WO2023011536A1 - 测量放松方法、装置、终端及网络侧设备 - Google Patents

测量放松方法、装置、终端及网络侧设备 Download PDF

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Publication number
WO2023011536A1
WO2023011536A1 PCT/CN2022/109998 CN2022109998W WO2023011536A1 WO 2023011536 A1 WO2023011536 A1 WO 2023011536A1 CN 2022109998 W CN2022109998 W CN 2022109998W WO 2023011536 A1 WO2023011536 A1 WO 2023011536A1
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Prior art keywords
cell
terminal
low mobility
mobility state
measurement
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PCT/CN2022/109998
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English (en)
French (fr)
Inventor
孙彦良
陈力
鲍炜
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维沃移动通信有限公司
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Application filed by 维沃移动通信有限公司 filed Critical 维沃移动通信有限公司
Priority to EP22852248.8A priority Critical patent/EP4383816A1/en
Publication of WO2023011536A1 publication Critical patent/WO2023011536A1/zh
Priority to US18/432,486 priority patent/US20240179553A1/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L43/00Arrangements for monitoring or testing data switching networks
    • H04L43/08Monitoring or testing based on specific metrics, e.g. QoS, energy consumption or environmental parameters
    • H04L43/0805Monitoring or testing based on specific metrics, e.g. QoS, energy consumption or environmental parameters by checking availability
    • H04L43/0811Monitoring or testing based on specific metrics, e.g. QoS, energy consumption or environmental parameters by checking availability by checking connectivity
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/10Scheduling measurement reports ; Arrangements for measurement reports
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W64/00Locating users or terminals or network equipment for network management purposes, e.g. mobility management
    • H04W64/006Locating users or terminals or network equipment for network management purposes, e.g. mobility management with additional information processing, e.g. for direction or speed determination
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present application belongs to the technical field of communications, and in particular relates to a measurement relaxation method, device, terminal and network side equipment.
  • terminals such as Narrow Band Internet of Things (NB-IoT) terminals can relax the same-frequency monitoring under the condition that the measured value of the serving cell satisfies the measurement relaxation judgment criterion. Or the measurement of inter-frequency neighboring cells. It is generally necessary to determine whether the terminal is in a low mobility state and/or in the center of a cell when it is determined that the measurement relaxation judgment criterion is met.
  • NB-IoT Narrow Band Internet of Things
  • a terminal may be configured to connect to multiple serving cells at the same time, and multiple serving cells may be distributed in one or more cell groups, and the terminal is in a connected state. Therefore, it is urgently needed for those skilled in the art to implement a solution for determining whether the terminal performs measurement relaxation in a connected state scenario.
  • Carrier aggregation CA
  • DC dual connectivity
  • Embodiments of the present application provide a measurement relaxation method, device, terminal, and network-side equipment, which can implement measurement relaxation by respectively determining the serving cell of the terminal in each cell group in a connected state scenario.
  • a measurement relaxation method which is applied to a terminal, and the method includes:
  • the terminal respectively determines the low mobility state judgment result and the cell center judgment result in each of the cell groups based on the measurement results, the low mobility state judgment criterion, and the cell center judgment criterion of each of the at least one cell group;
  • the terminal performs measurement relaxation on the serving cells in each of the cell groups based on the low mobility state judgment result and the cell center judgment result of each of the cell groups.
  • a measurement relaxation method which is applied to a network side device, and the method includes:
  • the network side device configures and sends the low mobility state judgment criterion for the terminal
  • the network side device receives first indication information from the terminal, the first indication information is used to indicate whether the serving cell of the terminal in each cell group performs measurement relaxation, and whether the terminal performs measurement relaxation is based on
  • the terminal is determined by the low mobility state judgment result and the cell center judgment result of each cell group, and the low mobility state judgment result and the cell center judgment result of each cell group are determined by the terminal based on each of the cell center judgment results respectively. determined by the measurement results of the cell group and the low mobility state judgment criterion and the cell center judgment criterion.
  • a device for measuring relaxation comprising:
  • a determining module configured to determine the low mobility state judgment result and the cell center of each of the cell groups based on the measurement results of each of the cell groups in at least one cell group, the low mobility state judgment criterion, and the cell center judgment criterion critical result;
  • a processing module configured to perform measurement relaxation on serving cells in each of the cell groups based on the low mobility state judgment result and the cell center judgment result of each of the cell groups.
  • a device for measuring relaxation including:
  • a sending module configured to configure a low mobility state judgment criterion for the terminal
  • a receiving module configured to receive first indication information from the terminal, where the first indication information is used to indicate whether the serving cell of the terminal in each cell group performs measurement relaxation, and whether the terminal performs measurement relaxation is based on
  • the terminal is determined by the low mobility state judgment result and the cell center judgment result of each cell group, and the low mobility state judgment result and the cell center judgment result of each cell group are determined by the terminal based on each of the cell center judgment results respectively. determined by the measurement results of the cell group and the low mobility state judgment criterion and the cell center judgment criterion.
  • a terminal includes a processor, a memory, and a program or instruction stored in the memory and operable on the processor.
  • the program or instruction is executed by the processor The steps of the method described in the first aspect are realized.
  • a terminal including a processor and a communication interface, wherein the processor is configured to base the measurement results of each of the cell groups in at least one cell group, the low mobility state judgment criterion, and the cell center judgment criterion , respectively determining the low mobility state judgment result and the cell center judgment result in each of the cell groups; based on the low mobility state judgment results and the cell center judgment results of each of the cell groups, the service in each of the cell groups.
  • the cell executes measurement relaxation, and the communication interface is used to obtain measurement results of each of the cell groups in at least one cell group.
  • a network-side device includes a processor, a memory, and a program or instruction stored in the memory and operable on the processor, and the program or instruction is executed by the The processor implements the steps of the method described in the second aspect when executed.
  • a network side device including a processor and a communication interface, wherein the processor is used to configure and send a low mobility state judgment criterion for the terminal, and the communication interface is used to receive the first One instruction information, the first instruction information is used to indicate whether the serving cell of the terminal in each cell group performs measurement relaxation, and whether the terminal performs measurement relaxation is based on the low mobility of the terminal in each cell group.
  • the determination result of the low mobility state and the judgment result of the cell center of each of the cell groups are determined by the terminal based on the measurement results of each of the cell groups and the low mobility state
  • the judgment criterion and the judgment criterion of the cell center are determined.
  • a readable storage medium is provided, and programs or instructions are stored on the readable storage medium, and when the programs or instructions are executed by a processor, the steps of the method described in the first aspect are realized, or the steps of the method described in the first aspect are realized, or The steps of the method described in the second aspect.
  • a chip in a tenth aspect, includes a processor and a communication interface, the communication interface is coupled to the processor, and the processor is used to run programs or instructions to implement the method as described in the first aspect , or implement the method described in the second aspect.
  • a computer program/program product is provided, the computer program/program product is stored in a storage medium, and the program/program product is executed by at least one processor to implement the first aspect or the second The steps of the method for measuring relaxation described in the aspect.
  • the terminal determines the low mobility state judgment result and the cell center judgment of each cell group based on the measurement results of each cell group in at least one cell group, the low mobility state judgment criterion, and the cell center judgment criterion. As a result, further based on the low mobility state judgment results and the cell center judgment results of each cell group, it is determined whether the serving cells in each cell group can perform measurement relaxation, and respectively perform measurement relaxation in the serving cells in each cell group, which can In the case that the network side equipment is configured with multiple serving cells, the terminal determines whether to perform measurement relaxation according to the actual situation of each cell group or each serving cell. In terms of the compromise between communication performance and power saving performance, it has Better flexibility.
  • FIG. 1 is a structural diagram of a wireless communication system applicable to an embodiment of the present application
  • Fig. 2 is one of the schematic flow charts of the method for measuring relaxation provided by the embodiment of the present application;
  • Fig. 3 is a schematic diagram of the interaction flow of the measurement relaxation method provided by the embodiment of the present application.
  • Fig. 4 is the second schematic flow diagram of the measurement relaxation method provided by the embodiment of the present application.
  • Fig. 5 is one of the structural schematic diagrams of the measurement relaxation device provided by the embodiment of the present application.
  • Fig. 6 is the second structural schematic diagram of the measurement relaxation device provided by the embodiment of the present application.
  • FIG. 7 is a schematic structural diagram of a communication device provided by an embodiment of the present application.
  • FIG. 8 is a schematic diagram of a hardware structure of a terminal provided by an embodiment of the present application.
  • FIG. 9 is a schematic structural diagram of a network side device according to an embodiment of the present application.
  • first, second and the like in the specification and claims of the present application are used to distinguish similar objects, and are not used to describe a specific sequence or sequence. It is to be understood that the terms so used are interchangeable under appropriate circumstances such that the embodiments of the application are capable of operation in sequences other than those illustrated or described herein and that "first" and “second” distinguish objects. It is usually one category, and the number of objects is not limited. For example, there may be one or more first objects.
  • “and/or” in the description and claims means at least one of the connected objects, and the character “/” generally means that the related objects are an "or” relationship.
  • LTE Long Term Evolution
  • LTE-Advanced LTE-Advanced
  • LTE-A Long Term Evolution-Advanced
  • CDMA Code Division Multiple Access
  • TDMA Time Division Multiple Access
  • FDMA Frequency Division Multiple Access
  • OFDMA Orthogonal Frequency Division Multiple Access
  • SC-FDMA Single-carrier Frequency-Division Multiple Access
  • system and “network” in the embodiments of the present application are often used interchangeably, and the described technology can be used for the above-mentioned system and radio technology, and can also be used for other systems and radio technologies.
  • NR New Radio
  • the following description describes the New Radio (NR) system for illustrative purposes, and uses NR terminology in most of the following descriptions, but these techniques can also be applied to applications other than NR system applications, such as the 6th generation (6 th Generation, 6G) communication system.
  • 6G 6th Generation
  • FIG. 1 shows a structural diagram of a wireless communication system to which this embodiment of the present application is applicable.
  • the wireless communication system includes a terminal 11 and a network side device 12 .
  • the terminal 11 can also be called a terminal device or a user terminal (User Equipment, UE), and the terminal 11 can be a mobile phone, a tablet computer (Tablet Personal Computer), a laptop computer (Laptop Computer) or a notebook computer, a personal digital Assistant (Personal Digital Assistant, PDA), handheld computer, netbook, ultra-mobile personal computer (ultra-mobile personal computer, UMPC), mobile internet device (Mobile Internet Device, MID), augmented reality (augmented reality, AR)/virtual reality (virtual reality, VR) equipment, robots, wearable devices (Wearable Device), vehicle-mounted equipment (VUE), pedestrian terminal (PUE), smart home (home equipment with wireless communication functions, such as refrigerators, TVs, washing machines or furniture etc.) and other terminal-side devices, wearable devices include: smart watches, smart bracelets, smart headphones
  • the network side device 12 may be a base station or a core network, where a base station may be called a node B, an evolved node B, an access point, a base transceiver station (Base Transceiver Station, BTS), a radio base station, a radio transceiver, a basic service Basic Service Set (BSS), Extended Service Set (ESS), Node B, Evolved Node B (eNB), Home Node B, Home Evolved Node B, WLAN access point, WiFi node, transmission Receiving point (Transmitting Receiving Point, TRP) or some other suitable term in the field, as long as the same technical effect is achieved, the base station is not limited to specific technical terms. It should be noted that in the embodiment of this application, only The base station in the NR system is taken as an example, but the specific type of the base station is not limited.
  • Fig. 2 is one of the schematic flowcharts of the method for measuring relaxation provided by the embodiment of the present application. As shown in Figure 2, the measurement relaxation method provided in this embodiment includes:
  • Step 101 Based on the measurement results of each cell group in at least one cell group, the low mobility state judgment criterion and the cell center judgment criterion, the terminal respectively determines the low mobility state judgment result and the cell center judgment result in each cell group.
  • the terminal in a connected state scenario, is configured with one or more cell groups, and each cell group has at least one serving cell.
  • the terminal is configured based on the measurement results of each cell group and the low mobility state judgment criteria , respectively determine the low mobility state judgment result of the terminal in each cell group, for example, the measurement result of the cell group satisfies the low mobility condition of the low mobility state judgment criterion, then the low mobility state judgment result of the terminal in the cell group is in Low mobility state, otherwise not in low mobility state.
  • the terminal Based on the measurement results of each cell group and the cell center judgment criterion, the terminal respectively determines the cell center judgment result of the terminal in each cell group. For example, if the measurement result of the cell group satisfies the cell center condition of the cell center judgment criterion, then the judgment result of the terminal at the cell center of the cell group is that it is in the cell center, otherwise it is not in the cell center.
  • the low mobility state judgment result of the terminal in the cell group may be determined based on the measurement result of a serving cell in the cell group and the corresponding low mobility state judgment criterion, or may be determined based on multiple The measurement result of the serving cell and the low mobility states corresponding to each of the multiple serving cells are determined.
  • the cell center judgment result of the terminal in the cell group may be determined based on the measurement result of a serving cell in the cell group and the corresponding cell center state judgment criterion, or may be based on the measurement results of multiple serving cells in the cell group and multiple It is determined by the judgment results of the cell centers corresponding to each of the serving cells.
  • Step 102 the terminal performs measurement relaxation in the serving cells in each cell group based on the low mobility state judgment result and the cell center judgment result of each cell group.
  • the terminal determines whether the measurement relaxation can be performed in the serving cell in the cell group based on the low mobility state judgment result of the cell group and the cell center judgment result, and if so, then in the cell group
  • the serving cell in the above performs measurement relaxation, that is, for each cell group, the terminal performs measurement relaxation on the serving cells in each cell group.
  • the judgment results of the low mobility state of the terminal in cell group a and cell group b are all in the low mobility state, and the judgment results of the cell center are both in the cell center, then perform measurement relaxation in cell group a and cell group b respectively , if the judgment result of the low mobility state in the cell group c is not the low mobility state, or the judgment result of the cell center is not in the cell center, then the measurement relaxation is not performed in the cell group c.
  • the terminal may also determine whether measurement can be performed in each serving cell in the cell group based on the judgment result of the low mobility state in the cell group and the judgment result of the cell center of each serving cell in the cell group. .
  • the judgment results of the low mobility state of the terminal in the cell group a are all in the low mobility state, and the judgment results of the cell centers of the serving cell 1 and the serving cell 2 in the cell group a are both in the cell center, then in Serving cell 1 and serving cell 2 in cell group a perform measurement relaxation respectively. If the judgment result of the cell center in serving cell 3 in cell group a is not in the cell center, then serving cell 3 in cell group a does not perform measurement Relax.
  • the terminal may also separately determine whether measurement relaxation can be performed in each serving cell in the cell group based on the low mobility state judgment result and the cell center judgment result of each serving cell in the cell group.
  • the serving cell in cell group a Cell 1 and serving cell 2 perform measurement relaxation respectively. If the judgment result of the low mobility state in the serving cell 3 in cell group a is not a low mobility state, or the judgment result of the cell center is not in the cell center, then in cell group a Serving cell 3 in does not perform measurement relaxation.
  • the measurement relaxation may, for example, increase the measurement interval, or not perform measurement within a certain period of time, so as to reduce the power consumption of the terminal.
  • the terminal based on the measurement results of each cell group in at least one cell group, the low mobility state judgment criterion and the cell center judgment criterion, the terminal respectively determines the low mobility state judgment result and the cell center judgment result in each cell group , further based on the low mobility state judgment results of each cell group and the cell center judgment result, respectively determine whether the serving cells in each cell group can perform measurement relaxation, and perform measurement relaxation on the serving cells in each cell group respectively, which can make
  • the terminal determines whether to perform measurement relaxation according to the actual situation of each cell group or each serving cell, which has a comparative advantage in terms of communication performance and power saving performance. good flexibility.
  • the measurement relaxation includes at least one of the following: radio link monitoring (Radio Link Monitoring, RLM) measurement relaxation, beam failure detection (Beam Failure Detection, BFD) measurement relaxation or radio resource management (Radio Resource Management, RRM) measurement Relax.
  • RLM Radio Link Monitoring
  • BFD Beam Failure Detection
  • RRM Radio Resource Management
  • the cell group CG configured with the low mobility state judgment criterion only includes CGs under the NR system, and does not include the CGs of the LTE system.
  • the measurement result is the measurement result of at least one of the following reference signals:
  • Synchronization Signal and PBCH block (SSB);
  • CSI-RS Channel State Information Reference Signal
  • the measurement results include any or a combination of the following:
  • RSRP Reference Signal Received Power
  • Reference Signal Received Quality Reference Signal Received Quality (Reference Signal Received Quality, RSRQ);
  • SINR Signal to Interference plus Noise Ratio
  • the measurement result is a combination
  • at least the reference signal received power RSRP is included.
  • RSRP, RSRQ or SINR are smoothed and filtered measurement results.
  • the terminal determines that the serving cell in the cell group performs The measurement is relaxed; the judgment result of the cell center is obtained based on the judgment result of the cell center corresponding to at least one serving cell in the cell group.
  • any cell group two conditions need to be satisfied at the same time, that is, the low mobility condition in the low mobility judgment criterion and the cell center condition in the cell center judgment criterion, then it is determined that the serving cell in the cell group performs The measurement is relaxed, that is, the judgment result of the low mobility state of the terminal in the cell group needs to be in the low mobility state, and the judgment result of the cell center needs to be in the cell center.
  • the low mobility state judgment result of the terminal in the cell group is obtained based on the low mobility state judgment result corresponding to at least one serving cell in the cell group. For example, it can be obtained as follows:
  • the terminal determines that the terminal is in a low mobility state as a result of the low mobility state judgment in the cell group; or,
  • the terminal determines that the terminal is in the low mobility state as a result of the low mobility state determination in the cell group.
  • the judgment result of the cell center of the terminal in the cell group is obtained based on the judgment result of the cell center corresponding to at least one serving cell in the cell group. For example, it can be obtained as follows:
  • the terminal determines that the terminal is in the center of the cell in the cell center of the cell group; or,
  • the terminal determines that the terminal is in the center of the cell in the cell center of the cell group.
  • the measurement relaxation is performed in the cell group a.
  • the terminal determines that it is in at least one serving cell.
  • Each serving cell in the cell performs measurement relaxation.
  • the terminal determines Each serving cell in at least one serving cell executes measurement relaxation, that is, the terminal executes measurement relaxation only in the serving cell that is determined to be located in the center of the cell.
  • the serving cell in cell group a For example, if the judgment results of the low mobility state of the serving cell 1 and the serving cell 2 of the terminal in cell group a are both in the low mobility state, and the judgment results of the cell center are both in the center of the cell, then the serving cell in cell group a Cell 1 and serving cell 2 perform measurement relaxation respectively.
  • any cell group two judgment criteria need to be satisfied at the same time before measurement relaxation can be performed, that is, the judgment result of the low mobility state of the terminal in the cell group needs to be in the low mobility state, and the judgment result of the cell center needs to satisfy Located in the center of the cell, the communication performance of the terminal can be guaranteed, and each serving cell in the cell group can also perform measurement relaxation separately, which is more flexible.
