Communication methods, terminals, network equipment, communication systems, storage media and software products

CN122095652APending Publication Date: 2026-05-26BEIJING XIAOMI MOBILE SOFTWARE CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
BEIJING XIAOMI MOBILE SOFTWARE CO LTD
Filing Date
2024-09-23
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

In existing technologies, it is difficult to balance power saving and measurement performance of low-power user equipment (UE), especially when there are differences in power consumption among various receivers.

Method used

By combining a low-power first receiver and a high-power second receiver, and flexibly selecting measurement strategies based on measurement results and measurement result thresholds, power saving is achieved while ensuring measurement performance.

Benefits of technology

This enables the execution of all or part of the measurements of a high-power receiver on a low-power receiver, achieving power saving in the terminal while ensuring measurement performance.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN122095652A_ABST
    Figure CN122095652A_ABST
Patent Text Reader

Abstract

This disclosure provides a communication method, terminal, network device, communication system, storage medium, and program product, relating to the field of communication technology. The communication method includes: performing measurements based on the terminal's measurement results and a measurement result threshold; wherein the terminal's measurement results include the measurement results of a first receiver and / or a second receiver; the power consumption of the first receiver is lower than that of the second receiver. This disclosure determines the terminal's measurement behavior based on the terminal's measurement results and a measurement result threshold to ensure measurement performance. Because the power consumption of the first receiver is lower than that of the second receiver, it is possible to perform all or part of the measurements of the second receiver through the first receiver, thereby achieving power saving for the terminal.
Need to check novelty before this filing date? Find Prior Art

Description

Communication method, terminal, network device, communication system, storage medium and program product TECHNICAL FIELD

[0001] The present disclosure relates to the technical field of communication, and in particular to a communication method, a terminal, a network device, a communication system, a storage medium and a program product. BACKGROUND

[0002] With the development of communication technology, the types of user equipment (UE) are increasing. Among them, the UE supporting low power consumption will play an important role in more fields.

[0003] SUMMARY

[0004] The present disclosure provides a communication method, a terminal, a network device, a communication system, a storage medium and a program product, which can save power of the terminal while ensuring measurement performance.

[0005] According to a first aspect of an embodiment of the present disclosure, a communication method is provided, which is performed by a terminal including a first receiver and a second receiver, and the method includes:

[0006] performing measurement according to a measurement result of the terminal and a measurement result threshold;

[0007] wherein the measurement result of the terminal includes a measurement result of the first receiver and / or a measurement result of the second receiver; and the power consumption of the first receiver is lower than that of the second receiver.

[0008] According to a second aspect of an embodiment of the present disclosure, a communication method is provided, which is performed by a network device, and the method includes:

[0009] sending a measurement result threshold to a terminal, the measurement result threshold being used for the terminal to perform measurement according to a measurement result of the terminal;

[0010] wherein the terminal includes a first receiver and a second receiver; the measurement result of the terminal includes a measurement result of the first receiver and / or a measurement result of the second receiver; and the power consumption of the first receiver is lower than that of the second receiver.

[0011] According to a third aspect of an embodiment of the present disclosure, a communication method is provided, and the method includes:

[0012] a network device sends a measurement result threshold to a terminal;

[0013] the terminal receives the measurement result threshold sent by the network device, and performs measurement according to a measurement result of the terminal and the measurement result threshold;

[0014] The terminal includes a first receiver and a second receiver; the measurement result of the terminal includes a measurement result of the first receiver and / or a measurement result of the second receiver; and power consumption of the first receiver is lower than power consumption of the second receiver.

[0015] According to a fourth aspect of an embodiment of the present disclosure, a terminal is provided, which includes a first receiver and a second receiver, and includes:

[0016] a processing module configured to perform measurement according to a measurement result of the terminal and a measurement result threshold.

[0017] The terminal includes a first receiver and a second receiver; the measurement result of the terminal includes a measurement result of the first receiver and / or a measurement result of the second receiver; and power consumption of the first receiver is lower than power consumption of the second receiver.

[0018] According to a fifth aspect of an embodiment of the present disclosure, a network device is provided, which includes:

[0019] a transceiver configured to send a measurement result threshold to a terminal, the measurement result threshold being used by the terminal to perform measurement according to a measurement result of the terminal.

[0020] The terminal includes a first receiver and a second receiver; the measurement result of the terminal includes a measurement result of the first receiver and / or a measurement result of the second receiver; and power consumption of the first receiver is lower than power consumption of the second receiver.

[0021] According to a sixth aspect of an embodiment of the present disclosure, a terminal is provided, which includes:

[0022] one or more processors;

[0023] The terminal is configured to perform the communication method of any one of the first aspect.

[0024] According to a seventh aspect of an embodiment of the present disclosure, a network device is provided, which includes:

[0025] one or more processors;

[0026] The network device is configured to perform the communication method of any one of the second aspect.

[0027] According to an eighth aspect of an embodiment of the present disclosure, a communication system is provided, which includes a terminal and a network device.

[0028] The terminal is configured to perform the communication method of any one of the first aspect; and the network device is configured to perform the communication method of any one of the second aspect.

[0029] According to a ninth aspect of the embodiments of the present disclosure, a storage medium is provided, which stores instructions, when the instructions are executed on a communication device, causing the communication device to perform the communication method according to any one of the first aspect or the second aspect.

[0030] According to a tenth aspect of the embodiments of the present disclosure, a program product is provided, which includes a program and / or instructions, when the program and / or instructions are executed by a communication device, realizing the communication method according to any one of the first aspect or the second aspect.

[0031] According to the embodiments of the present disclosure, the measurement is performed according to the measurement result of the terminal and the measurement result threshold, to ensure the measurement performance. Since the power consumption of the first receiver of the terminal is lower than the power consumption of the second receiver of the terminal, all the measurements or part of the measurements of the second receiver can be performed by the first receiver, and thus the power saving of the terminal is realized. BRIEF DESCRIPTION OF DRAWINGS

[0032] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure, the following describes the drawings required for the embodiments, and the following drawings are only some embodiments of the present disclosure, and do not specifically limit the protection scope of the present disclosure.

[0033] FIG. 1 is an exemplary schematic diagram of a communication system architecture according to an embodiment of the present disclosure.

[0034] FIG. 2 is an exemplary interactive schematic diagram of a communication method according to an embodiment of the present disclosure.

[0035] FIG. 3A is an exemplary flow schematic diagram of a communication method according to an embodiment of the present disclosure.

[0036] FIG. 3B is an exemplary flow schematic diagram of a communication method according to an embodiment of the present disclosure.

[0037] FIG. 3C is an exemplary flow schematic diagram of a communication method according to an embodiment of the present disclosure.

[0038] FIG. 4A is an exemplary flow schematic diagram of a communication method according to an embodiment of the present disclosure.

[0039] FIG. 4B is an exemplary flow schematic diagram of a communication method according to an embodiment of the present disclosure.

[0040] FIG. 4C is an exemplary flow schematic diagram of a communication method according to an embodiment of the present disclosure.

[0041] FIG. 5 is an exemplary interactive schematic diagram of a communication method according to an embodiment of the present disclosure.

[0042] FIG. 6 is an exemplary scenario schematic diagram of a communication method according to an embodiment of the present disclosure.

[0043] FIG. 7A is a structural schematic diagram of a terminal according to an embodiment of the present disclosure.

[0044] FIG. 7B is a structural schematic diagram of a network device according to an embodiment of the present disclosure.

[0045] FIG. 8A is a structural schematic diagram of a communication device according to an embodiment of the present disclosure.

[0046] FIG. 8B is a structural schematic diagram of a chip according to an embodiment of the present disclosure. DETAILED DESCRIPTION

[0047] Embodiments of the present disclosure provide a communication method, a terminal, a network device, a communication system, a storage medium and a program product.

[0048] In a first aspect, embodiments of the present disclosure provide a communication method, performed by a terminal, the terminal comprising a first receiver and a second receiver, the method comprising:

[0049] performing measurement according to a measurement result of the terminal and a measurement result threshold.

[0050] In some embodiments, the measurement result of the terminal comprises a measurement result of the first receiver and / or a measurement result of the second receiver; and the power consumption of the first receiver is lower than the power consumption of the second receiver.

[0051] In the above embodiments, the measurement is performed according to the measurement result of the terminal and the measurement result threshold, so as to ensure the measurement performance. Since the power consumption of the first receiver of the terminal is lower than the power consumption of the second receiver of the terminal, the first receiver can be used to perform all or part of the measurement of the second receiver, thereby realizing power saving of the terminal.

[0052] In combination with some embodiments of the first aspect, in some embodiments, the performing measurement according to the measurement result of the terminal and the measurement result threshold comprises:

[0053] performing measurement by the first receiver, or performing measurement by the first receiver and the second receiver, according to the modulation mode of the received signal of the first receiver, the modulation mode of the received signal of the second receiver, the measurement result and the measurement result threshold.

[0054] In the above embodiments, whether the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same is determined, and measurement is performed by the first receiver or by the first receiver and the second receiver, so as to determine the measurement behavior based on different situations by using different strategies, thereby realizing the diversity and flexibility of determining the measurement behavior.

[0055] In some embodiments of the first aspect, the method further comprises:

[0056] when the modulation mode of the received signal of the first receiver is different from the modulation mode of the received signal of the second receiver, performing the measurement according to the measurement result of the second receiver and the measurement result threshold; or

[0057] when the modulation mode of the received signal of the first receiver is the same as the modulation mode of the received signal of the second receiver, performing the measurement according to the measurement result of the first receiver and the measurement result threshold; or

[0058] when the modulation mode of the received signal of the first receiver is the same as the modulation mode of the received signal of the second receiver, performing the measurement according to the measurement result of the first receiver or the measurement result of the second receiver and the measurement result threshold.

[0059] In the above embodiments, based on whether the modulation mode of the received signal of the first receiver is the same as the modulation mode of the received signal of the second receiver, the measurement result of the second receiver or the measurement result of the first receiver is determined to judge the measurement behavior of the terminal, which realizes that different strategies can be adopted under different circumstances to determine the measurement behavior, and further realizes the diversity and flexibility of determining the measurement behavior.

[0060] In some embodiments of the first aspect, the measurement result of the second receiver comprises a serving cell measurement result of the second receiver; the measurement result threshold comprises a first measurement relaxation threshold of the second receiver, a second measurement relaxation threshold of the second receiver, a third measurement relaxation threshold of the second receiver, and a neighbor cell measurement relaxation threshold of the terminal; wherein the first measurement relaxation threshold of the second receiver is less than the second measurement relaxation threshold of the second receiver, and the second measurement relaxation threshold of the second receiver is less than the third measurement relaxation threshold of the second receiver.

[0061] The measurement according to the measurement result of the second receiver and the measurement result threshold comprises one of the following:

[0062] when the serving cell measurement result of the second receiver is greater than or equal to the third measurement relaxation threshold of the second receiver, performing the measurement of the serving cell of the terminal by the first receiver;

[0063] when the serving cell measurement result of the second receiver is greater than or equal to the second measurement relaxation threshold of the second receiver, performing the measurement of the serving cell of the terminal by the first receiver and performing the relaxed measurement of the serving cell of the terminal by the second receiver;

[0064] when the serving cell measurement result of the second receiver is greater than or equal to the first measurement relaxation threshold of the second receiver, and the first measurement relaxation threshold of the second receiver is greater than or equal to the neighbor cell measurement relaxation threshold, performing, by the first receiver, measurement on the serving cell of the terminal, performing, by the second receiver, relaxed measurement on the serving cell of the terminal, and performing, by the second receiver, relaxed measurement on the neighbor cell of the terminal.

[0065] In some embodiments of the first aspect, the method further comprises:

[0066] when there is a high priority cell, performing, by the second receiver, relaxed measurement on the high priority cell, wherein the serving cell measurement result of the second receiver is greater than or equal to the third measurement relaxation threshold of the second receiver.

[0067] In the above embodiments, in the case that the measurement result of the first receiver and the measurement result of the second receiver are not comparable or the receiving signal modulation mode of the first receiver and the receiving signal modulation mode of the second receiver are different, by comparing the serving cell measurement result of the second receiver with the second receiver measurement relaxation threshold, and / or judging whether a high priority cell is configured, the matching measurement behavior is determined, which realizes determining the corresponding measurement behavior based on the measurement requirement or the measurement condition, and further realizes guaranteeing the measurement performance on the basis of saving power of the terminal.

[0068] In some embodiments of the first aspect, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver; the measurement result threshold comprises a first measurement relaxation threshold of the first receiver, a second measurement relaxation threshold of the first receiver, a third measurement relaxation threshold of the first receiver, and a neighbor cell measurement relaxation threshold of the terminal; wherein the first measurement relaxation threshold of the first receiver is less than the second measurement relaxation threshold of the first receiver, and the second measurement relaxation threshold of the first receiver is less than the third measurement relaxation threshold of the first receiver.

[0069] the measurement according to the measurement result of the first receiver and the measurement result threshold comprises one of the following:

[0070] when the serving cell measurement result of the first receiver is greater than or equal to the third measurement relaxation threshold of the first receiver, performing, by the first receiver, measurement on the serving cell of the terminal;

[0071] performing, by the first receiver, measurement on a serving cell of the terminal when a serving cell measurement result of the first receiver is greater than or equal to a first measurement relaxation threshold of the first receiver; and performing, by the second receiver, relaxed measurement on the serving cell of the terminal when the serving cell measurement result of the first receiver is greater than or equal to a second measurement relaxation threshold of the first receiver.

[0072] performing, by the first receiver, measurement on a serving cell of the terminal when a serving cell measurement result of the first receiver is greater than or equal to a first measurement relaxation threshold of the first receiver, and a first measurement relaxation threshold of the second receiver is greater than or equal to the neighbor cell measurement relaxation threshold; performing, by the second receiver, relaxed measurement on the serving cell of the terminal; and performing, by the second receiver, relaxed measurement on a neighbor cell of the terminal.

[0073] The method further comprises:

[0074] performing, by the second receiver, relaxed measurement on a high priority cell when the high priority cell exists, wherein the serving cell measurement result of the first receiver is greater than or equal to a third measurement relaxation threshold of the first receiver.

[0075] In the above embodiments, in the case that the measurement result of the first receiver and the measurement result of the second receiver are comparable or the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same, the matching measurement behavior is determined by comparing the serving cell measurement result of the first receiver with the first measurement relaxation threshold of the first receiver, and / or judging whether the high priority cell is configured, so as to realize the determination of the corresponding measurement behavior based on the measurement requirement or the measurement condition, and further realize the guarantee of the measurement performance on the basis of the power saving of the terminal.

[0076] In some embodiments of the first aspect, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver; the measurement result of the second receiver comprises a serving cell measurement result of the second receiver; the measurement result threshold comprises a first measurement relaxation threshold of the second receiver, a second measurement relaxation threshold of the second receiver, a third measurement relaxation threshold of the second receiver, and a neighbor cell measurement relaxation threshold of the terminal; or the measurement result threshold comprises a first measurement relaxation threshold of the first receiver, a second measurement relaxation threshold of the first receiver, a third measurement relaxation threshold of the first receiver, and a neighbor cell measurement relaxation threshold of the terminal.

[0077] In some embodiments of the first aspect, the method further comprises:

[0078] performing, by the first receiver, measurement on a serving cell of the terminal when at least one of the following conditions is met:

[0079] a serving cell measurement result of the first receiver is greater than or equal to a third measurement relaxation threshold of the first receiver;

[0080] a serving cell measurement result of the second receiver is greater than or equal to a first bias value;

[0081] a serving cell measurement result of the second receiver is greater than or equal to a third measurement relaxation threshold of the second receiver;

[0082] a serving cell measurement result of the first receiver is greater than or equal to a second bias value;

[0083] wherein the first bias value is a sum of the third measurement relaxation threshold of the first receiver and a first offset, and the second bias value is a difference between the third measurement relaxation threshold of the second receiver and the second offset.

[0084] In some embodiments in combination with the first aspect, the method further comprises:

[0085] performing, by the first receiver, a measurement of a serving cell of the terminal, and performing, by the second receiver, a relaxed measurement of the serving cell of the terminal, when at least one of:

[0086] a serving cell measurement result of the first receiver is greater than or equal to a second measurement relaxation threshold of the first receiver;

[0087] a serving cell measurement result of the second receiver is greater than or equal to a third bias value;

[0088] a serving cell measurement result of the second receiver is greater than or equal to a second measurement relaxation threshold of the second receiver;

[0089] a serving cell measurement result of the first receiver is greater than or equal to a fourth bias value;

[0090] wherein the third bias value is a sum of the second measurement relaxation threshold of the first receiver and a third offset, and the fourth bias value is a difference between the second measurement relaxation threshold of the second receiver and the fourth offset.

[0091] In some embodiments in combination with the first aspect, the method further comprises:

[0092] performing, by the first receiver, a measurement of a serving cell of the terminal, performing, by the second receiver, a relaxed measurement of the serving cell of the terminal, and performing, by the second receiver, a relaxed measurement of a neighbor cell of the terminal, when at least one of:

[0093] the serving cell measurement result of the first receiver is greater than or equal to a first measurement relaxation threshold of the first receiver;

[0094] the serving cell measurement result of the second receiver is greater than or equal to a fifth offset value;

[0095] the serving cell measurement result of the second receiver is greater than or equal to a first measurement relaxation threshold of the second receiver;

[0096] the serving cell measurement result of the first receiver is greater than or equal to a sixth offset value;

[0097] The fifth offset value is a sum of the first measurement relaxation threshold of the first receiver and a fifth offset amount, and the sixth offset value is a difference between the first measurement relaxation threshold of the second receiver and the sixth offset amount.

[0098] In some embodiments of the first aspect, the method further comprises:

[0099] performing, by the second receiver, relaxed measurement on the high priority cell when the high priority cell exists.

[0100] In the above embodiments, in the case that the measurement result of the first receiver and the measurement result of the second receiver are comparable or the receiving signal modulation mode of the first receiver and the receiving signal modulation mode of the second receiver are the same, by comparing the serving cell measurement result of the first receiver or the serving cell measurement result of the second receiver with the corresponding measurement relaxation threshold respectively, and / or judging whether a high priority cell is configured, the matching measurement behavior is determined, which realizes determining the corresponding measurement behavior based on the measurement requirement or the measurement condition, and further realizes guaranteeing the measurement performance on the basis of saving power of the terminal.

[0101] In some embodiments of the first aspect, the method further comprises:

[0102] when the second receiver is in a relaxed state, exiting, by the second receiver, the relaxed state according to the measurement result of the terminal and the measurement result threshold; wherein the relaxed state is a state in which the second receiver performs relaxed measurement.

[0103] In some embodiments of the first aspect, the relaxed state comprises at least one of the following:

[0104] a state in which the second receiver performs relaxed measurement on the serving cell of the terminal;

[0105] a state in which the second receiver performs relaxed measurement on the neighbor cell of the terminal;

[0106] the second receiver performs a state of relaxed measurement of a high priority cell of the terminal.

[0107] In the above embodiment, if the second receiver is in the relaxed state, whether the second receiver exits the relaxed state can be determined based on the measurement result of the terminal and the measurement result threshold, thereby achieving flexible switching of the terminal between the normal state and the relaxed state.

[0108] In some embodiments of the first aspect, in some embodiments, the second receiver exits the relaxed state according to the measurement result of the terminal and the measurement result threshold, including:

[0109] the second receiver exits the relaxed state according to the measurement result of the terminal and the measurement result threshold, including:

[0110] In the above embodiment, the second receiver exits the relaxed state based on whether the reception signal modulation mode of the first receiver and the reception signal modulation mode of the second receiver are the same, thereby achieving diversity and flexibility of determining the exit of the relaxed state by adopting different strategies based on different situations to determine the exit of the measurement behavior.

[0111] In some embodiments of the first aspect, in some embodiments, the measurement result of the first receiver includes a serving cell measurement result of the first receiver; the measurement result of the second receiver includes a serving cell measurement result of the second receiver; the measurement result threshold includes a first measurement relaxed threshold of the second receiver, a second measurement relaxed threshold of the second receiver, and a fourth measurement relaxed threshold of the first receiver, wherein the fourth measurement relaxed threshold of the first receiver is less than the second measurement relaxed threshold of the second receiver.

[0112] the second receiver exits the relaxed state according to the measurement result of the terminal and the measurement result threshold, including:

[0113] When the reception signal modulation mode of the first receiver and the reception signal modulation mode of the second receiver are different, the following operations are performed:

[0114] When the serving cell measurement result of the first receiver is less than the fourth measurement relaxed threshold of the first receiver, and there is a high priority cell, the second receiver exits the relaxed measurement of the high priority cell of the terminal.

[0115] when the serving cell measurement result of the second receiver is less than the first measurement relaxation threshold of the first receiver, exiting the relaxed measurement of the neighbor cell of the terminal by the second receiver.

[0116] when the serving cell measurement result of the second receiver is less than the first measurement relaxation threshold of the first receiver, exiting the relaxed measurement of the neighbor cell of the terminal by the second receiver.

[0117] In the above embodiment, when the measurement result of the first receiver and the measurement result of the second receiver are not comparable or when the receiving signal modulation mode of the first receiver and the receiving signal modulation mode of the second receiver are different, the step-by-step exiting of the relaxed state is determined according to the serving cell measurement result of the first receiver and the serving cell measurement result of the second receiver, so that the flexible switching of the terminal between the normal state and the relaxed state is realized.

[0118] In combination with some embodiments of the first aspect, in some embodiments, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver; the measurement result threshold comprises a fourth measurement relaxation threshold of the first receiver, a fifth measurement relaxation threshold of the first receiver, a sixth measurement relaxation threshold of the first receiver, and a neighbor cell measurement relaxation threshold of the terminal; wherein the fourth measurement relaxation threshold of the first receiver is greater than the fifth measurement relaxation threshold of the first receiver, and the fifth measurement relaxation threshold of the first receiver is greater than the sixth measurement relaxation threshold of the first receiver.

[0119] the exiting of the relaxed state by the second receiver according to the receiving signal modulation mode of the first receiver, the receiving signal modulation mode of the second receiver, the measurement result and the measurement result threshold comprises:

[0120] when the receiving signal modulation mode of the first receiver and the receiving signal modulation mode of the second receiver are different, performing the following operations:

[0121] when the serving cell measurement result of the first receiver is less than the fourth measurement relaxation threshold of the first receiver, and there is a high priority cell, exiting the relaxed measurement of the high priority cell of the terminal by the second receiver;

[0122] when the serving cell measurement result of the first receiver is less than the fourth measurement relaxation threshold of the first receiver, and when the serving cell measurement result of the first receiver is less than the fifth measurement relaxation threshold of the first receiver, exiting the relaxed measurement of the serving cell of the terminal by the second receiver;

[0123] exit, by the second receiver, the relaxed measurement of the neighbor cell of the terminal when the serving cell measurement result of the first receiver is less than the fourth measurement relaxed threshold of the first receiver and when the serving cell measurement result of the first receiver is less than the sixth measurement relaxed threshold of the first receiver.

[0124] In the above embodiment, when the measurement result of the first receiver and the measurement result of the second receiver are not comparable or when the received signal modulation mode of the first receiver and the received signal modulation mode of the second receiver are different, the non-stepwise exit relaxed state is judged according to the serving cell measurement result of the first receiver and the serving cell measurement result of the second receiver, and the flexible switching of the terminal between the normal state and the relaxed state is realized.

[0125] In combination with some embodiments of the first aspect, in some embodiments, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver; the measurement result threshold comprises a first measurement relaxed threshold of the first receiver, a second measurement relaxed threshold of the first receiver, and a third measurement relaxed threshold of the first receiver; wherein the first measurement relaxed threshold of the first receiver is less than the second measurement relaxed threshold of the first receiver, and the second measurement relaxed threshold of the first receiver is less than the third measurement relaxed threshold of the first receiver.

[0126] the exit, by the second receiver, of the relaxed state according to the received signal modulation mode of the first receiver, the received signal modulation mode of the second receiver, the measurement result, and the measurement result threshold comprises:

[0127] when the received signal modulation mode of the first receiver and the received signal modulation mode of the second receiver are the same, the following operation is performed:

[0128] when the measurement result of the first receiver is less than the third measurement relaxed threshold of the first receiver and there is a high-priority cell, the exit, by the second receiver, of the relaxed measurement of the high-priority cell of the terminal;

[0129] when the measurement result of the first receiver is less than the second measurement relaxed threshold of the first receiver, the exit, by the second receiver, of the relaxed measurement of the serving cell of the terminal;

[0130] when the measurement result of the first receiver is less than the first measurement relaxed threshold of the first receiver, the exit, by the second receiver, of the relaxed measurement of the neighbor cell of the terminal.

[0131] In the above embodiment, when the measurement result of the first receiver and the measurement result of the second receiver are comparable or when the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same, the step-by-step exiting of the relaxed state is determined according to the serving cell measurement result of the first receiver, and the flexible switching of the terminal between the normal state and the relaxed state is realized.

[0132] In combination with some embodiments of the first aspect, in some embodiments, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver; the measurement result threshold comprises a first measurement relaxed threshold of the first receiver, a second measurement relaxed threshold of the first receiver, and a third measurement relaxed threshold of the first receiver; wherein the first measurement relaxed threshold of the first receiver is smaller than the second measurement relaxed threshold of the first receiver, and the second measurement relaxed threshold of the first receiver is smaller than the third measurement relaxed threshold of the first receiver.

[0133] The exiting of the relaxed state by the second receiver according to the modulation mode of the received signal of the first receiver, the modulation mode of the received signal of the second receiver, the measurement result, and the measurement result threshold comprises:

[0134] When the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same, the following operations are performed:

[0135] When the serving cell measurement result of the first receiver is smaller than the third measurement relaxed threshold of the first receiver, and there is a high-priority cell, the relaxed measurement of the high-priority cell of the terminal by the second receiver is exited;

[0136] When the serving cell measurement result of the first receiver is smaller than the third measurement relaxed threshold of the first receiver, and when the serving cell measurement result of the first receiver is smaller than the second measurement relaxed threshold of the first receiver, the relaxed measurement of the serving cell of the terminal by the second receiver is performed;

[0137] When the serving cell measurement result of the first receiver is smaller than the third measurement relaxed threshold of the first receiver, and when the serving cell measurement result of the first receiver is smaller than the first measurement relaxed threshold of the first receiver, the relaxed measurement of the neighbor cell of the terminal by the second receiver is performed.

