least one of the following: core network node, core network function, mobility management entity (MME), access mobility management function (AMF), session management function (SMF), user plane function (UPF), policy control function (PCF), policy and charging rules function unit (PCRF), edge application service discovery function (EASDF), unified data management (UDM), unified data repository (UDR), home user server (HSS), centralized network configuration (CNC), network storage function (NRF), network exposure function (NEF), local NEF (L-NEF), binding support function (Binding Support Function, BSF), network access function (ADF ... Function, BSF), application function (Application Function, AF), etc. It should be noted that in the embodiment of the present application, only the core network device in the NR system is introduced as an example, and the specific type of the core network device is not limited.

[0099] To better understand the technical solution of this application, the following contents are first introduced:

[0100] 1. Ambient IoT

[0101] Ambient IoT is a new 3GPP IoT technology. Ambient IoT terminals have ultra-low complexity and ultra-low power consumption.

[0102] Ambient IoT, also known as the ambient power-enabled Internet of Things (Ambient power-enabled IoT), is an IoT service in which IoT devices are powered by energy harvesting. IoT devices lack batteries or have limited energy storage capabilities (for example, using a capacitor). Energy harvesting can be done from radio waves, light, motion, heat, or other suitable energy sources.

[0103] Low-power IoT devices are IoT devices with low overall power consumption, including low-power signal reception and low-power signal transmission. Due to their low overall power consumption, communication energy can come from the environment, such as wind energy, kinetic energy, thermal energy, and radio frequency (RF) signals. They are also called ambient IoT, passive IoT devices, and transponder devices.

[0104] Ambient IoT terminals can be classified based on energy source, energy storage capability, passive or active emission, etc. There are three types of devices:

[0105] (1) Device Type A: A passive device with no independent signal generation or amplification, i.e., backscatter transmission.

[0106] (2) Device Type B: A semi-passive device, also belonging to the passive device category. It has energy storage but no independent signal generation, i.e., backscatter transmission. The use of stored energy may include amplification of the reflected signal.

[0107] (3) Device Type C: Active device, with energy storage and independent signal generation, that is, active RF components for transmission.

[0108] 2. Ambient IoT Communication Application Scenario

[0109] Figure 1b : The network sends a carrier wave (CW) and signaling and receives the reflected signal from the tag.

[0110] Figure 1c : The terminal sends CW and signaling and receives the tag's reflected signal.

[0111] Figure 1d : The network sends CW and signaling to the tag; the terminal receives the backscatter information sent by the tag.

[0112] Figure 1e : The terminal sends CW and signaling to the tag; the network receives the backscattered information from the tag.

[0113] It should be noted that the types of network side devices, such as base stations, include but are not limited to: base station types include: IAB node (IAB station), repeater (repeater) such as: network controlled repeater, Pole station (pole station).

[0114] 3. A-IoT data / service types

[0115] A-IoT studies the following data / business types:

[0116] DO:Device-originated

[0117] DT:Device-terminated

[0118] DO-A: Device-originated–autonomous

[0119] DO-DTT:Device-originated–device-terminated triggered

[0120] DO and DT data represent data flows originating from A-IoT devices (similar to RFID tags) or transmitted to A-IoT devices. Data flows originating from A-IoT devices, i.e., DO data, can be further categorized as follows:

[0121] (1) DO-A (Device-originated Autonomous), which means the device initiates data transmission autonomously

[0122] For example: connecting a large number of various sensors that collect and, when necessary, actively report information about the environment, equipment, and organisms.

[0123] (2) DO-DTT (Device-originated–device-terminated triggered), where the device initiates data transmission after being triggered by the network

[0124] For example, asset identification, status reporting, and tracking are all DL-triggered reports, where the Reader collects data from the tag by triggering the inventory process. Since the data is generated / initiated in the IoT device, this service should be considered a command sent by the Reader to trigger the tag to initiate a DO service.

[0125] Relaxation measurement of unconnected states

[0126] RRM measurements are used to assist in UE mobility management. The terminal determines whether to initiate neighbor cell measurements based on the measurement results of neighbor cells and / or the measurement results of the serving cell. A higher RRM measurement frequency increases UE power consumption. A higher RRM measurement frequency allows the UE to more quickly detect changes in signal quality and trigger reselection to an appropriate serving cell (i.e., ensuring better mobility performance).

[0127] In some cases, a terminal can assess its mobility state, such as low mobility (e.g., slow speed or stationary). Furthermore, the terminal can assess its relative position within the cell (e.g., whether it is at the cell edge). Generally speaking, the probability of a terminal located in the cell center and / or with low mobility reselecting to a neighboring cell is much lower than the probability of a terminal located at the cell edge and / or with high mobility reselecting to a neighboring cell. For terminals with low reselection probabilities, appropriately relaxing RRM measurements can effectively reduce UE power consumption while minimizing the impact on mobility performance.

[0128] Methods for relaxing RRM measurements include: extending the measurement period, or reducing the number of layer 1 measurement samples, etc. The UE determines whether to perform RRM measurement relaxation based on the judgment criterion for RRM measurement relaxation.

[0129] Two sets of measurement relaxation criteria have been introduced for RRM measurements of non-connected terminals: the "terminal is not at the cell edge" criterion and the "low mobility" criterion. These two criteria are based on the terminal's cell-level measurement results in the serving cell. Based on network configuration, the UE can relax RRM measurements when one or both of these criteria are met.

[0130] The following introduces these two criteria respectively.

[0131] 1. "Terminal is not located at the cell edge" criterion

[0132] According to this criterion, the network will configure an RSRP threshold (S SearchThresholdP ), and you can also configure an RSRQ threshold (S SearchThresholdQ ), when the RSRP of the terminal in the serving cell is greater than S SearchThresholdP , and when the network configures the RSRQ threshold, the RSRQ of the terminal on the serving cell is greater than S SearchThresholdQWhen , the terminal is considered to meet the "terminal is not located at the cell edge" criterion.

[0133] S configured by the network for the “terminal is not located at the cell edge” criterion SearchThresholdP Need to be less than S IntrasearchP and S nonIntrasearchP If the network is configured with the RSRQ threshold for the "terminal is not at the cell edge" criterion, the RSRQ threshold for the "terminal is not at the cell edge" criterion must be less than S IntrasearchQ and S nonIntrasearchQ .