  • step 102 also includes several possible implementations as follows:
  • each cell group if it is determined based on the low mobility state judgment result and the cell center judgment result that measurement relaxation is performed in the secondary cell group (Secondary Cell Group, SCG), the terminal performs measurement relaxation in the serving cell in the SCG.
  • SCG Secondary Cell Group
  • the terminal may be determined to perform measurement relaxation in other cell groups according to the determination result of performing measurement relaxation in the MCG, that is, in the MCG-based low mobility state
  • the judgment result and the cell center judgment result determine that when the serving cell in the MCG performs measurement relaxation, the terminal performs measurement relaxation on the serving cells in all cell groups in each cell group.
  • the terminal When there is a secondary cell group SCG in each cell group, and it is determined based on the low mobility state judgment result of the SCG and the cell center judgment result that the measurement relaxation is performed on the serving cell in the SCG, the terminal performs measurement relaxation on the serving cell in the SCG. Measure relaxation.
  • the measurement relaxation is performed on the serving cells in the secondary cell groups SCG1 and SCG2 , if the judgment result of the low mobility state in the secondary cell group SCG3 is not the low mobility state, or the judgment result of the cell center is not in the cell center, then the serving cell in SCG3 does not perform measurement relaxation.
  • the terminal performs measurement relaxation in the SCG.
  • Measurement relaxation can only be performed on the serving cell in the SCG, that is, when the judgment result of the cell center of the SCG is in the center of the cell, and the judgment result of the low mobility state of the SCG is in the low mobility state, the terminal in the SCG
  • the serving cell can perform measurement relaxation.
  • the terminal performs measurement relaxation on the serving cells in all cell groups in each cell group
  • the secondary cell group SCG in all cell groups it can be further determined that the terminal is in the cell center of the SCG Whether the judgment result is the cell center, if it is the cell center, the terminal performs measurement relaxation in the serving cell in the SCG.
  • the low mobility state judgment criterion is configured by the network side device, and the configuration method of the low mobility state judgment criterion includes, for example: based on terminal configuration, based on cell group configuration or based on serving cell configuration.
  • the configuration level of the low mobility state judgment criterion is the terminal level, that is, the configuration is valid for all serving cells of all cell groups of the terminal; based on cell group configuration, it refers to What is meant is that the configuration level of the low mobility state judgment criterion is the cell group level, that is, the configuration is effective for all serving cells of a specific cell group of the terminal; based on the serving cell configuration, it refers to the low mobility state judgment criterion
  • the level of the configuration is the serving cell level, that is, the configuration takes effect for a certain serving cell of the terminal.
  • step 101 the terminal determines the low mobility state judgment result in each cell group based on the measurement results of each cell group and the low mobility state judgment criterion, which can be realized in the following ways:
  • the terminal determines based on the measurement results of the primary secondary cell (Primary Secondary Cell, PSCell) in the NR secondary cell group SCG configured by the network side device for the first time The judgment result of the low mobility state of the terminal in each cell group; or,
  • the terminal determines the low mobility state judgment result of the terminal in each cell group.
  • the terminal Based on the measurement results of at least one serving cell in each cell group, the terminal separately determines the low mobility state judgment results of the terminal in each cell group; or,
  • the configuration mode of the judgment criterion of the low mobility state is based on cell group configuration
  • the terminal determines the low mobility state judgment result of the terminal in each cell group based on the measurement results of the primary cell PCell or the primary secondary cell PSCell of each cell group; or,
  • the terminal Based on the measurement results of at least one serving cell in each cell group, the terminal respectively determines the low mobility state judgment result of the terminal in each cell group.
  • the network side device can configure the low mobility state judgment criterion based on the terminal, serving cell or cell group.
  • the terminal may determine the low mobility state of the cell group in different ways, that is, the terminal needs to know the criteria based on The measurement results of which cell or cells in the cell group determine the low mobility state of the terminal in the cell group, so the terminal needs to know the configuration method of the current low mobility state judgment criterion from the network side device, and the terminal is based on this configuration method , to determine the low mobility state of the terminal in the cell group.
  • the low mobility state judgment criterion configured for the terminal is applicable to each cell group, that is, the same low mobility state judgment criterion can be used for each cell group, for For a certain terminal, the low mobility state judgment criterion may be configured, or may not be configured.
  • different cell groups are configured with low mobility state judgment criteria, and the values of the relevant parameters of the low mobility state judgment criteria configured by different cell groups can be the same or different.
  • the low mobility state judgment criterion may be configured, or may not be configured. If a certain cell group is not configured with the low mobility state judgment criterion, the terminal does not need to determine whether it is in the low mobility state in the cell group, and does not perform measurement relaxation in the cell group.
  • the low mobility state judgment criterion may be configured, or may not be configured. If a serving cell is not configured with the low mobility state judgment criterion, the terminal does not need to determine whether it is in the low mobility state in the serving cell, and measurement relaxation is not performed in the serving cell.
  • the terminal is based on the primary and secondary cell PSCell in the NR SCG configured by the network side device for the first time
  • the measurement result determines the judgment result of the low mobility state of the terminal in the cell group, that is, determines whether the judgment result of the low mobility state of the terminal in the cell group is a low mobility state, for example, the measurement result of the primary and secondary cell PSCell is compared with a certain A measurement reference value comparison, if the difference is small, the terminal is in the low mobility state, and if the difference is large, the terminal is not in the low mobility state.
  • the first configuration refers to, for example, the first RRC reconfiguration message containing SCG configuration received by the terminal after entering the RRC connection state.
  • the initial value of the measurement reference value may be configured by the network side device or determined by the terminal itself.
  • the measurement reference value can also be updated based on the measurement result. That is, in this case, the low mobility state judgment result of the terminal in the PSCell may be used to indicate the low mobility state judgment result of the terminal in the cell group.
  • the terminal determines the low mobility of the terminal in the cell group based on the measurement results of the primary cell PCell or the primary and secondary cell PSCell of the cell group. Judgment result of the mobility state, that is, to determine whether the judgment result of the low mobility state of the terminal in the cell group is a low mobility state. If there is a primary cell PCell, based on the measurement result of the primary cell PCell, determine the low As for the mobility state judgment result, if there is no primary cell PCell and there is a primary secondary cell PSCell, the low mobility state judgment result of the terminal in the cell group is determined based on the measurement result of the primary secondary cell PSCell.
  • the low mobility state judgment result of the terminal in the primary cell PCell or the primary secondary cell PSCell may be used to indicate the low mobility state judgment result of the terminal in the cell group.
  • the terminal determines the low mobility state judgment result of the terminal in the cell group based on the measurement results of each serving cell in the cell group, That is to determine whether the low mobility status judgment result of the terminal in the cell group is a low mobility status, for example, if the low mobility judgment results of the terminal in each serving cell can be determined separately, based on the low mobility judgment result of the terminal in each serving cell , determine whether the judgment result of the low mobility state of the terminal in the cell group is a low mobility state, for example, if the terminal is in a low mobility state in at least one of the serving cells, then the low mobility state of the terminal in the cell group can be determined If the judgment result is the low mobility state, or if the terminal is in the low mobility state in all serving cells, then it can be determined that the judgment result of the low mobility state of the terminal in the cell group is the low mobility state.
  • the terminal determines the low mobility of the terminal in the cell group based on the measurement results of the primary cell Pcell or the primary and secondary cell PSCell of the cell group
  • the state judgment result is similar to the embodiment based on the terminal configuration, and will not be described again this time.
  • the terminal determines the low mobility state judgment result of the terminal in the cell group based on the measurement results of each serving cell in the cell group, and Embodiments based on terminal configuration are similar, and details will not be repeated this time.
  • the terminal determines the judgment result of the low mobility state of the terminal in the cell group based on the measurement results of each serving cell in the cell group.
  • the terminal determines that the terminal is in a low mobility state as a result of the low mobility state judgment in the cell group;
  • the terminal determines that the terminal is in the low mobility state as a result of the low mobility state determination in the cell group.
  • the terminal can determine the measurement results of which serving cells in the cell group based on the configuration method of the low mobility state judgment criterion sent by the network side device, and determine the low mobility judgment result of the terminal in the cell group, which is complicated to process. lower degree.
  • the criterion for judging the cell center may be configured by the network side device, may also be predefined, or configured implicitly.
  • the network side device can configure the cell center judgment criterion based on the terminal, serving cell or cell group.
  • the terminal may determine the cell center judgment result of the cell group in different ways, that is, the terminal needs to know which cell in the cell group is based on Or the measurement results of which cells determine the judgment result of the terminal in the cell center of the cell group, so the terminal needs to know whether the cell center judgment criteria are configured for each serving cell in the current cell group, and then determine whether the terminal is in the cell center judgment of the cell group result.
  • the cell center judgment criterion configured for the terminal is applicable to each cell group.
  • the cell center judgment criterion can be configured or not configured. Criteria for judging the center of the community.
  • different cell groups are configured with cell center judgment criteria, and the values of the relevant parameters of the cell center judgment criteria for different cell group configurations can be the same or different.
  • the criterion for judging the cell center may be configured, or may not be configured. If a cell group is not configured with the cell center judgment criterion, the criterion for the terminal to determine whether it is in the cell center in the cell group is predefined by the protocol or user-defined by the terminal.
  • different serving cells are configured with cell center judgment criteria, and the values of relevant parameters of the cell center judgment criteria configured in different serving cells can be the same or different.
  • the criterion for judging the cell center may be configured, or may not be configured. If a certain serving cell is not configured with the criterion for judging the cell center, the criterion for determining whether the terminal is in the center of the cell in the serving cell is predefined by the protocol or user-defined by the terminal.
  • the cell center judgment criterion is not configured by the network side device, for example, it is predefined, when determining the cell center judgment result of the terminal in the cell group, it can be determined based on the same configuration method as the low mobility state judgment criterion.
  • the low mobility state judgment criterion is configured by a network side device, if the configuration method of the low mobility state judgment criterion is based on terminal configuration, then the configuration method of the cell center judgment criterion is based on terminal configuration ;
  • the configuration mode of the judging criterion of the low mobility state is configured based on the cell group
  • the configuration mode of the judging criterion of the cell center is configured based on the cell group
  • the configuration manner of the judging criterion of the low mobility state is configured based on the serving cell
  • the configuration manner of the judging criterion of the cell center is configured based on the serving cell.
  • the configuration flexibility of the cell center judgment criterion is relatively large. Since whether it is in the cell center or not is related to the implementation performance and algorithm of the terminal, the configuration method of the actual cell center judgment criterion can be relatively flexible; by using the low mobility state The configuration method of the cell center judgment criterion is determined by using the configuration method, which can achieve a better effect of reducing signaling overhead.
  • step 101 the terminal determines the judgment result of the cell center in each cell group based on the measurement results of each cell group and the cell center judgment criteria" in step 101, which can be implemented in the following manner:
  • the terminal determines the cell center of the terminal in each cell group based on the measurement results of the primary and secondary cells PSCell in the NR secondary cell group SCG configured by the network side device for the first time. judgment; or,
  • the terminal Based on the measurement results of the primary cell PCell or primary secondary cell PSCell of each cell group, the terminal respectively determines the judgment result of the terminal in the cell center of each cell group; or,
  • the terminal Based on the measurement results of each serving cell in each cell group, the terminal separately determines the judgment result of the terminal in the cell center of each cell group;
  • the terminal Based on the measurement results of the primary cell Pcell or primary secondary cell PSCell of each cell group, the terminal respectively determines the judgment result of the terminal in the cell center of each cell group; or,
  • the terminal Based on the measurement results of each serving cell in each cell group, the terminal respectively determines the judgment result of the terminal being in the cell center of each cell group.
  • the terminal is based on the primary and secondary cells in the NR SCG configured by the network side device for the first time
  • the measurement result of the PSCell determines the judgment result of the terminal in the cell center of the cell group, that is, determines whether the judgment result of the terminal in the cell center of the cell group is the cell center, for example, compares the measurement result of the primary and secondary cell PSCell with a certain threshold, If it is greater than or equal to the threshold, the terminal is in the center of the cell, and if it is smaller than the threshold, the terminal is not in the center of the cell.
  • the threshold may be configured by a device on the network side or determined by the terminal itself. That is, in this case, the judgment result of the terminal being in the cell center of the primary and secondary cell PSCell may be used to indicate the judgment result of the terminal being in the cell center of the cell group.
  • the terminal determines the low mobility state of the terminal in the cell group based on the measurement results of the primary cell PCell or the primary and secondary cell PSCell of the cell group Judgment result, that is to determine whether the judgment result of the terminal in the cell center of the cell group is the cell center, if there is a primary cell PCell, then determine the judgment result of the terminal in the cell center of the cell group based on the measurement result of the primary cell PCell, if not If the primary cell PCell exists and the primary secondary cell PSCell exists, then based on the measurement result of the primary secondary cell PSCell, the determination result of the terminal being in the cell center of the cell group is determined.
  • the measurement result of the primary cell PCell or the primary secondary cell PSCell is compared with a certain threshold. If it is greater than or equal to the threshold, the terminal is in the center of the cell; if it is smaller than the threshold, the terminal is not in the center of the cell. That is, in this case, the judgment result of the terminal being in the cell center of the primary cell PCell or the primary and secondary cell PSCell can be used to indicate that the terminal is in the cell center judgment result of the cell group.
  • the terminal determines the judgment result of the terminal in the cell center of the cell group based on the measurement results of each serving cell in the cell group, that is, determines that the terminal is in the cell center of the cell group.
  • the judgment result of the cell center of the cell group is the cell center, for example, if the judgment result of the cell center of the terminal in each serving cell can be determined separately, based on the judgment result of the cell center of the terminal in each serving cell, determine whether the terminal is in the cell center of the cell group Whether the result is a cell center, for example, in at least one of the serving cells, the terminal is in the cell center, it can be determined that the terminal is in the cell center of the cell group, and the judgment result is the cell center, or, in all the serving cells, the terminal is in the cell center, Then it can be determined that the terminal is in the cell center of the cell group as the cell center.
  • the terminal determines the judgment result of the cell center of the terminal in the cell group based on the measurement results of the primary cell Pcell or the primary and secondary cell PSCell of the cell group, Similar to the embodiment based on terminal configuration, details will not be repeated this time.
  • the terminal determines the judgment result of the cell center of the terminal in the cell group based on the measurement results of each serving cell in the cell group, which is different from the result based on the configuration of the terminal.
  • the embodiments are similar and will not be repeated this time.
  • the terminal determines the judgment result of the terminal being in the cell center of the cell group based on the measurement results of each serving cell in the cell group.
  • the terminal determines that the terminal is in the cell center of the cell group and the judgment result is that it is in the cell center;
  • the terminal determines that the terminal is in the center of the cell in the cell center of the cell group.
  • the terminal can determine which serving cells in the cell group are based on the measurement results of the cell center based on the configuration of the cell center judgment criterion, and determine the judgment result of the terminal being in the cell center of the cell group, and the processing complexity is relatively low.
  • the terminal determines the low mobility state judgment result of the terminal in the cell group based on the measurement results of the primary cell Pcell or primary secondary cell PSCell of the cell group.
  • the terminal based on the measurement results of the primary cell PCell or the primary secondary cell PSCell, determining a low mobility state judgment result of the terminal in the first frequency band;
  • the terminal determines the low mobility state judgment result of the first frequency band as the low mobility of the terminal in the second frequency band critical result.
  • the cell group includes cells of multiple frequency bands, for example, cells of the first frequency band and cells of the second frequency band, assuming that there is a primary cell PCell or a primary and secondary cell PSCell in the cells of the first frequency band, and cells of the second frequency band If there is no primary cell PCell or primary secondary cell PSCell, the terminal determines the low mobility state judgment result of the terminal in the first frequency band based on the primary cell PCell or primary secondary cell PSCell, that is, if there is a primary cell PCell, then based on the primary cell PCell The measurement result of the cell PCell determines the low mobility state judgment result of the terminal in the first frequency band.
  • the low mobility state judgment result of the terminal in the primary cell PCell or primary secondary cell PSCell may be used to indicate the low mobility state judgment result of the terminal in the first frequency band.
  • the terminal determines the low mobility state judgment result of the first frequency band as the low mobility judgment result of the terminal in the second frequency band, that is, the low mobility judgment result of the terminal in the second frequency band can adopt the low mobility state of the first frequency band Status judgment result.
  • the low mobility state judgment results of the terminal in different frequency bands can be determined respectively, which is more flexible.
  • the terminal determines the judgment result that the terminal is in the cell center of the cell group based on the measurement results of the primary cell Pcell or the primary secondary cell PSCell of the cell group.
  • the terminal based on the measurement of the primary cell PCell or the primary secondary cell PSCell As a result, determine the judgment result of the cell center of the terminal in the first frequency band;
  • the terminal determines the cell center judgment result of the terminal in the second frequency band based on the measurement result of the secondary cell SCell in the second frequency band .
  • the terminal determines the judgment result of the cell center of the terminal in the first frequency band based on the primary cell PCell or the primary secondary cell PSCell, that is, if there is a primary cell PCell, then based on the measurement of the primary cell PCell As a result, the determination result of the cell center of the terminal in the first frequency band is determined. If there is no primary cell PCell and there is a primary and secondary cell PSCell, the determination result of the terminal's cell center in the first frequency band is determined based on the measurement results of the primary and secondary cell PSCell. That is, in this case, the determination result of the terminal being in the cell center of the primary cell PCell or the primary secondary cell PSCell may be used to indicate the determination result of the terminal being in the cell center of the first frequency band.
  • the determination result of the cell center of the terminal in the second frequency band is determined.
  • the determination results of the cell center of the terminal in different frequency bands may be respectively determined.
  • step 102 may be performed in the following manner:
  • the terminal performs measurement relaxation in the serving cell in the first frequency band based on the judgment result of the low mobility state of the terminal in the first frequency band and the judgment result of the cell center;
  • the terminal performs measurement relaxation on the serving cell in the second frequency band based on the low mobility state judgment result and the cell center judgment result of the terminal in the second frequency band.
  • the low mobility state judgment results and the cell center judgment results of the terminal in different frequency bands can be determined separately, and then measurement relaxation can be performed in different frequency bands, which is more flexible.
  • step 101 "determine the low mobility state judgment results in each cell group based on the measurement results of each cell group and the low mobility state judgment criterion" can be implemented in the following manner:
  • the terminal determines the low mobility state judgment result of the terminal in each of the cell groups based on the measurement result of the first or the latest serving cell configured with a low mobility state judgment criterion; or,
  • the terminal determines the low mobility status judgment result of the terminal in each cell group based on the measurement results of the primary cell Pcell or the primary secondary cell PSCell of each cell group; or,
  • the terminal Based on the measurement results of at least one serving cell in each cell group, the terminal respectively determines the low mobility state judgment result of the terminal in each cell group.
