Measurement method and device

The method for terminal devices to determine target events based on RLM and RRM measurements addresses the challenge of implementing power-saving mechanisms, enhancing battery life and system performance by accurately triggering mitigation events.

JP7743638B2Active Publication Date: 2025-09-24BEIJING XIAOMI MOBILE SOFTWARE CO LTD
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Patent Information

Application Number
JP2024542168
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-01-17
Publication Date
2025-09-24
Estimated Expiration
2042-01-17

AI Technical Summary

Technical Problem

Existing communication technologies face challenges in determining when to implement power-saving mitigation mechanisms for terminal devices, such as extending measurement intervals for downlink reference signals, which are crucial for improving battery life without compromising accuracy and reliability.

Method used

A method and apparatus for terminal devices to determine target events, such as entering or exiting a mitigation event, based on measurement values and reference information for RLM and RRM measurements, enabling accurate reporting to network devices for implementing power-saving mechanisms.

Benefits of technology

Enhances the accuracy and reliability of determining when to trigger power-saving events, thereby improving battery life of terminal devices while maintaining communication system performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present disclosure provides a measurement method and apparatus applicable to mobile communication technology, the method including: a terminal device obtaining a measurement value of a target measurement, including an RLM measurement and / or an RRM measurement; and determining a target event triggered by the terminal device, including entering or exiting a mitigation event, based on the measurement value and reference information corresponding to the target measurement. This can realize the terminal device to effectively determine whether to trigger entering a mitigation event based on the measurement value of the target measurement and the reference information corresponding to the target measurement, so that when triggering entering a mitigation event, the terminal device can report the entry into the mitigation event to a network device, thereby performing a mitigation mechanism to improve the battery life of the terminal device.
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Description

[Technical Field]

[0001] The present disclosure relates to the field of communications technology, and more particularly to a measurement method and apparatus. [Background technology]

[0002] R17 introduces a mitigation mechanism, which means that a terminal device that meets the mitigation criteria can implement the mitigation mechanism. For example, the terminal device can extend the measurement interval for periodically measuring the downlink reference signal to reduce the power consumption of the terminal device and extend the battery life of the terminal device. Therefore, it is very important to determine whether the terminal device can implement the mitigation mechanism by detecting the event triggered by the terminal device. Summary of the Invention [Means for solving the problem]

[0003] An embodiment of a first aspect of the present disclosure provides a measurement method, the method being executed by a terminal device, the method including: acquiring measurement values ​​of target measurements, including radio link monitoring (RLM) measurements and / or radio resource management (RRM) measurements; and determining a target event, triggered by the terminal device, including entering or exiting a mitigation event, based on the measurement values ​​and reference information corresponding to the target measurements.

[0004] In this technical solution, a terminal device acquires a measurement value of a target measurement, where the target measurement includes an RLM measurement and / or an RRM measurement, and determines a target event triggered by the terminal device based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering a mitigation event or exiting from the mitigation event. This makes it possible to effectively determine whether the terminal device should trigger entering a mitigation event based on the measurement value of the target measurement and the reference information corresponding to the target measurement. When triggering entering a mitigation event, the terminal device reports the entry of the mitigation event to a network device, thereby implementing a mitigation mechanism to improve the battery life of the terminal device. In addition, using the reference information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device should trigger entering a mitigation event or exiting from the mitigation event can improve the accuracy and reliability of the event determination result.

[0005] An embodiment of a second aspect of the present disclosure provides another measurement method, the method being executed by a network device, the method including: receiving a target event and / or a measurement value transmitted from a terminal device, the measurement value being a measurement value of a target measurement, the target measurement value including a radio link monitoring (RLM) measurement and / or a radio resource management (RRM) measurement, the target event being determined based on the measurement value and reference information corresponding to the target measurement, and the target event including entering or exiting a mitigation event.

[0006] An embodiment of a third aspect of the present disclosure provides a measurement device, which has some or all of the functions of implementing the terminal device in the method according to the first aspect. For example, the functions of the measurement device may include some or all of the functions of the embodiments of the present disclosure, or may include the function of independently implementing any one of the embodiments of the present disclosure. The functions may be implemented by hardware, or may be implemented by the hardware executing corresponding software. The hardware or software includes one or more units or modules corresponding to the functions.

[0007] An embodiment of the fourth aspect of the present disclosure provides another measurement device, which has part or all of the functions of implementing the network device in the method according to the second aspect. For example, the function of the measurement device may include part or all of the functions of the embodiments of the present disclosure, or may include the function of independently implementing any one of the embodiments of the present disclosure. The functions can be implemented by hardware, or may be implemented by the hardware executing corresponding software. The hardware or software includes one or more units or modules corresponding to the functions.

[0008] An embodiment of a fifth aspect of the present disclosure provides another measurement device, the device including a processor, configured to perform the method according to the first aspect or the method according to the second aspect when the processor invokes a computer program in a memory.

[0009] An embodiment of a sixth aspect of the present disclosure provides another measurement device, the device including a processor and a memory, wherein a computer program is stored in the memory, and the computer program, when executed by the processor, performs the method according to the first aspect or the method according to the second aspect.

[0010] An embodiment of the seventh aspect of the present disclosure provides another measurement device, the device including a processor and an interface circuit, the interface circuit receiving and transmitting code instructions to the processor, and the processor executing the code instructions to cause the device to perform the method according to the first aspect or the method according to the second aspect.

[0011] An embodiment of an eighth aspect of the present disclosure provides a communication system, the system comprising a measurement apparatus according to the third aspect, or the system comprising a measurement apparatus according to the fourth aspect, or the system comprising a measurement apparatus according to the fifth aspect, or the system comprising a measurement apparatus according to the sixth aspect, or the system comprising a measurement apparatus according to the seventh aspect.

[0012] An embodiment of a ninth aspect of the present disclosure provides a computer-readable storage medium, the computer-readable storage medium storing instructions for use in the terminal device, the instructions being executed to cause the terminal device to perform the method of the first aspect, or the computer-readable storage medium storing instructions for use in the network device, the instructions being executed to cause the network device to perform the method of the second aspect.

[0013] An embodiment of a tenth aspect of the present disclosure provides a computer program product including a computer program, which, when executed on a computer, causes the computer to perform the method according to the first aspect or the method according to the second aspect.

[0014] An eleventh embodiment of the present disclosure provides a chip system, the chip system including at least one processor and an interface, supporting a terminal device to implement the function according to the first embodiment or supporting a network device to implement the function according to the second embodiment, for example, determining or processing at least one of data and information according to the above method. In one possible design, the chip system further includes a memory, the memory storing computer programs and data required for the terminal device or the network device. The chip system may be configured by a chip or may include a chip and other discrete elements.

[0015] An embodiment of the twelfth aspect of the present disclosure provides a computer program, which, when executed on a computer, causes the computer to perform the method according to the first aspect above, or causes the computer to perform the method according to the second aspect above. [Brief explanation of the drawings]

[0016] In order to more clearly describe the technical solutions in the embodiments or background art of the present disclosure, the drawings used in the embodiments or background art of the present disclosure will be described below. [Figure 1] FIG. 1 is an architecture diagram of a communication system provided by an embodiment of the present disclosure. [Figure 2] 1 is a flowchart of a measurement method provided by an embodiment of the present disclosure. [Figure 3] 1 is a flowchart of another measurement method provided by an embodiment of the present disclosure. [Figure 4] 1 is a flowchart of another measurement method provided by an embodiment of the present disclosure. [Figure 5] 1 is a flowchart of another measurement method provided by an embodiment of the present disclosure. [Figure 6] 1 is a flowchart of another measurement method provided by an embodiment of the present disclosure. [Figure 7]1 is a flowchart of another measurement method provided by an embodiment of the present disclosure. [Figure 8] 1 is a flowchart of another measurement method provided by an embodiment of the present disclosure. [Figure 9] 1 is a flowchart of another measurement method provided by an embodiment of the present disclosure. [Figure 10] 1 is a flowchart of another measurement method provided by an embodiment of the present disclosure. [Figure 11] 1 is a flowchart of another measurement method provided by an embodiment of the present disclosure. [Figure 12] 1 is a flowchart of another measurement method provided by an embodiment of the present disclosure. [Figure 13] 1 is a flowchart of another measurement method provided by an embodiment of the present disclosure. [Figure 14] 1 is a flowchart of another measurement method provided by an embodiment of the present disclosure. [Figure 15] 1 is a flowchart of another measurement method provided by an embodiment of the present disclosure. [Figure 16] 1 is a flowchart of another measurement method provided by an embodiment of the present disclosure. [Figure 17] 1 is a flowchart of another measurement method provided by an embodiment of the present disclosure. [Figure 18] 1 is a structural schematic diagram of a measurement device provided by an embodiment of the present disclosure; [Figure 19] FIG. 1 is a structural schematic diagram of another measurement device provided by an embodiment of the present disclosure. [Figure 20] 1 is a structural schematic diagram of a chip provided by an embodiment of the present disclosure. DETAILED DESCRIPTION OF THE INVENTION

[0017] To better understand one measurement method disclosed in the embodiment of the present disclosure, the following first describes a communication system applied to the embodiment of the present disclosure.

[0018] In order to make the objectives, technical solutions and advantages of the present disclosure clearer, the following describes in more detail the embodiments of the present disclosure in combination with the drawings.

[0019] Illustrative embodiments will now be described, examples of which are illustrated in the drawings. When the following description refers to the drawings, like numerals in different drawings represent the same or similar elements unless otherwise specified. The embodiments described in the following illustrative examples do not represent all embodiments consistent with the present disclosure. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the present disclosure, as recited in the appended claims.

[0020] Referring to FIG. 1, FIG. 1 is an architecture diagram of a communication system provided by an embodiment of the present disclosure. The communication system may include, but is not limited to, one network device and one terminal device. The number and configuration of devices shown in FIG. 1 are merely examples and are not intended to limit the embodiment of the present disclosure. In practical applications, the communication system may include two or more network devices and two or more terminal devices. The communication system shown in FIG. 1 includes, for example, one network device 101 and one terminal device 102.

[0021] It should be noted that the technical solutions of the embodiments of the present disclosure may be applied to various communication systems, such as a long term evolution (LTE) system, a fifth generation (5G) mobile communication system, a 5G new radio (NR) system, or other future new mobile communication systems.

[0022] The network device 101 in the embodiments of the present disclosure is a network-side entity for transmitting and receiving signals. For example, the network device 101 may be an evolved base station (eNB), a transmission reception point (TRP), a next-generation base station (gNB) in an NR system, a base station in other future mobile communication systems, or an access point in a wireless fidelity (WiFi) system. The embodiments of the present disclosure do not limit the specific technology and device form used for the network device. The network device provided by the embodiments of the present disclosure may be composed of a central unit (CU) and distributed units (DUs), where the CU is also called a control unit. Using a CU-DU structure, the protocol layers of the network device, for example, a base station, can be divided, with some protocol layer functions centrally controlled by the CU and the remaining or all protocol layer functions distributed to the DUs, and the DUs centrally controlled by the CU.

[0023] In the embodiments of the present disclosure, the terminal device 102 is a user-side entity for transmitting and receiving signals, such as a mobile phone. The terminal device may also be referred to as a terminal, user equipment (UE), mobile station (MS), mobile terminal (MT), etc. The terminal device may be an automobile with communication capabilities, a smart car, a mobile phone, a wearable device, a tablet, a personal computer with wireless transmission and reception capabilities, a virtual reality (VR) terminal device, an augmented reality (AR) terminal device, a wireless terminal device in industrial control, a wireless terminal device in self-driving, a wireless terminal device in remote medical surgery, a wireless terminal device in a smart grid, a wireless terminal device in transportation safety, a wireless terminal device in a smart city, a wireless terminal device in a smart home, etc. The embodiments of the present disclosure do not limit the specific technology and device form used for the terminal device.

[0024] In the above communication system, for a terminal device that satisfies the mitigation criteria, for example, a terminal device that is in a stationary state (or a low-mobility state) and / or has a good channel condition, the terminal device can perform RLM (radio link monitor), BFD (beam failure detection), and RRM (radio resource management) mitigation mechanisms. For example, a terminal device that satisfies the mitigation criteria can reduce the power consumption of the terminal device and extend the battery life of the terminal device by extending the measurement interval for periodically measuring a downlink reference signal. Therefore, it is extremely important how to realize the terminal device determining whether to perform a mitigation mechanism by detecting an event triggered by the terminal device.

[0025] Here, 1. RLM mitigation mechanism: The RLM principle is as follows:

[0026] A terminal device in a radio resource control (RRC) connected (RRC_CONNECTED) state can monitor downlink radio link quality and determine whether the terminal device and the serving cell are in a downlink synchronized state (IS) or an out-of-sync state (OOS) by measuring a downlink reference signal (RLM-RS) (e.g., SSB (synchronization signal and PBCH (physical broadcast channel) block)-RS and / or CSI (channel-state information)-RS) of a serving cell (e.g., a special cell (SpCell) in an active bandwidth part (BWP)). A specific procedure for this process is as follows:

[0027] The terminal device periodically measures each RLM-RS and compares the measured value (SINR (signal to interference plus noise ratio) value) with the synchronization threshold (Q in ) and asynchronous threshold (Q out ) to determine the IS / OOS state of the terminal device, and the physical layer reports the determined IS / OOS state to the upper layer.

[0028] Specifically, the asynchronous out-of-sync evaluation period T Evaluate_out Within the time limit, the measurement value reaches the asynchronous threshold Q out Evaluate whether the measured values ​​are lower than Q out If it is lower, L1 (physical layer) reports the OOS indication to the upper layer and synchronizes with the in-sync evaluation period T Evaluate_in Within the synchronization threshold Q in If any one of the measurements is higher than Q in If it is higher, L1 reports an IS indication to the upper layer.

[0029] The upper layer determines the next action based on the reported OOS indication / IS indication, i.e., if the OOS counter records that the physical layer has continuously reported N310 OOS indications, the terminal device starts the RLF (radio link failure) timer T310 set by the network device; if the IS counter records that the physical layer has continuously reported N311 IS indications, the terminal device stops timing T310; when T310 expires, the terminal device reports RLF to the network device.

[0030] R17 introduces a mitigation mechanism for RLM, i.e., for a terminal device that meets the mitigation criteria, such as a terminal device that is in a stationary state and / or has a good channel condition, the terminal device performs the RLM mitigation mechanism, for example, by extending the measurement interval at which the terminal device periodically measures each RLM-RS.

[0031] 2. RRM mitigation mechanism R17 introduces a mitigation mechanism for RRM, i.e., for a terminal device in a connected state that meets the criteria, the terminal device will perform an RRM mitigation mechanism, such as extending the measurement interval at which the terminal device periodically measures.

[0032] To address the above problem, the present disclosure provides a measurement method and apparatus.

[0033] It should be noted that the communication system described in the embodiments of the present disclosure is intended to more clearly explain the technical solutions of the embodiments of the present disclosure, and is not intended to limit the technical solutions provided by the embodiments of the present disclosure. As those skilled in the art will appreciate, with the evolution of system architecture and the emergence of new business scenarios, the technical solutions provided by the embodiments of the present disclosure can also be applied to similar technical challenges.

[0034] The measurement method and apparatus provided by the present disclosure will be described in detail below in conjunction with the drawings.

[0035] 2, which is a flowchart of a measurement method provided by an embodiment of the present disclosure, which can be performed by a terminal device in the communication system shown in FIG.

[0036] As shown in FIG. 2, the measurement method may include, but is not limited to, the following steps 201-202.

[0037] Step 201: Obtain measurements of target measurements including RLM measurements and / or RRM measurements.

[0038] In the embodiment of the present disclosure, the terminal device may perform target measurement to obtain a measurement value of the target measurement, where the target measurement may include an RLM measurement and / or an RRM measurement.

[0039] Preferably, if the target measurement is an RLM measurement, the measurement value may be the SINR value of the downlink RLM-RS, and if the target measurement is an RRM measurement, the measurement value may be the signal strength of the serving cell reference signal, for example RSRP (Reference Signal Receiving Power).

[0040] Step 202: Determine a target event triggered by the terminal device based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering or exiting a mitigation event.

[0041] In an embodiment of the present disclosure, the terminal device can determine a target event that it has triggered based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering or exiting a mitigation event.

[0042] It should be noted that when the target measurements are different, the corresponding reference information may be different, and the reference information corresponding to the target measurements and the measurement values ​​of the target measurements can be used to determine the target event triggered by the terminal device, thereby improving the accuracy and reliability of the target event determination results.

[0043] A measurement method according to an embodiment of the present disclosure includes acquiring a measurement value of a target measurement, where the target measurement value includes an RLM measurement and / or an RRM measurement, and determining a target event state triggered by a terminal device based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering a mitigation event or exiting from the mitigation event. This allows the terminal device to effectively determine whether to trigger a mitigation event based on the measurement value of the target measurement and reference information corresponding to the target measurement. When triggering a mitigation event, the terminal device reports the mitigation event to a network device, thereby implementing a mitigation mechanism to improve the battery life of the terminal device. Furthermore, using reference information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device should trigger a mitigation event or exit from the mitigation event can improve the accuracy and reliability of the event determination result.

[0044] Referring to Figure 3, Figure 3 is a flowchart of another measurement method provided by an embodiment of the present disclosure. The measurement method can be performed by a terminal device in the communication system shown in Figure 1. The measurement method can be performed independently, in combination with any one of the embodiments or possible implementations of the embodiments of the present disclosure, or together with any one of the technical solutions of the related art.

[0045] As shown in FIG. 3, the measurement method may include, but is not limited to, steps 301-302.

[0046] Step 301: Perform a target measurement on a downlink reference signal of a serving cell of a terminal device to obtain a measurement value, where the target measurement is an RLM measurement and / or an RRM measurement.

[0047] In an 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.