[0134] 2. "Low Mobility" Principle

[0135] For this criterion, the network will configure the evaluation time T of RSRP change SearchDeltaP and RSRP change threshold S SearchDeltaP , when a period of time T SearchDeltaP The RSRP change of the inner terminal in the serving cell is less than S SearchDeltaP , the terminal is considered to meet the "low mobility" criterion.

[0136] After completing cell selection / reselection, the terminal needs to wait for at least a period of time T SearchDeltaP Normal RRM measurements are performed within the

[0137] Relaxation measurement of connected states

[0138] For terminals in RRC Connected, the NW can configure RRM measurement relaxation criteria. The terminal can report the relaxation status and whether the relaxation criteria are met based on the network side configuration. The network can configure the RRM measurement relaxation solution based on the terminal report content.

[0139] The relaxation measurement criteria for the connection state are as follows:

[0140] 1. "Low Mobility" Principle

[0141] -(SS-RSRP Ref –SS-RSRP) SearchDeltaP-Connected ,

[0142] Wherein, SS-RSRP is the current L3 RSRP measurement based on SSB of SpCell; SS-RSRP Ref Reference L3 RSRP measurement based on SSB for SpCell

[0143] 2. “Good Service Community” Criteria

[0144] The criterion for a good RLM serving cell is that the downlink radio link quality of the configured RLM-RS resource is better than Q in +XdB​

[0145] The following describes the measurement method provided in the embodiments of the present application in detail through some embodiments and their application scenarios in conjunction with the accompanying drawings.

[0146] See also Figure 2a , an embodiment of the present application provides a measurement method, the execution subject of the method is a terminal, and the method includes:

[0147] Step 201: The terminal obtains first information;

[0148] Step 202: The terminal performs relaxation measurement according to the first information;

[0149] The first information is used to indicate at least one of the following:

[0150] (1) Target rules related to AIoT devices;

[0151] (2) relevant parameters of the target rule;

[0152] Wherein, the target rule includes the first rule, or the target rule includes the first rule and the second rule;

[0153] Among them, the first rule is the rule related to AIoT devices;

[0154] The second rule includes at least one of the following:

[0155] (1) Rules related to terminal mobility; specifically, these may refer to the “low mobility” criterion mentioned above;

[0156] (2) Rules related to the location of the terminal in the serving cell; specifically, these may refer to the “terminal is not located at the cell edge” criterion mentioned above;

[0157] (3) Rules related to the quality of the serving cell where the terminal is located; specifically, these may refer to the “good serving cell” criteria mentioned above.

[0158] The above-mentioned serving cell serves the terminal.

[0159] It should be noted that the first information may include one or more of the target rules and related parameters of the target rules. In some specific implementations, the target rules can be predefined through the protocol, and then the terminal receives the relevant parameters of the target rules from other devices (for example, from network side devices and servers (specifically, third-party service areas)).

[0160] In an embodiment of the present application, relaxation measurement is performed according to rules related to AIoT devices, thereby realizing relaxation measurement using AIoT devices.

[0161] Optionally, the relaxation measurement may include at least one of same-frequency measurement, different-frequency measurement, and different-system frequency measurement.

[0162] In a possible implementation, when the target rule includes only the first rule, the terminal performs the relaxation measurement according to the target rule, including any one of the following:

[0163] (1) When the first rule is satisfied within the first time, the terminal performs relaxed measurement; that is, the first rule is satisfied within the first time.

[0164] (2) When the first rule is satisfied, the terminal performs relaxation measurement.

[0165] In an embodiment of the present application, when the target rule includes only the first rule, the terminal determines whether to perform the relaxation measurement based on whether the first rule is satisfied or whether the content satisfies the first rule at the first time.

[0166] In a possible implementation, when the target rule includes the first rule and the second rule, the terminal performs the relaxation measurement according to the target rule, including:

[0167] The terminal performs relaxation measurement when at least one of the following conditions is met:

[0168] (1) Satisfy the first rule, or satisfy the first rule within the first time;

[0169] (2) The second rule is satisfied, or the second rule is satisfied within a second time.

[0170] In an embodiment of the present application, when the target rule includes the first rule and the second rule, the terminal can determine whether to perform relaxation measurement based on whether at least one of the first rule and the second rule is satisfied, or whether the rule is satisfied within the time range corresponding to the rule.

[0171] The specific durations of the first time and the second time may be the same or different.

[0172] In a possible implementation, the target rule-related parameter includes at least one of the first time and the second time.

[0173] In an embodiment of the present application, the terminal can obtain the first condition and related parameters of the first condition from at least one of the network side device and the server (specifically, it can be a third-party server), and perform relaxation measurement in the above manner based on the information provided by the network side device and the server (specifically, it can be a third-party server).

[0174] In a possible implementation, the terminal performs relaxation measurement according to the target rule, including:

[0175] When the first condition and the target rule are met, the terminal performs the relaxed measurement according to the target rule;

[0176] The first condition includes at least one of the following:

[0177] (1) The terminal performs non-relaxed measurement for a time period greater than or equal to a fourth time period; the non-relaxed measurement specifically refers to a normal measurement, that is, a measurement defined in the protocol other than the relaxed measurement.

[0178] (2) The cell selection reception level value of the terminal's serving cell is less than or equal to the first threshold, that is, if the serving cell satisfies Srxlev≤S nonIntraSearchP , where Srxlev is the cell selection receiving level value, S nonIntraSearchP is the first threshold;

[0179] (3) The cell selection quality value of the terminal's serving cell is less than or equal to the second threshold, that is, if the serving cell satisfies Squal≤S nonIntraSearchQ , where Squal is the cell selection quality value, S nonIntraSearchQ The second threshold.

[0180] It should be noted that the third condition is a condition that needs to be met on the basis of the specific manner in which the terminal performs relaxed measurement described above, that is, in addition to meeting the criteria related to the target rule, the third condition needs to be met before the terminal performs relaxed measurement.