  • the terminal is based on the measurement of the first or latest serving cell configured with the low mobility state judging criterion
  • determine the low-mobility state judgment result of the terminal in the cell group that is, determine whether the low-mobility state judgment result of the terminal in the cell group is a low-mobility state, for example, compare the measurement result of the serving cell with a measurement reference If the difference is small, the terminal is in the low mobility state, and if the difference is large, the terminal is not in the low mobility state.
  • the initial value of the measurement reference value may be configured by the network side device or determined by the terminal itself.
  • the first or latest serving cell configured with the low mobility state judgment criterion refers to the first serving cell configured when the network side device configures the low mobility state judgment criterion, or a newly configured serving cell.
  • the network side device indicates that serving cell 1, serving cell 2, and serving cell 3 are configured with a low mobility state judgment criterion, for example, only one serving cell is configured with a low mobility state judgment criterion at a time, then serving cell 1 is the first
  • the latest configuration is, for example, the serving cell corresponding to the latest configuration in the current time interval.
  • the low-mobility state judgment result of the terminal in the first or last serving cell configured with low-mobility state judgment criteria can be used to indicate the low-mobility state judgment result of the terminal in the cell group.
  • the terminal determines the low mobility status of the terminal in the cell group based on the measurement results of the primary cell PCell or the primary and secondary cell PSCell of the cell group.
  • Mobility state judgment result that is, to determine whether the judgment result of the low mobility state of the terminal in the cell group is a low mobility state. If there is a primary cell PCell, then based on the measurement result of the primary cell PCell, it is determined that the terminal is in the cell group.
  • the low mobility state judgment result of the terminal in the cell group is determined based on the measurement result of the primary and secondary cell PSCell. For example, compare the measurement result of the primary cell PCell or primary secondary cell PSCell with a certain measurement reference value, if the difference is small, the terminal is in the low mobility state, and if the difference is large, the terminal is not in the low mobility state state. That is, in this case, the low mobility state judgment result of the terminal in the primary cell PCell or the primary secondary cell PSCell may be used to indicate the low mobility state judgment result of the terminal in the cell group.
  • the terminal determines the low mobility state judgment result of the terminal in the cell group based on the measurement results of each serving cell in the cell group , that is, to determine whether the low mobility state judgment result of the terminal in the cell group is a low mobility state, for example, if the low mobility judgment results of the terminal in each serving cell can be determined separately, based on the low mobility judgment of the terminal in each serving.
  • determine whether the judgment result of the low mobility state of the terminal in the cell group is a low mobility state for example, if the terminal is in a low mobility state in at least one serving cell, then the low mobility of the terminal in the cell group can be determined If the state judgment result is the low mobility state, or if the terminal is in the low mobility state in all serving cells, then it can be determined that the low mobility state judgment result of the terminal in the cell group is the low mobility state.
  • the terminal can determine the measurement results of which serving cells in the cell group based on the configuration method of the low mobility state judgment criterion sent by the network side device, and determine the low mobility judgment result of the terminal in the cell group, which is complicated to process. lower degree.
  • step 101 "based on the measurement results of each cell group and the cell center judgment criteria, respectively determine the cell center judgment results in each of the cell groups" can be implemented in the following manner:
  • the terminal determines the cell center judgment result of each terminal in the cell group based on the measurement result of the first or latest serving cell configured with the cell center judgment criterion ;or,
  • the terminal Based on the measurement results of the primary cell Pcell or primary secondary cell PSCell of each cell group, the terminal respectively determines the judgment result of the terminal in the cell center of each cell group; or,
  • the terminal Based on the measurement results of each serving cell in each cell group, the terminal respectively determines the judgment result of the terminal being in the cell center of each cell group.
  • the configuration method of the cell center judgment criterion is based on the configuration of the serving cell, for any cell group, determining the cell center judgment result of the terminal in the cell group is different from determining the low mobility state of the terminal in the cell group The judgment results are similar and will not be repeated this time.
  • the terminal can determine the measurement results of which serving cells in the cell group based on the configuration method of the low mobility state judgment criterion sent by the network side device, determine the judgment result of the terminal in the cell center of the cell group, and the processing complexity lower.
  • the terminal determines the low mobility state of the terminal in the cell group based on the measurement results of the primary cell Pcell or the primary and secondary cell PSCell of the cell group Judgment result", based on the judgment result of the low mobility state of the terminal in the cell group, performing measurement relaxation can be implemented in the following ways:
  • the terminal determines the judgment result of the terminal being in the cell center of the cell group based on the measurement result of the secondary cell SCell used for beam failure detection BFD measurement;
  • the terminal Based on the judgment result of the low mobility state of the terminal in the cell group and the judgment result of the terminal in the cell center of the cell group, the terminal performs BFD measurement relaxation in the serving cell in the cell group.
  • the terminal determines the judgment result of the terminal being in the cell center of the cell group based on the measurement result of the SCell, and Based on the judgment result of the low mobility state of the terminal in the cell group and the judgment result of the cell center, determine whether the serving cell in the cell group performs BFD measurement relaxation.
  • the low mobility state judgment result is based on the primary cell PCell or Determined by the measurement results of the primary and secondary cells PSCell.
  • the terminal cannot determine whether the serving cell in the cell group performs BFD measures relaxation.
  • the determination result of the cell center of the terminal in the cell group can be determined based on the measurement result of the SCell used to determine the BFD measurement, and based on the determination result of the low mobility state of the terminal in the cell group, it can be determined
  • the measurement relaxation is performed, and while the measurement overhead is reduced, the cells performing the measurement relaxation are more targeted.
  • the method for measuring relaxation also includes:
  • the terminal When the terminal is in the idle state and has determined that the terminal is in the low mobility state in the cell group, after entering the connected state, the terminal determines that the low mobility state judgment result is in the low mobility state, and sends a notification to the network side device Send the low mobility state judgment result.
  • the measurement can be performed in advance Measurement (early measurement), and based on the low mobility state judgment criteria of the idle state, the terminal has judged that it is in the low mobility state in the idle state, then the terminal is in the low mobility state and can be reused in the connected state, that is, the terminal is determined It is also in the low mobility state in the connected state, and reports to the network side device that the terminal is in the low mobility state after entering the connected state.
  • the result determined by the terminal in the idle state that it is in the low mobility state is used in the connected state, and the terminal does not need to judge based on the measurement results, reducing unnecessary processing, and further reducing the work of the terminal. consumption and save processing time.
  • the method for measuring relaxation also includes:
  • the terminal determines whether the low mobility judgment result of the terminal in the cell group is in a low mobility state
  • the terminal stops performing measurement relaxation in the cell group.
  • the measurement relaxation method further includes:
  • the terminal determines whether the terminal is in the center of the cell in the cell group
  • the terminal stops performing measurement relaxation in the cell group.
  • the judging cycle of the low mobility state may be a paging (paging cycle) cycle configured by the network, or other values configured by the network.
  • the terminal also judges whether it is necessary because the cell center is not satisfied according to the current measurement results. Judgment criteria and exit the measurement relaxation state.
  • the terminal may report to the network side device whether it is currently in the low mobility state, or whether it is in the cell center.
  • the criteria for judging the cell center may be predefined or implicitly configured.
  • the terminal determines the cell where the terminal is in the serving cell based on the first indication information of the network side device. Center Judgment Criteria in effect.
  • a 1-bit indication bit is used to indicate whether the cell center judgment criterion is valid.
  • the configuration manner of the cell center judgment criterion may also be determined based on the configuration manner of the first indication information. For example, if the configuration method of the first indication information is based on the configuration of the terminal, the judgment criterion of the cell center also adopts the configuration method based on the terminal; If the configuration method of the first indication information is based on the cell group configuration, then the cell center judgment criterion also adopts the configuration method based on the cell group.
  • the terminal can determine whether the cell center judgment criterion is in effect based on the indication information sent by the network side device, or determine the configuration method of the cell center judgment criterion based on the configuration method of the indication information, and then can determine based on which in the cell group
  • the measurement result of the serving cell determines the judgment result of the terminal being in the cell center of the cell group, and the processing complexity is relatively low.
  • the measurement relaxation method includes the following steps:
  • Step 1a Receive the relevant parameters of the low mobility state judgment criterion configured by the network side device, such as the duration T SearchDeltaP , the threshold S SearchDeltaP , the judgment period, etc., and the relevant parameters of the cell center judgment criterion, such as the threshold.
  • relevant parameters of the cell center judgment criterion may not be configured or implicitly configured. For example, based on the indication information indicating whether the cell center judgment criterion is valid, the terminal determines whether it is necessary to judge whether the cell center judgment criterion is satisfied on a cell where RLM, BFD or RRM measurement is performed in a certain CG. If it is necessary to make a judgment, the terminal Determine the relevant parameters in the judgment criteria of the community center by themselves.
  • the low mobility state judgment criterion configuration can be valid for all CGs.
  • SIB NR System Information Block
  • the low mobility state judging criterion can be directly configured in SIB2.
  • the network side device may also configure the low mobility state judgment criterion in a certain signaling (such as radio resource control (Radio Resource Control, RRC) connection establishment signaling).
  • RRC Radio Resource Control
  • the low mobility state judgment criterion is based on a certain signaling (such as radio resource Control (Radio Resource Control, RRC) signaling), at this time, at this time, the network side device can configure the low mobility state judgment criterion only in the signaling for configuring NR SCG for the first time.
  • RRC Radio Resource Control
  • the low mobility state judging criterion is valid for all CGs, judge whether a serving cell needs to perform RLM/BFD measurement based on other information.
  • BFD measures relaxation. These cells that need to perform RLM/BFD measurement include at least all PCells and PSCells, and also include some SCells that need to perform BFD measurement.
  • measuring relaxation may also include RRM measuring relaxation. Since the RRM measurement needs to be performed on all serving cells, if the low mobility state judgment criterion is configured to be effective for all CGs, the terminal can further perform on each serving cell according to the configured or predefined The judgment criterion of the cell center determines whether measurement relaxation can be performed.
  • the network side device may further indicate whether the serving cell can perform RLM/BFD/RRM measurement relaxation through indication information, for example, configuring a 1-bit indication bit in the indication information in a certain serving cell. For example, when the indication bit is set to 1, it indicates that the cell does not perform RLM/BFD/RRM measurement relaxation.
  • the network can more flexibly control the measurement relaxation behavior of the terminal in certain specific cells to ensure the performance of the terminal .
  • Step 2a The terminal starts to judge the measurement results of the serving cell on the corresponding serving cell based on the low mobility state judgment criterion configured by the network side device, determines the low mobility state judgment result, and based on the cell center judgment criterion, Determine the judgment result of the community center.
  • the secondary cell SCell also performs RLM/BFD/RRM measurement relaxation.
  • the terminal judges the frequency band on the frequency band including the primary cell PCell or the primary secondary cell PSCell based on the measurement results of the primary cell PCell or the primary secondary cell PSCell. Whether the cell needs to perform RLM/BFD/RRM measurement relaxation; on the frequency band that does not include the PCell of the primary cell or the PSCell of the primary and secondary cells, the terminal judges whether to perform RLM/BFD/RRM measurement relaxation based on the measurement results of the SCell.
  • the terminal only judges whether the cell center judgment criterion is met based on the SCell measurement result, that is, whether it is in the cell center, and then based on the low mobility state corresponding to the PCell or PSCell in the same CG Judging the result, determine whether to perform RLM/BFD/RRM measurement relaxation.
  • RLM/BFD/RRM measurement relaxation is performed only for SCGs judged to be eligible for measurement relaxation;
  • the MCG judgment is that RLM/BFD/RRM measurement can be relaxed, as long as the SCG judges that the cell center judgment criterion is satisfied, the RLM/BFD/RRM measurement relaxation will also be performed; if the MCG judgment result is that RLM/BFD/RRM measurement cannot be performed If the RLM/BFD/RRM measurement is relaxed, the SCG must satisfy both the cell center judgment criterion and the low mobility state judgment criterion.
  • Step 3a After determining to perform measurement relaxation, the terminal enters the corresponding measurement relaxation state, and judges the periodic configuration requirements according to the low mobility state, continuously judges whether the low mobility state is satisfied, and exits the measurement relaxation state if not satisfied; in addition, The terminal also judges whether it needs to exit the measurement relaxation state because the criterion for judging the cell center is not satisfied according to the current measurement result.
  • Step 4a The terminal exits the measurement relaxation state, and returns to Step 2a for continuous judgment.
  • the measurement relaxation method includes the following steps:
  • Step 1b Receive relevant parameters of the low mobility state judgment criterion configured by the network side device, such as duration T SearchDeltaP , threshold S SearchDeltaP , judgment cycle, etc., and relevant parameters of the cell center judgment criterion, such as threshold.
  • relevant parameters of the cell center judgment criterion may not be configured or implicitly configured. For example, based on the indication information indicating whether the cell center judgment criterion is valid, the terminal determines whether it is necessary to judge whether the cell center judgment criterion is satisfied on a cell where RLM, BFD or RRM measurement is performed in a certain CG. If it is necessary to make a judgment, the terminal Determine the relevant parameters in the judgment criteria of the community center by themselves.
  • the low mobility state judging criterion can be configured with relevant parameters in the CG configuration, so it only takes effect for the current CG.
  • the configured CG can only be the CG of NR, not the CG of LTE.
  • the terminal can judge whether it is in a low mobility state based on the measurement results of the PSCell in the NR SCG, and then apply the judgment results to all serving cells under the SCG; the terminal can also judge whether the low mobility is based on the measurement results of each serving cell. sexual status.
  • the terminal further judges whether a certain serving cell needs to perform RLM/BFD measurement based on other information, and judges whether RLM/BFD can be performed in a cell that needs to be measured according to the cell center criterion Measure relaxation.
  • These cells that need to perform RLM/BFD measurement include at least all PCells and PSCells, and also include some SCells that need to perform BFD measurement.
  • the network side device may further indicate whether the serving cell can perform RLM/BFD/RRM measurement relaxation through indication information, for example, configuring a 1-bit indication bit in the indication information in a certain serving cell. For example, when the indication bit is set to 1, it indicates that the cell does not perform RLM/BFD/RRM measurement relaxation.
  • the network can more flexibly control the measurement relaxation behavior of the terminal in certain specific cells to ensure the performance of the terminal .
  • Step 2b The terminal starts to judge the measurement results of the serving cell on the corresponding serving cell based on the low mobility state judgment criterion configured by the network side equipment, determines the low mobility state judgment result, and based on the cell center judgment criterion, Determine the judgment result of the community center.
  • the secondary cell SCell also performs RLM/BFD/RRM measurement relaxation.
  • the terminal judges the frequency band on the frequency band including the primary cell PCell or the primary secondary cell PSCell based on the measurement results of the primary cell PCell or the primary secondary cell PSCell. Whether the cell needs to perform RLM/BFD/RRM measurement relaxation; on the frequency band that does not include the PCell of the primary cell or the PSCell of the primary and secondary cells, the terminal judges whether to perform RLM/BFD/RRM measurement relaxation based on the measurement results of the SCell.
  • the terminal only judges whether the cell center judgment criterion is met based on the SCell measurement result, that is, whether it is in the cell center, and then based on the low mobility state corresponding to the PCell or PSCell in the same CG Judging the result, determine whether to perform RLM/BFD/RRM measurement relaxation.
  • RLM/BFD/RRM measurement relaxation is performed only for SCGs judged to be eligible for measurement relaxation;
  • the MCG judgment is that RLM/BFD/RRM measurement can be relaxed, as long as the SCG judges that the cell center judgment criterion is satisfied, the RLM/BFD/RRM measurement relaxation will also be performed; if the MCG judgment result is that RLM/BFD/RRM measurement cannot be performed If the RLM/BFD/RRM measurement is relaxed, the SCG must satisfy both the cell center judgment criterion and the low mobility state judgment criterion.
  • Step 3b After determining to perform measurement relaxation, the terminal enters the corresponding measurement relaxation state, and judges the periodic configuration requirements according to the low mobility state, and continuously judges whether the low mobility state is satisfied, and exits the measurement relaxation state if not satisfied; in addition, The terminal also judges whether it needs to exit the measurement relaxation state because the criterion for judging the cell center is not satisfied according to the current measurement result.
  • Step 4b The terminal exits the measurement relaxation state, and returns to Step 2a for continuous judgment.
  • the measurement relaxation method includes the following steps:
  • Step 1c Receive relevant parameters of the low mobility state judgment criterion configured by the network side device, such as duration T SearchDeltaP , threshold S SearchDeltaP , judgment cycle, etc., and relevant parameters of the cell center judgment criterion, such as threshold.
  • relevant parameters of the cell center judgment criterion may not be configured or implicitly configured. For example, based on the indication information indicating whether the cell center judgment criterion is valid, the terminal determines whether it is necessary to judge whether the cell center judgment criterion is satisfied on a cell where RLM, BFD or RRM measurement is performed in a certain CG. If it is necessary to make a judgment, the terminal Determine the relevant parameters in the judgment criteria of the community center by themselves.
  • the low mobility state judging criterion can be configured with relevant parameters in the configuration of each serving cell, so it only takes effect for the current serving cell.
  • the configured serving cell can only be the serving cell of NR, and cannot be the serving cell of LTE.
  • the terminal determines whether measurement relaxation can be performed according to the first or latest serving cell configured with a low mobility state determination criterion.
  • the network side device can configure the low mobility state judgment criterion only in the cell that needs to perform RLM and/or BFD, that is, the terminal is based on the PCell and PSCell in the CG and the SCell that needs to perform BFD measurement. Determine whether measurement relaxation can be performed.
  • the UE further judges whether a certain serving cell needs to perform RLM/BFD measurement based on other information.
  • BFD measures relaxation.
  • the cells that need to perform RLM/BFD measurement include at least all PCells and PSCells, and also include some SCells that need to perform BFD measurement.
  • the terminal judges whether to perform measurement relaxation on the SCell that needs to perform BFD measurement in the CG. For example, if only one of the SCells in a certain frequency band is configured to perform BFD measurement relaxation, the terminal can select the Take measurements on and relax BFD measurements when conditions are met. If the terminal performs BFD measurement on other SCells in this frequency band or SCells in other frequency bands, the terminal may consider that BFD measurement cannot be performed on other SCells in this frequency band or SCells in other frequency bands.
  • Step 2c The terminal starts to judge the measurement results of the serving cell on the corresponding serving cell based on the low mobility state judgment criterion configured by the network side equipment, determines the low mobility state judgment result, and based on the cell center judgment criterion, Determine the judgment result of the community center.
  • the terminal needs to report at least one of the following to the network side device in the corresponding CG: low mobility state judgment result, cell center judgment result or whether to perform measurement relaxation.
  • the secondary cell SCell also performs RLM/BFD/RRM measurement relaxation.