[0048] In the embodiment of the present disclosure, when the target measurement is an RLM measurement, the downlink reference signal may be an RLM-RS, for example, 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 measurement value obtained by the measurement may be an SINR.

[0049] In the embodiments of the present disclosure, if the target measurement is an 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 measurement result may be RSRP.

[0050] Step 302: Determine a target event to be triggered by the terminal device based on the measurement value and the reference information sent from the network device, where the target event includes entering or exiting a mitigation event.

[0051] In the embodiment of the present disclosure, the reference information may be transmitted by a network device, for example, the network device may set the reference information through an RRC message.

[0052] In an embodiment of the present disclosure, the terminal device may determine a target event to be triggered by the terminal device based on the measurement value and the reference information transmitted from the network device, where the target event may include entering or exiting a mitigation event.

[0053] In any one embodiment of the present disclosure, the reference information transmitted from the network device may be applicable to the primary serving cell and / or the secondary serving cell.

[0054] As an example, a network device can send one set of reference information to the terminal device, and the only one set of reference information is applicable to all serving cells connected to the terminal device, i.e., all serving cells connected to the terminal device share the set of reference information.

[0055] As another example, a network device may transmit multiple sets of reference information to a terminal device, with different reference information applied to different serving cells. For example, the network device may configure reference information for each MCG (Master Cell Group) and SCG (Secondary Cell Group) connected to the terminal device. For example, a master node (MN) and a secondary node (SN) may transmit reference information to the terminal device, where the network device configures the reference information for the MCG and applies it to a primary serving cell (PCell). That is, when the terminal device measures the reference signal of the primary serving cell, the network device may determine a target event to be triggered by the terminal device based on the reference information configured for the MCG. Similarly, the network device may configure the reference information for the SCG and apply it to a secondary serving cell (Scell), for example, a primary secondary serving cell (PScell). That is, when the terminal device measures the reference signal of the secondary serving cell, the network device may determine a target event to be triggered by the terminal device based on the reference information configured for the SCG.

[0056] A measurement method according to an embodiment of the present disclosure includes acquiring a measurement value of a target measurement, where the target measurement value includes an RLM measurement and / or an RRM measurement, and determining a target event state triggered by a terminal device based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering a mitigation event or exiting from the mitigation event. This allows the terminal device to effectively determine whether to trigger a mitigation event based on the measurement value of the target measurement and reference information corresponding to the target measurement. When triggering a mitigation event, the terminal device reports the mitigation event to a network device, thereby implementing a mitigation mechanism to improve the battery life of the terminal device. Furthermore, using reference information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device should trigger a mitigation event or exit from the mitigation event can improve the accuracy and reliability of the event determination result.

[0057] It should be noted that these possible implementations described above may be implemented alone or in combination, and the embodiments of the present disclosure are not limited thereto.

[0058] Referring to Figure 4, Figure 4 is a flowchart of another measurement method provided by an embodiment of the present disclosure, which may be performed by a terminal device in the communication system shown in Figure 1. The measurement method may be performed independently, in combination with any one embodiment or possible implementation form of the embodiment of the present disclosure, or together with any one technical solution of the related art.

[0059] As shown in FIG. 4, the measurement method may include the following steps 401 to 403.

[0060] Step 401: Obtain a measurement value of the target measurement.

[0061] Here, the target measurement includes an RLM measurement and / or an RRM measurement, and the measurement includes at least one first RSRP obtained by performing at least one measurement on a downlink reference signal within a target period in the reference information corresponding to the target measurement, or at least one first RSRP obtained by measuring at least one downlink reference signal within the target period.

[0062] In an embodiment of the present disclosure, the reference information set by the network device may include a target period, and the terminal device may perform at least one measurement on a downlink reference signal within the target period to obtain at least one measurement value, which is referred to in the present disclosure as at least one first RSRP.

[0063] As an example, the terminal device may perform one measurement on the downlink reference signal within the target period to obtain one first RSRP.

[0064] As another example, the terminal device may measure the downlink reference information multiple times within the target period to obtain multiple first RSRPs.

[0065] In an embodiment of the present disclosure, the terminal device may also measure at least one downlink reference signal within the target time period to obtain at least one first RSRP.

[0066] As an example, the terminal device may measure one downlink reference signal at least once within the target period to obtain at least one first RSRP.

[0067] As another example, the terminal device may perform at least one measurement of multiple downlink reference signals within a target time period to obtain multiple first RSRPs.

[0068] Step 402: Determine a first difference between at least one first RSRP and a corresponding reference value, where the reference value corresponding to the first RSRP is obtained by measuring the terminal device before measuring the first RSRP.

[0069] In an embodiment of the present disclosure, each first RSPR has a corresponding reference value, and the reference value and the first RSPR have a one-to-one correspondence relationship. The reference value corresponding to the first RSRP may be an RSRP obtained by measuring the first RSRP before the terminal device measures the first RSRP. For example, the reference value corresponding to the first RSRP may be an RSRP obtained by the closest measurement before the terminal device measures the first RSRP.

[0070] In the embodiment of the present disclosure, for any one first RSRP, an RSRP measured by a terminal device before measuring the first RSRP may be obtained, which is referred to as a reference value in the present disclosure.

[0071] In an embodiment of the present disclosure, for each first RSRP, a difference between the first RSRP and a corresponding reference value can be determined, which is referred to as a first difference in the present disclosure. For example, the first difference may be determined by subtracting the corresponding reference value from the first RSRP, or by subtracting the corresponding first RSRP from the reference value.

[0072] Step 403: In response to the first differences corresponding to at least one first RSRP being all smaller than the first difference threshold in the reference information, determine that the target event triggered by the terminal device is entering a mitigation event.

[0073] In an embodiment of the present disclosure, the reference information set by the network device may further include a first difference threshold, which is used to characterize the movement speed of the terminal device, i.e., to determine whether the terminal device is in a stationary state or a low-movement state.

[0074] For example, the network device may set the target period and the first difference threshold by an RRC message. SearchDeltaP and the first difference threshold is S SearchDeltaP can be marked as

[0075] In an embodiment of the present disclosure, if the first differences corresponding to all the first RSRPs are all 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 into a mitigation event, that is, it is determined that the terminal device meets the mitigation entry criteria.

[0076] Furthermore, if all the first differences corresponding to all the first RSRPs are smaller than the first difference threshold, it indicates that the movement speed of the terminal device is low, and in this case, the entry into the mitigation event may be called a low mobility event, and correspondingly, the mitigation entry criterion may be called a low mobility criterion.

[0077] In any one embodiment of the present disclosure, a reference value corresponding to each first RSRP may be updated. For example, when a terminal device performs cell switching, the corresponding reference value may be updated based on 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 a difference obtained by subtracting the corresponding reference value from the first RSRP is greater than a third difference threshold. If the difference obtained by subtracting the corresponding reference value from the first RSRP is greater than the third difference threshold, the reference value corresponding to the first RSRP may be updated based on the first RSRP. For example, the reference value corresponding to the first RSRP may be updated to the first RSRP, and if the difference obtained by subtracting the corresponding reference value from the first RSRP is equal to or greater than the third difference threshold, the reference value corresponding to the first RSRP may not be updated, or the target period (T SearchDeltaP), it may be determined whether the first difference of each first RSRP is smaller than the first difference threshold, and if the first difference of a certain first RSRP is equal to or greater than the first difference threshold, the corresponding reference value may be updated based on the first RSRP. For example, the reference value corresponding to the first RSRP may be updated to the first RSRP, and if the first difference of a certain first RSRP is smaller than the first difference threshold, the reference value corresponding to the first RSRP may not be updated.

[0078] Here, the third difference threshold is preset, for example, the third difference threshold may be set by a network device, or the third difference threshold may be specified by a protocol, and the present disclosure is not limited thereto. For example, the third difference threshold may be 0.

[0079] A measurement method according to an embodiment of the present disclosure includes acquiring a measurement value of a target measurement, where the target measurement value includes an RLM measurement and / or an RRM measurement, and determining a target event state triggered by a terminal device based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering a mitigation event or exiting from the mitigation event. This allows the terminal device to effectively determine whether to trigger a mitigation event based on the measurement value of the target measurement and reference information corresponding to the target measurement. When triggering a mitigation event, the terminal device reports the mitigation event to a network device, thereby implementing a mitigation mechanism to improve the battery life of the terminal device. Furthermore, using reference information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device should trigger a mitigation event or exit from the mitigation event can improve the accuracy and reliability of the event determination result.

[0080] It should be noted that these possible implementations described above may be implemented alone or in combination, and the embodiments of the present disclosure are not limited thereto.

[0081] In any one embodiment of the present disclosure, a protocol may be implemented to define an event Event R1 (including entering a mitigation event and exiting a mitigation event).

[0082] As an example, for entering a mitigation event, e.g., for a low mobility event, Event R1-1 may be marked, where Event R1-1 can be determined by a low mobility criterion, i.e., target period T SearchDeltaP The measured value Srxlev detected by the terminal device and the reference value Srxlev Ref The difference between the first difference threshold S SearchDeltaP If it is smaller, the variation of the reference signal is not large, and at this time, it can be determined that the terminal device is in a low-mobility state.

[0083] Example 1: (Srxlev Ref -Srxlev) SearchDeltaP If the low-mobility criterion is met, the target event triggered by the terminal device may be determined to be an entry into a mitigation event or a low-mobility event.

[0084] Here, the unit of the measured value Srxlev is dB, and the unit of the reference value Srxlev Ref is dB.

[0085] Here, when any one of the following conditions is met, the reference value is set as the measured value. (1) The terminal device is switched to a new serving cell. (2) Srxlev-Srxlev Ref >0. (3) Target period T SearchDeltaP Within, (Srxlev Ref -Srxlev) SearchDeltaP The low mobility criterion is not met.

[0086] ​​Referring to Figure 5, Figure 5 is a flowchart of another measurement method provided by an embodiment of the present disclosure. The measurement method may be performed by a terminal device in the communication system shown in Figure 1. The measurement method may be performed independently, in combination with any one of the embodiments or possible implementations of the embodiments of the present disclosure, or together with any one technical solution of the related art.

[0087] As shown in FIG. 5, the measurement method may include, but is not limited to, the following steps 501 to 504.

[0088] Step 501: Obtain a measurement value of the target measurement.

[0089] Here, the target measurement includes an RLM measurement and / or an RRM measurement, and the measurement is performed within a target period (T SearchDeltaP ) or includes at least one first RSRP obtained by measuring a downlink reference signal at least once within a target period (T SearchDeltaP ) after the target period. The measurements may further include a plurality of second RSRPs obtained by measuring the downlink reference signal a plurality of times within a set time length (T1) after the target period, or may further include a plurality of second RSRPs obtained by measuring a plurality of downlink reference signals within the set time length (T1).

[0090] In the embodiments of the present disclosure, step 501 can be implemented in any one of the manners of the embodiments of the present disclosure, and the embodiments of the present disclosure are not limited thereto, and detailed description thereof will be omitted.

[0091] In an embodiment of the present disclosure, the set time length is preset, for example, the set time length may be set by a network device, or the set time length may be agreed upon by a protocol, and the present disclosure is not limited thereto. Optionally, the set time length is marked as T1.

[0092] In the embodiment of the present disclosure, the terminal device further SearchDeltaP ) multiple measurements can be made on the downlink reference signal within a set time length (T1) after the first measurement to obtain multiple measurements, which are described in this disclosure as multiple second RSRPs, or the terminal device can make at least one measurement on multiple downlink reference signals within the set time length (T1) to obtain multiple second RSRPs.

[0093] Step 502: Determine a first difference between at least one first RSRP and a corresponding reference value, where the reference value corresponding to the first RSRP is obtained by measuring the first RSRP before the terminal device measures the first RSRP.

[0094] In the embodiments of the present disclosure, step 502 can be implemented in any one of the manners in the embodiments of the present disclosure, and the embodiments of the present disclosure are not limited thereto, and detailed description thereof will be omitted.

[0095] Step 503: In response to the first differences corresponding to at least one first RSRP being all smaller than the first difference threshold in the reference information, determining second differences between a plurality of second RSRPs and corresponding reference values, where the second RSRPs and corresponding reference values ​​are obtained by measuring the second RSRPs before the terminal device measures the second RSRPs.

[0096] In an embodiment of the present disclosure, each second RSPR has a corresponding reference value, and the reference value and the second RSPR have a one-to-one correspondence relationship. The reference value corresponding to the second RSRP may be the RSRP obtained by measuring the second RSRP before the terminal device measures the second RSRP. For example, the reference value corresponding to the second RSRP is the RSRP obtained by the closest measurement before the terminal device measures the second RSRP.

[0097] In an embodiment of the present disclosure, if the terminal device determines that all of the first differences corresponding to all of the first RSRPs are smaller than the first difference threshold in the reference information, it can further obtain a reference value corresponding to each second RSRP.

[0098] In an embodiment of the present disclosure, for each second RSRP, the terminal device may determine a difference between the second RSRP and a corresponding reference value, which is referred to as a second difference in the present disclosure. For example, the terminal device may subtract the corresponding reference value from the second RSRP to obtain the second difference, or may subtract the corresponding second RSRP from the reference value to obtain the second difference.

[0099] Step 504: In response to the second differences corresponding to the plurality of second RSRPs all being smaller than the first difference threshold, determine that the target event triggered by the terminal device is entering a mitigation event.

[0100] In an embodiment of the present disclosure, if the second differences corresponding to each second RSRP are all less than the first difference threshold, it can be determined that the target event is an entry into a mitigation event, and it is determined that the terminal device meets the mitigation entry criteria.

[0101] Furthermore, if the second differences corresponding to all the second RSRPs are all smaller than the first difference threshold, it indicates that the movement speed of the terminal device is low, and in this case, the entry into the mitigation event may be referred to as a low mobility event.

[0102] In any one embodiment of the present disclosure, a reference value corresponding to each first RSRP may be updated. For example, when a terminal device performs cell switching, the corresponding reference value may be updated based on 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 a difference obtained by subtracting the corresponding reference value from the first RSRP is greater than a third difference threshold. If the difference obtained by subtracting the corresponding reference value from the first RSRP is greater than the third difference threshold, the reference value corresponding to the first RSRP may be updated based on the first RSRP. For example, the reference value corresponding to the first RSRP may be updated to the first RSRP, and if the difference obtained by subtracting the corresponding reference value from the first RSRP is equal to or greater than the third difference threshold, the reference value corresponding to the first RSRP may not be updated, or the target period (T SearchDeltaP ), it may be determined whether the first difference of each first RSRP is smaller than the first difference threshold, and if the first difference of a certain first RSRP is equal to or greater than the first difference threshold, the corresponding reference value may be updated based on the first RSRP. For example, the reference value corresponding to the first RSRP may be updated to the first RSRP, and if the first difference of a certain first RSRP is smaller than the first difference threshold, the reference value corresponding to the first RSRP may not be updated.

[0103] Similarly, when the terminal device performs cell switching, it may update the corresponding reference value based on each second RSRP. For example, for each second RSRP, it may update the reference value corresponding to the second RSRP to the second RSRP. Or, for each second RSRP, it may determine whether the difference obtained by subtracting the corresponding reference value from the second RSRP is greater than a third difference threshold. If the difference obtained by subtracting the corresponding reference value from the second RSRP is greater than the third difference threshold, it may update the corresponding reference value based on the second RSRP. For example, it may update the reference value corresponding to the second RSRP to the second RSRP. If the difference obtained by subtracting the corresponding reference value from the second RSRP is less than or equal to the third difference threshold, there is no need to update the reference value corresponding to the second RSRP, and it may be determined within a set time length (T1) whether the second difference of each second RSRP is less than the first difference threshold, and if the second difference of a certain second RSRP is greater than or equal to the first difference threshold, the corresponding reference value may be updated based on the second RSRP, for example, the reference value corresponding to the second RSRP is updated to the second RSRP, and if the difference between the two 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.

[0104] A measurement method according to an embodiment of the present disclosure includes acquiring a measurement value of a target measurement, where the target measurement value includes an RLM measurement and / or an RRM measurement, and determining a target event state triggered by a terminal device based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering a mitigation event or exiting from the mitigation event. This allows the terminal device to effectively determine whether to trigger a mitigation event based on the measurement value of the target measurement and reference information corresponding to the target measurement. When triggering a mitigation event, the terminal device reports the mitigation event to a network device, thereby implementing a mitigation mechanism to improve the battery life of the terminal device. Furthermore, using reference information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device should trigger a mitigation event or exit from the mitigation event can improve the accuracy and reliability of the event determination result.

[0105] It should be noted that these possible implementations described above may be implemented alone or in combination, and the embodiments of the present disclosure are not limited thereto.

[0106] In any one embodiment of the present disclosure, a protocol may be implemented to define an event Event R1 (including entering a mitigation event and exiting a mitigation event).

[0107] As an example, for entering a mitigation event, e.g., for a low mobility event, Event R1-1 may be marked, where Event R1-1 can be determined by a low mobility criterion, i.e., target period T SearchDeltaP The measured value Srxlev detected by the terminal device and the reference value Srxlev Ref The difference between the first difference threshold S SearchDeltaP If it is smaller, the variation of the reference signal is not large, and at this time, it can be determined that the terminal device is in a low-mobility state.

[0108] Furthermore, within the set time length T1, the measured value Srxlev detected by the terminal device and the reference value Srxlev Ref The difference between the first difference threshold S SearchDeltaP It may be determined whether the difference is less than a first difference threshold S SearchDeltaP If it is smaller, determine that the target event triggered by the terminal device is an entry into a mitigation event or a low mobility event.

[0109] Example 2: The judgment condition for Event R1-1 is that T SearchDeltaP With units of (Srxlev Ref -Srxlev) SearchDeltaP If the low-mobility criterion is met, the target event triggered by the terminal device is determined to be an entry into a mitigation event or a low-mobility event.