[0138] In the above embodiment, when the measurement result of the first receiver and the measurement result of the second receiver are comparable or when the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same, the non-step-by-step exit relaxation state is determined according to the serving cell measurement result of the first receiver, and the flexible switching of the terminal between the normal state and the relaxation state is realized.

[0139] In combination with some embodiments of the first aspect, in some embodiments, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver; the measurement result of the second receiver comprises a serving cell measurement result of the second receiver; the measurement result threshold comprises a first measurement relaxation threshold of the second receiver, a second measurement relaxation threshold of the second receiver, a third measurement relaxation threshold of the second receiver, and a neighbor cell measurement relaxation threshold of the terminal; or the measurement result threshold comprises a first measurement relaxation threshold of the first receiver, a second measurement relaxation threshold of the first receiver, a third measurement relaxation threshold of the first receiver, and a neighbor cell measurement relaxation threshold of the terminal.

[0140] In combination with some embodiments of the first aspect, in some embodiments, the exiting the relaxation state by the second receiver according to the modulation mode of the received signal of the first receiver, the modulation mode of the received signal of the second receiver, the measurement result and the measurement result threshold comprises:

[0141] When the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same, the following operations are performed:

[0142] When at least one of the following conditions is not met, and there is a high priority cell, the operation of exiting the relaxation measurement on the high priority cell of the terminal by the second receiver is performed:

[0143] the serving cell measurement result of the first receiver is greater than or equal to the third measurement relaxation threshold of the first receiver;

[0144] the serving cell measurement result of the second receiver is greater than or equal to a first deviation value;

[0145] the serving cell measurement result of the second receiver is greater than or equal to the third measurement relaxation threshold of the second receiver;

[0146] the serving cell measurement result of the first receiver is greater than or equal to a second deviation value;

[0147] The first deviation value is a sum of a third measurement relaxation threshold of the first receiver and a first offset, and the second deviation value is a difference between a third measurement relaxation threshold of the second receiver and the second offset.

[0148] In some embodiments combined with the first aspect, in some embodiments, the exiting, by the second receiver, from the relaxed state according to the modulation mode of the received signal of the first receiver, the modulation mode of the received signal of the second receiver, the measurement result and the measurement result threshold comprises:

[0149] The operation of exiting, by the second receiver, the relaxed measurement of the serving cell of the terminal is performed when at least one of the following is not satisfied:

[0150] The serving cell measurement result of the first receiver is greater than or equal to a second measurement relaxation threshold of the first receiver;

[0151] The serving cell measurement result of the second receiver is greater than or equal to a third deviation value;

[0152] The serving cell measurement result of the second receiver is greater than or equal to a second measurement relaxation threshold of the second receiver;

[0153] The serving cell measurement result of the first receiver is greater than or equal to a fourth deviation value;

[0154] The third deviation value is a sum of the second measurement relaxation threshold of the first receiver and a third offset, and the fourth deviation value is a difference between the second measurement relaxation threshold of the second receiver and the fourth offset.

[0155] In some embodiments combined with the first aspect, in some embodiments, the exiting, by the second receiver, from the relaxed state according to the modulation mode of the received signal of the first receiver, the modulation mode of the received signal of the second receiver, the measurement result and the measurement result threshold comprises:

[0156] The operation of exiting, by the second receiver, the relaxed measurement of the neighbor cell of the terminal is performed when at least one of the following is not satisfied:

[0157] The serving cell measurement result of the first receiver is greater than or equal to a first measurement relaxation threshold of the first receiver;

[0158] The serving cell measurement result of the second receiver is greater than or equal to a fifth deviation value;

[0159] The serving cell measurement result of the second receiver is greater than or equal to a first measurement relaxation threshold of the second receiver;

[0160] The service cell measurement result of the first receiver is greater than or equal to a sixth offset value;

[0161] The fifth offset value is a sum of a first measurement relaxation threshold of the first receiver and a fifth offset, and the sixth offset value is a difference between the first measurement relaxation threshold of the second receiver and the sixth offset.

[0162] In the above embodiment, when the measurement result of the first receiver and the measurement result of the second receiver are comparable or when the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same, the UE does not satisfy the entering condition, that is, exits the corresponding relaxation state, and the flexible switching of the terminal between the normal state and the relaxation state is realized.

[0163] In a second aspect, the embodiments of the present disclosure provide a communication method, performed by a network device, the method comprising:

[0164] sending, to a terminal, a measurement result threshold, the measurement result threshold being used by the terminal to perform measurement according to a measurement result of the terminal;

[0165] The terminal comprises a first receiver and a second receiver, the measurement result of the terminal comprises a measurement result of the first receiver and / or a measurement result of the second receiver, and the power consumption of the first receiver is lower than the power consumption of the second receiver.

[0166] In the above embodiment, the network device sends the measurement result threshold to the terminal, so that the terminal can perform measurement according to the measurement result of the terminal and the measurement result threshold, to ensure the measurement performance. Since the power consumption of the first receiver is lower than the power consumption of the second receiver, all or part of the measurement of the second receiver can be performed by the first receiver, and thus the power saving of the terminal is realized.

[0167] In a third aspect, the embodiments of the present disclosure provide a communication method, the method comprising:

[0168] The network device sends a measurement result threshold to a terminal;

[0169] The terminal receives the measurement result threshold sent by the network device, and performs measurement according to a measurement result of the terminal and the measurement result threshold;

[0170] The terminal comprises a first receiver and a second receiver, the measurement result of the terminal comprises a measurement result of the first receiver and / or a measurement result of the second receiver, and the power consumption of the first receiver is lower than the power consumption of the second receiver.

[0171] In the above embodiment, the network device sends the measurement result threshold to the terminal, and the terminal performs measurement according to the measurement result of the terminal and the measurement result threshold, so as to ensure the measurement performance. Since the power consumption of the first receiver is lower than that of the second receiver, all measurements or part of the measurements of the second receiver can be performed by the first receiver, thereby realizing power saving of the terminal.

[0172] In a fourth aspect, the embodiments of the present disclosure provide a terminal, which includes at least one of a transceiver module and a processing module; and the terminal is configured to perform the optional implementation manner of the first aspect.

[0173] In a fifth aspect, the embodiments of the present disclosure provide a network device, which includes at least one of a transceiver module and a processing module; and the network device is configured to perform the optional implementation manner of the second aspect.

[0174] In a sixth aspect, the embodiments of the present disclosure provide a terminal, which includes one or more processors; and the terminal is configured to perform the optional implementation manner of the first aspect.

[0175] In a seventh aspect, the embodiments of the present disclosure provide a network device, which includes one or more processors; and the network device is configured to perform the optional implementation manner of the second aspect.

[0176] In an eighth aspect, the embodiments of the present disclosure provide a communication system, which includes a first entity and a core network device; and the core network device is configured to perform the method described in the optional implementation manner of the first aspect or the second aspect.

[0177] In a ninth aspect, the embodiments of the present disclosure provide a storage medium, which stores instructions, and when the instructions are executed on a communication device, the communication device performs the method described in the optional implementation manner of the first aspect or the second aspect.

[0178] In a tenth aspect, the embodiments of the present disclosure provide a program product, which is executed by a communication device, and the communication device performs the method described in the optional implementation manner of the first aspect or the second aspect.

[0179] In an eleventh aspect, the embodiments of the present disclosure provide a computer program, which, when executed on a computer, causes the computer to perform the method described in the optional implementation manner of the first aspect or the second aspect.

[0180] In a twelfth aspect, the embodiments of the present disclosure provide a chip or a chip system. The chip or the chip system includes processing circuitry configured to perform the method described in the optional implementation manner of the first aspect or the second aspect.

[0181] It can be understood that the terminal, the network device, the communication system, the storage medium, the program product, the computer program, the chip or the chip system are used to execute the method proposed in the embodiments of the present disclosure. Therefore, the beneficial effects achieved thereby can refer to the beneficial effects in the corresponding method, which will not be described here.

[0182] The embodiments of the present disclosure propose a communication method, a terminal, a network device, a communication system, a storage medium and a program product. In some embodiments, the terms of communication method and information processing method can be replaced with each other, the terms of communication device and information processing device can be replaced with each other, and the terms of information processing system and communication system can be replaced with each other.

[0183] The embodiments of the present disclosure are not exhaustive, but only illustrate some embodiments, and are not specific limitations on the protection scope of the present disclosure. In the case of no contradiction, each step in an embodiment can be implemented as an independent embodiment, and the steps can be combined arbitrarily, for example, the scheme after removing some steps in an embodiment can also be implemented as an independent embodiment, and the order of the steps in an embodiment can be exchanged arbitrarily, in addition, the optional implementation manners in an embodiment can be combined arbitrarily; in addition, the embodiments can be combined arbitrarily, for example, the steps of different embodiments or part of the steps of different embodiments can be combined arbitrarily, an embodiment can be combined with the optional implementation manners of other embodiments arbitrarily.

[0184] In the embodiments of the present disclosure, the terms and / or descriptions between the embodiments are consistent and can be referred to each other if there is no special description and logical conflict, and the technical features in different embodiments can be combined to form new embodiments according to their inherent logical relationship.

[0185] The terms used in the embodiments of the present disclosure are only for the purpose of describing specific embodiments, and not as a limitation on the present disclosure.

[0186] In the embodiments of the present disclosure, unless otherwise specified, the elements expressed in singular form, such as "one", "a", "the", "above", "the", "the", "this" and the like, can represent "one and only one", or "one or more", "at least one" and the like. For example, in the case of using articles such as "a", "an", "the" and the like in English, the noun after the article can be understood as singular expression, or can be understood as plural expression.

[0187] In the embodiments of the present disclosure, "a plurality of" means two or more.

[0188] In some embodiments, the terms “at least one of,” “one or more of,” “a plurality of,” “multiple,” and the like can be used interchangeably.

[0189] In some embodiments, the recitations of “at least one of A, B,” “A and / or B,” “A in one case and B in another case,” “A in response to one case and B in response to another case,” and the like can include the following technical solutions according to the case: A is executed in some embodiments (A is executed regardless of B); B is executed in some embodiments (B is executed regardless of A); A and B are selectively executed in some embodiments (A and B are selectively executed); A and B are executed in some embodiments (A and B are both executed). When there are more branches such as A, B, C, and the like, the above is similar.

[0190] In some embodiments, the recitations of “A or B” and the like can include the following technical solutions according to the case: A is executed in some embodiments (A is executed regardless of B); B is executed in some embodiments (B is executed regardless of A); A and B are selectively executed in some embodiments (A and B are selectively executed). When there are more branches such as A, B, C, and the like, the above is similar.

[0191] The prefix words “first,” “second,” and the like in the embodiments of the present disclosure are merely used to distinguish different description objects, and do not constitute a limitation on the position, order, priority, quantity, or content of the description objects. The description of the description objects should refer to the description in the context of the claims or embodiments, and should not constitute an unnecessary limitation because of the use of the prefix words. For example, the ordinal words in front of the description objects “field” in “first field” and “second field” do not limit the position or order between the “fields,” and “first” and “second” do not limit whether the “fields” modified thereby are in the same message or not, nor do they limit the order of “first field” and “second field.” For another example, the ordinal words in front of the description objects “level” in “first level” and “second level” do not limit the priority between the “levels.” For another example, the quantity of the description objects is not limited by the ordinal words, and can be one or more. For example, “first device” is taken as an example, where the quantity of “devices” can be one or more. In addition, the objects modified by different prefix words can be the same or different, for example, the description objects are “devices,” and “first device” and “second device” can be the same device or different devices, and the types thereof can be the same or different; for another example, the description objects are “information,” and “first information” and “second information” can be the same information or different information, and the content thereof can be the same or different.

[0192] In some embodiments, "comprising", "including", "to indicate", "carrying", can be interpreted as directly carrying A, or indirectly indicating A.

[0193] In some embodiments, the terms "in response to", "in response to determining", "in the case of", "when", "when", "if", "if" and the like can be replaced with each other.

[0194] In some embodiments, the terms "greater than", "greater than or equal to", "not less than", "more than", "more than or equal to", "not less than", "higher than", "higher than or equal to", "not less than", "above" and the like can be replaced with each other, and the terms "less than", "less than or equal to", "not greater than", "less than", "less than or equal to", "not more than", "lower than", "lower than or equal to", "not higher than", "below" and the like can be replaced with each other.

[0195] In some embodiments, the apparatus and device can be interpreted as physical or virtual, and its name is not limited to the name recorded in the embodiments, and in some cases can also be understood as "equipment", "device", "circuit", "network element", "node", "function", "unit", "section", "system", "network", "chip", "chip system", "entity", "subject" and the like.

[0196] In some embodiments, "network" can be interpreted as an apparatus included in the network, such as an access network device, a core network device, and the like.

[0197] In some embodiments, an “access network device (AN device)” can also be referred to as a “radio access network device (RAN device),” a “base station (BS),” a “radio base station,” a “fixed station,” and in some embodiments can also be understood as a “node,” an “access point,” a “transmission point (TP),” a “reception point (RP),” a “transmission / reception point (TRP),” a “panel,” an “antenna panel,” an “antenna array,” a “cell,” a “macro cell,” a “small cell,” a “femto cell,” a “pico cell,” a “sector,” a “cell group,” a “serving cell,” a “carrier,” a “component carrier,” a “bandwidth part (BWP),” and the like.

[0198] In some embodiments, a "terminal" or "terminal device" can be referred to as a "user equipment" (UE), a "user terminal," a "mobile station" (MS), a "mobile terminal" (MT), a subscriber station, a mobile unit, a subscriber unit, a wireless unit, a remote unit, a mobile device, a wireless device, a wireless communication device, a remote device, a mobile subscriber station, an access terminal, a mobile terminal, a wireless terminal, a remote terminal, a handset, a user agent, a mobile client, a client, and / or the like.

[0199] In some embodiments, data, information and / or the like can be obtained in compliance with laws and regulations of a country where the data, information and / or the like is obtained.

[0200] In some embodiments, data, information and / or the like can be obtained after obtaining consent of a user.

[0201] In addition, each element, each row, or each column in a table of embodiments of the present disclosure can be implemented as an independent embodiment, and a combination of any element, any row, or any column can also be implemented as an independent embodiment.

[0202] FIG. 1 is an exemplary schematic diagram of a communication system architecture, according to embodiments of the present disclosure. As shown in FIG. 1, the communication system 100 includes a terminal 101 and a network device 102.

[0203] In some embodiments, the terminal 101 includes at least one of a mobile phone, a wearable device, an Internet of Things device, a communication-capable automobile, a smart automobile, a tablet (Pad), a wireless-transmitting computer, 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, and the like, but is not limited thereto.

[0204] In some embodiments, the network device 102 can include at least one of an access network device and a core network device.

[0205] In some embodiments, the access network device is at least one of a node or a device that accesses a terminal to a wireless network, for example, and can include an evolved NodeB (eNB) in a 5G communication system, a next generation eNB (ng-eNB), a next generation NodeB (gNB), a node B (NB), a home node B (HNB), a home evolved node B (HeNB), a wireless backhaul device, a radio network controller (RNC), a base station controller (BSC), a base transceiver station (BTS), a base band unit (BBU), a mobile switching center, a base station in a 6G communication system, an Open RAN, a Cloud RAN, a base station in other communication systems, an access node in a Wi-Fi system, and the like, but is not limited thereto.

[0206] In some embodiments, the technical solutions of the present disclosure can be applied to an Open RAN architecture, at this time, the interfaces between or within the access network devices involved in the embodiments of the present disclosure can become internal interfaces of the Open RAN, and the processes and information interactions between these internal interfaces can be implemented through software or programs.

[0207] In some embodiments, the access network device can be composed of a central unit (CU) and a distributed unit (DU), where the CU can also be referred to as a control unit. The CU-DU structure can split the protocol layers of the access network device, and some of the protocol layers are controlled by the CU, and the remaining or all of the protocol layers are distributed in the DU and controlled by the CU, but not limited thereto.

[0208] In some embodiments, the core network device can be one device including one or more network elements, or can be multiple devices or device groups including all or part of the one or more network elements. The network element can be virtual or physical. The core network includes at least one of an evolved packet core (EPC), a 5G core network (5GCN), and a next-generation core (NGC).

[0209] It can be understood that the communication system described in the embodiments of the present disclosure is for more clearly illustrating the technical solutions of the embodiments of the present disclosure, and does not constitute a limitation on the technical solutions proposed by the embodiments of the present disclosure. Those skilled in the art can know that the technical solutions proposed by the embodiments of the present disclosure are also applicable to similar technical problems as the system architecture evolves and new business scenarios appear.

[0210] The following embodiments of the present disclosure can be applied to the communication system 100 shown in FIG. 1A or part of the subject, but are not limited thereto. The subjects shown in FIG. 1A are exemplary, and the communication system can include all or part of the subjects in FIG. 1A, or include other subjects other than those in FIG. 1A. The number and form of each subject is arbitrary, each subject can be physical or virtual, the connection relationship between each subject is exemplary, each subject can not be connected or can be connected, and the connection can be in any manner, can be direct connection or indirect connection, can be wired connection or wireless connection.

[0211] Embodiments of the present disclosure can be applied to Long Term Evolution (LTE), LTE-Advanced (LTE-A), LTE-Beyond (LTE-B), SUPER 3G, IMT-Advanced, 4th generation mobile communication system (4G), 5th generation mobile communication system (5G), 5G new radio (NR), Future Radio Access (FRA), New-Radio Access Technology (RAT), New Radio (NR), New radio access (NX), Future generation radio access (FX), Global System for Mobile communications (GSM (registered trademark)), CDMA2000, Ultra Mobile Broadband (UMB), IEEE 802.11 (Wi-Fi (registered trademark)), IEEE 802.16 (WiMAX (registered trademark)), IEEE 802.20, Ultra-WideBand (UWB), Bluetooth (Bluetooth (registered trademark)), Public Land Mobile Network (PLMN) network, Device-to-Device (D2D) system, Machine to Machine (M2M) system, Internet of Things (IoT) system, Vehicle-to-Everything (V2X), system using other communication methods, next-generation system expanded based thereon, and the like. Further, a plurality of systems can be applied in combination (for example, combination of LTE or LTE-A and 5G, and the like).

[0212] The embodiments of the present disclosure introduce two measurement relaxation triggering conditions: 1, a stationary or low mobility decision condition, 2, a non-cell edge decision condition. Both of the two measurement relaxation criteria are evaluated based on the measurement results of the serving cell, and the UE satisfying the criteria can perform relaxed Radio Resource Management (RRM) measurement on the neighbor cell, i.e., extend the measurement period.

[0213] In particular, the RRM measurement of the inter-frequency neighbor cell in the idle / inactive mode is configured with a frequency priority.

[0214] Measurement on the higher priority frequency layer:

[0215] When Srxlev (the reception level of the serving cell) > SnonIntraSearchP (non-intra search threshold P) and Squal (the quality of the service) > SnonIntraSearchQ (non-intra search threshold Q), the UE only performs search on the higher priority frequency layer.

[0216] When Srxlev≤SnonIntraSearchP and Squal≤SnonIntraSearchQ, the UE performs measurement on all carriers without priority.

[0217] Measurement relaxation on the higher priority frequency layer:

[0218] A high priority relaxation switch highPriorityMeasRelax is defined, and in the case of switch configuration, the UE satisfies the measurement relaxation condition and relaxes the measurement on the higher priority frequency layer.

[0219] The embodiments of the present disclosure study a terminal type with a single low power wake-up receiver (LP-WUR or LR) to receive power saving signals:

[0220] The UE listens to the wake-up signal sent by the base station through the low power module in the idle state, and if the UE receives the wake-up signal (WUS), the UE will start the main communication module to listen to the subsequent paging physical downlink control channel (Paging PDCCH). If no wake-up signal is received, the UE will not start the main communication module.

[0221] After the UE in connected state introduces the low power wake-up signal, the main communication module of the UE can be in deep / light / micro sleep state. At this time, the UE only needs to listen to the low power wake-up signal LP-WUS, and when receiving the wake-up signal, the UE controls the main communication module to switch from the sleep state to the PDCCH listening state.

[0222] In the embodiments of the present disclosure, a new measurement reference signal is introduced for the UE supporting the low power receiver LP-WUR, i.e., the low power synchronization signal (LP-SS), and the LP-WUR performs measurement on the LP-SS to ensure synchronization. In the idle / inactive mode, the RRM measurement of the serving cell based on the LP-SS can be implemented. At this time, the measurement of the main receiver (MR) can be fully offloaded to the LR (here, it means that the LR performs all the measurements of the MR), or partially offloaded to the LR (here, it means that the LR performs part of the measurements of the MR), see the following four scenarios:

[0223] Term explanation:

[0224] RRM measurement case index: RRM measurement scenario (or case) index;

[0225] MR serving cell measurement: MR serving cell measurement;

[0226] MR neighboring cell measurement: MR neighboring cell measurement;

[0227] LR measurement: LR measurement;

[0228] Fully offloading case: full offloading scenario (or case);

[0229] Relaxed case: relaxed scenario (or case);

[0230] On with relaxation measurement: relaxation measurement;

[0231] Off: not or off;

[0232] ON: on or on.

[0233] FIG. 2 is an exemplary interaction diagram of a communication method according to an embodiment of the present disclosure. As shown in FIG. 2, the embodiment of the present disclosure relates to a communication method, and the method comprises:

[0234] In step S201, the network device 102 determines a measurement result threshold.

[0235] In some embodiments, the measurement comprises a RRM measurement.

[0236] In some embodiments, the RRM measurement comprises at least one of a signal quality measurement, a mobility measurement, a beam management measurement, or another measurement.

[0237] In some embodiments, the signal quality measurement is, for example, a Reference Signal Received Power (RSRP) measurement, a Reference Signal Received Quality (RSRQ) measurement, or a Signal to Interference plus Noise Ratio (SINR) measurement.

[0238] In some embodiments, the mobility measurement is, for example, at least one of a handover measurement or a cell reselection measurement.

[0239] In some embodiments, the another measurement is, for example, at least one of a latency measurement or a load measurement.

[0240] In some embodiments, the measurement result threshold comprises at least one of a first measurement relaxation threshold of the first receiver, a first measurement relaxation threshold of the second receiver, a second measurement relaxation threshold of the first receiver, a second measurement relaxation threshold of the second receiver, a third measurement relaxation threshold of the first receiver, a third measurement relaxation threshold of the second receiver, a fourth measurement relaxation threshold of the first receiver, a fifth measurement relaxation threshold of the first receiver, a sixth measurement relaxation threshold of the first receiver, or a neighbor cell measurement relaxation threshold of the terminal.

[0241] In some embodiments, the network device configures different measurement result thresholds for the terminal in different cases, and the measurement relaxation thresholds contained in the measurement result thresholds can be different.

[0242] In the above embodiments, there is a measurement relaxation threshold corresponding to each scenario, and the measurement result is compared with the corresponding measurement relaxation threshold to determine the measurement behavior that meets the measurement requirement of the corresponding scenario, and then the operation corresponding to the measurement behavior is performed, which can guarantee the measurement performance while realizing the power saving of the terminal.

[0243] In some embodiments, the measurement result threshold is used to indicate a threshold related to the measurement result.

[0244] In some embodiments, the name of the measurement result threshold is not limited, which is, for example, "threshold", "threshold value", "measurement threshold", "result threshold", "measurement threshold value", "result threshold value", "measurement result threshold value", "Threshold", and the like.

[0245] In some embodiments, the measurement relaxation threshold is used to indicate a threshold related to relaxation measurement.

[0246] In some embodiments, the measurement relaxation threshold is used to indicate a threshold for the terminal to perform or not to perform relaxation measurement.

[0247] In some embodiments, the measurement relaxation threshold is used to indicate a threshold for the terminal to perform relaxation measurement of different degrees.

[0248] In some embodiments, the measurement relaxation threshold is used to indicate a threshold for the terminal to perform relaxation measurement with different measurement relaxation coefficients.

[0249] In some embodiments, the name of the measurement relaxation threshold is not limited, which is, for example, "threshold", "threshold value", "measurement threshold", "measurement threshold value", "measurement relaxation threshold", "relaxation measurement threshold value", "Threshold", "network configuration threshold", "network configuration threshold value", and the like.

[0250] In some embodiments, the terminal comprises a first receiver and a second receiver.

[0251] In some embodiments, the power consumption of the first receiver is lower than that of the second receiver.

[0252] In some embodiments, the first receiver is used to perform low-power-consumption operation.

[0253] In some embodiments, the first receiver is used to perform measurement on a serving cell.

[0254] In some embodiments, the first receiver is, for example, LR, low-power-consumption module, low-power-consumption device, and the like, but is not limited thereto.

[0255] In some embodiments, the second receiver is used to perform measurement on a serving cell and / or a neighbor cell.

[0256] In some embodiments, the second receiver is used to perform relaxation measurement. Optionally, the relaxation measurement comprises at least one of relaxation measurement on a serving cell, relaxation measurement on a neighbor cell, and relaxation measurement on a high-priority cell in a neighbor cell.

[0257] In some embodiments, the second receiver is used to not perform measurement on a serving cell and / or a neighbor cell.

[0258] In some embodiments, the second receiver is, for example, but not limited to, an MR, a master communication module, a master communication device, etc.

[0259] In some embodiments, the high priority cell is configured by the network device.

[0260] In some embodiments, the network device sends indication information of the high priority cell to the terminal. Optionally, the indication information is used to indicate which neighbor cell or which neighbor cells is / are the high priority cell. Optionally, at least one of the following is included in the indication information: a name of the high priority cell, an identity of the high priority cell, a location of the high priority cell, a range of an area of the high priority cell, a frequency point in which the high priority cell is located.

[0261] In some embodiments, the high priority cell is, for example, the first neighbor cell.

[0262] In some embodiments, the network device sends information to the terminal to indicate that the first neighbor cell is the high priority cell. Optionally, at least one of the following is included in the information: a name of the first neighbor cell, an identity of the first neighbor cell, a range of an area of the first neighbor cell, a frequency point in which the first neighbor cell is located.

[0263] In the above embodiments, by receiving the high priority cell configured by the network device to indicate, it is determined that the first neighbor cell is the high priority cell, so as to implement the subsequent relaxed measurement on the high priority cell, and thus the power saving of the terminal is realized.

[0264] In some embodiments, the case includes at least one of case 1, case 2, and case 3.

[0265] In some embodiments, case 1: the measurement result of the first receiver and the measurement result of the second receiver are not comparable. Optionally, the types of the measurement result of the first receiver and the measurement result of the second receiver are different, and the measurement result of the first receiver and the measurement result of the second receiver are not comparable.