[0181] In one possible implementation, the first rule includes at least one of the following:

[0182] (1) There is no change in the AIoT device detected by the terminal, or the change in the AIoT device detected by the terminal is less than or equal to a first threshold;

[0183] It should be noted that the change in AIoT devices detected by the terminal may refer to a change in the number of AIoT devices, for example, from detecting 3 AIoT devices to detecting 5 AIoT devices, or the change in AIoT devices detected by the terminal may refer to a change in the detected AIoT devices themselves, for example, from detecting AIoT devices 1, 2, and 3 to detecting AIoT devices 4, 5, and 6; in this way, the change in the detected AIoT devices indirectly reflects the change in the terminal's mobility, or the change in its position in the service cell, so that the terminal can determine whether it is necessary to perform relaxation measurements.

[0184] (2) The AIoT devices detected by the terminal include any target AIoT device;

[0185] (3) The AIoT devices detected by the terminal include some target AIoT devices; where “some” may refer to the proportion of all target AIoT devices, for example, 60%.

[0186] (4) The AIoT devices detected by the terminal include all target AIoT devices (or relevant parameters of the target rule);

[0187] The AIoT devices detected by the terminal include at least some target AIoT devices, which means that the terminal detects a specific AIoT device, and the specific AIoT device is used by the terminal to determine that relaxation measurement needs to be performed.

[0188] (5) The grid information obtained by the terminal through the AIoT device remains unchanged, or the amount of change in the grid information obtained by the terminal through the AIoT device is less than or equal to a second threshold, where the grid information is used to identify the area of the terminal in the serving cell;

[0189] For example, when the terminal moves within a fixed N grid areas, it is considered that the grid change is less than or equal to a threshold, where the second threshold is N.

[0190] (6) The location information determined by the terminal through the AIoT device does not change, or the change in the location information is less than or equal to the third threshold.

[0191] The terminal determines the terminal location based on the AIoT device information. It is understood that the terminal location can be indicated by an AIoT device identifier or a grid, and the third threshold can be indicated by an absolute position or a position relative to a base station.

[0192] For example, the distance between the location determined by the terminal through the AIoT device and the location determined last through the AIoT device is smaller than or equal to the third threshold, and the terminal performs relaxation measurement.

[0193] (7) The terminal measures the received signal strength of the AIoT device to be greater than or equal to a fourth threshold;

[0194] (8) The change in the received signal strength of the AIoT device measured by the terminal is less than or equal to the fifth threshold;

[0195] In one possible implementation, the relevant parameters of the target rule include at least one of the following:

[0196] (1) a first threshold, which is a threshold related to a detected change in the AIoT device;

[0197] (2) identification information of the target AIoT device, wherein the identification information is at least one;

[0198] (3) a second threshold value, which is a threshold value related to a change in the acquired grid information;

[0199] (4) a third threshold value, which is a threshold value related to the location change of the terminal;

[0200] (5) The fourth threshold is a threshold related to the received signal strength of the measured AIoT device.

[0201] (6) A fifth threshold value, which is a threshold value related to the change in the received signal strength of the AIoT device measured.

[0202] In one possible implementation, the target AIOT device identification information includes at least one of the following:

[0203] (1) Identification of AIoT devices;

[0204] (2) Tag identification. It can be understood that AIoT devices can also be called tags;

[0205] (3) Indexing of AIoT devices;

[0206] (4)Tag index.

[0207] In a possible implementation, the terminal obtains the first information, including:

[0208] The terminal obtains the first information from at least one of a network-side device and a server (specifically, a third-party server).

[0209] In one possible implementation, the terminal is a terminal that supports AIoT communication.

[0210] See also Figure 2b , an embodiment of the present application provides a measurement method, the execution subject of the method is at least one of a network-side device and a server, and the method includes:

[0211] Step 211: At least one of the network-side device and the server sends first information to the terminal;

[0212] The first information is used to indicate at least one of the following:

[0213] Target rules related to the AIoT device;

[0214] Related parameters of the target rule;

[0215] The target rule includes the first rule, or the target rule includes the first rule and the second rule;

[0216] Wherein, the first rule is a rule related to the AIoT device;

[0217] The second rule includes at least one of the following:

[0218] rules related to the mobility of the terminal;

[0219] rules related to the location of the terminal in the serving cell;

[0220] Rules related to the quality of the serving cell.

[0221] The embodiments of the present application correspond to a scenario in which at least one of a network-side device and a server provides first information to a terminal. As the opposite-side device interacting with the terminal, the corresponding content adopts the same understanding. For details, please refer to the relevant description on the terminal side, which will not be repeated here.

[0222] In a possible implementation, the first rule includes at least one of the following:

[0223] There is no change in the AIoT device detected by the terminal, or the change in the AIoT device detected by the terminal is less than or equal to a first threshold;

[0224] The AIoT devices detected by the terminal include any target AIoT device;

[0225] The AIoT devices detected by the terminal include some target AIoT devices;

[0226] The AIoT devices detected by the terminal include all target AIoT devices;

[0227] The grid information obtained by the terminal through the AIoT device remains unchanged, or a change in the grid information obtained by the terminal through the AIoT device is less than or equal to a second threshold, where the grid information is used to identify an area of the terminal in a serving cell;

[0228] The location information determined by the terminal through the AIoT device does not change, or the change in the location information is less than or equal to a third threshold;

[0229] The terminal measures that the received signal strength of the AIoT device is greater than or equal to a fourth threshold;

[0230] The terminal measures a change in the received signal strength of the AIoT device that is less than or equal to a fifth threshold.

[0231] In one possible implementation, the relevant parameters of the target rule include at least one of the following:

[0232] The first threshold value is a threshold value related to a detected change in an AIoT device;

[0233] Identification information of the target AIoT device, where the identification information is at least one;

[0234] The second threshold value is a threshold value related to a change in the acquired grid information;

[0235] The third threshold is a threshold related to the location change of the terminal;

[0236] The fourth threshold is a threshold related to the measured received signal strength of the AIoT device;

[0237] The fifth threshold is a threshold value related to the measured change in the received signal strength of the AIoT device.

[0238] In one possible implementation, the identification information of the target AIOT device includes at least one of the following:

[0239] Identification of AIoT devices;

[0240] The tag identifier,

[0241] Index of AIoT devices;

[0242] The index of the tag.