[0110] Here, the unit of the measured value Srxlev is dB, and the reference value Srxlev Ref The unit is dB.

[0111] Here, when any one of the following conditions is met, the reference value is set as the measured value. (1) The terminal device is switched to a new serving cell. (2) Srxlev-Srxlev Ref >0. (3) Target period T SearchDeltaP Within, (Srxlev Ref -Srxlev) SearchDeltaP The low mobility criterion is not met.

[0112] ​​Referring to Figure 6, Figure 6 is a flowchart of another measurement method provided by an embodiment of the present disclosure. The measurement method may be performed by a terminal device in the communication system shown in Figure 1. The measurement method may be performed independently, in combination with any one embodiment or possible implementation form of the embodiment of the present disclosure, or together with any one technical solution of the related art.

[0113] As shown in FIG. 6, the measurement method may include, but is not limited to, the following steps 601 to 603.

[0114] Step 601: Obtain a measurement value of the target measurement.

[0115] Here, the target measurement includes an RLM measurement and / or an RRM measurement, and the measurement includes at least one first RSRP obtained by performing at least one measurement on a downlink reference signal within a target period in the reference information corresponding to the target measurement, or at least one first RSRP obtained by measuring at least one downlink reference signal within the target period.

[0116] Step 602: Determine a first difference between at least one first RSRP and a corresponding reference value, where the reference value corresponding to the first RSRP is obtained by measuring the first RSRP before the terminal device measures the first RSRP.

[0117] In the embodiments of the present disclosure, steps 601 and 602 can be implemented by any one of the methods in the embodiments of the present disclosure, but the embodiments of the present disclosure are not limited thereto, and detailed descriptions thereof will be omitted.

[0118] Step 603, in response to the presence of at least one first difference corresponding to the first RSRP being equal to or greater than the second difference threshold in the reference information, it can be determined that the target event triggered by the terminal device is an exit from a mitigation event.

[0119] In an embodiment of the present disclosure, the reference information transmitted from the network device is a target time period (T SearchDeltaP ), and may further include a second difference threshold value, which is used to characterize the moving speed of the terminal device, i.e., to determine whether the terminal device is in a stationary state or a low-movement state.

[0120] Here, the second difference threshold and the first difference threshold may be the same or different. For example, the second difference threshold can be determined based on the first difference threshold and the correction offset value.

[0121] As an example, the network device may determine the target period and the second difference threshold by an RRC message. Optionally, the target period may be set to T SearchDeltaP The second difference threshold is S SearchDeltaP You may mark it as '.

[0122] In an embodiment of the present disclosure, if 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 criteria information, it can be determined that the target event triggered by the terminal device is an exit from a mitigation event, that is, it can be determined that the terminal device meets the exit from the mitigation criteria.

[0123] In addition, if there is at least one first difference corresponding to a first RSRP that is greater than or equal to the second difference threshold, this indicates that the mobility speed of the terminal device is not low, and in this case, the exit from the mitigation event may be referred to as a non-low mobility event or a high mobility event.

[0124] In any one embodiment of the present disclosure, a reference value corresponding to each first RSRP may be updated. For example, when a terminal device performs cell switching, the corresponding reference value may be updated based on 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 a difference obtained by subtracting the corresponding reference value from the first RSRP is greater than a third difference threshold. If the difference obtained by subtracting the corresponding reference value from the first RSRP is greater than the third difference threshold, the reference value corresponding to the first RSRP may be updated based on the first RSRP. For example, the reference value corresponding to the first RSRP may be updated to the first RSRP, and if the difference obtained by subtracting the corresponding reference value from the first RSRP is equal to or greater than the third difference threshold, the reference value corresponding to the first RSRP may not be updated, or the target period (T SearchDeltaP ), it can be determined whether the first difference of each first RSRP is smaller than the second difference threshold, and if the first difference of a certain first RSRP is smaller than the second difference threshold, the corresponding reference value can be updated based on the first RSRP. For example, the reference value corresponding to the first RSRP can be updated to the first RSRP, and if the first difference of a certain first RSRP is equal to or greater than the second difference threshold, the reference value corresponding to the first RSRP does not need to be updated.

[0125] A measurement method according to an embodiment of the present disclosure includes acquiring a measurement value of a target measurement, where the target measurement value includes an RLM measurement and / or an RRM measurement, and determining a target event state triggered by a terminal device based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering a mitigation event or exiting from the mitigation event. This allows the terminal device to effectively determine whether to trigger a mitigation event based on the measurement value of the target measurement and reference information corresponding to the target measurement. When triggering a mitigation event, the terminal device reports the mitigation event to a network device, thereby implementing a mitigation mechanism to improve the battery life of the terminal device. Furthermore, using reference information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device should trigger a mitigation event or exit from the mitigation event can improve the accuracy and reliability of the event determination result.

[0126] It should be noted that these possible implementations described above may be implemented alone or in combination, and the embodiments of the present disclosure are not limited thereto.

[0127] In any one embodiment of the present disclosure, a protocol may be implemented to define an event Event R1 (including entering a mitigation event and exiting a mitigation event).

[0128] As an example, an exit from a mitigation event, e.g., a non-low mobility event or a high mobility event, can be marked as Event R1-2, and Event R1-2 can be determined based on low mobility criteria, i.e., target period T SearchDeltaP The measured value Srxlev detected by the terminal device and the reference value Srxlev Ref The difference between the second difference threshold S SearchDeltaPIf it is greater than ', it indicates that the variation range of the reference signal is large, and in this case, it can be determined that the terminal device is not in a low-mobility state.

[0129] Example 3: (Srxlev Ref -Srxlev)>S SearchDeltaP If the condition is satisfied, it can be determined that the target event triggered by the terminal device is an exit from a mitigation event or a non-low mobility event or a high mobility event.

[0130] Here, the unit of the measured value Srxlev is dB, and the reference value Srxlev Ref The unit is dB.

[0131] Here, when any one of the following conditions is met, the reference value is set as the measured value. (1) The terminal device is switched to a new serving cell. (2) Srxlev-Srxlev Ref >0. (3) Target period T SearchDeltaP Within, (Srxlev Ref -Srxlev) SearchDeltaP The low mobility criterion is not met.

[0132] Referring to Figure 7, Figure 7 is a flowchart of another measurement method provided by an embodiment of the present disclosure. The measurement method may be performed by a terminal device in the communication system shown in Figure 1. The measurement method may be performed independently, in combination with any one of the embodiments or possible implementations of the embodiments of the present disclosure, or together with any one technical solution of the related art.

[0133] As shown in FIG. 7, the measurement method may include the following steps 701 to 704.

[0134] Step 701: Obtain a measurement value of the target measurement.

[0135] ​Here, the target measurement includes an RLM measurement and / or an RRM measurement, and the measurement includes at least one first RSRP obtained by performing at least one measurement on a downlink reference signal within a target period in the reference information corresponding to the target measurement, or at least one first RSRP obtained by measuring at least one downlink reference signal within the target period, and further includes a plurality of second RSRPs obtained by measuring the downlink reference signal a plurality of times within a set time length after the target period, or a plurality of second RSRPs obtained by measuring a plurality of downlink reference signals within the set time length.

[0136] Step 702: Determine a first difference between at least one first RSRP and a corresponding reference value, where the reference value corresponding to the first RSRP is obtained by measuring the first RSRP before the terminal device measures the first RSRP.

[0137] In the embodiments of the present disclosure, steps 701 and 702 can be implemented by any one of the methods in the embodiments of the present disclosure, and the embodiments of the present disclosure are not limited thereto, and detailed description thereof will be omitted.

[0138] Step 703: In response to the presence of at least one first difference corresponding to the first RSRP that is equal to or greater than a second difference threshold in the reference information, determining second differences between the plurality of second RSRPs and corresponding reference values, where the reference values ​​corresponding to the second RSRPs are obtained by measuring them before the terminal device measures the second RSRPs.

[0139] Here, for the description of the reference value corresponding to the second RSRP, please refer to any one of the embodiments of the present disclosure, and detailed description thereof will be omitted here.

[0140] In an embodiment of the present disclosure, if 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 reference information, a reference value corresponding to each second RSRP may be further obtained, and a second difference between the second RSRP and the corresponding reference value may be determined.

[0141] Step 704, in response to there being at least one second difference corresponding to the second RSRP that is greater than or equal to the second difference threshold, it may be determined that the target event triggered by the terminal device is an exit from a mitigation event.

[0142] In an embodiment of the present disclosure, if there is at least one second difference corresponding to a second RSRP that is greater than or equal to a second difference threshold in the criteria information, it can be determined that the target event triggered by the terminal device is an exit from a mitigation event, that is, it can be determined that the terminal device meets the exit from the mitigation criteria.

[0143] In addition, if there is at least one second difference corresponding to a second RSRP that is greater than or equal to the second difference threshold, this indicates that the mobility speed of the terminal device is not low, and in this case, the exit from the mitigation event may be referred to as a non-low mobility event or a high mobility event.

[0144] In any one embodiment of the present disclosure, a reference value corresponding to each first RSRP may be updated. For example, when a terminal device performs cell switching, the corresponding reference value may be updated based on 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 a difference obtained by subtracting the corresponding reference value from the first RSRP is greater than a third difference threshold. If the difference obtained by subtracting the corresponding reference value from the first RSRP is greater than the third difference threshold, the reference value corresponding to the first RSRP may be updated based on the first RSRP. For example, the reference value corresponding to the first RSRP may be updated to the first RSRP, and if the difference obtained by subtracting the corresponding reference value from the first RSRP is equal to or greater than the third difference threshold, the reference value corresponding to the first RSRP may not be updated, or the target period (T SearchDeltaP), it can be determined whether the first difference of each first RSRP is smaller than the second difference threshold, and if the first difference of a certain first RSRP is smaller than the second difference threshold, the corresponding reference value can be updated based on the first RSRP. For example, the reference value corresponding to the first RSRP can be updated to the first RSRP, and if the first difference of a certain first RSRP is equal to or greater than the first difference threshold, the reference value corresponding to the first RSRP does not need to be updated.

[0145] Similarly, when the terminal device performs cell switching, it may update the corresponding reference value based on each second RSRP. For example, for each second RSRP, it may update the reference value corresponding to the second RSRP to the second RSRP. Or, for each second RSRP, it may determine whether the difference obtained by subtracting the corresponding reference value from the second RSRP is greater than a third difference threshold. If the difference obtained by subtracting the corresponding reference value from the second RSRP is greater than the third difference threshold, it may update the corresponding reference value based on the second RSRP. For example, it may update the reference value corresponding to the second RSRP to the second RSRP. If the difference obtained by subtracting the corresponding reference value from the second RSRP is less than or equal to the third difference threshold, there is no need to update the reference value corresponding to the second RSRP, and it may be determined within a set time length (T1) whether the second difference of each second RSRP is less than the first difference threshold, and if the second difference of a certain second RSRP is greater than or equal to the first difference threshold, the corresponding reference value may be updated based on the second RSRP, for example, the reference value corresponding to the second RSRP is updated to the second RSRP, and if the difference between the two 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.

[0146] A measurement method according to an embodiment of the present disclosure includes acquiring a measurement value of a target measurement, where the target measurement value includes an RLM measurement and / or an RRM measurement, and determining a target event state triggered by a terminal device based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering a mitigation event or exiting from the mitigation event. This allows the terminal device to effectively determine whether to trigger a mitigation event based on the measurement value of the target measurement and reference information corresponding to the target measurement. When triggering a mitigation event, the terminal device reports the mitigation event to a network device, thereby implementing a mitigation mechanism to improve the battery life of the terminal device. Furthermore, using reference information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device should trigger a mitigation event or exit from the mitigation event can improve the accuracy and reliability of the event determination result.

[0147] It should be noted that these possible implementations described above may be implemented alone or in combination, and the embodiments of the present disclosure are not limited thereto.

[0148] In any one embodiment of the present disclosure, a protocol may be implemented to define an event Event R1 (including entering a mitigation event and exiting a mitigation event).

[0149] As an example, an exit from a mitigation event, e.g., a non-low mobility event or a high mobility event, can be marked as Event R1-2, and Event R1-2 can be determined based on low mobility criteria, i.e., target period T SearchDeltaP The measured value Srxlev detected by the terminal device and the reference value Srxlev Ref The difference between the second difference threshold S SearchDeltaPIf it is greater than ', it indicates that the variation range of the reference signal is large, and in this case, it can be determined that the terminal device is not in a low-mobility state.

[0150] Furthermore, within the set time length T1, the measured value Srxlev detected by the terminal device and the reference value Srxlev Ref The difference between the second difference threshold S SearchDeltaP ', and the difference is greater than a second difference threshold S SearchDeltaP If it is greater than ', it can be determined that the target event triggered by the terminal device is an exit from a mitigation event or a non-low mobility event.

[0151] Example 4: The judgment condition for Event R1-2 is that T SearchDeltaP With units of (Srxlev Ref -Srxlev)>S SearchDeltaP ', it can be determined that the target event triggered by the terminal device is an exit from a mitigation event or a non-low mobility event.

[0152] Here, the unit of the measured value Srxlev is dB, and the reference value Srxlev Ref The unit is dB.

[0153] Here, when any one of the following conditions is met, the reference value is set as the measured value. (1) The terminal device is switched to a new serving cell. (2) Srxlev-Srxlev Ref >0. (3) Target period T SearchDeltaP Within, (Srxlev Ref -Srxlev) SearchDeltaP The low mobility criterion is not met.

[0154] ​Referring to Figure 8, Figure 8 is a flowchart of another measurement method provided by an embodiment of the present disclosure. The measurement method may be performed by a terminal device in the communication system shown in Figure 1. The measurement method may be performed independently, in combination with any one of the embodiments of the present disclosure or possible implementation forms of the embodiments, or together with any one of the technical solutions of the related art.

[0155] As shown in FIG. 8, the measurement method may include the following steps 801 to 803.

[0156] Step 801: Obtaining target measurement values ​​including RLM and / or RRM measurements, the measurement values ​​including a plurality of first SINRs obtained by measuring a plurality of downlink reference signals.

[0157] In the embodiments of the present disclosure, step 801 can be implemented in any one of the manners of the embodiments of the present disclosure, and the embodiments of the present disclosure are not limited thereto, and detailed description thereof will be omitted.

[0158] In an embodiment of the present disclosure, a terminal device may perform at least one measurement on a plurality of downlink reference signals to obtain a plurality of measurement values, which may be described in the present disclosure as a plurality of first SINRs.

[0159] Step 802: Determine a first quality threshold based on threshold indication information in the reference information corresponding to the target measurement.

[0160] In an embodiment of the present disclosure, the criteria information sent from the network device may include threshold indication information, for example, the network device may set the threshold indication information through an RRC message.

[0161] In an embodiment of the present disclosure, the terminal device may determine a first quality threshold based on the threshold indication information, where the first quality threshold is used to characterize a reference signal quality.

[0162] In one possible implementation of the embodiment of the present disclosure, the threshold indication information may include a first offset, and optionally, the first offset may be marked as offset1.

[0163] In the embodiment of the present disclosure, the terminal device can determine the first quality threshold based on the first offset, for example, by adding the first offset and the first set threshold to obtain the first quality threshold, where the first set threshold is the threshold Q corresponding to the RLM measurement in the related art. in or Q out may be.

[0164] In another possible implementation form of the embodiment of the present disclosure, the threshold indication information may include a target threshold, and the terminal device may determine a first quality threshold based on the target threshold, for example, the target threshold may be the first quality threshold.

[0165] Step 803: In response to the plurality of first SINRs all being greater than the first quality threshold, determine that the target event is approaching a mitigation event, or in response to the existence of at least one first SINR greater than the first quality threshold, determine that the target event is approaching a mitigation event.

[0166] In one possible implementation form of an embodiment of the present disclosure, if all of the multiple first SINRs are higher than a first quality threshold, it can be determined that the target event triggered by the terminal device is an entry into a mitigation event, i.e., it is determined that the terminal device meets the mitigation entry criteria.

[0167] In another possible implementation form of an embodiment of the present disclosure, if 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 into a mitigation event, i.e., it is determined that the terminal device meets the mitigation entry criteria.

[0168] It should be noted that if the first SINR is greater than the first quality threshold, it can be determined that the signal quality of the quasi-signal is good, and in this case, the entry into the mitigation event may be referred to as a cell signal quality good event.

[0169] A measurement method according to an embodiment of the present disclosure includes acquiring a measurement value of a target measurement, where the target measurement value includes an RLM measurement and / or an RRM measurement, and determining a target event state triggered by a terminal device based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering a mitigation event or exiting from the mitigation event. This allows the terminal device to effectively determine whether to trigger a mitigation event based on the measurement value of the target measurement and reference information corresponding to the target measurement. When triggering a mitigation event, the terminal device reports the mitigation event to a network device, thereby implementing a mitigation mechanism to improve the battery life of the terminal device. Furthermore, using reference information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device should trigger a mitigation event or exit from the mitigation event can improve the accuracy and reliability of the event determination result.

[0170] It should be noted that these possible implementations described above may be implemented alone or in combination, and the embodiments of the present disclosure are not limited thereto.

[0171] In any one embodiment of the present disclosure, a protocol contract may define an event Event R2 (including an entry into a mitigation event and an exit from a mitigation event).

[0172] For example, when a mitigation event occurs, such as a cell signal quality good event, it can be marked as Event R2-1, and Event R2-1 can be determined based on a signal quality good criterion. That is, when multiple RSs (i.e., reference signals) are configured in a serving cell, 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 signal quality good criterion.

[0173] Example 5: All RSs are measured with the SINR measured > First quality threshold (Q out +Offset1), determine that the terminal device meets the good signal quality criterion, and determine that the target event triggered by the terminal device is an entry into a mitigation event or a cell signal quality good event.