  • the terminal judges the frequency band on the frequency band including the primary cell PCell or the primary secondary cell PSCell based on the measurement results of the primary cell PCell or the primary secondary cell PSCell. Whether the cell needs to perform RLM/BFD/RRM measurement relaxation; on the frequency band that does not include the PCell of the primary cell or the PSCell of the primary and secondary cells, the terminal judges whether to perform RLM/BFD/RRM measurement relaxation based on the measurement results of the SCell.
  • the terminal only judges whether the cell center judgment criterion is met based on the SCell measurement result, that is, whether it is in the cell center, and then based on the low mobility state corresponding to the PCell or PSCell in the same CG Judging the result, determine whether to perform RLM/BFD/RRM measurement relaxation.
  • RLM/BFD/RRM measurement relaxation is performed only for SCGs judged to be eligible for measurement relaxation;
  • the MCG judgment is that RLM/BFD/RRM measurement can be relaxed, as long as the SCG judges that the cell center judgment criterion is satisfied, the RLM/BFD/RRM measurement relaxation will also be performed; if the MCG judgment result is that RLM/BFD/RRM measurement cannot be performed If the RLM/BFD/RRM measurement is relaxed, the SCG must satisfy both the cell center judgment criterion and the low mobility state judgment criterion.
  • Step 3c After determining to perform measurement relaxation, the terminal enters the corresponding measurement relaxation state, and judges the periodic configuration requirements according to the low mobility state, continuously judges whether the low mobility state is satisfied, and exits the measurement relaxation state if not satisfied; in addition, The terminal also judges whether it needs to exit the measurement relaxation state because the criterion for judging the cell center is not satisfied according to the current measurement result.
  • Step 4c The terminal exits the measurement relaxation state, and returns to Step 2a for continuous judgment.
  • Fig. 4 is the second schematic flow diagram of the method for measuring relaxation provided by the embodiment of the present application. As shown in Figure 3 and Figure 4, the measurement relaxation method provided by the present embodiment includes:
  • Step 201 the network side device configures a low mobility state judgment criterion for the terminal
  • Step 202 the network side device receives first indication information from the terminal, the first indication information is used to indicate whether the serving cell in each cell group in at least one cell group of the terminal performs measurement relaxation, and whether the terminal performs measurement relaxation is based on
  • the terminal is determined by the low mobility state judgment result and the cell center judgment result of each cell group, and the low mobility state judgment result and the cell center judgment result of each cell group are determined by the terminal based on the measurement results of each cell group and the low mobility state
  • the judgment criterion and the judgment criterion of the cell center are determined.
  • the network side device may configure a low mobility state judgment criterion based on the terminal, serving cell, or cell group, and the terminal determines the low mobility state based on the configured low mobility state judgment criterion and measurement results, and based on the measurement results of the cell group And the cell center judgment criterion determines whether it is in the cell center, and then determines whether the serving cell in the cell group performs measurement relaxation.
  • step 201 there is no limited relationship between step 201 and step 202 .
  • Step 201 is similar to step 100 in FIG. 3 , and may optionally include step 103 , where the terminal reports to the network side device whether the serving cell of the terminal in each cell group performs measurement relaxation.
  • the terminal based on the measurement results of each cell group in at least one cell group, the low mobility state judgment criterion and the cell center judgment criterion, the terminal respectively determines the low mobility state judgment result and the cell center judgment result in each cell group , further based on the low mobility state judgment results of each cell group and the cell center judgment result, respectively determine whether the serving cells in each cell group can perform measurement relaxation, and perform measurement relaxation on the serving cells in each cell group respectively, which can make
  • the terminal determines whether to perform measurement relaxation according to the actual situation of each cell group or each serving cell, which has a comparative advantage in terms of communication performance and power saving performance. good flexibility.
  • the low mobility state judgment result of the terminal in each of the cell groups is that the terminal is based on the network side device first Determined by the measurement results of the primary and secondary cells PSCell in the secondary configured NR secondary cell group SCG; or,
  • the low mobility state judgment results of the terminal in each of the cell groups are respectively determined by the terminal based on the measurement results of the primary cell PCell or the primary secondary cell PSCell of each of the cell groups; or,
  • the low mobility state judgment results of the terminal in each of the cell groups are respectively determined by the terminal based on the measurement results of at least one serving cell in each of the cell groups;
  • the low mobility state judgment results of the terminal in each of the cell groups are respectively determined by the terminal based on the measurement results of the primary cell Pcell or the primary secondary cell PSCell of each of the cell groups; or,
  • the judgment results of the low mobility state of the terminal in each of the cell groups are respectively determined by the terminal based on the measurement results of at least one serving cell in each of the cell groups.
  • the judgment result of the terminal in each cell center of the cell group is that the terminal is based on the NR configured for the first time by the network side device. Determined by the measurement results of the primary and secondary cells PSCell in the secondary cell group SCG; or,
  • the determination results of the terminal in the cell center of each of the cell groups are respectively determined by the terminal based on the measurement results of the primary cell PCell or the primary secondary cell PSCell of each of the cell groups; or,
  • the determination results of the terminal in the cell centers of each of the cell groups are respectively determined by the terminal based on the measurement results of at least one serving cell in each of the cell groups;
  • the determination results of the terminal in the cell center of each of the cell groups are respectively determined by the terminal based on the measurement results of the primary cell Peell or the primary secondary cell PSCell of each of the cell groups; or,
  • the cell center determination results of the terminal in each of the cell groups are respectively determined by the terminal based on the measurement results of at least one serving cell in each of the cell groups.
  • the terminal in the first frequency band is determined by the terminal based on the measurement results of the primary cell PCell or the primary secondary cell PSCell;
  • the low mobility judgment result of the terminal in the second frequency band is the low mobility state judgment result of the terminal in the first frequency band.
  • the terminal in the first frequency band is determined by the terminal based on the measurement results of the primary cell PCell or primary secondary cell PSCell;
  • the determination result of the terminal's cell center in the second frequency band is determined by the terminal based on the measurement result of the secondary cell SCell in the second frequency band.
  • the configuration mode of the low mobility state judgment criterion is based on serving cell configuration
  • the low mobility state judgment result of the terminal in each of the cell groups is determined by the terminal based on the measurement result of the first or latest serving cell configured with the low mobility judgment criterion; or,
  • the low mobility state judgment results of the terminal in each of the cell groups are respectively determined by the terminal based on the measurement results of the primary cell Pcell or the primary secondary cell PSCell of each of the cell groups; or,
  • the low mobility state judgment results of the terminal in each of the cell groups are respectively determined by the terminal based on the measurement results of at least one serving cell in each of the cell groups.
  • the cell center judgment criterion is configured based on serving cell configuration
  • the cell center judgment result of the terminal in each of the cell groups is determined by the terminal based on the measurement result of the first or latest serving cell configured with the cell center judgment criterion; or,
  • the judgment results of the terminal in the cell center of each of the cell groups are respectively determined by the terminal based on the measurement results of the primary cell Pcell or the primary secondary cell PSCell of each of the cell groups; or,
  • the determination results of the terminal's cell center in each of the cell groups are respectively determined by the terminal based on the measurement results of each serving cell in each of the cell groups.
  • the relaxation of the BFD measurement performed by the serving cell in the cell group of the terminal is that the terminal is based on the judgment result of the low mobility state of the terminal in the cell group, and the status of the terminal in the cell group Determined by the cell center judgment result; wherein, the cell center judgment result of the terminal in the cell group is determined by the terminal based on the measurement result of the secondary cell Scell used to determine relaxation of beam failure detection BFD measurement.
  • the method also includes:
  • the network-side device sends second indication information to the terminal, where the second indication information is used to indicate that the cell center judgment criterion of the serving cell in the cell group of the terminal takes effect.
  • the configuration manner of the cell center criterion is determined based on the configuration manner of the second indication information.
  • the measurement relaxation method provided in the embodiment of the present application may be executed by a measurement relaxation device, or a processing module in the measurement relaxation device for executing the measurement relaxation method.
  • the method for measuring relaxation performed by the measuring relaxation device is taken as an example to illustrate the measuring relaxation device provided in the embodiment of the present application.
  • Fig. 5 is a schematic structural view of the measuring relaxation device provided by the present application.
  • the measurement relaxation device 500 provided in this embodiment includes:
  • the determining module 501 is configured to determine the low mobility state judgment result and the cell center judgment result of each of the cell groups based on the measurement results of each of the cell groups in at least one cell group, the low mobility state judgment criterion, and the cell center judgment criterion, respectively. Center judgment results;
  • the processing module 502 is configured to perform measurement relaxation in serving cells in each cell group based on the low mobility state judgment result and the cell center judgment result of each cell group.
  • the determination module determines the low mobility state judgment result and the cell center judgment of each cell group based on the measurement results of each cell group in at least one cell group, the low mobility state judgment criterion, and the cell center judgment criterion.
  • the further processing module respectively determines whether the serving cells in each cell group can perform measurement relaxation based on the low mobility state judgment results and the cell center judgment results of each cell group, and performs measurement relaxation on the serving cells in each cell group respectively , when the network side device is configured with multiple serving cells, it is possible to determine whether to perform measurement relaxation according to the actual situation of each cell group or each serving cell. On the compromise of communication performance and power saving performance, Has good flexibility.
  • processing module 502 is specifically configured to:
  • the terminal if the terminal is in the low mobility state as determined in the low mobility state of the cell group, and the terminal is in the cell center in the cell center of the cell group, then Determining that the serving cell in the cell group performs measurement relaxation; the cell center judgment result is obtained based on the cell center judgment result corresponding to at least one cell in the cell group, or,
  • the judgment result of the low mobility state of the terminal in the cell group is that it is in a low mobility state
  • the judgment result of the cell center of at least one serving cell in the cell group is that it is in the cell center , it is determined that each of the serving cells in the at least one serving cell performs measurement relaxation.
  • processing module 502 is specifically configured to:
  • the serving cell in the MCG performs measurement relaxation based on the low mobility state judgment result and the cell center judgment result of the MCG, in each of the cell groups the serving cells in all cell clusters in the cell cluster perform measurement relaxation; or,
  • the serving cell of the terminal in the SCG performs measurement relaxation.
  • the determining module 501 is specifically used for:
  • the terminal determines the low mobility state judgment result of the terminal in each of the cell groups based on the measurement results of the primary and secondary cells PSCell in the NR secondary cell group SCG configured by the network side device for the first time; or,
  • the terminal respectively determines the low mobility state judgment result of the terminal in each of the cell groups based on the measurement results of the primary cell PCell or the primary secondary cell PSCell of each of the cell groups; or,
  • the terminal respectively determines the low mobility state judgment result of the terminal in each cell group based on the measurement results of the primary cell PCell or the primary secondary cell PSCell of each cell group; or,
  • the terminal respectively determines the low mobility state judgment result of the terminal in each of the cell groups based on the measurement result of at least one serving cell in each of the cell groups.
  • the determining module 501 is specifically used for:
  • the terminal determines the determination result of the terminal being in the cell center of each cell group based on the measurement result of the primary and secondary cell PSCell in the NR secondary cell group SCG configured by the network side device for the first time; or,
  • the terminal respectively determines the judgment result of the terminal in the cell center of each cell group based on the measurement results of the primary cell PCell or the primary secondary cell PSCell of each cell group; or,
  • the terminal respectively determines the judgment result of the terminal in each of the cell centers of the cell groups based on the measurement results of at least one serving cell in each of the cell groups;
  • the terminal respectively determines the judgment result of the terminal in the cell center of each cell group based on the measurement results of the primary cell Pcell or the primary secondary cell PSCell of each cell group; or,
  • the terminal respectively determines the determination result of the cell center of the terminal in each of the cell groups based on the measurement result of at least one serving cell in each of the cell groups.
  • the determining module 501 is specifically used for:
  • the cell group includes cells in the first frequency band and cells in the second frequency band, for the first frequency band in which the primary cell PCell or the primary secondary cell PSCell exists, based on the primary cell PCell or the primary secondary cell PSCell A measurement result, determining a low mobility state judgment result of the terminal in the first frequency band;
  • the low mobility state judgment result of the first frequency band is determined as the low mobility judgment result of the terminal in the second frequency band.
  • the determining module 501 is specifically used for:
  • the cell group includes cells in the first frequency band and cells in the second frequency band
  • the first frequency band in which the primary cell PCell or the primary secondary cell PSCell exists based on the primary cell PCell or the primary secondary cell PSCell
  • the cell center determination result of the terminal in the second frequency band For the second frequency band where there is no primary cell PCell or primary secondary cell PSCell, based on the measurement result of the secondary cell SCell in the second frequency band, determine the cell center determination result of the terminal in the second frequency band.
  • the determining module 501 is specifically used for:
  • the terminal determines the low mobility state judgment result of the terminal in each of the cell groups based on the measurement result of the first or the latest serving cell configured with the low mobility state judgment criterion; or,
  • the terminal respectively determines the low mobility state judgment result of the terminal in each of the cell groups based on the measurement results of the primary cell PCell or the primary secondary cell PSCell of each of the cell groups; or,
  • the terminal respectively determines the low mobility state judgment result of the terminal in each of the cell groups based on the measurement result of at least one serving cell in each of the cell groups.
  • the determining module 501 is specifically used for:
  • the terminal determines the cell center judgment result of the terminal in each cell group based on the measurement result of the first or the latest serving cell configured with the cell center judgment criterion; or,
  • the terminal respectively determines the judgment result of the terminal in the cell center of each cell group based on the measurement results of the primary cell Pcell or the primary secondary cell PSCell of each cell group; or,
  • the terminal respectively determines the determination result of the cell center of the terminal in each of the cell groups based on the measurement result of at least one serving cell in each of the cell groups.
  • the processing module 502 is specifically configured to:
  • the serving cell in the cell group Based on the judgment result of the low mobility state of the terminal in the cell group and the judgment result of the terminal in the cell center of the cell group, the serving cell in the cell group performs BFD measurement relaxation.
  • the determination module 501 is also used for:
  • any serving cell in each of the cell groups based on the first indication information of the network side device, determine that the cell center judgment criterion of the terminal in the serving cell is valid.
  • the low mobility state judgment criterion is configured by the network side device; or,
  • Both the low mobility state judging criterion and the cell center judging criterion are configured by the network side device.
  • the low mobility state judging criterion is configured by a network side device, if the low mobility state is configured based on terminal configuration, then the cell center criterion is configured based on terminal configuration of;
  • the configuration mode of the low mobility state is based on cell group configuration
  • the configuration mode of the cell center criterion is based on cell group configuration
  • the configuration manner of the low mobility state is configured based on the serving cell
  • the configuration manner of the cell center criterion is configured based on the serving cell.
  • the configuration manner of the cell center criterion is determined based on the configuration manner of the first indication information.
  • Fig. 6 is a schematic structural view of the measuring relaxation device provided by the present application.
  • the measurement relaxation device 600 provided in this embodiment includes:
  • the receiving module 602 is configured to receive first indication information from the terminal, where the first indication information is used to indicate whether the terminal performs measurement relaxation in serving cells in each cell group in at least one cell group, and the terminal Whether to perform measurement relaxation is determined based on the judgment result of the low mobility state and the judgment result of the cell center of the terminal in each of the cell groups, and the judgment result of the low mobility state of each of the cell groups and the judgment result of the cell center are the The terminal determines based on the measurement results of each of the cell groups and the low mobility state judgment criterion and the cell center judgment criterion respectively.
  • the terminal respectively determines the low mobility state judgment result and the cell center judgment result of each cell group based on the measurement results of each cell group in at least one cell group, the low mobility state judgment criterion, and the cell center judgment criterion , further based on the low mobility state judgment results of each cell group and the cell center judgment result, respectively determine whether the serving cells in each cell group can perform measurement relaxation, and perform measurement relaxation on the serving cells in each cell group respectively, which can make
  • the terminal determines whether to perform measurement relaxation according to the actual situation of each cell group or each serving cell, which has a comparative advantage in terms of communication performance and power saving performance. good flexibility.
  • the low mobility state judgment result of the terminal in each of the cell groups is that the terminal is based on the network side device first Determined by the measurement results of the primary and secondary cells PSCell in the secondary configured NR secondary cell group SCG; or,
  • the low mobility state judgment results of the terminal in each of the cell groups are respectively determined by the terminal based on the measurement results of the primary cell PCell or the primary secondary cell PSCell of each of the cell groups; or,
  • the low mobility state judgment results of the terminal in each of the cell groups are respectively determined by the terminal based on the measurement results of at least one serving cell in each of the cell groups;
  • the low mobility state judgment results of the terminal in each of the cell groups are respectively determined by the terminal based on the measurement results of the primary cell Peell or the primary secondary cell PSCell of each of the cell groups; or,
  • the judgment results of the low mobility state of the terminal in each of the cell groups are respectively determined by the terminal based on the measurement results of at least one serving cell in each of the cell groups.
  • the judgment result of the terminal in each cell center of the cell group is that the terminal is based on the first configuration of the terminal based on the network side equipment. Determined by the measurement results of the primary and secondary cells PSCell in the cell group SCG; or,
  • the judgment results of the terminal in the cell centers of each of the cell groups are respectively determined by the terminal based on the measurement results of the primary cell PCell or the primary secondary cell PSCell of each of the cell groups; or,
  • the determination results of the terminal in the cell centers of each of the cell groups are respectively determined by the terminal based on the measurement results of at least one serving cell in each of the cell groups;
  • the judgment results of the terminal in the cell center of each of the cell groups are respectively determined by the terminal based on the measurement results of the primary cell Pcell or the primary secondary cell PSCell of each of the cell groups; or,
  • the cell center determination results of the terminal in each of the cell groups are respectively determined by the terminal based on the measurement results of at least one serving cell in each of the cell groups.
  • the terminal in the first frequency band is determined by the terminal based on the measurement results of the primary cell PCell or the primary secondary cell PSCell;
  • the low mobility judgment result of the terminal in the second frequency band is the low mobility state judgment result of the terminal in the first frequency band.
  • the terminal in the first frequency band is determined by the terminal based on the measurement results of the primary cell PCell or primary secondary cell PSCell;
  • the determination result of the terminal's cell center in the second frequency band is determined by the terminal based on the measurement result of the secondary cell SCell in the second frequency band.
  • the configuration mode of the low mobility state judgment criterion is based on serving cell configuration
  • the low mobility state judgment result of the terminal in each of the cell groups is determined by the terminal based on the measurement result of the first or latest serving cell configured with the low mobility judgment criterion; or,
  • the low mobility state judgment results of the terminal in each of the cell groups are respectively determined by the terminal based on the measurement results of the primary cell Pcell or the primary secondary cell PSCell of each of the cell groups; or,
  • the judgment results of the low mobility state of the terminal in each of the cell groups are respectively determined by the terminal based on the measurement results of at least one serving cell in each of the cell groups.