[0243] The measurement method provided in the embodiment of the present application can be performed by a measuring device. In the embodiment of the present application, the measurement method performed by the measuring device is taken as an example to illustrate the measurement device provided in the embodiment of the present application.

[0244] See also Figure 3a , an embodiment of the present application provides a measuring device, which can be applied to a terminal, and the device includes:

[0245] A first acquisition module 301 is used for a terminal to acquire first information;

[0246] An execution module 302 is configured for the terminal to perform relaxation measurement according to the first information;

[0247] The first information is used to indicate at least one of the following:

[0248] Target rules related to the AIoT device;

[0249] Related parameters of the target rule;

[0250] The target rule includes the first rule, or the target rule includes the first rule and the second rule;

[0251] Wherein, the first rule is a rule related to the AIoT device;

[0252] The second rule includes at least one of the following:

[0253] rules related to the mobility of the terminal;

[0254] rules related to the location of the terminal in the serving cell;

[0255] Rules related to the quality of the serving cell.

[0256] Optionally, when the target rule includes only the first rule, the execution module is configured to perform any one of the following:

[0257] When the first rule is satisfied within a first time, the terminal performs the relaxation measurement;

[0258] When the first rule is satisfied, the terminal performs the relaxation measurement.

[0259] Optionally, when the target rule includes the first rule and the second rule, the execution module is configured to:

[0260] The terminal performs the relaxation measurement when at least one of the following conditions is met:

[0261] Satisfy the first rule, or satisfy the first rule within the first time;

[0262] The second rule is satisfied, or the second rule is satisfied within a second time.

[0263] Optionally, the target rule-related parameter includes at least one of the first time and the second time.

[0264] Optionally, the execution module is used to:

[0265] When the first condition and the target rule are met, the terminal performs a relaxation measurement;

[0266] The first condition includes at least one of the following:

[0267] The terminal performs non-relaxed measurement for a time that is greater than or equal to a fourth time;

[0268] The cell selection reception level value of the serving cell of the terminal is less than or equal to the first threshold;

[0269] The cell selection quality value of the serving cell of the terminal is less than or equal to a second threshold.

[0270] Optionally, the first rule includes at least one of the following:

[0271] There is no change in the AIoT device detected by the terminal, or the change in the AIoT device detected by the terminal is less than or equal to a first threshold;

[0272] The AIoT devices detected by the terminal include any target AIoT device;

[0273] The AIoT devices detected by the terminal include some target AIoT devices;

[0274] The AIoT devices detected by the terminal include all target AIoT devices;

[0275] The grid information obtained by the terminal through the AIoT device remains unchanged, or a change in the grid information obtained by the terminal through the AIoT device is less than or equal to a second threshold, where the grid information is used to identify an area of the terminal in a serving cell;

[0276] The location information determined by the terminal through the AIoT device does not change, or the change in the location information is less than or equal to a third threshold.

[0277] Optionally, the relevant parameters of the target rule include at least one of the following:

[0278] The first threshold value is a threshold value related to a detected change in an AIoT device;

[0279] Identification information of the target AIoT device, where the identification information is at least one;

[0280] The second threshold value is a threshold value related to a change in the acquired grid information;

[0281] The third threshold is a threshold related to the location change of the terminal.

[0282] Optionally, the first acquisition module is configured to:

[0283] The terminal obtains the first information from at least one of a network-side device and a server.

[0284] Optionally, the terminal is a terminal that supports AIoT communication.

[0285] See also Figure 3b The embodiment of the present application provides a measurement device, which can be applied to at least one of a network-side device and a server, and includes:

[0286] A first sending module 311 is configured to send first information to a terminal from at least one of a network-side device and a server;

[0287] The first information is used to indicate at least one of the following:

[0288] Target rules related to the AIoT device;

[0289] Related parameters of the target rule;

[0290] The target rule includes the first rule, or the target rule includes the first rule and the second rule;

[0291] Wherein, the first rule is a rule related to the AIoT device;

[0292] The second rule includes at least one of the following:

[0293] rules related to the mobility of the terminal;

[0294] rules related to the location of the terminal in the serving cell;

[0295] Rules related to the quality of the serving cell.

[0296] Optionally, the first rule includes at least one of the following:

[0297] There is no change in the AIoT device detected by the terminal, or the change in the AIoT device detected by the terminal is less than or equal to a first threshold;

[0298] The AIoT devices detected by the terminal include any target AIoT device;

[0299] The AIoT devices detected by the terminal include some target AIoT devices;

[0300] The AIoT devices detected by the terminal include all target AIoT devices;

[0301] The grid information obtained by the terminal through the AIoT device remains unchanged, or a change in the grid information obtained by the terminal through the AIoT device is less than or equal to a second threshold, where the grid information is used to identify an area of the terminal in a serving cell;

[0302] The location information determined by the terminal through the AIoT device does not change, or the change in the location information is less than or equal to a third threshold.

[0303] Optionally, the relevant parameters of the target rule include at least one of the following:

[0304] The first threshold value is a threshold value related to a detected change in an AIoT device;

[0305] Identification information of the target AIoT device, where the identification information is at least one;

[0306] The second threshold value is a threshold value related to a change in the acquired grid information;

[0307] The third threshold is a threshold related to the location change of the terminal.

[0308] Optionally, the identification information of the target AIOT device includes at least one of the following:

[0309] Identification of AIoT devices;

[0310] The tag identifier,

[0311] Index of AIoT devices;

[0312] The index of the tag.

[0313] The measuring device in the embodiment of the present application can be an electronic device, such as an electronic device with an operating system, or a component in the electronic device, such as an integrated circuit or a chip. The electronic device can be a terminal, or it can be other devices other than a terminal. For example, the terminal can include but is not limited to the types of terminal 11 listed above, and other devices can be servers, network attached storage (NAS), etc., which are not specifically limited in the embodiment of the present application.

[0314] The measuring device provided in the embodiment of the present application can achieve Figure 2a to Figure 2b The various processes implemented by the method embodiment achieve the same technical effect and are not described here again to avoid repetition.