[0266] In some embodiments, case 1: the receiving signal modulation mode of the first receiver and the receiving signal modulation mode of the second receiver are different. Optionally, the receiving signal modulation mode of the first receiver is On-Off Keying (OOK), and the receiving signal modulation mode of the second receiver is Orthogonal Frequency Division Multiplexing (OFDM); but not limited to this. Optionally, the first receiver is, for example, but not limited to, an “OOK based receiver”, an “OOK based LR”, etc. Optionally, the second receiver is, for example, but not limited to, an “OFDM based receiver”, an “OFDM based MR”, etc.

[0267] In some embodiments, the measurement results of the first receiver and the measurement results of the second receiver are not comparable due to the difference between the receiving signal modulation mode of the first receiver and the receiving signal modulation mode of the second receiver.

[0268] In some embodiments, for case 1, the measurement result threshold can comprise at least one of the first measurement relaxation threshold of the second receiver, the second measurement relaxation threshold of the second receiver, the third measurement relaxation threshold of the second receiver, the neighbor cell measurement relaxation threshold of the terminal, the fourth measurement relaxation threshold of the first receiver, the fifth measurement relaxation threshold of the first receiver, the sixth measurement relaxation threshold of the first receiver. Optionally, the measurement result threshold comprises the first measurement relaxation threshold of the second receiver, the second measurement relaxation threshold of the second receiver, the third measurement relaxation threshold of the second receiver, and the neighbor cell measurement relaxation threshold of the terminal. Optionally, the measurement result threshold comprises the first measurement relaxation threshold of the second receiver, the second measurement relaxation threshold of the second receiver, and the fourth measurement relaxation threshold of the first receiver. Optionally, the measurement result threshold comprises the fourth measurement relaxation threshold of the first receiver, the fifth measurement relaxation threshold of the first receiver, the sixth measurement relaxation threshold of the first receiver, and the neighbor cell measurement relaxation threshold of the terminal.

[0269] In some embodiments, the measurement relaxation threshold of the second receiver comprises at least one of the first measurement relaxation threshold of the second receiver, the second measurement relaxation threshold of the second receiver, the third measurement relaxation threshold of the second receiver.

[0270] In some embodiments, the measurement relaxation threshold of the second receiver is used to indicate the threshold for the second receiver to perform or not to perform the serving cell relaxation measurement and / or the neighbor cell relaxation measurement under certain conditions.

[0271] In some embodiments, the name of the first measurement relaxation threshold of the second receiver is not limited, which is, for example, "Threshold 1", "the first threshold of the second receiver", "Threshold 1 of the second receiver", "Threshold 1", "Threshold 1 of the second receiver", "MR Threshold 1", and the like.

[0272] In some embodiments, the name of the second measurement relaxation threshold of the second receiver is not limited, which is, for example, "Threshold 2", "the second threshold of the second receiver", "Threshold 2 of the second receiver", "Threshold 2", "Threshold 2 of the second receiver", "MR Threshold 2", and the like.

[0273] In some embodiments, the name of the third measurement relaxation threshold of the second receiver is not limited, which is, for example, "Threshold 3", "third threshold of the second receiver", "Threshold 3 of the second receiver", "Threshold3", "Threshold3 of the second receiver", "MR Threshold3", and the like.

[0274] In some embodiments, the name of the third measurement relaxation threshold of the second receiver is not limited, which is, for example, "Threshold 3", "third threshold of the second receiver", "Threshold 3 of the second receiver", "Threshold3", "Threshold3 of the second receiver", "MR Threshold3", and the like.

[0275] In some embodiments, the measurement relaxation threshold of the first receiver includes at least one of a fourth measurement relaxation threshold of the first receiver, a fifth measurement relaxation threshold of the first receiver, and a sixth measurement relaxation threshold of the first receiver.

[0276] In some embodiments, the measurement relaxation threshold of the first receiver is used to indicate a threshold for the second receiver to perform or not to perform relaxed measurements of a serving cell and / or relaxed measurements of a neighbor cell under certain conditions.

[0277] In some embodiments, the name of the fourth measurement relaxation threshold of the first receiver is not limited, which is, for example, "Threshold 4", "fourth threshold of the first receiver", "Threshold 4 of the first receiver", "Threshold4", "Threshold4 of the first receiver", "LR Threshold4", and the like.

[0278] In some embodiments, the name of the fifth measurement relaxation threshold of the first receiver is not limited, which is, for example, "Threshold 5", "fifth threshold of the first receiver", "Threshold 5 of the first receiver", "Threshold5", "Threshold5 of the first receiver", "LR Threshold5", and the like.

[0279] In some embodiments, the name of the sixth measurement relaxation threshold of the first receiver is not limited, which is, for example, "Threshold 6", "sixth threshold of the first receiver", "Threshold 6 of the first receiver", "Threshold6", "Threshold6 of the first receiver", "LR Threshold6", and the like.

[0280] In some embodiments, the first measurement relaxation threshold of the second receiver is less than the second measurement relaxation threshold of the second receiver, and the second measurement relaxation threshold of the second receiver is less than the third measurement relaxation threshold of the second receiver. Optionally, MR Threshold1<MR Threshold2<MR Threshold3.

[0281] In some embodiments, the first measurement relaxation threshold of the second receiver is greater than or equal to the neighbor cell measurement relaxation threshold of the terminal. Optionally, MR Threshold1≥Threshold_legacy.

[0282] In some embodiments, the neighbor cell measurement relaxation threshold of the terminal can be a threshold already introduced in existing protocols for evaluating neighbor cell measurement relaxation, such as cellEdgeEvaluation-r16, or cellEdgeEvaluationWhileStationary-r17.

[0283] In some embodiments, the fourth measurement relaxation threshold of the first receiver is less than the second measurement relaxation threshold of the second receiver. Optionally, LR Threshold4<MR Threshold2.

[0284] In some embodiments, the fourth measurement relaxation threshold of the first receiver is greater than the fifth measurement relaxation threshold of the first receiver, and the fifth measurement relaxation threshold of the first receiver is greater than the sixth measurement relaxation threshold of the first receiver. Optionally, LR Threshold4>LR Threshold5>LR Threshold6.

[0285] In some embodiments, the fourth measurement relaxation threshold of the first receiver can be the same as or different from the third measurement relaxation threshold of the second receiver.

[0286] Optionally, LR Threshold4=MR Threshold3.

[0287] In some embodiments, the fifth measurement relaxation threshold of the first receiver can be the same as or different from the second measurement relaxation threshold of the second receiver.

[0288] Optionally, LR Threshold5=MR Threshold2.

[0289] In some embodiments, the sixth measurement relaxation threshold of the first receiver can be the same as or different from the first measurement relaxation threshold of the second receiver.

[0290] Optionally, LR Threshold6=MR Threshold1.

[0291] In some embodiments, Case 2: the measurement result of the first receiver and the measurement result of the second receiver are comparable.

[0292] In some embodiments, Case 2: the reception signal modulation mode of the first receiver and the reception signal modulation mode of the second receiver are the same. Optionally, the reception signal modulation mode of the first receiver is OFDM, and the reception signal modulation mode of the second receiver is OFDM; but not limited thereto. Optionally, the first receiver is, for example, an "OFDM based receiver", an "OFDM based LR", etc., but not limited thereto. Optionally, the second receiver is, for example, an "OFDM based receiver", an "OFDM based MR", etc., but not limited thereto.

[0293] In some embodiments, due to the reception signal modulation mode of the first receiver and the reception signal modulation mode of the second receiver being the same, the measurement result of the first receiver and the measurement result of the second receiver are comparable.

[0294] In some embodiments, for Case 2, the measurement result threshold can include at least one of the first measurement relaxation threshold of the first receiver, the second measurement relaxation threshold of the first receiver, the third measurement relaxation threshold of the first receiver, and the neighbor cell measurement relaxation threshold of the terminal. Optionally, the measurement result threshold includes the first measurement relaxation threshold of the first receiver, the second measurement relaxation threshold of the first receiver, the third measurement relaxation threshold of the first receiver, and the neighbor cell measurement relaxation threshold of the terminal. Optionally, the measurement result threshold includes the first measurement relaxation threshold of the first receiver, the second measurement relaxation threshold of the first receiver, and the third measurement relaxation threshold of the first receiver.

[0295] In some embodiments, the measurement relaxation threshold of the first receiver includes at least one of the first measurement relaxation threshold of the first receiver, the second measurement relaxation threshold of the first receiver, and the third measurement relaxation threshold of the first receiver.

[0296] In some embodiments, the name of the first measurement relaxation threshold of the first receiver is not limited, which is, for example, "Threshold 1", "the first threshold of the first receiver", "Threshold 1 of the first receiver", "Threshold 1", "Threshold 1 of the first receiver", "LR Threshold 1", etc.

[0297] In some embodiments, the name of the second measurement relaxation threshold of the first receiver is not limited, for example, "Threshold2", "the second threshold of the first receiver", "Threshold2 of the first receiver", "Threshold2", "Threshold2 of the first receiver", "LR Threshold2", and the like.

[0298] In some embodiments, the name of the third measurement relaxation threshold of the first receiver is not limited, for example, "Threshold3", "the third threshold of the first receiver", "Threshold3 of the first receiver", "Threshold3", "Threshold3 of the first receiver", "LR Threshold3", and the like.

[0299] In some embodiments, the first measurement relaxation threshold of the first receiver is less than the second measurement relaxation threshold of the first receiver, and the second measurement relaxation threshold of the first receiver is less than the third measurement relaxation threshold of the first receiver. Optionally, LR Threshold1< LR Threshold2< LR Threshold3.

[0300] In some embodiments, the first measurement relaxation threshold of the first receiver is greater than or equal to the neighbor cell measurement relaxation threshold of the terminal. Optionally, Threshold1≥ Threshold_legacy.

[0301] In some embodiments, case 3: the measurement result of the first receiver and the measurement result of the second receiver are comparable, and whether to enter the relaxation state is determined based on UE implementation.

[0302] Optionally, based on UE, whether to enter the relaxation state is determined by selecting to use the LR serving cell measurement result or the MR serving cell measurement result.

[0303] In some embodiments, case 3: the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same, and whether to enter the relaxation state is determined based on UE implementation.

[0304] Optionally, the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same, and whether to enter the relaxation state is determined based on UE by selecting to use the LR serving cell measurement result or the MR serving cell measurement result.

[0305] Optionally, the first receiver is an OFDM based receiver, and the second receiver is an OFDM based receiver. But not limited to this. Optionally, the first receiver is an OFDM based receiver, and the second receiver is an OFDM based receiver. But not limited to this.

[0306] In some embodiments, the measurement result of the first receiver and the measurement result of the second receiver are comparable, because the modulation mode of the received signal of the first receiver is the same as the modulation mode of the received signal of the second receiver.

[0307] In some embodiments, for case 3, the measurement result threshold comprises at least one of the first measurement relaxation threshold of the first receiver, the second measurement relaxation threshold of the first receiver, the third measurement relaxation threshold of the first receiver, the first measurement relaxation threshold of the second receiver, the second measurement relaxation threshold of the second receiver, the third measurement relaxation threshold of the second receiver, and the neighbor cell measurement relaxation threshold of the terminal. Optionally, the measurement result threshold comprises the first measurement relaxation threshold of the second receiver, the second measurement relaxation threshold of the second receiver, the third measurement relaxation threshold of the second receiver, and the neighbor cell measurement relaxation threshold of the terminal; or, the measurement result threshold comprises the first measurement relaxation threshold of the first receiver, the second measurement relaxation threshold of the first receiver, the third measurement relaxation threshold of the first receiver, and the neighbor cell measurement relaxation threshold of the terminal. Optionally, the measurement result threshold comprises the first measurement relaxation threshold of the first receiver, the measurement result threshold comprises the first measurement relaxation threshold of the second receiver, the second measurement relaxation threshold of the second receiver, the third measurement relaxation threshold of the second receiver, and the neighbor cell measurement relaxation threshold of the terminal; or, the measurement result threshold comprises the first measurement relaxation threshold of the first receiver, the second measurement relaxation threshold of the first receiver, the third measurement relaxation threshold of the first receiver, and the neighbor cell measurement relaxation threshold of the terminal.

[0308] In step S202, the network device 102 sends the measurement result threshold to the terminal 101.

[0309] In some embodiments, the terminal 101 receives the measurement result threshold.

[0310] In some embodiments, the network device 102 sends signaling or message to the terminal 101. Optionally, the signaling or message carries the measurement result threshold.

[0311] In some embodiments, the terminal 101 receives signaling or a message. Optionally, the signaling or the message carries the measurement result threshold.

[0312] In some embodiments, the measurement result threshold is specified by a protocol or configured by a network device; optionally, when the measurement result threshold is specified by a protocol, steps S201 and S202 can be omitted.

[0313] In the above embodiments, if the measurement result threshold is configured by a network device, the terminal can receive the measurement result threshold sent by the network device, and provide a basis for subsequent implementation of determining measurement behavior.

[0314] Step S203: The terminal determines a measurement result.

[0315] In some embodiments, the terminal performs measurement to determine the measurement result.

[0316] In some embodiments, the measurement result of the terminal includes at least one of a measurement result of a first receiver of the terminal, a measurement result of a second receiver of the terminal.

[0317] In some embodiments, the measurement result of the first receiver includes a serving cell measurement result of the first receiver.

[0318] In some embodiments, the name of the measurement result of the first receiver is not limited, for example, “measurement result of LR”, “measurement report of LR”, “serving cell measurement result of LR”.

[0319] In some embodiments, the measurement result of the second receiver includes a serving cell measurement result of the second receiver.

[0320] In some embodiments, the name of the measurement result of the second receiver is not limited, for example, “measurement result of MR”, “measurement report of MR”, “serving cell measurement result of MR”.

[0321] In some embodiments, the measurement result includes a RRM measurement result.

[0322] In some embodiments, the RRM measurement result includes at least one of a mobility measurement result, a beam management measurement result, and other measurement results.

[0323] In some embodiments, the signal quality measurement result is, for example, a RSRP measurement result, a RSRQ measurement result, and a SINR measurement result.

[0324] In some embodiments, the mobility measurement result is, for example, at least one of a handover measurement result and a cell reselection measurement result.

[0325] In some embodiments, the other measurements are at least one of a latency measurement, a load measurement.

[0326] In some embodiments, the name of the measurement is not limited, for example, "RRM measurement", "RRM measurement report". Optionally, the specific process of RRM measurement can include:

[0327] 1) Initialization and configuration

[0328] The terminal is powered on and completes the initialization process.

[0329] According to the network configuration and the system message sent by the network side, the terminal configures its measurement parameters and measurement mode.

[0330] 2) Measurement task triggering

[0331] The network side triggers the terminal to perform a specific measurement task by sending a measurement control message (such as MEASUREMENT CONTROL).

[0332] The measurement control message contains key information such as the type of measurement (such as intra-frequency measurement, inter-frequency measurement, GSM measurement, etc.), the triggering condition of the measurement report (such as event triggering or periodic triggering).

[0333] 3) Perform measurement

[0334] The terminal starts the corresponding measurement process according to the indication in the measurement control message.

[0335] The measurement can include multiple parameters such as received signal strength (such as RSSI, RSCP), signal quality (such as C / I, Ec / No), transmission delay, etc.

[0336] In some cases, the terminal may need to start a compression mode or interrupt the current data transmission to perform the measurement.

[0337] 4) Measurement report

[0338] The terminal arranges the measurement results into a measurement report and sends it to the network side through the uplink.

[0339] The measurement report can contain statistical information such as the average value, maximum value, minimum value, etc. of multiple measurement samples.

[0340] The information in the report is crucial to the network side's wireless resource management algorithm, such as handover decision, power control, etc.

[0341] 5) Network side (for example, network device) processing

[0342] After receiving the measurement report, the network side performs corresponding wireless resource management operations according to its content.

[0343] For example, the terminal determines whether to perform handover, adjusts the transmission power of the terminal, etc. according to the change of the signal strength and quality.

[0344] At step S204, the terminal 101 performs measurement according to the measurement result and the measurement result threshold.

[0345] In some embodiments, the terminal 101 determines the measurement behavior of the terminal according to the measurement result and the measurement result threshold. Optionally, the terminal 101 performs measurement corresponding to the measurement behavior according to the measurement result and the measurement result threshold.

[0346] In some embodiments, the measurement result threshold includes a RRM measurement result threshold.

[0347] In some embodiments, the RRM measurement result threshold includes at least one of a mobility measurement result threshold, a beam management measurement result threshold, and another measurement result threshold.

[0348] In some embodiments, the signal quality measurement result threshold includes at least one of an RSRP measurement result threshold, an RSRQ measurement result threshold, and an SINR measurement result threshold.

[0349] In some embodiments, the mobility measurement result threshold includes at least one of a handover measurement result threshold and a cell reselection measurement result threshold.

[0350] In some embodiments, the another measurement result threshold includes at least one of a latency measurement result threshold and a load measurement result threshold.

[0351] In some embodiments, the comparison between the measurement result and the measurement result threshold is a corresponding comparison. For example, the RSRP measurement result corresponds to the RSRP measurement result threshold, and so on. Other similar comparisons are not described here.

[0352] In some embodiments, the terminal 101 performs measurement according to the measurement result and the measurement result threshold includes: performing measurement by the first receiver or by the first receiver and the second receiver according to the modulation mode of the received signal of the first receiver, the modulation mode of the received signal of the second receiver, the measurement result, and the measurement result threshold.

[0353] In some embodiments, the terminal performs measurement by the first receiver or by the first receiver and the second receiver according to the modulation mode of the received signal of the first receiver, the modulation mode of the received signal of the second receiver, the measurement result, and the measurement result threshold includes:

[0354] when the modulation mode of the received signal of the first receiver is different from the modulation mode of the received signal of the second receiver, performing the measurement according to the measurement result of the second receiver and the measurement result threshold; or

[0355] when the modulation mode of the received signal of the first receiver is the same as the modulation mode of the received signal of the second receiver, performing the measurement according to the measurement result of the first receiver and the measurement result threshold; or

[0356] when the modulation mode of the received signal of the first receiver is the same as the modulation mode of the received signal of the second receiver, performing the measurement according to the measurement result of the first receiver or the measurement result of the second receiver and the measurement result threshold.

[0357] In some embodiments, performing the measurement according to the measurement result of the second receiver and the measurement result threshold comprises one of:

[0358] when the serving cell measurement result of the second receiver is greater than or equal to the third measurement relaxation threshold of the second receiver, performing the measurement of the serving cell of the terminal by the first receiver;

[0359] when the serving cell measurement result of the second receiver is greater than or equal to the second measurement relaxation threshold of the second receiver, performing the measurement of the serving cell of the terminal by the first receiver and performing the relaxed measurement of the serving cell of the terminal by the second receiver;

[0360] when the serving cell measurement result of the second receiver is greater than or equal to the first measurement relaxation threshold of the second receiver and the first measurement relaxation threshold of the second receiver is greater than or equal to the neighbor cell measurement relaxation threshold, performing the measurement of the serving cell of the terminal by the first receiver, performing the relaxed measurement of the serving cell of the terminal by the second receiver, and performing the relaxed measurement of the neighbor cell of the terminal by the second receiver;

[0361] when the serving cell measurement result of the second receiver is greater than or equal to the third measurement relaxation threshold of the second receiver and the serving cell measurement result of the second receiver is greater than or equal to the third measurement relaxation threshold of the second receiver, performing the measurement of the serving cell of the terminal by the first receiver, and when there is a high priority cell, performing the relaxed measurement of the high priority cell by the second receiver.

[0362] Optionally, the measurement result of the second receiver comprises a serving cell measurement result of the second receiver. Optionally, the measurement result threshold comprises: a first measurement relaxation threshold of the second receiver, a second measurement relaxation threshold of the second receiver, a third measurement relaxation threshold of the second receiver, and a neighbor cell measurement relaxation threshold of the terminal. Optionally, the first measurement relaxation threshold of the second receiver is less than the second measurement relaxation threshold of the second receiver, and the second measurement relaxation threshold of the second receiver is less than the third measurement relaxation threshold of the second receiver.

[0363] In some embodiments, performing measurement according to the measurement result of the first receiver and the measurement result threshold comprises one of:

[0364] performing measurement of the serving cell of the terminal by the first receiver when the serving cell measurement result of the first receiver is greater than or equal to the third measurement relaxation threshold of the first receiver;

[0365] performing measurement of the serving cell of the terminal by the first receiver and performing relaxed measurement of the serving cell of the terminal by the second receiver when the serving cell measurement result of the first receiver is greater than or equal to the second measurement relaxation threshold of the first receiver;

[0366] performing measurement of the serving cell of the terminal by the first receiver, performing relaxed measurement of the serving cell of the terminal by the second receiver, and performing relaxed measurement of the neighbor cell of the terminal by the second receiver when the serving cell measurement result of the first receiver is greater than or equal to the first measurement relaxation threshold of the first receiver, and the first measurement relaxation threshold of the second receiver is greater than or equal to the neighbor cell measurement relaxation threshold;

[0367] performing measurement of the serving cell of the terminal by the first receiver when the serving cell measurement result of the first receiver is greater than or equal to the third measurement relaxation threshold of the first receiver, and performing relaxed measurement of the high priority cell by the second receiver when there is a high priority cell.

[0368] Optionally, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver. Optionally, the measurement result threshold comprises: a first measurement relaxation threshold of the first receiver, a second measurement relaxation threshold of the first receiver, a third measurement relaxation threshold of the first receiver, and a neighbor cell measurement relaxation threshold of the terminal. Optionally, the first measurement relaxation threshold of the first receiver is less than the second measurement relaxation threshold of the first receiver, and the second measurement relaxation threshold of the first receiver is less than the third measurement relaxation threshold of the first receiver. Optionally, the serving cell measurement result of the first receiver is greater than or equal to the third measurement relaxation threshold of the first receiver.

[0369] In some embodiments, performing the measurement according to the measurement result of the first receiver or the measurement result of the second receiver, and the measurement result threshold comprises:

[0370] performing, by the first receiver, the measurement of the serving cell of the terminal when at least one of the following is satisfied:

[0371] the serving cell measurement result of the first receiver is greater than or equal to the third measurement relaxation threshold of the first receiver;

[0372] the serving cell measurement result of the second receiver is greater than or equal to a first bias value;

[0373] the serving cell measurement result of the second receiver is greater than or equal to the third measurement relaxation threshold of the second receiver;

[0374] the serving cell measurement result of the first receiver is greater than or equal to a second bias value;

[0375] wherein the first bias value is a sum of the third measurement relaxation threshold of the first receiver and a first offset, and the second bias value is a difference between the third measurement relaxation threshold of the second receiver and the second offset.

[0376] In some embodiments, performing the measurement according to the measurement result of the first receiver or the measurement result of the second receiver, and the measurement result threshold comprises:

[0377] performing, by the first receiver, the measurement of the serving cell of the terminal and performing, by the second receiver, the relaxed measurement of the serving cell of the terminal when at least one of the following is satisfied:

[0378] the serving cell measurement result of the first receiver is greater than or equal to the second measurement relaxation threshold of the first receiver;

[0379] the serving cell measurement result of the second receiver is greater than or equal to a third bias value;

[0380] a serving cell measurement result of the second receiver is greater than or equal to a second measurement relaxation threshold of the second receiver;

[0381] a serving cell measurement result of the first receiver is greater than or equal to a fourth offset value;

[0382] wherein the third offset value is a sum of the second measurement relaxation threshold of the first receiver and a third offset amount, and the fourth offset value is a difference between the second measurement relaxation threshold of the second receiver and the fourth offset amount.

[0383] In some embodiments, performing measurements according to the measurement result of the first receiver or the measurement result of the second receiver, and the measurement result threshold, comprises:

[0384] performing, by the first receiver, measurements of a serving cell of the terminal, performing, by the second receiver, relaxed measurements of the serving cell of the terminal, and performing, by the second receiver, relaxed measurements of a neighbor cell of the terminal when at least one of:

[0385] a serving cell measurement result of the first receiver is greater than or equal to a first measurement relaxation threshold of the first receiver;

[0386] a serving cell measurement result of the second receiver is greater than or equal to a fifth offset value;

[0387] a serving cell measurement result of the second receiver is greater than or equal to a first measurement relaxation threshold of the second receiver;

[0388] a serving cell measurement result of the first receiver is greater than or equal to a sixth offset value;

[0389] wherein the fifth offset value is a sum of the first measurement relaxation threshold of the first receiver and a fifth offset amount, and the sixth offset value is a difference between the first measurement relaxation threshold of the second receiver and the sixth offset amount.

[0390] In some embodiments, performing measurements according to the measurement result of the first receiver or the measurement result of the second receiver, and the measurement result threshold, comprises:

[0391] performing, by the first receiver, measurements of a serving cell of the terminal, and performing, by the second receiver, relaxed measurements of a high priority cell when the high priority cell exists when at least one of:

[0392] a serving cell measurement result of the first receiver is greater than or equal to a third measurement relaxation threshold of the first receiver;

[0393] the serving cell measurement result of the second receiver is greater than or equal to a first bias value;

[0394] the serving cell measurement result of the second receiver is greater than or equal to a third measurement relaxation threshold of the second receiver;

[0395] the serving cell measurement result of the first receiver is greater than or equal to a second bias value;

[0396] wherein the first bias value is a sum of the third measurement relaxation threshold of the first receiver and a first offset, and the second bias value is a difference between the third measurement relaxation threshold of the second receiver and the second offset.

[0397] Optionally, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver. Optionally, the measurement result of the second receiver comprises a serving cell measurement result of the second receiver. Optionally, the measurement result threshold comprises a first measurement relaxation threshold of the second receiver, a second measurement relaxation threshold of the second receiver, a third measurement relaxation threshold of the second receiver, and a neighbor cell measurement relaxation threshold of the terminal. Optionally, the measurement result threshold comprises a first measurement relaxation threshold of the first receiver, a second measurement relaxation threshold of the first receiver, a third measurement relaxation threshold of the first receiver, and a neighbor cell measurement relaxation threshold of the terminal.

[0398] In some embodiments, the terminal 101 determines the corresponding scenario and the corresponding measurement behavior according to the measurement result and the measurement result threshold.

[0399] In some embodiments, the terminal 101 determines the corresponding scenario and the corresponding measurement behavior according to the receiving signal modulation mode of the first receiver, the receiving signal modulation mode of the second receiver, the measurement result and the measurement result threshold.