  • the cell center judgment criterion is configured based on serving cell configuration
  • the cell center judgment result of the terminal in each of the cell groups is determined by the terminal based on the measurement result of the first or latest serving cell configured with the cell center judgment criterion; or,
  • the judgment results of the terminal in the cell center of each of the cell groups are respectively determined by the terminal based on the measurement results of the primary cell Pcell or the primary secondary cell PSCell of each of the cell groups; or,
  • the determination results of the terminal's cell center in each of the cell groups are respectively determined by the terminal based on the measurement results of each serving cell in each of the cell groups.
  • the relaxation of beam failure detection BFD measurement performed by the terminal in the serving cell of the cell group is that the terminal is based on the judgment result of the low mobility state of the terminal in the cell group, and the terminal is in the cell group.
  • the judgment result of the cell center of the cell group is determined; wherein, the judgment result of the terminal in the cell center of the cell group is determined by the terminal based on the measurement result of the secondary cell Scell where the BFD measurement is relaxed.
  • the sending module 601 is also used for:
  • the configuration manner of the cell center criterion is determined based on the configuration manner of the first indication information.
  • the measurement relaxation device in the embodiment of the present application may be a device, a device with an operating system or an electronic device, or a component, an integrated circuit, or a chip in a terminal.
  • the apparatus or electronic equipment may be a mobile terminal or a non-mobile terminal.
  • the mobile terminal may include but not limited to the types of terminals 11 listed above, and the non-mobile terminal may be a server, a network attached storage (Network Attached Storage, NAS), a personal computer (personal computer, PC), a television ( television, TV), teller machines or self-service machines, etc., are not specifically limited in this embodiment of the present application.
  • the measurement relaxation device provided by the embodiment of the present application can realize the various processes realized by the method embodiments in Fig. 2 to Fig. 4 and achieve the same technical effect. To avoid repetition, details are not repeated here.
  • the embodiment of the present application further provides a communication device 700, including a processor 701, a memory 702, and programs or instructions stored in the memory 702 and operable on the processor 701,
  • a communication device 700 including a processor 701, a memory 702, and programs or instructions stored in the memory 702 and operable on the processor 701
  • the communication device 700 is a terminal
  • the program or instruction is executed by the processor 701
  • each process of the above embodiment of the measurement relaxation method can be realized, and the same technical effect can be achieved.
  • the communication device 700 is a network-side device
  • the program or instruction is executed by the processor 701
  • each process of the above measurement relaxation method embodiment can be achieved, and the same technical effect can be achieved. To avoid repetition, details are not repeated here.
  • the embodiment of the present application also provides a terminal, including a processor and a communication interface, and the processor is configured to respectively determine, based on the measurement results of each of the cell groups in at least one cell group, the low mobility state judgment criterion, and the cell center judgment criterion, where The low mobility state judgment result and the cell center judgment result of each of the cell groups; based on the low mobility state judgment results and the cell center judgment results of each of the cell groups, perform measurement relaxation in the serving cells in each of the cell groups , the communication interface is used to obtain measurement results of each of the cell groups in at least one cell group.
  • FIG. 8 is a schematic diagram of a hardware structure of a terminal implementing an embodiment of the present application.
  • the terminal 1000 includes but not limited to: a radio frequency unit 1001, a network module 1002, an audio output unit 1003, an input unit 1004, a sensor 1005, a display unit 1006, a user input unit 1007, an interface unit 1008, a memory 1009, and a processor 1010, etc. .
  • the terminal 1000 can also include a power supply (such as a battery) for supplying power to various components, and the power supply can be logically connected to the processor 1010 through the power management system, so as to manage charging, discharging, and power consumption through the power management system. Management and other functions.
  • a power supply such as a battery
  • the terminal structure shown in FIG. 8 does not constitute a limitation on the terminal, and the terminal may include more or fewer components than shown in the figure, or combine some components, or arrange different components, which will not be repeated here.
  • the input unit 1004 may include a graphics processor (Graphics Processing Unit, GPU) 10041 and a microphone 10042, and the graphics processor 10041 is used for the image capture device (such as the image data of the still picture or video obtained by the camera) for processing.
  • the display unit 1006 may include a display panel 10061, and the display panel 10061 may be configured in the form of a liquid crystal display, an organic light emitting diode, or the like.
  • the user input unit 1007 includes a touch panel 10071 and other input devices 10072 .
  • the touch panel 10071 is also called a touch screen.
  • the touch panel 10071 may include two parts, a touch detection device and a touch controller.
  • Other input devices 10072 may include, but are not limited to, physical keyboards, function keys (such as volume control buttons, switch buttons, etc.), trackballs, mice, and joysticks, which will not be repeated here.
  • the radio frequency unit 1001 receives the signal from the target serving cell, and sends it to the processor 1010 for processing; in addition, at least one of the judgment result of the low mobility state of the terminal, the judgment result of the cell center, or whether to perform measurement relaxation sent to the network side device.
  • the radio frequency unit 1001 includes, but is not limited to, an antenna, at least one amplifier, a transceiver, a coupler, a low noise amplifier, a duplexer, and the like.
  • the memory 1009 can be used to store software programs or instructions as well as various data.
  • the memory 1009 may mainly include a program or instruction storage area and a data storage area, wherein the program or instruction storage area may store an operating system, at least one application program or instruction required by a function (such as a sound playback function, an image playback function, etc.) and the like.
  • the memory 1009 may include a high-speed random access memory, and may also include a non-volatile memory, wherein the non-volatile memory may be a read-only memory (Read-Only Memory, ROM), a programmable read-only memory (Programmable ROM) , PROM), erasable programmable read-only memory (Erasable PROM, EPROM), electrically erasable programmable read-only memory (Electrically EPROM, EEPROM) or flash memory.
  • ROM Read-Only Memory
  • PROM programmable read-only memory
  • PROM erasable programmable read-only memory
  • Erasable PROM Erasable PROM
  • EPROM electrically erasable programmable read-only memory
  • EEPROM electrically erasable programmable read-only memory
  • flash memory for example at least one magnetic disk storage device, flash memory device, or other non-volatile solid-state storage device.
  • the processor 1010 may include one or more processing units; optionally, the processor 1010 may integrate an application processor and a modem processor, wherein the application processor mainly processes the operating system, user interface, application programs or instructions, etc., Modem processors mainly handle wireless communications, such as baseband processors. It can be understood that the foregoing modem processor may not be integrated into the processor 1010 .
  • the processor 1010 is configured to respectively determine the low mobility state judgment results in each of the cell groups based on the measurement results of each of the cell groups in at least one cell group, the low mobility state judgment criterion, and the cell center judgment criterion and community center judgment results;
  • the serving cells in each of the cell groups perform measurement relaxation.
  • the terminal based on the measurement results of each cell group in at least one cell group, the low mobility state judgment criterion, and the cell center judgment criterion, the terminal respectively determines the low mobility state judgment result and the cell center judgment result in each cell group, Further, based on the low-mobility state judgment results and the cell center judgment results of each cell group, respectively determine whether the serving cells in each cell group can perform measurement relaxation, and perform measurement relaxation on the serving cells in each cell group, so that the terminal In the case that the network side equipment is configured with multiple serving cells, it is determined whether to perform measurement relaxation according to the actual situation of each cell group or each serving cell, which has a better compromise between communication performance and power saving performance. flexibility.
  • processor 1010 is specifically configured to:
  • the terminal if the terminal is in the low mobility state as determined in the low mobility state of the cell group, and the terminal is in the cell center in the cell center of the cell group, then Determining that the serving cell in the cell group performs measurement relaxation; the cell center judgment result is obtained based on the cell center judgment result corresponding to at least one serving cell in the cell group, or,
  • the judgment result of the low mobility state of the terminal in the cell group is that it is in a low mobility state
  • the judgment result of the cell center of at least one serving cell in the cell group is that it is in the cell center , it is determined that each of the serving cells in the at least one serving cell performs measurement relaxation.
  • any cell group two judgment criteria need to be satisfied at the same time before measurement relaxation can be performed, that is, the judgment result of the low mobility state of the terminal in the cell group needs to be in the low mobility state, and the judgment result of the cell center needs to satisfy Located in the center of the cell, the communication performance of the terminal can be guaranteed, and each serving cell in the cell group can also perform measurement relaxation separately, which is more flexible.
  • processor 1010 is specifically configured to:
  • the serving cell in the MCG performs measurement relaxation based on the low mobility state judgment result and the cell center judgment result of the MCG, then performing measurement relaxation for serving cells in all cell groups in each of said cell groups; or,
  • the serving cell in the SCG performs measurement relaxation.
  • processor 1010 is specifically configured to:
  • the terminal determines the low mobility state judgment result of the terminal in each of the cell groups based on the measurement results of the primary and secondary cells PSCell in the NR secondary cell group SCG configured by the network side device for the first time; or,
  • the terminal respectively determines the low mobility state judgment result of the terminal in each of the cell groups based on the measurement results of the primary cell PCell or the primary secondary cell PSCell of each of the cell groups; or,
  • the terminal respectively determines the low mobility state judgment result of the terminal in each cell group based on the measurement results of the primary cell PCell or the primary secondary cell PSCell of each cell group; or,
  • the terminal respectively determines the low mobility state judgment result of the terminal in each of the cell groups based on the measurement result of at least one serving cell in each of the cell groups.
  • the terminal can determine the measurement results of which serving cells in the cell group based on the configuration method of the low mobility state judgment criterion sent by the network side device, and determine the low mobility judgment result of the terminal in the cell group, which is complicated to process. lower degree.
  • processor 1010 is specifically configured to:
  • the terminal determines the determination result of the terminal being in the cell center of each cell group based on the measurement result of the primary and secondary cell PSCell in the NR secondary cell group SCG configured by the network side device for the first time; or,
  • the terminal respectively determines the judgment result of the terminal in the cell center of each cell group based on the measurement results of the primary cell PCell or the primary secondary cell PSCell of each cell group; or,
  • the terminal respectively determines the judgment result of the terminal in each of the cell centers of the cell groups based on the measurement results of at least one serving cell in each of the cell groups;
  • the terminal respectively determines the judgment result of the terminal in the cell center of each cell group based on the measurement results of the primary cell Pcell or the primary secondary cell PSCell of each cell group; or,
  • the terminal respectively determines the determination result of the cell center of the terminal in each of the cell groups based on the measurement result of at least one serving cell in each of the cell groups.
  • the configuration flexibility of the cell center judgment criterion is relatively large. Since whether it is in the cell center or not is related to the implementation performance and algorithm of the terminal, the configuration method of the actual cell center judgment criterion can be relatively flexible; by using the low mobility state The configuration method of the cell center judgment criterion is determined by using the configuration method, which can achieve a better effect of reducing signaling overhead.
  • processor 1010 is specifically configured to:
  • the cell group includes cells in the first frequency band and cells in the second frequency band, for the first frequency band in which the primary cell PCell or the primary secondary cell PSCell exists, based on the primary cell PCell or the primary secondary cell PSCell A measurement result, determining a low mobility state judgment result of the terminal in the first frequency band;
  • the low mobility state judgment result of the first frequency band is determined as the low mobility judgment result of the terminal in the second frequency band.
  • processor 1010 is specifically configured to:
  • the cell group includes cells in the first frequency band and cells in the second frequency band
  • the first frequency band in which the primary cell PCell or the primary secondary cell PSCell exists based on the primary cell PCell or the primary secondary cell PSCell
  • the cell center determination result of the terminal in the second frequency band For the second frequency band where there is no primary cell PCell or primary secondary cell PSCell, based on the measurement result of the secondary cell SCell in the second frequency band, determine the cell center determination result of the terminal in the second frequency band.
  • the low mobility state judgment results and the cell center judgment results of the terminal in different frequency bands can be determined respectively, and measurement relaxation can be performed in different frequency bands respectively, which is more flexible.
  • processor 1010 is specifically configured to:
  • the terminal determines the low mobility state judgment result of the terminal in each of the cell groups based on the measurement result of the first or the latest serving cell configured with the low mobility state judgment criterion; or,
  • the terminal respectively determines the low mobility state judgment result of the terminal in each of the cell groups based on the measurement results of the primary cell PCell or the primary secondary cell PSCell of each of the cell groups; or,
  • the terminal respectively determines the low mobility state judgment result of the terminal in each of the cell groups based on the measurement result of at least one serving cell in each of the cell groups.
  • the terminal can determine the measurement results of which serving cells in the cell group based on the configuration method of the low mobility state judgment criterion sent by the network side device, and determine the low mobility judgment result of the terminal in the cell group, which is complicated to process. lower degree.
  • processor 1010 is specifically configured to:
  • the terminal determines the cell center judgment result of the terminal in each cell group based on the measurement result of the first or the latest serving cell configured with the cell center judgment criterion; or,
  • the terminal respectively determines the judgment result of the terminal in the cell center of each cell group based on the measurement results of the primary cell Pcell or the primary secondary cell PSCell of each cell group; or,
  • the terminal respectively determines the determination result of the cell center of the terminal in each of the cell groups based on the measurement result of at least one serving cell in each of the cell groups.
  • the terminal can determine the measurement results of which serving cells in the cell group based on the configuration method of the low mobility state judgment criterion sent by the network side device, determine the judgment result of the terminal in the cell center of the cell group, and the processing complexity lower.
  • processor 1010 is specifically configured to:
  • the serving cell in the cell group Based on the judgment result of the low mobility state of the terminal in the cell group and the judgment result of the terminal in the cell center of the cell group, the serving cell in the cell group performs BFD measurement relaxation.
  • the determination result of the cell center of the terminal in the cell group can be determined based on the measurement result of the SCell used to determine the BFD measurement, and based on the determination result of the low mobility state of the terminal in the cell group, it can be determined
  • the measurement relaxation is performed, and while the measurement overhead is reduced, the cells performing the measurement relaxation are more targeted.
  • processor 1010 is also used for:
  • any serving cell in each of the cell groups based on the first indication information of the network side device, determine that the cell center judgment criterion that the terminal is in the serving cell is valid.
  • the low mobility state judgment criterion is configured by the network side device; or,
  • Both the low mobility state judging criterion and the cell center judging criterion are configured by the network side device.
  • the low mobility state judging criterion is configured by a network side device, if the low mobility state is configured based on terminal configuration, then the cell center criterion is configured based on terminal configuration of;
  • the configuration mode of the low mobility state is based on cell group configuration
  • the configuration mode of the cell center criterion is based on cell group configuration
  • the configuration manner of the low mobility state is configured based on the serving cell
  • the configuration manner of the cell center criterion is configured based on the serving cell.
  • the configuration manner of the cell center criterion is determined based on the configuration manner of the first indication information.
  • the terminal can determine whether the cell center judgment criterion is in effect based on the indication information sent by the network side device, or determine the configuration method of the cell center judgment criterion based on the configuration method of the indication information, and then can determine based on which in the cell group
  • the measurement result of the serving cell determines the judgment result of the terminal being in the cell center of the cell group, and the processing complexity is relatively low.
  • the embodiment of the present application also provides a network side device, including a processor and a communication interface, the processor is used to configure a low mobility state judgment criterion for the terminal, and the communication interface is used to receive the first indication information from the terminal, the first indication
  • the information is used to indicate whether the terminal performs measurement relaxation in the serving cell of each cell group in at least one cell group. Whether the terminal performs measurement relaxation is determined based on the judgment result of the low mobility state of the terminal in each cell group and the judgment result of the cell center.
  • the low mobility state judgment result and the cell center judgment result of each cell group are determined by the terminal based on the measurement results of each cell group and the low mobility state judgment criterion and the cell center judgment criterion respectively.
  • the network-side device embodiment corresponds to the above-mentioned network-side device method embodiment, and each implementation process and implementation mode of the above-mentioned method embodiment can be applied to this network-side device embodiment, and can achieve the same technical effect.
  • the network device 900 includes: an antenna 91 , a radio frequency device 92 , and a baseband device 93 .
  • the antenna 91 is connected to a radio frequency device 92 .
  • the radio frequency device 92 receives information through the antenna 91, and sends the received information to the baseband device 93 for processing.
  • the baseband device 93 processes the information to be sent and sends it to the radio frequency device 92
  • the radio frequency device 92 processes the received information and sends it out through the antenna 91 .
  • the foregoing frequency band processing device may be located in the baseband device 93 , and the method performed by the network side device in the above embodiments may be implemented in the baseband device 93 , and the baseband device 93 includes a processor 94 and a memory 95 .
  • Baseband device 93 for example can comprise at least one baseband board, and this baseband board is provided with a plurality of chips, as shown in Figure 9, wherein one chip is for example processor 94, is connected with memory 95, to call the program in memory 95, execute The network device operations shown in the above method embodiments.
  • the baseband device 93 may also include a network interface 96 for exchanging information with the radio frequency device 92, and the interface is, for example, a common public radio interface (CPRI for short).
  • CPRI common public radio interface
  • the network-side device in the embodiment of the present application also includes: instructions or programs stored in the memory 95 and operable on the processor 94, and the processor 94 calls the instructions or programs in the memory 95 to execute the method performed by each module shown in FIG. 6 , and achieve the same technical effect, in order to avoid repetition, it is not repeated here.
  • the embodiment of the present application also provides a readable storage medium, on which a program or instruction is stored, and when the program or instruction is executed by a processor, each process of the above-mentioned embodiment of the measurement relaxation method can be realized, and can achieve the same To avoid repetition, the technical effects will not be repeated here.
  • the processor is the processor in the terminal described in the foregoing embodiments.
  • the readable storage medium includes computer readable storage medium, such as computer read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory, RAM), magnetic disk or optical disk, etc.
  • the embodiment of the present application further provides a chip, the chip includes a processor and a communication interface, the communication interface is coupled to the processor, and the processor is used to run programs or instructions to implement the above-mentioned embodiment of the measurement relaxation method Each process can achieve the same technical effect, so in order to avoid repetition, it will not be repeated here.
  • the chip mentioned in the embodiment of the present application may also be called a system-on-chip, a system-on-chip, a system-on-a-chip, or a system-on-a-chip.
  • the embodiment of the present application further provides a computer program product, including a computer program.
  • a computer program product including a computer program.
  • the various processes in the above embodiment of the measurement relaxation method can be realized, and the same technical effect can be achieved. In order to avoid repetition, here No longer.
  • the term “comprising”, “comprising” or any other variation thereof is intended to cover a non-exclusive inclusion such that a process, method, article or apparatus comprising a set of elements includes not only those elements, It also includes other elements not expressly listed, or elements inherent in the process, method, article, or device. Without further limitations, an element defined by the phrase “comprising a " does not preclude the presence of additional identical elements in the process, method, article, or apparatus comprising that element.
  • the scope of the methods and devices in the embodiments of the present application is not limited to performing functions in the order shown or discussed, and may also include performing functions in a substantially simultaneous manner or in reverse order according to the functions involved. Functions are performed, for example, the described methods may be performed in an order different from that described, and various steps may also be added, omitted, or combined. Additionally, features described with reference to certain examples may be combined in other examples.