[0315] like Figure 4 As shown, an embodiment of the present application further provides a communication device 400, including a processor 401 and a memory 402, wherein the memory 402 stores a program or instruction that can be run on the processor 401. For example, when the communication device 400 is a terminal, the program or instruction, when executed by the processor 401, implements the various steps of the above-mentioned method embodiment and can achieve the same technical effect. When the communication device 400 is a network-side device, the program or instruction, when executed by the processor 401, implements the various steps of the above-mentioned method embodiment and can achieve the same technical effect. To avoid repetition, it will not be repeated here.

[0316] The embodiment of the present application also provides a terminal, including a processor and a communication interface, wherein the communication interface is coupled to the processor, and the processor is used to run a program or instruction to implement the following Figure 2a The steps in the method embodiment shown. This terminal embodiment corresponds to the above-mentioned terminal side method embodiment, and each implementation process and implementation method of the above-mentioned method embodiment can be applied to this terminal embodiment and can achieve the same technical effect. Specifically, Figure 5 A schematic diagram of the hardware structure of a terminal for implementing an embodiment of the present application.

[0317] The terminal 500 includes but is not limited to: a radio frequency unit 501, a network module 502, an audio output unit 503, an input unit 504, a sensor 505, a display unit 506, a user input unit 507, an interface unit 508, a memory 509 and at least some of the components of the processor 510.

[0318] Those skilled in the art will understand that the terminal 500 may also include a power supply (such as a battery) to power each component. The power supply can be logically connected to the processor 510 through a power management system, thereby realizing functions such as managing charging, discharging, and power consumption management through the power management system. Figure 5 The terminal structure shown in the figure does not constitute a limitation on the terminal. The terminal may include more or fewer components than shown in the figure, or combine certain components, or arrange the components differently, which will not be repeated here.

[0319] It should be understood that in an embodiment of the present application, the input unit 504 may include a graphics processing unit (GPU) 5041 and a microphone 5042, and the graphics processor 5041 processes the image data of a static picture or video obtained by an image capture device (such as a camera) in a video capture mode or an image capture mode. The display unit 506 may include a display panel 5061, and the display panel 5061 may be configured in the form of a liquid crystal display, an organic light emitting diode, etc. The user input unit 507 includes a touch panel 5071 and at least one of other input devices 5072. The touch panel 5071 is also called a touch screen. The touch panel 5071 may include two parts: a touch detection device and a touch controller. Other input devices 5072 may include, but are not limited to, a physical keyboard, function keys (such as volume control keys, switch keys, etc.), a trackball, a mouse, and a joystick, which will not be repeated here.

[0320] In the embodiment of the present application, after receiving downlink data from a network-side device, the radio frequency unit 501 may transmit the data to the processor 510 for processing. Furthermore, the radio frequency unit 501 may send uplink data to the network-side device. Typically, the radio frequency unit 501 includes, but is not limited to, an antenna, an amplifier, a transceiver, a coupler, a low-noise amplifier, a duplexer, and the like.

[0321] The memory 509 can be used to store software programs or instructions and various data. The memory 509 may mainly include a first storage area for storing programs or instructions and a second storage area for storing data, wherein the first storage area may store an operating system, applications or instructions required for at least one function (such as a sound playback function, an image playback function, etc.). In addition, the memory 509 may include a volatile memory or a non-volatile memory. Among them, the non-volatile memory may be a read-only memory (ROM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), an electrically erasable programmable read-only memory (EEPROM), or a flash memory. The volatile memory may be a random access memory (RAM), a static random access memory (SRAM), a dynamic random access memory (DRAM), a synchronous dynamic random access memory (SDRAM), a double data rate synchronous dynamic random access memory (DDRSDRAM), an enhanced synchronous dynamic random access memory (ESDRAM), a synchronous link dynamic random access memory (SLDRAM), and a direct memory bus random access memory (DRRAM). The memory 509 in the embodiment of the present application includes but is not limited to these and any other suitable types of memory.

[0322] Processor 510 may include one or more processing units. Optionally, processor 510 integrates an application processor and a modem processor. The application processor primarily handles operations related to the operating system, user interface, and application programs, while the modem processor primarily processes wireless communication signals, such as a baseband processor. It is understood that the modem processor may not be integrated into processor 510.

[0323] in,

[0324] Processor 510, configured for the terminal to obtain first information;

[0325] The processor 510 is configured to cause the terminal to perform relaxation measurement according to the first information;

[0326] The first information is used to indicate at least one of the following:

[0327] Target rules related to the AIoT device;

[0328] Related parameters of the target rule;

[0329] The target rule includes the first rule, or the target rule includes the first rule and the second rule;

[0330] Wherein, the first rule is a rule related to the AIoT device;

[0331] The second rule includes at least one of the following:

[0332] rules related to the mobility of the terminal;

[0333] rules related to the location of the terminal in the serving cell;

[0334] Rules related to the quality of the serving cell.

[0335] Optionally, when the target rule includes only the first rule, the processor 510 is configured to perform any one of the following:

[0336] When the first rule is satisfied within a first time, the terminal performs the relaxation measurement;

[0337] When the first rule is satisfied, the terminal performs the relaxation measurement.

[0338] Optionally, when the target rule includes the first rule and the second rule, the processor 510 is configured to:

[0339] The terminal performs the relaxation measurement when at least one of the following conditions is met:

[0340] Satisfy the first rule, or satisfy the first rule within the first time;

[0341] The second rule is satisfied, or the second rule is satisfied within a second time.

[0342] Optionally, the target rule-related parameter includes at least one of the first time and the second time.

[0343] Optionally, the processor 510 is configured to:

[0344] When the first condition and the target rule are met, the terminal performs a relaxation measurement;

[0345] The first condition includes at least one of the following:

[0346] The terminal performs non-relaxed measurement for a time that is greater than or equal to a fourth time;

[0347] The cell selection reception level value of the serving cell of the terminal is less than or equal to the first threshold;

[0348] The cell selection quality value of the serving cell of the terminal is less than or equal to a second threshold.

