Measurement methods and devices

By obtaining RLM and RRM measurements and determining relaxation events based on baseline information, the problem of how to detect whether the terminal device meets the relaxation criteria in R17 is solved, and the endurance of the terminal device is improved.

CN116830674BActive Publication Date: 2025-09-09BEIJING XIAOMI MOBILE SOFTWARE CO LTD
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Patent Information

Application Number
CN202280000055.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-01-17
Publication Date
2025-09-09
Estimated Expiration
2042-01-17

AI Technical Summary

Technical Problem

In R17, how to effectively detect whether the terminal device meets the relaxation criteria so as to trigger the relaxation mechanism to reduce power consumption and improve battery life.

Method used

Acquire RLM and/or RRM measurements through terminal devices and determine entry or exit relaxation events based on the benchmark information of the target measurement, thereby improving the accuracy and reliability of event determination.

Benefits of technology

It achieves accurate reporting of relaxation events when the terminal device triggers a relaxation event, thereby improving the battery life of the terminal device.

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Abstract

The present disclosure provides a measurement method and apparatus that can be applied in mobile communication technology. The method includes: a terminal device obtaining a measurement value of a target measurement, wherein the target measurement includes an RLM measurement and / or an RRM measurement; and determining a target event triggered by the terminal device based on the measurement value and benchmark information corresponding to the target measurement, wherein the target event includes an entry-relax event or an exit-relax event. Thus, it is possible to effectively determine whether the terminal device has triggered an entry-relax event based on the measurement value of the target measurement and the benchmark information corresponding to the target measurement. When the terminal device triggers the entry-relax event, the entry-relax event can be reported to a network device to implement a relaxation mechanism and improve the battery life of the terminal device.
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Description

Technical Field

[0001] The present disclosure relates to the field of communication technology, and in particular to a measurement method and device. Background Art

[0002] Release 17 introduced a relaxation mechanism, allowing devices that meet the relaxation criteria to be relaxed. For example, the interval between periodic downlink reference signal measurements can be lengthened to reduce power consumption and improve battery life. Therefore, it is crucial to detect events triggered by devices to determine whether relaxation is feasible. Summary of the Invention

[0003] An embodiment of the first aspect of the present disclosure provides a measurement method, which is executed by a terminal device, and the method includes: obtaining a measurement value of a target measurement, wherein the target measurement includes a radio link monitoring RLM measurement and / or a radio resource management RRM measurement; and determining a target event triggered by the terminal device based on the measurement value and the benchmark information corresponding to the target measurement, wherein the target event includes entering a relaxation event or exiting a relaxation event.

[0004] In this technical solution, the measurement value of the target measurement is obtained by the terminal device, wherein the target measurement includes RLM measurement and / or RRM measurement; based on the measurement value and the benchmark information corresponding to the target measurement, the target event triggered by the terminal device is determined, wherein the target event includes: entering a relaxation event or exiting a relaxation event. Thus, it is possible to effectively determine whether the terminal device triggers an entry relaxation event based on the measurement value of the target measurement and the benchmark information corresponding to the target measurement, so that when the terminal device triggers an entry relaxation event, the entry relaxation event can be reported to the network device to perform a relaxation mechanism and improve the endurance of the terminal device. In addition, using the benchmark information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device triggers an entry relaxation event or an exit relaxation event can improve the accuracy and reliability of the event determination result.

[0005] An embodiment of the second aspect of the present disclosure provides another measurement method, which is executed by a network device, including: receiving a target event and / or a measurement value sent by a terminal device, wherein the measurement value is a measurement value of a target measurement, and the target measurement includes a radio link monitoring RLM measurement and / or a radio resource management RRM measurement; the target event is determined based on the measurement value and the benchmark information corresponding to the target measurement, and the target event includes: entering a relaxation event or exiting a relaxation event.

[0006] A third aspect of the present disclosure provides a measuring device that implements some or all of the functions of the terminal device described in the method described in the first aspect. For example, the measuring device may have the functions of some or all of the embodiments of the present disclosure, or may have the functions of implementing any one of the embodiments of the present disclosure separately. The functions may be implemented by hardware or by executing corresponding software implementations through hardware. The hardware or software includes one or more units or modules corresponding to the above functions.

[0007] A fourth aspect of the present disclosure provides another measuring device, which has the function of implementing some or all of the network devices in the method described in the second aspect above. For example, the function of the measuring device may have the functions of some or all of the embodiments of the present disclosure, or may have the function of implementing any one of the embodiments of the present disclosure separately. The functions may be implemented by hardware, or may be implemented by hardware executing corresponding software. The hardware or software includes one or more units or modules corresponding to the above functions.

[0008] A fifth aspect of the present disclosure provides another measuring device, which includes a processor. When the processor calls a computer program in a memory, the device executes the method described in the first aspect or the method described in the second aspect.

[0009] In a sixth aspect, an embodiment of the present disclosure provides another measuring device, which includes a processor and a memory, wherein the memory stores a computer program. When the computer program is executed by the processor, the method described in the first aspect above is executed, or the method described in the second aspect above is executed.

[0010] The seventh aspect of the present disclosure provides another measuring device, which includes a processor and an interface circuit. The interface circuit is used to receive code instructions and transmit them to the processor. The processor is used to run the code instructions to enable the device to execute the method described in the first aspect above, or to execute the method described in the second aspect above.

[0011] An eighth aspect embodiment of the present disclosure provides a communication system, which includes the measuring device described in the third aspect, or the system includes the measuring device described in the fourth aspect, or the system includes the measuring device described in the fifth aspect, or the system includes the measuring device described in the sixth aspect, or the system includes the measuring device described in the seventh aspect.

[0012] A ninth aspect of the present disclosure provides a computer-readable storage medium for storing instructions for the terminal device, which, when executed, causes the terminal device to execute the method described in the first aspect, or for storing instructions for the network device, which, when executed, causes the network device to execute the method described in the second aspect.

[0013] The tenth aspect of the present disclosure provides a computer program product comprising a computer program, which, when executed on a computer, enables the computer to execute the method described in the first aspect, or enables the computer to execute the method described in the second aspect.

[0014] The embodiment of the eleventh aspect of the present disclosure provides a chip system, which includes at least one processor and an interface, and is used to support the terminal device to implement the functions involved in the first aspect, or to support the network device to implement the functions involved in the second aspect, for example, to determine or process at least one of the data and information involved in the above method. In one possible design, the chip system also includes a memory, which is used to store computer programs and data necessary for the terminal device and the network device. The chip system can be composed of chips, or it can include chips and other discrete devices.

[0015] A twelfth aspect of the present disclosure provides a computer program, which, when executed on a computer, enables the computer to execute the method described in the first aspect, or enables the computer to execute the method described in the second aspect. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure or the background technology, the drawings required for use in the embodiments of the present disclosure or the background technology will be described below.

[0017] Figure 1 is a schematic diagram of the architecture of a communication system provided by an embodiment of the present disclosure;

[0018] Figure 2 is a flow chart of a measurement method provided by an embodiment of the present disclosure;

[0019] Figure 3 is a flow chart of another measurement method provided by an embodiment of the present disclosure;

[0020] Figure 4 is a flow chart of another measurement method provided by an embodiment of the present disclosure;

[0021] Figure 5 is a flow chart of another measurement method provided by an embodiment of the present disclosure;

[0022] Figure 6 is a flow chart of another measurement method provided by an embodiment of the present disclosure;

[0023] Figure 7 is a flow chart of another measurement method provided by an embodiment of the present disclosure;

[0024] Figure 8 is a flow chart of another measurement method provided by an embodiment of the present disclosure;

[0025] Figure 9 is a flow chart of another measurement method provided by an embodiment of the present disclosure;

[0026] Figure 10 is a flow chart of another measurement method provided by an embodiment of the present disclosure;

[0027] Figure 11 is a flow chart of another measurement method provided by an embodiment of the present disclosure;

[0028] Figure 12 is a flow chart of another measurement method provided by an embodiment of the present disclosure;

[0029] Figure 13 is a flow chart of another measurement method provided by an embodiment of the present disclosure;

[0030] Figure 14 is a flow chart of another measurement method provided by an embodiment of the present disclosure;

[0031] Figure 15 is a flow chart of another measurement method provided by an embodiment of the present disclosure;

[0032] Figure 16 is a flow chart of another measurement method provided by an embodiment of the present disclosure;

[0033] Figure 17 is a flow chart of another measurement method provided by an embodiment of the present disclosure;

[0034] Figure 18 is a structural schematic diagram of a measuring device provided by an embodiment of the present disclosure;

[0035] Figure 19 is a structural schematic diagram of another measuring device provided by an embodiment of the present disclosure;

[0036] Figure 20 It is a schematic structural diagram of a chip provided by an embodiment of the present disclosure. DETAILED DESCRIPTION

[0037] In order to better understand a measurement method disclosed in an embodiment of the present disclosure, a communication system to which the embodiment of the present disclosure is applicable is first described below.

[0038] In order to make the objectives, technical solutions and advantages of the present disclosure more clear, the embodiments of the present disclosure will be further described in detail below with reference to the accompanying drawings.

[0039] Exemplary embodiments will be described in detail herein, with examples illustrated in the accompanying drawings. In the following description, unless otherwise indicated, like numbers in different figures represent like or similar elements. The embodiments described in the following exemplary embodiments are not intended to represent all possible embodiments consistent with the present disclosure. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the present disclosure, as detailed in the appended claims.

[0040] See Figure 1 , Figure 1 This is a schematic diagram of the architecture of a communication system provided by an embodiment of the present disclosure. The communication system may include but is not limited to a network device and a terminal device. Figure 1 The number and form of devices shown are for example only and do not constitute a limitation on the embodiments of the present disclosure. In actual applications, two or more network devices and two or more terminal devices may be included. Figure 1 The communication system shown only includes one network device 101 and one terminal device 102 as an example.

[0041] It should be noted that the technical solutions of the embodiments of the present disclosure can be applied to various communication systems, such as long-term evolution (LTE) systems, fifth-generation (5G) mobile communication systems, 5G new radio (NR) systems, or other future new mobile communication systems.

[0042] The network device 101 in the embodiment of the present disclosure is an entity on the network side for transmitting or receiving signals. For example, the network device 101 can be an evolved NodeB (eNB), a transmission reception point (TRP), a next generation NodeB (gNB) in an NR system, a base station in other future mobile communication systems, or an access node in a wireless fidelity (WiFi) system. The embodiment of the present disclosure does not limit the specific technology and specific device form adopted by the network device. The network device provided in the embodiment of the present disclosure can be composed of a centralized unit (CU) and a distributed unit (DU), wherein the CU can also be called a control unit (control unit). The CU-DU structure can be used to split the protocol layer of the network device, such as the base station, and the functions of some protocol layers are placed in the CU for centralized control, and the functions of the remaining part or all of the protocol layers are distributed in the DU, and the DU is centrally controlled by the CU.

[0043] The terminal device 102 in the embodiment of the present disclosure is an entity on the user side for receiving or transmitting signals, such as a mobile phone. The terminal device can also be called a terminal device (terminal), user equipment (UE), mobile station (MS), mobile terminal device (MT), etc. The terminal device can be a car with communication function, a smart car, a mobile phone, a wearable device, a tablet computer (Pad), a computer with wireless transceiver function, a virtual reality (VR) terminal device, an augmented reality (AR) terminal device, a wireless terminal device in industrial control (industrial control), a wireless terminal device in self-driving (self-driving), a wireless terminal device in remote medical surgery, a wireless terminal device in smart grid (smart grid), a wireless terminal device in transportation safety (transportation safety), a wireless terminal device in smart city (smart city), a wireless terminal device in smart home (smart home), etc. The embodiment of the present disclosure does not limit the specific technology and specific device form adopted by the terminal device.

[0044] In the above-mentioned communication system, for terminal devices that meet the relaxation criteria, such as terminal devices that are in a stationary state (or a low-mobility state) and / or have a good channel state, the terminal device can perform RLM (radio link monitor), BFD (beam failure detection), and RRM (radio resource management) relaxation mechanisms. For example, a terminal device that meets the relaxation criteria can lengthen the measurement interval of the periodic measurement of the downlink reference signal, etc., to reduce the power consumption of the terminal device and improve the endurance of the terminal device. Therefore, it is very important to detect events triggered by the terminal device to determine whether the terminal device can perform the relaxation mechanism.

[0045] Among them, 1. RLM relaxation mechanism:

[0046] The RLM principle is:

[0047] A terminal device in the RRC (radio resource control) RRC_CONNECTED state can monitor the downlink radio link quality and determine whether the terminal device and the serving cell are in a downlink synchronization state (IS) or an out-of-sync state (OOS) by measuring the downlink RLM-RS (reference signal) (such as SSB (synchronization signal and PBCH (physical broadcast channel) block)-RS and / or CSI (channel-state information)-RS) of the serving cell (for example, measuring the SpCell (special Cell) inside the active BWP (bandwidth part)). The specific approach is:

[0048] The terminal device periodically measures each RLM-RS and compares the measured value (SINR (signal to interference plus noise ratio, or signal to noise ratio) value) with the synchronization threshold (Q in ) and the out-of-step threshold (Q out ) to determine the IS status / OOS status of the terminal device, and the physical layer reports the determined IS status / OOS status to the upper layer.

[0049] Specifically, the out-of-sync evaluation period T Evaluate_out Internal evaluation: whether the measured value is lower than the out-of-step threshold Q out If all measured values ​​are lower than Q out , then L1 (physical layer) reports OOS indication to the upper layer; in the synchronous in-sync evaluation period T Evaluate_in Internal evaluation: whether the measured value is above the synchronization threshold Q in , if any measured value is higher than Q in , then L1 reports the IS instruction to the upper layer.

[0050] The upper layer decides the next action based on the reported OOS / IS indications. For example, if the OOS counter records N310 consecutive OOS indications reported by the physical layer, the terminal device starts the RLF (radio link failure) timer T310 configured by the network device. If the IS counter records N311 consecutive IS indications reported by the physical layer, T310 is stopped. If T310 expires, the terminal device reports an RLF to the network device.

[0051] Release 17 introduces a relaxation mechanism for RLM. This relaxation mechanism applies to terminal devices that meet the relaxation criteria, such as those in a stationary state and / or with good channel conditions. For example, the measurement interval for each RLM-RS periodically measured by the terminal device can be lengthened.

[0052] 2. RRM relaxation mechanism:

[0053] Release 17 introduces a relaxation mechanism for RRM, which allows connected devices that meet the stationary criteria to undergo RRM relaxation. For example, the measurement interval of the terminal device's periodic measurements can be lengthened.

[0054] To address the above problems, the present disclosure provides a measurement method and device.

[0055] It can be understood that the communication system described in the embodiment of the present disclosure is for the purpose of more clearly illustrating the technical solution of the embodiment of the present disclosure, and does not constitute a limitation on the technical solution provided by the embodiment of the present disclosure. Ordinary technicians in this field can know that with the evolution of the system architecture and the emergence of new business scenarios, the technical solution provided by the embodiment of the present disclosure is also applicable to similar technical problems.

[0056] The measurement method and device provided by the present disclosure are described in detail below with reference to the accompanying drawings.

[0057] See Figure 2 , Figure 2This is a flow chart of a measurement method provided by an embodiment of the present disclosure. Figure 1 The terminal device in the communication system shown is executed.

[0058] like Figure 2 As shown, the measurement method may include but is not limited to the following steps:

[0059] Step 201: Acquire a measurement value of a target measurement, wherein the target measurement includes an RLM measurement and / or an RRM measurement.

[0060] In the embodiment of the present disclosure, the terminal device may perform target measurement to obtain a measurement value of the target measurement, wherein the target measurement may include RLM measurement and / or RRM measurement.

[0061] Optionally, when the target measurement is RLM measurement, the measurement value may be the SINR value of the downlink RLM-RS; when the target measurement is RRM measurement, the measurement value may be the signal strength of the serving cell reference signal, such as RSRP (Reference Signal Receiving Power).

[0062] Step 202: Determine a target event triggered by the terminal device according to the measurement value and the reference information corresponding to the target measurement, wherein the target event includes an entry relaxation event or an exit relaxation event.

[0063] In an embodiment of the present disclosure, the terminal device may determine a target event triggered by itself based on the measurement value and the benchmark information corresponding to the target measurement, wherein the target event includes an entry relaxation event or an exit relaxation event.

[0064] It should be understood that when the target measurement is different, the corresponding benchmark information may be different. Using the benchmark information corresponding to the target measurement and the measurement value of the target measurement to determine the target event triggered by the terminal device can improve the accuracy and reliability of the target event determination result.

[0065] The measurement method of the embodiment of the present disclosure obtains the measurement value of the target measurement, wherein the target measurement includes RLM measurement and / or RRM measurement; determines the target event state triggered by the terminal device according to the measurement value and the benchmark information corresponding to the target measurement, wherein the target event includes: entering a relaxation event or exiting a relaxation event. As a result, the terminal device can effectively determine whether the terminal device triggers an entry relaxation event based on the measurement value of the target measurement and the benchmark information corresponding to the target measurement, so that when the terminal device triggers the entry relaxation event, the entry relaxation event can be reported to the network device to perform a relaxation mechanism and improve the endurance of the terminal device. In addition, the use of the benchmark information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device triggers an entry relaxation event or an exit relaxation event can improve the accuracy and reliability of the event determination result.

[0066] See Figure 3 , Figure 3 This is a flow chart of another measurement method provided by an embodiment of the present disclosure. Figure 1 The terminal device in the communication system shown in the figure performs the measurement method. The measurement method can be performed alone, or in combination with any embodiment of the present disclosure or a possible implementation manner in the embodiment, or in combination with any technical solution in the related art.

[0067] like Figure 3 As shown, the measurement method may include but is not limited to the following steps:

[0068] Step 301: perform target measurement on the downlink reference signal of the serving cell of the terminal device to obtain a measurement value, wherein the target measurement is RLM measurement and / or RRM measurement.

[0069] In the embodiment of the present disclosure, the downlink reference signal may include a downlink reference signal of a primary serving cell and / or a downlink reference signal of at least one secondary serving cell.

[0070] In an embodiment of the present disclosure, when the target measurement is RLM measurement, the downlink reference signal may be an RLM-RS, such as an SSB-RS and / or a CSI-RS. The downlink RLM-RS of the serving cell of the terminal device may be measured, and the measured value may be an SINR.

[0071] In the embodiment of the present disclosure, when the target measurement is RRM measurement, the downlink reference signal may be SSB-RS and / or CSI-RS. The downlink reference signal of the serving cell of the terminal device may be measured, and the measured value may be RSRP.

[0072] Step 302: Determine a target event triggered by the terminal device based on the measurement value and the reference information sent by the network device, wherein the target event includes: an entry relaxation event or an exit relaxation event.

[0073] In the embodiment of the present disclosure, the reference information may be sent by the network device. For example, the network device may configure the reference information through an RRC message.

[0074] In the embodiment of the present disclosure, the terminal device may determine the target event triggered by the terminal device based on the measurement value and the reference information sent by the network device. The target event may include an entry relaxation event or an exit relaxation event.