[0174] Example 6: Either RS ​​is measured SINR measured > First quality threshold (Q out +Offset1), determine that the terminal device meets the good signal quality criterion, and determine that the target event triggered by the terminal device is an entry into a mitigation event or a cell signal quality good event.

[0175] Referring to Figure 9, Figure 9 is a flowchart of another measurement method provided by an embodiment of the present disclosure. The measurement method may be performed by a terminal device in the communication system shown in Figure 1. The measurement method may be performed independently, in combination with any one of the embodiments or possible implementation forms of the embodiments of the present disclosure, or together with any one of the technical solutions of the related art.

[0176] As shown in FIG. 9, the measurement method may include, but is not limited to, the following steps 901 to 903.

[0177] Step 901: Obtaining target measurement values, including RLM and / or RRM measurements, where the measurement values ​​include a plurality of first SINRs obtained by measuring a plurality of downlink reference signals.

[0178] In the embodiments of the present disclosure, step 901 can be implemented in any one of the manners of the embodiments of the present disclosure, and the embodiments of the present disclosure are not limited thereto, and detailed description thereof will be omitted.

[0179] Step 902: Determine a second quality threshold based on threshold indication information in the reference information corresponding to the target measurement.

[0180] In an embodiment of the present disclosure, the criteria information sent from the network device may include threshold indication information, for example, the network device may set the threshold indication information through an RRC message.

[0181] In an embodiment of the present disclosure, the terminal device determines a second quality threshold based on the threshold indication information, where the second quality threshold is used to characterize the reference signal quality.

[0182] In one possible implementation of the embodiment of the present disclosure, the threshold indication information may include a second offset, and optionally mark the second offset as offset2. The terminal device can determine a second quality threshold based on the second offset, for example, by adding the second offset and the second setting threshold to obtain the second quality threshold.

[0183] Here, the second set threshold is the threshold Q corresponding to the RLM measurement in the related art. in or Q out may be.

[0184] Here, the second offset and the first offset may be the same or different, and the present disclosure is not limited thereto.

[0185] Here, the first set threshold and the second set threshold may be the same or different, and the present disclosure is not limited thereto.

[0186] In addition, the first offset set by the network device to determine whether to trigger entry into a mitigation event may be different from the second offset to determine whether to trigger exit from the mitigation event, and in this case, the first set threshold and the second set threshold may be the same, and the first quality threshold and the second quality threshold may be different.

[0187] In another possible implementation form of the embodiments of the present disclosure, the threshold indication information may include a target threshold, and the terminal device may determine a second quality threshold based on the target threshold, for example, the target threshold may be the second quality threshold.

[0188] Step 903: In response to the presence of at least one first SINR that is less than or equal to the second quality threshold, the target event triggered by the terminal device can be determined to be an exit from a mitigation event, or in response to multiple first SINRs all being less than or equal to the second quality threshold, the target event can be determined to be an exit from a mitigation event.

[0189] In an embodiment of the present disclosure, if there is at least one first SINR that is equal to or less than the second quality threshold, it can be determined that the target event triggered by the terminal device is an exit from the mitigation event, that is, it can be determined that the terminal device satisfies the exit from the mitigation criterion. Alternatively, if each first SINR is equal to or less than the second quality threshold, it can be determined that the target event triggered by the terminal device is an exit from the mitigation event, that is, it can be determined that the terminal device satisfies the exit from the mitigation criterion.

[0190] Furthermore, if 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, and in this case, the exit from the mitigation event is referred to as a non-cell signal quality good event or a cell signal quality poor event.

[0191] A measurement method according to an embodiment of the present disclosure includes acquiring a measurement value of a target measurement, where the target measurement value includes an RLM measurement and / or an RRM measurement, and determining a target event state triggered by a terminal device based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering a mitigation event or exiting from the mitigation event. This allows the terminal device to effectively determine whether to trigger a mitigation event based on the measurement value of the target measurement and reference information corresponding to the target measurement. When triggering a mitigation event, the terminal device reports the mitigation event to a network device, thereby implementing a mitigation mechanism to improve the battery life of the terminal device. Furthermore, using reference information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device should trigger a mitigation event or exit from the mitigation event can improve the accuracy and reliability of the event determination result.

[0192] It should be noted that these possible implementations described above may be implemented alone or in combination, and the embodiments of the present disclosure are not limited thereto.

[0193] In any one embodiment of the present disclosure, a protocol contract may define an event Event R2 (including an entry into a mitigation event and an exit from a mitigation event).

[0194] For example, an exit from a mitigation 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 a signal quality good criterion. That is, if multiple RSs (i.e., reference signals) are configured in the serving cell, each RS may be measured, and the SINR corresponding to the measured RS may be compared with a threshold to determine whether the terminal device meets the signal quality good criterion.

[0195] Example 7: Any one RS is measured value SINR measured < Second quality threshold (Q out +Offset2), determine that the terminal device does not meet the good signal quality criterion, and determine that the target event triggered by the terminal device is an exit from a mitigation event or a non-cell good signal quality event or a cell poor signal quality event.

[0196] In Example 8, all RSs were measured with SINR measured < Second quality threshold (Q out +Offset2), determine that the terminal device does not meet the good signal quality criterion, and determine that the target event triggered by the terminal device is an exit from a mitigation event or a non-cell good signal quality event or a cell poor signal quality event.

[0197] Referring to Figure 10, Figure 10 is a flowchart of another measurement method provided by an embodiment of the present disclosure. The measurement method may be performed by a terminal device in the communication system shown in Figure 1. The measurement method may be performed independently, in combination with any one embodiment or possible implementation form of the embodiment of the present disclosure, or together with any one technical solution of the related art.

[0198] As shown in FIG. 10, the measurement method may include, but is not limited to, the following steps 1001 to 1003.

[0199] Step 1001: obtain measurement values ​​of target measurements including RLM measurements and / or RRM measurements, and the measurement values ​​include a plurality of second SINRs obtained by measuring each downlink reference signal in the plurality of downlink reference signals a plurality of times within a set time length.

[0200] In the embodiments of the present disclosure, step 1001 can be implemented by any one of the methods in the embodiments of the present disclosure, and the embodiments of the present disclosure are not limited thereto, and detailed description thereof will be omitted.

[0201] In the embodiments of the present disclosure, for the description of the set time length, please refer to any one of the embodiments of the present disclosure, and detailed description will be omitted here.

[0202] In an embodiment of the present disclosure, the terminal device may perform multiple measurements on each downlink reference signal among the multiple downlink reference signals within a set time period to obtain multiple measurement values ​​corresponding to each downlink reference signal, which are referred to as multiple second SINRs in the present disclosure.

[0203] Step 1002: Determine a first quality threshold based on threshold indication information in the reference information corresponding to the target measurement.

[0204] In the embodiments of the present disclosure, step 1002 can be implemented in any one of the manners in the embodiments of the present disclosure, and the embodiments of the present disclosure are not limited thereto, and a detailed description thereof will be omitted.

[0205] Step 1003: In response to a plurality of second SINRs corresponding to each downlink reference signal being all greater than a first quality threshold, determine that the target event triggered by the terminal device is entering a mitigation event, or in response to the existence of a plurality of second SINRs corresponding to at least one downlink reference signal being all greater than the first quality threshold, determine that the target event is entering a mitigation event.

[0206] In an embodiment of the present disclosure, if multiple second SINRs corresponding to each downlink reference signal are all greater than the first quality threshold, it can be determined that the target event triggered by the terminal device is entering a mitigation event, or if there are multiple second SINRs corresponding to at least one downlink reference signal that are all greater than the first quality threshold, it can be determined that the target event triggered by the terminal device is entering a mitigation event, that is, it can be determined that the terminal device meets the mitigation entry criteria.

[0207] If the second SINR is higher than the first quality threshold, it may be determined that the signal quality of the downlink reference signal is good, and in this case, the entry into the mitigation event may be referred to as a cell signal quality good event.

[0208] A measurement method according to an embodiment of the present disclosure includes acquiring a measurement value of a target measurement, where the target measurement value includes an RLM measurement and / or an RRM measurement, and determining a target event state triggered by a terminal device based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering a mitigation event or exiting from the mitigation event. This allows the terminal device to effectively determine whether to trigger a mitigation event based on the measurement value of the target measurement and reference information corresponding to the target measurement. When triggering a mitigation event, the terminal device reports the mitigation event to a network device, thereby implementing a mitigation mechanism to improve the battery life of the terminal device. Furthermore, using reference information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device should trigger a mitigation event or exit from the mitigation event can improve the accuracy and reliability of the event determination result.

[0209] It should be noted that these possible implementations described above may be implemented alone or in combination, and the embodiments of the present disclosure are not limited thereto.

[0210] In any one embodiment of the present disclosure, a protocol contract may define an event Event R2 (including an entry into a mitigation event and an exit from a mitigation event).

[0211] For example, when a mitigation event occurs, such as a cell signal quality good event, it may be marked as Event R2-1, and Event R2-1 may be determined based on a signal quality good criterion, i.e., when multiple RSs (i.e., reference signals) are configured in the serving cell, each RS may be measured, and the SINR corresponding to the measured RS may be compared with a threshold to determine whether the terminal device meets the signal quality good criterion.

[0212] Additionally, it may be determined whether the terminal device meets a good signal quality criterion within a further set time period T1.

[0213] In Example 9, within the set time length T1, all RSs are measured with a SINR measured > First quality threshold (Q out +Offset1), determine that the terminal device meets the good signal quality criterion, and determine that the target event triggered by the terminal device is an entry into a mitigation event or a cell signal quality good event.

[0214] In the tenth embodiment, within the set time length T1, any one of the RSs has a measurement value of 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 the entry into a mitigation event or a cell signal quality good event.

[0215] Referring to Fig. 11, Fig. 11 is a flowchart of another measurement method provided by an embodiment of the present disclosure. The measurement method may be performed by a terminal device in the communication system shown in Fig. 1. The measurement method may be performed independently, in combination with any one of the embodiments or possible implementations of the embodiments of the present disclosure, or together with any one technical solution of the related art.

[0216] As shown in FIG. 11, the measurement method may include, but is not limited to, the following steps 1101 to 1103.

[0217] Step 1101: obtain a measurement value of a target measurement including an RLM measurement and / or an RRM measurement, and the measurement value includes a plurality of second SINRs obtained by measuring each downlink reference signal in the plurality of downlink reference signals multiple times within a set time length.

[0218] In the embodiments of the present disclosure, step 1101 can be implemented by any one of the methods in the embodiments of the present disclosure, and the embodiments of the present disclosure are not limited thereto, and detailed description thereof will be omitted.

[0219] Step 1102: Determine a second quality threshold based on threshold indication information in the reference information corresponding to the target measurement.

[0220] In the embodiment of the present disclosure, step 1102 can be implemented in any one of the manners in the embodiments of the present disclosure, and the embodiment of the present disclosure is not limited thereto, and a detailed description thereof will be omitted.

[0221] Step 1103: In response to the presence of a plurality of second SINRs corresponding to at least one downlink reference signal, all of which are equal to or less than the second quality threshold, the target event triggered by the terminal device can be determined to be an exit from a mitigation event, or in response to the plurality of second SINRs corresponding to each downlink reference signal being equal to or less than the second quality threshold, the target event can be determined to be an exit from a mitigation event.

[0222] In an embodiment of the present disclosure, if there are multiple second SINRs corresponding to at least one downlink reference signal, all of which are equal to or less than the second quality threshold, it can be determined that the target event triggered by the terminal device is an exit from a mitigation event. Alternatively, if multiple second SINRs corresponding to each downlink reference signal are all equal to or less than the second quality threshold, it can be determined that the target event triggered by the terminal device is an exit from a mitigation event, that is, it can be determined that the terminal device satisfies the exit from the mitigation criterion.

[0223] Furthermore, if 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, and in this case, the exit from the mitigation event may be referred to as a non-cell signal quality good event or a cell signal quality poor event.

[0224] A measurement method according to an embodiment of the present disclosure includes acquiring a measurement value of a target measurement, where the target measurement value includes an RLM measurement and / or an RRM measurement, and determining a target event state triggered by a terminal device based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering a mitigation event or exiting from the mitigation event. This allows the terminal device to effectively determine whether to trigger a mitigation event based on the measurement value of the target measurement and reference information corresponding to the target measurement. When triggering a mitigation event, the terminal device reports the mitigation event to a network device, thereby implementing a mitigation mechanism to improve the battery life of the terminal device. Furthermore, using reference information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device should trigger a mitigation event or exit from the mitigation event can improve the accuracy and reliability of the event determination result.

[0225] It should be noted that these possible implementations described above may be implemented alone or in combination, and the embodiments of the present disclosure are not limited thereto.

[0226] In any one embodiment of the present disclosure, a protocol contract may define an event Event R2 (including an entry into a mitigation event and an exit from a mitigation event).

[0227] For example, an exit from a mitigation 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 a signal quality good criterion. That is, if multiple RSs (i.e., reference signals) are configured in the serving cell, each RS may be measured, and the SINR corresponding to the measured RS may be compared with a threshold to determine whether the terminal device meets the signal quality good criterion.

[0228] Furthermore, it can be determined whether the terminal device meets the good signal quality criterion within the set time length T1.

[0229] In the eleventh embodiment, within a set time length T1, an arbitrary RS is measured as a measured value of SINR measured < Second quality threshold (Q out +Offset2), determine that the terminal device does not meet the good signal quality criterion, and determine that the target event triggered by the terminal device is an exit from a mitigation event or a non-cell good signal quality event or a cell poor signal quality event.

[0230] In Example 12, within the set time length T1, all RSs have a measurement value SINR measured < Second quality threshold (Q out +Offset2), determine that the terminal device does not meet the good signal quality criterion, and the target event triggered by the terminal device is an exit from a mitigation event or a non-cell good signal quality event or a cell poor signal quality event.

[0231] In the above embodiments, the low mobility criterion and the good signal quality criterion are set as an example, but in actual applications, the low mobility criterion and the good signal quality criterion can be set simultaneously, for example, Event R1 and Event R2 are set simultaneously.

[0232] As an example, if the target event is the entry into a mitigation event, two embodiments need to be satisfied simultaneously, where one embodiment may be an embodiment corresponding to FIG. 4 or FIG. 5, and the other embodiment may be an embodiment corresponding to FIG. 8 or FIG. 10.

[0233] In one possible implementation, the reference information may include a target period, a first difference threshold, and threshold indication information.

[0234] For example, the measurement values ​​may include at least one first RSRP obtained by performing at least one measurement on a downlink reference signal within the target time period, or at least one first RSRP obtained by measuring at least one downlink reference signal within the target time period. The measurement values ​​may further include a plurality of first SINRs obtained by measuring a plurality of downlink reference signals.

[0235] A first difference between at least one first RSRP and a corresponding reference value can be determined, and in response to the first difference corresponding to the at least one first RSRP being smaller than a first difference threshold in the reference information, it is determined that the terminal device satisfies the low mobility criterion.

[0236] If the terminal device satisfies the low mobility criterion, it may further determine whether the terminal device satisfies the good cell signal quality criterion, for example, determining that the terminal device satisfies the good cell signal quality criterion in response to all of the multiple first SINRs being greater than a first quality threshold (wherein the first quality threshold is determined based on the threshold indication information), or determining that the terminal device satisfies the good cell signal quality criterion in response to there being at least one first SINR greater than the first quality threshold.

[0237] If the terminal device simultaneously meets the low mobility criterion and the good cell signal quality criterion, it determines that the target event is an entry into a mitigation event.

[0238] As another example, the measurements may include at least one first RSRP obtained by performing at least one measurement on a downlink reference signal within a target time period, or at least one first RSRP obtained by measuring at least one downlink reference signal within a target time period. The measurements may include a plurality of second SINRs obtained by performing multiple measurements on each downlink reference signal among the plurality of downlink reference signals within the set time length.

[0239] A first difference between at least one first RSRP and a corresponding reference value can be determined, and in response to the first difference corresponding to the at least one first RSRP being smaller than a first difference threshold in the reference information, it is determined that the terminal device satisfies the low mobility criterion.

[0240] If the terminal device satisfies the low mobility criterion, the terminal device may further determine whether the terminal device satisfies the good cell signal quality criterion, for example, determining that the terminal device satisfies the good cell signal quality criterion in response to a plurality of second SINRs corresponding to each downlink reference signal being all greater than a first quality threshold (wherein the first quality threshold is determined based on the threshold indication information), or determining that the terminal device satisfies the good cell signal quality criterion in response to there being a plurality of second SINRs corresponding to at least one downlink reference signal that are all greater than the first quality threshold.

[0241] If the terminal device simultaneously meets the low mobility criterion and the good cell signal quality criterion, it determines that the target event is an entry into a mitigation event.

[0242] As another example, measurements can be made over a target period (T SearchDeltaP ) or includes at least one first RSRP obtained by measuring a downlink reference signal at least once within a target period (T SearchDeltaP ) after the target period. The measurement values ​​further include a plurality of second RSRPs obtained by measuring the downlink reference signal a plurality of times within a set time length (T1) after the target period, or a plurality of second RSRPs obtained by measuring a plurality of downlink reference signals within the set time length (T1). The measurement values ​​further include a plurality of first SINRs obtained by measuring a plurality of downlink reference signals.

[0243] 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 the at least one first RSRP being all smaller than a first difference threshold in the reference information, a second difference between a plurality of second RSRPs and the corresponding reference value is determined, and in response to the second difference corresponding to the plurality of second RSRPs being all smaller than the first difference threshold, it is determined that the terminal device satisfies the low mobility criterion.

[0244] If the terminal device satisfies the low mobility criterion, it may further determine whether the terminal device satisfies the good cell signal quality criterion, for example, determining that the terminal device satisfies the good cell signal quality criterion in response to all of the multiple first SINRs being greater than a first quality threshold value (wherein the first quality threshold is determined based on the threshold indication information), or determining that the terminal device satisfies the good cell signal quality criterion in response to there being at least one first SINR greater than the first quality threshold.