[0400] In some embodiments, the measurement behavior is used to indicate that all measurement operations of the second receiver are performed by the first receiver or that part of the measurement operations of the second receiver are performed by the first receiver. Optionally, the measurement behavior is used to indicate that the measurement is performed by the first receiver or that the measurement is performed by the first receiver and the measurement is performed by the second receiver.

[0401] In some embodiments, the measurement behavior comprises at least one of a first measurement behavior, a second measurement behavior, a third measurement behavior, and a fourth measurement behavior.

[0402] In some embodiments, the first measurement behavior comprises: the first receiver performs measurement on a serving cell of the terminal and the second receiver does not perform measurement on the serving cell of the terminal and the second receiver does not perform measurement on a neighbor cell of the terminal.

[0403] Optionally, the first measurement behavior comprises: the first receiver performs measurement on a serving cell of the terminal. Optionally, the measurement corresponding to the first measurement behavior comprises: the first receiver performs measurement on the serving cell of the terminal.

[0404] In some embodiments, the scenario 1 (e.g. case #1) corresponds to the first measurement behavior. Optionally, the measurement corresponding to the first measurement behavior comprises: the first receiver performs measurement on a serving cell of the terminal. Optionally, the first receiver performs measurement on the serving cell of the terminal and the second receiver does not perform measurement on the serving cell of the terminal and the second receiver does not perform measurement on a neighbor cell of the terminal.

[0405] In some embodiments, the second measurement behavior comprises: the first receiver performs measurement on a serving cell of the terminal and the second receiver performs relaxed measurement on the serving cell of the terminal and the second receiver does not perform measurement on a neighbor cell of the terminal.

[0406] Optionally, the second measurement behavior comprises: the first receiver performs measurement on a serving cell of the terminal and the second receiver performs relaxed measurement on the serving cell of the terminal. Optionally, the measurement corresponding to the second measurement behavior comprises: the first receiver performs measurement on the serving cell of the terminal and the second receiver performs relaxed measurement on the serving cell of the terminal.

[0407] In some embodiments, the scenario 2 (e.g. case #2) corresponds to the second measurement behavior.

[0408] In some embodiments, the third measurement behavior comprises: the first receiver performs measurement on a serving cell of the terminal and the second receiver performs relaxed measurement on the serving cell of the terminal and the second receiver performs relaxed measurement on a neighbor cell of the terminal when a first condition is satisfied; or, the first receiver performs measurement on a serving cell of the terminal and the second receiver performs relaxed measurement on the serving cell of the terminal and the second receiver does not perform relaxed measurement on a neighbor cell of the terminal when the first condition is not satisfied.

[0409] Optionally, the third measurement behavior comprises: the first receiver performing the measurement of the serving cell of the terminal and the second receiver performing the relaxed measurement of the serving cell of the terminal, and the second receiver performing the relaxed measurement of the neighbor cell of the terminal when the first condition is satisfied. Optionally, the third measurement behavior corresponds to the measurement of: the first receiver performing the measurement of the serving cell of the terminal, the second receiver performing the relaxed measurement of the serving cell of the terminal, and the second receiver performing the relaxed measurement of the neighbor cell of the terminal.

[0410] Optionally, the third measurement behavior comprises: the first receiver performing the measurement of the serving cell of the terminal and the second receiver performing the relaxed measurement of the serving cell of the terminal, and the second receiver not performing the relaxed measurement of the neighbor cell of the terminal when the first condition is not satisfied, and the second receiver performing the relaxed measurement of the high priority cell if there is a high priority cell. Optionally, the third measurement behavior corresponds to the measurement of: the first receiver performing the measurement of the serving cell of the terminal, the second receiver performing the relaxed measurement of the serving cell of the terminal, and the second receiver performing the relaxed measurement of the high priority cell of the terminal if there is a high priority cell.

[0411] In some embodiments, the first condition comprises: the first measurement relaxation threshold of the first receiver is greater than or equal to the neighbor cell measurement relaxation threshold of the terminal, or the first measurement relaxation threshold of the second receiver is greater than or equal to the neighbor cell measurement relaxation threshold of the terminal.

[0412] In the above embodiments, by providing the first condition, it can be determined whether the second receiver performs the relaxed measurement of the neighbor cell of the terminal, and further determine the third measurement behavior, so that the determined measurement behavior is more accurate.

[0413] In some embodiments, the scenario 3 (e.g. #3 or case #3) corresponds to the third measurement behavior.

[0414] In some embodiments, the fourth measurement behavior comprises: the first receiver performing the measurement of the serving cell of the terminal and the second receiver not performing the measurement of the serving cell of the terminal, and the second receiver performing the relaxed measurement of the first neighbor cell of the terminal when there is a first neighbor cell in the neighbor cell of the terminal.

[0415] Optionally, the fourth measurement behavior comprises: the first receiver performing measurement on a serving cell of the terminal and the second receiver performing relaxed measurement on a first neighbor cell (e.g., a high priority cell) when the first neighbor cell exists in neighbor cells of the terminal. Optionally, the fourth measurement behavior corresponds to measurement: measurement on the serving cell of the terminal by the first receiver, and relaxed measurement on the high priority cell by the second receiver when the high priority cell exists.

[0416] In some embodiments, scenario 4 (e.g., case #4) corresponds to the fourth measurement behavior.

[0417] In some embodiments, the name of the measurement behavior is not limited, which is, for example, "measurement scenario", "behavior for indicating measurement", "behavior for indicating measurement scenario", "measurement operation", "measurement behavior indication", "measurement scenario indication", "operation for indicating measurement", and the like.

[0418] In the above embodiments, different measurement behaviors correspond to different scenarios, and then the corresponding measurement is realized based on the measurement behavior, so as to ensure the measurement performance and realize the power saving of the terminal.

[0419] In some embodiments, determining the measurement behavior of the terminal according to the measurement result of the terminal and a measurement result threshold comprises: when the measurement result of the first receiver and the measurement result of the second receiver are not comparable, determining the measurement behavior of the terminal according to the measurement result of the second receiver and the measurement result threshold.

[0420] In the above embodiments, based on whether the measurement result of the first receiver and the measurement result of the second receiver are comparable, the measurement result of the second receiver or the measurement result of the first receiver is determined to be used to determine the measurement behavior of the terminal, which realizes that different strategies can be used to determine the measurement behavior under different conditions, and then the diversity and flexibility of determining the measurement behavior are realized.

[0421] In some embodiments, determining the measurement behavior of the terminal according to the measurement result of the terminal and a measurement result threshold comprises: when the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are different, determining the measurement behavior of the terminal according to the measurement result of the second receiver and the measurement result threshold.

[0422] In the above embodiments, based on whether the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same, the measurement result of the second receiver or the measurement result of the first receiver is determined to judge the measurement behavior of the terminal, which realizes that different strategies can be used to determine the measurement behavior based on different situations, and further realizes the diversity and flexibility of determining the measurement behavior.

[0423] In some embodiments, the measurement behavior of the terminal is determined based on the actual situation of the current communication. Alternatively, if the measurement result of the first receiver and the measurement result of the second receiver are not comparable, or the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are different (which means that the measurement result of the first receiver and the measurement result of the second receiver are not comparable): the network device determines the above situation 1, and sends the measurement result threshold in the situation 1 to the terminal, and then the terminal determines the measurement behavior according to the received measurement result threshold combined with the measurement result of the terminal, for example, the measurement result of the second receiver. Alternatively, if the measurement result of the first receiver and the measurement result of the second receiver are not comparable, or the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are different (which means that the measurement result of the first receiver and the measurement result of the second receiver are not comparable): the terminal determines that the current situation is situation 1, and obtains the measurement result threshold corresponding to situation 1, and determines the measurement behavior combined with the measurement result of the terminal, for example, the measurement result of the second receiver.

[0424] In some embodiments, the measurement result of the second receiver includes the serving cell measurement result of the second receiver.

[0425] In some embodiments, the serving cell of the second receiver is the serving cell of the terminal in which the second receiver is deployed.

[0426] In some embodiments, the measurement behavior of the terminal is determined according to the measurement result of the second receiver and the measurement result threshold, including:

[0427] When the serving cell measurement result of the second receiver is greater than or equal to the third measurement relaxation threshold of the second receiver, it is determined that the measurement behavior includes the first measurement behavior;

[0428] When the serving cell measurement result of the second receiver is greater than or equal to the second measurement relaxation threshold of the second receiver, it is determined that the measurement behavior includes the second measurement behavior;

[0429] When the serving cell measurement result of the second receiver is greater than or equal to the first measurement relaxation threshold of the second receiver, it is determined that the measurement behavior includes the third measurement behavior;

[0430] determining the measurement behavior comprises a fourth measurement behavior when the serving cell measurement result of the second receiver is greater than or equal to a third measurement relaxation threshold of the second receiver, and the first neighbor cell exists;

[0431] wherein the first measurement relaxation threshold of the second receiver is less than the second measurement relaxation threshold of the second receiver, and the second measurement relaxation threshold of the second receiver is less than the third measurement relaxation threshold of the second receiver.

[0432] Optionally, when the UE judges that the serving cell measurement result of the MR is greater than or equal to MR Threshold3, case#1 and measurement behavior 1 are determined.

[0433] Optionally, when the UE judges that the serving cell measurement result of the MR is greater than or equal to MR Threshold2, case#2 and measurement behavior 2 are determined.

[0434] Optionally, when the UE judges that the serving cell measurement result of the MR is greater than or equal to MR Threshold1, case#3 and measurement behavior 3 are determined. Optionally, when the UE judges that the serving cell measurement result of the MR is greater than or equal to MR Threshold1, and MR Threshold1 is greater than or equal to Threshold_legacy, measurement behavior 3 is determined as the first receiver performing measurement on the serving cell of the terminal, the second receiver performing relaxed measurement on the serving cell of the terminal, and the second receiver performing relaxed measurement on the neighbor cell of the terminal. Optionally, when the UE judges that the serving cell measurement result of the MR is greater than or equal to MR Threshold1, and MR Threshold1 is less than Threshold_legacy, measurement behavior 3 is determined as the first receiver performing measurement on the serving cell of the terminal, the second receiver performing relaxed measurement on the serving cell of the terminal, and the second receiver not performing relaxed measurement on the neighbor cell of the terminal.

[0435] Optionally, when the UE judges that the serving cell measurement result of the MR is greater than or equal to MR Threshold3, and if a high priority cell is configured, case#4 and measurement behavior 4 are determined.

[0436] In the above embodiment, in the case that the measurement result of the first receiver and the measurement result of the second receiver are not comparable, or the receiving signal modulation mode of the first receiver and the receiving signal modulation mode of the second receiver are different, by comparing the serving cell measurement result of the second receiver with the measurement relaxation threshold of the second receiver, and / or judging whether a high priority cell is configured, a matching measurement behavior is determined, which realizes determining the corresponding measurement behavior based on the measurement requirement or the measurement condition, and further realizes guaranteeing the measurement performance on the basis of saving power of the terminal.

[0437] In some embodiments, determining the measurement behavior of the terminal according to the measurement result of the terminal and a measurement result threshold comprises: when the measurement result of the first receiver and the measurement result of the second receiver are comparable, determining the measurement behavior of the terminal according to the measurement result of the first receiver and the measurement result threshold.

[0438] In some embodiments, determining the measurement behavior of the terminal according to the measurement result of the terminal and a measurement result threshold comprises: when the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same, determining the measurement behavior of the terminal according to the measurement result of the first receiver and the measurement result threshold.

[0439] In some embodiments, the measurement behavior of the terminal is determined based on the actual situation of the current communication. Alternatively, if the measurement result of the first receiver and the measurement result of the second receiver are comparable, or the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same (indicating that the measurement result of the first receiver and the measurement result of the second receiver are comparable): the network device determines the above-mentioned case 2, and sends the measurement result threshold in case 2 to the terminal, and then the terminal determines the measurement behavior according to the received measurement result threshold combined with the measurement result of the terminal, for example, the measurement result of the first receiver. Alternatively, if the measurement result of the first receiver and the measurement result of the second receiver are comparable, or the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same (indicating that the measurement result of the first receiver and the measurement result of the second receiver are comparable): the terminal determines that the current situation is case 2, and obtains the measurement result threshold corresponding to case 2, and determines the measurement behavior combined with the measurement result of the terminal, for example, the measurement result of the first receiver.

[0440] In some embodiments, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver.

[0441] In some embodiments, the serving cell of the first receiver is the serving cell of the terminal in which the first receiver is deployed.

[0442] In some embodiments, determining the measurement behavior of the terminal according to the measurement result of the first receiver and a measurement result threshold comprises:

[0443] When the serving cell measurement result of the first receiver is greater than or equal to a third measurement relaxation threshold of the first receiver, the measurement behavior comprises a first measurement behavior.

[0444] When the serving cell measurement result of the first receiver is greater than or equal to a second measurement relaxation threshold of the first receiver, the measurement behavior comprises a second measurement behavior.

[0445] when the serving cell measurement result of the first receiver is greater than or equal to a first measurement relaxation threshold of the first receiver, determining that the measurement behavior comprises a third measurement behavior;

[0446] when the serving cell measurement result of the first receiver is greater than or equal to a third measurement relaxation threshold of the first receiver, and the first neighbor cell exists, determining that the measurement behavior comprises a fourth measurement behavior;

[0447] wherein the first measurement relaxation threshold of the first receiver is less than the second measurement relaxation threshold of the first receiver, and the second measurement relaxation threshold of the first receiver is less than the third measurement relaxation threshold of the first receiver.

[0448] Optionally, when the UE judges that the serving cell measurement result of the LR is greater than or equal to LR Threshold3, case#1 and measurement behavior 1 are determined.

[0449] Optionally, when the UE judges that the serving cell measurement result of the LR is greater than or equal to LR Threshold2, case#2 and measurement behavior 2 are determined.

[0450] Optionally, when the UE judges that the serving cell measurement result of the LR is greater than or equal to LR Threshold1, case#3 and measurement behavior 3 are determined. Optionally, when the UE judges that the serving cell measurement result of the LR is greater than or equal to LR Threshold1, and LR Threshold1 is greater than or equal to Threshold_legacy, it is determined that the measurement behavior 3 is that the first receiver performs measurement on the serving cell of the terminal, the second receiver performs relaxed measurement on the serving cell of the terminal, and the second receiver performs relaxed measurement on the neighbor cell of the terminal. Optionally, when the UE judges that the serving cell measurement result of the LR is greater than or equal to LR Threshold1, and LR Threshold1 is less than Threshold_legacy, it is determined that the measurement behavior 3 is that the first receiver performs measurement on the serving cell of the terminal, the second receiver performs relaxed measurement on the serving cell of the terminal, and the second receiver does not perform relaxed measurement on the neighbor cell of the terminal.

[0451] Optionally, when the UE judges that the serving cell measurement result of the LR is greater than or equal to LR Threshold3, and if a high-priority cell is configured, case#4 and measurement behavior 4 are determined.

[0452] In the above embodiments, in the case that the measurement result of the first receiver and the measurement result of the second receiver are comparable or the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same, the matching measurement behavior is determined by comparing the serving cell measurement result of the first receiver with the measurement relaxation threshold of the first receiver, and / or judging whether a high priority cell is configured, so as to determine the corresponding measurement behavior based on the measurement requirement or the measurement condition, and further to ensure the measurement performance on the basis of saving power of the terminal.

[0453] In some embodiments, the measurement behavior of the terminal is determined according to the measurement result of the terminal and the measurement result threshold, including: when the measurement result of the first receiver and the measurement result of the second receiver are comparable, the measurement behavior of the terminal is determined according to the measurement result of the first receiver or the measurement result of the second receiver and the measurement result threshold.

[0454] In some embodiments, the measurement behavior of the terminal is determined according to the measurement result of the terminal and the measurement result threshold, including: when the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same, the measurement behavior of the terminal is determined according to the measurement result of the first receiver or the measurement result of the second receiver and the measurement result threshold.

[0455] In some embodiments, the measurement behavior of the terminal is determined based on the actual situation of the current communication. Optionally, if the measurement result of the first receiver and the measurement result of the second receiver are comparable, or the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same (which means that the measurement result of the first receiver and the measurement result of the second receiver are comparable): the network device determines the above case 3, and sends the measurement result threshold in case 3 to the terminal, and then the terminal determines the measurement behavior according to the received measurement result threshold and the measurement result of the terminal, for example, the measurement result of the first receiver or the measurement result of the second receiver. Optionally, if the measurement result of the first receiver and the measurement result of the second receiver are comparable, or the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same (which means that the measurement result of the first receiver and the measurement result of the second receiver are comparable): the terminal determines that the current situation is case 3, and obtains the measurement result threshold corresponding to case 3, and determines the measurement behavior in combination with the measurement result of the terminal (for example, the measurement result of the first receiver or the measurement result of the second receiver).

[0456] In some embodiments, the measurement result of the first receiver includes the serving cell measurement result of the first receiver, or the measurement result of the second receiver includes the serving cell measurement result of the second receiver.

[0457] In some embodiments, the measurement behavior of the terminal is determined according to the measurement result of the first receiver or the measurement result of the second receiver, and the measurement result threshold, including:

[0458] When the second condition is satisfied, the measurement behavior is determined to include a first measurement behavior; the second condition includes at least one of the following: the serving cell measurement result of the first receiver is greater than or equal to a third measurement relaxation threshold of the first receiver, the serving cell measurement result of the second receiver is greater than or equal to a first offset value, the serving cell measurement result of the second receiver is greater than or equal to a third measurement relaxation threshold of the second receiver, the serving cell measurement result of the first receiver is greater than or equal to a second offset value; the first offset value is the sum of the third measurement relaxation threshold of the first receiver and a first offset amount, and the second offset value is the difference between the third measurement relaxation threshold of the second receiver and the second offset amount;

[0459] When the third condition is satisfied, the measurement behavior is determined to include a second measurement behavior; the third condition includes at least one of the following: the serving cell measurement result of the first receiver is greater than or equal to a second measurement relaxation threshold of the first receiver, the serving cell measurement result of the second receiver is greater than or equal to a third offset value, the serving cell measurement result of the second receiver is greater than or equal to a second measurement relaxation threshold of the second receiver, the serving cell measurement result of the first receiver is greater than or equal to a fourth offset value; the third offset value is the sum of the second measurement relaxation threshold of the first receiver and a third offset amount, and the fourth offset value is the difference between the second measurement relaxation threshold of the second receiver and the fourth offset amount;

[0460] When the fourth condition is satisfied, the measurement behavior is determined to include a third measurement behavior; the fourth condition includes at least one of the following: the serving cell measurement result of the first receiver is greater than or equal to a first measurement relaxation threshold of the first receiver, the serving cell measurement result of the second receiver is greater than or equal to a fifth offset value, the serving cell measurement result of the second receiver is greater than or equal to a first measurement relaxation threshold of the second receiver, the serving cell measurement result of the first receiver is greater than or equal to a sixth offset value; the fifth offset value is the sum of the first measurement relaxation threshold of the first receiver and a fifth offset amount, and the sixth offset value is the difference between the first measurement relaxation threshold of the second receiver and the sixth offset amount;

[0461] When the fifth condition is satisfied, the measurement behavior is determined to include a fourth measurement behavior; the fifth condition includes the second condition and the existence of the first neighbor cell.

[0462] In some embodiments, the offset includes at least one of a first offset, a second offset, a third offset, a fourth offset, a fifth offset, and a sixth offset.

[0463] In some embodiments, the offset can be configured by the network device or be specified by a protocol. Optionally, if configured by the network device, the network device sends the terminal at least one of the first offset, the second offset, the third offset, the fourth offset, the fifth offset, and the sixth offset.

[0464] In some embodiments, the first offset and the second offset can be the same or different.

[0465] In some embodiments, the third offset and the fourth offset can be the same or different.

[0466] In some embodiments, the fifth offset and the sixth offset can be the same or different.

[0467] In some embodiments, the name of the offset is not limited, which is, for example, “offset”. Optionally, the first offset is, for example, “offset1”, the second offset is, for example, “offset2”, the third offset is, for example, “offset3”, the fourth offset is, for example, “offset4”, the fifth offset is, for example, “offset5”, and the sixth offset is, for example, “offset6”.

[0468] In some embodiments, the offset value includes at least one of a first offset value, a second offset value, a third offset value, a fourth offset value, a fifth offset value, and a sixth offset value.

[0469] In some embodiments, the name of the offset value is not limited, which is, for example, “sum of threshold and offset” or “difference between threshold and offset”. Optionally, the first offset value = LR Threshold3 + offset1. Optionally, the second offset value = MR Threshold3 - offset2. Optionally, the third offset value = LR Threshold2 + offset3. Optionally, the fourth offset value = MR Threshold2 - offset4. Optionally, the fifth offset value = LR Threshold1 + offset5. Optionally, the sixth offset value = MR Threshold1 - offset6.

[0470] In some embodiments, the second condition comprises at least one of: the serving cell measurement result of the LR ≥ LR Threshold3, the serving cell measurement result of the MR ≥ LR Threshold3 + offset1, the serving cell measurement result of the MR ≥ MR Threshold3, the serving cell measurement result of the LR ≥ MR Threshold3 - offset2.

[0471] In some embodiments, if the measurement result threshold comprises the third measurement relaxation threshold of the first receiver, and the UE selects to use the serving cell measurement result of the LR for judgment: when the UE judges that the serving cell measurement result of the LR ≥ LR Threshold3, case#1 and measurement behavior 1 are determined.

[0472] In some embodiments, if the measurement result threshold comprises the third measurement relaxation threshold of the first receiver, and the UE selects to use the serving cell measurement result of the MR for judgment: when the UE judges that the serving cell measurement result of the MR ≥ the first offset value, case#1 and measurement behavior 1 are determined. Alternatively, when the UE judges that the serving cell measurement result of the MR ≥ LR Threshold3 + offset1, case#1 and measurement behavior 1 are determined.

[0473] In some embodiments, if the measurement result threshold comprises the third measurement relaxation threshold of the second receiver, and the UE selects to use the serving cell measurement result of the MR for judgment: when the UE judges that the serving cell measurement result of the MR ≥ MR Threshold3, case#1 and measurement behavior 1 are determined.

[0474] In some embodiments, if the measurement result threshold comprises the third measurement relaxation threshold of the second receiver, and the UE selects to use the serving cell measurement result of the LR for judgment: when the UE judges that the serving cell measurement result of the LR ≥ the second offset value, case#1 and measurement behavior 1 are determined. Alternatively, when the UE judges that the serving cell measurement result of the LR ≥ MR Threshold3 - offset2, case#1 and measurement behavior 1 are determined.

[0475] In some embodiments, the third condition comprises at least one of: the serving cell measurement result of the LR ≥ LR Threshold2, the serving cell measurement result of the MR ≥ LR Threshold2 + offset3, the serving cell measurement result of the MR ≥ MR Threshold2, the serving cell measurement result of the LR ≥ MR Threshold2 - offset4.

[0476] In some embodiments, if the measurement threshold includes the second measurement relaxation threshold for the first receiver, and the UE chooses to use the serving cell measurement of LR for the judgment: when the UE judges that the serving cell measurement of LR ≥ LR Threshold2, case#2 and measurement behavior 2 are determined.

[0477] In some embodiments, if the measurement threshold includes the second measurement relaxation threshold for the first receiver, and the UE chooses to use the serving cell measurement of MR for the judgment: when the UE judges that the serving cell measurement of MR ≥ a third offset value, case#2 and measurement behavior 2 are determined. Alternatively, when the UE judges that the serving cell measurement of MR ≥ LR Threshold2+offset3, case#2 and measurement behavior 2 are determined.

[0478] In some embodiments, if the measurement threshold includes the second measurement relaxation threshold for the second receiver, and the UE chooses to use the serving cell measurement of MR for the judgment: when the UE judges that the serving cell measurement of MR ≥ MR Threshold2, case#2 and measurement behavior 2 are determined.

[0479] In some embodiments, if the measurement threshold includes the second measurement relaxation threshold for the second receiver, and the UE chooses to use the serving cell measurement of LR for the judgment: when the UE judges that the serving cell measurement of LR ≥ a fourth offset value, case#2 and measurement behavior 2 are determined. Alternatively, when the UE judges that the serving cell measurement of LR ≥ MR Threshold2-offset4, case#2 and measurement behavior 2 are determined.

[0480] In some embodiments, the fourth condition includes at least one of: the serving cell measurement of LR ≥ LR Threshold1, the serving cell measurement of MR ≥ LR Threshold1+offset5, the serving cell measurement of MR ≥ MR Threshold1, the serving cell measurement of LR ≥ MR Threshold1-offset6.

[0481] In some embodiments, if the measurement result threshold includes a first measurement relaxation threshold for the first receiver, and the UE chooses to use the serving cell measurement result of the LR for the judgment: when the UE judges that the serving cell measurement result of the LR is ≥ LR Threshold1, case #3 and measurement behavior 3 are determined. Optionally, when the UE judges that the serving cell measurement result of the LR is ≥ LR Threshold1, and LR Threshold1≥ Threshold_legacy, it is determined that measurement behavior 3 is that the first receiver performs measurement on the serving cell of the terminal, the second receiver performs relaxed measurement on the serving cell of the terminal, and the second receiver performs relaxed measurement on the neighbor cell of the terminal. Optionally, when the UE judges that the serving cell measurement result of the LR is ≥ LR Threshold1, and LR Threshold1 is less than Threshold_legacy, it is determined that measurement behavior 3 is that the first receiver performs measurement on the serving cell of the terminal, the second receiver performs relaxed measurement on the serving cell of the terminal, and the second receiver does not perform relaxed measurement on the neighbor cell of the terminal.

[0482] In some embodiments, if the measurement result threshold includes a first measurement relaxation threshold for the first receiver, and the UE chooses to use the serving cell measurement result of the MR for the judgment: when the UE judges that the serving cell measurement result of the MR is ≥ the fifth offset value, case #3 and measurement behavior 3 are determined. Optionally, when the UE judges that the serving cell measurement result of the MR is ≥ LR Threshold1+offset5, case #3 and measurement behavior 3 are determined. Optionally, when the UE judges that the serving cell measurement result of the MR is ≥ LR Threshold1+offset5, and LR Threshold1≥ Threshold_legacy, it is determined that measurement behavior 3 is that the first receiver performs measurement on the serving cell of the terminal, the second receiver performs relaxed measurement on the serving cell of the terminal, and the second receiver performs relaxed measurement on the neighbor cell of the terminal. Optionally, when the UE judges that the serving cell measurement result of the MR is ≥ LR Threshold1+offset5, and LR Threshold1 is less than Threshold_legacy, it is determined that measurement behavior 3 is that the first receiver performs measurement on the serving cell of the terminal, the second receiver performs relaxed measurement on the serving cell of the terminal, and the second receiver does not perform relaxed measurement on the neighbor cell of the terminal.