[0075] In any embodiment of the present disclosure, the reference information sent by the network device may be applicable to a primary serving cell and / or a secondary serving cell.

[0076] As an example, the network device may send a set of benchmark information to the terminal device. This unique set of benchmark information may be applicable to all service cells connected to the terminal device, that is, the set of benchmark information is shared by all service cells connected to the terminal device.

[0077] As another example, the network device may send multiple sets of benchmark information to the terminal device, and different benchmark information is applicable to different service cells. For example, the network device may configure benchmark information for the MCG (Master Cell Group) and SCG (Secondary Cell Group) to which the terminal device is connected, for example, the MN (Master Node) and the SN (Secondary Node) respectively send benchmark information to the terminal device, wherein the benchmark information configured by the network device for the MCG is applicable to the primary service cell (primary cell, PCell), that is, when the terminal device measures the reference signal of the primary service cell, it can determine the target event triggered by the terminal device based on the benchmark information configured by the network device for the MCG. Similarly, the benchmark information configured by the network device for the SCG is applicable to the secondary service cell (secondary cell, Scell), such as the primary SCG cell (PScell), that is, when the terminal device measures the reference signal of the secondary service cell, it can determine the target event triggered by the terminal device based on the benchmark information configured by the network device for the SCG.

[0078] The measurement method of the embodiment of the present disclosure obtains the measurement value of the target measurement, wherein the target measurement includes RLM measurement and / or RRM measurement; determines the target event state triggered by the terminal device according to the measurement value and the benchmark information corresponding to the target measurement, wherein the target event includes: entering a relaxation event or exiting a relaxation event. As a result, the terminal device can effectively determine whether the terminal device triggers an entry relaxation event based on the measurement value of the target measurement and the benchmark information corresponding to the target measurement, so that when the terminal device triggers the entry relaxation event, the entry relaxation event can be reported to the network device to perform a relaxation mechanism and improve the endurance of the terminal device. In addition, the use of the benchmark information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device triggers an entry relaxation event or an exit relaxation event can improve the accuracy and reliability of the event determination result.

[0079] It should be noted that the above-mentioned possible implementation methods can be executed separately or in combination, and the embodiments of the present disclosure are not limited to this.

[0080] See Figure 4 , Figure 4 This is a flow chart of another measurement method provided by an embodiment of the present disclosure. Figure 1 The terminal device in the communication system shown in the figure performs the measurement method. The measurement method can be performed alone, or in combination with any embodiment of the present disclosure or a possible implementation manner in the embodiment, or in combination with any technical solution in the related art.

[0081] like Figure 4 As shown, the measurement method may include but is not limited to the following steps:

[0082] Step 401: Obtain the measurement value of the target measurement.

[0083] The target measurement includes RLM measurement and / or RRM measurement, and the measurement value includes at least one first RSRP obtained by measuring the downlink reference signal at least once within the target time period in the benchmark information corresponding to the target measurement, or includes at least one first RSRP obtained by measuring at least one downlink reference signal within the target time period.

[0084] In an embodiment of the present disclosure, the benchmark information configured by the network device may include a target time period, and the terminal device may measure the downlink reference signal at least once within the target time period to obtain at least one measurement value, which is recorded as at least one first RSRP in the present disclosure.

[0085] As an example, the terminal device may measure the downlink reference signal once within the target time period to obtain a first RSRP.

[0086] As another example, the terminal device may measure the downlink reference information multiple times within the target time period to obtain multiple first RSRPs.

[0087] In an embodiment of the present disclosure, the terminal device may also measure at least one downlink reference signal within a target time period to obtain at least one first RSRP.

[0088] As an example, the terminal device may measure a downlink reference signal at least once within a target time period to obtain at least one first RSRP.

[0089] As another example, the terminal device may measure multiple downlink reference signals at least once within the target time period to obtain multiple first RSRPs.

[0090] Step 402: Determine a first difference between at least one first RSRP and a corresponding reference value, wherein the reference value corresponding to the first RSRP is measured by the terminal device before measuring the first RSRP.

[0091] In the embodiment of the present disclosure, each first RSPR has a corresponding reference value, and the reference value and the first RSPR are in a one-to-one correspondence. The reference value corresponding to the first RSRP can be the RSRP measured by the terminal device before measuring the first RSRP. For example, the reference value corresponding to the first RSRP can be the RSRP measured by the terminal device for the most recent time before measuring the first RSRP.

[0092] In the embodiment of the present disclosure, for any first RSRP, the RSRP measured by the terminal device before measuring the first RSRP can be obtained, which is recorded as a reference value in the present disclosure.

[0093] In the embodiments of the present disclosure, for each first RSRP, a difference between the first RSRP and a corresponding reference value may be determined, which is referred to as a first difference in the present disclosure. For example, the first difference may be obtained by subtracting the corresponding reference value from the first RSRP, or by subtracting the corresponding first RSRP from the reference value.

[0094] Step 403: In response to the first differences corresponding to at least one first RSRP being smaller than the first difference threshold in the reference information, determining that the target event triggered by the terminal device is an entry relaxation event.

[0095] In an embodiment of the present disclosure, the benchmark information configured by the network device may further include a first difference threshold, which is used to characterize the moving speed of the terminal device, that is, to determine whether the terminal device is in a stationary state or a low-mobility state.

[0096] For example, the network device may configure the target period and the first difference threshold via an RRC message. Optionally, the target period may be marked as T SearchDeltaP , the first difference threshold is S SearchDeltaP .

[0097] In an embodiment of the present disclosure, when the first differences corresponding to all first RSRPs are smaller than the first difference threshold in the reference information, it can be determined that the target event triggered by the terminal device is an entry relaxation event, that is, it is determined that the terminal device meets the entry relaxation criteria.

[0098] It should be noted that when the first differences corresponding to all first RSRPs are less than the first difference threshold, it indicates that the moving speed of the terminal device is low. At this time, the entry relaxation event can also be called a low mobility event, and accordingly, the entry relaxation criterion can also be called a low mobility criterion.

[0099] In any one of the embodiments of the present disclosure, the reference value corresponding to each first RSRP may be updated. For example, when the terminal device performs cell switching, the corresponding reference value may be updated according to each first RSRP. For example, for each first RSRP, the reference value corresponding to the first RSRP may be updated to the first RSRP. Alternatively, for each first RSRP, it may be determined whether the difference between the first RSRP and the corresponding reference value is greater than a third difference threshold. If the difference between the first RSRP and the corresponding reference value is greater than the third difference threshold, the reference value corresponding to the first RSRP may be updated according to the first RSRP. For example, the reference value corresponding to the first RSRP may be updated to the first RSRP. If the difference between the first RSRP and the corresponding reference value is not greater than the third difference threshold, the reference value corresponding to the first RSRP may not need to be updated. Alternatively, the reference value corresponding to the first RSRP may be updated during the target time period (T SearchDeltaP ), determine whether the first difference of each first RSRP is less than the first difference threshold; if the first difference of a certain first RSRP is not less than the first difference threshold, the corresponding reference value can be updated according to the first RSRP, for example, the reference value corresponding to the first RSRP is updated to the first RSRP; if the first difference of a certain first RSRP is less than the first difference threshold, there is no need to update the reference value corresponding to the first RSRP.

[0100] The third difference threshold is preset, for example, the third difference threshold may be configured by the network device, or the third difference threshold may be agreed upon by a protocol, which is not limited in the present disclosure. For example, the third difference threshold may be 0.

[0101] The measurement method of the embodiment of the present disclosure obtains the measurement value of the target measurement, wherein the target measurement includes RLM measurement and / or RRM measurement; determines the target event state triggered by the terminal device according to the measurement value and the benchmark information corresponding to the target measurement, wherein the target event includes: entering a relaxation event or exiting a relaxation event. As a result, the terminal device can effectively determine whether the terminal device triggers an entry relaxation event based on the measurement value of the target measurement and the benchmark information corresponding to the target measurement, so that when the terminal device triggers the entry relaxation event, the entry relaxation event can be reported to the network device to perform a relaxation mechanism and improve the endurance of the terminal device. In addition, the use of the benchmark information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device triggers an entry relaxation event or an exit relaxation event can improve the accuracy and reliability of the event determination result.

[0102] It should be noted that the above-mentioned possible implementation methods can be executed separately or in combination, and the embodiments of the present disclosure are not limited to this.

[0103] In any embodiment of the present disclosure, the event Event R1 (including the entry relaxation event and the exit relaxation event) may be defined through protocol agreement.

[0104] As an example, for entering a relaxation event, such as a low mobility event, it can be marked as Event R1-1, and Event R1-1 can be determined by the low mobility criterion. That is, in the target period T SearchDeltaP If the measured value Srxlev detected by the terminal device is equal to the reference value Srxlev Ref The difference between them is less than the first difference threshold S SearchDeltaP , it indicates that the reference signal changes slightly. At this time, it can be considered that the terminal device is in a low mobility state.

[0105] Example 1: When the low mobility criterion is met: (Srxlev Ref –Srxlev) SearchDeltaP When , it can be determined that the target event triggered by the terminal device is an entry relaxation event or a low mobility event.

[0106] The unit of the measured value Srxlev is dB, and the reference value Srxlev is Ref The unit is dB.

[0107] The reference value is set to the measured value when any of the following conditions are met:

[0108] (1) The terminal device switches to a new serving cell;

[0109] (2)Srxlev-Srxlev​Ref >0;

[0110] (3) In the target period T SearchDeltaP Internal, low mobility criteria: (Srxlev Ref –Srxlev) SearchDeltaP Not satisfied.

[0111] See Figure 5 , Figure 5 This is a flow chart of another measurement method provided by an embodiment of the present disclosure. Figure 1 The terminal device in the communication system shown in the figure performs the measurement method. The measurement method can be performed alone, or in combination with any embodiment of the present disclosure or a possible implementation manner in the embodiment, or in combination with any technical solution in the related art.

[0112] like Figure 5 As shown, the measurement method may include but is not limited to the following steps:

[0113] Step 501: Obtain a measurement value of a target measurement.

[0114] The target measurement includes RLM measurement and / or RRM measurement, and the measurement value includes the target period (T SearchDeltaP ), or including at least one first RSRP obtained by measuring the downlink reference signal at least once within the target period (T SearchDeltaP ). In addition, the measured value also includes multiple second RSRPs obtained by measuring the downlink reference signal multiple times within a set time period (T1) after the target period, or further includes multiple second RSRPs obtained by measuring multiple downlink reference signals within the set time period (T1).

[0115] In the embodiment of the present disclosure, step 501 can be implemented in any of the ways in the embodiments of the present disclosure, and the embodiment of the present disclosure does not limit this and will not be described in detail.

[0116] In the embodiment of the present disclosure, the set duration is pre-set, for example, the set duration may be configured by a network device, or the set duration may be agreed upon by a protocol, and the present disclosure does not impose any limitation thereto. Optionally, the set duration is marked as T1.

[0117] In the embodiment of the present disclosure, the terminal device can also SearchDeltaP ​) after the downlink reference signal is measured multiple times within the set time length (T1) to obtain multiple measurement values, which are recorded as multiple second RSRPs in this disclosure. Alternatively, the terminal device can measure multiple downlink reference signals at least once within the set time length (T1) to obtain multiple second RSRPs.

[0118] Step 502: Determine a first difference between at least one first RSRP and a corresponding reference value; wherein the reference value corresponding to the first RSRP is measured by the terminal device before measuring the first RSRP.

[0119] In the embodiment of the present disclosure, step 502 may be implemented in any manner in the various embodiments of the present disclosure, and the embodiment of the present disclosure does not limit this and will not be described in detail.

[0120] Step 503: In response to the first differences corresponding to at least one first RSRP being less than the first difference threshold in the benchmark information, determine the second differences between multiple second RSRPs and corresponding reference values; wherein the second RSRPs and the corresponding reference values ​​are measured by the terminal device before measuring the second RSRP.

[0121] In the embodiment of the present disclosure, each second RSPR has a corresponding reference value, and the reference value and the second RSPR are in a one-to-one correspondence. The reference value corresponding to the second RSRP can be the RSRP measured by the terminal device before measuring the second RSRP. For example, the reference value corresponding to the second RSRP can be the RSRP measured by the terminal device for the most recent time before measuring the second RSRP.

[0122] In an embodiment of the present disclosure, when the terminal device determines that the first differences corresponding to all the first RSRPs are smaller than the first difference threshold in the reference information, the terminal device may further obtain a reference value corresponding to each second RSRP.

[0123] In the embodiments of the present disclosure, for each second RSRP, the terminal device may determine the difference between the second RSRP and the corresponding reference value, which is referred to as the second difference in the present disclosure. For example, the second RSRP may be subtracted from the corresponding reference value, and the resulting difference may be used as the second difference. Alternatively, the second RSRP may be subtracted from the reference value, and the resulting difference may be used as the second difference.

[0124] Step 504: In response to the second differences corresponding to the multiple second RSRPs being smaller than the first difference threshold, determining that the target event triggered by the terminal device is an entry relaxation event.

[0125] In the embodiment of the present disclosure, when the second difference corresponding to each second RSRP is smaller than the first difference threshold, the target event can be determined to be an entry relaxation event, that is, it is determined that the terminal device meets the entry relaxation criteria.

[0126] It should be noted that, when the second differences corresponding to all second RSRPs are smaller than the first difference threshold, it indicates that the moving speed of the terminal device is low. At this time, entering the relaxation event can also be called a low mobility event.

[0127] In any one of the embodiments of the present disclosure, the reference value corresponding to each first RSRP may be updated. For example, when the terminal device performs cell switching, the corresponding reference value may be updated according to each first RSRP. For example, for each first RSRP, the reference value corresponding to the first RSRP may be updated to the first RSRP. Alternatively, for each first RSRP, it may be determined whether the difference between the first RSRP and the corresponding reference value is greater than a third difference threshold. If the difference between the first RSRP and the corresponding reference value is greater than the third difference threshold, the reference value corresponding to the first RSRP may be updated according to the first RSRP. For example, the reference value corresponding to the first RSRP may be updated to the first RSRP. If the difference between the first RSRP and the corresponding reference value is not greater than the third difference threshold, the reference value corresponding to the first RSRP may not need to be updated. Alternatively, the reference value corresponding to the first RSRP may be updated during the target time period (T SearchDeltaP ), determine whether the first difference of each first RSRP is less than the first difference threshold; if the first difference of a certain first RSRP is not less than the first difference threshold, the corresponding reference value can be updated according to the first RSRP, for example, the reference value corresponding to the first RSRP is updated to the first RSRP; if the first difference of a certain first RSRP is less than the first difference threshold, there is no need to update the reference value corresponding to the first RSRP.

[0128] Similarly, when the terminal device performs cell switching, the corresponding reference value can be updated according to each second RSRP. For example, for each second RSRP, the reference value corresponding to the second RSRP can be updated to the second RSRP; or, for each second RSRP, it can be determined whether the difference between the second RSRP and the corresponding reference value is greater than the third difference threshold. If the difference between the second RSRP and the corresponding reference value is greater than the third difference threshold, the corresponding reference value can be updated according to the second RSRP. For example, the reference value corresponding to the second RSRP is updated to the second RSRP. If the difference between the second RSRP and the corresponding reference value is not greater than the third difference threshold, there is no need to update the reference value corresponding to the second RSRP; or, within the set time length (T1), it can be determined whether the second difference of each second RSRP is less than the first difference threshold. If the second difference of a certain second RSRP is not less than the first difference threshold, the corresponding reference value can be updated according to the second RSRP. For example, the reference value corresponding to the second RSRP is updated to the second RSRP. If the second difference of a certain second RSRP is less than the first difference threshold, there is no need to update the reference value corresponding to the second RSRP.

[0129] The measurement method of the embodiment of the present disclosure obtains the measurement value of the target measurement, wherein the target measurement includes RLM measurement and / or RRM measurement; determines the target event state triggered by the terminal device according to the measurement value and the benchmark information corresponding to the target measurement, wherein the target event includes: entering a relaxation event or exiting a relaxation event. As a result, the terminal device can effectively determine whether the terminal device triggers an entry relaxation event based on the measurement value of the target measurement and the benchmark information corresponding to the target measurement, so that when the terminal device triggers the entry relaxation event, the entry relaxation event can be reported to the network device to perform a relaxation mechanism and improve the endurance of the terminal device. In addition, the use of the benchmark information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device triggers an entry relaxation event or an exit relaxation event can improve the accuracy and reliability of the event determination result.

[0130] It should be noted that the above-mentioned possible implementation methods can be executed separately or in combination, and the embodiments of the present disclosure are not limited to this.

[0131] In any embodiment of the present disclosure, the event Event R1 (including the entry relaxation event and the exit relaxation event) may be defined through protocol agreement.

[0132] As an example, for entering a relaxation event, such as a low mobility event, it can be marked as Event R1-1, and Event R1-1 can be determined by the low mobility criterion. That is, in the target period T SearchDeltaPIf the measured value Srxlev detected by the terminal device is equal to the reference value Srxlev Ref The difference between them is less than the first difference threshold S SearchDeltaP , it indicates that the reference signal changes slightly. At this time, it can be considered that the terminal device is in a low mobility state.

[0133] Furthermore, the measured value Srxlev detected by the terminal device and the reference value Srxlev can be further determined within the set time period T1. Ref Is the difference between the two smaller than the first difference threshold S? SearchDeltaP , if the difference is less than the first difference threshold S SearchDeltaP , it is determined that the target event triggered by the terminal device is an entry relaxation event or a low mobility event.

[0134] Example 2: The judgment condition of Event R1-1 is: within the set time, SearchDeltaP As a unit, meeting the low mobility criterion: (Srxlev Ref –Srxlev) SearchDeltaP When the target event triggered by the terminal device is determined to be an entry relaxation event or a low mobility event.

[0135] The unit of the measured value Srxlev is dB, and the reference value Srxlev is Ref The unit is dB.

[0136] The reference value is set to the measured value when any of the following conditions are met:

[0137] (1) The terminal device switches to a new serving cell;

[0138] (2)Srxlev-Srxlev Ref >0;

[0139] (3) In the target period T SearchDeltaP Internal, low mobility criteria: (Srxlev Ref –Srxlev) SearchDeltaP Not satisfied.

[0140] See Figure 6 , Figure 6 This is a flow chart of another measurement method provided by an embodiment of the present disclosure. Figure 1 The terminal device in the communication system shown in the figure performs the measurement method. The measurement method can be performed alone, or in combination with any embodiment of the present disclosure or a possible implementation manner in the embodiment, or in combination with any technical solution in the related art.

[0141] like Figure 6 ​​As shown, the measurement method may include but is not limited to the following steps:

[0142] Step 601: Obtain the measurement value of the target measurement.

[0143] The target measurement includes RLM measurement and / or RRM measurement, and the measurement value includes at least one first RSRP obtained by measuring the downlink reference signal at least once within the target time period in the benchmark information corresponding to the target measurement, or includes at least one first RSRP obtained by measuring at least one downlink reference signal within the target time period.