[0245] If the terminal device simultaneously meets the low mobility criterion and the good cell signal quality criterion, it determines that the target event is an entry into a mitigation event.

[0246] As a further example, measurements may be taken over a target period (T SearchDeltaP ) or includes at least one first RSRP obtained by measuring a downlink reference signal at least once within a target period (T SearchDeltaP ) after the target period. The measurement values ​​further include a plurality of second RSRPs obtained by measuring the downlink reference signal a plurality of times within a set time length (T1) after the target period, or a plurality of second RSRPs obtained by measuring a plurality of downlink reference signals within the set time length (T1). The measurement values ​​further include a plurality of second SINRs obtained by measuring each downlink reference signal of the plurality of downlink reference signals a plurality of times within the set time length.

[0247] 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 the at least one first RSRP being all smaller than a first difference threshold in the reference information, a second difference between a plurality of second RSRPs and the corresponding reference value is determined, and in response to the second difference corresponding to the plurality of second RSRPs being all smaller than the first difference threshold, it is determined that the terminal device satisfies the low mobility criterion.

[0248] If the terminal device satisfies the low mobility criterion, it may further determine whether the terminal device satisfies the good cell signal quality criterion, for example, determining that the terminal device satisfies the good cell signal quality criterion in response to a plurality of second SINRs corresponding to each downlink reference signal being all greater than the first quality threshold, or determining that the terminal device satisfies the good cell signal quality criterion in response to there being a plurality of second SINRs corresponding to at least one downlink reference signal that are all greater than the first quality threshold.

[0249] If the terminal device simultaneously meets the low mobility criterion and the good cell signal quality criterion, it determines that the target event is an entry into a mitigation event.

[0250] For example, if Event R1-1 (Example 1 or Example 2) and Event R2-1 (Example 5, Example 6, Example 9 or Example 10) are simultaneously satisfied, it is determined that the target event triggered by the terminal device is entering a mitigation event, and the entering a mitigation event may be a good cell signal quality event and a low mobility event, and is marked as, for example, Event R3-1.

[0251] As another example, if the target event is an exit from a mitigation event, two examples may be satisfied simultaneously, or either one of the two examples may be satisfied, where one example may be an example corresponding to Figure 6 or Figure 7, and the other example may be an example corresponding to Figure 9 or Figure 11.

[0252] In one possible implementation, the reference information may include a target period, a second difference threshold, and threshold indication information.

[0253] For example, the measurement values ​​include at least one first RSRP obtained by performing at least one measurement on a downlink reference signal within the target time period, or at least one first RSRP obtained by measuring at least one downlink reference signal within the target time period, and further include a plurality of first SINRs obtained by measuring a plurality of downlink reference signals.

[0254] A first difference between at least one first RSRP and a corresponding reference value may be determined, and in response to there being at least one first difference corresponding to the first RSRP that is greater than or equal to a second difference threshold in the reference information, it is determined that the terminal device does not satisfy the low mobility criterion.

[0255] Further, a second quality threshold is determined based on the threshold indication information, and in response to the existence of at least one first SINR that is equal to or less than the second quality threshold, it is determined that the terminal device does not satisfy the cell signal quality good criterion, or in response to all of the multiple first SINRs being equal to or less than the second quality threshold, it is determined that the terminal device does not satisfy the cell signal quality good criterion.

[0256] If the terminal device does not meet the low mobility criterion and / or if the terminal device does not meet the good cell signal quality criterion, it is determined that the target event is an exit from a mitigation event.

[0257] As another example, the measurements include at least one first RSRP obtained by measuring a downlink reference signal at least once within a target time period, or at least one first RSRP obtained by measuring at least one downlink reference signal within a target time period, and further include a plurality of second SINRs obtained by measuring each downlink reference signal of the plurality of downlink reference signals a plurality of times within a set time length.

[0258] A first difference between at least one first RSRP and a corresponding reference value may be determined, and in response to there being at least one first difference corresponding to the first RSRP that is greater than or equal to a second difference threshold in the reference information, it is determined that the terminal device does not satisfy the low mobility criterion.

[0259] Further, a second quality threshold may be determined based on the threshold indication information, and in response to the existence of a plurality of second SINRs corresponding to at least one downlink reference signal, all of which are less than or equal to the second quality threshold, the terminal device is determined to not satisfy the cell signal quality good criterion, or in response to the plurality of second SINRs corresponding to each downlink reference signal being all less than the second quality threshold, the terminal device is determined to not satisfy the cell signal quality good criterion.

[0260] If the terminal device does not meet the low mobility criterion and / or if the terminal device does not meet the good cell signal quality criterion, it is determined that the target event is an exit from a mitigation event.

[0261] As another example, the measurements include at least one first RSRP obtained by performing at least one measurement on a downlink reference signal within a target period, or at least one first RSRP obtained by measuring at least one downlink reference signal within the target period. The measurements also include a plurality of second RSRPs obtained by measuring the downlink reference signal a plurality of times within a set time length after the target period, or a plurality of second RSRPs obtained by measuring a plurality of downlink reference signals within the set time length. The measurements also include a plurality of first SINRs obtained by measuring a plurality of downlink reference signals.

[0262] A first difference between at least one first RSRP and a corresponding reference value may be determined, and in response to the presence of at least one first difference corresponding to the first RSRP being equal to or greater than a second difference threshold, a second difference between a plurality of second RSRPs and the corresponding reference value is determined, and in response to the presence of at least one second difference corresponding to the second RSRP being equal to or greater than the second difference threshold, it is determined that the terminal device does not satisfy the low mobility criterion.

[0263] Further, a second quality threshold may be determined based on the threshold indication information, and in response to the existence of at least one first SINR that is equal to or less than the second quality threshold, it is determined that the terminal device does not satisfy the cell signal quality good criterion, or in response to all of the multiple first SINRs being equal to or less than the second quality threshold, it is determined that the terminal device does not satisfy the cell signal quality good criterion.

[0264] If the terminal device does not meet the low mobility criterion and / or if the terminal device does not meet the good cell signal quality criterion, it is determined that the target event is an exit from a mitigation event.

[0265] As a further example, the measurement values ​​may include at least one first RSRP obtained by performing at least one measurement on a downlink reference signal within the target time period, or at least one first RSRP obtained by measuring at least one downlink reference signal within the target time period. The measurement values ​​may also include a plurality of second RSRPs obtained by measuring the downlink reference signal a plurality of times within a set length of time after the target time period, or a plurality of second RSRPs obtained by measuring a plurality of downlink reference signals within the set length of time. The measurement values ​​may also include a plurality of second SINRs obtained by measuring each downlink reference signal of the plurality of downlink reference signals a plurality of times within the set length of time.

[0266] A first difference between at least one first RSRP and a corresponding reference value may be determined, and in response to the presence of at least one first difference corresponding to the first RSRP being equal to or greater than a second difference threshold, a second difference between a plurality of second RSRPs and the corresponding reference value is determined, and in response to the presence of at least one second difference corresponding to the second RSRP being equal to or greater than the second difference threshold, it is determined that the terminal device does not satisfy the low mobility criterion.

[0267] Further, a second quality threshold may be determined based on the threshold indication information, and in response to the existence of a plurality of second SINRs corresponding to at least one downlink reference signal, all of which are less than or equal to the second quality threshold, the terminal device is determined to not satisfy the cell signal quality good criterion, or in response to the plurality of second SINRs corresponding to each downlink reference signal being all less than the second quality threshold, the terminal device is determined to not satisfy the cell signal quality good criterion.

[0268] If the terminal device does not meet the low mobility criterion and / or if the terminal device does not meet the good cell signal quality criterion, it is determined that the target event is an exit from a mitigation event.

[0269] 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 can be determined that the target event triggered by the terminal device is an exit from a mitigation event, and the exit from the mitigation event may be a non-good cell signal quality event (poor cell signal quality event) and / or a non-low mobility event (high / low mobility event), for example, described as Event R3-2.

[0270] In any one embodiment of the present disclosure, the network device may configure criteria information corresponding to the low mobility criteria through an RRC message.

[0271] As an example, the reference information for the low mobility reference is a target period TSearchDeltaP , the first difference threshold S SearchDeltaP and / or a second difference threshold SSearchDeltaP'.

[0272] For the low mobility criterion, the measurement obtained by the terminal device may be L3-RSRP.

[0273] As an example, the criteria information for the cell signal quality good criteria may include threshold indication information (eg, Offset1 and / or Offset2).

[0274] For the cell signal quality good criterion, the measurement value obtained by the terminal device may be L1-SINR.

[0275] In any one embodiment of the present disclosure, the network device may configure at least one event for RLM measurements and / or RRM measurement mitigation.

[0276] For example, the network device may configure Event R1 for RRM measurement mitigation, i.e., perform the RRM mitigation mechanism when the mitigation entry criteria corresponding to Event R1 are met. The network device may configure Event R2 for RLM measurement mitigation, i.e., perform the RLM mitigation mechanism when the mitigation entry criteria corresponding to Event R2 are met. The network device may configure Event R1+Event R2 for RLM measurement mitigation, i.e., perform the RRM mitigation mechanism when the mitigation entry criteria corresponding to Event R2 and Event R1 are met simultaneously. The network device may configure Event R3 (Event R3-1, Event R3-2) for RLM measurement mitigation or RRM measurement mitigation.

[0277] Referring to Fig. 12, Fig. 12 is a flowchart of another measurement method provided by an embodiment of the present disclosure. The measurement method may be performed by a terminal device in the communication system shown in Fig. 1. The measurement method may be performed independently, in combination with any one of the embodiments or possible implementations of the embodiments of the present disclosure, or together with any one technical solution of the related art.

[0278] As shown in FIG. 12, the measurement method may include, but is not limited to, the following steps 1201 to 1204.

[0279] Step 1201: Obtain measurements of target measurements including RLM measurements and / or RRM measurements.

[0280] In step 1202, based on the measurement value and the reference information corresponding to the target measurement, it can be determined that the target event triggered by the terminal device is an exit from the mitigation event.

[0281] Steps 1201 to 1202 can be implemented by any one of the methods in the embodiments of the present disclosure shown in FIGS. 2, 3, 6, and 9, but the embodiments of the present disclosure are not limited thereto, and detailed description thereof will be omitted here.

[0282] Step 1203, in response to the target event being an exit from a mitigation event, reads a first possible value of a first timer, where the first timer times based on the time the terminal device last determined that an exit from a mitigation event was triggered.

[0283] In an embodiment of the present disclosure, the first timer is timed based on the time when the terminal device last determined that an exit from the mitigation event was triggered, i.e., the first timer is timed based on the time when the terminal device last determined that an exit from the mitigation criteria was met.

[0284] In an embodiment of the present disclosure, if the target event is an exit from a mitigation event, a first possible value of the timer may be read, which is referred to in the present disclosure as the first possible value.

[0285] Step 1204: In response to the first possible value being greater than the first count threshold and the second timer not running, sending an exit from the mitigation event and / or a measurement value to the network device, wherein the second timer is timed based on the time the terminal device last sent an exit from the mitigation event.

[0286] In an embodiment of the present disclosure, the second timer is timed based on the time when the terminal device last transmits an exit from the mitigation event, i.e., the time when the terminal device triggers the exit from the mitigation event and reports the exit from the mitigation event to the network device, where the second timer is started when the terminal device reports the exit from the mitigation event to the network device, and stops timed after a first set time period has elapsed since the second timer was started.

[0287] In an embodiment of the present disclosure, the first counting threshold is pre-set, for example, the first counting threshold may be set by a network device or may be promised by a protocol, and is not limited by the present disclosure.

[0288] In an embodiment of the present disclosure, in order to prevent the terminal device from frequently reporting information to the network device, the present disclosure may transmit an exit from the mitigation event and / or a measurement value to the network device when the first possible value of the first timer is greater than a first counting threshold (i.e., the first timer times out) and the second timer is not running. That is, when the duration length that triggers the terminal device to exit the mitigation event (i.e., the duration length during which the terminal device meets the mitigation exit criterion) reaches the first counting threshold and the terminal device does not report the exit from the mitigation event to the network device within a short short period of time (i.e., a first set time length), the terminal device may report the exit from the mitigation event and / or a measurement value to the network device.

[0289] In addition, if the second timer is running, it indicates that the terminal device has reported an exit from the mitigation event to the network device within the first set time period. In order to prevent the terminal device from frequently performing and reporting events, in one possible implementation form of an embodiment of the present disclosure, if the first possible value is greater than the first counting threshold and the second timer is running, the terminal device has reported an exit from the mitigation event to the network device within a short period of time, so the terminal device does not need to report the target event (i.e., an exit from the mitigation event) to the network device.

[0290] In one possible implementation of an embodiment of the present disclosure, if the first possible 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 operate or respond, for example, the terminal device may not report the target event (i.e., exit from the mitigation event) to the network device.

[0291] In any one embodiment of the present disclosure, if the target event triggered by the terminal device is an exit from a mitigation event, indicating that the signal quality of the serving cell is not good, and at this time, it is not limited by the second timer, i.e., if the first possible value of the first timer is greater than the first counting threshold, the terminal device can send the exit from the mitigation event and / or measurement value to the network device.

[0292] A measurement method according to an embodiment of the present disclosure includes acquiring a measurement value of a target measurement, where the target measurement value includes an RLM measurement and / or an RRM measurement, and determining a target event state triggered by a terminal device based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering a mitigation event or exiting from the mitigation event. This allows the terminal device to effectively determine whether to trigger a mitigation event based on the measurement value of the target measurement and reference information corresponding to the target measurement. When triggering a mitigation event, the terminal device reports the mitigation event to a network device, thereby implementing a mitigation mechanism to improve the battery life of the terminal device. Furthermore, using reference information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device should trigger a mitigation event or exit from the mitigation event can improve the accuracy and reliability of the event determination result.

[0293] It should be noted that these possible implementations described above may be implemented alone or in combination, and the embodiments of the present disclosure are not limited thereto.

[0294] In addition, when the set time length is not set, the setting of the first timer is to determine whether or not to report an exit from the mitigation event to the network device based on the possible values ​​of the first timer.

[0295] However, if a set time length is set, when the target event triggered by the terminal device is an exit from a mitigation event, for example, based on the embodiment shown in FIG. 7 or FIG. 11, it can be determined that the target event triggered by the terminal device is an exit from a mitigation event, thereby allowing the terminal device to determine whether the second timer is running; if the target event is an exit from a mitigation event and the second timer is not running, the terminal device can send the exit from the mitigation event and / or a measurement value to the network device; if the target event is an exit from a mitigation event and the second timer is running, the terminal device may not send the exit from the mitigation event to the network device, for example, the terminal device may only send the measurement value to the network device.

[0296] Alternatively, if a set time length is set, it may not be limited by the second timer, i.e., if the target event triggered by the terminal device is an exit from a mitigation event, the terminal device may transmit the exit from the mitigation event and / or measurements to the network device.

[0297] Referring to Figure 13, Figure 13 is a flowchart of another measurement method provided by an embodiment of the present disclosure. The measurement method may be performed by a terminal device in the communication system shown in Figure 1. The measurement method may be performed independently, in combination with any one of the embodiments or possible implementations of the embodiments of the present disclosure, or together with any one technical solution of the related art.

[0298] As shown in FIG. 13, the measurement method may include, but is not limited to, the following steps 1301 to 1304.

[0299] Step 1301 acquires measurements of target measurements including RLM measurements and / or RRM measurements.

[0300] Step 1302: Determine that the target event triggered by the terminal device is an entry into a mitigation event based on the measurement value and the reference information corresponding to the target measurement.

[0301] Steps 1301 to 1302 can be implemented by any one of the methods of the embodiments of the present disclosure shown in Figures 2, 3, 4, and 8, but the embodiments of the present disclosure are not limited thereto, and detailed description thereof will be omitted here.

[0302] Step 1303, in response to the target event being an entry into a mitigation event, reads a first possible value of a third timer, where the third timer times based on the time the terminal device most recently determined that an entry into a mitigation event was triggered.

[0303] In an embodiment of the present disclosure, the third timer is timed based on the time when the terminal device last determined that entry into a mitigation event was triggered, i.e., the third timer is timed based on the time when the terminal device last determined that the mitigation entry criteria were met.

[0304] In an embodiment of the present disclosure, when the target event triggered by the terminal device is the entry into a mitigation event, the possible value of the third timer may be read, which is described as the second possible value in the present disclosure.

[0305] Step 1304: In response to the second possible value being greater than the second count threshold and the fourth timer not running, transmitting the mitigation event entry and / or measurement value to the network device, wherein the fourth timer is timed based on the time the terminal device last transmitted the mitigation event entry.

[0306] In an embodiment of the present disclosure, the fourth timer is timed based on the time when the terminal device last sent a mitigation event entry, i.e., the fourth timer is timed based on the time when the terminal device most recently triggered a mitigation event entry and reported the mitigation event entry to the network device, where the fourth timer is started when the terminal device reports the mitigation event entry to the network device, and stops timed after a second set time period has elapsed since the fourth timer was started.

[0307] In an embodiment of the present disclosure, the second counting threshold is pre-set, for example, the second counting threshold may be set by a network device or may be promised by a protocol, and is not limited by the present disclosure.

[0308] In an embodiment of the present disclosure, in order to prevent the terminal device from frequently reporting information to the network device, the present disclosure may report the entry into the mitigation state and / or the measurement value to the network device when the second possible value of the third timer is greater than the second counting threshold (i.e., the third timer is in a timeout state) and the fourth timer is not running. That is, when the duration length that triggers the terminal device to enter the mitigation event (i.e., the duration length during which the terminal device meets the mitigation entry criterion) reaches the second counting threshold and the terminal device has not reported the entry into the mitigation event to the network device within a short period (i.e., a second set time length), the entry into the mitigation state and / or the measurement value may be reported to the network device.