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Abstract

本申请公开了一种测量放松方法、装置、终端及网络侧设备,属于通信技术领域,本申请实施例的测量放松方法包括:所述终端基于至少一个小区群中各个小区群的测量结果、低移动性状态判断准则以及小区中心判断准则,分别确定在各个所述小区群的低移动性状态判断结果和小区中心判断结果;所述终端基于各个所述小区群的低移动性状态判断结果和小区中心判断结果,在各个所述小区群中的服务小区执行测量放松。

Description

测量放松方法、装置、终端及网络侧设备
相关申请的交叉引用
本申请要求于2021年8月6日提交的申请号为202110904343.0,发明名称为“测量放松方法、装置、终端及网络侧设备”的中国专利申请的优先权,其通过引用方式全部并入本申请。
技术领域
本申请属于通信技术领域,具体涉及一种测量放松方法、装置、终端及网络侧设备。
背景技术
在现有的移动通信系统中,为了节省电量,终端比如窄带物联网(Narrow Band Internet of Things,NB-IoT)终端可以在服务小区的测量值满足测量放松判断准则的条件下,放松对同频或异频邻小区的测量。在确定满足测量放松判断准则条件时一般需要判断终端是否处于低移动性状态和/或处于小区中心。
对于空闲态下的终端判断其是否处于低移动性状态,仅仅需要基于当前驻留小区来判断低移动性状态和/或小区中心,但在其他场景,例如支持载波聚合(Carrier aggregation,CA)或双连接(Dual connectivity,DC)的场景下,终端可能同时被配置连接到多个服务小区,多个服务小区可能分布在一个或多个小区群中,而且终端处于连接态。因此,对于本领域技术人员来说亟需实现一种针对连接态场景下,确定终端是否进行测量放松的方案。
发明内容
本申请实施例提供一种测量放松方法、装置、终端及网络侧设备,能 够实现在连接态场景下,分别确定终端在各个小区群中的服务小区执行测量放松。
第一方面,提供了一种测量放松方法,应用于终端,该方法包括:
终端基于至少一个小区群中各个所述小区群的测量结果、低移动性状态判断准则以及小区中心判断准则,分别确定在各个所述小区群的低移动性状态判断结果和小区中心判断结果;
所述终端基于各个所述小区群的低移动性状态判断结果和小区中心判断结果,在各个所述小区群中的服务小区执行测量放松。
第二方面,提供了一种测量放松方法,应用于网络侧设备,该方法包括:
网络侧设备为终端配置发送低移动性状态判断准则;
所述网络侧设备接收来自所述终端的第一指示信息,所述第一指示信息用于指示所述终端在各个小区群中的服务小区是否执行测量放松,所述终端是否执行测量放松是基于所述终端在各个所述小区群的低移动性状态判断结果和小区中心判断结果确定的,各个所述小区群的低移动性状态判断结果和小区中心判断结果为所述终端分别基于各个所述小区群的测量结果以及所述低移动性状态判断准则和小区中心判断准则确定的。
第三方面,提供了一种测量放松装置,包括:
确定模块,用于基于至少一个小区群中各个所述小区群的测量结果、低移动性状态判断准则以及小区中心判断准则,分别确定在各个所述小区群的低移动性状态判断结果和小区中心判断结果;
处理模块,用于基于各个所述小区群的低移动性状态判断结果和小区中心判断结果,在各个所述小区群中的服务小区执行测量放松。
第四方面,提供了一种测量放松装置,包括:
发送模块,用于为终端配置低移动性状态判断准则;
接收模块,用于接收来自所述终端的第一指示信息,所述第一指示信息用于指示所述终端在各个小区群中的服务小区是否执行测量放松,所述 终端是否执行测量放松是基于所述终端在各个所述小区群的低移动性状态判断结果和小区中心判断结果确定的,各个所述小区群的低移动性状态判断结果和小区中心判断结果为所述终端分别基于各个所述小区群的测量结果以及所述低移动性状态判断准则和小区中心判断准则确定的。
第五方面,提供了一种终端,该终端包括处理器、存储器及存储在所述存储器上并可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如第一方面所述的方法的步骤。
第六方面,提供了一种终端,包括处理器及通信接口,其中,所述处理器用于基于至少一个小区群中各个所述小区群的测量结果、低移动性状态判断准则以及小区中心判断准则,分别确定在各个所述小区群的低移动性状态判断结果和小区中心判断结果;基于各个所述小区群的低移动性状态判断结果和小区中心判断结果,在各个所述小区群中的服务小区执行测量放松,所述通信接口用于获取至少一个小区群中各个所述小区群的测量结果。
第七方面,提供了一种网络侧设备,该网络侧设备包括处理器、存储器及存储在所述存储器上并可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如第二方面所述的方法的步骤。
第八方面,提供了一种网络侧设备,包括处理器及通信接口,其中,所述处理器用于为终端配置发送低移动性状态判断准则,所述通信接口用于接收来自所述终端的第一指示信息,所述第一指示信息用于指示所述终端在各个小区群中的服务小区是否执行测量放松,所述终端是否执行测量放松是基于所述终端在各个所述小区群的低移动性状态判断结果和小区中心判断结果确定的,各个所述小区群的低移动性状态判断结果和小区中心判断结果为所述终端分别基于各个所述小区群的测量结果以及所述低移动性状态判断准则和小区中心判断准则确定的。
第九方面,提供了一种可读存储介质,所述可读存储介质上存储程序或指令,所述程序或指令被处理器执行时实现如第一方面所述的方法的步 骤,或者实现如第二方面所述的方法的步骤。
第十方面,提供了一种芯片,所述芯片包括处理器和通信接口,所述通信接口和所述处理器耦合,所述处理器用于运行程序或指令,实现如第一方面所述的方法,或实现如第二方面所述的方法。
第十一方面,提供了一种计算机程序/程序产品,所述计算机程序/程序产品被存储在存储介质中,所述程序/程序产品被至少一个处理器执行以实现如第一方面或第二方面所述的测量放松方法的步骤。
在本申请实施例中,终端基于至少一个小区群中各个小区群的测量结果、低移动性状态判断准则以及小区中心判断准则,分别确定在各个小区群的低移动性状态判断结果和小区中心判断结果,进一步基于各个小区群的低移动性状态判断结果和小区中心判断结果,分别确定各个小区群中的服务小区是否可以进行测量放松,并在各个小区群中的服务小区分别执行测量放松,可以使得终端在网络侧设备配置了多个服务小区的情况下,针对每个小区群或每个服务小区的实际情况,来确定是否执行测量放松,在通信性能和省电性能的折中上,具有较好的灵活性。
附图说明
图1是本申请实施例可应用的无线通信系统的结构图;
图2是本申请实施例提供的测量放松方法的流程示意图之一;
图3是本申请实施例提供的测量放松方法的交互流程示意图;
图4是本申请实施例提供的测量放松方法的流程示意图之二;
图5是本申请实施例提供的测量放松装置的结构示意图之一;
图6是本申请实施例提供的测量放松装置的结构示意图之二;
图7是本申请实施例提供的通信设备的结构示意图;
图8是本申请实施例提供的终端的硬件结构示意图;
图9是本申请实施例的网络侧设备的结构示意图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚描述,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员所获得的所有其他实施例,都属于本申请保护的范围。
本申请的说明书和权利要求书中的术语“第一”、“第二”等是用于区别类似的对象,而不用于描述特定的顺序或先后次序。应该理解这样使用的术语在适当情况下可以互换,以便本申请的实施例能够以除了在这里图示或描述的那些以外的顺序实施,且“第一”、“第二”所区别的对象通常为一类,并不限定对象的个数,例如第一对象可以是一个,也可以是多个。此外,说明书以及权利要求中“和/或”表示所连接对象的至少其中之一,字符“/”一般表示前后关联对象是一种“或”的关系。
值得指出的是,本申请实施例所描述的技术不限于长期演进型(Long Term Evolution,LTE)/LTE的演进(LTE-Advanced,LTE-A)系统,还可用于其他无线通信系统,诸如码分多址(Code Division Multiple Access,CDMA)、时分多址(Time Division Multiple Access,TDMA)、频分多址(Frequency Division Multiple Access,FDMA)、正交频分多址(Orthogonal Frequency Division Multiple Access,OFDMA)、单载波频分多址(Single-carrier Frequency-Division Multiple Access,SC-FDMA)和其他系统。本申请实施例中的术语“系统”和“网络”常被可互换地使用,所描述的技术既可用于以上提及的系统和无线电技术,也可用于其他系统和无线电技术。以下描述出于示例目的描述了新空口(New Radio,NR)系统,并且在以下大部分描述中使用NR术语,但是这些技术也可应用于NR系统应用以外的应用,如第6代(6 thGeneration,6G)通信系统。
图1示出本申请实施例可应用的一种无线通信系统的结构图。无线通信系统包括终端11和网络侧设备12。其中,终端11也可以称作终端设备 或者用户终端(User Equipment,UE),终端11可以是手机、平板电脑(Tablet Personal Computer)、膝上型电脑(Laptop Computer)或称为笔记本电脑、个人数字助理(Personal Digital Assistant,PDA)、掌上电脑、上网本、超级移动个人计算机(ultra-mobile personal computer,UMPC)、移动上网装置(Mobile Internet Device,MID)、增强现实(augmented reality,AR)/虚拟现实(virtual reality,VR)设备、机器人、可穿戴式设备(Wearable Device)、车载设备(VUE)、行人终端(PUE)、智能家居(具有无线通信功能的家居设备,如冰箱、电视、洗衣机或者家具等)等终端侧设备,可穿戴式设备包括:智能手表、智能手环、智能耳机、智能眼镜、智能首饰(智能手镯、智能手链、智能戒指、智能项链、智能脚镯、智能脚链等)、智能腕带、智能服装、游戏机等。需要说明的是,在本申请实施例并不限定终端11的具体类型。网络侧设备12可以是基站或核心网,其中,基站可被称为节点B、演进节点B、接入点、基收发机站(Base Transceiver Station,BTS)、无线电基站、无线电收发机、基本服务集(Basic Service Set,BSS)、扩展服务集(Extended Service Set,ESS)、B节点、演进型B节点(eNB)、家用B节点、家用演进型B节点、WLAN接入点、WiFi节点、发送接收点(Transmitting Receiving Point,TRP)或所述领域中其他某个合适的术语,只要达到相同的技术效果,所述基站不限于特定技术词汇,需要说明的是,在本申请实施例中仅以NR系统中的基站为例,但是并不限定基站的具体类型。
下面结合附图,通过一些实施例及其应用场景对本申请实施例提供的测量放松方法进行详细地说明。
图2是本申请实施例提供的测量放松方法的流程示意图之一。如图2所示,本实施例提供的测量放松方法,包括:
步骤101、终端基于至少一个小区群中各个小区群的测量结果、低移动性状态判断准则以及小区中心判断准则,分别确定在各个小区群的低移动性状态判断结果和小区中心判断结果。
例如,在连接态场景下,终端被配置有一个或多个小区群,各个小区群中有至少一个服务小区,针对至少一个小区群,终端基于各个小区群的测量结果、低移动性状态判断准则,分别确定终端在各个小区群的低移动性状态判断结果,例如小区群的测量结果满足低移动性状态判断准则的低移动性条件,则终端在该小区群的低移动性状态判断结果为处于低移动性状态,否则不处于低移动性状态。
终端基于各个小区群的测量结果、小区中心判断准则,分别确定终端在各个小区群的小区中心判断结果。例如小区群的测量结果满足小区中心判断准则的小区中心条件,则终端在该小区群的小区中心判断结果为处于小区中心,否则不处于小区中心。
可选地,终端在小区群的低移动性状态判断结果可以是基于该小区群中的一个服务小区的测量结果以及对应的低移动性状态判断准则确定的,或者可以基于该小区群中多个服务小区的测量结果以及多个服务小区各自对应的低移动性状态确定的。终端在小区群的小区中心判断结果可以是基于该小区群中的一个服务小区的测量结果以及对应的小区中心状态判断准则确定的,或者可以基于该小区群中多个服务小区的测量结果以及多个服务小区各自对应的小区中心判断结果确定的。
步骤102、终端基于各个小区群的低移动性状态判断结果和小区中心判断结果,在各个小区群中的服务小区执行测量放松。
可选地,针对任一小区群,终端基于该小区群的低移动性状态判断结果和小区中心判断结果,确定是否可以在该小区群中的服务小区进行测量放松,若是,则在该小区群中的服务小区执行测量放松,即针对各个小区群,终端分别在各个小区群中的服务小区执行测量放松。
例如,终端在小区群a、小区群b的低移动性状态判断结果均为处于低移动性状态,小区中心判断结果均为处于小区中心,则在小区群a、小区群b中分别执行测量放松,若在小区群c的低移动性状态判断结果不是低移动性状态,或小区中心判断结果不处于小区中心,则在小区群c不执 行测量放松。
可选地,终端还可以基于该小区群中的低移动性状态判断结果和该小区群中的各个服务小区的小区中心判断结果,分别确定是否可以在该小区群中的各个服务小区进行测量放松。
例如,在小区群a中的终端低移动性状态判断结果均为处于低移动性状态,在小区群a中的服务小区1、服务小区2中的小区中心判断结果均为处于小区中心,则在小区群a中的服务小区1、服务小区2分别执行测量放松,若在小区群a中的服务小区3中小区中心判断结果不处于小区中心,则在小区群a中的服务小区3不执行测量放松。
可选地,终端还可以基于该小区群中的各个服务小区的低移动性状态判断结果和小区中心判断结果,分别确定是否可以在该小区群中的各个服务小区进行测量放松。
例如,终端在小区群a中的服务小区1、服务小区2中的低移动性状态判断结果均为处于低移动性状态,小区中心判断结果均为处于小区中心,则在小区群a中的服务小区1、服务小区2分别执行测量放松,若在小区群a中的服务小区3中的低移动性状态判断结果不是低移动性状态,或小区中心判断结果不处于小区中心,则在小区群a中的服务小区3不执行测量放松。
测量放松例如可以增大测量间隔,或者,在某一时段内不执行测量,减少终端的功耗。
本实施例的方法,终端基于至少一个小区群中各个小区群的测量结果、低移动性状态判断准则以及小区中心判断准则,分别确定在各个小区群的低移动性状态判断结果和小区中心判断结果,进一步基于各个小区群的低移动性状态判断结果和小区中心判断结果,分别确定各个小区群中的服务小区是否可以进行测量放松,并在各个小区群中的服务小区分别执行测量放松,可以使得终端在网络侧设备配置了多个服务小区的情况下,针对每个小区群或每个服务小区的实际情况,来确定是否执行测量放松,在通信 性能和省电性能的折中上,具有较好的灵活性。
可选地,测量放松包括以下至少一项:无线链路监视(Radio Link Monitoring,RLM)测量放松、波束失败检测(Beam Failure Detection,BFD)测量放松或无线资源管理(Radio Resource Management,RRM)测量放松。
可选地,配置了低移动性状态判断准则的小区群CG仅仅包括NR系统下的CG,不包括LTE的CG。
在本申请实施例中,该测量结果为以下至少一项参考信号的测量结果:
同步信号块(Synchronization Signal and PBCH block,SSB);
用于时频域追踪的信道状态信息参考信号(Channel State Information Reference Signal,CSI-RS);
用于测量信道状态的CSI-RS;
用于移动性测量的CSI-RS。
可选地,测量结果包括以下任一或其组合:
参考信号接收功率(Reference Signal Received Power,RSRP);
参考信号接收质量(Reference Signal Received Quality,RSRQ);
信干噪比(Signal to Interference plus Noise Ratio,SINR)。
可选地,在测量结果为组合的情况下,至少包括参考信号接收功率RSRP。
可选地,RSRP、RSRQ或SINR为平滑滤波后的测量结果。
在本申请实施例中,如何基于低移动性状态判断结果和小区中心判断结果,确定是否执行测量放松,可以通过如下方式实现:
一种实现方式
针对任一小区群,终端在小区群的低移动性状态判断结果为处于低移动性状态,且终端在小区群的小区中心判断结果为处于小区中心,则终端确定在小区群中的服务小区执行测量放松;小区中心判断结果是基于小区群中至少一个服务小区对应的小区中心判断结果得到的。
可选地,针对任一小区群,需要同时满足两种条件,即低移动性判断准则中的低移动性条件和小区中心判断准则的小区中心条件,则确定在该小区群中的服务小区执行测量放松,即终端在小区群的低移动性状态判断结果需要满足处于低移动性状态,小区中心判断结果需要满足处于小区中心。
其中,终端在该小区群的低移动性状态判断结果是基于该小区群中至少一个服务小区对应的低移动性状态判断结果得到的。例如可以采用如下方式得到:
在终端在小区群中至少一个服务小区处于低移动性状态的情况下,终端确定终端在小区群的低移动性状态判断结果为处于低移动性状态;或,
在终端在小区群中所有服务小区均处于低移动性状态的情况下,终端确定终端在小区群的低移动性状态判断结果为处于低移动性状态。
其中,终端在该小区群的小区中心判断结果是基于该小区群中至少一个服务小区对应的小区中心判断结果得到的。例如可以采用如下方式得到:
在终端在小区群中至少一个服务小区处于小区中心的情况下,终端确定终端在小区群的小区中心判断结果为处于小区中心;或,
在终端在小区群中所有服务小区均处于小区中心的情况下,终端确定终端在小区群的小区中心判断结果为处于小区中心。
例如,终端在小区群a的低移动性状态判断结果为处于低移动性状态,小区中心判断结果为处于小区中心,则在小区群a执行测量放松。
另一种实现方式:
针对任一小区群,终端在小区群的低移动性状态判断结果为处于低移动性状态,且在小区群中至少一个服务小区的小区中心判断结果为处于小区中心,则终端确定在至少一个服务小区中各个服务小区执行测量放松。
可选地,针对任一小区群,终端在小区群的低移动性状态判断结果为处于低移动性状态,且在小区群中至少一个服务小区的小区中心判断结果为处于小区中心,则终端确定在至少一个服务小区中各个服务小区执行测 量放松,即终端只在小区中心判断结果为处于小区中心的服务小区执行测量放松。