[0144] Step 602: Determine a first difference between at least one first RSRP and a corresponding reference value; wherein the reference value corresponding to the first RSRP is measured by the terminal device before measuring the first RSRP.

[0145] In the embodiment of the present disclosure, steps 601 to 602 can be implemented in any of the ways in the embodiments of the present disclosure, and the embodiment of the present disclosure does not limit this and will not be described in detail.

[0146] Step 603: In response to the existence of at least one first difference corresponding to the first RSRP being greater than or equal to the second difference threshold in the reference information, determining that the target event triggered by the terminal device is an exit relaxation event.

[0147] In the embodiment of the present disclosure, the benchmark information sent by the network device may include the target period (T SearchDeltaP ), a second difference threshold may also be included, where the second difference threshold is used to characterize the moving speed of the terminal device, that is, to determine whether the terminal device is in a stationary state or a low-mobility state.

[0148] The second difference threshold value may be the same as or different from the first difference threshold value. For example, the second difference threshold value may be determined based on the first difference threshold value and the compensation offset value.

[0149] As an example, the network device may configure the target period and the second difference threshold via an RRC message. Optionally, the target period may be marked as T SearchDeltaP , the second difference threshold is S SearchDeltaP '.

[0150] In an embodiment of the present disclosure, when there is at least one first difference corresponding to a first RSRP that is greater than or equal to a second difference threshold in the benchmark information, it can be determined that the target event triggered by the terminal device is an exit relaxation event, that is, it is determined that the terminal device meets the exit relaxation criteria.

[0151] It should be noted that when there is at least one first RSRP corresponding to a first difference that is not less than the second difference threshold, it indicates that the moving speed of the terminal device is not low. At this time, the exit relaxation event can also be called a non-low mobility event or a high mobility event.

[0152] In any one of the embodiments of the present disclosure, the reference value corresponding to each first RSRP may be updated. For example, when the terminal device performs cell switching, the corresponding reference value may be updated according to each first RSRP. For example, for each first RSRP, the reference value corresponding to the first RSRP may be updated to the first RSRP. Alternatively, for each first RSRP, it may be determined whether the difference between the first RSRP and the corresponding reference value is greater than a third difference threshold. If the difference between the first RSRP and the corresponding reference value is greater than the third difference threshold, the reference value corresponding to the first RSRP may be updated according to the first RSRP. For example, the reference value corresponding to the first RSRP may be updated to the first RSRP. If the difference between the first RSRP and the corresponding reference value is not greater than the third difference threshold, the reference value corresponding to the first RSRP may not need to be updated. Alternatively, the reference value corresponding to the first RSRP may be updated during the target time period (T SearchDeltaP ), determine whether the first difference of each first RSRP is less than the second difference threshold; if the first difference of a certain first RSRP is less than the second difference threshold, the corresponding reference value can be updated according to the first RSRP, for example, the reference value corresponding to the first RSRP is updated to the first RSRP; if the first difference of a certain first RSRP is not less than the second difference threshold, there is no need to update the reference value corresponding to the first RSRP.

[0153] The measurement method of the embodiment of the present disclosure obtains the measurement value of the target measurement, wherein the target measurement includes RLM measurement and / or RRM measurement; determines the target event state triggered by the terminal device according to the measurement value and the benchmark information corresponding to the target measurement, wherein the target event includes: entering a relaxation event or exiting a relaxation event. As a result, the terminal device can effectively determine whether the terminal device triggers an entry relaxation event based on the measurement value of the target measurement and the benchmark information corresponding to the target measurement, so that when the terminal device triggers the entry relaxation event, the entry relaxation event can be reported to the network device to perform a relaxation mechanism and improve the endurance of the terminal device. In addition, the use of the benchmark information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device triggers an entry relaxation event or an exit relaxation event can improve the accuracy and reliability of the event determination result.

[0154] It should be noted that the above-mentioned possible implementation methods can be executed separately or in combination, and the embodiments of the present disclosure are not limited to this.

[0155] In any embodiment of the present disclosure, the event Event R1 (including the entry relaxation event and the exit relaxation event) may be defined through protocol agreement.

[0156] As an example, an exit relaxation event, such as a non-low mobility event or a high mobility event, can be marked as Event R1-2, and Event R1-2 can be determined by the low mobility criterion. SearchDeltaP If the measured value Srxlev detected by the terminal device is equal to the reference value Srxlev Ref The difference between them is greater than the second difference threshold S SearchDeltaP ', it indicates that the reference signal changes significantly. At this time, it can be considered that the terminal device is not in a low mobility state.

[0157] Example 3: When satisfying: (Srxlev Ref –Srxlev)>S SearchDeltaP ', it can be determined that the target event triggered by the terminal device is an exit relaxation event or a non-low mobility event or a high mobility event.

[0158] The unit of the measured value Srxlev is dB, and the reference value Srxlev is Ref The unit is dB.

[0159] The reference value is set to the measured value when any of the following conditions are met:

[0160] (1) The terminal device switches to a new serving cell;

[0161] (2)Srxlev-Srxlev Ref >0;

[0162] (3) In the target period T SearchDeltaP Internal, low mobility criteria: (Srxlev Ref –Srxlev)>S SearchDeltaP 'Not satisfied.

[0163] See Figure 7 , Figure 7 This is a flow chart of another measurement method provided by an embodiment of the present disclosure. Figure 1 The terminal device in the communication system shown in the figure performs the measurement method. The measurement method can be performed alone, or in combination with any embodiment of the present disclosure or a possible implementation manner in the embodiment, or in combination with any technical solution in the related art.

[0164] like Figure 7 As shown, the measurement method may include but is not limited to the following steps:

[0165] Step 701: Obtain the measurement value of the target measurement.

[0166] The target measurement includes RLM measurement and / or RRM measurement, and the measurement value includes at least one first RSRP obtained by measuring the downlink reference signal at least once during the target period in the benchmark information corresponding to the target measurement, or includes at least one first RSRP obtained by measuring at least one downlink reference signal during the target period. In addition, the measurement value also includes multiple second RSRPs obtained by measuring the downlink reference signal multiple times within a set time length after the target period, or also includes multiple second RSRPs obtained by measuring multiple downlink reference signals within the set time length.

[0167] Step 702: Determine a first difference between at least one first RSRP and a corresponding reference value, wherein the reference value corresponding to the first RSRP is measured by the terminal device before measuring the first RSRP.

[0168] In the embodiment of the present disclosure, steps 701 to 702 can be implemented in any of the ways in the embodiments of the present disclosure, and the embodiment of the present disclosure does not limit this and will not be described in detail.

[0169] Step 703: In response to the existence of a first difference corresponding to at least one first RSRP being greater than or equal to a second difference threshold in the benchmark information, determine a second difference between multiple second RSRPs and corresponding reference values, wherein the reference value corresponding to the second RSRP is measured by the terminal device before measuring the second RSRP.

[0170] Among them, the explanation of the reference value corresponding to the second RSRP can be found in any embodiment of the present disclosure and will not be repeated here.

[0171] In an embodiment of the present disclosure, when there is at least one first RSRP corresponding to a first difference that is greater than or equal to the second difference threshold in the benchmark information, a reference value corresponding to each second RSRP can be further obtained, and a second difference between each second RSRP and the corresponding reference value can be determined.

[0172] Step 704: In response to the existence of at least one second difference corresponding to the second RSRP being greater than or equal to the second difference threshold, determining that the target event triggered by the terminal device is an exit relaxation event.

[0173] In an embodiment of the present disclosure, when there is at least one second difference corresponding to a second RSRP that is greater than or equal to the second difference threshold in the benchmark information, it can be determined that the target event triggered by the terminal device is an exit relaxation event, that is, it is determined that the terminal device meets the exit relaxation criteria.

[0174] It should be noted that when there is at least one second difference corresponding to the second RSRP that is not less than the second difference threshold, it indicates that the moving speed of the terminal device is not low. At this time, the exit relaxation event can also be called a non-low mobility event or a high mobility event.

[0175] In any one of the embodiments of the present disclosure, the reference value corresponding to each first RSRP may be updated. For example, when the terminal device performs cell switching, the corresponding reference value may be updated according to each first RSRP. For example, for each first RSRP, the reference value corresponding to the first RSRP may be updated to the first RSRP. Alternatively, for each first RSRP, it may be determined whether the difference between the first RSRP and the corresponding reference value is greater than a third difference threshold. If the difference between the first RSRP and the corresponding reference value is greater than the third difference threshold, the reference value corresponding to the first RSRP may be updated according to the first RSRP. For example, the reference value corresponding to the first RSRP may be updated to the first RSRP. If the difference between the first RSRP and the corresponding reference value is not greater than the third difference threshold, the reference value corresponding to the first RSRP may not need to be updated. Alternatively, the reference value corresponding to the first RSRP may be updated during the target time period (T SearchDeltaP ), determine whether the first difference of each first RSRP is less than the second difference threshold; if the first difference of a certain first RSRP is less than the second difference threshold, the corresponding reference value can be updated according to the first RSRP, for example, the reference value corresponding to the first RSRP is updated to the first RSRP; if the first difference of a certain first RSRP is not less than the first difference threshold, there is no need to update the reference value corresponding to the first RSRP.

[0176] Similarly, when the terminal device performs cell switching, the corresponding reference value can be updated according to each second RSRP. For example, for each second RSRP, the reference value corresponding to the second RSRP can be updated to the second RSRP; or, for each second RSRP, it can be determined whether the difference between the second RSRP and the corresponding reference value is greater than the third difference threshold. If the difference between the second RSRP and the corresponding reference value is greater than the third difference threshold, the corresponding reference value can be updated according to the second RSRP. For example, the reference value corresponding to the second RSRP is updated to the second RSRP. If the difference between the second RSRP and the corresponding reference value is not greater than the third difference threshold, there is no need to update the reference value corresponding to the second RSRP; or, within the set time length (T1), it can be determined whether the second difference of each second RSRP is less than the second difference threshold. If the second difference of a certain second RSRP is less than the second difference threshold, the corresponding reference value can be updated according to the second RSRP. For example, the reference value corresponding to the second RSRP is updated to the second RSRP. If the second difference of a certain second RSRP is not less than the second difference threshold, there is no need to update the reference value corresponding to the second RSRP.

[0177] The measurement method of the embodiment of the present disclosure obtains the measurement value of the target measurement, wherein the target measurement includes RLM measurement and / or RRM measurement; determines the target event state triggered by the terminal device according to the measurement value and the benchmark information corresponding to the target measurement, wherein the target event includes: entering a relaxation event or exiting a relaxation event. As a result, the terminal device can effectively determine whether the terminal device triggers an entry relaxation event based on the measurement value of the target measurement and the benchmark information corresponding to the target measurement, so that when the terminal device triggers the entry relaxation event, the entry relaxation event can be reported to the network device to perform a relaxation mechanism and improve the endurance of the terminal device. In addition, the use of the benchmark information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device triggers an entry relaxation event or an exit relaxation event can improve the accuracy and reliability of the event determination result.

[0178] It should be noted that the above-mentioned possible implementation methods can be executed separately or in combination, and the embodiments of the present disclosure are not limited to this.

[0179] In any embodiment of the present disclosure, the event Event R1 (including the entry relaxation event and the exit relaxation event) may be defined through protocol agreement.

[0180] As an example, an exit relaxation event, such as a non-low mobility event or a high mobility event, can be marked as Event R1-2, and Event R1-2 can be determined by the low mobility criterion.SearchDeltaP If the measured value Srxlev detected by the terminal device is equal to the reference value Srxlev Ref The difference between them is greater than the second difference threshold S SearchDeltaP ', it indicates that the reference signal changes significantly. At this time, it can be considered that the terminal device is not in a low mobility state.

[0181] Furthermore, the measured value Srxlev detected by the terminal device and the reference value Srxlev can be further determined within the set time period T1. Ref Is the difference between the two greater than the second difference threshold S SearchDeltaP ', if the difference is greater than the second difference threshold S SearchDeltaP ', it is determined that the target event triggered by the terminal device is an exit relaxation event or a non-low mobility event.

[0182] Example 4: The judgment condition of Event R1-2 is: within the set time, SearchDeltaP As a unit, satisfy: (Srxlev Ref –Srxlev)>S SearchDeltaP ', it can be determined that the target event triggered by the terminal device is an exit relaxation event or a non-low mobility event.

[0183] The unit of the measured value Srxlev is dB, and the reference value Srxlev is Ref The unit is dB.

[0184] The reference value is set to the measured value when any of the following conditions are met:

[0185] (1) The terminal device switches to a new serving cell;

[0186] (2)Srxlev-Srxlev Ref >0;

[0187] (3) In the target period T SearchDeltaP Internal, low mobility criteria: (Srxlev Ref –Srxlev)>S SearchDeltaP 'Not satisfied.

[0188] See Figure 8 , Figure 8 This is a flow chart of another measurement method provided by an embodiment of the present disclosure. Figure 1 The terminal device in the communication system shown in the figure performs the measurement method. The measurement method can be performed alone, or in combination with any embodiment of the present disclosure or a possible implementation manner in the embodiment, or in combination with any technical solution in the related art.

[0189] like Figure 8 As shown, the measurement method may include but is not limited to the following steps:

[0190] Step 801: Acquire a measurement value of a target measurement, where the target measurement includes RLM measurement and / or RRM measurement, and the measurement value includes a plurality of first SINRs obtained by measuring a plurality of downlink reference signals.

[0191] In the embodiment of the present disclosure, step 801 can be implemented in any of the ways in the embodiments of the present disclosure, and the embodiment of the present disclosure does not limit this and will not be described in detail.

[0192] In an embodiment of the present disclosure, the terminal device may measure multiple downlink reference signals at least once to obtain multiple measurement values, which are recorded as multiple first SINRs in the present disclosure.

[0193] Step 802: Determine a first quality threshold according to threshold indication information in the reference information corresponding to the target measurement.

[0194] In the embodiment of the present disclosure, the reference information sent by the network device may include threshold indication information. For example, the network device may configure the threshold indication information through an RRC message.

[0195] In an embodiment of the present disclosure, the terminal device may determine a first quality threshold according to the threshold indication information, wherein the first quality threshold is used to characterize the quality of the reference signal.

[0196] In a possible implementation of the embodiment of the present disclosure, the threshold indication information may include a first offset. Optionally, the first offset is marked as offset1.

[0197] In the embodiment of the present disclosure, the terminal device can determine the first quality threshold according to the first offset, for example, the first offset can be added to the first configuration threshold to obtain the first quality threshold. The first configuration threshold can be the threshold Q corresponding to the RLM measurement in the related art. in or Q out .

[0198] In another possible implementation of the embodiment of the present disclosure, the threshold indication information may include a target threshold. The terminal device may determine the first quality threshold based on the target threshold, for example, the target threshold may be used as the first quality threshold.

[0199] Step 803: In response to multiple first SINRs being greater than a first quality threshold, determining the target event as an entry relaxation event; or in response to at least one first SINR being greater than the first quality threshold, determining the target event as an entry relaxation event.

[0200] In a possible implementation of the embodiment of the present disclosure, when multiple first SINRs are all greater than the first quality threshold, it can be determined that the target event triggered by the terminal device is an entry relaxation event, that is, it is determined that the terminal device meets the entry relaxation criteria.

[0201] In another possible implementation of the embodiment of the present disclosure, when there is at least one first SINR greater than the first quality threshold, it can be determined that the target event triggered by the terminal device is an entry relaxation event, that is, it is determined that the terminal device meets the entry relaxation criteria.

[0202] It should be noted that, when the first SINR is greater than the first quality threshold, it can be determined that the signal quality of the reference signal is good. At this time, entering the relaxation event can also be called a cell signal quality good event.

[0203] The measurement method of the embodiment of the present disclosure obtains the measurement value of the target measurement, wherein the target measurement includes RLM measurement and / or RRM measurement; determines the target event state triggered by the terminal device according to the measurement value and the benchmark information corresponding to the target measurement, wherein the target event includes: entering a relaxation event or exiting a relaxation event. As a result, the terminal device can effectively determine whether the terminal device triggers an entry relaxation event based on the measurement value of the target measurement and the benchmark information corresponding to the target measurement, so that when the terminal device triggers the entry relaxation event, the entry relaxation event can be reported to the network device to perform a relaxation mechanism and improve the endurance of the terminal device. In addition, the use of the benchmark information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device triggers an entry relaxation event or an exit relaxation event can improve the accuracy and reliability of the event determination result.

[0204] It should be noted that the above-mentioned possible implementation methods can be executed separately or in combination, and the embodiments of the present disclosure are not limited to this.

[0205] In any embodiment of the present disclosure, the event Event R2 (including the entry relaxation event and the exit relaxation event) may be defined through protocol agreement.

[0206] As an example, an entry relaxation event, such as a good cell signal quality event, can be marked as Event R2-1, and Event R2-1 can be determined by a good signal quality criterion. That is, when a serving cell is configured with multiple RSs (i.e., reference signals), each RS can be measured, and the SINR corresponding to the measured RS can be compared with a threshold to determine whether the terminal device meets the good signal quality criterion.

[0207] Example 5: When all RSs meet the following requirements: measured >First quality threshold (Qout +Offset1), it is determined that the terminal device meets the good signal quality criterion, and the target event triggered by the terminal device is determined to be an entry relaxation event or a cell signal quality good event.

[0208] Example 6: When any RS satisfies: the measured value SINR measured >First quality threshold (Q out +Offset1), it is determined that the terminal device meets the good signal quality criterion, and the target event triggered by the terminal device is determined to be an entry relaxation event or a cell signal quality good event.

[0209] See Figure 9 , Figure 9 This is a flow chart of another measurement method provided by an embodiment of the present disclosure. Figure 1 The terminal device in the communication system shown in the figure performs the measurement method. The measurement method can be performed alone, or in combination with any embodiment of the present disclosure or a possible implementation manner in the embodiment, or in combination with any technical solution in the related art.

[0210] like Figure 9 As shown, the measurement method may include but is not limited to the following steps:

[0211] Step 901: Acquire a measurement value of a target measurement, where the target measurement includes RLM measurement and / or RRM measurement, and the measurement value includes a plurality of first SINRs obtained by measuring a plurality of downlink reference signals.

[0212] In the embodiment of the present disclosure, step 901 can be implemented in any of the ways in the embodiments of the present disclosure, and the embodiment of the present disclosure does not limit this and will not be described in detail.

[0213] Step 902: Determine a second quality threshold according to threshold indication information in the reference information corresponding to the target measurement.

[0214] In the embodiment of the present disclosure, the reference information sent by the network device may include threshold indication information. For example, the network device may configure the threshold indication information through an RRC message.

[0215] In an embodiment of the present disclosure, the terminal device may determine a second quality threshold according to the threshold indication information, wherein the second quality threshold is used to characterize the quality of the reference signal.

[0216] In one possible implementation of the embodiment of the present disclosure, the threshold indication information may include a second offset, optionally labeled as offset 2. The terminal device may determine a second quality threshold based on the second offset, for example, by adding the second offset to the second configuration threshold to obtain the second quality threshold.