[0309] In addition, if the fourth timer is running, it indicates that the terminal device has reported entering a mitigation event to the network device within the second set time period. In order to prevent the terminal device from frequently calculating and reporting events, in one possible implementation form of an embodiment of the present disclosure, if the second possible value is greater than the second counting threshold and the fourth timer is running, the terminal device has reported entering a mitigation event to the network device within a short period of time, so the terminal device does not need to report the target event (i.e., entering a mitigation event) to the network device.

[0310] In one possible implementation of the embodiments of the present disclosure, if the second possible value of the third timer is less than or equal to the second count threshold (i.e., the third timer has not timed out), the terminal device may not operate or respond, for example, the terminal device may not report the target event (i.e., entering a mitigation event) to the network device.

[0311] A measurement method according to an embodiment of the present disclosure includes acquiring a measurement value of a target measurement, where the target measurement value includes an RLM measurement and / or an RRM measurement, and determining a target event state triggered by a terminal device based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering a mitigation event or exiting from the mitigation event. This allows the terminal device to effectively determine whether to trigger a mitigation event based on the measurement value of the target measurement and reference information corresponding to the target measurement. When triggering a mitigation event, the terminal device reports the mitigation event to a network device, thereby implementing a mitigation mechanism to improve the battery life of the terminal device. Furthermore, using reference information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device should trigger a mitigation event or exit from the mitigation event can improve the accuracy and reliability of the event determination result.

[0312] It should be noted that these possible implementations described above may be implemented alone or in combination, and the embodiments of the present disclosure are not limited thereto.

[0313] In addition, when the set time length is not set, the setting of the third timer determines whether or not to report the entry into a mitigation event to the network device based on the possible values ​​of the third timer.

[0314] However, if a set time length is set, when the target event triggered by the terminal device is an entry into a mitigation event, for example, based on the embodiment shown in FIG. 5 or FIG. 10, it is determined that the target event triggered by the terminal device is an entry into a mitigation event, thereby allowing the terminal device to determine whether the fourth timer is running; if the target event is an entry into a mitigation event and the fourth timer is not running, the terminal device can send the entry into the mitigation event and / or the measurement value to the network device; if the target event is an entry into a mitigation event and the fourth timer is running, the terminal device may not send the entry into the mitigation event to the network device, for example, the terminal device may only send the measurement value to the network device.

[0315] Alternatively, if a set time length is set, it may be limited by a fourth timer, i.e., if the target event triggered by the terminal device is an entry into a mitigation event, the terminal device may transmit the entry into the mitigation event and / or the measurement value to the network device.

[0316] Referring to Figure 14, Figure 14 is a flowchart of another measurement method provided by an embodiment of the present disclosure. The measurement method may be performed by a terminal device in the communication system shown in Figure 1. The measurement method may be performed independently, in combination with any one of the embodiments or possible implementations of the embodiments of the present disclosure, or together with any one technical solution of the related art.

[0317] As shown in FIG. 14, the measurement method may include, but is not limited to, the following steps 1401 to 1403.

[0318] Step 1401 acquires measurements of target measurements including RLM measurements and / or RRM measurements.

[0319] Step 1402: Determine a target event triggered by the terminal device based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering or exiting a mitigation event.

[0320] Steps 1401 and 1402 can be implemented by any one of the methods in the embodiments of the present disclosure, but the embodiments of the present disclosure are not limited thereto, and detailed description thereof will be omitted.

[0321] Step 1403: In response to the target event being an exit from a mitigation event, sending an exit from the mitigation event and / or a measurement to the network device, or in response to the target event being an entry into a mitigation event, sending an entry into the mitigation event and / or a measurement to the network device.

[0322] In an embodiment of the present disclosure, whether to report a target event and / or a measurement value to a network device can be determined independently of the value of the timer. For example, when a terminal device triggers a target event, the terminal device may automatically report the target event and / or a measurement value to the network device. That is, if the target event is an exit from a mitigation event, the terminal device may transmit the exit from the mitigation event and / or a measurement value to the network device, and if the target event is an entry into a mitigation event, the terminal device may transmit the entry into the mitigation event and / or a measurement value to the network device.

[0323] A measurement method according to an embodiment of the present disclosure includes acquiring a measurement value of a target measurement, where the target measurement value includes an RLM measurement and / or an RRM measurement, and determining a target event state triggered by a terminal device based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering a mitigation event or exiting from the mitigation event. This allows the terminal device to effectively determine whether to trigger a mitigation event based on the measurement value of the target measurement and reference information corresponding to the target measurement. When triggering a mitigation event, the terminal device reports the mitigation event to a network device, thereby implementing a mitigation mechanism to improve the battery life of the terminal device. Furthermore, using reference information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device should trigger a mitigation event or exit from the mitigation event can improve the accuracy and reliability of the event determination result.

[0324] It should be noted that these possible implementations described above may be implemented alone or in combination, and the embodiments of the present disclosure are not limited thereto.

[0325] Referring to Figure 15, Figure 15 is a flowchart of another measurement method provided by an embodiment of the present disclosure. The measurement method may be performed by a terminal device in the communication system shown in Figure 1. The measurement method may be performed independently, in combination with any one of the embodiments or possible implementations of the embodiments of the present disclosure, or together with any one technical solution of the related art.

[0326] As shown in FIG. 15, the measurement method may include, but is not limited to, the following steps 1501 to 1504.

[0327] Step 1501 acquires measurements of target measurements including RLM measurements and / or RRM measurements.

[0328] Step 1502: Determine a target event to be triggered by the terminal device based on the measurement value and reference information corresponding to the target measurement.

[0329] Steps 1501 and 1502 can be implemented by any one of the methods in the embodiments of the present disclosure, but the embodiments of the present disclosure are not limited thereto, and detailed description thereof will be omitted.

[0330] Step 1503, in response to the target event being an entry into a mitigation event, determines a first measurement interval during which the terminal device periodically performs target measurements in the mitigation state.

[0331] In an embodiment of the present disclosure, when the target event triggered by the terminal device is the entry into a mitigation event, a first measurement interval preferred by the terminal device for periodically performing target measurements in a mitigation state can be determined.

[0332] For example, when the terminal device is not in a relaxed state, the terminal device may periodically perform target measurements using a small measurement interval, for example, one measurement every 5 seconds; when the terminal device is in a relaxed state, the terminal device may periodically perform target measurements using a large measurement interval, for example, one measurement every 10 seconds, i.e., the first measurement interval may be 10 seconds.

[0333] Step 1504: Send interval indication information corresponding to the first measurement interval to the network device, where the interval indication information includes a proportionality coefficient between the first measurement interval and a second measurement interval set by the network device.

[0334] In an embodiment of the present disclosure, the terminal device may send interval indication information corresponding to a first measurement interval to the network device, where the interval indication information may include a proportional coefficient between the first measurement interval and a second measurement interval set by the network device, so that after the network device receives the interval indication information, it can set the measurement interval corresponding to the terminal device based on the proportional coefficient in the interval indication information, for example, set the measurement interval of the terminal device to the first measurement interval.

[0335] Still taking the above example as an example, the first measurement interval preferred by the terminal device is 10 seconds, and the second measurement interval set by the network device is 5 seconds, so the proportional coefficient is 2, and the network device can adjust the second measurement interval to 10 seconds according to the proportional coefficient.

[0336] A measurement method according to an embodiment of the present disclosure includes acquiring a measurement value of a target measurement, where the target measurement value includes an RLM measurement and / or an RRM measurement, and determining a target event state triggered by a terminal device based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering a mitigation event or exiting from the mitigation event. This allows the terminal device to effectively determine whether to trigger a mitigation event based on the measurement value of the target measurement and reference information corresponding to the target measurement. When triggering a mitigation event, the terminal device reports the mitigation event to a network device, thereby implementing a mitigation mechanism to improve the battery life of the terminal device. Furthermore, using reference information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device should trigger a mitigation event or exit from the mitigation event can improve the accuracy and reliability of the event determination result.

[0337] It should be noted that these possible implementations described above may be implemented alone or in combination, and the embodiments of the present disclosure are not limited thereto.

[0338] Referring to Figure 16, Figure 16 is a flowchart of another measurement method provided by an embodiment of the present disclosure. The measurement method may be performed by a terminal device in the communication system shown in Figure 1. The measurement method may be performed independently, in combination with any one of the embodiments or possible implementation forms of the embodiments of the present disclosure, or together with any one technical solution of the related art.

[0339] As shown in FIG. 16, the measurement method may include, but is not limited to, the following steps 1601 to 1605.

[0340] Step 1601 acquires measurements of target measurements including RLM measurements and / or RRM measurements.

[0341] Step 1602: Determine that the target event triggered by the terminal device is an entry into a mitigation event based on the measurement value and the reference information corresponding to the target measurement.

[0342] Step 1603 sends the mitigation event entry and / or measurement to the network device.

[0343] Steps 1601 to 1603 can be implemented by any one of the methods in the embodiments of the present disclosure, but the embodiments of the present disclosure are not limited thereto, and detailed description thereof will be omitted.

[0344] Step 1604 receives a mitigation command sent from a network device.

[0345] In an embodiment of the present disclosure, after receiving an entry into a mitigation event transmitted from a terminal device, the network device may transmit a mitigation command to the terminal device, which controls the terminal device to enter a mitigation state.

[0346] Step 1605: In response to the mitigation command, control the terminal device to enter the mitigation state.

[0347] In an embodiment of the present disclosure, after receiving a mitigation command sent from a network device, the terminal device can enter a mitigation state in response to the mitigation command.

[0348] In one possible implementation form of the embodiments of the present disclosure, the mitigation command may further include a target proportionality coefficient, where the target proportionality coefficient may be generated by the network device based on the proportionality coefficient in the interval indication information transmitted from the terminal device, or the target proportionality coefficient may be automatically generated by the network device, and the present disclosure is not limited thereto. After the terminal device enters the mitigation state, it can determine a target measurement interval based on the target proportionality coefficient in the mitigation command and the second measurement interval set by the network device. For example, the product of the target proportionality coefficient and the second measurement interval can be the target measurement interval, so that the terminal device can periodically perform target measurements in the mitigation state based on the target measurement interval.

[0349] A measurement method according to an embodiment of the present disclosure includes acquiring a measurement value of a target measurement, where the target measurement value includes an RLM measurement and / or an RRM measurement, and determining a target event state triggered by a terminal device based on the measurement value and reference information corresponding to the target measurement, where the target event includes entering a mitigation event or exiting from the mitigation event. This allows the terminal device to effectively determine whether to trigger a mitigation event based on the measurement value of the target measurement and reference information corresponding to the target measurement. When triggering a mitigation event, the terminal device reports the mitigation event to a network device, thereby implementing a mitigation mechanism to improve the battery life of the terminal device. Furthermore, using reference information corresponding to the target measurement and the measurement value of the target measurement to determine whether the terminal device should trigger a mitigation event or exit from the mitigation event can improve the accuracy and reliability of the event determination result.

[0350] It should be noted that these possible implementations described above may be implemented alone or in combination, and the embodiments of the present disclosure are not limited thereto.

[0351] In any one embodiment of the present disclosure, the terminal device can report the target event to the network device through terminal assistance information UEAssistanceInformation (abbreviated as UAI).

[0352] For example, the network device may configure whether the terminal device needs to perform mitigation event detection (i.e., whether it needs to perform target event detection) and set related timer values ​​through an RRC message (e.g., RRC Reconfiguration=>otherConfig). The network device may also configure whether the terminal device is allowed to report preferred mitigation parameters, which are referred to in the present disclosure as interval indication information corresponding to the first measurement interval.

[0353] For example, the RRC message may include the following information: OtherConfig::= SEQUENCE { … rlm-ReportConfig CHOICE { release NULL, setup SEQUENCE rlmReportTimer ENUMERATED {…}, rlmReportPreferRelax ENUMERATED {setup} } … }

[0354] Here, rlmReportTimer may be the second or fourth timer below that avoids frequent reporting by the UAI, and rlmReportPreferRelax is the parameter reported by the UAI below.

[0355] Here, information such as measurements and target events obtained by the terminal device may be included in an RLM report (rlmReport).

[0356] As an example, the terminal device may specifically perform UAI initialization and report specific content.

[0357] The terminal device can decide whether to report based on the triggered target event (entering a mitigation event or exiting a mitigation event), where the reporting type may be per terminal device (per UE) or per serving cell group (per CG).

[0358] Here, when the terminal device reports according to per UE, it determines whether the target event triggered by the terminal device is an entry into a mitigation event or an exit from a mitigation event based on the SINR of the reference signal of the primary serving cell (PCell); when the terminal device reports according to per CG, it determines whether the target event triggered by the terminal device is an entry into a mitigation event or an exit from a mitigation event based on the SINR of the reference signal of the primary serving cell (PCell) or primary secondary serving cell (PScell).

[0359] That is, in any one embodiment of the present disclosure, if the reporting type of the target event is a terminal device, the measurement value of the primary serving cell and / or the target event corresponding to the terminal device can be sent to the network device. That is, if the reporting type of the target event is a terminal device, the terminal device can measure the downlink reference signal of the primary serving cell and determine the target event where the terminal device is located based on the measurement value, so that the information reported to the network device is the measurement value of the primary serving cell and / or the target event.

[0360] In any one embodiment of the present disclosure, if the reporting type of the target event is a cell group, the measurement value of the primary serving cell in the cell group corresponding to the terminal device and / or the target event may be sent to a network device, or the measurement value of the primary secondary serving cell in the cell group corresponding to the terminal device and / or the target event may be sent to a network device.

[0361] For example, if the cell group is an MCG, the terminal device can measure the downlink reference signal of the primary serving cell in the MCG and determine the target event where the terminal device is located based on the measurement value, so that the information reported by the network device is the measurement value and / or target event of the primary serving cell in the MCG corresponding to the terminal device.

[0362] If the cell group is an SCG, the terminal device may measure the downlink reference signal of the primary secondary service cell in the SCG, and based on the measurement value, determine the target event where the terminal device is located, so that the information reported by the network device is the measurement value and / or target event of the primary secondary service cell in the SCG corresponding to the terminal device.

[0363] Here, if a low mobility criterion or a good cell signal quality criterion is set, the reporting of the UAI message may be reported by one message, i.e., the UAI message reports a good cell signal quality event or a non-good cell signal quality event, or reports a low mobility event or a non-low mobility event.

[0364] When the low mobility criterion and the good cell signal quality criterion are set simultaneously, the UAI message report may be divided into two separate messages and reported respectively, where one UAI message is used to report a good cell signal quality event or a good non-cell signal quality event, and the other message is used to report a low mobility event or a non-low mobility event, or the UAI message report may be reported by one message, for example, the UAI message is used to report a good cell signal quality event or a good non-cell signal quality event, and is used to report a low mobility event or a non-low mobility event.

[0365] 1) UAI initialization may be as follows: When the network device configures the terminal device to report a target event, i.e., when the network device configures the terminal device to report a mitigation event, if the terminal device detects an exit from the mitigation event (the first timer times out) and the second timer is not running, it sets the value of the second timer to the timer value set by the network device, starts the second timer, initializes UAI transmission, and reports the content to the network device according to the following steps: When the terminal device detects an entry into a mitigation event (the third timer times out) and the fourth timer is not running, it sets the value of the fourth timer to the timer value set by the network device, starts the fourth timer, initializes UAI transmission, and reports the information to the network device according to the following steps:

[0366] 2) The contents of the report are as follows: The terminal device can report an RLM report to the network device via UEAssistanceInformation, including, but not limited to, exiting from a mitigation event, entering a mitigation event, mitigation parameters preferred by the terminal device (i.e., interval indication information corresponding to the first measurement interval), measurement values, etc.

[0367] For example, if the terminal device is configured to provide RLM reporting, when the first timer times out, it automatically triggers a report by the terminal device, and the reported target event is an exit from a mitigation event, i.e., the target state in which the terminal device is located is Exiting mitigation When the third timer times out, it automatically triggers a report by the terminal device, and the reported target event is the entry into the mitigation event. That is, when reporting by the UAI message, the exit from the mitigation event may not be restricted by the second or fourth timer.

[0368] If the terminal device is configured to report measurements, the terminal device may report the measurements to the network device.

[0369] If 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.

[0370] Here, the definitions of the relevant timers may be as shown in Table 1.

[0371] [Table 1]

[0372] Note that each element and correspondence in Table 1 exists independently, and although these elements and correspondences are shown in one table as an example, not all elements and correspondences in the table necessarily have to exist simultaneously as shown in 1. The value of each element and each correspondence is independent of the value or correspondence of any other element in Table 1. Therefore, it is easy for a person skilled in the art to understand that each possible value of each element and each correspondence in Table 1 are independent embodiments.

[0373] In Table 1, if the low mobility criterion is set in the UAI, 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.

[0374] If the UAI is set to 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.

[0375] If a low mobility criterion and a good cell signal quality criterion are set in the UAI, the terminal device reports a good cell signal quality event and a low mobility event to the network device under the restriction of the Prohibit timer, and if any one of the criteria is not met, reports an exit from the mitigation event.

[0376] In any one embodiment of the present disclosure, the terminal device may report the target event and / or the measurement value through an RRC message, where the reporting type may be per UE / CG.

[0377] As an example, the network device may notify the terminal device of a measurement configuration measConfig via an RRC message such as an RRCReconfiguration message, where the measurement configuration may be bound to a measurement object (measObject), a reporting configuration (reportConfig) and a configuration ID (measId).

[0378] The measurement target of the measurement configuration may be a serving cell of the terminal device; The reporting of the measurement settings may be triggered based on an event.