[0349] Optionally, the first rule includes at least one of the following:

[0350] There is no change in the AIoT device detected by the terminal, or the change in the AIoT device detected by the terminal is less than or equal to a first threshold;

[0351] The AIoT devices detected by the terminal include any target AIoT device;

[0352] The AIoT devices detected by the terminal include some target AIoT devices;

[0353] The AIoT devices detected by the terminal include all target AIoT devices;

[0354] The grid information obtained by the terminal through the AIoT device remains unchanged, or a change in the grid information obtained by the terminal through the AIoT device is less than or equal to a second threshold, where the grid information is used to identify an area of the terminal in a serving cell;

[0355] The location information determined by the terminal through the AIoT device does not change, or the change in the location information is less than or equal to a third threshold;

[0356] The terminal measures that the received signal strength of the AIoT device is greater than or equal to a fourth threshold;

[0357] The terminal measures a change in the received signal strength of the AIoT device that is less than or equal to a fifth threshold.

[0358] Optionally, the relevant parameters of the target rule include at least one of the following:

[0359] The first threshold value is a threshold value related to a detected change in an AIoT device;

[0360] Identification information of the target AIoT device, where the identification information is at least one;

[0361] The second threshold value is a threshold value related to a change in the acquired grid information;

[0362] The third threshold is a threshold related to the location change of the terminal;

[0363] a fourth threshold value, the fourth threshold value being a threshold value related to the measured received signal strength of the AIoT device;

[0364] A fifth threshold value, wherein the fifth threshold value is a threshold value related to the measured change in the received signal strength of the AIoT device.

[0365] Optionally, the processor 510 is configured to:

[0366] The terminal obtains the first information from at least one of a network-side device and a server.

[0367] Optionally, the terminal is a terminal that supports AIoT communication.

[0368] The embodiment of the present application further provides a network side device, including a processor and a communication interface, wherein the communication interface is coupled to the processor, and the processor is used to run a program or instruction to implement the following Figure 2b The network side device embodiment corresponds to the above network side device method embodiment, and each implementation process and implementation method of the above method embodiment are applicable to the network side device embodiment and can achieve the same technical effect.

[0369] Specifically, the embodiment of the present application also provides a network side device. Figure 6 As shown, the network-side device 600 includes an antenna 61, a radio frequency device 62, a baseband device 63, a processor 64, and a memory 65. Antenna 61 is connected to radio frequency device 62. In the uplink direction, radio frequency device 62 receives information via antenna 61 and sends the received information to baseband device 63 for processing. In the downlink direction, baseband device 63 processes the information to be transmitted and sends it to radio frequency device 62. Radio frequency device 62 processes the received information and then sends it through antenna 61.

[0370] The method executed by the network-side device in the above embodiment may be implemented in the baseband device 63 , which includes a baseband processor.

[0371] The baseband device 63 may include, for example, at least one baseband board on which a plurality of chips are arranged, such as Figure 6 As shown, one of the chips is, for example, a baseband processor, which is connected to the memory 65 via a bus interface to call the program in the memory 65 to execute the network device operations shown in the above method embodiment.

[0372] The network side device may further include a network interface 66, which is, for example, a Common Public Radio Interface (CPRI).

[0373] Specifically, the network side device 600 of the embodiment of the present invention further includes: instructions or programs stored in the memory 65 and executable on the processor 64, and the processor 64 calls the instructions or programs in the memory 65 to execute Figure 3b The methods executed by the modules shown achieve the same technical effects, so they will not be described here to avoid repetition.

[0374] Specifically, the embodiment of the present application also provides a network side device. Figure 7 As shown, the network side device 700 includes: a processor 701, a network interface 702 and a memory 703. The network interface 702 is, for example, a common public radio interface (CPRI).

[0375] Specifically, the network side device 700 of the embodiment of the present invention further includes: instructions or programs stored in the memory 703 and executable on the processor 701, and the processor 701 calls the instructions or programs in the memory 703 to execute. Figure 3b The methods executed by the modules shown achieve the same technical effects, so they will not be described here to avoid repetition.

[0376] An embodiment of the present application also provides a readable storage medium, on which a program or instruction is stored. When the program or instruction is executed by a processor, the various processes of the above-mentioned measurement method embodiment are implemented and the same technical effect can be achieved. To avoid repetition, it will not be repeated here.

[0377] The processor is the processor in the terminal described in the above embodiment. The readable storage medium includes a computer-readable storage medium, such as a computer read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk. In some examples, the readable storage medium may be a non-transitory readable storage medium.

[0378] An embodiment of the present application further provides a chip, which includes a processor and a communication interface, wherein the communication interface is coupled to the processor, and the processor is used to run programs or instructions to implement the various processes of the above-mentioned measurement method embodiment and achieve the same technical effect. To avoid repetition, it will not be repeated here.

[0379] It should be understood that the chip mentioned in the embodiments of the present application can also be called a system-level chip, a system chip, a chip system or a system-on-chip chip, etc.

[0380] An embodiment of the present application further provides a computer program / program product, which is stored in a storage medium. The computer program / program product is executed by at least one processor to implement the various processes of the above-mentioned measurement method embodiment and can achieve the same technical effect. To avoid repetition, it will not be repeated here.

[0381] An embodiment of the present application further provides a wireless communication system, including: a terminal and a network-side device, wherein the terminal can be used to execute the steps of the terminal-side method described above.

[0382] It should be noted that, in this article, the terms "comprise", "include" or any other variants 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. In addition, it should be pointed out that the scope of the methods and devices in the embodiments of the present application is not limited to performing functions in the order shown or discussed, and may also include performing functions in a substantially simultaneous manner or in the opposite order according to the functions involved. For example, the described method may be performed in an order different from that described, and various steps may also be added, omitted or combined. In addition, the features described with reference to certain examples may be combined in other examples.

[0383] Through the description of the above embodiments, those skilled in the art can clearly understand that the above-mentioned embodiment methods can be implemented by means of a computer software product plus a necessary general-purpose hardware platform, or of course, by hardware. The computer software product is stored in a storage medium (such as ROM, RAM, magnetic disk, optical disk, etc.) and includes a number of instructions for enabling a terminal or network-side device to execute the methods described in each embodiment of the present application.

[0384] The embodiments of the present application are described above in conjunction with the accompanying drawings, but the present application is not limited to the above-mentioned specific implementation methods. The above-mentioned specific implementation methods are merely illustrative and not restrictive. Under the guidance of this application, ordinary technicians in this field can also make many forms of implementation methods without departing from the purpose of this application and the scope of protection of the claims. These implementation methods are all within the protection of this application.