例如,终端在小区群a中的服务小区1、服务小区2中的低移动性状态判断结果均为处于低移动性状态,小区中心判断结果均为处于小区中心,则在小区群a中的服务小区1、服务小区2分别执行测量放松。
上述实施方式中,针对任一小区群,需要同时满足两种判断准则,才能执行测量放松,即终端在小区群的低移动性状态判断结果需要满足处于低移动性状态,小区中心判断结果需要满足处于小区中心,能够保障终端的通信性能,而且小区群内的各个服务小区还可以分别执行测量放松,灵活性较大。
在本申请实施例中,步骤102还包括如下几种可能的实现方式:
对于各个小区群中新空口NR主小区群(Master Cell Group,MCG),在基于MCG的低移动性状态判断结果和小区中心判断结果,确定在MCG中的服务小区执行测量放松的情况下,终端在各个小区群中所有小区群中的服务小区执行测量放松;或,
在各个小区群中存在基于低移动性状态判断结果和小区中心判断结果确定在辅小区群(Secondary Cell Group,SCG)执行测量放松的情况下,终端在该SCG中的服务小区执行测量放松。
可选地,若终端被配置的多个小区群中存在NR新空口MCG,则可以按照在MCG执行测量放松的确定结果,确定在其他小区群执行测量放松,即在基于MCG的低移动性状态判断结果和小区中心判断结果,确定在MCG中的服务小区执行测量放松的情况下,终端在各个小区群中所有小区群中的服务小区执行测量放松。
在各个小区群中存在辅小区群SCG、基于该SCG的低移动性状态判断结果和小区中心判断结果确定在该SCG中的服务小区执行测量放松的情况下,终端在该SCG中的服务小区执行测量放松。
例如,终端在辅小区群SCG1和SCG2的低移动性状态判断结果均为 处于低移动性状态,小区中心判断结果均为处于小区中心,则在辅小区群SCG1和SCG2中的服务小区执行测量放松,若在辅小区群SCG3的低移动性状态判断结果不是低移动性状态,或小区中心判断结果不处于小区中心,则在SCG3中的服务小区不执行测量放松。
可选地,在主小区群MCG不执行测量放松,且各个小区群中存在SCG的小区中心判断结果为处于小区中心,且该SCG的低移动性状态判断结果为处于低移动性状态的情况下,终端在该SCG执行测量放松。
即若确定终端在主小区群MCG中的服务小区不可以执行测量放松,则终端在辅小区群SCG的小区中心判断结果和低移动性状态判断结果必须同时满足小区中心条件和低移动性条件,才可以在该SCG中的服务小区执行测量放松,即SCG的小区中心判断结果为处于小区中心,且该SCG的低移动性状态判断结果为处于低移动性状态的情况下,终端在该SCG中的服务小区才可以执行测量放松。
可选地,针对第一种情况中“终端在各个小区群中所有小区群中的服务小区执行测量放松”,对于所有小区群中的辅小区群SCG,可以进一步确定终端在该SCG的小区中心判断结果是否为小区中心,若为小区中心,则终端在该SCG中的服务小区执行测量放松。
上述实施方式中,对于确定在MCG中的服务小区执行测量放松的情况下,可以不确定其他的小区群是否可以执行测量放松,直接在其他的小区群执行测量放松,节省了判断时间,并减少了终端的功耗。
在本申请实施例中,如图3所示,低移动性状态判断准则为网络侧设备配置的,低移动性状态判断准则的配置方式例如包括:基于终端配置、基于小区群配置或基于服务小区配置。
具体而言,基于终端配置,指的是低移动性状态判断准则的配置的层级为终端级,也就是该配置是对终端的所有小区群的所有服务小区都生效的;基于小区群配置,指的是低移动性状态判断准则的配置的层级为小区群级,也就是该配置是对终端某一特定小区群的所有服务小区生效的;基 于服务小区配置,指的是低移动性状态判断准则的配置的层级为服务小区级,也就是该配置是对终端某一服务小区生效的。
步骤101中“终端基于各个小区群的测量结果、低移动性状态判断准则,分别确定在各个小区群的低移动性状态判断结果”,可以通过如下几种方式实现:
一种方式
在低移动性状态判断准则的配置方式为基于终端配置的情况下,终端基于网络侧设备第一次配置的NR辅小区群SCG中的主辅小区(Primary Secondary Cell,PSCell)的测量结果,确定终端在各个小区群的低移动性状态判断结果;或,
终端基于各个小区群的主小区(Primary Cell,PCell)或主辅小区PSCell的测量结果,分别确定终端在各个小区群的低移动性状态判断结果;或,
终端基于各个小区群中至少一个服务小区的测量结果,分别确定终端各个在小区群的低移动性状态判断结果;或,
在低移动性状态判断准则的配置方式为基于小区群配置的情况下,
终端基于各个小区群的主小区PCell或主辅小区PSCell的测量结果,分别确定终端在各个小区群的低移动性状态判断结果;或,
终端基于各个小区群中至少一个服务小区的测量结果,分别确定终端在各个小区群的低移动性状态判断结果。
可选地,网络侧设备可以基于终端、服务小区或小区群配置低移动性状态判断准则,不同的配置方式下,终端确定该小区群的低移动性状态的方式可能不同,即终端需要知道基于该小区群中哪个小区或哪些小区的测量结果,确定终端在该小区群的低移动性状态,因此终端需要从网络侧设备获知当前的低移动性状态判断准则的配置方式,终端基于该配置方式,确定终端在该小区群的低移动性状态。
其中,针对基于终端配置的配置方式来说,针对该终端配置的低移动性状态判断准则,对于各个小区群都是适用的,即对于各个小区群可以采 用相同的低移动性状态判断准则,对于某个终端来说,可以配置该低移动性状态判断准则,也可以不配置该低移动性状态判断准则。
针对基于小区群配置的配置方式来说,不同的小区群分别配置低移动性状态判断准则,不同的小区群配置的低移动性状态判断准则的相关参数的数值可以相同或不同,对于某个小区群来说,可以配置该低移动性状态判断准则,也可以不配置该低移动性状态判断准则。如果某个小区群不配置该低移动性状态判断准则,则终端在该小区群中不需要确定是否处于低移动性状态,在该小区群中不执行测量放松。
针对基于服务小区配置的配置方式来说,不同的服务小区分别配置低移动性状态判断准则,不同的服务小区配置的低移动性状态判断准则的相关参数的数值可以相同或不同,对于某个服务小区来说,可以配置该低移动性状态判断准则,也可以不配置该低移动性状态判断准则。如果某个服务小区不配置该低移动性状态判断准则,则终端在该服务小区中不需要确定是否处于低移动性状态,在该服务小区中不执行测量放松。
对于任一小区群,针对“低移动性状态判断准则的配置方式为基于终端配置”中的第一种情况来说,终端基于网络侧设备第一次配置的NR SCG中的主辅小区PSCell的测量结果,确定终端在小区群的低移动性状态判断结果,即确定终端在该小区群的低移动性状态判断结果是否为低移动性状态,例如将该主辅小区PSCell的测量结果,与某一测量参考值比较,若差异较小,则该终端处于低移动性状态,若差异较大,则该终端不处于低移动性状态。其中,所述第一次配置,例如指的是终端在进入RRC连接态后收到的第一条包含SCG配置的RRC重配置消息。其中,测量参考值的初始值可以是网络侧设备配置或终端自行确定。可选地,测量参考值还可以基于测量结果去更新。即在该种情况下,可以采用终端在该主辅小区PSCell的低移动性状态判断结果,表示该终端在小区群的低移动性状态判断结果。
针对“低移动性状态判断准则的配置方式为基于终端配置”中的第二 种情况来说,终端基于小区群的主小区PCell或主辅小区PSCell的测量结果,确定终端在小区群的低移动性状态判断结果,即确定终端在该小区群的低移动性状态判断结果是否为低移动性状态,若存在主小区PCell,则基于该主小区PCell的测量结果,确定该终端在小区群的低移动性状态判断结果,若不存在主小区PCell且存在主辅小区PSCell,则基于主辅小区PSCell的测量结果,确定终端在小区群的低移动性状态判断结果。例如将该主小区PCell或主辅小区PSCell的测量结果,与某一测量参考值比较,若差异较小,则该终端处于低移动性状态,若差异较大,则该终端不处于低移动性状态。即在该种情况下,可以采用终端在该主小区PCell或主辅小区PSCell的低移动性状态判断结果,表示该终端在小区群的低移动性状态判断结果。
针对“低移动性状态判断准则的配置方式为基于终端配置”中的第三种情况来说,终端基于小区群中各个服务小区的测量结果,确定终端在小区群的低移动性状态判断结果,即确定终端在该小区群的低移动性状态判断结果是否为低移动性状态,例如若可以分别确定终端在各个服务小区的低移动性判断结果,基于终端在各个服务小区的低移动性判断结果,确定终端在该小区群的低移动性状态判断结果是否为低移动性状态,例如在其中至少一个服务小区中终端处于低移动性状态,则可以确定该终端在该小区群的低移动性状态判断结果为低移动性状态,或者,在所有服务小区中终端均处于低移动性状态,则可以确定该终端在该小区群的低移动性状态判断结果为低移动性状态。
针对“低移动性状态判断准则的配置方式为基于小区群配置”中的第一种情况,终端基于小区群的主小区Pcell或主辅小区PSCell的测量结果,确定终端在小区群的低移动性状态判断结果,与基于终端配置的实施例类似,此次不再赘述。
针对“低移动性状态判断准则的配置方式为基于小区群配置”中的第二种情况,终端基于小区群中各个服务小区的测量结果,确定终端在小区 群的低移动性状态判断结果,与基于终端配置的实施例类似,此次不再赘述。
可选地,“终端基于小区群中各个服务小区的测量结果,确定终端在小区群的低移动性状态判断结果”,可以通过如下几种方式实现:
在终端在小区群中至少一个服务小区处于低移动性状态的情况下,终端确定终端在小区群的低移动性状态判断结果为处于低移动性状态;
在终端在小区群中所有服务小区均处于低移动性状态的情况下,终端确定终端在小区群的低移动性状态判断结果为处于低移动性状态。
上述实施方式中,终端可以基于网络侧设备发送的低移动性状态判断准则的配置方式确定基于小区群中哪些服务小区的测量结果,确定该终端在该小区群的低移动性判断结果,处理复杂度较低。
在本申请实施例中,小区中心判断准则可以是网络侧设备配置的,也可以是预定义的,或是隐式配置的。
网络侧设备可以基于终端、服务小区或小区群配置小区中心判断准则,不同的配置方式下,终端确定该小区群的小区中心判断结果的方式可能不同,即终端需要知道基于该小区群中哪个小区或哪些小区的测量结果,确定终端在该小区群的小区中心判断结果,因此终端需要获知当前小区群中各个服务小区的是否配置了小区中心判断准则,进而确定终端在该小区群的小区中心判断结果。
其中,针对基于终端配置的配置方式来说,针对该终端配置的小区中心判断准则,对于各个小区群都是适用的,对于某个终端来说,可以配置该小区中心判断准则,也可以不配置该小区中心判断准则。
针对基于小区群配置的配置方式来说,不同的小区群分别配置小区中心判断准则,不同的小区群配置的小区中心判断准则的相关参数的数值可以相同或不同,对于某个小区群来说,可以配置该小区中心判断准则,也可以不配置该小区中心判断准则。如果某个小区群不配置该小区中心判断准则,则终端在该小区群中确定是否处于小区中心的准则是协议预定义的, 或终端自定义的。
针对基于服务小区配置的配置方式来说,不同的服务小区分别配置小区中心判断准则,不同的服务小区配置的小区中心判断准则的相关参数的数值可以相同或不同,对于某个服务小区来说,可以配置该小区中心判断准则,也可以不配置该小区中心判断准则。如果某个服务小区不配置该小区中心判断准则,则终端在该服务小区中确定是否处于小区中心的准则是协议预定义的,或终端自定义的。
若小区中心判断准则不是网络侧设备配置的,例如是预定义的,在确定终端在小区群的小区中心判断结果时,可以基于与低移动性状态判断准则相同的配置方式确定。可选地,在所述低移动性状态判断准则为网络侧设备配置的情况下,如果低移动性状态判断准则的配置方式为基于终端配置,则小区中心判断准则的配置方式为基于终端配置的;
如果低移动性状态判断准则的配置方式为基于小区群配置,则小区中心判断准则的配置方式为基于小区群配置的;
如果低移动性状态判断准则的配置方式为基于服务小区配置,则小区中心判断准则的配置方式为基于服务小区配置的。
上述实施方式中,小区中心判断准则的配置灵活性较大,由于处于小区中心与否与终端的实现性能和算法有关,因此实际小区中心判断准则的配置方式可以较为灵活;通过借助低移动性状态的配置方式来确定小区中心判断准则的配置方式,可以达到较好的降低信令开销的效果。
在本申请实施例中,步骤101中“终端基于各个小区群的测量结果、小区中心判断准则,分别确定在各个小区群的小区中心判断结果”,可以通过如下方式实现:
在小区中心判断准则的配置方式为基于终端配置的情况下,终端基于网络侧设备第一次配置的NR辅小区群SCG中的主辅小区PSCell的测量结果,确定终端在各个小区群的小区中心判断结果;或,
终端基于各个小区群的主小区PCell或主辅小区PSCell的测量结果, 分别确定终端在各个小区群的小区中心判断结果;或,
终端基于各个小区群中各个服务小区的测量结果,分别确定终端在各个小区群的小区中心判断结果;
在小区中心判断准则的配置方式为基于小区群配置的情况下,
终端基于各个小区群的主小区Pcell或主辅小区PSCell的测量结果,分别确定终端在各个小区群的小区中心判断结果;或,
终端基于各个小区群中各个服务小区的测量结果,分别确定终端在各个小区群的小区中心判断结果。
可选地,针对任一小区群,针对“小区中心判断准则的配置方式为基于终端配置”中的第一种情况来说,终端基于网络侧设备第一次配置的NR SCG中的主辅小区PSCell的测量结果,确定终端在小区群的小区中心判断结果,即确定终端在该小区群的小区中心判断结果是否为小区中心,例如将该主辅小区PSCell的测量结果,与某一阈值比较,若大于或等于阈值,则该终端处于小区中心,若小于该阈值,则该终端不处于小区中心。其中,该阈值可以是网络侧设备配置或终端自行确定。即在该种情况下,可以采用终端在该主辅小区PSCell的小区中心判断结果,表示该终端在小区群的小区中心判断结果。
针对“小区中心判断准则的配置方式为基于终端配置”中的第二种情况来说,终端基于小区群的主小区PCell或主辅小区PSCell的测量结果,确定终端在小区群的低移动性状态判断结果,即确定终端在该小区群的小区中心判断结果是否为小区中心,若存在主小区PCell,则基于该主小区PCell的测量结果,确定该终端在小区群的小区中心判断结果,若不存在主小区PCell且存在主辅小区PSCell,则基于主辅小区PSCell的测量结果,确定终端在小区群的小区中心判断结果。例如将该主小区PCell或主辅小区PSCell的测量结果,与某一阈值比较,若大于或等于该阈值,则该终端处于小区中心,若小于该阈值,则该终端不处于小区中心。即在该种情况下,可以采用终端在该主小区PCell或主辅小区PSCell的小区中心判断结 果,表示该终端在小区群的小区中心判断结果。
针对“小区中心判断准则的配置方式为基于终端配置”中的第三种情况来说,终端基于小区群中各个服务小区的测量结果,确定终端在小区群的小区中心判断结果,即确定终端在该小区群的小区中心判断结果是否小区中心,例如若可以分别确定终端在各个服务小区的小区中心判断结果,基于终端在各个服务小区的小区中心判断结果,确定终端在该小区群的小区中心判断结果是否为小区中心,例如在其中至少一个服务小区中终端处于小区中心,则可以确定该终端在该小区群的小区中心判断结果为小区中心,或者,在所有服务小区中终端均处于小区中心,则可以确定该终端在该小区群的小区中心判断结果为小区中心。
针对“小区中心判断准则的配置方式为基于小区群配置”中的第一种情况,终端基于小区群的主小区Pcell或主辅小区PSCell的测量结果,确定终端在小区群的小区中心判断结果,与基于终端配置的实施例类似,此次不再赘述。
针对“小区中心判断准则的配置方式为基于小区群配置”中的第二种情况,终端基于小区群中各个服务小区的测量结果,确定终端在小区群的小区中心判断结果,与基于终端配置的实施例类似,此次不再赘述。
可选地,“终端基于小区群中各个服务小区的测量结果,确定终端在小区群的小区中心判断结果”,可以通过如下几种方式实现:
在终端在小区群中至少一个服务小区处于小区中心的情况下,终端确定终端在小区群的小区中心判断结果为处于小区中心;
在终端在小区群中所有服务小区均处于小区中心的情况下,终端确定终端在小区群的小区中心判断结果为处于小区中心。
上述实施方式中,终端可以基于小区中心判断准则的配置方式,确定基于小区群中的哪些服务小区的测量结果,确定该终端在该小区群的小区中心判断结果,处理复杂度较低。
在本申请实施例中,“终端基于小区群的主小区Pcell或主辅小区 PSCell的测量结果,确定终端在小区群的低移动性状态判断结果”可以通过如下方式实现:
在小区群包括第一频带的小区和第二频带的小区的情况下,对于存在主小区PCell或主辅小区PSCell的第一频带,终端基于所述主小区PCell或主辅小区PSCell的测量结果,确定所述终端在所述第一频带的低移动性状态判断结果;
对于不存在主小区PCell或主辅小区PSCell的所述第二频带,所述终端将所述第一频带的低移动性状态判断结果,确定为所述终端在所述第二频带的低移动性判断结果。
可选地,假设小区群包括多个频带的小区,例如包括第一频带的小区和第二频带的小区,假设第一频带的小区中存在主小区PCell或主辅小区PSCell,第二频带的小区中不存在主小区PCell或主辅小区PSCell,则终端基于主小区PCell或主辅小区PSCell,确定终端在该第一频带的低移动性状态判断结果,即若存在主小区PCell,则基于该主小区PCell的测量结果,确定该终端在第一频带的低移动性状态判断结果,若不存在主小区PCell且存在主辅小区PSCell,则基于主辅小区PSCell的测量结果,确定终端在第一频带的低移动性状态判断结果。即在该种情况下,可以采用终端在该主小区PCell或主辅小区PSCell的低移动性状态判断结果,表示该终端在第一频带的低移动性状态判断结果。
进一步,终端将第一频带的低移动性状态判断结果,确定为终端在第二频带的低移动性判断结果,即终端在第二频带的低移动性判断结果可以采用第一频带的低移动性状态判断结果。
上述实施方式中,针对不同频带,可以分别确定终端在不同频带的低移动性状态判断结果,灵活性较大。
在本申请实施例中,“终端基于小区群的主小区Pcell或主辅小区PSCell的测量结果,确定终端在小区群的小区中心判断结果”可以通过如下方式实现:
在小区群包括第一频带的小区和第二频带的小区的情况下,对于存在主小区PCell或主辅小区PSCell的所述第一频带,终端基于所述主小区PCell或主辅小区PSCell的测量结果,确定终端在第一频带的小区中心判断结果;
对于不存在主小区PCell或主辅小区PSCell的所述第二频带,所述终端基于所述第二频带的辅小区SCell的测量结果,确定所述终端在所述第二频带的小区中心判断结果。