[0379] When the terminal device receives the measurement configuration, it may perform a corresponding measurement process, for example, automatically triggering a report when the measurement value meets a condition corresponding to the event, and the report information may include the measurement value and / or the event entry condition that is met, i.e., the target event is entering the mitigation event; automatically triggering a report when the measurement value meets an exit condition corresponding to the event, and the report information may include the measurement value and / or the exit condition that is met, i.e., the target event is exiting the mitigation event.

[0380] 17, which is a flowchart of another measurement method provided by an embodiment of the present disclosure, which may be performed by a network device in the communication system shown in FIG.

[0381] As shown in FIG. 17, the measurement method may include, but is not limited to, the following step 1701:

[0382] Step 1701: receive a target event and / or measurement value transmitted from a terminal device, where the measurement value is a target measurement value, 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 reference information corresponding to the target measurement, and the target event includes entering or exiting a mitigation event.

[0383] In one possible implementation of the embodiments of the present disclosure, the network device can further send reference information to the terminal device.

[0384] In one possible implementation of an embodiment of the present disclosure, the network device may send a mitigation command to the terminal device in response to the target event being an entry into a mitigation event, where the mitigation command may control the terminal device to enter a mitigation state.

[0385] It should be noted that the description of the measurement method performed by the terminal device in any one of the above-mentioned embodiments also applies to the measurement method performed by the network device, and the implementation principles are similar, so detailed description is omitted here.

[0386] A measurement method according to an embodiment of the present disclosure includes receiving a target event and / or a measurement value transmitted from a network device or a terminal device, wherein the measurement value is a target measurement value, the target measurement value including an RLM measurement value and / or an RRM measurement value, the target event is determined based on the measurement value and reference information corresponding to the target measurement value, and the target event includes entering or exiting a mitigation event. This allows the terminal device to effectively determine whether to trigger a mitigation event based on the measurement value of the target measurement value and the reference information corresponding to the target measurement value. When triggering a mitigation event, the terminal device reports the mitigation event to the network device, thereby implementing a mitigation mechanism to improve the battery life of the terminal device. Furthermore, using the reference information corresponding to the target measurement value and the measurement value of the target measurement value to determine whether the terminal device should trigger a mitigation event or exit the mitigation event can improve the accuracy and reliability of the event determination result.

[0387] It should be noted that these possible implementations described above may be implemented alone or in combination, and the embodiments of the present disclosure are not limited thereto.

[0388] In the above embodiments of the present disclosure, the method provided by the embodiments of the present disclosure is described in terms of a terminal device and a network device. To realize each function in the method provided by the embodiments of the present disclosure, the network device of the terminal device may include a hardware structure and a software module, and each of the above functions may be realized in the form of a hardware structure, a software module, or a hardware structure plus a software module. Any of the above functions may be implemented in the form of a hardware structure, a software module, or a hardware structure plus a software module.

[0389] 18 is a structural schematic diagram of a measurement device 180 provided by an embodiment of the present disclosure. The measurement device 180 shown in FIG. 18 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, where the transmitting unit may be used to realize a transmitting function, the receiving unit may be used to realize a receiving function, and the transceiver unit may be used to realize a transmitting function and / or a receiving function.

[0390] The measurement device 180 may be a terminal device, a device in a terminal device, or a device usable in combination with a terminal device, or the measurement device 180 may be a network device, a device in a network device, or a device usable in combination with a network device.

[0391] When the measurement device 180 is a terminal device, the processing unit 1801 is used to obtain measurement values ​​of target measurements, where the target measurements include radio link monitoring (RLM) measurements and / or radio resource management (RRM) measurements, and determine a target event triggered by the terminal device based on the measurement values ​​and reference information corresponding to the target measurements, where the target event includes entering or exiting a mitigation event.

[0392] In some embodiments, the processing unit 1801 is specifically used to measure a downlink reference signal of a serving cell of a terminal device to obtain a measurement value.

[0393] In some embodiments, the reference information is transmitted by a network device and applies to the primary serving cell and / or the secondary serving cell.

[0394] In some embodiments, the measurement values ​​further include a plurality of second RSRPs obtained by measuring a downlink reference signal a plurality of times within a set time length after the target period, or a plurality of second RSRPs obtained by measuring a plurality of downlink reference signals within a set time length, and the processing unit 1801 is specifically used to determine a first difference between at least one first RSRP and a corresponding reference value, where the reference value corresponding to the first RSRP is obtained by measuring the first RSRP before the terminal device measures the first RSRP, and determine that the target event is entering a mitigation event in response to the first differences corresponding to the at least one first RSRP being smaller than a first difference threshold.

[0395] In some embodiments, the measurement values ​​further include a plurality of second RSRPs obtained by measuring a downlink reference signal a plurality of times within a set time length after the target period, or a plurality of second RSRPs obtained by measuring a plurality of downlink reference signals within the set time length, and the processing unit 1801 is specifically used to determine a second difference between the plurality of second RSRPs and corresponding reference values ​​in response to first differences corresponding to the plurality of first RSRPs all being smaller than a first difference threshold, where the reference value corresponding to the second RSRPs is obtained by measurement by the terminal device before measuring the second RSRPs, and determine that the target event is entering a mitigation event in response to second differences corresponding to the plurality of second RSRPs all being smaller than the first difference threshold.

[0396] In some embodiments, the reference information includes a target period and a second difference threshold, and the measurement values ​​include at least one first reference signal received power 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, and the processing unit 1801 is specifically used to determine a first difference between the at least one first RSRP and a corresponding reference value, where the reference value corresponding to the first RSRP is obtained by measuring the terminal device before measuring the first RSRP, and determine that the target event is an exit from a mitigation event in response to the existence of at least one first difference corresponding to the first RSRP that is greater than or equal to the second difference threshold.

[0397] In some embodiments, the measurement values ​​further include a plurality of second RSRPs obtained by measuring a downlink reference signal a plurality of times within a set time length after the target period, or include a plurality of second RSRPs obtained by measuring a plurality of downlink reference signals within the set time length, and the processing unit 1801 is specifically used to determine a second difference between the plurality of second RSRPs and corresponding reference values ​​in response to the existence of at least one first difference corresponding to the first RSRP being equal to or greater than a second difference threshold, where the reference value corresponding to the second RSRP is measured by the terminal device before measuring the second RSRP, and to determine that the target event is an exit from a mitigation event in response to the existence of at least one second difference corresponding to the second RSRP being equal to or greater than the second difference threshold.

[0398] In some embodiments, the reference value is updated in the following manner: updating the corresponding reference value based on the first RSRP in response to the terminal device performing a cell switch, or updating the corresponding reference value based on the first RSRP in response to a difference obtained by subtracting the corresponding reference value from the first RSRP being greater than a third difference threshold, or updating the corresponding reference value based on the first RSRP in response to the first difference of the first RSRP being greater than or equal to the first difference threshold within the target period, or updating the corresponding reference value based on the first RSRP in response to the first difference of the first RSRP being less than a second difference threshold within the target period.

[0399] In some embodiments, the reference value is updated in the following manner: updating the corresponding reference value based on the second RSRP in response to the terminal device performing a cell switch, or updating the corresponding reference value based on the first RSRP in response to a difference between the second RSRP and the corresponding reference value being greater than a third difference threshold, or updating the corresponding reference value based on the second RSRP in response to the second difference of the second RSRP being greater than or equal to the first difference threshold within a set length of time, or updating the corresponding reference value based on the second RSRP in response to the second difference of the second RSRP being less than the second difference threshold within a set length of time.

[0400] In some embodiments, the measurement values ​​include a plurality of first signal-to-interference and noise ratios (SINRs) obtained by measuring a plurality of downlink reference signals, and the reference information includes threshold indication information. The processing unit 1801 specifically determines a first quality threshold based on the threshold indication information, and determines that the target event is entering a mitigation event in response to the plurality of first SINRs all being greater than the first quality threshold, or determines that the target event is entering a mitigation event in response to the existence of at least one first SINR greater than the first quality threshold.

[0401] In some embodiments, the measurement values ​​include a plurality of first SINRs obtained by measuring a plurality of downlink reference signals, and the reference information includes threshold indication information, and the processing unit 1801 is specifically used to determine a second quality threshold based on the threshold indication information, and determine that the target event is an exit from a mitigation event in response to the existence of at least one first SINR that is less than or equal to the second quality threshold, or determine that the target event is an exit from a mitigation event in response to the plurality of first SINRs all being less than or equal to the second quality threshold.

[0402] In some embodiments, the measurement value includes a plurality of second SINRs obtained by measuring each downlink reference signal among the plurality of downlink reference signals multiple times within a set time length, and the reference information includes threshold indication information, and the processing unit 1801 is specifically used to determine a first quality threshold based on the threshold indication information, and determine that the target event is entering a mitigation event in response to the plurality of second SINRs corresponding to each downlink reference signal being all greater than the first quality threshold, or determine that the target event is entering a mitigation event in response to the existence of a plurality of second SINRs corresponding to at least one downlink reference signal all being greater than the first quality threshold.

[0403] In some embodiments, the measurement value includes a plurality of second SINRs obtained by measuring each downlink reference signal among the plurality of downlink reference signals multiple times within a set time length, and the reference information includes threshold indication information, and the processing unit 1801 is specifically used to determine a second quality threshold based on the threshold indication information, and determines that the target event is an exit from a mitigation event in response to there being a plurality of second SINRs corresponding to at least one downlink reference signal that are all less than the second quality threshold, or determines that the target event is an exit from a mitigation event in response to the plurality of second SINRs corresponding to each downlink reference signal being all less than the second quality threshold.

[0404] In some embodiments, the processing unit 1801 is further used to read a first possible value of a first timer in response to the target event being an exit from a mitigation event, where the first timer times based on the time when the terminal device last determined that an exit from the mitigation event was triggered.

[0405] The transceiver unit 1802 is further used to transmit an exit from the mitigation event and / or a measurement value to the network device in response to the first possible value being greater than the first counting threshold and the second timer not running, where the second timer times based on the time the terminal device last transmitted an exit from the mitigation event.

[0406] In some embodiments, the processing unit 1801 is further used to read a first possible value of a third timer in response to the target event being an entry into a mitigation event, where the third timer times based on the time when the terminal device most recently determined that an entry into a mitigation event was triggered.

[0407] The transceiver unit 1802 is further used to transmit the entry into the mitigation event and / or the measurement value to the network device in response to the second possible value being greater than the second counting threshold and the fourth timer not running, wherein the fourth timer times based on the time when the terminal device last transmitted the entry into the mitigation event.

[0408] In some embodiments, the transceiver unit 1802 is further used to transmit an exit from the mitigation event and / or a measurement value to the network device in response to the target event being an exit from the mitigation event and the second timer not running, where the second timer times based on the time the terminal device last transmitted an exit from the mitigation event.

[0409] In some embodiments, the transceiver unit 1802 further transmits the entry into the mitigation event and / or the measurement value to the network device in response to the target event being an entry into the mitigation event and the fourth timer not running, where the fourth timer times based on the time the terminal device last transmitted the entry into the mitigation event.

[0410] In some embodiments, the transceiver unit 1802 further transmits, in response to the reporting type of the target event being a terminal device, measurements of a primary serving cell corresponding to the terminal device and / or the target event to a network device, and, in response to the reporting type of the target event being a cell group, transmits, to the network device, measurements of a primary serving cell in a cell group corresponding to the terminal device and / or the target event, or transmits, to the network device, measurements of a primary secondary serving cell in a cell group corresponding to the terminal device and / or the target event.

[0411] In some embodiments, the transceiver unit 1802 is further used to transmit an exit from the mitigation event and / or measurements to the network device in response to the target event being an exit from the mitigation event, and to transmit an entry into the mitigation event and / or measurements to the network device in response to the target event being an entry into the mitigation event.

[0412] In some embodiments, the processing unit 1801 is further used to determine a first measurement interval during which the terminal device periodically performs target measurements in the mitigation state in response to the target event being an entry into a mitigation event.

[0413] The transceiver unit 1802 is further used for sending interval indication information corresponding to the first measurement interval to the network device, where the interval indication information includes a proportionality coefficient between the first measurement interval and a second measurement interval set by the network device.

[0414] In some embodiments, the transceiver unit 1802 is further used to receive mitigation commands sent from network devices.

[0415] The processing unit 1801 is further used for controlling the terminal device to enter a mitigation state in response to a mitigation command.

[0416] In some embodiments, the mitigation command includes a target proportionality coefficient, and the processing unit 1801 is further used to determine a target measurement interval based on the target proportionality coefficient and a second measurement interval set by the network device, and in the mitigation state, periodically perform target measurements based on the target measurement interval.

[0417] When the measurement device 180 is a network device, the transceiver unit 1802 is used to receive target events and / or measurement values ​​transmitted from a terminal device, where the measurement values ​​are measurement values ​​of target measurements, the target measurements include radio link monitoring (RLM) measurements and / or radio resource management (RRM) measurements, the target events are determined based on the measurement values ​​and reference information corresponding to the target measurements, and the target events include entering or exiting a mitigation event.

[0418] In some embodiments, the transceiver unit 1802 is further used to transmit reference information to a terminal device.

[0419] In some embodiments, the transceiver unit 1802 is further used to send a mitigation command to the terminal device in response to the target event being an entry into a mitigation event, where the mitigation command controls the terminal device to enter a mitigation state.

[0420] The description of the method executed by the terminal device side in any one of the embodiments shown in Figures 2 to 16, or the description of the method executed by the network device side in the embodiment shown in Figure 17, also applies to the measuring device 180 of that embodiment, and the implementation principles are similar, so detailed explanations will be omitted here.

[0421] 19, which is a structural schematic diagram of another measurement device provided by an embodiment of the present disclosure. The measurement device 190 may be a terminal device or a network device, or may be a chip, a chip system, a processor, etc. that supports the implementation of the above method by the terminal device or the network device. The device is used to implement the method described in the above method embodiment, and please refer to the description of the above method embodiment for details.

[0422] The measurement device 190 may include one or more processors 1901. The processor 1901 may be a general-purpose processor or a dedicated processor. For example, it may be a baseband processor or a central processor. The baseband processor may be used to process communication protocols and communication data, and the central processor 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 data of the computer programs.

[0423] Optionally, the measurement device 190 may include one or more memories 1902 in which a computer program 1903 is stored, and the processor 1901 executes the computer program 1903 to cause the measurement device 1900 to perform the methods described in the method embodiments above. The computer program 1903 may be fixed to the processor 1901, in which case the processor 1901 may be implemented in hardware.

[0424] Optionally, data may be stored in memory 1902. Measuring device 190 and memory 1902 may be provided separately or integrated together.

[0425] Optionally, the measuring device 190 may further include a transceiver 1905 and an antenna 1906. The transceiver 1905 may also be called a transceiver unit, transceiver, or transceiver circuit, and is used to realize a transmitting and receiving function. The transceiver 1905 may include a receiver and a transmitter, and the receiver may also be called a receiving device or receiving circuit, and is used to realize a receiving function, and the transmitter may also be called a transmitting device or transmitting circuit, and is used to realize a transmitting function.

[0426] Optionally, the measurement device 190 may further include one or more interface circuits 1907. The interface circuits 1907 are used to receive and send code instructions to the processor 1901. The processor 1901 executes the code instructions to cause the measurement device 190 to perform the methods described in the method embodiments above.

[0427] The measuring device 190 is a terminal device, and the processor 1901 is used to perform any one of the method embodiments of the above-mentioned FIGS. 2 to 16 of the present disclosure.

[0428] The measurement device 190 is a network device, and the processor 1901 is used to perform the method embodiment shown in FIG. 17 above of the present disclosure.

[0429] The description of the measurement method in any one of the embodiments shown in Figures 2 to 17 above can also be applied to the measurement device 190 of that embodiment, and the implementation principle is similar, so detailed description will be omitted here.

[0430] In one implementation, the 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 to read and write code / data, or the transceiver circuit, interface, or interface circuit may be used to transmit or convey signals.

[0431] In one implementation, the measurement device 190 may include circuitry capable of performing the transmit, receive, or communication functions of the method embodiments described above. The processors and transceivers described in this disclosure may be integrated into 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, or the like. The processors and transceivers may be fabricated using a variety of IC process technologies, such as complementary metal oxide semiconductor (CMOS), n-type metal oxide semiconductor (nMOS), p-type metal oxide semiconductor (PMOS), bipolar junction transistor (BJT), bipolar CMOS (BiCMOS), silicon germanium (SiGe), gallium arsenide (GaS), and the like.

[0432] The measurement device described in the above embodiments may be a terminal device or a network device, but the scope of the measurement device described in the present disclosure is not limited thereto, and the structure of the measurement device may not be limited by Fig. 19. The measurement device may be an independent device or part of a larger device. For example, the measurement device may be as follows: (1) An independent integrated circuit IC or chip, or a chip system or subsystem; (2) a set having one or more ICs, optionally including a storage component for storing data, computer programs; (3) ASIC, e.g., modem, (4) Modules that can be embedded into other devices; (5) Receivers, terminal devices, intelligent terminal devices, cellular phones, wireless devices, handhelds, mobile units, in-vehicle devices, network devices, cloud devices, artificial intelligence devices, etc. (6)Others.

[0433] When the measurement device is a chip or a chip system, please refer to the structural schematic diagram of the chip shown in Fig. 20. The chip shown in Fig. 20 includes a processor 2001 and an interface 2002. Here, the number of processors 2001 may be one or more, and the number of interfaces 2002 may be more than one.

[0434] When the chip is used to realize the functions of the terminal device of the embodiment of the present disclosure, The interface 2002 is used to receive and transmit code instructions to the processor; The processor 2001 is used to perform the method shown in any one of the embodiments of FIGS. 2 to 16 by executing code instructions.

[0435] When the chip is used to realize the functions of the network device of the embodiment of the present disclosure, The interface 2002 is used to receive and transmit code instructions to the processor; The processor 2001 is used to perform the method illustrated in the embodiment of FIG. 17 by executing code instructions.