[0483] In some embodiments, if the first measurement relaxation threshold including the second receiver is included in the measurement result threshold, and the UE chooses to use the serving cell measurement result of the MR for the judgment: when the UE judges that the serving cell measurement result of the MR is ≥ MR Threshold1, case #3 and measurement behavior 3 are determined. Optionally, when the UE judges that the serving cell measurement result of the MR is ≥ MR Threshold1, and MR Threshold1≥ Threshold_legacy, it is determined that measurement behavior 3 is that the first receiver performs measurement on the serving cell of the terminal, and the second receiver performs relaxed measurement on the serving cell of the terminal, and the second receiver performs relaxed measurement on the neighbor cell of the terminal. Optionally, when the UE judges that the serving cell measurement result of the MR is ≥ MR Threshold1, and MR Threshold1 is less than Threshold_legacy, it is determined that measurement behavior 3 is that the first receiver performs measurement on the serving cell of the terminal, and the second receiver performs relaxed measurement on the serving cell of the terminal, and the second receiver does not perform relaxed measurement on the neighbor cell of the terminal.

[0484] In some embodiments, if the first measurement relaxation threshold including the second receiver is included in the measurement result threshold, and the UE chooses to use the serving cell measurement result of the LR for the judgment: when the UE judges that the serving cell measurement result of the LR is ≥ the sixth offset value, case #3 and measurement behavior 3 are determined. Optionally, when the UE judges that the serving cell measurement result of the LR is ≥ MR Threshold1-offset6, case #3 and measurement behavior 3 are determined. Optionally, when the UE judges that the serving cell measurement result of the LR is ≥ MR Threshold1-offset6, and MR Threshold1≥ Threshold_legacy, it is determined that measurement behavior 3 is that the first receiver performs measurement on the serving cell of the terminal, and the second receiver performs relaxed measurement on the serving cell of the terminal, and the second receiver performs relaxed measurement on the neighbor cell of the terminal. Optionally, when the UE judges that the serving cell measurement result of the LR is ≥ MR Threshold1-offset6, and MR Threshold1 is less than Threshold_legacy, it is determined that measurement behavior 3 is that the first receiver performs measurement on the serving cell of the terminal, and the second receiver performs relaxed measurement on the serving cell of the terminal, and the second receiver does not perform relaxed measurement on the neighbor cell of the terminal.

[0485] In some embodiments, the fifth condition comprises: the second condition and the first neighbor cell exists. Optionally, the fifth condition comprises at least one of: the serving cell measurement result of the LR ≥ LR Threshold1, the serving cell measurement result of the MR ≥ LR Threshold1 + offset5, the serving cell measurement result of the MR ≥ MR Threshold1, the serving cell measurement result of the LR ≥ MR Threshold1 - offset6, and the first neighbor cell exists.

[0486] In some embodiments, if the third measurement relaxation threshold of the first receiver is included in the measurement result thresholds, and the UE chooses to use the serving cell measurement result of the LR for the judgment: when the UE judges that the serving cell measurement result of the LR ≥ LR Threshold3, and if a high priority cell is configured, case#4 and the measurement behavior 4 are determined.

[0487] Optionally, the high priority cell is the first neighbor cell.

[0488] In some embodiments, if the third measurement relaxation threshold of the first receiver is included in the measurement result thresholds, and the UE chooses to use the serving cell measurement result of the MR for the judgment: when the UE judges that the serving cell measurement result of the MR ≥ the first offset value, case#1 and the measurement behavior 1 are determined. Optionally, when the UE judges that the serving cell measurement result of the MR ≥ LR Threshold3 + offset1, and if a high priority cell is configured, case#4 and the measurement behavior 4 are determined, case#4 and the measurement behavior 4 are determined.

[0489] In some embodiments, if the third measurement relaxation threshold of the second receiver is included in the measurement result thresholds, and the UE chooses to use the serving cell measurement result of the MR for the judgment: when the UE judges that the serving cell measurement result of the MR ≥ MR Threshold3, and if a high priority cell is configured, case#4 and the measurement behavior 4 are determined, case#4 and the measurement behavior 4 are determined.

[0490] In some embodiments, if the third measurement relaxation threshold of the second receiver is included in the measurement result thresholds, and the UE chooses to use the serving cell measurement result of the LR for the judgment: when the UE judges that the serving cell measurement result of the LR ≥ the second offset value, case#1 and the measurement behavior 1 are determined. Optionally, when the UE judges that the serving cell measurement result of the LR ≥ MR Threshold3 - offset2, and if a high priority cell is configured, case#4 and the measurement behavior 4 are determined, case#4 and the measurement behavior 4 are determined.

[0491] In the above embodiments, in the case that the measurement result of the first receiver and the measurement result of the second receiver are comparable or the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same, by comparing the serving cell measurement result of the first receiver or the serving cell measurement result of the second receiver with the corresponding measurement relaxation threshold respectively, and / or judging whether a high priority cell is configured, the matched measurement behavior is determined, the corresponding measurement behavior is determined based on the measurement requirement or the measurement condition, and then the measurement performance is ensured on the basis of the power saving of the terminal.

[0492] In step S205, the terminal 101 performs measurement and / or performs relaxed measurement of different measurement relaxation coefficients under different measurement behaviors.

[0493] In some embodiments, the terminal performs relaxed measurement of different measurement relaxation coefficients under different relaxed measurements.

[0494] In some embodiments, the terminal performs relaxed measurement of different measurement relaxation coefficients under different measurement behaviors.

[0495] In some embodiments, the measurement relaxation coefficient of the serving cell corresponding to the second measurement behavior is greater than or equal to the measurement relaxation coefficient of the serving cell corresponding to the third measurement behavior; the measurement relaxation coefficient of the serving cell corresponding to the third measurement behavior is less than the measurement relaxation coefficient of the neighbor cell corresponding to the third measurement behavior.

[0496] In the above embodiments, the measurement relaxation coefficients of the relaxed measurement performed by the terminal under different measurement behaviors can be different, the relaxed measurement of different measurement relaxation coefficients is implemented under different scenarios, and the measurement performance can be effectively ensured while the power saving of the terminal is implemented.

[0497] In some embodiments, the name of the measurement relaxation coefficient is not limited, which is, for example, "relaxation coefficient", "relaxation factor", "measurement relaxation factor".

[0498] In some embodiments, the name of the measurement relaxation coefficient of the serving cell corresponding to the third measurement behavior is not limited, which is, for example, "Ka".

[0499] In some embodiments, the name of the measurement relaxation coefficient of the serving cell corresponding to the second measurement behavior is not limited, which is, for example, "Kb".

[0500] In some embodiments, the name of the measurement relaxation coefficient of the neighbor cell corresponding to the third measurement behavior is not limited, which is, for example, "Kd".

[0501] In some embodiments, the name of the measurement relaxation coefficient of the first neighbor cell corresponding to the third measurement behavior is not limited, which is, for example, "Kf".

[0502] In some embodiments, the first neighbor cell corresponding to the fourth measurement behavior is not limited in name of the measurement relaxation factor, which is, for example, "Ke".

[0503] In some embodiments, Kb≥Ka.

[0504] In some embodiments, Ka<Kd.

[0505] In some embodiments, for case 1, under the third measurement behavior, the second receiver performs relaxed measurement on the serving cell, and the measurement relaxation factor for performing the relaxed measurement is Ka. See Table 1:

[0506] Table 1: Nserv

[0507] Optionally, FR1 represents one of the major categories of 5G frequency division, namely the abbreviation of Frequency Range 1, which means frequency range 1. Specifically, FR1 refers to the frequency band below 6GHz, so it is also commonly known as the Sub6G frequency band, which is the main frequency band used by 5G technology.

[0508] Optionally, FR2 (Frequency Range 2), that is, the millimeter wave frequency band, the frequency range is between 24.25GHz and 52.6GHz.

[0509] In the above table 1: Note 1: Applicable to user equipment (UE) supporting FR2-1 power class 2, 3 and 4. For UE supporting FR2-1 power class 1 or 5, the value of N1 is 8 under all discontinuous reception (DRX) cycle lengths.

[0510] Note 2: Applicable to UE supporting FR2-2 power class 2 and 3. For UE supporting FR2-2 power class 1, the value of N1 is 12 under all DRX cycle lengths.

[0511] Note 3: Ka is the measurement relaxation factor applicable to UE meeting the low power wake-up receiver (LP-WUR) relaxation standard.

[0512] In the above table 1, M1 represents the expansion coefficient under different SMTC cycle lengths and DRX cycle lengths, and N1 represents the expansion coefficient corresponding to the measurement performed by the terminal under FR2.

[0513] In some embodiments, for case 1, under the third measurement behavior, the second receiver performs relaxed measurement on the neighbor cell, and the measurement relaxation factor for performing the relaxed measurement on the neighbor cell is Kd. See Table 2:

[0514] Table 2: Tdetect, NR_Intra, Tmeasure, NR_Intra and Tevaluate, NR_Intra

[0515] In the above table 2: Note 1: Applicable for user equipment (UE) supporting FR2-1 power class 2, 3 and 4. For UE supporting FR2-1 power class 1 or 5, the value of N1 is 8 regardless of the DRX cycle length.

[0516] Note 2: Applicable for UE supporting FR2-2 power class 2 and 3. For UE supporting FR2-2 power class 1, the value of N1 is 12 regardless of the DRX cycle length.

[0517] Note 3: If the measured intra-frequency cell in-sync signal and measurement time slot (SMTC) periodicity is greater than 20 ms, then M2 = 1.5; otherwise M2 = 1. If different SMTC periodicities are configured for different cells, the SMTC periodicity in this note refers to the one used by the identified cell. During primary synchronization signal (PSS) / secondary synchronization signal (SSS) detection, the SMTC periodicity configured for the intra-frequency carrier is assumed to be used, and if the actual synchronization signal block (SSB) transmission periodicity is greater than the SMTC periodicity configured for the intra-frequency carrier, then the Tdetect (detection time) for NR_intra is expected to be longer.

[0518] Note 4: Kd is the measurement relaxation factor applicable for UE meeting low power wake-up receiver (LP-WUR) relaxed criteria.

[0519] In the above table 2, M2 represents the extension factor under different SMTC periodicity lengths and DRX cycle lengths.

[0520] In some embodiments, for case 1, under the third measurement behavior, the second receiver performs relaxed measurement on neighbor cells, and the measurement relaxation factor for performing relaxed measurement on neighbor cells is Kd, and if a high priority cell is configured (e.g., there is a high priority cell in the neighbor cells), the measurement relaxation factor for performing relaxed measurement on the high priority cell is Kf, where the size relationship between Kd and Kf is not specifically limited. Alternatively, for case 1, under the third measurement behavior, if a high priority cell is configured, the second receiver can perform relaxed measurement on neighbor cells with different measurement relaxation factors: Kd and Kf.

[0521] Alternatively, for the measurement relaxation factor Kf for performing relaxed measurement on the high priority cell, see Table 3:

[0522] Table 3: Tdetect, NR_Intra, Tmeasure, NR_Intra and Tevaluate, NR_Intra

[0523] In the above Table 3: Note 1: Applicable for User Equipment (UE) supporting FR2-1 power class 2, 3 and 4. For UE supporting FR2-1 power class 1 or 5, the value of N1 is 8 regardless of Discontinuous Reception (DRX) cycle length.

[0524] Note 2: Applicable for UE supporting FR2-2 power class 2 and 3. For UE supporting FR2-2 power class 1, the value of N1 is 12 regardless of DRX cycle length.

[0525] Note 3: If the measured intra-frequency cell's System Message Tracking Area Code (SMTC) period is greater than 20 ms, then M2 = 1.5; otherwise M2 = 1. If different SMTC periods are configured for different cells, the SMTC period in this note refers to the one used by the cell being identified. During primary synchronization signal (PSS) / secondary synchronization signal (SSS) detection, the SMTC period configured for the intra-frequency carrier is assumed to be used, and if the actual synchronization signal block (SSB) transmission period is greater than the SMTC period configured for the intra-frequency carrier, then Tdetect,NR_intra is expected to be longer.

[0526] Note 4: Kf is the measurement relaxation factor applicable for UE meeting the Low Power Wake-Up Reception (LP-WUR) relaxed criteria.

[0527] In some embodiments, for Case 1, under the second measurement behavior, the second receiver performs relaxed measurement on the serving cell, and the measurement relaxation factor for performing the relaxed measurement is Kb. See Table 4:

[0528] Table 4: Nserv

[0529] In the above Table 3: Note 1: Applicable for User Equipment (UE) supporting FR2-1 power class 2, 3 and 4. For UE supporting FR2-1 power class 1 or 5, N1 is equal to 8 regardless of Discontinuous Reception (DRX) cycle length.

[0530] Note 2: Applicable for UE supporting FR2-2 power class 2 and 3. For UE supporting FR2-2 power class 1, N1 is equal to 12 regardless of DRX cycle length.

[0531] Note 3: Kb is the measurement relaxation factor applicable for UEs meeting the low power wake-up receiver (LP-WUR) relaxation criteria.

[0532] In some embodiments, for Case 1, under the first measurement behavior, the second receiver does not perform measurement on the neighbor cell, and performs relaxed measurement on the high priority cell only if the high priority cell is configured, with a relaxed factor of Ke, in which case the measurement behavior is the fourth measurement behavior. Optionally, under the fourth measurement behavior, the measurement relaxation factor for the second receiver performing relaxed measurement on the high priority cell is Ke. Optionally, the size of Ke and Kf is not specifically limited. See Table 5:

[0533] Table 5: Tdetect, NR_Intra, Tmeasure, NR_Intra and Tevaluate, NR_Intra

[0534] In Table 3 above: Note 1: Applicable for user equipment (UE) supporting FR2-1 power class 2, 3 and 4. For UE supporting FR2-1 power class 1 or 5, the value of N1 is 8 regardless of the discontinuous reception (DRX) cycle length.

[0535] Note 2: Applicable for UE supporting FR2-2 power class 2 and 3. For UE supporting FR2-2 power class 1, the value of N1 is 12 regardless of the DRX cycle length.

[0536] Note 3: If the system message tracking area code (SMTC) period of the measured intra-frequency cell is greater than 20 ms, then M2 = 1.5; otherwise M2 = 1. If different SMTC periods are configured for different cells, the SMTC period in this note refers to the period used by the cell being identified. During primary synchronization signal (PSS) / secondary synchronization signal (SSS) detection, the SMTC period configured for the intra-frequency carrier is assumed to be used, and if the actual synchronization signal block (SSB) transmission period is greater than the SMTC period configured for the intra-frequency carrier, then Tdetect,NR_intra is expected to be longer.

[0537] Note 4: Ke is the measurement relaxation factor applicable for UEs meeting the low power wake-up receiver (LP-WUR) relaxation criteria.

[0538] In some embodiments, for Case 2, under the third measurement behavior, the second receiver performs relaxed measurement on the serving cell, and the measurement relaxation factor for performing the relaxed measurement is Ka. See Table 1.

[0539] In some embodiments, for case 2, under the third measurement behavior, the second receiver performs relaxed measurement on the neighbor cell, and the measurement relaxed coefficient for performing the relaxed measurement is Kd. See Table 2.

[0540] In some embodiments, for case 2 or case 3, under the second measurement behavior, the second receiver performs relaxed measurement on the serving cell, and the measurement relaxed coefficient for performing the relaxed measurement is Kb. See Table 4.

[0541] In some embodiments, for case 2 or case 3, under the first measurement behavior, the second receiver does not perform measurement on the neighbor cell, and only performs relaxed measurement on the high priority cell with relaxed coefficient Ke, and the measurement behavior is the fourth measurement behavior. Optionally, the size of Ke and Kf is not specifically limited. See Table 5.

[0542] In step S206, when the second receiver is in the relaxed state, the second receiver exits the relaxed state according to the measurement result of the terminal and the measurement result threshold. In some embodiments, when the second receiver is in the relaxed state, the second receiver determines to exit the relaxed state according to the measurement result of the terminal and the measurement result threshold.

[0543] In some embodiments, the relaxed state includes at least one of a state in which the second receiver performs relaxed measurement on a serving cell of the terminal, a state in which the second receiver performs relaxed measurement on a neighbor cell of the terminal, and a state in which the second receiver performs relaxed measurement on a high priority cell of the terminal.

[0544] In the above embodiments, if the second receiver is in the relaxed state, it can be determined whether the second receiver exits the relaxed state based on the measurement result of the terminal and the measurement result threshold, and the flexible switching between the normal state and the relaxed state of the terminal is achieved.

[0545] In some embodiments, the second receiver exiting the relaxed state can be based on a step-wise exit based on a scenario or a measurement behavior, or a non-step-wise exit.

[0546] In some embodiments, the second receiver exiting the relaxed state based on the measurement result of the terminal and the measurement result threshold comprises: the second receiver exiting the relaxed state based on the reception signal modulation mode of the first receiver, the reception signal modulation mode of the second receiver, the measurement result and the measurement result threshold.

[0547] In some embodiments, the second receiver exiting the relaxed state based on the reception signal modulation mode of the first receiver, the reception signal modulation mode of the second receiver, the measurement result and the measurement result threshold comprises:

[0548] When the reception signal modulation mode of the first receiver and the reception signal modulation mode of the second receiver are different, the following operations are performed:

[0549] When the serving cell measurement result of the first receiver is less than the fourth measurement relaxed threshold of the first receiver, and there is a high priority cell, the second receiver exits the relaxed measurement of the high priority cell of the terminal;

[0550] When the serving cell measurement result of the second receiver is less than the second measurement relaxed threshold of the second receiver, the second receiver exits the relaxed measurement of the serving cell of the terminal;

[0551] When the serving cell measurement result of the second receiver is less than the first measurement relaxed threshold of the second receiver, the second receiver exits the relaxed measurement of the neighbor cell of the terminal.

[0552] Optionally, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver. Optionally, the measurement result of the second receiver comprises a serving cell measurement result of the second receiver. Optionally, the measurement result threshold comprises: a first measurement relaxed threshold of the second receiver, a second measurement relaxed threshold of the second receiver, and a fourth measurement relaxed threshold of the first receiver. Optionally, the fourth measurement relaxed threshold of the first receiver is less than the second measurement relaxed threshold of the second receiver.

[0553] In some embodiments, the second receiver exiting the relaxed state based on the measurement result of the terminal and the measurement result threshold comprises: when the measurement result of the first receiver and the measurement result of the second receiver are not comparable or when the reception signal modulation mode of the first receiver and the reception signal modulation mode of the second receiver are different:

[0554] determining the second receiver to exit the relaxed state under the first measurement behavior when the measurement result of the first receiver is less than a fourth measurement relaxed threshold of the first receiver;

[0555] determining the second receiver to exit the relaxed state under the second measurement behavior when the measurement result of the second receiver is less than a second measurement relaxed threshold of the second receiver;

[0556] determining the second receiver to exit the relaxed state under the third measurement behavior when the measurement result of the second receiver is less than a first measurement relaxed threshold of the second receiver;

[0557] wherein the fourth measurement relaxed threshold of the first receiver is less than the second measurement relaxed threshold of the second receiver.

[0558] In some embodiments, for case 1, the relaxed state is exited according to the serving cell measurement result of the LR. Optionally, if the relaxed state is exited "step by step" or "step by step", i.e. case#1--->case#2--->case#3: when the serving cell measurement result of the LR is < LR Threshold4, it is determined that the second receiver exits case#1; when the serving cell measurement result of the MR is < MR Threshold2, it is determined that the second receiver exits case#2; when the serving cell measurement result of the MR is < MR Threshold1, it is determined that the second receiver exits case#3.

[0559] In the above embodiments, when the measurement result of the first receiver and the measurement result of the second receiver are not comparable or when the receiving signal modulation mode of the first receiver and the receiving signal modulation mode of the second receiver are different, the relaxed state is exited step by step according to the serving cell measurement result of the first receiver and the serving cell measurement result of the second receiver, so that flexible switching between the normal state and the relaxed state of the terminal is realized.

[0560] In some embodiments, the second receiver exits the relaxed state according to the receiving signal modulation mode of the first receiver, the receiving signal modulation mode of the second receiver, the measurement result and the measurement result threshold, including:

[0561] when the receiving signal modulation mode of the first receiver and the receiving signal modulation mode of the second receiver are different, the following operations are performed:

[0562] when the serving cell measurement result of the first receiver is less than the fourth measurement relaxation threshold of the first receiver, and there is a high priority cell, exiting, by the second receiver, the relaxed measurement of the high priority cell of the terminal;

[0563] when the serving cell measurement result of the first receiver is less than the fourth measurement relaxation threshold of the first receiver, and when the serving cell measurement result of the first receiver is less than the fifth measurement relaxation threshold of the first receiver, exiting, by the second receiver, the relaxed measurement of the serving cell of the terminal;

[0564] when the serving cell measurement result of the first receiver is less than the fourth measurement relaxation threshold of the first receiver, and when the serving cell measurement result of the first receiver is less than the sixth measurement relaxation threshold of the first receiver, exiting, by the second receiver, the relaxed measurement of the neighbor cell of the terminal.

[0565] Optionally, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver. Optionally, the measurement result threshold comprises a fourth measurement relaxation threshold of the first receiver, a fifth measurement relaxation threshold of the first receiver, a sixth measurement relaxation threshold of the first receiver, and a neighbor cell measurement relaxation threshold of the terminal. Optionally, the fourth measurement relaxation threshold of the first receiver is greater than the fifth measurement relaxation threshold of the first receiver, and the fifth measurement relaxation threshold of the first receiver is greater than the sixth measurement relaxation threshold of the first receiver.

[0566] In some embodiments, determining, according to the measurement result of the terminal and the measurement result threshold, that the second receiver exits the relaxed state comprises, when the measurement result of the first receiver and the measurement result of the second receiver are not comparable or when the receiving signal modulation mode of the first receiver and the receiving signal modulation mode of the second receiver are different, performing the following operations:

[0567] when the measurement result of the first receiver is less than the fourth measurement relaxation threshold of the first receiver, determining that the second receiver exits the relaxed state under a first measurement behavior;

[0568] when the measurement result of the first receiver is less than the fourth measurement relaxation threshold of the first receiver, and when the measurement result of the first receiver is less than the fifth measurement relaxation threshold of the first receiver, determining that the second receiver exits the relaxed state under a second measurement behavior;

[0569] determining that the second receiver exits the relaxed state under the third measurement behavior when the measurement result of the first receiver is less than a fourth measurement relaxed threshold of the first receiver, and when the measurement result of the first receiver is less than a sixth measurement relaxed threshold of the first receiver;

[0570] wherein the fourth measurement relaxed threshold of the first receiver is greater than a fifth measurement relaxed threshold of the first receiver, and the fifth measurement relaxed threshold of the first receiver is greater than a sixth measurement relaxed threshold of the first receiver.

[0571] In some embodiments, for case 1, the relaxed state is exited according to the serving cell measurement result of the LR. Optionally, if the relaxed state is not exited step by step, the network device needs to set different thresholds for the measurement result of the LR: the fourth measurement relaxed threshold of the first receiver, the fifth measurement relaxed threshold of the first receiver: case #1--->case #2; the fourth measurement relaxed threshold of the first receiver, the sixth measurement relaxed threshold of the first receiver: case #1--->case #3; the fourth measurement relaxed threshold of the first receiver: case #1--->measurement is performed completely by the MR. Optionally, when the serving cell measurement result of the first receiver is < LR Threshold4, it is determined that the second receiver exits case #1 and measurement is performed completely by the MR; when the serving cell measurement result of the first receiver is < LR Threshold4 and the serving cell measurement result of the first receiver is < LR Threshold5, it is determined that the second receiver exits case #2; when the serving cell measurement result of the first receiver is < LR Threshold4 and the serving cell measurement result of the first receiver is < LR Threshold6, it is determined that the second receiver exits case #3.

[0572] In the above embodiments, when the measurement result of the first receiver and the measurement result of the second receiver are not comparable or when the receiving signal modulation mode of the first receiver and the receiving signal modulation mode of the second receiver are different, the relaxed state is exited non-step by step according to the serving cell measurement result of the first receiver and the serving cell measurement result of the second receiver, so that flexible switching of the terminal between the normal state and the relaxed state is realized.

[0573] In some embodiments, the relaxed state is exited by the second receiver according to the receiving signal modulation mode of the first receiver, the receiving signal modulation mode of the second receiver, the measurement result and the measurement result threshold, including:

[0574] when the receiving signal modulation mode of the first receiver and the receiving signal modulation mode of the second receiver are the same, the following operations are performed:

[0575] when the measurement result of the first receiver is less than a third measurement relaxation threshold of the first receiver and there is a high priority cell, exiting, by the second receiver, the relaxed measurement of the high priority cell of the terminal;

[0576] when the measurement result of the first receiver is less than a second measurement relaxation threshold of the first receiver, exiting, by the second receiver, the relaxed measurement of the serving cell of the terminal;

[0577] when the measurement result of the first receiver is less than a first measurement relaxation threshold of the first receiver, exiting, by the second receiver, the relaxed measurement of the neighbor cell of the terminal.

[0578] Optionally, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver. Optionally, the measurement result threshold comprises: a first measurement relaxation threshold of the first receiver, a second measurement relaxation threshold of the first receiver, and a third measurement relaxation threshold of the first receiver. Optionally, the first measurement relaxation threshold of the first receiver is less than the second measurement relaxation threshold of the first receiver, and the second measurement relaxation threshold of the first receiver is less than the third measurement relaxation threshold of the first receiver.

[0579] In some embodiments, determining, according to the measurement result of the terminal and the measurement result threshold, the second receiver to exit the relaxed state comprises: when the measurement result of the first receiver and the measurement result of the second receiver are comparable or when the receiving signal modulation mode of the first receiver and the receiving signal modulation mode of the second receiver are the same, performing the following operations:

[0580] when the measurement result of the first receiver is less than the third measurement relaxation threshold of the first receiver, determining the second receiver to exit the relaxed state under a first measurement behavior;

[0581] when the measurement result of the first receiver is less than the second measurement relaxation threshold of the first receiver, determining the second receiver to exit the relaxed state under a second measurement behavior;

[0582] when the measurement result of the first receiver is less than the first measurement relaxation threshold of the first receiver, determining the second receiver to exit the relaxed state under a third measurement behavior.