[0217] The second configuration threshold can be the threshold Q corresponding to the RLM measurement in the related art. in or Q out .

[0218] The second offset may be the same as or different from the first offset, and this disclosure does not impose any limitation on this.

[0219] The first configuration threshold and the second configuration threshold may be the same or different, and this disclosure does not impose any limitation on this.

[0220] It should be noted that the first offset configured by the network device for determining whether to trigger an entry relaxation event may be different from the second offset used to determine whether to trigger an exit relaxation event. In this case, even if the first configuration threshold is the same as the second configuration threshold, the first quality threshold and the second quality threshold are also different.

[0221] In another possible implementation of the embodiment of the present disclosure, the threshold indication information may include a target threshold. The terminal device may determine the second quality threshold based on the target threshold, for example, the target threshold may be used as the second quality threshold.

[0222] Step 903: In response to the existence of at least one first SINR less than or equal to the second quality threshold, determine that the target event triggered by the terminal device is an exit relaxation event; or, in response to multiple first SINRs being less than or equal to the second quality threshold, determine that the target event is an exit relaxation event.

[0223] In an embodiment of the present disclosure, when there is at least one first SINR less than or equal to the second quality threshold, it can be determined that the target event triggered by the terminal device is an exit relaxation event, that is, it is determined that the terminal device meets the exit relaxation criterion. Alternatively, when each first SINR is less than or equal to the second quality threshold, it can be determined that the target event triggered by the terminal device is an exit relaxation event, that is, it is determined that the terminal device meets the exit relaxation criterion.

[0224] It should be noted that when the first SINR is less than or equal to the second quality threshold, it can be determined that the signal quality of the reference signal is poor. At this time, the exit relaxation event can also be called a non-cell signal quality good event or a cell signal quality poor event.

[0225] The measurement method of the embodiment of the present disclosure obtains the measurement value of the target measurement, wherein the target measurement includes RLM measurement and / or RRM measurement; determines the target event state triggered by the terminal device according to the measurement value and the benchmark information corresponding to the target measurement, wherein the target event includes: entering a relaxation event or exiting a relaxation event. As a result, the terminal device can effectively determine whether the terminal device triggers an entry relaxation event based on the measurement value of the target measurement and the benchmark information corresponding to the target measurement, so that when the terminal device triggers the entry relaxation event, the entry relaxation event can be reported to the network device to perform a relaxation mechanism and improve the endurance of the terminal device. In addition, the use of the benchmark information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device triggers an entry relaxation event or an exit relaxation event can improve the accuracy and reliability of the event determination result.

[0226] It should be noted that the above-mentioned possible implementation methods can be executed separately or in combination, and the embodiments of the present disclosure are not limited to this.

[0227] In any embodiment of the present disclosure, the event Event R2 (including the entry relaxation event and the exit relaxation event) may be defined through protocol agreement.

[0228] As an example, an exit relaxation event, such as a non-cell signal quality good event or a cell signal quality poor event, can be marked as Event R2-2, and Event R2-2 can be determined based on the good signal quality criterion. That is, when a serving cell is configured with multiple RSs (i.e., reference signals), each RS can be measured, and the SINR corresponding to the measured RS can be compared with a threshold to determine whether the terminal device meets the good signal quality criterion.

[0229] Example 7: When any RS satisfies: the measured value SINR measured <Second quality threshold (Q out +Offset2), it is determined that the terminal device does not meet the good signal quality criterion, and the target event triggered by the terminal device is determined to be an exit relaxation event, a non-cell signal quality good event, or a cell signal quality poor event.

[0230] Example 8: When all RSs meet the following requirements: measured <Second quality threshold (Q out +Offset2), it is determined that the terminal device does not meet the good signal quality criterion, and the target event triggered by the terminal device is determined to be an exit relaxation event, a non-cell signal quality good event, or a cell signal quality poor event.

[0231] See Figure 10 , Figure 10This is a flow chart of another measurement method provided by an embodiment of the present disclosure. Figure 1 The terminal device in the communication system shown in the figure performs the measurement method. The measurement method can be performed alone, or in combination with any embodiment of the present disclosure or a possible implementation manner in the embodiment, or in combination with any technical solution in the related art.

[0232] like Figure 10 As shown, the measurement method may include but is not limited to the following steps:

[0233] Step 1001: Acquire a measurement value of a target measurement, where the target measurement includes an RLM measurement and / or an RRM measurement, and the measurement value includes multiple second SINRs obtained by performing multiple measurements on each of multiple downlink reference signals within a set time period.

[0234] In the embodiment of the present disclosure, step 1001 can be implemented in any of the ways in the embodiments of the present disclosure, and the embodiment of the present disclosure does not limit this and will not be described in detail.

[0235] In the embodiments of the present disclosure, the explanation of setting the duration can be found in any embodiment of the present disclosure and will not be repeated here.

[0236] In an embodiment of the present disclosure, the terminal device may perform multiple measurements on each of the multiple downlink reference signals within a set duration to obtain multiple measurement values ​​corresponding to each downlink reference signal, which are recorded as multiple second SINRs in the present disclosure.

[0237] Step 1002: Determine a first quality threshold according to threshold indication information in the reference information corresponding to the target measurement.

[0238] In the embodiment of the present disclosure, step 1002 can be implemented in any of the ways in the embodiments of the present disclosure, and the embodiment of the present disclosure does not limit this and will not be described in detail.

[0239] Step 1003: In response to the fact that multiple second SINRs corresponding to each downlink reference signal are greater than the first quality threshold, the target event triggered by the terminal device is determined to be an entry relaxation event; or, in response to the fact that multiple second SINRs corresponding to at least one downlink reference signal are greater than the first quality threshold, the target event is determined to be an entry relaxation event.

[0240] In an embodiment of the present disclosure, when multiple second SINRs corresponding to each downlink reference signal are greater than the first quality threshold, the target event triggered by the terminal device can be determined to be an entry relaxation event. Alternatively, when multiple second SINRs corresponding to at least one downlink reference signal are greater than the first quality threshold, the target event triggered by the terminal device can be determined to be an entry relaxation event, that is, it is determined that the terminal device meets the entry relaxation criteria.

[0241] It should be noted that, when the second SINR is greater than the first quality threshold, it can be determined that the signal quality of the downlink reference signal is good. At this time, entering the relaxation event can also be called a cell signal quality good event.

[0242] The measurement method of the embodiment of the present disclosure obtains the measurement value of the target measurement, wherein the target measurement includes RLM measurement and / or RRM measurement; determines the target event state triggered by the terminal device according to the measurement value and the benchmark information corresponding to the target measurement, wherein the target event includes: entering a relaxation event or exiting a relaxation event. As a result, the terminal device can effectively determine whether the terminal device triggers an entry relaxation event based on the measurement value of the target measurement and the benchmark information corresponding to the target measurement, so that when the terminal device triggers the entry relaxation event, the entry relaxation event can be reported to the network device to perform a relaxation mechanism and improve the endurance of the terminal device. In addition, the use of the benchmark information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device triggers an entry relaxation event or an exit relaxation event can improve the accuracy and reliability of the event determination result.

[0243] It should be noted that the above-mentioned possible implementation methods can be executed separately or in combination, and the embodiments of the present disclosure are not limited to this.

[0244] In any embodiment of the present disclosure, the event Event R2 (including the entry relaxation event and the exit relaxation event) may be defined through protocol agreement.

[0245] As an example, an entry relaxation event, such as a good cell signal quality event, can be marked as Event R2-1, and Event R2-1 can be determined by a good signal quality criterion. That is, when a serving cell is configured with multiple RSs (i.e., reference signals), each RS can be measured, and the SINR corresponding to the measured RS can be compared with a threshold to determine whether the terminal device meets the good signal quality criterion.

[0246] Furthermore, it is also possible to determine whether the terminal device meets the good signal quality criterion within the set time period T1.

[0247] Example 9: Within the set time length T1, when all RSs meet the following conditions: measured >First quality threshold (Q out +Offset1), it is determined that the terminal device meets the good signal quality criterion, and the target event triggered by the terminal device is determined to be an entry relaxation event or a cell signal quality good event.

[0248] Example 10: Within the set time period T1, when any RS meets the following conditions: measured >First quality threshold (Q out +Offset1), it is determined that the terminal device meets the good signal quality criterion, and the target event triggered by the terminal device is determined to be an entry relaxation event or a cell signal quality good event.

[0249] See Figure 11 , Figure 11 This is a flow chart of another measurement method provided by an embodiment of the present disclosure. Figure 1 The terminal device in the communication system shown in the figure performs the measurement method. The measurement method can be performed alone, or in combination with any embodiment of the present disclosure or a possible implementation manner in the embodiment, or in combination with any technical solution in the related art.

[0250] like Figure 11 As shown, the measurement method may include but is not limited to the following steps:

[0251] Step 1101: Acquire a measurement value of a target measurement, where the target measurement includes an RLM measurement and / or an RRM measurement, and the measurement value includes multiple second SINRs obtained by performing multiple measurements on each of multiple downlink reference signals within a set time period.

[0252] In the embodiment of the present disclosure, step 1101 can be implemented in any of the ways in the embodiments of the present disclosure, and the embodiment of the present disclosure does not limit this and will not be described in detail.

[0253] Step 1102: Determine a second quality threshold according to threshold indication information in the reference information corresponding to the target measurement.

[0254] In the embodiment of the present disclosure, step 1102 can be implemented in any of the ways in the embodiments of the present disclosure, and the embodiment of the present disclosure does not limit this and will not be described in detail.

[0255] Step 1103: In response to the presence of multiple second SINRs corresponding to at least one downlink reference signal being less than or equal to the second quality threshold, determining that the target event triggered by the terminal device is an exit relaxation event; or, in response to the presence of multiple second SINRs corresponding to each downlink reference signal being less than or equal to the second quality threshold, determining that the target event is an exit relaxation event.

[0256] In an embodiment of the present disclosure, when there are multiple second SINRs corresponding to at least one downlink reference signal that are all less than or equal to the second quality threshold, it can be determined that the target event triggered by the terminal device is an exit relaxation event. Alternatively, when multiple second SINRs corresponding to each downlink reference signal are less than or equal to the second quality threshold, it can be determined that the target event triggered by the terminal device is an exit relaxation event, that is, it is determined that the terminal device meets the exit relaxation criterion.

[0257] It should be noted that when the second SINR is less than or equal to the second quality threshold, it can be determined that the signal quality of the reference signal is poor. At this time, the exit relaxation event can also be called a non-cell signal quality good event or a cell signal quality poor event.

[0258] The measurement method of the embodiment of the present disclosure obtains the measurement value of the target measurement, wherein the target measurement includes RLM measurement and / or RRM measurement; determines the target event state triggered by the terminal device according to the measurement value and the benchmark information corresponding to the target measurement, wherein the target event includes: entering a relaxation event or exiting a relaxation event. As a result, the terminal device can effectively determine whether the terminal device triggers an entry relaxation event based on the measurement value of the target measurement and the benchmark information corresponding to the target measurement, so that when the terminal device triggers the entry relaxation event, the entry relaxation event can be reported to the network device to perform a relaxation mechanism and improve the endurance of the terminal device. In addition, the use of the benchmark information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device triggers an entry relaxation event or an exit relaxation event can improve the accuracy and reliability of the event determination result.

[0259] It should be noted that the above-mentioned possible implementation methods can be executed separately or in combination, and the embodiments of the present disclosure are not limited to this.

[0260] In any embodiment of the present disclosure, the event Event R2 (including the entry relaxation event and the exit relaxation event) may be defined through protocol agreement.

[0261] As an example, an exit relaxation event, such as a non-cell signal quality good event or a cell signal quality poor event, can be marked as Event R2-2, and Event R2-2 can be determined based on the good signal quality criterion. That is, when a serving cell is configured with multiple RSs (i.e., reference signals), each RS can be measured, and the SINR corresponding to the measured RS can be compared with a threshold to determine whether the terminal device meets the good signal quality criterion.

[0262] Furthermore, it is also possible to determine whether the terminal device meets the good signal quality criterion within the set time period T1.

[0263] Example 11: Within the set time length T1, when any RS meets the following conditions: measured <Second quality threshold (Q out +Offset2), it is determined that the terminal device does not meet the good signal quality criterion, and the target event triggered by the terminal device is determined to be an exit relaxation event, a non-cell signal quality good event, or a cell signal quality poor event.

[0264] Example 12: Within the set time period T1, when all RSs meet the following conditions: measured <Second quality threshold (Q out +Offset2), the terminal device does not meet the good signal quality criterion, and the target event triggered by the terminal device is determined to be an exit relaxation event, a non-cell signal quality good event, or a cell signal quality poor event.

[0265] It should be noted that the above embodiments only use one of the low mobility criterion and the good signal quality criterion as an example. In actual application, both the low mobility criterion and the good signal quality criterion can be configured. For example, Event R1 and Event R2 can be configured at the same time.

[0266] As an example, when the target event is a relaxation event, two embodiments need to be satisfied at the same time, wherein one embodiment can be Figure 4 or Figure 5 Corresponding to the embodiment, another embodiment can be Figure 8 or Figure 10 The corresponding embodiment.

[0267] In a possible implementation, the benchmark information may include a target period, a first difference threshold, and threshold indication information.

[0268] In one example, the measurement value may include at least one first RSRP obtained by measuring a downlink reference signal at least once within the target time period, or include at least one first RSRP obtained by measuring at least one downlink reference signal within the target time period. The measurement value also includes multiple first SINRs obtained by measuring multiple downlink reference signals.

[0269] A first difference between at least one first RSRP and a corresponding reference value may be determined, and in response to the first differences corresponding to the at least one first RSRP being less than a first difference threshold in the benchmark information, it is determined that the terminal device meets the low mobility criterion.

[0270] When the terminal device meets the low mobility criterion, it can be further determined whether the terminal device meets the good cell signal quality criterion. For example, in response to multiple first SINRs being greater than the first quality threshold (wherein the first quality threshold is determined based on the threshold indication information), it is determined that the terminal device meets the good cell signal quality criterion, or, in response to the existence of at least one first SINR being greater than the first quality threshold, it is determined that the terminal device meets the good cell signal quality criterion.

[0271] When the terminal device satisfies both the low mobility criterion and the good cell signal quality criterion, the target event is determined to be an entry relaxation event.

[0272] In another example, the measurement value may include at least one first RSRP obtained by measuring a downlink reference signal at least once within the target period, or at least one first RSRP obtained by measuring at least one downlink reference signal within the target period. The measurement value may also include multiple second SINRs obtained by measuring each of multiple downlink reference signals multiple times within a set time period.

[0273] A first difference between at least one first RSRP and a corresponding reference value may be determined, and in response to the first differences corresponding to the at least one first RSRP being less than a first difference threshold in the benchmark information, it is determined that the terminal device meets the low mobility criterion.

[0274] When the terminal device meets the low mobility criterion, it can be further determined whether the terminal device meets the good cell signal quality criterion. For example, in response to the fact that multiple second SINRs corresponding to each downlink reference signal are greater than the first quality threshold (wherein the first quality threshold is determined based on the threshold indication information), it is determined that the terminal device meets the good cell signal quality criterion, or, in response to the fact that multiple second SINRs corresponding to at least one downlink reference signal are greater than the first quality threshold, it is determined that the terminal device meets the good cell signal quality criterion.

[0275] When the terminal device satisfies both the low mobility criterion and the good cell signal quality criterion, the target event is determined to be an entry relaxation event.

[0276] In another example, the measurement value includes a target period (T SearchDeltaP ), or including at least one first RSRP obtained by measuring the downlink reference signal at least once within the target period (T SearchDeltaP ). Furthermore, the measurement value further includes at least one first RSRP obtained by measuring at least one downlink reference signal within a set time period (T1) after the target time period. Alternatively, the measurement value further includes multiple second RSRPs obtained by measuring the downlink reference signal multiple times within a set time period (T1) after the target time period, or multiple second RSRPs obtained by measuring multiple downlink reference signals within the set time period (T1). Furthermore, the measurement value further includes multiple first SINRs obtained by measuring the multiple downlink reference signals.

[0277] A first difference between at least one first RSRP and a corresponding reference value can be determined. In response to the first differences corresponding to the at least one first RSRP being less than a first difference threshold in the benchmark information, a second difference between multiple second RSRPs and corresponding reference values ​​can be determined. In response to the second differences corresponding to the multiple second RSRPs being less than the first difference threshold, it is determined that the terminal device meets the low mobility criterion.

[0278] When the terminal device meets the low mobility criterion, it can be further determined whether the terminal device meets the good cell signal quality criterion. For example, in response to multiple first SINRs being greater than the first quality threshold value (wherein the first quality threshold is determined based on the threshold indication information), it is determined that the terminal device meets the good cell signal quality criterion, or, in response to the existence of at least one first SINR being greater than the first quality threshold, it is determined that the terminal device meets the good cell signal quality criterion.

[0279] When the terminal device satisfies both the low mobility criterion and the good cell signal quality criterion, the target event is determined to be an entry relaxation event.

[0280] In another example, the measurement value includes a target period (T SearchDeltaP ), or including at least one first RSRP obtained by measuring the downlink reference signal at least once within the target period (T SearchDeltaP). Furthermore, the measurement value further includes at least one first RSRP obtained by measuring at least one downlink reference signal within a set time period (T1) after the target time period, or further includes multiple second RSRPs obtained by measuring multiple downlink reference signals within the set time period (T1). Furthermore, the measurement value further includes multiple second SINRs obtained by measuring each of the multiple downlink reference signals multiple times within the set time period.

[0281] A first difference between at least one first RSRP and a corresponding reference value can be determined. In response to the first differences corresponding to the at least one first RSRP being less than a first difference threshold in the benchmark information, a second difference between multiple second RSRPs and corresponding reference values ​​can be determined. In response to the second differences corresponding to the multiple second RSRPs being less than the first difference threshold, it is determined that the terminal device meets the low mobility criterion.

[0282] When the terminal device meets the low mobility criterion, it can be further determined whether the terminal device meets the good cell signal quality criterion. For example, in response to the fact that multiple second SINRs corresponding to each downlink reference signal are greater than the first quality threshold, it is determined that the terminal device meets the good cell signal quality criterion; or, in response to the fact that multiple second SINRs corresponding to at least one downlink reference signal are greater than the first quality threshold, it is determined that the terminal device meets the good cell signal quality criterion.

[0283] When the terminal device satisfies both the low mobility criterion and the good cell signal quality criterion, the target event is determined to be an entry relaxation event.

[0284] For example, when Event R1-1 (Example 1 or Example 2) and Event R2-1 (Example 5, Example 6, Example 9 or Example 10) are met at the same time, it is determined that the target event triggered by the terminal device is an entry relaxation event, which can be a cell signal quality good event and a low mobility event, for example, marked as Event R3-1.

[0285] As another example, when the target event is an exit relaxation event, both embodiments may be satisfied at the same time, or only one of the two embodiments may be satisfied. Figure 6 or Figure 7 Corresponding to the embodiment, another embodiment can be Figure 9 or Figure 11 The corresponding embodiment.