[0436] Optionally, the chip further includes a memory 2003, which is used to store necessary computer programs and data.

[0437] The description of the measurement method in any one of the embodiments shown in FIGS. 2 to 17 above also applies to the chip of that embodiment, and the realization principle is similar, so a detailed description will be omitted here.

[0438] As will be appreciated by those skilled in the art, the various illustrative logical blocks and steps enumerated in the embodiments of the present disclosure can be realized by electronic hardware, computer software, or a combination of both. Whether such functions are realized by hardware or software depends on the specific application and the overall system design requirements. Those skilled in the art can realize the functions using various methods for each specific application, but such realization should not be understood as exceeding the scope of protection of the embodiments of the present disclosure.

[0439] An embodiment of the present disclosure further provides a communication system, the system including a measurement device as a terminal device or a network device in the embodiment of Figure 19 described above, or the system including a measurement device as a terminal device or a network device in the embodiment of Figure 20 described above.

[0440] The present disclosure further provides a readable storage medium having instructions stored thereon, which when executed by a computer implement the functions of any one of the method embodiments above.

[0441] The present disclosure further provides a computer program product, which, when executed by a computer, implements the functions of any one of the above method embodiments.

[0442] In the above embodiments, all or a portion thereof can be implemented in software, hardware, firmware, or any combination thereof. When implemented using software, all or a portion thereof can be implemented in the form of a computer program product. The computer program product includes one or more computer programs. When the computer programs are loaded and executed on a computer, the computer programs generate, in whole or in part, the flow or functions described in the embodiments of the present disclosure. The computer may be a general-purpose computer, a special-purpose computer, a computer network, or other programmable device. The computer programs may be stored in a computer-readable storage medium or transmitted from one computer-readable storage medium to another. For example, the computer program may be transmitted from one website, computer, server, or data center to another website, computer, server, or data center via wired (e.g., coaxial cable, optical fiber, digital subscriber line (DSL)) or wireless (e.g., infrared, radio, microwave, etc.) methods. The computer-readable storage medium may be any available medium accessible to a computer, or a data storage device such as a server, data center, or the like, integrating one or more available media. The usable medium may be a magnetic medium (e.g., a floppy disk, a hard disk, a magnetic tape), an optical medium (e.g., a high-density digital video disc (DVD)), or a semiconductor medium (e.g., a solid state disk (SSD)).

[0443] As will be appreciated by those skilled in the art, the various numerals, such as first, second, etc., used in the present disclosure are used for ease of explanation and do not limit the scope of the embodiments of the present disclosure, but also represent a priority order.

[0444] "At least one" in the present disclosure may be explained as "one or more," and "more" may be two, three, four or more, and is not limited by the present disclosure. In the embodiments of the present disclosure, for one technical feature, technical features in the same category are distinguished by "first," "second," "third," "A," "B," "C," and "D," etc., and there is no priority or size order between the technical features described by "first," "second," "third," "A," "B," "C," and "D."

[0445] In this disclosure, "plurality" refers to two or more, with other quantifiers being similar. "And / or" describes a relationship between related objects and indicates that three types of relationships are possible; for example, A and / or B can represent three cases: A being present alone, A and B being present simultaneously, or B being present alone. The character " / " generally indicates that the related objects before and after are in an "or" relationship. The singular forms "a kind of," "the," and "the" similarly include the plural, unless the context clearly indicates otherwise.

[0446] As used herein, "when" may be understood as "when" or "during" or "in response to determining."

[0447] The correspondences shown in each table in the present disclosure may be set or defined in advance. The possible values ​​of information in each table are merely examples and may be set to other values ​​and are not limited by the present disclosure. When setting the correspondences between information and each parameter, it is not necessary to set all of the correspondences shown in each table. For example, in the tables of the present disclosure, the correspondences shown in some rows may not be set. Furthermore, the tables may be appropriately modified or adjusted, such as by splitting or merging. The names of the parameters shown in the themes of each table may also be called other names understandable to the communication device, and the possible values ​​or display methods of the parameters may also be other possible values ​​or display methods understandable to the communication device. When implementing each of the tables, other data structures, such as arrays, queues, containers, stacks, linear lists, pointers, linked lists, trees, graphs, structures, classes, heaps, and hash tables, may be used.

[0448] Predefined in this disclosure may be understood as defined, predefined, stored, pre-stored, pre-agreed upon, pre-set, hardened, or pre-baked.

[0449] As can be understood by those skilled in the art, the units and algorithm steps of each example described in the embodiments disclosed herein can be implemented in electronic hardware or a combination of computer software and electronic hardware. Whether these functions are implemented in hardware or software depends on the specific application and design constraints of the technical solution. Those skilled in the art can implement the described functions using different methods for each specific application, and such implementation should not be considered as going beyond the scope of the present disclosure.

[0450] As can be clearly understood by those skilled in the art, for convenience and simplification of explanation, the specific working processes of the systems, devices and units described above are to be referred to the corresponding processes in the aforementioned method embodiments, and detailed descriptions thereof will be omitted here.

[0451] The above description is merely a specific embodiment of the present disclosure, and the scope of protection of the present disclosure is not limited thereto. Any changes or substitutions that can be easily thought of by a person skilled in the art without departing from the technical scope disclosed in the present disclosure should be included in the scope of protection of the present disclosure. Therefore, the scope of protection of the present disclosure should be pursuant to the claims.

Claims

1. A measurement method performed by a terminal device, comprising: obtaining target measurements including radio link monitoring (RLM) measurements and / or radio resource management (RRM) measurements; determining a target event triggered by the terminal device based on the measurement values ​​and reference information corresponding to the target measurement values, the target event including entering or exiting a mitigation state; The method comprises: in response to the target event being an exit from a mitigation state, transmitting the exit from the mitigation state and / or the measurement to a network device; in response to the target event being an entry into a mitigation state, transmitting the entry into a mitigation state and / or the measurement to the network device; In response to the reporting type of the target event being a terminal device, transmitting the measurement values ​​of a primary serving cell corresponding to the terminal device and / or the target event to a network device; In response to the reporting type of the target event being a cell group, transmitting the measurement values ​​of a primary serving cell in a cell group corresponding to the terminal device and / or the target event to the network device, or transmitting the measurement values ​​of a primary secondary serving cell in a cell group corresponding to the terminal device and / or the target event to a network device. A measuring method characterized by:

2. The step of obtaining a measurement value of the target measurement includes: obtaining the measurements by measuring a downlink reference signal of a serving cell of the terminal device; 2. The method of claim 1 .

3. The reference information includes a target period and a first difference threshold, and 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 at least one first RSRP obtained by measuring at least one downlink reference signal within the target period; determining a target event triggered by the terminal device based on the measurement value and reference information corresponding to the target measurement value, determining a first difference between the at least one first RSRP and a corresponding reference value, the reference value corresponding to the first RSRP being measured by the terminal device before measuring the first RSRP; determining that the target event is an entry into a mitigation state in response to any first difference corresponding to at least one of the first RSRPs being smaller than the first difference threshold; 2. The method of claim 1 .

4. The measurement values ​​further include a plurality of second RSRPs obtained by measuring a downlink reference signal a plurality of times within a set time length after the target period, or include a plurality of second RSRPs obtained by measuring a plurality of downlink reference signals within the set time length; determining that the target event is an entry into a mitigation state in response to any one of the first differences corresponding to at least one of the first RSRPs being smaller than the first difference threshold, determining second differences between the second RSRPs and corresponding reference values ​​in response to first differences corresponding to the first RSRPs being all less than the first difference threshold; determining that the target event is an entry into a mitigation state in response to second differences corresponding to the plurality of second RSRPs being all smaller than the first difference threshold; 4. The method of claim 3.

5. the reference information includes a target period and a second difference threshold, and 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 at least one first RSRP obtained by measuring at least one downlink reference signal within the target period; determining a target event triggered by the terminal device based on the measurement value and reference information corresponding to the target measurement value, determining a first difference between at least one of the first RSRPs and a corresponding reference value, the reference value corresponding to the first RSRP being measured by the terminal device before measuring the first RSRP; and determining the target event to be an exit from a mitigation state in response to the presence of at least one first difference corresponding to the first RSRP being greater than or equal to the second difference threshold.

2. The method of claim 1 .

6. The measurement values ​​further include a plurality of second RSRPs obtained by measuring a downlink reference signal a plurality of times within a set time length after the target period, or include a plurality of second RSRPs obtained by measuring a plurality of downlink reference signals within the set time length; determining that the target event is an exit from a mitigation state in response to at least one first difference corresponding to the first RSRP being equal to or greater than the second difference threshold; determining second differences between the second RSRPs and corresponding reference values ​​in response to at least one first difference corresponding to the first RSRP being equal to or greater than the second difference threshold; and determining that the target event is an exit from a mitigation state in response to the presence of at least one second difference corresponding to the second RSRP being greater than or equal to the second difference threshold.

6. The method of claim 5.

7. The reference value is updated in the following manner: In response to the terminal device performing a cell switch, updating a corresponding reference value based on the first RSRP; Or, updating the corresponding reference value based on the first RSRP in response to a difference obtained by subtracting the corresponding reference value from the first RSRP being greater than a third difference threshold; Or, updating a corresponding reference value based on the first RSRP in response to a first difference of the first RSRP being equal to or greater than a first difference threshold within the target period, or updating a corresponding reference value based on the first RSRP in response to the first difference of the first RSRP being less than a second difference threshold within the target period.

4. The method of claim 3.

8. The reference value is updated in the following manner: In response to the terminal device performing a cell switch, updating a corresponding reference value based on the second RSRP; Or, updating the corresponding reference value based on the second RSRP in response to a difference obtained by subtracting the corresponding reference value from the second RSRP being greater than a third difference threshold; Or, updating a corresponding reference value based on the second RSRP in response to the second difference of the second RSRP being equal to or greater than a first difference threshold within the set time length, or updating a corresponding reference value based on the second RSRP in response to the second difference of the second RSRP being smaller than a second difference threshold within the set time length.

5. The method of claim 4.

9. The measurement values ​​include a plurality of first signal-to-interference and noise ratios (SINRs) obtained by measuring a plurality of downlink reference signals, and the reference information includes threshold indication information; determining a target event triggered by the terminal device based on the measurement value and reference information corresponding to the target measurement value, determining a first quality threshold based on the threshold indication information, and determining that the target event is an entry into a mitigation state in response to a plurality of the first SINRs being all greater than the first quality threshold, or determining that the target event is an entry into a mitigation state in response to the presence of at least one of the first SINRs being greater than the first quality threshold; determining a second quality threshold based on the threshold indication information, and determining that the target event is an exit from a mitigation state in response to at least one of the first SINRs being equal to or less than the second quality threshold, or determining that the target event is an exit from a mitigation state in response to all of a plurality of the first SINRs being equal to or less than the second quality threshold.

2. The method of claim 1 .

10. the measurement value includes a plurality of second SINRs obtained by measuring each of the plurality of downlink reference signals a plurality of times within a set time length, and the reference information includes threshold indication information; determining a target event triggered by the terminal device based on the measurement value and reference information corresponding to the target measurement value, determining a first quality threshold based on the threshold indication information; and determining that the target event is an entry into a relaxed state in response to a plurality of second SINRs corresponding to each downlink reference signal being all greater than the first quality threshold, or determining that the target event is an entry into a relaxed state in response to the presence of a plurality of second SINRs corresponding to at least one downlink reference signal being all greater than the first quality threshold; determining a second quality threshold based on the threshold indication information, and determining that the target event is an exit from a relaxed state in response to the presence of a plurality of second SINRs corresponding to at least one downlink reference signal, all of which are equal to or less than the second quality threshold, or determining that the target event is an exit from a relaxed state in response to the plurality of second SINRs corresponding to each downlink reference signal being equal to or less than the second quality threshold.

2. The method of claim 1 .

11. reading a first possible value of a first timer in response to the target event being an exit from a mitigation state, the first timer timing based on the time the terminal device last determined that an exit from the mitigation state was triggered; and transmitting an exit from the easing state and / or the measurement value to a network device in response to the first possible value being greater than a first count threshold and a second timer not running, wherein the second timer is timed based on the time when the terminal device last transmitted an exit from the easing state.

2. The method of claim 1 .

12. reading a second possible value of a third timer in response to the target event being an entry into a mitigation state, the third timer timing based on a time when the terminal device determined that entry into the mitigation state was most recently triggered; and transmitting an entry into the easing state and / or the measurement value to a network device in response to the second possible value being greater than a second count threshold and a fourth timer not running, wherein the fourth timer is timed based on the time when the terminal device last transmitted an entry into the easing state.

2. The method of claim 1 .

13. In response to the target event being an exit from the mitigation state and a second timer not running, transmitting an exit from the mitigation state and / or the measurement to a network device, wherein the second timer is timed based on the time when the terminal device last transmitted an exit from the mitigation state; or and in response to the target event being an entry into a mitigation state and a fourth timer not running, transmitting the entry into the mitigation state and / or the measurement value to a network device, wherein the fourth timer is timed based on the time when the terminal device last transmitted an entry into the mitigation state.

2. The method of claim 1 .

14. determining a first measurement interval during which the terminal device periodically performs target measurements in a relaxation state in response to the target event being entry into a relaxation state; sending interval indication information corresponding to the first measurement interval to a network device, the interval indication information including a proportionality coefficient between the first measurement interval and a second measurement interval set by the network device; 2. The method of claim 1 .

15. receiving a mitigation command sent from a network device; and controlling the terminal device to enter a mitigation state in response to the mitigation command.

2. The method of claim 1 .

16. The mitigation command includes a target proportionality coefficient, and the measurement method includes: determining a target measurement interval based on the target proportionality coefficient and a second measurement interval set by the network device; and performing target measurements periodically in a relaxed state based on the target measurement interval.

16. The method of claim 15.

17. 1. A measurement method performed by a network device, comprising: receiving a target event and / or a measurement value transmitted from a terminal device, the measurement value being a measurement value of a target measurement, the target measurement value including a radio link monitor (RLM) measurement and / or a radio resource management (RRM) measurement, the target event being determined based on the measurement value and reference information corresponding to the target measurement value, the target event including entering or exiting a mitigation state; The step of receiving the target events and / or the measurement values ​​transmitted by the terminal device comprises: receiving, by the terminal device, in response to the target event being an exit from a mitigation state, the exit from the mitigation state and / or the measurement value transmitted to a network device; receiving, by the terminal device, in response to the target event being an entry into a mitigation state, the entry into the mitigation state and / or the measurement value transmitted to the network device; receiving, by the terminal device, the measurement values ​​of the primary serving cell corresponding to the terminal device and / or the target event, which are transmitted to a network device in response to the reporting type of the target event being terminal device; receiving, by the terminal device in response to the reporting type of the target event being a cell group, the measurement values ​​of a primary serving cell in a cell group corresponding to the terminal device and / or the target event transmitted to the network device, or receiving, by the terminal device in response to the reporting type of the target event being a cell group, the measurement values ​​of a primary secondary serving cell in a cell group corresponding to the terminal device and / or the target event transmitted to the network device; A measuring method characterized by:

18. and, in response to the target event being an entry into a mitigation state, transmitting to the terminal device a mitigation command for controlling the terminal device to enter a mitigation state.

18. The method of claim 17.

19. A measuring device applied to a terminal device, a processing unit for obtaining target measurement values, including radio link monitor (RLM) measurements and / or radio resource management (RRM) measurements, and determining a target event triggered by the terminal device based on the measurement values ​​and reference information corresponding to the target measurement values, wherein the target event includes entering or exiting an easing state; The processing unit In response to the target event being an exit from the mitigation state, transmitting the exit from the mitigation state and / or the measurement to a network device; In response to the target event being an entry into a mitigation state, transmitting the entry into the mitigation state and / or the measurement to the network device; In response to the reporting type of the target event being a terminal device, transmitting the measurement values ​​of the primary serving cell corresponding to the terminal device and / or the target event to a network device; used to transmit, in response to the reporting type of the target event being a cell group, the measurement values ​​of a primary serving cell in a cell group corresponding to the terminal device and / or the target event to the network device, or to transmit, in response to the reporting type of the target event being a cell group, the measurement values ​​of a primary secondary serving cell in a cell group corresponding to the terminal device and / or the target event to the network device; A measuring device characterized by:

20. A measurement device applied to a network device, a transceiver unit for receiving target events and / or measurement values ​​transmitted from a terminal device, the measurement values ​​being target measurement values, the target measurements including radio link monitor (RLM) measurements and / or radio resource management (RRM) measurements, the target events being determined based on the measurement values ​​and reference information corresponding to the target measurements, and the target events including entering or exiting an easing state; Receiving target events and / or the measurement values ​​transmitted by the terminal device includes: receiving, by the terminal device, in response to the target event being an exit from a mitigation state, the exit from the mitigation state and / or the measurement value transmitted to a network device; receiving, by the terminal device, in response to the target event being an entry into a mitigation state, the entry into the mitigation state and / or the measurement value transmitted to the network device; receiving, by the terminal device, the measurement values ​​and / or the target event of the primary serving cell corresponding to the terminal device, which are transmitted to a network device in response to the reporting type of the target event being terminal device; receiving, from the terminal device in response to the reporting type of the target event being a cell group, the measurement values ​​of a primary serving cell in a cell group corresponding to the terminal device and / or the target event transmitted to the network device, or receiving, from the terminal device in response to the reporting type of the target event being a cell group, the measurement values ​​of a primary secondary serving cell in a cell group corresponding to the terminal device and / or the target event transmitted to the network device; A measuring device characterized by:

21. A computer readable storage medium having stored thereon instructions which, when executed, implement the method of any one of claims 1 to 16 or the method of claim 17 or 18. A computer-readable storage medium comprising:

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