Claims

1. A measurement method, characterized in that: include: The terminal obtains the first information; The terminal performs relaxation measurement according to the first information; The first information is used to indicate at least one of the following: Target rules related to AIoT devices; Related parameters of the target rule; The target rule includes the first rule, or the target rule includes the first rule and the second rule; Wherein, the first rule is a rule related to the AIoT device; The second rule includes at least one of the following: rules related to the mobility of the terminal; rules related to the location of the terminal in the serving cell; Rules related to the quality of the serving cell.

2. The method according to claim 1, characterized in that When the target rule includes only the first rule, the terminal performs the relaxation measurement according to the target rule, including any one of the following: When the first rule is satisfied within a first time, the terminal performs the relaxation measurement; When the first rule is satisfied, the terminal performs the relaxation measurement.

3. The method according to claim 1, characterized in that In a case where the target rule includes the first rule and the second rule, the terminal performs relaxation measurement according to the target rule, including: The terminal performs the relaxation measurement when at least one of the following conditions is met: Satisfy the first rule, or satisfy the first rule within the first time; The second rule is satisfied, or the second rule is satisfied within a second time.

4. The method according to claim 3, characterized in that The target rule-related parameter includes at least one of the first time and the second time.

5. The method according to claim 2 or 3, characterized in that The terminal performs relaxation measurement according to the target rule, including: When the first condition and the target rule are met, the terminal performs a relaxation measurement; The first condition includes at least one of the following: The terminal performs non-relaxed measurement for a time that is greater than or equal to a fourth time; The cell selection reception level value of the serving cell of the terminal is less than or equal to the first threshold; The cell selection quality value of the serving cell of the terminal is less than or equal to a second threshold.

6. The method according to any one of claims 1 to 5, characterized in that The first rule includes at least one of the following: There is no change in the AIoT device detected by the terminal, or the change in the AIoT device detected by the terminal is less than or equal to a first threshold; The AIoT devices detected by the terminal include any target AIoT device; The AIoT devices detected by the terminal include some target AIoT devices; The AIoT devices detected by the terminal include all target AIoT devices; The grid information obtained by the terminal through the AIoT device remains unchanged, or a change in the grid information obtained by the terminal through the AIoT device is less than or equal to a second threshold, where the grid information is used to identify an area of the terminal in a serving cell; The location information determined by the terminal through the AIoT device does not change, or the change in the location information is less than or equal to a third threshold; The terminal measures that the received signal strength of the AIoT device is greater than or equal to a fourth threshold; The terminal measures a change in the received signal strength of the AIoT device that is less than or equal to a fifth threshold.

7. The method according to any one of claims 1 to 6, characterized in that The relevant parameters of the target rule include at least one of the following: A first threshold value, wherein the first threshold value is a threshold value related to a detected change in an AIoT device; Identification information of the target AIoT device, where the identification information is at least one; a second threshold value, wherein the second threshold value is a threshold value related to a change in the acquired grid information; a third threshold value, the third threshold value being a threshold value related to a location change of the terminal; a fourth threshold value, the fourth threshold value being a threshold value related to the measured received signal strength of the AIoT device; A fifth threshold value, wherein the fifth threshold value is a threshold value related to the measured change in the received signal strength of the AIoT device.

8. The method according to claim 7, characterized in that The identification information of the target AIOT device includes at least one of the following: Identification of AIoT devices; The tag identifier, Index of AIoT devices; The index of the tag.

9. The method according to claim 1, characterized in that The terminal obtains first information, including: The terminal obtains the first information from at least one of a network-side device and a server.

10. The method according to claim 1, characterized in that The terminal is a terminal that supports AIoT communication.

11. A measurement method, characterized in that: include: At least one of the network-side device and the server sends first information to the terminal; The first information is used to indicate at least one of the following: Target rules related to AIoT devices; Related parameters of the target rule; The target rule includes the first rule, or the target rule includes the first rule and the second rule; Wherein, the first rule is a rule related to the AIoT device; The second rule includes at least one of the following: rules related to the mobility of the terminal; rules related to the location of the terminal in the serving cell; Rules related to the quality of the serving cell.

12. The method according to claim 11, characterized in that The first rule includes at least one of the following: There is no change in the AIoT device detected by the terminal, or the change in the AIoT device detected by the terminal is less than or equal to a first threshold; The AIoT devices detected by the terminal include any target AIoT device; The AIoT devices detected by the terminal include some target AIoT devices; The AIoT devices detected by the terminal include all target AIoT devices; The grid information obtained by the terminal through the AIoT device remains unchanged, or a change in the grid information obtained by the terminal through the AIoT device is less than or equal to a second threshold, where the grid information is used to identify an area of the terminal in a serving cell; The location information determined by the terminal through the AIoT device does not change, or the change in the location information is less than or equal to a third threshold; The terminal measures that the received signal strength of the AIoT device is greater than or equal to a fourth threshold; The terminal measures a change in the received signal strength of the AIoT device that is less than or equal to a fifth threshold.

13. The method according to claim 11 or 12, characterized in that The relevant parameters of the target rule include at least one of the following: A first threshold value, wherein the first threshold value is a threshold value related to a detected change in an AIoT device; Identification information of the target AIoT device, where the identification information is at least one; a second threshold value, wherein the second threshold value is a threshold value related to a change in the acquired grid information; a third threshold value, the third threshold value being a threshold value related to a location change of the terminal; a fourth threshold value, the fourth threshold value being a threshold value related to the measured received signal strength of the AIoT device; A fifth threshold value, wherein the fifth threshold value is a threshold value related to the measured change in the received signal strength of the AIoT device.

14. The method according to claim 13, characterized in that The identification information of the target AIOT device includes at least one of the following: Identification of AIoT devices; The tag identifier, Index of AIoT devices; The index of the tag.

15. A measuring device, characterized in that: include: A first acquisition module, configured for a terminal to acquire first information; an execution module, configured for the terminal to execute relaxation measurement according to the first information; The first information is used to indicate at least one of the following: Target rules related to AIoT devices; Related parameters of the target rule; The target rule includes the first rule, or the target rule includes the first rule and the second rule; Wherein, the first rule is a rule related to the AIoT device; The second rule includes at least one of the following: rules related to the mobility of the terminal; rules related to the location of the terminal in the serving cell; Rules related to the quality of the serving cell.