[0286] In a possible implementation, the benchmark information may include a target period, a second difference threshold, and threshold indication information.

[0287] In one example, the measurement value includes at least one first RSRP obtained by measuring a downlink reference signal at least once within a target time period, or includes at least one first RSRP obtained by measuring at least one downlink reference signal within the target time period. The measurement value also includes multiple first SINRs obtained by measuring multiple downlink reference signals.

[0288] A first difference between at least one first RSRP and a corresponding reference value may be determined, and in response to the first difference corresponding to at least one first RSRP being greater than or equal to a second difference threshold in the benchmark information, it is determined that the terminal device does not meet the low mobility criterion.

[0289] A second quality threshold may also be determined based on the threshold indication information, and in response to the existence of at least one first SINR being less than or equal to the second quality threshold, it may be determined that the terminal device does not meet the good cell signal quality criterion; or, in response to multiple first SINRs being less than or equal to the second quality threshold, it may be determined that the terminal device does not meet the good cell signal quality criterion.

[0290] When the terminal device does not meet the low mobility criterion and / or the terminal device does not meet the good cell signal quality criterion, the target event is determined to be an exit relaxation event.

[0291] In another example, the measurement value includes at least one first RSRP obtained by measuring a downlink reference signal at least once within a target period, or includes at least one first RSRP obtained by measuring at least one downlink reference signal within the target period. The measurement value also includes multiple second SINRs obtained by measuring each of multiple downlink reference signals multiple times within a set time period.

[0292] A first difference between at least one first RSRP and a corresponding reference value may be determined, and in response to the first difference corresponding to at least one first RSRP being greater than or equal to a second difference threshold in the benchmark information, it is determined that the terminal device does not meet the low mobility criterion.

[0293] A second quality threshold may also be determined based on the threshold indication information, and in response to the presence of multiple second SINRs corresponding to at least one downlink reference signal being less than or equal to the second quality threshold, it may be determined that the terminal device does not meet the good cell signal quality criterion; or, in response to the presence of multiple second SINRs corresponding to each downlink reference signal being less than or equal to the second quality threshold, it may be determined that the terminal device does not meet the good cell signal quality criterion.

[0294] When the terminal device does not meet the low mobility criterion and / or the terminal device does not meet the good cell signal quality criterion, the target event is determined to be an exit relaxation event.

[0295] In another example, the measurement value includes at least one first RSRP obtained by measuring a downlink reference signal at least once within the target period, or includes at least one first RSRP obtained by measuring at least one downlink reference signal within the target period. In addition, the measurement value also includes multiple second RSRPs obtained by measuring the downlink reference signal multiple times within a set time period after the target period, or also includes multiple second RSRPs obtained by measuring multiple downlink reference signals within the set time period. The measurement value also includes multiple first SINRs obtained by measuring multiple downlink reference signals.

[0296] A first difference between at least one first RSRP and a corresponding reference value can be determined. In response to the existence of a first difference corresponding to at least one first RSRP being greater than or equal to a second difference threshold, a second difference between multiple second RSRPs and corresponding reference values ​​can be determined. In response to the existence of a second difference corresponding to at least one second RSRP being greater than or equal to the second difference threshold, it is determined that the terminal device does not meet the low mobility criterion.

[0297] A second quality threshold may also be determined based on the threshold indication information, and in response to the existence of at least one first SINR being less than or equal to the second quality threshold, it may be determined that the terminal device does not meet the good cell signal quality criterion; or, in response to multiple first SINRs being less than or equal to the second quality threshold, it may be determined that the terminal device does not meet the good cell signal quality criterion.

[0298] When the terminal device does not meet the low mobility criterion and / or the terminal device does not meet the good cell signal quality criterion, the target event is determined to be an exit relaxation event.

[0299] In another example, the measurement value includes at least one first RSRP obtained by measuring the downlink reference signal at least once within the target time period, or includes at least one first RSRP obtained by measuring at least one downlink reference signal within the target time period. In addition, the measurement value also includes multiple second RSRPs obtained by measuring the downlink reference signal multiple times within a set time period after the target time period, or also includes multiple second RSRPs obtained by measuring multiple downlink reference signals within the set time period. The measurement value also includes multiple second SINRs obtained by measuring each of the multiple downlink reference signals multiple times within the set time period.

[0300] A first difference between at least one first RSRP and a corresponding reference value can be determined. In response to the existence of a first difference corresponding to at least one first RSRP being greater than or equal to a second difference threshold, a second difference between multiple second RSRPs and corresponding reference values ​​can be determined. In response to the existence of a second difference corresponding to at least one second RSRP being greater than or equal to the second difference threshold, it is determined that the terminal device does not meet the low mobility criterion.

[0301] A second quality threshold may also be determined based on the threshold indication information, and in response to the presence of multiple second SINRs corresponding to at least one downlink reference signal being less than or equal to the second quality threshold, it may be determined that the terminal device does not meet the good cell signal quality criterion; or, in response to the presence of multiple second SINRs corresponding to each downlink reference signal being less than or equal to the second quality threshold, it may be determined that the terminal device does not meet the good cell signal quality criterion.

[0302] When the terminal device does not meet the low mobility criterion and / or the terminal device does not meet the good cell signal quality criterion, the target event is determined to be an exit relaxation event.

[0303] For example, when one of Event R1-2 (Example 3 or Example 4) or Event R2-2 (Example 7, Example 8, Example 11 or Example 12) is met, it is determined that the target event triggered by the terminal device is an exit relaxation event, and the exit relaxation event can be a non-cell signal quality good event (cell signal quality poor event) and / or a non-low mobility event (high-low mobility event), for example, marked as Event R3-2.

[0304] In any embodiment of the present disclosure, the network device may configure the reference information corresponding to the low mobility criterion through an RRC message.

[0305] As an example, the reference information of the low mobility criterion includes: target period T SearchDeltaP ; First difference threshold S SearchDeltaP and / or a second difference threshold S SearchDeltaP '.

[0306] For the low mobility criterion, the measurement value obtained by the terminal device may be L3-RSRP.

[0307] As an example, the reference information of the good cell signal quality criterion may include threshold indication information (such as Offset1 and / or Offset2).

[0308] For the good cell signal quality criterion, the measurement value obtained by the terminal device may be L1-SINR.

[0309] In any embodiment of the present disclosure, the network device may configure at least one event for RLM measurement and / or RRM measurement relaxation.

[0310] As an example: the network device can configure Event R1 for RRM measurement relaxation, that is, when the entry relaxation criteria corresponding to Event R1 are met, the RRM relaxation mechanism can be performed; the network device can configure Event R2 for RLM measurement relaxation, that is, when the entry relaxation criteria corresponding to Event R2 are met, the RLM relaxation mechanism can be performed; the network device can configure Event R1+Event R2 for RLM measurement relaxation, for example, when the entry relaxation criteria corresponding to Event R2 and Event R1 are met at the same time, the RRM relaxation mechanism can be performed; the network device can configure Event R3 (Event R3-1, Event R3-2) for RLM measurement relaxation or RRM measurement relaxation.

[0311] See Figure 12 , Figure 12 This is a flow chart of another measurement method provided by an embodiment of the present disclosure. Figure 1 The terminal device in the communication system shown in the figure performs the measurement method. The measurement method can be performed alone, or in combination with any embodiment of the present disclosure or a possible implementation manner in the embodiment, or in combination with any technical solution in the related art.

[0312] like Figure 12 As shown, the measurement method may include but is not limited to the following steps:

[0313] Step 1201: Acquire a measurement value of a target measurement, where the target measurement includes an RLM measurement and / or an RRM measurement.

[0314] Step 1202: Determine, based on the measurement value and the benchmark information corresponding to the target measurement, that the target event triggered by the terminal device is an exit / relaxation event.

[0315] Steps 1201 to 1202 may adopt the above-mentioned Figure 2 、 Figure 3 、 Figure 6 、 Figure 9 The present disclosure does not limit this and will not elaborate on it.

[0316] Step 1203: In response to the target event being an exit / relax event, a first value of a first timer is read; wherein the first timer is used to time based on the moment when the terminal device last determined that an exit / relax event was triggered.

[0317] In an embodiment of the present disclosure, the first timer is used to count based on the moment when the terminal device last determined that an exit relaxation event was triggered, that is, the first timer is used to count based on the moment when the terminal device last determined that an exit relaxation criterion was satisfied.

[0318] In an embodiment of the present disclosure, when the target event is an exit relaxation event, the value of the first timer can be read, which is recorded as the first value in the present disclosure.

[0319] Step 1204: In response to the first value being greater than the first counting threshold and the second timer not running, an exit relaxation event and / or a measurement value is sent to the network device; wherein the second timer is used to time based on the time when the terminal device last sent an exit relaxation event.

[0320] In an embodiment of the present disclosure, the second timer is configured to count based on the time when the terminal device most recently sent an exit / relax event, i.e., based on the time when the terminal device most recently triggered an exit / relax event and reported the exit / relax event to the network device. The second timer is started when the terminal device reports the exit / relax event to the network device and stops after a first set duration has elapsed.

[0321] In the embodiment of the present disclosure, the first counting threshold is preset. For example, the first counting threshold may be configured by a network device, or may be agreed upon through a protocol, and the present disclosure does not impose any restrictions on this.

[0322] In an embodiment of the present disclosure, in order to avoid the terminal device from frequently reporting information to the network device, in the present disclosure, when the first value of the first timer is greater than the first counting threshold (i.e., the first timer has timed out) and the second timer is not running, an exit relaxation event and / or a measurement value may be sent to the network device. In other words, when the duration of the exit relaxation event triggered by the terminal device (i.e., the duration of the terminal device satisfying the exit relaxation criterion) reaches the first counting threshold and the terminal device does not report the exit relaxation event to the network device within a short period of time (i.e., the first set duration), the exit relaxation event and / or the measurement value may be reported to the network device.

[0323] It should be noted that when the second timer is running, it indicates that the terminal device has reported an exit relaxation event to the network device within the first set time period. In order to avoid the terminal device from frequently calculating and reporting events, in a possible implementation method of the embodiment of the present disclosure, when the first value is greater than the first counting threshold and the second timer is running, at this time, since the terminal device has reported an exit relaxation event to the network device in a short period of time, the terminal device does not need to report the target event (i.e., the exit relaxation event) to the network device.

[0324] In a possible implementation of an embodiment of the present disclosure, when the first value of the first timer is less than or equal to the first counting threshold (i.e., the first timer has not timed out), the terminal device may not take any action or respond, for example, the terminal device does not need to report the target event (i.e., the exit relaxation event) to the network device.

[0325] In any embodiment of the present disclosure, when the target event triggered by the terminal device is an exit relaxation event, it indicates that the signal quality of the service cell is poor. At this time, it may not be restricted by the second timer, that is, when the first value of the first timer is greater than the first counting threshold, the terminal device can send the exit relaxation event and / or measurement value to the network device.

[0326] The measurement method of the embodiment of the present disclosure obtains the measurement value of the target measurement, wherein the target measurement includes RLM measurement and / or RRM measurement; determines the target event state triggered by the terminal device according to the measurement value and the benchmark information corresponding to the target measurement, wherein the target event includes: entering a relaxation event or exiting a relaxation event. As a result, the terminal device can effectively determine whether the terminal device triggers an entry relaxation event based on the measurement value of the target measurement and the benchmark information corresponding to the target measurement, so that when the terminal device triggers the entry relaxation event, the entry relaxation event can be reported to the network device to perform a relaxation mechanism and improve the endurance of the terminal device. In addition, the use of the benchmark information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device triggers an entry relaxation event or an exit relaxation event can improve the accuracy and reliability of the event determination result.

[0327] It should be noted that the above-mentioned possible implementation methods can be executed separately or in combination, and the embodiments of the present disclosure are not limited to this.

[0328] It should be noted that the setting of the first timer is for the case where no set duration is configured, and whether to report the exit relaxation event to the network device is determined according to the value of the first timer.

[0329] However, in the case of a set duration, if the target event triggered by the terminal device is an exit relaxation event, for example, Figure 7 or Figure 11 In the embodiment shown, if it is determined that the target event triggered by the terminal device is an exit relaxation event, the terminal device can determine whether the second timer is running. When the target event is an exit relaxation event and the second timer is not running, the terminal device can send the exit relaxation event and / or the measurement value to the network device; and when the target event is an exit relaxation event and the second timer is running, the terminal device may not need to send the exit relaxation event to the network device. For example, the terminal device may only send the measurement value to the network device.

[0330] Alternatively, when a set duration is configured, the second timer may not be restricted, that is, if the target event triggered by the terminal device is an exit / relax event, the terminal device may send the exit / relax event and / or the measurement value to the network device.

[0331] See Figure 13 , Figure 13 This is a flow chart of another measurement method provided by an embodiment of the present disclosure. Figure 1 The terminal device in the communication system shown in the figure performs the measurement method. The measurement method can be performed alone, or in combination with any embodiment of the present disclosure or a possible implementation manner in the embodiment, or in combination with any technical solution in the related art.

[0332] like Figure 13 As shown, the measurement method may include but is not limited to the following steps:

[0333] Step 1301: Acquire a measurement value of a target measurement, where the target measurement includes an RLM measurement and / or an RRM measurement.

[0334] Step 1302: Determine, based on the measurement value and the reference information corresponding to the target measurement, that the target event triggered by the terminal device is an enter-relaxation event.

[0335] Steps 1301 to 1302 may adopt the above-mentioned Figure 2 、 Figure 3 、 Figure 4 、 Figure 8 The present disclosure does not limit this and will not elaborate on it.

[0336] Step 1303: In response to the target event being an entry-relaxation event, read a first value of a third timer; wherein the third timer is used to time based on the moment when the terminal device determines the most recent time when the entry-relaxation event is triggered.

[0337] In an embodiment of the present disclosure, the third timer is used to count based on the moment when the terminal device last judged that a relaxation event was triggered, that is, the third timer is used to count based on the moment when the terminal device last judged that a relaxation criterion was met.

[0338] In an embodiment of the present disclosure, when the target event triggered by the terminal device is an entry relaxation event, the value of the third timer can be read, which is recorded as the second value in the present disclosure.

[0339] Step 1304: In response to the second value being greater than the second counting threshold and the fourth timer not running, send an entry relaxation event and / or a measurement value to the network device; wherein the fourth timer is used to time based on the time when the terminal device last sent an entry relaxation event.

[0340] In an embodiment of the present disclosure, a fourth timer is configured to count based on the time when the terminal device most recently sent an enter-relax event, i.e., the fourth timer is configured to count based on the time when the terminal device most recently triggered an enter-relax event and reported the enter-relax event to the network device. The fourth timer is started when the terminal device reports the enter-relax event to the network device and stops counting after a second set duration has elapsed.

[0341] In the embodiment of the present disclosure, the second counting threshold is preset. For example, the second counting threshold may be configured by the network device, or may be agreed upon through a protocol, and the present disclosure does not impose any restrictions on this.

[0342] In an embodiment of the present disclosure, in order to avoid the terminal device from frequently reporting information to the network device, in the present disclosure, when the second value of the third timer is greater than the second counting threshold (i.e., the third timer times out) and the fourth timer is not running, the entry into the relaxation state and / or the measurement value may be reported to the network device. That is, when the duration of the terminal device triggering the entry into relaxation event (i.e., the duration of the terminal device satisfying the entry into relaxation criteria) reaches the second counting threshold, and the terminal device does not report the entry into relaxation event to the network device within a short period of time (i.e., the second set duration), the entry into the relaxation state and / or the measurement value may be reported to the network device.

[0343] It should be noted that when the fourth timer is running, it indicates that the terminal device has reported the entry relaxation event to the network device within the second set time period. In order to avoid the terminal device from frequently calculating and reporting events, in a possible implementation method of the embodiment of the present disclosure, when the second value is greater than the second counting threshold and the fourth timer is running, at this time, since the terminal device has reported the entry relaxation event to the network device in a short period of time, the terminal device may not need to report the target event (i.e., the entry relaxation event) to the network device.

[0344] In one possible implementation of the embodiment of the present disclosure, when the second value of the third timer is less than or equal to the second counting threshold (i.e., the third timer has not timed out), the terminal device may take no action or respond. For example, the terminal device does not need to report the target event (i.e., the entry relaxation event) to the network device.

[0345] The measurement method of the embodiment of the present disclosure obtains the measurement value of the target measurement, wherein the target measurement includes RLM measurement and / or RRM measurement; determines the target event state triggered by the terminal device according to the measurement value and the benchmark information corresponding to the target measurement, wherein the target event includes: entering a relaxation event or exiting a relaxation event. As a result, the terminal device can effectively determine whether the terminal device triggers an entry relaxation event based on the measurement value of the target measurement and the benchmark information corresponding to the target measurement, so that when the terminal device triggers the entry relaxation event, the entry relaxation event can be reported to the network device to perform a relaxation mechanism and improve the endurance of the terminal device. In addition, the use of the benchmark information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device triggers an entry relaxation event or an exit relaxation event can improve the accuracy and reliability of the event determination result.

[0346] It should be noted that the above-mentioned possible implementation methods can be executed separately or in combination, and the embodiments of the present disclosure are not limited to this.

[0347] It should be noted that the setting of the third timer is for the case where no set duration is configured, and whether to report the entry relaxation event to the network device is determined according to the value of the third timer.

[0348] However, in the case of a set duration, if the target event triggered by the terminal device is an entry relaxation event, for example, Figure 5 or Figure 10 In the embodiment shown, if it is determined that the target event triggered by the terminal device is an entry relaxation event, the terminal device can determine whether the fourth timer is running. When the target event is an entry relaxation event and the fourth timer is not running, the terminal device can send the entry relaxation event and / or the measurement value to the network device; and when the target event is an entry relaxation event and the fourth timer is running, the terminal device may not need to send the entry relaxation event to the network device, for example, the terminal device may only send the measurement value to the network device.

[0349] Alternatively, when a set duration is configured, the fourth timer may not be restricted, that is, if the target event triggered by the terminal device is an entry relaxation event, the terminal device may send the entry relaxation event and / or measurement value to the network device.

[0350] See Figure 14 , Figure 14 This is a flow chart of another measurement method provided by an embodiment of the present disclosure. Figure 1The terminal device in the communication system shown in the figure performs the measurement method. The measurement method can be performed alone, or in combination with any embodiment of the present disclosure or a possible implementation manner in the embodiment, or in combination with any technical solution in the related art.

[0351] like Figure 14 As shown, the measurement method may include but is not limited to the following steps:

[0352] Step 1401: Acquire a measurement value of a target measurement, where the target measurement includes an RLM measurement and / or an RRM measurement.

[0353] Step 1402 : Determine a target event triggered by the terminal device according to the measurement value and the reference information corresponding to the target measurement, wherein the target event includes an enter-relax event or an exit-relax event.

[0354] Steps 1401 to 1402 may be implemented in any manner in the embodiments of the present disclosure, and the embodiments of the present disclosure do not limit this and will not be described in detail.