[0583] In some embodiments, for case 2, the service cell measurement result of the LR is used to determine the exit of the relaxed state. Optionally, if the exit of the relaxed state is "step by step" or "step by step" (case #1--->case#2--->case#3), when the service cell measurement result of the LR is < LR Threshold3, it is determined that the second receiver exits case #1; when the service cell measurement result of the LR is < LR Threshold2, it is determined that the second receiver exits case #2; when the service cell measurement result of the LR is < MR Threshold1, it is determined that the second receiver exits case #3.

[0584] In the above embodiments, when the measurement result of the first receiver and the measurement result of the second receiver are comparable or when the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same, the exit of the relaxed state is determined according to the service cell measurement result of the first receiver, which realizes the flexible switching of the terminal between the normal state and the relaxed state.

[0585] In some embodiments, the exit of the relaxed state by the second receiver is determined according to the modulation mode of the received signal of the first receiver, the modulation mode of the received signal of the second receiver, the measurement result, and the measurement result threshold, including:

[0586] When the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same, the following operations are performed:

[0587] When the service cell measurement result of the first receiver is less than the third measurement relaxed threshold of the first receiver, and there is a high priority cell, the relaxed measurement of the high priority cell of the terminal by the second receiver is exited;

[0588] When the service cell measurement result of the first receiver is less than the third measurement relaxed threshold of the first receiver, and when the service cell measurement result of the first receiver is less than the second measurement relaxed threshold of the first receiver, the relaxed measurement of the service cell of the terminal by the second receiver is performed;

[0589] When the service cell measurement result of the first receiver is less than the third measurement relaxed threshold of the first receiver, and when the service cell measurement result of the first receiver is less than the first measurement relaxed threshold of the first receiver, the relaxed measurement of the neighbor cell of the terminal by the second receiver is performed.

[0590] Optionally, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver. Optionally, the measurement result threshold comprises: a first measurement relaxation threshold of the first receiver, a second measurement relaxation threshold of the first receiver, and a third measurement relaxation threshold of the first receiver. Optionally, the first measurement relaxation threshold of the first receiver is less than the second measurement relaxation threshold of the first receiver, and the second measurement relaxation threshold of the first receiver is less than the third measurement relaxation threshold of the first receiver.

[0591] In some embodiments, determining the second receiver to exit the relaxed state according to the measurement result of the terminal and the measurement result threshold comprises performing the following operations when the measurement result of the first receiver and the measurement result of the second receiver are comparable or when the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same:

[0592] determining the second receiver to exit the relaxed state under a first measurement behavior when the measurement result of the first receiver is less than the third measurement relaxation threshold of the first receiver;

[0593] determining the second receiver to exit the relaxed state under a second measurement behavior when the measurement result of the first receiver is less than the third measurement relaxation threshold of the first receiver and when the measurement result of the first receiver is less than the second measurement relaxation threshold of the first receiver;

[0594] determining the second receiver to exit the relaxed state under a third measurement behavior when the measurement result of the first receiver is less than the third measurement relaxation threshold of the first receiver and when the measurement result of the first receiver is less than the first measurement relaxation threshold of the first receiver.

[0595] In some embodiments, for case 2, the service cell measurement result of the LR is used to determine the exit of the relaxed state. Optionally, if the relaxed state exit is not step by step, the network device needs to set different thresholds for the measurement result of the LR: the third measurement relaxed threshold of the first receiver, the second relaxed measurement of the first receiver: case #1--->case #2; the third measurement relaxed threshold of the first receiver, the first measurement relaxed threshold of the first receiver: case #1--->case #3; the third measurement relaxed threshold of the first receiver: case #1--->the measurement is completely performed by the MR. Optionally, when the service cell measurement result of the first receiver is < LR Threshold3, it is determined that the second receiver exits case #1 and the measurement is completely performed by the MR; when the service cell measurement result of the first receiver is < LR Threshold3 and the service cell measurement result of the first receiver is < LR Threshold2, it is determined that the second receiver exits case #2; when the service cell measurement result of the first receiver is < LR Threshold3 and the service cell measurement result of the first receiver is < LR Threshold1, it is determined that the second receiver exits case #3.

[0596] In the above embodiments, when the measurement result of the first receiver and the measurement result of the second receiver are comparable or when the reception signal modulation mode of the first receiver and the reception signal modulation mode of the second receiver are the same, the service cell measurement result of the first receiver is used to determine the non-step-by-step exit of the relaxed state, and the flexible switching of the terminal between the normal state and the relaxed state is realized.

[0597] In some embodiments, the exit of the relaxed state by the second receiver is performed according to the reception signal modulation mode of the first receiver, the reception signal modulation mode of the second receiver, the measurement result, and the measurement result threshold, including:

[0598] When the reception signal modulation mode of the first receiver and the reception signal modulation mode of the second receiver are the same, the following operations are performed:

[0599] When at least one of the following conditions is not met, and there is a high-priority cell, the operation of the second receiver for exiting the relaxed measurement of the high-priority cell of the terminal is performed:

[0600] The service cell measurement result of the first receiver is greater than or equal to the third measurement relaxed threshold of the first receiver;

[0601] The service cell measurement result of the second receiver is greater than or equal to a first deviation value;

[0602] a serving cell measurement result of the second receiver is greater than or equal to a third measurement relaxation threshold of the second receiver;

[0603] a serving cell measurement result of the first receiver is greater than or equal to a second bias value;

[0604] wherein the first bias value is a sum of the third measurement relaxation threshold of the first receiver and a first offset, and the second bias value is a difference between the third measurement relaxation threshold of the second receiver and the second offset.

[0605] In some embodiments, the exiting, by the second receiver, from the relaxed state according to the reception signal modulation mode of the first receiver, the reception signal modulation mode of the second receiver, the measurement result and the measurement result threshold, comprises:

[0606] when the reception signal modulation mode of the first receiver and the reception signal modulation mode of the second receiver are the same, performing the following operation:

[0607] when at least one of the following is not satisfied, performing, by the second receiver, an operation of exiting the relaxed measurement of the serving cell of the terminal:

[0608] a serving cell measurement result of the first receiver is greater than or equal to a second measurement relaxation threshold of the first receiver;

[0609] a serving cell measurement result of the second receiver is greater than or equal to a third bias value;

[0610] a serving cell measurement result of the second receiver is greater than or equal to a second measurement relaxation threshold of the second receiver;

[0611] a serving cell measurement result of the first receiver is greater than or equal to a fourth bias value;

[0612] wherein the third bias value is a sum of the second measurement relaxation threshold of the first receiver and a third offset, and the fourth bias value is a difference between the second measurement relaxation threshold of the second receiver and the fourth offset.

[0613] In some embodiments, the exiting, by the second receiver, from the relaxed state according to the reception signal modulation mode of the first receiver, the reception signal modulation mode of the second receiver, the measurement result and the measurement result threshold, comprises:

[0614] when the reception signal modulation mode of the first receiver and the reception signal modulation mode of the second receiver are the same, performing the following operation:

[0615] The operation of exiting the relaxed measurement of the neighbor cell of the terminal by the second receiver is performed when at least one of the following conditions is not met:

[0616] The serving cell measurement result of the first receiver is greater than or equal to a first measurement relaxation threshold of the first receiver;

[0617] The serving cell measurement result of the second receiver is greater than or equal to a fifth offset value;

[0618] The serving cell measurement result of the second receiver is greater than or equal to a first measurement relaxation threshold of the second receiver;

[0619] The serving cell measurement result of the first receiver is greater than or equal to a sixth offset value;

[0620] The fifth offset value is a sum of the first measurement relaxation threshold of the first receiver and the fifth offset value, and the sixth offset value is a difference between the first measurement relaxation threshold of the second receiver and the sixth offset value.

[0621] Optionally, the measurement result of the first receiver includes the serving cell measurement result of the first receiver. Optionally, the measurement result of the second receiver includes the serving cell measurement result of the second receiver. Optionally, the measurement result threshold includes a first measurement relaxation threshold of the second receiver, a second measurement relaxation threshold of the second receiver, a third measurement relaxation threshold of the second receiver, and a neighbor cell measurement relaxation threshold of the terminal; or the measurement result threshold includes a first measurement relaxation threshold of the first receiver, a second measurement relaxation threshold of the first receiver, a third measurement relaxation threshold of the first receiver, and a neighbor cell measurement relaxation threshold of the terminal.

[0622] In some embodiments, determining that the second receiver exits the relaxed state according to the measurement result of the terminal and the measurement result threshold includes performing the following operation when the measurement result of the first receiver and the measurement result of the second receiver are comparable or when a receiving signal modulation mode of the first receiver and a receiving signal modulation mode of the second receiver are the same:

[0623] Determining that the second receiver exits the relaxed state under the first measurement behavior when a second condition is not met;

[0624] Determining that the second receiver exits the relaxed state under the second measurement behavior when a third condition is not met;

[0625] Determining that the second receiver exits the relaxed state under the third measurement behavior when a fourth condition is not met.

[0626] In some embodiments, for case 3, the UE determines to exit the relaxed state based on the UE implementation. Optionally, the UE does not meet the entering condition, i.e., exits the corresponding relaxed state: when the UE does not meet the second condition described above, the second receiver is determined to exit case #1; when the UE does not meet the third condition described above, the second receiver is determined to exit case #2; when the UE does not meet the fourth condition described above, the second receiver is determined to exit case #3.

[0627] In the above embodiments, when the measurement result of the first receiver and the measurement result of the second receiver are comparable or when the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same, the UE does not meet the entering condition, i.e., exits the corresponding relaxed state, and the flexible switching of the terminal between the normal state and the relaxed state is achieved.

[0628] The communication method related to the embodiments of the present disclosure can include at least one of steps S201-S206. For example, step S201 can be implemented as an independent embodiment, step S202 can be implemented as an independent embodiment, step S203 can be implemented as an independent embodiment, step S204 can be implemented as an independent embodiment, step S205 can be implemented as an independent embodiment, step S206 can be implemented as an independent embodiment, steps S202+S203+S204 can be implemented as an independent embodiment, steps S204+S205+S206 can be implemented as an independent embodiment, but not limited thereto.

[0629] In some embodiments, steps S202 and S203 can be exchanged in order or executed simultaneously, and steps S20 and S203 can be exchanged in order or executed simultaneously.

[0630] In some embodiments, steps S201, S202, and S203 are optional, and one or more of these steps can be omitted or replaced in different embodiments.

[0631] In some embodiments, steps S205 and S206 are optional, and one or more of these steps can be omitted or replaced in different embodiments.

[0632] In some embodiments, other optional implementations described before or after the description corresponding to FIG. 2 can be referred to.

[0633] FIG. 3A is an exemplary flow diagram of a communication method according to an embodiment of the present disclosure. As shown in FIG. 3A, the embodiments of the present disclosure relate to a communication method (executed by a terminal), and the above method includes:

[0634] Step S3101: obtaining a measurement result.

[0635] The optional implementation of step S3101 can refer to the optional implementation of step S203 in FIG. 2 and other associated parts in the embodiments related to FIG. 2, which will not be repeated here.

[0636] In step S3102, the measurement result threshold is obtained.

[0637] In some embodiments, the terminal obtains the measurement result threshold according to the protocol.

[0638] In some embodiments, the terminal receives the measurement result threshold sent by the network device.

[0639] In some embodiments, the network device 102 determines the measurement result threshold, and the network device 102 sends the measurement result threshold to the terminal 101. Optionally, the implementation of the network device 102 determining the measurement result threshold can refer to the optional implementation of step S201 in FIG. 2 and other associated parts in the embodiments related to FIG. 2, which will not be repeated here. Optionally, the implementation of the network device 102 sending the measurement result threshold to the terminal 101 can refer to the optional implementation of step S202 in FIG. 2 and other associated parts in the embodiments related to FIG. 2, which will not be repeated here.

[0640] In step S3103, the measurement is performed according to the measurement result of the terminal and the measurement result threshold.

[0641] In some embodiments, the measurement behavior of the terminal is determined according to the measurement result of the terminal and the measurement result threshold.

[0642] The optional implementation of step S3103 can refer to the optional implementation of step S204 in FIG. 2 and other associated parts in the embodiments related to FIG. 2, which will not be repeated here.

[0643] In step S3104, the measurement is performed and / or the relaxed measurement with different measurement relaxation coefficients is performed under different measurement behaviors.

[0644] The optional implementation of step S3104 can refer to the optional implementation of step S205 in FIG. 2 and other associated parts in the embodiments related to FIG. 2, which will not be repeated here.

[0645] In step S3105, the second receiver exits the relaxed state according to the measurement result of the terminal and the measurement result threshold when the second receiver is in the relaxed state.

[0646] The optional implementation of step S3105 can refer to the optional implementation of step S206 in FIG. 2 and other associated parts in the embodiments related to FIG. 2, which will not be repeated here.

[0647] The communication method related to the embodiments of the present disclosure can include at least one of steps S3101-S3105. For example, step S3101 can be implemented as an independent embodiment, step S3102 can be implemented as an independent embodiment, step S3103 can be implemented as an independent embodiment, step S3104 can be implemented as an independent embodiment, step S3105 can be implemented as an independent embodiment, steps S3101+S3102+S3103 can be implemented as an independent embodiment, steps S3101+S3102+S3103+S3104 can be implemented as an independent embodiment, steps S3103+S3104 can be implemented as an independent embodiment, but the present disclosure is not limited thereto.

[0648] In some embodiments, steps S3101 and S3102 can be exchanged in order or performed simultaneously.

[0649] In some embodiments, steps S3104 and S3105 are optional, and one or more of the steps can be omitted or replaced in different embodiments.

[0650] FIG. 3B is an exemplary flow diagram of a communication method according to an embodiment of the present disclosure. As shown in FIG. 3B, the embodiments of the present disclosure relate to a communication method (performed by a terminal), which includes the following steps:

[0651] In step S3201, a measurement result is obtained.

[0652] Optional implementation of step S3201 can refer to optional implementation of step S203 of FIG. 2, optional implementation of step S3101 of FIG. 3A, and other associated parts in the embodiments related to FIG. 2 and FIG. 3, which will not be repeated here.

[0653] In step S3202, a measurement result threshold is obtained.

[0654] Optional implementation of step S3202 can refer to optional implementation of steps S201-S202 of FIG. 2, optional implementation of step S3102 of FIG. 3A, and other associated parts in the embodiments related to FIG. 2 and FIG. 3A, which will not be repeated here.

[0655] In step S3203, a measurement is performed according to the measurement result of the terminal and the measurement result threshold.

[0656] In some embodiments, a measurement behavior of the terminal is determined according to the measurement result of the terminal and the measurement result threshold.

[0657] The optional implementation of step S3203 can refer to the optional implementation of step S204 in FIG. 2, the optional implementation of step S3103 in FIG. 3A, and other associated parts in the embodiments related to FIG. 2 and FIG. 3A, which are not described herein again.

[0658] The communication method related to the embodiments of the present disclosure can include at least one of steps S3201-S3203. For example, steps S3201+S3203 can be implemented as independent embodiments, but are not limited thereto.

[0659] In some embodiments, step S3202 is optional, and one or more of the steps can be omitted or replaced in different embodiments.

[0660] In some embodiments, S3201 and S3202 can exchange order or be executed simultaneously.

[0661] FIG. 3C is an exemplary flow diagram of a communication method according to an embodiment of the present disclosure. As shown in FIG. 3C, the embodiments of the present disclosure relate to a communication method (executed by a terminal), in particular to a sensing capability usage stage, and the above method includes:

[0662] Step S3301, determining a measurement behavior of the terminal according to a measurement result of the terminal and a measurement result threshold.

[0663] In some embodiments, the measurement behavior of the terminal is determined according to the measurement result of the terminal and the measurement result threshold.

[0664] The optional implementation of step S3301 can refer to the optional implementation of step S204 in FIG. 2, the optional implementation of step S3103 in FIG. 3A, the optional implementation of step S3203 in FIG. 3B, and other associated parts in the embodiments related to FIG. 2, FIG. 3A and FIG. 3B, which are not described herein again.

[0665] FIG. 4A is an exemplary flow diagram of a communication method according to an embodiment of the present disclosure. As shown in FIG. 4A, the embodiments of the present disclosure relate to a communication method (executed by a network device), and the above method includes:

[0666] Step S4101, configuring a measurement result threshold.

[0667] The optional implementation of step S4101 can refer to the optional implementation of step S201 in FIG. 2, and other associated parts in the embodiments related to FIG. 2, which are not described herein again.

[0668] In some embodiments, step S4101 can be omitted, and the measurement result threshold can be specified by a protocol.

[0669] Step S4102. Transmit the measurement result threshold.

[0670] In some embodiments, the network device transmits the measurement result threshold to the terminal.

[0671] Optional implementation of step S4102 can be found in the optional implementation of step S202 of FIG. 2 and other associated parts in the embodiments related to FIG. 2, which will not be repeated here.

[0672] In some embodiments, step S4101 can be omitted, and the terminal can autonomously implement the function of determining the measurement behavior based on the measurement result and the measurement result threshold specified by the protocol, or the above function is default.

[0673] In the above embodiments, the network device transmits the measurement result threshold to the terminal, so that the terminal can determine the measurement behavior according to the measurement result of the terminal and the measurement result threshold, to ensure the measurement performance. Since the power consumption of the first receiver is lower than that of the second receiver, the first receiver can be used to perform all or part of the measurement of the second receiver, thereby realizing power saving of the terminal.

[0674] Step S4103. Configure the offset.

[0675] Optional implementation of step S4103 can be found in the optional implementation of step S204 of FIG. 2 and other associated parts in the embodiments related to FIG. 2, which will not be repeated here.

[0676] In some embodiments, step S4103 can be omitted, and the offset can be specified by the protocol.

[0677] Step S4104. Transmit the offset.

[0678] In some embodiments, the network device transmits the offset to the terminal.

[0679] Optional implementation of step S4104 can be found in the optional implementation of step S204 of FIG. 2 and other associated parts in the embodiments related to FIG. 2, which will not be repeated here.

[0680] In some embodiments, step S4104 can be omitted, and the terminal can autonomously implement the function of determining the measurement behavior based on the measurement result and the measurement result threshold specified by the protocol, or the above function is default.

[0681] Step S4105. Configure the measurement relaxation coefficient.

[0682] Optional implementation of step S4105 can be found in the optional implementation of step S205 of FIG. 2 and other associated parts in the embodiments related to FIG. 2, which will not be repeated here.

[0683] In some embodiments, step S4105 can be omitted, and the measurement relaxation coefficient can be specified by a protocol.

[0684] Step S4106: transmitting the measurement relaxation coefficient.

[0685] In some embodiments, the network device transmits the measurement relaxation coefficient to the terminal.

[0686] Optional implementation of step S4106 can refer to optional implementation of step S205 of FIG. 2 and other associated parts in the embodiments related to FIG. 2, which will not be described here again.

[0687] In some embodiments, step S4106 can be omitted, and the measurement relaxation coefficient can be specified by a protocol.

[0688] The communication method related to the embodiments of the present disclosure can include at least one of steps S4101-S4106. For example, step S4102 can be implemented as an independent embodiment, steps 4101+4102 can be implemented as an independent embodiment, steps 4103+4104 can be implemented as an independent embodiment, steps 4105+4106 can be implemented as an independent embodiment, but are not limited thereto.

[0689] In some embodiments, step S4102 is optional, and one or more of the steps can be omitted or replaced in different embodiments.

[0690] In some embodiments, S4101, S4103, S4105 can exchange order or be executed simultaneously.

[0691] In some embodiments, S4102, S4104, S4106 can exchange order or be executed simultaneously.

[0692] FIG. 4B is an exemplary flow diagram of a communication method according to embodiments of the present disclosure. As shown in FIG. 4B, the embodiments of the present disclosure relate to a communication method (performed by a network device), and the above method includes:

[0693] Step S4201: configuring a measurement result threshold.

[0694] Optional implementation of step S4201 can refer to optional implementation of step S201 of FIG. 2, optional implementation of step S4101 of FIG. 4A, and other associated parts in the embodiments related to FIG. 2 and FIG. 4A, which will not be described here again.

[0695] In some embodiments, step S4201 can be omitted, and the measurement result threshold can be specified by a protocol.

[0696] Step S4202: sending the measurement result threshold.

[0697] In some embodiments, the network device sends the measurement result threshold to the terminal.

[0698] The optional implementation of step S4202 can refer to the optional implementation of step S202 of FIG. 2, the optional implementation of step S4102 of FIG. 4A, and other associated parts in the embodiments involved in FIG. 2 and FIG. 4A, which are not described herein again.

[0699] In some embodiments, step S4102 can be omitted, and the terminal can autonomously implement the function of determining the measurement behavior based on the measurement result and the measurement result threshold specified by the protocol, or the above function is default.

[0700] Step S4203: configuring the measurement relaxation coefficient.

[0701] The optional implementation of step S4203 can refer to the optional implementation of step S205 of FIG. 2, the optional implementation of step S4105 of FIG. 4A, and other associated parts in the embodiments involved in FIG. 2 and FIG. 4A, which are not described herein again.

[0702] In some embodiments, step S4203 can be omitted, and the measurement relaxation coefficient can be specified by the protocol.

[0703] Step S4204: sending the measurement relaxation coefficient.

[0704] In some embodiments, the network device sends the measurement relaxation coefficient to the terminal.

[0705] The optional implementation of step S4204 can refer to the optional implementation of step S205 of FIG. 2, the optional implementation of step S4106 of FIG. 4A, and other associated parts in the embodiments involved in FIG. 2 and FIG. 4A, which are not described herein again.

[0706] In some embodiments, step S4204 can be omitted, and the measurement relaxation coefficient can be specified by the protocol.

[0707] The communication method involved in the embodiments of the present disclosure can include at least one of steps S4201 to S4104. For example, step S4202 can be implemented as an independent embodiment, steps 4201+4202 can be implemented as an independent embodiment, steps 4203+4204 can be implemented as an independent embodiment, but not limited thereto.

[0708] In some embodiments, step S4202 is optional, and one or more of the steps can be omitted or replaced in different embodiments.

[0709] In some embodiments, S4201 and S4203 can exchange order or be performed at the same time.

[0710] In some embodiments, S4202 and S4204 can exchange order or be performed at the same time.

[0711] FIG. 4C is an exemplary flow diagram of a communication method according to embodiments of the present disclosure. As shown in FIG. 4C, embodiments of the present disclosure relate to a communication method (performed by a network device), in particular to a sensing capability usage phase, and the above method comprises the following steps:

[0712] In step S4301, a measurement result threshold is sent.

[0713] Optional implementation of step S4301 can refer to optional implementation of step S202 of FIG. 2, optional implementation of step S4102 of FIG. 4A, optional implementation of step S4202 of FIG. 4B, and other associated parts in embodiments related to FIG. 2, FIG. 4A, FIG. 4B, which will not be repeated here.

[0714] FIG. 5 is an exemplary interaction diagram of a communication method according to embodiments of the present disclosure. As shown in FIG. 5, embodiments of the present disclosure relate to a communication method (core network device side), and the core network device comprises a first network element and a second network element, in particular to a sensing capability registration and update phase, and the above method comprises the following steps:

[0715] In step S5101, the network device sends a measurement result threshold to the terminal.

[0716] Optional implementation of step S5101 can refer to optional implementation of step S202 of FIG. 2, optional implementation of step S4102 of FIG. 4A, optional implementation of step S4202 of FIG. 4B, optional implementation of step S4302 of FIG. 4C, and other associated parts in embodiments related to FIG. 2, FIG. 4A, FIG. 4B, FIG. 4C, which will not be repeated here.

[0717] In step S5102, the terminal performs measurement according to the measurement result and the measurement result threshold.

[0718] In some embodiments, the measurement behavior of the terminal is determined according to the measurement result of the terminal and the measurement result threshold.

[0719] Optional implementation of step S5102 can refer to optional implementation of step S204 of FIG. 2, optional implementation of step S3103 of FIG. 3A, optional implementation of step S3203 of FIG. 3B, optional implementation of step S3301 of FIG. 3C, and other associated parts in embodiments related to FIG. 2, FIG. 3A, FIG. 3B, FIG. 3C, which will not be repeated here.

[0720] FIG. 6 is a schematic diagram of one exemplary scenario of a communication method according to an embodiment of the present disclosure. As shown in FIG. 6, the present disclosure relates to a communication method, and the method comprises:

[0721] I. LR measurement results are not comparable to host received MR measurement results (e.g. OOK based LR)

[0722] 1. Enter relaxed state based on serving cell measurement results of the master receiver (MR), and determine whether to start MR neighbor cell measurement based on the serving cell measurement results of the MR

[0723] case#3, measurement relaxed threshold MR Threshold1, UE determines that the serving cell measurement results of the MR are greater than or equal to MR Threshold1.

[0724] LR: perform measurement on the serving cell;

[0725] MR:

[0726] Serving cell: the MR performs relaxed measurement on the serving cell, and the measurement relaxed coefficient is Ka. Embodiment: refer to Table 1

[0727] Neighbor cell: compare the serving cell measurement results of the MR with the neighbor cell measurement relaxed threshold Threshold_legacy, determine whether to perform relaxed measurement on the neighbor cell, and the measurement relaxed coefficient is Kd, Kd≥Ka; generally, it is considered that the threshold Threshold1 configured by the network is greater than or equal to Threshold_legacy, that is, in this case, the MR must perform relaxed measurement on the neighbor cell. Embodiment: refer to Table 2.

[0728] In particular, if a high priority cell is configured, the high priority measurement relaxed coefficient is Kf. Optionally, relaxed measurement on the high priority cell is performed. Embodiment: refer to Table 3.

[0729] When the low power wake-up receiver (LP-WUR) relaxed standard is met, the user equipment (UE) should search for a higher priority inter-frequency layer at least once every Kf*Thigher_priority_search time interval.

[0730] case#2, measurement relaxed threshold MR Threshold2, UE determines that the serving cell measurement results of the MR are greater than or equal to MR Threshold2.

[0731] LR: perform measurement on the serving cell;

[0732] MR:

[0733] Serving cell: the MR performs relaxed measurement on the serving cell, and the measurement relaxed coefficient is Kb, Ka≤Kb. Embodiment: refer to Table 4.