16. The device according to claim 15, characterized in that When the target rule includes only the first rule, the execution module is configured to perform any of the following: When the first rule is satisfied within a first time, the terminal performs the relaxation measurement; When the first rule is satisfied, the terminal performs the relaxation measurement.

17. The device according to claim 15, characterized in that In a case where the target rule includes the first rule and the second rule, the execution module is configured to: The terminal performs the relaxation measurement when at least one of the following conditions is met: Satisfy the first rule, or satisfy the first rule within the first time; The second rule is satisfied, or the second rule is satisfied within a second time.

18. The device according to claim 17, characterized in that The target rule-related parameter includes at least one of the first time and the second time.

19. The device according to claim 16 or 17, characterized in that The execution module is used to: When the first condition and the target rule are met, the terminal performs a relaxation measurement; The first condition includes at least one of the following: The terminal performs non-relaxed measurement for a time that is greater than or equal to a fourth time; The cell selection reception level value of the serving cell of the terminal is less than or equal to the first threshold; The cell selection quality value of the serving cell of the terminal is less than or equal to a second threshold.

20. The device according to any one of claims 15 to 19, characterized in that The first rule includes at least one of the following: There is no change in the AIoT device detected by the terminal, or the change in the AIoT device detected by the terminal is less than or equal to a first threshold; The AIoT devices detected by the terminal include any target AIoT device; The AIoT devices detected by the terminal include some target AIoT devices; The AIoT devices detected by the terminal include all target AIoT devices; The grid information obtained by the terminal through the AIoT device remains unchanged, or a change in the grid information obtained by the terminal through the AIoT device is less than or equal to a second threshold, where the grid information is used to identify an area of the terminal in a serving cell; The location information determined by the terminal through the AIoT device does not change, or the change in the location information is less than or equal to a third threshold; The terminal measures that the received signal strength of the AIoT device is greater than or equal to a fourth threshold; The terminal measures a change in the received signal strength of the AIoT device that is less than or equal to a fifth threshold.

21. The device according to any one of claims 15 to 20, characterized in that The relevant parameters of the target rule include at least one of the following: A first threshold value, wherein the first threshold value is a threshold value related to a detected change in an AIoT device; Identification information of the target AIoT device, where the identification information is at least one; a second threshold value, wherein the second threshold value is a threshold value related to a change in the acquired grid information; a third threshold value, the third threshold value being a threshold value related to a location change of the terminal; a fourth threshold value, the fourth threshold value being a threshold value related to the measured received signal strength of the AIoT device; A fifth threshold value, wherein the fifth threshold value is a threshold value related to the measured change in the received signal strength of the AIoT device.

22. The device according to claim 15, characterized in that The first acquisition module is configured to: The terminal obtains the first information from at least one of a network-side device and a server.

23. The device according to claim 15, characterized in that The terminal is a terminal that supports AIoT communication.

24. A measuring device, characterized in that include: A first sending module, configured to send first information to a terminal from at least one of a network-side device and a server; The first information is used to indicate at least one of the following: Target rules related to AIoT devices; Related parameters of the target rule; The target rule includes the first rule, or the target rule includes the first rule and the second rule; Wherein, the first rule is a rule related to the AIoT device; The second rule includes at least one of the following: rules related to the mobility of the terminal; rules related to the location of the terminal in the serving cell; Rules related to the quality of the serving cell.

25. The device according to claim 24, characterized in that The first rule includes at least one of the following: There is no change in the AIoT device detected by the terminal, or the change in the AIoT device detected by the terminal is less than or equal to a first threshold; The AIoT devices detected by the terminal include any target AIoT device; The AIoT devices detected by the terminal include some target AIoT devices; The AIoT devices detected by the terminal include all target AIoT devices; The grid information obtained by the terminal through the AIoT device remains unchanged, or a change in the grid information obtained by the terminal through the AIoT device is less than or equal to a second threshold, where the grid information is used to identify an area of the terminal in a serving cell; The location information determined by the terminal through the AIoT device does not change, or the change in the location information is less than or equal to a third threshold; The terminal measures that the received signal strength of the AIoT device is greater than or equal to a fourth threshold; The terminal measures a change in the received signal strength of the AIoT device that is less than or equal to a fifth threshold.

26. The device according to claim 24 or 25, characterized in that The relevant parameters of the target rule include at least one of the following: A first threshold value, wherein the first threshold value is a threshold value related to a detected change in an AIoT device; Identification information of the target AIoT device, where the identification information is at least one; a second threshold value, wherein the second threshold value is a threshold value related to a change in the acquired grid information; a third threshold value, the third threshold value being a threshold value related to a location change of the terminal; a fourth threshold value, the fourth threshold value being a threshold value related to the measured received signal strength of the AIoT device; A fifth threshold value, wherein the fifth threshold value is a threshold value related to the measured change in the received signal strength of the AIoT device.

27. The device according to claim 26, characterized in that The identification information of the target AIOT device includes at least one of the following: Identification of AIoT devices; The tag identifier, Index of AIoT devices; The index of the tag.

28. A terminal, characterized in that: The method comprises a processor and a memory, wherein the memory stores a program or instruction that can be run on the processor, and when the program or instruction is executed by the processor, the steps of the measurement method according to any one of claims 1 to 10 are implemented.

29. A network side device, characterized in that: The method comprises a processor and a memory, wherein the memory stores a program or instruction that can be run on the processor, and when the program or instruction is executed by the processor, the steps of the measurement method according to any one of claims 11 to 14 are implemented.

30. A readable storage medium, characterized in that The readable storage medium stores a program or instruction, and when the program or instruction is executed by the processor, the steps of the measurement method according to any one of claims 1 to 10 are implemented, or the steps of the measurement method according to any one of claims 11 to 14 are implemented.

31. A computer program product, characterized in that The method comprises computer instructions, which, when executed by a processor, implement the steps of the measurement method according to any one of claims 1 to 10, or implement the steps of the measurement method according to any one of claims 11 to 14.