[0355] Step 1403: In response to the target event being an exit-relax event, sending an exit-relax event and / or a measurement value to the network device; or, in response to the target event being an entry-relax event, sending an entry-relax event and / or a measurement value to the network device.

[0356] In the disclosed embodiment, it is not necessary to determine whether to report the target event and / or the measured value to the network device according to the value of the timer. For example, when the terminal device triggers the target event, the target event and / or the measured value can be automatically reported to the network device. That is, when the target event is an exit relaxation event, the exit relaxation event and / or the measured value can be sent to the network device, and when the target event is an entry relaxation event, the entry relaxation event and / or the measured value can be sent to the network device.

[0357] The measurement method of the embodiment of the present disclosure obtains the measurement value of the target measurement, wherein the target measurement includes RLM measurement and / or RRM measurement; determines the target event state triggered by the terminal device according to the measurement value and the benchmark information corresponding to the target measurement, wherein the target event includes: entering a relaxation event or exiting a relaxation event. As a result, the terminal device can effectively determine whether the terminal device triggers an entry relaxation event based on the measurement value of the target measurement and the benchmark information corresponding to the target measurement, so that when the terminal device triggers the entry relaxation event, the entry relaxation event can be reported to the network device to perform a relaxation mechanism and improve the endurance of the terminal device. In addition, the use of the benchmark information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device triggers an entry relaxation event or an exit relaxation event can improve the accuracy and reliability of the event determination result.

[0358] It should be noted that the above-mentioned possible implementation methods can be executed separately or in combination, and the embodiments of the present disclosure are not limited to this.

[0359] See Figure 15 , Figure 15 This is a flow chart of another measurement method provided by an embodiment of the present disclosure. Figure 1 The terminal device in the communication system shown in the figure performs the measurement method. The measurement method can be performed alone, or in combination with any embodiment of the present disclosure or a possible implementation manner in the embodiment, or in combination with any technical solution in the related art.

[0360] like Figure 15 As shown, the measurement method may include but is not limited to the following steps:

[0361] Step 1501: Acquire a measurement value of a target measurement, where the target measurement includes an RLM measurement and / or an RRM measurement.

[0362] Step 1502: Determine the target event triggered by the terminal device based on the measurement value and the benchmark information corresponding to the target measurement.

[0363] Steps 1501 to 1502 may be implemented in any manner in the embodiments of the present disclosure, and the embodiments of the present disclosure do not limit this and will not be described in detail.

[0364] Step 1503 : In response to the target event being an entry-relaxation event, determining a first measurement interval for periodically performing target measurement by the terminal device in a relaxed state.

[0365] In the embodiment of the present disclosure, when the target event triggered by the terminal device is a relaxation event, a first measurement interval for periodically performing target measurements in a relaxation state preferred by the terminal device may be determined.

[0366] For example, when the terminal device has not entered a relaxed state, the terminal device can use a smaller measurement interval to periodically perform target measurement, such as once every 5 seconds. When the terminal device enters a relaxed state, the terminal device can use a larger measurement interval to periodically perform target measurement, such as once every 10 seconds. That is, the first measurement interval can be 10 seconds.

[0367] Step 1504: Send interval indication information corresponding to the first measurement interval to the network device, where the interval indication information includes a proportional coefficient between the first measurement interval and a second measurement interval configured by the network device.

[0368] In an embodiment of the present disclosure, a terminal device may send interval indication information corresponding to a first measurement interval to a network device, where the interval indication information may include a proportional coefficient between the first measurement interval and a second measurement interval configured by the network device. Thus, after receiving the interval indication information, the network device may configure the measurement interval corresponding to the terminal device based on the proportional coefficient in the interval indication information, such as configuring the measurement interval of the terminal device to be the first measurement interval.

[0369] Still taking the above example, the first measurement interval preferred by the terminal device is 10 seconds, and the second measurement interval configured by the network device is 5 seconds. The proportional coefficient is 2, and the network device can adjust the second measurement interval to 10 seconds according to the proportional coefficient.

[0370] The measurement method of the embodiment of the present disclosure obtains the measurement value of the target measurement, wherein the target measurement includes RLM measurement and / or RRM measurement; determines the target event state triggered by the terminal device according to the measurement value and the benchmark information corresponding to the target measurement, wherein the target event includes: entering a relaxation event or exiting a relaxation event. As a result, the terminal device can effectively determine whether the terminal device triggers an entry relaxation event based on the measurement value of the target measurement and the benchmark information corresponding to the target measurement, so that when the terminal device triggers the entry relaxation event, the entry relaxation event can be reported to the network device to perform a relaxation mechanism and improve the endurance of the terminal device. In addition, the use of the benchmark information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device triggers an entry relaxation event or an exit relaxation event can improve the accuracy and reliability of the event determination result.

[0371] It should be noted that the above-mentioned possible implementation methods can be executed separately or in combination, and the embodiments of the present disclosure are not limited to this.

[0372] See Figure 16 , Figure 16 This is a flow chart of another measurement method provided by an embodiment of the present disclosure. Figure 1 The terminal device in the communication system shown in the figure performs the measurement method. The measurement method can be performed alone, or in combination with any embodiment of the present disclosure or a possible implementation manner in the embodiment, or in combination with any technical solution in the related art.

[0373] like Figure 16 As shown, the measurement method may include but is not limited to the following steps:

[0374] Step 1601: Acquire a measurement value of a target measurement, where the target measurement includes an RLM measurement and / or an RRM measurement.

[0375] Step 1602: Determine, based on the measurement value and the reference information corresponding to the target measurement, that the target event triggered by the terminal device is an enter-relaxation event.

[0376] Step 1603: Send the entry relaxation event and / or measurement value to the network device.

[0377] Steps 1601 to 1603 may be implemented in any of the embodiments of the present disclosure, and the embodiments of the present disclosure do not limit this and will not be described in detail.

[0378] Step 1604: Receive a relaxation instruction sent by the network device.

[0379] In an embodiment of the present disclosure, after receiving the enter-relax event sent by the terminal device, the network device may send a relax instruction to the terminal device, where the relax instruction is used to control the terminal device to enter a relax state.

[0380] Step 1605: In response to the relax instruction, control the terminal device to enter a relax state.

[0381] In an embodiment of the present disclosure, after receiving a relax instruction sent by a network device, the terminal device may respond to the relax instruction and enter a relax state.

[0382] In a possible implementation of an embodiment of the present disclosure, the relaxation instruction may further include a target proportional coefficient, wherein the target proportional coefficient may be generated by the network device based on the proportional coefficient in the interval indication information sent by the terminal device, or the target proportional coefficient may be automatically generated by the network device, and the present disclosure does not impose any restrictions on this. After entering the relaxation state, the terminal device may determine the target measurement interval based on the target proportional coefficient in the relaxation instruction and the second measurement interval configured by the network device. For example, the product of the target proportional coefficient and the second measurement interval may be used as the target measurement interval, so that the terminal device can periodically perform target measurement according to the target measurement interval in the relaxation state.

[0383] The measurement method of the embodiment of the present disclosure obtains the measurement value of the target measurement, wherein the target measurement includes RLM measurement and / or RRM measurement; determines the target event state triggered by the terminal device according to the measurement value and the benchmark information corresponding to the target measurement, wherein the target event includes: entering a relaxation event or exiting a relaxation event. As a result, the terminal device can effectively determine whether the terminal device triggers an entry relaxation event based on the measurement value of the target measurement and the benchmark information corresponding to the target measurement, so that when the terminal device triggers the entry relaxation event, the entry relaxation event can be reported to the network device to perform a relaxation mechanism and improve the endurance of the terminal device. In addition, the use of the benchmark information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device triggers an entry relaxation event or an exit relaxation event can improve the accuracy and reliability of the event determination result.

[0384] It should be noted that the above-mentioned possible implementation methods can be executed separately or in combination, and the embodiments of the present disclosure are not limited to this.

[0385] In any embodiment of the present disclosure, the terminal device may report the target event to the network device through terminal assistance information UEAssistanceInformation (UAI for short).

[0386] As an example, the network device can configure whether the terminal device needs to perform relaxation event detection (i.e., whether the target event detection is needed) and the relevant timer value through an RRC message (e.g., RRC Reconfiguration=>otherConfig). In addition, the network device can also configure whether to allow the terminal device to report preferred relaxation parameters, which is recorded as interval indication information corresponding to the first measurement interval in this disclosure.

[0387] For example, the RRC message may include the following information:

[0388]

[0389]

[0390] Here, rlmReportTimer is the second timer or the fourth timer for preventing frequent UAI reporting in the following text; rlmReportPreferRelax is the parameter for UAI reporting in the following text.

[0391] Among them, information such as measurement values ​​and target events measured by the terminal device can be included in the RLM report (rlmReport).

[0392] As an example, the terminal device can perform UAI initialization and specific reporting content.

[0393] The terminal device can determine whether to report based on the triggered target event (entering a relaxation event or exiting a relaxation event), where the reporting category can be per terminal device (per UE) or per service cell group (per CG).

[0394] Among them, if the terminal device reports according to per UE, the SINR of the reference signal of the primary service cell (PCell) is used to determine whether the target event triggered by the terminal device is an entry relaxation event or an exit relaxation event; if the terminal device reports according to per CG, the SINR of the reference signal of the primary service cell (PCell) or the primary and secondary service cells (PScell) is used to determine whether the target event triggered by the terminal device is an entry relaxation event or an exit relaxation event.

[0395] That is, in any embodiment of the present disclosure, when the reporting category of the target event is terminal device, the measurement value and / or target event of the primary serving cell corresponding to the terminal device can be sent to the network device. That is, when the reporting category of the target event is terminal device, the terminal device can measure the downlink reference signal of the primary serving cell and determine the target event in which the terminal device is located based on the measurement value, so that the information reported to the network device is the measurement value and / or target event of the primary serving cell.

[0396] In any one embodiment of the present disclosure, when the reporting category of the target event is a cell group, the measurement value and / or target event of the main service cell in the cell group corresponding to the terminal device can be sent to the network device, or the measurement value and / or target event of the main and auxiliary service cells in the cell group corresponding to the terminal device can be sent to the network device.

[0397] For example, when the cell group is MCG, the terminal device can measure the downlink reference signal of the main service cell in the MCG, and determine the target event in which the terminal device is located based on the measurement value, so that the information reported to the network device is the measurement value and / or target event of the main service cell in the MCG corresponding to the terminal device.

[0398] When the cell group is SCG, the terminal device can measure the downlink reference signals of the primary and secondary service cells in the SCG, and determine the target event in which the terminal device is located based on the measurement value, so that the information reported to the network device is the measurement value and / or target event of the primary and secondary service cells in the SCG corresponding to the terminal device.

[0399] Among them, if the low mobility criterion or the good cell signal quality criterion is configured, the UAI message can be reported using one message, that is, the UAI message is used to report the good cell signal quality event or the non-cell signal quality good event, or the low mobility event or the non-low mobility event.

[0400] If both the low mobility criterion and the good cell signal quality criterion are configured, the reporting of the UAI message can be divided into two separate messages and reported separately, one of which is used to report the good cell signal quality event or the non-cell signal quality good event, and the other is used to report the low mobility event or the non-low mobility event. Alternatively, the reporting of the UAI message can be reported using one message, for example, the UAI message is used to report the good cell signal quality event or the non-cell signal quality good event, and is used to report the low mobility event or the non-low mobility event.

[0401] 1) UAI initialization can be:

[0402] In the case where the network device configures the terminal device to report the target event, that is, the network device configures the terminal device to report the relaxation event, if the terminal device detects the exit relaxation event (the first timer times out) and the second timer has not started, the value of the second timer is set to the timer value configured by the network device, and the second timer is started; initialize UAI transmission, and report the content to the network device in the next step. If the terminal device detects the entry relaxation event (the third timer times out) and the fourth timer has not started, set the value of the fourth timer to the timer value configured by the network device, and start the fourth timer; initialize UAI transmission, and report the information to the network device in the next step.

[0403] 2) Report content:

[0404] The terminal device can report the RLM report to the network device through UEAssistanceInformation. The RLM report includes but is not limited to: exit relaxation event, entry relaxation event, relaxation parameters preferred by the terminal device (i.e., interval indication information corresponding to the first measurement interval), measurement values, etc.

[0405] For example, if a terminal device is configured to provide RLM reporting, if the first timer times out, the terminal device is automatically triggered to report, and the target event reported is the exit-relax event, that is, the target state reported by the terminal device is the exit-relax state. If the third timer times out, the terminal device is automatically triggered to report, and the target event reported is the enter-relax event. In other words, when reporting via UAI messages, the exit-relax event can be unrestricted by the second or fourth timers.

[0406] When the terminal device is configured to report measurement results, the terminal device can report the measurement value to the network device.

[0407] In a case where the terminal device is configured to report a preferred relaxation parameter (PreferRelax), the terminal device may report interval indication information corresponding to the first measurement interval to the network device.

[0408] The definitions of relevant timers may be shown in Table 1:

[0409] Table 1

[0410]

[0411] It should be noted that each element and each corresponding relationship in Table 1 exists independently; these elements and corresponding relationships are illustratively listed in the same table, but this does not mean that all elements and corresponding relationships in the table must exist simultaneously as shown in Table 1. The value of each element and each corresponding relationship is independent of the value of any other element or corresponding relationship in Table 1. Therefore, those skilled in the art will understand that the value of each element and each corresponding relationship in Table 1 are each an independent embodiment.

[0412] In Table 1, if the UAI is configured with a low mobility criterion, the terminal device reports a low mobility event or a non-low mobility event to the network device under the restriction of the Prohibit timer.

[0413] If the UAI is configured with a good cell signal quality criterion, the terminal device reports a good cell signal quality event or a good non-cell signal quality event to the network device under the restriction of the Prohibit timer.

[0414] If the UAI is configured with the low mobility criterion and the good cell signal quality criterion, the terminal device reports the good cell signal quality event and the low mobility event to the network device under the restriction of the prohibit timer. When any one of the criteria is not met, the exit relaxation event is reported.

[0415] In any embodiment of the present disclosure, the terminal device may report the target event and / or measurement value via an RRC message, wherein the reporting category may be per UE / CG.

[0416] As an example, the network device may notify the terminal device of the measurement configuration measConfig via an RRC message, such as an RRC reconfiguration RRCReconfigurtion message, wherein the measurement configuration may be bound to a measurement object (measObject), a reporting configuration (reportConfig), and a measurement ID (measId).

[0417] The measurement object of the measurement configuration may be the serving cell of the terminal device;

[0418] The reporting configuration of the measurement configuration may be based on event triggering.

[0419] Upon receiving a measurement configuration, the terminal device can execute the corresponding measurement process. If the measured value meets the conditions corresponding to the aforementioned event, a report is automatically triggered. The report information may include: the measured value and / or, if the entry conditions of the event are met, that is, the target event is an entry relaxation event. If the measured value meets the exit conditions corresponding to the aforementioned event, a report is automatically triggered. The report information may include: the measured value and / or, if the exit conditions are met, that is, the target event is an exit relaxation event.

[0420] See Figure 17 , Figure 17 This is a flow chart of another measurement method provided by an embodiment of the present disclosure. Figure 1 The network equipment in the communication system shown is implemented.

[0421] like Figure 17 As shown, the measurement method may include but is not limited to the following steps:

[0422] Step 1701: Receive a target event and / or measurement value sent by a terminal device, wherein the measurement value is a measurement value of a target measurement, and the target measurement includes a radio link monitoring RLM measurement and / or a radio resource management RRM measurement; the target event is determined based on the measurement value and the benchmark information corresponding to the target measurement, and the target event includes: entering a relaxation event or exiting a relaxation event.

[0423] In a possible implementation of the embodiment of the present disclosure, the network device may further send reference information to the terminal device.

[0424] In a possible implementation of the embodiment of the present disclosure, the network device may further send a relax instruction to the terminal device in response to the target event being a relax event, wherein the relax instruction is used to control the terminal device to enter a relax state.

[0425] It should be noted that the explanation of the measurement method performed by the terminal device in any of the aforementioned embodiments is also applicable to the measurement method performed by the network device. The implementation principles are similar and will not be repeated here.

[0426] The measurement method of the embodiment of the present disclosure receives the target event and / or measurement value sent by the terminal device through the network device, wherein the measurement value is the measurement value of the target measurement, and the target measurement includes RLM measurement and / or RRM measurement; the target event is determined based on the measurement value and the benchmark information corresponding to the target measurement, and the target event includes: entering a relaxation event or exiting a relaxation event. As a result, it is possible for the terminal device to effectively determine whether the terminal device triggers an entry relaxation event based on the measurement value of the target measurement and the benchmark information corresponding to the target measurement, so that when the terminal device triggers the entry relaxation event, the entry relaxation event can be reported to the network device to perform a relaxation mechanism and improve the endurance of the terminal device. In addition, the use of the benchmark information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device triggers an entry relaxation event or an exit relaxation event can improve the accuracy and reliability of the event determination result.

[0427] It should be noted that the above-mentioned possible implementation methods can be executed separately or in combination, and the embodiments of the present disclosure are not limited to this.

[0428] In the embodiments provided above, the methods provided in the embodiments of the present disclosure are described from the perspective of terminal devices and network devices. To implement the various functions of the methods provided in the embodiments of the present disclosure, the terminal devices and network devices may include hardware structures and software modules, and the aforementioned functions may be implemented in the form of hardware structures, software modules, or hardware structures and software modules. Certain of the aforementioned functions may be implemented in the form of hardware structures, software modules, or hardware structures and software modules.

[0429] See Figure 18 , which is a structural diagram of a measuring device 180 provided in an embodiment of the present disclosure. Figure 18 The measuring device 180 shown may include a processing unit 1801 and a transceiver unit 1802. The transceiver unit 1802 may include a transmitting unit and / or a receiving unit, wherein the transmitting unit is configured to implement a transmitting function and the receiving unit is configured to implement a receiving function. The transceiver unit may implement a transmitting function and / or a receiving function.

[0430] The measuring device 180 can be a terminal device, a device in a terminal device, or a device that can be used in conjunction with a terminal device; or, the measuring device 180 can be a network device, a device in a network device, or a device that can be used in conjunction with a network device.

[0431] When the measuring device 180 is a terminal device: the processing unit 1801 is used to obtain the measurement value of the target measurement, wherein the target measurement includes the radio link monitoring RLM measurement and / or the radio resource management RRM measurement; and determine the target event triggered by the terminal device according to the measurement value and the benchmark information corresponding to the target measurement, wherein the target event includes entering a relaxation event or exiting a relaxation event.

[0432] In some embodiments, the processing unit 1801 is specifically configured to measure a downlink reference signal of a serving cell of the terminal device to obtain a measurement value.

[0433] In some embodiments, the reference information is sent by a network device and is applicable to a primary serving cell and / or a secondary serving cell.

[0434] In some embodiments, the measurement value also includes multiple second RSRPs obtained by measuring the downlink reference signal multiple times within a set time period after the target time period, or includes multiple second RSRPs obtained by measuring multiple downlink reference signals within a set time period. The processing unit 1801 is specifically used to determine a first difference between at least one first RSRP and a corresponding reference value; wherein the reference value corresponding to the first RSRP is measured by the terminal device before measuring the first RSRP; in response to the first differences corresponding to at least one first RSRP being less than the first difference threshold, the target event is determined to be an entry relaxation event.