[0734] Neighbor cell: MR does not perform measurement on neighbor cell.

[0735] case#1, measurement relaxation threshold MR Threshold3, UE judges MR serving cell measurement result ≥ MR Threshold3.

[0736] LR: performs measurement on serving cell;

[0737] MR:

[0738] Serving cell: MR does not perform relaxed measurement on serving cell

[0739] Neighbor cell: MR does not perform measurement on neighbor cell

[0740] In particular, if a high priority cell is configured, only relaxed measurement on the high priority cell is performed, and the relaxation coefficient is Ke, Ke≥Kd. Embodiment: see Table 5.

[0741] 2. Exit relaxation state according to serving cell measurement result of LR

[0742] If the relaxation state exit is step by step, i.e. case#1--->case#2--->case#3:

[0743] Exit of case#1 is judged based on serving cell measurement result of LR, and exit of case#2 and case#3 is judged based on subsequent comparison of serving cell measurement result of MR and Threshold1 / 2.

[0744] If the relaxation state exit is not step by step, at this time, the network needs to set different thresholds for measurement result of LR:

[0745] Threshold1: case#1--->case#2

[0746] Threshold2: case#1--->case#3

[0747] Threshold3: case#1--->full MR measurement

[0748] Optionally, threshold3 includes a fourth measurement relaxation threshold of LR, threshold1 includes a fifth measurement relaxation threshold of LR, and threshold2 includes a sixth measurement relaxation threshold of LR.

[0749] II. LR measurement result is comparable to MR measurement result (such as OFDM based LR)

[0750] 1. Judge whether MR enters relaxation state according to serving cell measurement result of LR.

[0751] case#3, measurement relaxation threshold LR Threshold1, UE judges that the measurement result of the LR serving cell is greater than or equal to the LR Threshold1.

[0752] LR: perform measurement on the serving cell;

[0753] MR:

[0754] Serving cell: the MR performs relaxed measurement on the serving cell, and the measurement relaxation coefficient Ka. Embodiment: see Table 1.

[0755] Neighbor cell: the MR serving cell measurement result is compared with the neighbor cell measurement relaxation threshold Threshold_legacy, to determine whether to perform relaxed measurement on the neighbor cell, and the measurement relaxation coefficient Kd, Kd≥Ka; generally, it is considered that the threshold Threshold1 configured by the network is greater than or equal to the Threshold_legacy, that is, in this case, the MR must perform relaxed measurement on the neighbor cell. Embodiment: see Table 2.

[0756] In particular, if a high priority cell is configured, the high priority measurement relaxation coefficient is Kf. Optionally, relaxed measurement is performed on the high priority cell. Embodiment: see Table 3.

[0757] When the low power wake-up receiver (LP-WUR) relaxation criterion is met, the user equipment (UE) shall search for higher priority inter-frequency layers at least once every Kf*Thigher_priority_search time interval.

[0758] case#2, measurement relaxation threshold LR Threshold2, UE judges that the measurement result of the LR serving cell is greater than or equal to the LR Threshold2.

[0759] LR: perform measurement on the serving cell;

[0760] MR:

[0761] Serving cell: the MR performs relaxed measurement on the serving cell, and the measurement relaxation coefficient Kb, Ka≤Kb. Embodiment: see Table 4.

[0762] Neighbor cell: the MR does not perform measurement on the neighbor cell.

[0763] case#1, measurement relaxation threshold LR Threshold3, UE judges that the measurement result of the LR serving cell is greater than or equal to the LR Threshold3.

[0764] LR: perform measurement on the serving cell;

[0765] MR:

[0766] Serving cell: MR does not perform relaxed measurement on serving cell;

[0767] Neighbor cell: MR does not perform measurement on neighbor cell.

[0768] In particular, if high priority cell is configured, only perform relaxed measurement on high priority cell, relaxed factor is Ke, Ke≥Kd. Embodiment: refer to Table 5.

[0769] 2. Exit relaxed state based on serving cell measurement result of LR

[0770] If relaxed state exit is step by step, i.e. case#1--->case#2--->case#3:

[0771] Exit case#1 based on serving cell measurement result of LR, exit case#2 and case#3 based on serving cell measurement result of LR and comparison of Threshold1 / 2.

[0772] If relaxed state exit is not step by step, at this time, network needs to set different thresholds for measurement result of LR:

[0773] Threshold 4: case#1--->case#2

[0774] Threshold 5: case#1--->case#3

[0775] Threshold 6: case#1--->full MR performs measurement

[0776] Optionally, threshold 6 includes third measurement relaxed threshold of LR, threshold 5 includes first measurement relaxed threshold of LR, threshold 4 includes second measurement relaxed threshold of LR.

[0777] Three, LR measurement result is comparable with MR measurement result (such as OFDM based LR), based on UE implementation to judge neighbor cell measurement start

[0778] 1. Based on UE implementation to judge entering relaxed state

[0779] Case#3, measurement relaxed threshold Threshold1, based on UE implementation: UE judges that LR serving cell measurement result≥Threshold1-offset, or UE judges that MR serving cell measurement result≥Threshold1.

[0780] LR: performs measurement on serving cell;

[0781] MR:

[0782] Serving cell: MR performs relaxed measurement on serving cell, measurement relaxation factor Ka.

[0783] Neighbor cell: MR serving cell measurement result is compared with neighbor cell measurement relaxation threshold Threshold_legacy, to determine whether to perform relaxed measurement on neighbor cell, measurement relaxation factor Kd, Kd≥Ka; generally, it is considered that network configured threshold Threshold1≥Threshold_legacy, that is, in this case, MR must perform relaxed measurement on neighbor cell. Embodiment: see Table 2.

[0784] In particular, if a high priority cell is configured, the high priority measurement relaxation factor is Kf. Optionally, relaxed measurement is performed on the high priority cell. Embodiment: see Table 3.

[0785] case#2, measurement relaxation threshold Threshold2, based on UE implementation: UE determines that LR serving cell measurement result≥Threshold2-offset, or UE determines that MR serving cell measurement result≥Threshold2.

[0786] LR: performs measurement on serving cell;

[0787] MR:

[0788] Serving cell: MR performs relaxed measurement on serving cell, measurement relaxation factor Kb, Ka≤Kb;

[0789] Neighbor cell: MR does not perform measurement on neighbor cell.

[0790] case#1, measurement relaxation threshold Threshold3, based on UE implementation: UE determines that LR serving cell measurement result≥Threshold3-offset, or UE determines that MR serving cell measurement result≥Threshold3.

[0791] LR: performs measurement on serving cell;

[0792] MR:

[0793] Serving cell: MR does not perform relaxed measurement on serving cell;

[0794] Neighbor cell: MR does not perform measurement on neighbor cell.

[0795] In particular, if a high priority cell is configured, only relaxed measurement is performed on the high priority cell, the relaxation factor is Ke, Ke≥Kd. Embodiment: see Table 5.

[0796] 2. Based on UE implementation to determine to exit the relaxed state

[0797] The UE does not satisfy the entering condition, i.e., exits the corresponding relaxed state. Optionally, the entering condition is based on the UE implementation to judge the condition of entering the relaxed state.

[0798] In the embodiments of the present disclosure, part or all of the steps, and optional implementation manners thereof, can be combined with part or all of the steps in other embodiments, or combined with optional implementation manners of other embodiments.

[0799] The embodiments of the present disclosure also propose a device for implementing any of the above methods, for example, a device including units or modules for implementing each step performed by a terminal in any of the above methods. For another example, another device is also proposed, including units or modules for implementing each step performed by a network device (such as an access network device, a core network function node, a core network device, etc.) in any of the above methods.

[0800] It should be understood that the division of each unit or module in the above apparatus is only a logical function division, and all or part of them can be integrated into a physical entity or physically separated in actual implementation. In addition, the units or modules in the apparatus can be implemented in the form of processor calling software: for example, the apparatus includes a processor connected with a memory, the memory stores instructions, and the processor calls the instructions stored in the memory to implement any of the above methods or realize the functions of each unit or module of the above apparatus, wherein the processor is, for example, a general processor such as a central processing unit (CPU) or a microprocessor, and the memory is a memory within the apparatus or a memory outside the apparatus. Alternatively, the units or modules in the apparatus can be implemented in the form of hardware circuit, and the functions of part or all of the units or modules can be realized by the design of the hardware circuit. The above hardware circuit can be understood as one or more processors; for example, in one implementation, the above hardware circuit is an application-specific integrated circuit (ASIC), and the functions of part or all of the above units or modules are realized by the design of the logical relationship of the elements in the circuit; for example, in another implementation, the above hardware circuit is a programmable logic device (PLD), and a field programmable gate array (FPGA) is taken as an example, which can include a large number of logic gate circuits, and the connection relationship between the logic gate circuits is configured by a configuration file, so as to realize the functions of part or all of the above units or modules. All units or modules of the above apparatus can be implemented in the form of processor calling software, or all units or modules can be implemented in the form of hardware circuit, or part of the units or modules are implemented in the form of processor calling software, and the remaining part is implemented in the form of hardware circuit.

[0801] In the embodiments of the present disclosure, the processor is a circuit with signal processing capability. In one implementation, the processor can be a circuit with instruction reading and running capability, such as a central processing unit (CPU), a microprocessor, a graphics processing unit (GPU) (which can be understood as a microprocessor), a digital signal processor (DSP), or the like. In another implementation, the processor can implement certain functions through a logical relationship of hardware circuit, and the logical relationship of the hardware circuit is fixed or can be reconfigured. For example, the processor is a hardware circuit implemented by an application-specific integrated circuit (ASIC) or a programmable logic device (PLD), such as an FPGA. In the reconfigurable hardware circuit, the processor loads a configuration document to implement the configuration of the hardware circuit. It can be understood that the processor loads instructions to implement the functions of the above part or all units or modules. In addition, the hardware circuit can also be designed for artificial intelligence, which can be understood as an ASIC, such as a neural network processing unit (NPU), a tensor processing unit (TPU), a deep learning processing unit (DPU), or the like.

[0802] FIG. 7A is a structural schematic diagram of a terminal according to an embodiment of the present disclosure. As shown in FIG. 7A, the terminal 7100 can include at least one of a transceiver module 7101, a processing module 7102, and the like. In some embodiments, the processing module 7102 is configured to perform measurement according to a measurement result of the terminal and a measurement result threshold. The measurement result of the terminal includes a measurement result of the first receiver and / or a measurement result of the second receiver. The power consumption of the first receiver is lower than that of the second receiver. Optionally, the transceiver module 7101 is configured to perform at least one of the communication steps (such as transmitting and / or receiving) performed by the terminal in any of the above methods, details of which are not described herein. Optionally, the processing module 7102 is configured to perform at least one of the other steps (such as steps S203, S204, S205, and S206, but not limited thereto) performed by the terminal in any of the above methods, details of which are not described herein.

[0803] In some embodiments, the processing module 7102 is configured to: perform measurement by the first receiver, or perform measurement by the first receiver and the second receiver, according to the receiving signal modulation mode of the first receiver, the receiving signal modulation mode of the second receiver, the measurement result, and the measurement result threshold.

[0804] In some embodiments, the processing module 7102 is further configured to:

[0805] when the receiving signal modulation mode of the first receiver is different from the receiving signal modulation mode of the second receiver, perform measurement according to the measurement result of the second receiver and the measurement result threshold; or

[0806] when the receiving signal modulation mode of the first receiver is the same as the receiving signal modulation mode of the second receiver, perform measurement according to the measurement result of the first receiver and the measurement result threshold; or

[0807] when the receiving signal modulation mode of the first receiver is the same as the receiving signal modulation mode of the second receiver, perform measurement according to the measurement result of the first receiver or the measurement result of the second receiver and the measurement result threshold.

[0808] In some embodiments, the measurement result of the second receiver includes a serving cell measurement result of the second receiver; the measurement result threshold includes a first measurement relaxation threshold of the second receiver, a second measurement relaxation threshold of the second receiver, a third measurement relaxation threshold of the second receiver, and a neighbor cell measurement relaxation threshold of the terminal; wherein the first measurement relaxation threshold of the second receiver is less than the second measurement relaxation threshold of the second receiver, and the second measurement relaxation threshold of the second receiver is less than the third measurement relaxation threshold of the second receiver; the processing module 7102 is configured to perform one of:

[0809] when the serving cell measurement result of the second receiver is greater than or equal to the third measurement relaxation threshold of the second receiver, perform measurement of the serving cell of the terminal by the first receiver;

[0810] when the serving cell measurement result of the second receiver is greater than or equal to the second measurement relaxation threshold of the second receiver, perform measurement of the serving cell of the terminal by the first receiver, and perform relaxed measurement of the serving cell of the terminal by the second receiver;

[0811] performing, by the first receiver, measurement of a serving cell of the terminal when the serving cell measurement result of the first receiver is greater than or equal to the first measurement relaxation threshold of the first receiver, and the serving cell measurement result of the second receiver is greater than or equal to the neighbor cell measurement relaxation threshold.

[0812] In some embodiments, the processing module 7102 is further configured to perform, by the second receiver, relaxed measurement of a high priority cell when the high priority cell exists, wherein the serving cell measurement result of the second receiver is greater than or equal to a third measurement relaxation threshold of the second receiver.

[0813] In some embodiments, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver; the measurement result threshold comprises a first measurement relaxation threshold of the first receiver, a second measurement relaxation threshold of the first receiver, a third measurement relaxation threshold of the first receiver, and a neighbor cell measurement relaxation threshold of the terminal; wherein the first measurement relaxation threshold of the first receiver is less than the second measurement relaxation threshold of the first receiver, and the second measurement relaxation threshold of the first receiver is less than the third measurement relaxation threshold of the first receiver; and the processing module 7102 is configured to perform one of:

[0814] performing, by the first receiver, measurement of a serving cell of the terminal when the serving cell measurement result of the first receiver is greater than or equal to the third measurement relaxation threshold of the first receiver;

[0815] performing, by the first receiver, measurement of a serving cell of the terminal when the serving cell measurement result of the first receiver is greater than or equal to the second measurement relaxation threshold of the first receiver, and performing, by the second receiver, relaxed measurement of the serving cell of the terminal;

[0816] performing, by the first receiver, measurement of a serving cell of the terminal when the serving cell measurement result of the first receiver is greater than or equal to the first measurement relaxation threshold of the first receiver, and the first measurement relaxation threshold of the second receiver is greater than or equal to the neighbor cell measurement relaxation threshold, performing, by the second receiver, relaxed measurement of the serving cell of the terminal, and performing, by the second receiver, relaxed measurement of a neighbor cell of the terminal.

[0817] In some embodiments, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver; the measurement result of the second receiver comprises a serving cell measurement result of the second receiver; the measurement result threshold comprises: a first measurement relaxation threshold of the second receiver, a second measurement relaxation threshold of the second receiver, a third measurement relaxation threshold of the second receiver, and a neighbor cell measurement relaxation threshold of the terminal; or, the measurement result threshold comprises: a first measurement relaxation threshold of the first receiver, a second measurement relaxation threshold of the first receiver, a third measurement relaxation threshold of the first receiver, and a neighbor cell measurement relaxation threshold of the terminal; the processing module 7102 is further configured to:

[0818] perform, by the first receiver, the measurement of the serving cell of the terminal when at least one of the following conditions is met:

[0819] the serving cell measurement result of the first receiver is greater than or equal to the third measurement relaxation threshold of the first receiver;

[0820] the serving cell measurement result of the second receiver is greater than or equal to a first offset value;

[0821] the serving cell measurement result of the second receiver is greater than or equal to the third measurement relaxation threshold of the second receiver;

[0822] the serving cell measurement result of the first receiver is greater than or equal to a second offset value;

[0823] wherein the first offset value is a sum of the third measurement relaxation threshold of the first receiver and the first offset value, and the second offset value is a difference between the third measurement relaxation threshold of the second receiver and the second offset value.

[0824] In some embodiments, the processing module 7102 is further configured to:

[0825] perform, by the first receiver, the measurement of the serving cell of the terminal and perform, by the second receiver, the relaxed measurement of the serving cell of the terminal when at least one of the following conditions is met:

[0826] the serving cell measurement result of the first receiver is greater than or equal to the second measurement relaxation threshold of the first receiver;

[0827] the serving cell measurement result of the second receiver is greater than or equal to a third offset value;

[0828] the serving cell measurement result of the second receiver is greater than or equal to the second measurement relaxation threshold of the second receiver;

[0829] the serving cell measurement result of the first receiver is greater than or equal to a fourth offset value;

[0830] The fourth offset value is a difference between the second measurement relaxation threshold of the second receiver and the fourth offset amount.

[0831] In some embodiments, the processing module 7102 is further configured to:

[0832] perform, by the first receiver, a measurement of a serving cell of the terminal, perform, by the second receiver, a relaxed measurement of the serving cell of the terminal, and perform, by the second receiver, a relaxed measurement of a neighbor cell of the terminal when at least one of the following is satisfied:

[0833] the serving cell measurement result of the first receiver is greater than or equal to a first measurement relaxation threshold of the first receiver;

[0834] the serving cell measurement result of the second receiver is greater than or equal to a fifth offset value;

[0835] the serving cell measurement result of the second receiver is greater than or equal to a first measurement relaxation threshold of the second receiver;

[0836] the serving cell measurement result of the first receiver is greater than or equal to a sixth offset value;

[0837] The fifth offset value is a sum of the first measurement relaxation threshold of the first receiver and a fifth offset amount, and the sixth offset value is a difference between the first measurement relaxation threshold of the second receiver and the sixth offset amount.

[0838] In some embodiments, the processing module 7102 is further configured to:

[0839] perform, by the second receiver, a relaxed measurement of a high priority cell when the high priority cell exists.

[0840] In some embodiments, the processing module 7102 is further configured to:

[0841] exit, by the second receiver, a relaxed state according to the measurement result of the terminal and the measurement result threshold when the second receiver is in the relaxed state; the relaxed state is a state in which the second receiver performs a relaxed measurement.

[0842] In some embodiments, the relaxed state includes at least one of the following:

[0843] a state in which the second receiver performs a relaxed measurement of a serving cell of the terminal;

[0844] the second receiver performs relaxed measurement of a high priority cell of the terminal;

[0845] the second receiver performs relaxed measurement of a high priority cell of the terminal.

[0846] In some embodiments, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver; the measurement result of the second receiver comprises a serving cell measurement result of the second receiver; the measurement result threshold comprises: a first measurement relaxation threshold of the second receiver, a second measurement relaxation threshold of the second receiver, a fourth measurement relaxation threshold of the first receiver, wherein the fourth measurement relaxation threshold of the first receiver is smaller than the second measurement relaxation threshold of the second receiver; the processing module 7102 is configured to:

[0847] when the modulation mode of the received signal of the first receiver is different from the modulation mode of the received signal of the second receiver, performing the following operations:

[0848] when the serving cell measurement result of the first receiver is smaller than the fourth measurement relaxation threshold of the first receiver, and there is a high priority cell, exiting, by the second receiver, the relaxed measurement of the high priority cell of the terminal;

[0849] when the serving cell measurement result of the second receiver is smaller than the second measurement relaxation threshold of the second receiver, exiting, by the second receiver, the relaxed measurement of the serving cell of the terminal;

[0850] when the serving cell measurement result of the second receiver is smaller than the first measurement relaxation threshold of the second receiver, exiting, by the second receiver, the relaxed measurement of the neighbor cell of the terminal.

[0851] In some embodiments, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver; the measurement result threshold comprises: a fourth measurement relaxation threshold of the first receiver, a fifth measurement relaxation threshold of the first receiver, a sixth measurement relaxation threshold of the first receiver, and a neighbor cell measurement relaxation threshold of the terminal; wherein the fourth measurement relaxation threshold of the first receiver is greater than the fifth measurement relaxation threshold of the first receiver, and the fifth measurement relaxation threshold of the first receiver is greater than the sixth measurement relaxation threshold of the first receiver; the processing module 7102 is configured to:

[0852] when the modulation mode of the received signal of the first receiver is different from the modulation mode of the received signal of the second receiver, performing the following operations:

[0853] when the serving cell measurement result of the first receiver is less than the fourth measurement relaxation threshold of the first receiver, and there is a high priority cell, exiting, by the second receiver, the relaxed measurement of the high priority cell of the terminal;

[0854] when the serving cell measurement result of the first receiver is less than the fourth measurement relaxation threshold of the first receiver, and when the serving cell measurement result of the first receiver is less than the fifth measurement relaxation threshold of the first receiver, exiting, by the second receiver, the relaxed measurement of the serving cell of the terminal;

[0855] when the serving cell measurement result of the first receiver is less than the fourth measurement relaxation threshold of the first receiver, and when the serving cell measurement result of the first receiver is less than the sixth measurement relaxation threshold of the first receiver, exiting, by the second receiver, the relaxed measurement of the neighbor cell of the terminal.

[0856] In some embodiments, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver; the measurement result threshold comprises a first measurement relaxation threshold of the first receiver, a second measurement relaxation threshold of the first receiver, and a third measurement relaxation threshold of the first receiver; wherein the first measurement relaxation threshold of the first receiver is less than the second measurement relaxation threshold of the first receiver, and the second measurement relaxation threshold of the first receiver is less than the third measurement relaxation threshold of the first receiver; the processing module 7102 is configured to:

[0857] when the modulation mode of the received signal of the first receiver is the same as the modulation mode of the received signal of the second receiver, performing the following operations:

[0858] when the measurement result of the first receiver is less than the third measurement relaxation threshold of the first receiver, and there is a high priority cell, exiting, by the second receiver, the relaxed measurement of the high priority cell of the terminal;

[0859] when the measurement result of the first receiver is less than the second measurement relaxation threshold of the first receiver, exiting, by the second receiver, the relaxed measurement of the serving cell of the terminal;

[0860] when the measurement result of the first receiver is less than the first measurement relaxation threshold of the first receiver, exiting, by the second receiver, the relaxed measurement of the neighbor cell of the terminal.

[0861] In some embodiments, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver; the measurement result threshold comprises: a first measurement relaxation threshold of the first receiver, a second measurement relaxation threshold of the first receiver, and a third measurement relaxation threshold of the first receiver; wherein the first measurement relaxation threshold of the first receiver is smaller than the second measurement relaxation threshold of the first receiver, and the second measurement relaxation threshold of the first receiver is smaller than the third measurement relaxation threshold of the first receiver; the processing module 7102 is configured to:

[0862] When the modulation mode of the received signal of the first receiver is the same as the modulation mode of the received signal of the second receiver, the following operation is performed:

[0863] When the serving cell measurement result of the first receiver is smaller than the third measurement relaxation threshold of the first receiver, and there is a high priority cell, the second receiver exits the relaxed measurement of the high priority cell of the terminal;

[0864] When the serving cell measurement result of the first receiver is smaller than the third measurement relaxation threshold of the first receiver, and when the serving cell measurement result of the first receiver is smaller than the second measurement relaxation threshold of the first receiver, the second receiver performs the relaxed measurement of the serving cell of the terminal;

[0865] When the serving cell measurement result of the first receiver is smaller than the third measurement relaxation threshold of the first receiver, and when the serving cell measurement result of the first receiver is smaller than the first measurement relaxation threshold of the first receiver, the second receiver performs the relaxed measurement of the neighbor cell of the terminal.

[0866] In some embodiments, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver; the measurement result of the second receiver comprises a serving cell measurement result of the second receiver; the measurement result threshold comprises: a first measurement relaxation threshold of the second receiver, a second measurement relaxation threshold of the second receiver, a third measurement relaxation threshold of the second receiver, and a neighbor cell measurement relaxation threshold of the terminal; or, the measurement result threshold comprises: a first measurement relaxation threshold of the first receiver, a second measurement relaxation threshold of the first receiver, a third measurement relaxation threshold of the first receiver, and a neighbor cell measurement relaxation threshold of the terminal; the processing module 7102 is configured to:

[0867] When the modulation mode of the received signal of the first receiver is the same as the modulation mode of the received signal of the second receiver, the following operation is performed:

[0868] performing, by the second receiver, an operation of exiting relaxed measurement on a high priority cell of the terminal via the second receiver when at least one of the following is not satisfied and there is a high priority cell:

[0869] a serving cell measurement result of the first receiver is greater than or equal to a third measurement relaxed threshold of the first receiver;

[0870] a serving cell measurement result of the second receiver is greater than or equal to a first offset value;

[0871] a serving cell measurement result of the second receiver is greater than or equal to a third measurement relaxed threshold of the second receiver;

[0872] a serving cell measurement result of the first receiver is greater than or equal to a second offset value;

[0873] wherein the first offset value is a sum of the third measurement relaxed threshold of the first receiver and the first offset value, and the second offset value is a difference between the third measurement relaxed threshold of the second receiver and the second offset value.

[0874] In some embodiments, the processing module 7102 is further configured to:

[0875] performing, by the second receiver, an operation of exiting relaxed measurement on a serving cell of the terminal via the second receiver when at least one of the following is not satisfied:

[0876] a serving cell measurement result of the first receiver is greater than or equal to a second measurement relaxed threshold of the first receiver;

[0877] a serving cell measurement result of the second receiver is greater than or equal to a third offset value;

[0878] a serving cell measurement result of the second receiver is greater than or equal to a second measurement relaxed threshold of the second receiver;

[0879] a serving cell measurement result of the first receiver is greater than or equal to a fourth offset value;

[0880] wherein the third offset value is a sum of the second measurement relaxed threshold of the first receiver and a third offset value, and the fourth offset value is a difference between the second measurement relaxed threshold of the second receiver and the fourth offset value.

[0881] In some embodiments, the processing module 7102 is further configured to:

[0882] performing, by the second receiver, an operation of exiting relaxed measurement on a neighbor cell of the terminal via the second receiver when at least one of the following is not satisfied:

[0883] a serving cell measurement result of the first receiver is greater than or equal to a first measurement relaxation threshold of the first receiver;

[0884] a serving cell measurement result of the second receiver is greater than or equal to a fifth offset value;

[0885] a serving cell measurement result of the second receiver is greater than or equal to a first measurement relaxation threshold of the second receiver;

[0886] a serving cell measurement result of the first receiver is greater than or equal to a sixth offset value;

[0887] The fifth offset value is a sum of the first measurement relaxation threshold of the first receiver and a fifth offset amount, and the sixth offset value is a difference between the first measurement relaxation threshold of the second receiver and the sixth offset amount.