[0435] In some embodiments, the measurement value also includes multiple second RSRPs obtained by measuring the downlink reference signal multiple times within a set time period after the target time period, or includes multiple second RSRPs obtained by measuring multiple downlink reference signals within a set time period; the processing unit 1801 is specifically used to determine the second difference between the multiple second RSRPs and the corresponding reference values ​​in response to the first differences corresponding to the multiple first RSRPs being less than the first difference threshold; wherein the reference value corresponding to the second RSRP is measured by the terminal device before measuring the second RSRP; in response to the second differences corresponding to the multiple second RSRPs being less than the first difference threshold, the target event is determined to be an entry relaxation event.

[0436] In some embodiments, the benchmark information includes: a target time period and a second difference threshold, the measurement value includes at least one first reference signal received power RSRP obtained by measuring the downlink reference signal at least once within the target time period, or includes at least one first RSRP obtained by measuring at least one downlink reference signal within the target time period; the processing unit 1801 is specifically used to determine a first difference between at least one first RSRP and a corresponding reference value; wherein the reference value corresponding to the first RSRP is measured by the terminal device before measuring the first RSRP; in response to the existence of a first difference corresponding to at least one first RSRP greater than or equal to the second difference threshold, the target event is determined to be an exit relaxation event.

[0437] In some embodiments, the measurement value also includes multiple second RSRPs obtained by measuring the downlink reference signal multiple times within a set time period after the target time period, or includes multiple second RSRPs obtained by measuring multiple downlink reference signals within a set time period; the processing unit 1801 is specifically used to determine the second difference between the multiple second RSRPs and the corresponding reference values ​​in response to the existence of a first difference corresponding to at least one first RSRP being greater than or equal to a second difference threshold; wherein the reference value corresponding to the second RSRP is measured by the terminal device before measuring the second RSRP; in response to the existence of a second difference corresponding to at least one second RSRP being greater than or equal to the second difference threshold, the target event is determined to be an exit relaxation event.

[0438] In some embodiments, the reference value is updated in the following manner: in response to the terminal device performing a cell switching, the corresponding reference value is updated according to the first RSRP; or, in response to the difference between the first RSRP and the corresponding reference value is greater than a third difference threshold, the corresponding reference value is updated according to the first RSRP; or, in response to the first difference of the first RSRP being not less than the first difference threshold within the target time period, the corresponding reference value is updated according to the first RSRP, or, in response to the first difference of the first RSRP being less than the second difference threshold within the target time period, the corresponding reference value is updated according to the first RSRP.

[0439] In some embodiments, the reference value is updated in the following manner: in response to the terminal device performing a cell switching, the corresponding reference value is updated according to the second RSRP; or, in response to the difference between the second RSRP and the corresponding reference value being greater than a third difference threshold, the corresponding reference value is updated according to the first RSRP; or, in response to the second difference of the second RSRP being not less than the first difference threshold within a set time length, the corresponding reference value is updated according to the second RSRP, or, in response to the second difference of the second RSRP being less than the second difference threshold within a set time length, the corresponding reference value is updated according to the second RSRP.

[0440] In some embodiments, the measurement value includes multiple first signal-to-interference-and-noise ratios (SINRs) obtained by measuring multiple downlink reference signals, and the benchmark information includes: threshold indication information; a processing unit 1801 is specifically used to determine a first quality threshold based on the threshold indication information; in response to multiple first SINRs being greater than the first quality threshold, determining that the target event is an entry relaxation event; or, in response to at least one first SINR being greater than the first quality threshold, determining that the target event is an entry relaxation event.

[0441] In some embodiments, the measurement value includes multiple first SINRs obtained by measuring multiple downlink reference signals, and the benchmark information includes: threshold indication information; processing unit 1801 is specifically used to determine the second quality threshold based on the threshold indication information; in response to the existence of at least one first SINR less than or equal to the second quality threshold, determine that the target event is an exit relaxation event; or, in response to multiple first SINRs all being less than or equal to the second quality threshold, determine that the target event is an exit relaxation event.

[0442] In some embodiments, the measurement value includes multiple second SINRs obtained by measuring each downlink reference signal in multiple times within a set time period, and the benchmark information includes: threshold indication information; a processing unit 1801 is specifically used to determine a first quality threshold based on the threshold indication information; in response to the multiple second SINRs corresponding to each downlink reference signal being greater than the first quality threshold, determining that the target event is an entry relaxation event; or, in response to the existence of multiple second SINRs corresponding to at least one downlink reference signal being greater than the first quality threshold, determining that the target event is an entry relaxation event.

[0443] In some embodiments, the measurement value includes multiple second SINRs obtained by measuring each downlink reference signal in multiple times within a set time period, and the benchmark information includes: threshold indication information; processing unit 1801 is specifically used to determine the second quality threshold based on the threshold indication information; in response to the existence of multiple second SINRs corresponding to at least one downlink reference signal that are all less than or equal to the second quality threshold, determining that the target event is an exit relaxation event; or, in response to the multiple second SINRs corresponding to each downlink reference signal being less than or equal to the second quality threshold, determining that the target event is an exit relaxation event.

[0444] In some embodiments, the processing unit 1801 is further used to read the first value of the first timer in response to the target event being an exit / relax event; wherein the first timer is used to time based on the moment when the terminal device last determined that the exit / relax event was triggered.

[0445] The transceiver unit 1802 is used to send an exit relaxation event and / or a measurement value to the network device in response to the first value being greater than the first counting threshold and the second timer is not running; wherein the second timer is used to time based on the time when the terminal device last sent the exit relaxation event.

[0446] In some embodiments, the processing unit 1801 is further used to read the first value of the third timer in response to the target event being an entry relaxation event; wherein the third timer is used to time based on the moment when the terminal device last determined to trigger an entry relaxation event.

[0447] The transceiver unit 1802 is also used to send an entry relaxation event and / or a measurement value to the network device in response to the second value being greater than the second counting threshold and the fourth timer is not running; wherein the fourth timer is used to time based on the time when the terminal device last sent an entry relaxation event.

[0448] In some embodiments, the transceiver unit 1802 is also used to send an exit relaxation event and / or a measurement value to the network device in response to the target event being an exit relaxation event and the second timer is not running; wherein the second timer is used to time based on the time when the terminal device last sent an exit relaxation event.

[0449] In some embodiments, the transceiver unit 1802 is also used to send an entry relaxation event and / or a measurement value to the network device in response to the target event being an entry relaxation event and the fourth timer is not running; wherein the fourth timer is used to time based on the time when the terminal device last sent an entry relaxation event.

[0450] In some embodiments, the transceiver unit 1802 is also used to send the measurement value and / or target event of the main service cell corresponding to the terminal device to the network device in response to the reporting category of the target event being a terminal device; send the measurement value and / or target event of the main service cell in the cell group corresponding to the terminal device to the network device in response to the reporting category of the target event being a cell group, or send the measurement value and / or target event of the main and auxiliary service cells in the cell group corresponding to the terminal device to the network device.

[0451] In some embodiments, the transceiver unit 1802 is further configured to send an exit-relax event and / or a measurement value to the network device in response to the target event being an exit-relax event; and to send an entry-relax event and / or a measurement value to the network device in response to the target event being an entry-relax event.

[0452] In some embodiments, the processing unit 1801 is further configured to, in response to the target event being an entry-relaxation event, determine a first measurement interval for the terminal device to periodically perform target measurement in a relaxed state.

[0453] The transceiver unit 1802 is further configured to send interval indication information corresponding to the first measurement interval to the network device, where the interval indication information includes a proportional coefficient between the first measurement interval and a second measurement interval configured by the network device.

[0454] In some embodiments, the transceiver unit 1802 is further configured to receive a relax instruction sent by a network device.

[0455] The processing unit 1801 is further configured to: in response to a relax instruction, control the terminal device to enter a relax state.

[0456] In some embodiments, the relaxation instruction includes a target proportional coefficient, and the processing unit 1801 is further used to: determine the target measurement interval based on the target proportional coefficient and the second measurement interval configured by the network device; and perform target measurement periodically according to the target measurement interval in the relaxation state.

[0457] When the measuring device 180 is a network device: the transceiver unit 1802 is used to receive the target event and / or measurement value sent by the terminal device, wherein the measurement value is the measurement value of the target measurement, and the target measurement includes the radio link monitoring RLM measurement and / or the radio resource management RRM measurement; the target event is determined based on the measurement value and the benchmark information corresponding to the target measurement, and the target event includes: entering a relaxation event or exiting a relaxation event.

[0458] In some embodiments, the transceiver unit 1802 is further configured to send reference information to the terminal device.

[0459] In some embodiments, the transceiver unit 1802 is further configured to send a relax instruction to the terminal device in response to the target event being a relax event, wherein the relax instruction is configured to control the terminal device to enter a relax state.

[0460] It should be noted that the aforementioned Figures 2 to 16 An explanation of the method executed on the terminal device side in any embodiment, or the aforementioned Figure 17 The explanation of the method executed on the network device side in the embodiment is also applicable to the measurement device 180 of this embodiment. The implementation principle is similar and will not be described in detail here.

[0461] See Figure 19 , Figure 19 This is a schematic diagram of the structure of another measurement device provided in an embodiment of the present disclosure. Measurement device 190 can be a terminal device or network device, or can be a chip, chip system, or processor that supports the terminal device or network device in implementing the above-mentioned method. This device can be used to implement the method described in the above-mentioned method embodiment. For details, please refer to the description of the above-mentioned method embodiment.

[0462] The measurement device 190 may include one or more processors 1901. Processor 1901 may be a general-purpose processor or a dedicated processor. For example, it may be a baseband processor or a central processing unit (CPU). The baseband processor may be used to process communication protocols and communication data, while the CPU may be used to control the measurement device (e.g., a base station, a baseband chip, a terminal device, a terminal device chip, a DU or CU, etc.), execute computer programs, and process computer program data.

[0463] Optionally, the measuring device 190 may further include one or more memories 1902, on which a computer program 1903 may be stored. The processor 1901 executes the computer program 1903 to cause the measuring device 190 to perform the method described in the above method embodiment. The computer program 1903 may be fixed in the processor 1901, in which case the processor 1901 may be implemented by hardware.

[0464] Optionally, data may also be stored in the memory 1902. The measuring device 190 and the memory 1902 may be provided separately or integrated together.

[0465] Optionally, the measuring device 190 may further include a transceiver 1905 and an antenna 1906. The transceiver 1905 may be referred to as a transceiver unit, a transceiver, or a transceiver circuit, and is configured to implement transceiver functions. The transceiver 1905 may include a receiver and a transmitter. The receiver may be referred to as a receiver or a receiving circuit, and is configured to implement a receiving function; the transmitter may be referred to as a transmitter or a transmitting circuit, and is configured to implement a transmitting function.

[0466] Optionally, the measuring device 190 may further include one or more interface circuits 1907. The interface circuit 1907 is configured to receive code instructions and transmit the code instructions to the processor 1901. The processor 1901 executes the code instructions to enable the measuring device 190 to execute the method described in the above method embodiment.

[0467] The measuring device 190 is a terminal device: the processor 1901 is used to execute the above Figures 2 to 16 Any method embodiment.

[0468] The measuring device 190 is a network device: the processor 1901 is used to execute the above Figure 17 The method embodiment shown.

[0469] It should be noted that the aforementioned Figures 2 to 17 The explanation of the measurement method in any embodiment is also applicable to the measurement device 190 of this embodiment. The implementation principle is similar and will not be described in detail here.

[0470] In one implementation, processor 1901 may include a transceiver for implementing receiving and transmitting functions. For example, the transceiver may be a transceiver circuit, an interface, or an interface circuit. The transceiver circuit, interface, or interface circuit for implementing the receiving and transmitting functions may be separate or integrated. The transceiver circuit, interface, or interface circuit may be used for reading and writing code / data, or may be used for transmitting or delivering signals.

[0471] In one implementation, the measuring device 190 may include a circuit that can implement the functions of sending, receiving, or communicating in the aforementioned method embodiments. The processor and transceiver described in the present disclosure can be implemented on an integrated circuit (IC), an analog IC, a radio frequency integrated circuit RFIC, a mixed signal IC, an application specific integrated circuit (ASIC), a printed circuit board (PCB), an electronic device, etc. The processor and transceiver can also be manufactured using various IC process technologies, such as complementary metal oxide semiconductor (CMOS), N-type metal oxide semiconductor (nMetal-oxide-semiconductor, NMOS), P-type metal oxide semiconductor (positive channel metal oxide semiconductor, PMOS), bipolar junction transistor (bipolar junction transistor, BJT), bipolar CMOS (BiCMOS), silicon germanium (SiGe), gallium arsenide (GaAs), etc.

[0472] The measuring device described in the above embodiments may be a terminal device or a network device, but the scope of the measuring device described in the present disclosure is not limited thereto, and the structure of the measuring device may not be limited thereto. Figure 19 The measuring device may be a stand-alone device or may be part of a larger device. For example, the measuring device may be:

[0473] (1) An independent integrated circuit (IC), or chip, or chip system or subsystem;

[0474] (2) a collection of one or more ICs, optionally including a storage component for storing data and computer programs;

[0475] (3) ASIC, such as modem;

[0476] (4) Modules that can be embedded in other devices;

[0477] (5) Receivers, terminal devices, intelligent terminal devices, cellular phones, wireless devices, handheld devices, mobile units, vehicle-mounted devices, network devices, cloud devices, artificial intelligence devices, etc.;

[0478] (6)Others, etc.

[0479] For the case where the measuring device can be a chip or a chip system, see Figure 20 Schematic diagram of the chip structure shown. Figure 20 The chip shown includes a processor 2001 and an interface 2002. There may be one or more processors 2001 and there may be more than one interface 2002.

[0480] For the case where the chip is used to implement the functions of the terminal device in the embodiments of the present disclosure:

[0481] Interface 2002, used for transmitting code instructions to the processor;

[0482] Processor 2001 is used to execute code instructions to perform the following Figures 2 to 16 The method shown in any one of the embodiments.

[0483] For the case where the chip is used to implement the functions of the network device in the embodiments of the present disclosure:

[0484] Interface 2002, used for transmitting code instructions to the processor;

[0485] Processor 2001 is used to execute code instructions to perform the following Figure 17 The method shown in the embodiment.

[0486] Optionally, the chip further includes a memory 2003, which is used to store necessary computer programs and data.

[0487] It should be noted that the aforementioned Figures 2 to 17 The explanation of the measurement method in any embodiment is also applicable to the chip of this embodiment. The implementation principle is similar and will not be described in detail here.

[0488] Those skilled in the art will also appreciate that the various illustrative logical blocks and steps listed in the embodiments of the present disclosure may be implemented by electronic hardware, computer software, or a combination of both. Whether such functionality is implemented by hardware or software depends on the specific application and the design requirements of the entire system. Those skilled in the art may use various methods to implement functionality for each specific application, but such implementation should not be construed as exceeding the scope of protection of the embodiments of the present disclosure.

[0489] The present disclosure also provides a communication system comprising the aforementioned Figure 19 In the embodiment, the measuring device is used as a terminal device or a network device, or the system includes the aforementioned Figure 20 In the embodiment, the measuring device is used as a terminal device or a network device.

[0490] The present disclosure also provides a readable storage medium having instructions stored thereon, which implement the functions of any of the above method embodiments when executed by a computer.

[0491] The present disclosure also provides a computer program product, which implements the functions of any of the above method embodiments when executed by a computer.

[0492] In the above embodiments, all or part of the embodiments can be implemented by software, hardware, firmware or any combination thereof. When implemented using software, all or part of the embodiments can be implemented in the form of a computer program product. The computer program product includes one or more computer programs. When the computer program is loaded and executed on a computer, all or part of the processes or functions described in the embodiments of the present disclosure are generated. The computer can be a general-purpose computer, a special-purpose computer, a computer network, or other programmable device. The computer program can be stored in a computer-readable storage medium or transmitted from one computer-readable storage medium to another computer-readable storage medium. For example, the computer program can be transmitted from one 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 computer-readable storage medium can be any available medium that can be accessed by a computer or a data storage device such as a server or data center that includes one or more available media integrated therein. The available medium may be a magnetic medium (eg, a floppy disk, a hard disk, a magnetic tape), an optical medium (eg, a high-density digital video disc (DVD)), or a semiconductor medium (eg, a solid state disk (SSD)).

[0493] Those skilled in the art will understand that the various numerical numbers such as first and second involved in the present disclosure are only for the convenience of description and are not used to limit the scope of the embodiments of the present disclosure, and also indicate the order of precedence.

[0494] The at least one in the present disclosure can also be described as one or more, and the multiple can be two, three, four or more, which is not limited in the present disclosure. In the embodiments of the present disclosure, for a technical feature, the technical features in the technical feature are distinguished by "first", "second", "third", "A", "B", "C" and "D", and there is no order of precedence or size between the technical features described by "first", "second", "third", "A", "B", "C" and "D".

[0495] It is understood that in this disclosure, "plurality" refers to two or more than two, and other quantifiers are similar. "And / or" describes the association relationship of related objects, indicating that three relationships may exist. For example, A and / or B can mean: A exists alone, A and B exist at the same time, and B exists alone. The character " / " generally indicates that the related objects before and after are in an "or" relationship. The singular forms "a", "the" and "the" are also intended to include the plural forms, unless the context clearly indicates otherwise.

[0496] The word "if" as used herein may be interpreted as "when" or "when" or "in response to determining."

[0497] The correspondences shown in the tables of the present disclosure can be configured or predefined. The values ​​of the information in each table are merely examples and can be configured to other values, which are not limited by the present disclosure. When configuring the correspondences between information and parameters, it is not necessarily required to configure all the correspondences shown in each table. For example, in the tables of the present disclosure, the correspondences shown in certain rows may not be configured. For another example, appropriate deformation adjustments can be made based on the above tables, such as splitting, merging, etc. The names of the parameters shown in the titles of the above tables may also adopt other names that can be understood by the communication device, and the values ​​or representations of the parameters may also adopt other values ​​or representations that can be understood by the communication device. When implementing the above tables, other data structures may also be used, such as arrays, queues, containers, stacks, linear lists, pointers, linked lists, trees, graphs, structures, classes, heaps, hash tables or hash tables, etc.

[0498] The predefined in the present disclosure may be understood as defined, predefined, stored, pre-stored, pre-negotiated, pre-configured, solidified, or pre-burned.

[0499] Those skilled in the art will appreciate that the units and algorithm steps of each example described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, or a combination of computer software and electronic hardware. Whether these functions are performed in hardware or software depends on the specific application and design constraints of the technical solution. Professionals and technicians can use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of this disclosure.

[0500] Those skilled in the art will clearly understand that, for the convenience and brevity of description, the specific working processes of the systems, devices and units described above can refer to the corresponding processes in the aforementioned method embodiments and will not be repeated here.

[0501] The above description is merely a specific embodiment of the present disclosure, but the scope of protection of the present disclosure is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this disclosure should be included in the scope of protection of the present disclosure. Therefore, the scope of protection of the present disclosure should be based on the scope of protection of the claims.

Claims

1. A measurement method, characterized in that: The method is executed by a terminal device and includes: Obtaining a measurement value of a target measurement, wherein the target measurement includes a radio link monitoring (RLM) measurement; Determining a target event triggered by the terminal device according to the measurement value and benchmark information corresponding to the target measurement, wherein the benchmark information is sent by a network device and is applicable to a primary serving cell, and the target event includes an entry relaxation event or an exit relaxation event; The reference information includes a target period, a first difference threshold, and a second difference threshold; the measurement value includes at least one first reference signal received power RSRP obtained by measuring a downlink reference signal at least once within the target period, or includes at least one first RSRP obtained by measuring at least one downlink reference signal within the target period; wherein the downlink reference signal is an RLM-RS, and the RLM-RS includes an SSB-RS and / or a CSI-RS; The determining, according to the measurement value and the benchmark information corresponding to the target measurement, a target event triggered by the terminal device includes: Determining a first difference between the at least one first RSRP and a corresponding reference value; wherein the reference value corresponding to the first RSRP is measured by the terminal device before measuring the first RSRP; In response to at least one first difference corresponding to the first RSRP being smaller than the first difference threshold, determining that the target event is a relaxation event; In response to at least one first difference corresponding to the first RSRP being greater than or equal to the second difference threshold, determining that the target event is an exit relaxation event; The reference value is updated in the following manner: in response to the terminal device performing a cell handover, updating the corresponding reference value according to the first RSRP; or, in response to the difference between the first RSRP and the corresponding reference value being greater than a third difference threshold, updating the corresponding reference value according to the first RSRP; or, in response to the first difference of the first RSRP being not less than the first difference threshold within the target time period, updating the corresponding reference value according to the first RSRP, or, in response to the first difference of the first RSRP being less than the second difference threshold within the target time period, updating the corresponding reference value according to the first RSRP; The method further includes: in response to the target event being an exit-relax event and the second timer not running, sending the exit-relax event and / or the measurement value to the network device; wherein the second timer is used to count based on the time when the terminal device last sent the exit-relax event; Alternatively, in response to the target event being an entry-relax event and the fourth timer not running, sending an entry-relax event and / or the measurement value to the network device; wherein the fourth timer is used to count based on the time when the terminal device last sent the entry-relax event; The method further includes: in response to the reporting category of the target event being a terminal device, sending the measurement value and / or the target event of the primary serving cell corresponding to the terminal device to a network device; In response to the reporting category of the target event being a cell group, sending the target event of the primary serving cell in the cell group corresponding to the terminal device to the network device, or sending the target event of the primary and secondary serving cells in the cell group corresponding to the terminal device to the network device; The method further includes: in response to the target event being an entry relaxation event, determining a first measurement interval for the terminal device to periodically perform target measurement in a relaxation state; Sending interval indication information corresponding to the first measurement interval to the network device, wherein the interval indication information includes a proportional coefficient between the first measurement interval and a second measurement interval configured by the network device.

2. The method according to claim 1, characterized in that The obtaining of the measured value of the target measurement includes: The downlink reference signal of the service cell of the terminal device is measured to obtain the measurement value.

3. The method according to any one of claims 1-2, characterized in that The measurement value includes a plurality of first signal-to-interference-and-noise ratios (SINRs) obtained by measuring a plurality of downlink reference signals, and the benchmark information includes: threshold indication information; Determining whether the terminal device meets a good cell signal quality criterion according to the measurement value and the benchmark information corresponding to the target measurement includes: determining a first quality threshold according to the threshold indication information; In response to multiple first SINRs being greater than the first quality threshold, it is determined that the terminal device meets the good cell signal quality criterion; or, in response to the existence of at least one first SINR being greater than the first quality threshold, it is determined that the terminal device meets the good cell signal quality criterion.

4. The method according to claim 1, wherein The measurement value further includes a plurality of second RSRPs obtained by measuring a downlink reference signal multiple times within a set duration after the target period, or includes a plurality of second RSRPs obtained by measuring a plurality of downlink reference signals within the set duration; In response to at least one first difference corresponding to the first RSRP being smaller than the first difference threshold, determining that the target event is a relaxation event includes: In response to first differences corresponding to the plurality of first RSRPs being less than the first difference threshold, determining second differences between the plurality of second RSRPs and corresponding reference values; In response to second differences corresponding to a plurality of second RSRPs being smaller than the first difference threshold, determining that the target event is a relaxation event.

5. The method according to claim 1, wherein The measurement value further includes a plurality of second RSRPs obtained by measuring a downlink reference signal multiple times within a set duration after the target period, or includes a plurality of second RSRPs obtained by measuring a plurality of downlink reference signals within the set duration; In response to at least one first difference corresponding to the first RSRP being greater than or equal to the second difference threshold, determining that the target event is an exit relaxation event includes: In response to at least one first RSRP corresponding to a first difference being greater than or equal to the second difference threshold, determining second differences between a plurality of second RSRPs and corresponding reference values; In response to at least one second difference corresponding to the second RSRP being greater than or equal to the second difference threshold, the target event is determined to be an exit relaxation event.

6. The method according to claim 4 or 5, characterized in that The reference value is updated by: In response to the terminal device performing a cell handover, updating a corresponding reference value according to the second RSRP; or, In response to a difference between the second RSRP and the corresponding reference value being greater than a third difference threshold, updating the corresponding reference value according to the first RSRP; or, In response to the second difference of the second RSRP being not less than the first difference threshold within the set duration, the corresponding reference value is updated according to the second RSRP, or, in response to the second difference of the second RSRP being less than the second difference threshold within the set duration, the corresponding reference value is updated according to the second RSRP.

7. The method according to claim 1, characterized in that The measurement value includes a plurality of first signal-to-interference-and-noise ratios (SINRs) obtained by measuring a plurality of downlink reference signals, and the benchmark information includes: threshold indication information; The determining, according to the measurement value and the benchmark information corresponding to the target measurement, a target event triggered by the terminal device includes: determining a first quality threshold according to the threshold indication information; In response to multiple first SINRs being greater than the first quality threshold, the target event is determined to be an entry relaxation event; or in response to at least one first SINR being greater than the first quality threshold, the target event is determined to be an entry relaxation event.

8. The method according to claim 1, characterized in that The measurement value includes a plurality of first SINRs obtained by measuring a plurality of downlink reference signals, and the benchmark information includes: threshold indication information; The determining, according to the measurement value and the benchmark information corresponding to the target measurement, a target event triggered by the terminal device includes: determining a second quality threshold according to the threshold indication information; In response to at least one of the first SINRs being less than or equal to the second quality threshold, the target event is determined to be an exit relaxation event; or, in response to multiple first SINRs being less than or equal to the second quality threshold, the target event is determined to be an exit relaxation event.

9. The method according to claim 1, characterized in that The measurement value includes a plurality of second SINRs obtained by measuring each of the plurality of downlink reference signals multiple times within a set time period, and the benchmark information includes: threshold indication information; The determining, according to the measurement value and the benchmark information corresponding to the target measurement, a target event triggered by the terminal device includes: determining a first quality threshold according to the threshold indication information; In response to the fact that multiple second SINRs corresponding to each downlink reference signal are greater than the first quality threshold, the target event is determined to be an entry relaxation event; or, in response to the fact that multiple second SINRs corresponding to at least one downlink reference signal are greater than the first quality threshold, the target event is determined to be an entry relaxation event.

10. The method according to claim 1, characterized in that The measurement value includes a plurality of second SINRs obtained by measuring each of the plurality of downlink reference signals multiple times within a set time period, and the benchmark information includes: threshold indication information; The determining, according to the measurement value and the benchmark information corresponding to the target measurement, a target event triggered by the terminal device includes: determining a second quality threshold according to the threshold indication information; In response to the existence of multiple second SINRs corresponding to at least one downlink reference signal being less than or equal to a second quality threshold, determining that the target event is an exit relaxation event; or, in response to multiple second SINRs corresponding to each downlink reference signal being less than or equal to the second quality threshold, determining that the target event is an exit relaxation event.

11. The method according to any one of claims 1 to 2 and 8, characterized in that: The method further comprises: In response to the target event being an exit / relax event, reading a first value of a first timer; wherein the first timer is used to count based on the moment when the terminal device most recently determined that an exit / relax event was triggered; In response to the first value being greater than the first counting threshold and the second timer not running, an exit relaxation event and / or the measurement value is sent to the network device; wherein the second timer is used to time based on the time when the terminal device last sent the exit relaxation event.

12. The method according to any one of claims 1 to 2 and 7, characterized in that: The method further comprises: In response to the target event being an entry-relaxation event, reading a first value of a third timer; wherein the third timer is configured to count time based on a time when the terminal device most recently determines that a triggering of an entry-relaxation event is triggered; In response to the second value being greater than the second counting threshold and the fourth timer not running, sending an entry relaxation event and / or the measurement value to the network device; wherein the fourth timer is used to time based on the time when the terminal device last sent an entry relaxation event.

13. The method according to any one of claims 1-2, 4-5, 7-10, characterized in that The method further comprises: In response to the target event being an exit / relax event, sending the exit / relax event and / or the measurement value to the network device; In response to the target event being an entry-relax event, sending an entry-relax event and / or the measurement value to the network device.

14. A measurement method, characterized in that: The method is performed by a network device and includes: Sending benchmark information to the terminal device, where the benchmark information is applicable to the primary serving cell; Receiving at least one of a target event and a measurement value sent by a terminal device, wherein the measurement value is a measurement value of a target measurement, and the target measurement includes a radio link monitoring (RLM) measurement; the target event is determined based on the measurement value and benchmark information corresponding to the target measurement, and the target event includes: entering a relaxation event or exiting a relaxation event; The reference information includes a target period, a first difference threshold, and a second difference threshold; the measurement value includes at least one first reference signal received power RSRP obtained by measuring a downlink reference signal at least once within the target period, or includes at least one first RSRP obtained by measuring at least one downlink reference signal within the target period; wherein the downlink reference signal is an RLM-RS, and the RLM-RS includes an SSB-RS and / or a CSI-RS; The terminal device determines, according to the measurement value and the benchmark information corresponding to the target measurement, a target event triggered by the terminal device, including: Determining a first difference between the at least one first RSRP and a corresponding reference value; wherein the reference value corresponding to the first RSRP is measured by the terminal device before measuring the first RSRP; In response to at least one first difference corresponding to the first RSRP being smaller than the first difference threshold, determining that the target event is a relaxation event; In response to at least one first difference corresponding to the first RSRP being greater than or equal to the second difference threshold, determining that the target event is an exit relaxation event; The reference value is updated in the following manner: in response to the terminal device performing a cell handover, updating the corresponding reference value according to the first RSRP; or, in response to the difference between the first RSRP and the corresponding reference value being greater than a third difference threshold, updating the corresponding reference value according to the first RSRP; or, in response to the first difference of the first RSRP being not less than the first difference threshold within the target time period, updating the corresponding reference value according to the first RSRP, or, in response to the first difference of the first RSRP being less than the second difference threshold within the target time period, updating the corresponding reference value according to the first RSRP; The receiving at least one of the target event and the measurement value sent by the terminal device includes: receiving an exit-relax event and / or the measurement value sent by the terminal device to the network device in response to the target event being an exit-relax event and the second timer not running; wherein the second timer is used to count based on the time when the terminal device last sent the exit-relax event; Alternatively, receiving an entry-relax event and / or the measurement value sent by the terminal device to the network device in response to the target event being an entry-relax event and the fourth timer not running; wherein the fourth timer is configured to count based on the time when the terminal device last sent the entry-relax event; The receiving at least one of the target event and the measurement value sent by the terminal device includes: receiving the measurement value and / or the target event of the primary serving cell corresponding to the terminal device, which is sent by the terminal device in response to the reporting category of the target event being the terminal device; Alternatively, receiving the target event of the primary serving cell in the cell group corresponding to the terminal device in response to the reporting category of the target event being a cell group, or the target event of the primary and secondary serving cells in the cell group corresponding to the terminal device; The method further includes: receiving interval indication information corresponding to a first measurement interval sent by the terminal device, wherein the first measurement interval is a measurement interval for the terminal device to periodically perform target measurement in a relaxed state, determined in response to the target event being an entry relaxation event, and the interval indication information includes a proportional coefficient between the first measurement interval and a second measurement interval configured by the network device.

15. A measuring device, characterized in that: The device is applied to a terminal device and includes: a processing unit, configured to obtain a measurement value of a target measurement, wherein the target measurement includes a radio link monitoring (RLM) measurement; determine a target event triggered by the terminal device based on the measurement value and benchmark information corresponding to the target measurement, wherein the benchmark information is sent by a network device and is applicable to a primary serving cell, and the target event includes an entry relaxation event or an exit relaxation event; The reference information includes a target period, a first difference threshold, and a second difference threshold; the measurement value includes at least one first reference signal received power RSRP obtained by measuring a downlink reference signal at least once within the target period, or includes at least one first RSRP obtained by measuring at least one downlink reference signal within the target period; wherein the downlink reference signal is an RLM-RS, and the RLM-RS includes an SSB-RS and / or a CSI-RS; The processing unit is used for: Determining a first difference between the at least one first RSRP and a corresponding reference value; wherein the reference value corresponding to the first RSRP is measured by the terminal device before measuring the first RSRP; In response to at least one first difference corresponding to the first RSRP being smaller than the first difference threshold, determining that the target event is a relaxation event; In response to at least one first difference corresponding to the first RSRP being greater than or equal to the second difference threshold, determining that the target event is an exit relaxation event; The reference value is updated in the following manner: in response to the terminal device performing a cell handover, updating the corresponding reference value according to the first RSRP; or, in response to the difference between the first RSRP and the corresponding reference value being greater than a third difference threshold, updating the corresponding reference value according to the first RSRP; or, in response to the first difference of the first RSRP being not less than the first difference threshold within the target time period, updating the corresponding reference value according to the first RSRP, or, in response to the first difference of the first RSRP being less than the second difference threshold within the target time period, updating the corresponding reference value according to the first RSRP; a transceiver unit, configured to send an exit-relax event and / or the measurement value to the network device in response to the target event being an exit-relax event and the second timer not running; wherein the second timer is configured to count based on the time when the terminal device last sent the exit-relax event; Alternatively, in response to the target event being an entry-relax event and the fourth timer not running, sending an entry-relax event and / or the measurement value to the network device; wherein the fourth timer is used to count based on the time when the terminal device last sent the entry-relax event; The transceiver unit is further configured to: In response to the reporting category of the target event being a terminal device, sending the measurement value and / or the target event of the primary serving cell corresponding to the terminal device to a network device; In response to the reporting category of the target event being a cell group, sending the target event of the primary serving cell in the cell group corresponding to the terminal device to the network device, or sending the target event of the primary and secondary serving cells in the cell group corresponding to the terminal device to the network device; The processing unit is further configured to: in response to the target event being a relaxation event, determine a first measurement interval for the terminal device to periodically perform target measurement in a relaxation state; The transceiver unit is further configured to send interval indication information corresponding to the first measurement interval to the network device, wherein the interval indication information includes a proportional coefficient between the first measurement interval and a second measurement interval configured by the network device.

16. A measuring device, characterized in that: The device is applied to a network device, including: a transceiver unit, configured to send benchmark information to a terminal device, the benchmark information being applicable to a primary serving cell; receive at least one of a target event and a measurement value sent by the terminal device, wherein the measurement value is a measurement value of a target measurement, the target measurement including a radio link monitoring (RLM) measurement; the target event is determined based on the measurement value and the benchmark information corresponding to the target measurement, the target event including: entering a relaxation event or exiting a relaxation event; The reference information includes a target period, a first difference threshold, and a second difference threshold; the measurement value includes at least one first reference signal received power RSRP obtained by measuring a downlink reference signal at least once within the target period, or includes at least one first RSRP obtained by measuring at least one downlink reference signal within the target period; wherein the downlink reference signal is an RLM-RS, and the RLM-RS includes an SSB-RS and / or a CSI-RS; The terminal device determines, according to the measurement value and the benchmark information corresponding to the target measurement, a target event triggered by the terminal device, including: Determining a first difference between the at least one first RSRP and a corresponding reference value; wherein the reference value corresponding to the first RSRP is measured by the terminal device before measuring the first RSRP; In response to at least one first difference corresponding to the first RSRP being smaller than the first difference threshold, determining that the target event is a relaxation event; In response to at least one first difference corresponding to the first RSRP being greater than or equal to the second difference threshold, determining that the target event is an exit relaxation event; The reference value is updated in the following manner: in response to the terminal device performing a cell handover, updating the corresponding reference value according to the first RSRP; or, in response to the difference between the first RSRP and the corresponding reference value being greater than a third difference threshold, updating the corresponding reference value according to the first RSRP; or, in response to the first difference of the first RSRP being not less than the first difference threshold within the target time period, updating the corresponding reference value according to the first RSRP, or, in response to the first difference of the first RSRP being less than the second difference threshold within the target time period, updating the corresponding reference value according to the first RSRP; The receiving at least one of the target event and the measurement value sent by the terminal device includes: receiving an exit-relax event and / or the measurement value sent by the terminal device to the network device in response to the target event being an exit-relax event and the second timer not running; wherein the second timer is used to count based on the time when the terminal device last sent the exit-relax event; Alternatively, receiving an entry-relax event and / or the measurement value sent by the terminal device to the network device in response to the target event being an entry-relax event and the fourth timer not running; wherein the fourth timer is configured to count based on the time when the terminal device last sent the entry-relax event; The receiving at least one of the target event and the measurement value sent by the terminal device includes: receiving the measurement value and / or the target event of the primary serving cell corresponding to the terminal device, which is sent by the terminal device in response to the reporting category of the target event being the terminal device; Alternatively, receiving the target event of the primary serving cell in the cell group corresponding to the terminal device in response to the reporting category of the target event being a cell group, or the target event of the primary and secondary serving cells in the cell group corresponding to the terminal device; In which, the transceiver unit is also used to: receive interval indication information corresponding to the first measurement interval sent by the terminal device, wherein the first measurement interval is a measurement interval for the terminal device to periodically perform target measurement in a relaxed state, determined in response to the target event being an entry relaxation event, and the interval indication information includes a proportional coefficient between the first measurement interval and the second measurement interval configured by the network device.

17. A measuring device, characterized in that: The device includes a processor and a memory, wherein a computer program is stored in the memory. When the computer program is executed by the processor, the method according to any one of claims 1 to 13 is executed, or the method according to claim 14 is executed.

18. A measuring device, characterized in that: include: processor and interface circuits; The interface circuit is used to receive code instructions and transmit them to the processor; The processor is configured to execute the code instructions to perform the method according to any one of claims 1 to 13, or to perform the method according to claim 14.

19. A computer-readable storage medium storing instructions, which, when executed, causes the method according to any one of claims 1 to 13, or the method according to claim 14 to be performed.

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