[0888] FIG. 7B is a structural schematic diagram of a network device according to an embodiment of the present disclosure. As shown in FIG. 7B, the network device 7200 can include at least one of a transceiver module 7201, a processing module 7202, and the like. In some embodiments, the transceiver module 7201 is configured to send a measurement result threshold to a terminal, where the measurement result threshold is used by the terminal to perform measurement according to a measurement result of the terminal; the terminal includes a first receiver and a second receiver; the measurement result of the terminal includes a measurement result of the first receiver and / or a measurement result of the second receiver; and the power consumption of the first receiver is lower than that of the second receiver. Optionally, the transceiver module 7201 is configured to perform the sending and / or receiving communication steps (for example, step S202, but not limited thereto) performed by the network device in any of the above methods. Details are not described herein. Optionally, the processing module 7202 is configured to perform other steps (for example, step S201, but not limited thereto) performed by the network device in any of the above methods. Details are not described herein.

[0889] In some embodiments, the transceiver module 7201 is further configured to:

[0890] send information indicating that the first neighbor cell is a high priority cell to the terminal.

[0891] In some embodiments, the terminal performs relaxed measurement with different measurement relaxation coefficients under different measurement behaviors.

[0892] FIG. 8A is a structural schematic diagram of a communication device according to an embodiment of the present disclosure. As shown in FIG. 8A, the communication device 8100 can be a network device (for example, an access network device, a core network device, etc.), a terminal (for example, a user equipment, etc.), a chip, a chip system, or a processor supporting the network device to implement any of the above methods, or a chip, a chip system, or a processor supporting the terminal to implement any of the above methods. The communication device 8100 can be used to implement the methods described in the above method embodiments, and details can be referred to the descriptions in the above method embodiments.

[0893] As shown in FIG. 8A, the communication device 8100 includes one or more processors 8101. The processor 8101 can be a general purpose processor or a special purpose processor, for example, a baseband processor or a central processing unit. The baseband processor can be used to process communication protocols and communication data, and the central processing unit can be used to control the communication device (for example, a base station, a baseband chip, a terminal device, a terminal device chip, a DU or a CU, etc.), execute programs, and process data of the programs. The communication device 8100 is used to implement any of the above methods.

[0894] In some embodiments, the communication device 8100 further includes one or more memories 8102 for storing instructions. Optionally, all or part of the memory 8102 can also be outside the communication device 8100.

[0895] In some embodiments, the communication device 8100 further includes one or more transceivers 8103. When the communication device 8100 includes one or more transceivers 8103, the transceiver 8103 performs at least one of the communication steps (for example, step S220 but not limited to this) in the above method, and the processor 8101 performs at least one of the other steps (for example, step S201, step S203, step S204, step S205, step S206, but not limited to this).

[0896] In some embodiments, the transceiver can include a receiver and / or a transmitter, which can be separate or integrated together. Optionally, the terms of transceiver, transceiving unit, transceiver, transceiving circuit, etc. can be replaced with each other, and the terms of transmitter, transmitting unit, transmitter, transmitting circuit, etc. can be replaced with each other, and the terms of receiver, receiving unit, receiver, receiving circuit, etc. can be replaced with each other.

[0897] In some embodiments, the communication device 8100 can include one or more interface circuits 8104. Optionally, the interface circuits 8104 are connected with the memory 8102, and the interface circuits 8104 can be configured to receive signals from the memory 8102 or other devices, and configured to send signals to the memory 8102 or other devices. For example, the interface circuits 8104 can read instructions stored in the memory 8102 and send the instructions to the processor 8101.

[0898] The communication device 8100 described in the above embodiments can be a network device or a terminal, but the scope of the communication device 8100 described in the present disclosure is not limited thereto, and the structure of the communication device 8100 can not be limited by FIG. 8A. The communication device can be a standalone device or can be part of a larger device. For example, the communication device can be: 1) a standalone integrated circuit (IC), or a chip, or a chip system or subsystem; (2) a set of one or more ICs, which can optionally also include storage components for storing data, programs; (3) an ASIC, such as a modem; (4) a module that can be embedded in other devices; (5) a receiver, a terminal device, a smart terminal device, a cellular phone, a wireless device, a handset, a mobile unit, a vehicle-mounted device, a network device, a cloud device, an artificial intelligence device, and the like; (6) other devices, and the like.

[0899] FIG. 8B is a structural diagram of a chip according to an embodiment of the present disclosure. For the case where the communication device 8100 is a chip or a chip system, the structure of the chip 8200 can be as shown in FIG. 8B, but is not limited thereto.

[0900] The chip 8200 includes one or more processors 8201, and the chip 8200 is configured to execute any of the above methods.

[0901] In some embodiments, the chip 8200 further includes one or more interface circuits 8202. Optionally, the interface circuits 8202 are connected with the memory 8203, and the interface circuits 8202 can be configured to receive signals from the memory 8203 or other devices, and configured to send signals to the memory 8203 or other devices. For example, the interface circuits 8202 can read instructions stored in the memory 8203 and send the instructions to the processor 8201.

[0902] In some embodiments, the interface circuits 8202 perform at least one of the communication steps (such as step S202, but not limited thereto) in the above methods, and the processor 8201 performs at least one of the other steps (such as steps S201, S202, S203, S204, S205, S206, but not limited thereto).

[0903] In some embodiments, the terms interface circuit, interface, transceiving pin, transceiver, and the like can be replaced by each other.

[0904] In some embodiments, the chip 8200 further includes one or more memories 8203 for storing instructions. Optionally, all or part of the memories 8203 can be outside the chip 8200.

[0905] The disclosure further provides a storage medium having stored instructions, which, when executed on the communication device 8100, cause the communication device 8100 to perform any of the above methods. Optionally, the storage medium is an electronic storage medium. Optionally, the storage medium is a computer-readable storage medium, but is not limited to this, and it can also be a storage medium readable by other devices. Optionally, the storage medium can be a non-transitory storage medium, but is not limited to this, and it can also be a transitory storage medium.

[0906] The disclosure further provides a program product, which, when executed by the communication device 8100, causes the communication device 8100 to perform any of the above methods. Optionally, the program product is a computer program product.

[0907] The disclosure further provides a computer program, which, when executed on a computer, causes the computer to perform any of the above methods.

Claims

1. A communication method characterized by comprising: The method is performed by a terminal comprising a first receiver and a second receiver, and comprises: performing measurement according to a measurement result of the terminal and a measurement result threshold; wherein the measurement result of the terminal comprises a measurement result of the first receiver and / or a measurement result of the second receiver; and the power consumption of the first receiver is lower than that of the second receiver.

2. The method of claim 1, wherein, The performing measurement according to the measurement result of the terminal and the measurement result threshold comprises: performing measurement by the first receiver, or performing measurement by the first receiver and the second receiver, according to a receiving signal modulation mode of the first receiver, a receiving signal modulation mode of the second receiver, the measurement result and the measurement result threshold.

3. The method according to claim 1 or 2, characterized in that, The method further comprises: when the receiving signal modulation mode of the first receiver and the receiving signal modulation mode of the second receiver are different, performing measurement according to the measurement result of the second receiver and the measurement result threshold; or when the receiving signal modulation mode of the first receiver and the receiving signal modulation mode of the second receiver are the same, performing measurement according to the measurement result of the first receiver and the measurement result threshold; or when the receiving signal modulation mode of the first receiver and the receiving signal modulation mode of the second receiver are the same, performing measurement according to the measurement result of the first receiver or the measurement result of the second receiver and the measurement result threshold.

4. The method of claim 3, wherein, The measurement result of the second receiver comprises a serving cell measurement result of the second receiver; the measurement result threshold comprises a first measurement relaxation threshold of the second receiver, a second measurement relaxation threshold of the second receiver, a third measurement relaxation threshold of the second receiver, and a neighbor cell measurement relaxation threshold of the terminal; wherein the first measurement relaxation threshold of the second receiver is less than the second measurement relaxation threshold of the second receiver, and the second measurement relaxation threshold of the second receiver is less than the third measurement relaxation threshold of the second receiver. The performing measurement according to the measurement result of the second receiver and the measurement result threshold comprises one of: when the serving cell measurement result of the second receiver is greater than or equal to the third measurement relaxation threshold of the second receiver, performing measurement on the serving cell of the terminal by the first receiver; when the serving cell measurement result of the second receiver is greater than or equal to the second measurement relaxation threshold of the second receiver, performing measurement on the serving cell of the terminal by the first receiver, and performing relaxed measurement on the serving cell of the terminal by the second receiver; when the serving cell measurement result of the second receiver is greater than or equal to the first measurement relaxation threshold of the second receiver, and the first measurement relaxation threshold of the second receiver is greater than or equal to the neighbor cell measurement relaxation threshold, performing measurement on the serving cell of the terminal by the first receiver, performing relaxed measurement on the serving cell of the terminal by the second receiver, and performing relaxed measurement on the neighbor cell of the terminal by the second receiver.

5. The method of claim 4, wherein, The method further comprises: performing relaxed measurement on the high priority cell by the second receiver when the high priority cell exists, wherein the serving cell measurement result of the second receiver is greater than or equal to a third measurement relaxed threshold of the second receiver.

6. The method of claim 3, wherein, The measurement result of the first receiver comprises a serving cell measurement result of the first receiver; the measurement result threshold comprises a first measurement relaxed threshold of the first receiver, a second measurement relaxed threshold of the first receiver, a third measurement relaxed threshold of the first receiver, and a neighbor cell measurement relaxed threshold of the terminal; wherein the first measurement relaxed threshold of the first receiver is less than the second measurement relaxed threshold of the first receiver, and the second measurement relaxed threshold of the first receiver is less than the third measurement relaxed threshold of the first receiver; The measurement according to the measurement result of the first receiver and the measurement result threshold comprises one of the following: performing measurement on the serving cell of the terminal by the first receiver when the serving cell measurement result of the first receiver is greater than or equal to the third measurement relaxed threshold of the first receiver; performing measurement on the serving cell of the terminal by the first receiver when the serving cell measurement result of the first receiver is greater than or equal to the second measurement relaxed threshold of the first receiver, and performing relaxed measurement on the serving cell of the terminal by the second receiver; performing measurement on the serving cell of the terminal by the first receiver when the serving cell measurement result of the first receiver is greater than or equal to the first measurement relaxed threshold of the first receiver, and the first measurement relaxed threshold of the second receiver is greater than or equal to the neighbor cell measurement relaxed threshold, performing relaxed measurement on the serving cell of the terminal by the second receiver, and performing relaxed measurement on the neighbor cell of the terminal by the second receiver. The method further comprises:

7. The method of claim 6, wherein, performing relaxed measurement on the high priority cell by the second receiver when the high priority cell exists; wherein the serving cell measurement result of the first receiver is greater than or equal to the third measurement relaxed threshold of the first receiver. The measurement result of the first receiver comprises a serving cell measurement result of the first receiver; 8. The method of claim 3, wherein, The measurement result of the second receiver comprises a serving cell measurement result of the second receiver; the measurement result threshold comprises a first measurement relaxed threshold of the second receiver, a second measurement relaxed threshold of the second receiver, a third measurement relaxed threshold of the second receiver, and a neighbor cell measurement relaxed threshold of the terminal; or, the measurement result threshold comprises a first measurement relaxed threshold of the first receiver, a second measurement relaxed threshold of the first receiver, a third measurement relaxed threshold of the first receiver, and a neighbor cell measurement relaxed threshold of the terminal. The method further comprises:

9. The method of claim 8, wherein, performing measurement on the serving cell of the terminal by the first receiver when at least one of the following conditions is met: ​ The serving cell measurement result of the first receiver is greater than or equal to a third measurement relaxation threshold of the first receiver; The serving cell measurement result of the second receiver is greater than or equal to a first offset value; The serving cell measurement result of the second receiver is greater than or equal to a third measurement relaxation threshold of the second receiver; The serving cell measurement result of the first receiver is greater than or equal to a second offset value; The first offset value is a sum of the third measurement relaxation threshold of the first receiver and the first offset value, and the second offset value is a difference between the third measurement relaxation threshold of the second receiver and the second offset value.

10. The method of claim 8, wherein, The method further comprises: When at least one of the following conditions is met, performing, by the first receiver, measurement on a serving cell of the terminal, and performing, by the second receiver, relaxed measurement on the serving cell of the terminal: The serving cell measurement result of the first receiver is greater than or equal to a second measurement relaxation threshold of the first receiver; The serving cell measurement result of the second receiver is greater than or equal to a third offset value; The serving cell measurement result of the second receiver is greater than or equal to a second measurement relaxation threshold of the second receiver; The serving cell measurement result of the first receiver is greater than or equal to a fourth offset value; The third offset value is a sum of the second measurement relaxation threshold of the first receiver and the third offset value, and the fourth offset value is a difference between the second measurement relaxation threshold of the second receiver and the fourth offset value.

11. The method of claim 8, wherein, The method further comprises: When at least one of the following conditions is met, performing, by the first receiver, measurement on a serving cell of the terminal, performing, by the second receiver, relaxed measurement on the serving cell of the terminal, and performing, by the second receiver, relaxed measurement on a neighbor cell of the terminal: The serving cell measurement result of the first receiver is greater than or equal to a first measurement relaxation threshold of the first receiver; The serving cell measurement result of the second receiver is greater than or equal to a fifth offset value; The serving cell measurement result of the second receiver is greater than or equal to a first measurement relaxation threshold of the second receiver; The serving cell measurement result of the first receiver is greater than or equal to a sixth offset value; The fifth offset value is a sum of the first measurement relaxation threshold of the first receiver and the fifth offset value, and the sixth offset value is a difference between the first measurement relaxation threshold of the second receiver and the sixth offset value.

12. The method of claim 9, wherein, The method further comprises: When there is a high priority cell, performing, by the second receiver, relaxed measurement on the high priority cell.

13. The method according to any one of claims 4-12, characterized in that, The method further comprises: When the second receiver is in a relaxed state, exiting, by the second receiver, the relaxed state according to a measurement result of the terminal and the measurement result threshold; wherein the relaxed state is a state in which the second receiver performs relaxed measurement.

14. The method of claim 13, wherein, The relaxed state comprises at least one of: A state in which the second receiver performs relaxed measurement on a serving cell of the terminal; A state in which the second receiver performs relaxed measurement on a neighbor cell of the terminal; The second receiver performs a relaxed measurement state of a high priority cell of the terminal.

15. The method of claim 14, wherein, The second receiver exits the relaxed state according to the measurement result of the terminal and the measurement result threshold, comprising: The second receiver exits the relaxed state according to the modulation mode of the received signal of the first receiver, the modulation mode of the received signal of the second receiver, the measurement result and the measurement result threshold.

16. The method of claim 15, wherein, The measurement result of the first receiver comprises a serving cell measurement result of the first receiver; The measurement result of the second receiver comprises a serving cell measurement result of the second receiver; The measurement result threshold comprises a first measurement relaxation threshold of the second receiver, a second measurement relaxation threshold of the second receiver, and a fourth measurement relaxation threshold of the first receiver; wherein the fourth measurement relaxation threshold of the first receiver is less than the second measurement relaxation threshold of the second receiver; The second receiver exits the relaxed state according to the modulation mode of the received signal of the first receiver, the modulation mode of the received signal of the second receiver, the measurement result and the measurement result threshold, comprising: When the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are different, the following operations are performed: When the serving cell measurement result of the first receiver is less than the fourth measurement relaxation threshold of the first receiver, and there is a high priority cell, the second receiver exits the relaxed measurement of the high priority cell of the terminal; When the serving cell measurement result of the second receiver is less than the second measurement relaxation threshold of the second receiver, the second receiver exits the relaxed measurement of the serving cell of the terminal; When the serving cell measurement result of the second receiver is less than the first measurement relaxation threshold of the second receiver, the second receiver exits the relaxed measurement of the neighbor cell of the terminal.

17. The method of claim 15, wherein, The measurement result of the first receiver comprises a serving cell measurement result of the first receiver; the measurement result threshold comprises a fourth measurement relaxation threshold of the first receiver, a fifth measurement relaxation threshold of the first receiver, a sixth measurement relaxation threshold of the first receiver, and a neighbor cell measurement relaxation threshold of the terminal; wherein the fourth measurement relaxation threshold of the first receiver is greater than the fifth measurement relaxation threshold of the first receiver, and the fifth measurement relaxation threshold of the first receiver is greater than the sixth measurement relaxation threshold of the first receiver; The second receiver exits the relaxed state according to the modulation mode of the received signal of the first receiver, the modulation mode of the received signal of the second receiver, the measurement result and the measurement result threshold, comprising: When the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are different, the following operations are performed: when the serving cell measurement result of the first receiver is less than the fourth measurement relaxation threshold of the first receiver, and there is a high priority cell, exiting, by the second receiver, the relaxed measurement of the high priority cell of the terminal; when the serving cell measurement result of the first receiver is less than the fourth measurement relaxation threshold of the first receiver, and when the serving cell measurement result of the first receiver is less than the fifth measurement relaxation threshold of the first receiver, exiting, by the second receiver, the relaxed measurement of the serving cell of the terminal; when the serving cell measurement result of the first receiver is less than the fourth measurement relaxation threshold of the first receiver, and when the serving cell measurement result of the first receiver is less than the sixth measurement relaxation threshold of the first receiver, exiting, by the second receiver, the relaxed measurement of the neighbor cell of the terminal.

18. The method of claim 15, wherein, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver; the measurement result threshold comprises a first measurement relaxation threshold of the first receiver, a second measurement relaxation threshold of the first receiver, and a third measurement relaxation threshold of the first receiver; wherein the first measurement relaxation threshold of the first receiver is less than the second measurement relaxation threshold of the first receiver, and the second measurement relaxation threshold of the first receiver is less than the third measurement relaxation threshold of the first receiver; the exiting, by the second receiver, the relaxed state according to the receiving signal modulation mode of the first receiver, the receiving signal modulation mode of the second receiver, the measurement result, and the measurement result threshold, comprises: when the receiving signal modulation mode of the first receiver and the receiving signal modulation mode of the second receiver are the same, performing the following operations: when the measurement result of the first receiver is less than the third measurement relaxation threshold of the first receiver, and there is a high priority cell, exiting, by the second receiver, the relaxed measurement of the high priority cell of the terminal; when the measurement result of the first receiver is less than the second measurement relaxation threshold of the first receiver, exiting, by the second receiver, the relaxed measurement of the serving cell of the terminal; when the measurement result of the first receiver is less than the first measurement relaxation threshold of the first receiver, exiting, by the second receiver, the relaxed measurement of the neighbor cell of the terminal.

19. The method of claim 15, wherein, the measurement result of the first receiver comprises a serving cell measurement result of the first receiver; the measurement result threshold comprises a first measurement relaxation threshold of the first receiver, a second measurement relaxation threshold of the first receiver, and a third measurement relaxation threshold of the first receiver; wherein the first measurement relaxation threshold of the first receiver is less than the second measurement relaxation threshold of the first receiver, and the second measurement relaxation threshold of the first receiver is less than the third measurement relaxation threshold of the first receiver; the exiting, by the second receiver, the relaxed state according to the receiving signal modulation mode of the first receiver, the receiving signal modulation mode of the second receiver, the measurement result, and the measurement result threshold, comprises: when the receiving signal modulation mode of the first receiver and the receiving signal modulation mode of the second receiver are the same, performing the following operations: when the measurement result of the first receiver is less than the third measurement relaxation threshold of the first receiver, and there is a high priority cell, exiting, by the second receiver, the relaxed measurement of the high priority cell of the terminal; when the measurement result of the first receiver is less than the second measurement relaxation threshold of the first receiver, exiting, by the second receiver, the relaxed measurement of the serving cell of the terminal; when the measurement result of the first receiver is less than the first measurement relaxation threshold of the first receiver, exiting, by the second receiver, the relaxed measurement of the neighbor cell of the terminal. The second receiver exits the relaxed state according to the modulation mode of the received signal of the first receiver, the modulation mode of the received signal of the second receiver, the measurement result and the measurement result threshold, and the method comprises the following steps of: When the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same, the following operation is performed: When the serving cell measurement result of the first receiver is less than the third measurement relaxed threshold of the first receiver, and there is a high priority cell, the second receiver exits the relaxed measurement of the high priority cell of the terminal; When the serving cell measurement result of the first receiver is less than the third measurement relaxed threshold of the first receiver, and when the serving cell measurement result of the first receiver is less than the second measurement relaxed threshold of the first receiver, the second receiver performs the relaxed measurement of the serving cell of the terminal; When the serving cell measurement result of the first receiver is less than the third measurement relaxed threshold of the first receiver, and when the serving cell measurement result of the first receiver is less than the first measurement relaxed threshold of the first receiver, the second receiver performs the relaxed measurement of the neighbor cell of the terminal.

20. The method of claim 15, wherein, The measurement result of the first receiver comprises a serving cell measurement result of the first receiver; The measurement result of the second receiver comprises a serving cell measurement result of the second receiver; The measurement result threshold comprises a first measurement relaxed threshold of the second receiver, a second measurement relaxed threshold of the second receiver, a third measurement relaxed threshold of the second receiver and a neighbor cell measurement relaxed threshold of the terminal; or the measurement result threshold comprises a first measurement relaxed threshold of the first receiver, a second measurement relaxed threshold of the first receiver, a third measurement relaxed threshold of the first receiver and a neighbor cell measurement relaxed threshold of the terminal.

21. The method of claim 20, wherein, The second receiver exits the relaxed state according to the modulation mode of the received signal of the first receiver, the modulation mode of the received signal of the second receiver, the measurement result and the measurement result threshold, and the method comprises the following steps of: When the modulation mode of the received signal of the first receiver and the modulation mode of the received signal of the second receiver are the same, the following operation is performed: When at least one of the following conditions is not met, and there is a high priority cell, the second receiver performs the operation of exiting the relaxed measurement of the high priority cell of the terminal: The serving cell measurement result of the first receiver is greater than or equal to the third measurement relaxed threshold of the first receiver; The serving cell measurement result of the second receiver is greater than or equal to a first deviation value; The serving cell measurement result of the second receiver is greater than or equal to the third measurement relaxed threshold of the second receiver; The serving cell measurement result of the first receiver is greater than or equal to a second deviation value; The first deviation value is the sum of the third measurement relaxation threshold of the first receiver and a first offset, and the second deviation value is the difference between the third measurement relaxation threshold of the second receiver and the second offset.

22. The method of claim 20, wherein, The operation of exiting the relaxed state by the second receiver according to the modulation mode of the received signal of the first receiver, the modulation mode of the received signal of the second receiver, the measurement result and the measurement result threshold, comprises: When at least one of the following conditions is not met, the second receiver performs an operation of exiting relaxed measurement on a serving cell of the terminal: The serving cell measurement result of the first receiver is greater than or equal to a second measurement relaxation threshold of the first receiver; The serving cell measurement result of the second receiver is greater than or equal to a third deviation value; The serving cell measurement result of the second receiver is greater than or equal to a second measurement relaxation threshold of the second receiver; The serving cell measurement result of the first receiver is greater than or equal to a fourth deviation value; The third deviation value is the sum of the second measurement relaxation threshold of the first receiver and a third offset, and the fourth deviation value is the difference between the second measurement relaxation threshold of the second receiver and the fourth offset.

23. The method of claim 20, wherein, The operation of exiting the relaxed state by the second receiver according to the modulation mode of the received signal of the first receiver, the modulation mode of the received signal of the second receiver, the measurement result and the measurement result threshold, comprises: When at least one of the following conditions is not met, the second receiver performs an operation of exiting relaxed measurement on a neighbor cell of the terminal: The serving cell measurement result of the first receiver is greater than or equal to a first measurement relaxation threshold of the first receiver; The serving cell measurement result of the second receiver is greater than or equal to a fifth deviation value; The serving cell measurement result of the second receiver is greater than or equal to a first measurement relaxation threshold of the second receiver; The serving cell measurement result of the first receiver is greater than or equal to a sixth deviation value; The fifth deviation value is the sum of the first measurement relaxation threshold of the first receiver and a fifth offset, and the sixth deviation value is the difference between the first measurement relaxation threshold of the second receiver and the sixth offset.

24. A method of communication, comprising: The method is performed by a network device, and the method comprises: sending, by the network device, a measurement result threshold to a terminal, the measurement result threshold being used by the terminal to perform measurement according to a measurement result of the terminal; The terminal comprises a first receiver and a second receiver; the measurement result of the terminal comprises a measurement result of the first receiver and / or a measurement result of the second receiver; and the power consumption of the first receiver is lower than that of the second receiver.

25. A method of communication, comprising: The method comprises: a network device sends a measurement result threshold to a terminal; the terminal receives the measurement result threshold sent by the network device, and performs measurement according to a measurement result of the terminal and the measurement result threshold; and the terminal receives the measurement result threshold sent by the network device, and performs measurement according to a measurement result of the terminal and the measurement result threshold. The terminal comprises a first receiver and a second receiver; the measurement result of the terminal comprises a measurement result of the first receiver and / or a measurement result of the second receiver; and power consumption of the first receiver is lower than power consumption of the second receiver.

26. A terminal, characterized by The terminal comprises a first receiver and a second receiver, comprising: a processing module, configured to perform measurement according to a measurement result of the terminal and a measurement result threshold; The terminal comprises a first receiver and a second receiver; the measurement result of the terminal comprises a measurement result of the first receiver and / or a measurement result of the second receiver; and power consumption of the first receiver is lower than power consumption of the second receiver.

27. A network device, comprising: comprising: a transceiving module, configured to send a measurement result threshold to a terminal, the measurement result threshold being used by the terminal to perform measurement according to a measurement result of the terminal; The terminal comprises a first receiver and a second receiver; the measurement result of the terminal comprises a measurement result of the first receiver and / or a measurement result of the second receiver; and power consumption of the first receiver is lower than power consumption of the second receiver.

28. A terminal, characterized by comprising: one or more processors; The terminal is configured to perform the communication method in any one of claims 1-23.

29. A network device, comprising: comprising: one or more processors; The network device is configured to perform the communication method in claim 24.

30. A communication system, characterized by comprising: a terminal and a network device; The terminal is configured to perform the communication method in any one of claims 1-23. The network device is configured to perform the communication method in claim 24.

31. A storage medium, the storage medium storing instructions, wherein, The instructions, when executed on the communication device, cause the communication device to perform the communication method in any one of claims 1-23 or 24.

32. A program product comprising a program and / or instructions, characterized in that The program and / or instructions, when executed on the communication device, implement the communication method in any one of claims 1-23 or 24.