可选地,对于第一频带来说,终端基于主小区PCell或主辅小区PSCell,确定终端在该第一频带的小区中心判断结果,即若存在主小区PCell,则基于该主小区PCell的测量结果,确定该终端在第一频带的小区中心判断结果,若不存在主小区PCell且存在主辅小区PSCell,则基于主辅小区PSCell的测量结果,确定终端在第一频带的小区中心判断结果。即在该种情况下,可以采用终端在该主小区PCell或主辅小区PSCell的小区中心判断结果,表示该终端在第一频带的小区中心判断结果。
对于第二频带来说,由于第二频带的小区中不存在主小区PCell或主辅小区PSCell,则基于第二频带的辅小区SCell的测量结果,确定终端在第二频带的小区中心判断结果。
针对不同频带,可以分别确定终端在不同频带的小区中心判断结果。
可选地,步骤102可以通过如下方式:
终端基于终端在第一频带的低移动性状态判断结果和小区中心判断结果,在第一频带中的服务小区执行测量放松;
终端基于终端在第二频带的低移动性状态判断结果和小区中心判断结果,在第二频带中的服务小区执行测量放松。
可选地,针对不同频带,可以分别确定终端在不同频带中的服务小区是否执行测量放松。
上述实施方式中,针对不同频带,可以分别确定终端在不同频带的低移动性状态判断结果和小区中心判断结果,进而可以在不同频带分别执行 测量放松,灵活性较大。
在本申请实施例中,步骤101中“基于各个小区群的测量结果、低移动性状态判断准则,分别确定在各个小区群的低移动性状态判断结果”可以采用如下方式实现:
针对任一小区群,在低移动性状态判断准则的配置方式为基于服务小区配置的情况下,
终端基于第一个或最近一个配置低移动性状态判断准则的服务小区的测量结果,确定终端在各个所述小区群的低移动性状态判断结果;或,
终端基于各个小区群的主小区Pcell或主辅小区PSCell的测量结果,分别确定终端在各个小区群的低移动性状态判断结果;或,
终端基于各个小区群中至少一个服务小区的测量结果,分别确定终端在各个小区群的低移动性状态判断结果。
可选地,针对“低移动性状态判断准则的配置方式为基于服务小区配置”中的第一种情况来说,终端基于第一个或最近一个配置低移动性状态判断准则的服务小区的测量结果,确定终端在小区群的低移动性状态判断结果,即确定终端在该小区群的低移动性状态判断结果是否为低移动性状态,例如将该服务小区的测量结果,与某一测量参考值比较,若差异较小,则该终端处于低移动性状态,若差异较大,则该终端不处于低移动性状态。其中,测量参考值的初始值可以是网络侧设备配置或终端自行确定。
其中,第一个或最近一个配置低移动性状态判断准则的服务小区,指的是网络侧设备配置低移动性状态判断准则时配置的第一个服务小区,或最新配置的一个服务小区。例如,网络侧设备分别指示服务小区1、服务小区2和服务小区3配置有低移动性状态判断准则,例如一次只为一个服务小区配置低移动性状态判断准则,则服务小区1为第一个配置了低移动性状态判断准则的服务小区,最新配置例如与当前时间间隔最近的一次配置对应的服务小区。
在该种情况下,可以采用终端在第一个或最近一个配置低移动性状态 判断准则的服务小区的低移动性状态判断结果,表示该终端在小区群的低移动性状态判断结果。
针对“低移动性状态判断准则的配置方式为基于服务小区配置”中的第二种情况来说,终端基于小区群的主小区PCell或主辅小区PSCell的测量结果,确定终端在小区群的低移动性状态判断结果,即确定终端在该小区群的低移动性状态判断结果是否为低移动性状态,若存在主小区PCell,则基于该主小区PCell的测量结果,确定该终端在小区群的低移动性状态判断结果,若不存在主小区PCell且存在主辅小区PSCell,则基于主辅小区PSCell的测量结果,确定终端在小区群的低移动性状态判断结果。例如将该主小区PCell或主辅小区PSCell的测量结果,与某一测量参考值比较,若差异较小,则该终端处于低移动性状态,若差异较大,则该终端不处于低移动性状态。即在该种情况下,可以采用终端在该主小区PCell或主辅小区PSCell的低移动性状态判断结果,表示该终端在小区群的低移动性状态判断结果。
针对“低移动性状态判断准则的配置方式为基于服务小区配置”中的第三种情况来说,终端基于小区群中各个服务小区的测量结果,确定终端在小区群的低移动性状态判断结果,即确定终端在该小区群的低移动性状态判断结果是否为低移动性状态,例如若可以分别确定终端在各个服务小区的低移动性判断结果,基于终端在各个服务小区的低移动性判断结果,确定终端在该小区群的低移动性状态判断结果是否为低移动性状态,例如在其中至少一个服务小区中终端处于低移动性状态,则可以确定该终端在该小区群的低移动性状态判断结果为低移动性状态,或者,在所有服务小区中终端均处于低移动性状态,则可以确定该终端在该小区群的低移动性状态判断结果为低移动性状态。
上述实施方式中,终端可以基于网络侧设备发送的低移动性状态判断准则的配置方式确定基于小区群中哪些服务小区的测量结果,确定该终端在该小区群的低移动性判断结果,处理复杂度较低。
在本申请实施例中,步骤101中“基于各个小区群的测量结果、小区中心判断准则,分别确定在各个所述小区群的小区中心判断结果”可以采用如下方式实现:
在小区中心判断准则的配置方式为基于服务小区配置的情况下,终端基于第一个或最近一个配置所述小区中心判断准则的服务小区的测量结果,确定终端各个在小区群的小区中心判断结果;或,
终端基于各个小区群的主小区Pcell或主辅小区PSCell的测量结果,分别确定终端在各个小区群的小区中心判断结果;或,
终端基于各个小区群中各个服务小区的测量结果,分别确定终端在各个小区群的小区中心判断结果。
可选地,在小区中心判断准则的配置方式为基于服务小区配置的情况下,针对任一小区群,确定终端在小区群的小区中心判断结果,与确定终端在该小区群的低移动性状态判断结果类似,此次不再赘述。
上述实施方式中,终端可以基于网络侧设备发送的低移动性状态判断准则的配置方式确定基于小区群中哪些服务小区的测量结果,确定该终端在该小区群的小区中心判断结果,处理复杂度较低。
可选地,在小区中心判断准则的配置方式为基于服务小区配置的情况下,针对“终端基于小区群的主小区Pcell或主辅小区PSCell的测量结果,确定终端在小区群的低移动性状态判断结果”来说,基于该终端在小区群的低移动性状态判断结果,执行测量放松,可以采用如下方式实现:
终端基于用于进行波束失败检测BFD测量的辅小区SCell的测量结果,确定终端在小区群的小区中心判断结果;
终端基于终端在小区群的低移动性状态判断结果,以及终端在小区群的小区中心判断结果,在小区群中的服务小区执行BFD测量放松。
可选地,对于小区群的某个辅小区SCell来说,终端是否需要在该SCell上进行BFD测量,若是,则终端基于该SCell的测量结果,确定终端在小区群的小区中心判断结果,并基于终端在小区群的低移动性状态判断结果 以及小区中心判断结果,确定在该小区群中的服务小区是否执行BFD测量放松,该低移动性状态判断结果是基于该小区群的主小区PCell或主辅小区PSCell的测量结果确定的。
假设该辅小区SCell属于该小区群的第三频带,则终端不可以基于该第三频带的其他SCell或该小区群的其他频带的SCell的测量结果,确定在该小区群中的服务小区是否执行BFD测量放松。
上述实施方式中,针对BFD测量放松,可以基于用于确定进行BFD测量的SCell的测量结果,确定终端在小区群的小区中心判断结果,并基于终端在小区群的低移动性状态判断结果,确定执行测量放松,在减少了测量开销的同时,使得执行测量放松的小区更具有针对性。
在本申请实施例中,该测量放松方法还包括:
在终端处于空闲态下已确定终端在所述小区群中处于低移动性状态的情况下,在进入连接态后,终端确定低移动性状态判断结果为处于低移动性状态,并向网络侧设备发送低移动性状态判断结果。
可选地,如果终端根据空闲态针对主小区PCell或主辅小区PSCell或辅小区(Secondary Cell,SCell)的频点进行过相关测量,例如,对于DC场景或SCell场景下,该测量可以是提前测量(early measurement),且基于空闲态的低移动性状态判断准则,终端已判断其在空闲态下处于低移动性状态,则该终端处于低移动性状态可以重用到连接态,即确定该终端在连接态下也处于低移动性状态,并在进入连接态后,向网络侧设备上报终端处于低移动性状态。
上述实施方式中,将终端在空闲态下已确定出的处于低移动性状态的结果,沿用到连接态下,终端无需再基于测量结果去判断,减少不必要的处理过程,进而减少终端的功耗,而且可以节省处理时间。
在本申请实施例中,该测量放松方法还包括:
在网络侧设备配置的判断周期内,终端确定终端在小区群中的低移动性判断结果是否为处于低移动性状态;
在终端在小区群中的低移动性判断结果不是处于低移动性状态的情况下,终端在小区群中停止进行测量放松。
进一步,在终端在所述小区群中的低移动性判断结果是处于低移动性状态的情况下,该测量放松方法还包括:
终端确定终端在小区群中是否处于小区中心;
在终端在小区群中不处于小区中心的情况下,终端在小区群中停止进行测量放松。
其中,低移动性状态的判断周期,可以是网络配置的寻呼(paging cycle)周期,也可以是网络配置的其它值。
可选地,在执行测量放松期间,持续判断是否满足低移动性状态,若不满足低移动性状态,则退出测量放松状态,另外终端还根据当前的测量结果,判断是否需要因为不满足小区中心判断准则而退出测量放松状态。
可选地,如果终端判断不再满足低移动性状态,可以向网络侧设备上报当前是否处于低移动性状态,也可以上报是否处于小区中心。
在本申请实施例中,小区中心判断准则可以是预定义的或隐式配置的,针对各个小区群中任一服务小区,终端基于网络侧设备的第一指示信息,确定终端在服务小区的小区中心判断准则生效。
例如,通过1比特指示位指示小区中心判断准则是否生效。
可选地,小区中心判断准则的配置方式还可以基于第一指示信息的配置方式确定。例如,第一指示信息的配置方式为基于终端配置,则小区中心判断准则也采用基于终端的配置方式,第一指示信息的配置方式为基于服务小区配置,则小区中心判断准则也采用基于服务小区的配置方式,第一指示信息的配置方式为基于小区群配置,则小区中心判断准则也采用基于小区群的配置方式。
上述实施方式中,终端可以基于网络侧设备发送的指示信息,确定小区中心判断准则是否生效,或者基于指示信息的配置方式,确定小区中心判断准则采用的配置方式,进而可以确定基于小区群中哪些服务小区的测 量结果,确定该终端在该小区群的小区中心判断结果,处理复杂度较低。
示例性的,针对基于终端配置的低移动性状态判断准则,例如在连接态CA/DC场景下,该测量放松方法包括如下步骤:
步骤1a:接收网络侧设备配置的低移动性状态判断准则的相关参数,例如时长T SearchDeltaP、阈值S SearchDeltaP、判断周期等,以及小区中心判断准则的相关参数,例如阈值。
可选地,小区中心判断准则的相关参数可以不配置或隐式配置。例如,终端基于小区中心判断准则是否生效的指示信息,来确定是否需要在某一CG中,进行RLM或BFD或RRM测量的小区上,判断是否满足小区中心判断准则,如果需要进行判断,则终端自行确定其小区中心判断准则中的相关参数。
在基于终端配置的配置方式下,低移动性状态判断准则配置可以是对所有CG都生效的,例如,对于UE可以搜索到NR系统信息块(System Information Block,SIB)的情形,即存在NR主小区PCell的情况下,该低移动性状态判断准则可以直接配置在SIB2中。网络侧设备也可以将该低移动性状态判断准则配置在某个信令(如无线资源控制(Radio Resource Control,RRC)连接建立信令)中。对于NR无法搜索到NR SIB的情形,即不存在NR主小区PCell的情况下,该低移动性状态判断准则在NR辅小区群(Secondary Cell Group,SCG)加载的某个信令(如无线资源控制(Radio Resource Control,RRC)信令)中给出,此时,此时,网络侧设备可以仅在第一次配置NR SCG的信令中配置该低移动性状态判断准则。
如果低移动性状态判断准则是配置对于所有CG都生效的,基于其它信息判断某一服务小区是否需要进行RLM/BFD测量,在需要进行测量的小区,根据小区中心判断准则判断是否可以进行RLM/BFD测量放松。该些需要进行RLM/BFD测量的小区,至少包括所有的PCell和PSCell,也包括部分需要进行BFD测量的SCell。
可选地,测量放松还可以包括RRM测量放松。由于RRM测量在所 有服务小区上都需要进行,因此,如果低移动性状态判断准则是配置对于所有CG都生效的,则终端可进一步在每个服务小区上,根据所配置的,或预定义的小区中心判断准则,确定是否可以进行测量放松。
可选地,网络侧设备可以进一步在某一服务小区中,通过指示信息,例如在指示信息中配置1比特的指示位,指示该服务小区是否可以进行RLM/BFD/RRM测量放松。例如,当指示位被置为1时,指示该小区不进行RLM/BFD/RRM的测量放松。
基于对所有CG都生效的低移动性状态判断准则配置,和仅仅对某一服务小区生效的测量放松指示,网络可以更灵活地控制终端在某些特定小区的测量放松行为,来保证终端的性能。
步骤2a:终端基于网络侧设备配置的低移动性状态判断准则,在相应的服务小区上,开始对该服务小区的测量结果进行判断,确定低移动性状态判断结果,以及基于小区中心判断准则,确定小区中心判断结果。具体参见前述实施例。
可选地,如果终端在该CG内的主小区PCell或主辅小区PSCell判断可以进行RLM/BFD/RRM测量放松,则辅小区SCell也进行RLM/BFD/RRM测量放松。
可选地,如果某个CG包含多个频带上的不同小区,则终端在包含主小区PCell或主辅小区PSCell的频带上基于主小区PCell或主辅小区PSCell的测量结果,判断该频带上的小区是否需要进行RLM/BFD/RRM测量放松;在不包含主小区PCell或主辅小区PSCell的频带上,终端基于SCell的测量结果判断是否进行RLM/BFD/RRM测量放松。
可选地,在不包含PCell或PSCell的频带上,终端基于SCell的测量结果,仅仅判断是否满足小区中心判断准则,即是否处于小区中心,进而基于相同CG内PCell或PSCell对应的低移动性状态判断结果,确定是否进行RLM/BFD/RRM测量放松。
可选地,如果MCG判断结果为可以进行RLM/BFD/RRM测量放松, 则对所有CG都进行RLM/BFD/RRM测量放松;如果只有一个或多个SCG判断结果为可以进行RLM/BFD/RRM测量放松,则只针对判断为可进行测量放松的SCG进行RLM/BFD/RRM测量放松;
如果MCG判断结果为可以进行RLM/BFD/RRM测量放松,则只要SCG判断满足小区中心判断准则,则也进行RLM/BFD/RRM测量放松;如果MCG判断结果为不可以进行RLM/BFD/RRM测量放松,则SCG必须同时满足小区中心判断准则和低移动性状态判断准则,才可以进行RLM/BFD/RRM测量放松。
Step 3a:在确定执行测量放松后,终端进入相应的测量放松状态,并按照低移动性状态地判断周期配置要求,持续判断是否满足低移动性状态,若不满足则退出测量放松状态;另外,终端还根据当前的测量结果,判断是否需要因为不满足小区中心判断准则而退出测量放松状态。
Step 4a:终端退出测量放松状态,并回到Step 2a持续判断。
示例性的,针对基于小区群配置的低移动性状态判断准则,例如在连接态CA/DC场景下,该测量放松方法包括如下步骤:
步骤1b:接收网络侧设备配置的低移动性状态判断准则的相关参数,例如时长T SearchDeltaP、阈值S SearchDeltaP、判断周期等,以及小区中心判断准则的相关参数,例如阈值。
可选地,小区中心判断准则的相关参数可以不配置或隐式配置。例如,终端基于小区中心判断准则是否生效的指示信息,来确定是否需要在某一CG中,进行RLM或BFD或RRM测量的小区上,判断是否满足小区中心判断准则,如果需要进行判断,则终端自行确定其小区中心判断准则中的相关参数。
在基于小区群配置的配置方式下,低移动性状态判断准则可以是在CG配置中,将相关参数配置下来的,因此仅仅对当前CG生效。可选地,被配置的CG只能是NR的CG,不能是LTE的CG。
终端可以基于NR SCG中的PSCell的测量结果来判断是否处于低移 动性状态,进而将判断结果应用于该SCG下的所有服务小区;终端也可以基于每一服务小区的测量结果,分别判断低移动性状态。
在被配置了低移动性状态判断准则的CG内,终端进一步基于其它信息判断某一服务小区是否需要进行RLM/BFD测量,在需要进行测量的小区,根据小区中心准则判断是否可以进行RLM/BFD测量放松。该些需要进行RLM/BFD测量的小区,至少包括所有的PCell和PSCell,也包括部分需要进行BFD测量的SCell。
可选地,网络侧设备可以进一步在某一服务小区中,通过指示信息,例如在指示信息中配置1比特的指示位,指示该服务小区是否可以进行RLM/BFD/RRM测量放松。例如,当指示位被置为1时,指示该小区不进行RLM/BFD/RRM的测量放松。
基于对所有CG都生效的低移动性状态判断准则配置,和仅仅对某一服务小区生效的测量放松指示,网络可以更灵活地控制终端在某些特定小区的测量放松行为,来保证终端的性能。
Step 2b:终端基于网络侧设备配置的低移动性状态判断准则,在相应的服务小区上,开始对该服务小区的测量结果进行判断,确定低移动性状态判断结果,以及基于小区中心判断准则,确定小区中心判断结果。具体参见前述实施例。
可选地,如果终端在该CG内的主小区PCell或主辅小区PSCell判断可以进行RLM/BFD/RRM测量放松,则辅小区SCell也进行RLM/BFD/RRM测量放松。
可选地,如果某个CG包含多个频带上的不同小区,则终端在包含主小区PCell或主辅小区PSCell的频带上基于主小区PCell或主辅小区PSCell的测量结果,判断该频带上的小区是否需要进行RLM/BFD/RRM测量放松;在不包含主小区PCell或主辅小区PSCell的频带上,终端基于SCell的测量结果判断是否进行RLM/BFD/RRM测量放松。
可选地,在不包含PCell或PSCell的频带上,终端基于SCell的测量 结果,仅仅判断是否满足小区中心判断准则,即是否处于小区中心,进而基于相同CG内PCell或PSCell对应的低移动性状态判断结果,确定是否进行RLM/BFD/RRM测量放松。
可选地,如果MCG判断结果为可以进行RLM/BFD/RRM测量放松,则对所有CG都进行RLM/BFD/RRM测量放松;如果只有一个或多个SCG判断结果为可以进行RLM/BFD/RRM测量放松,则只针对判断为可进行测量放松的SCG进行RLM/BFD/RRM测量放松;
如果MCG判断结果为可以进行RLM/BFD/RRM测量放松,则只要SCG判断满足小区中心判断准则,则也进行RLM/BFD/RRM测量放松;如果MCG判断结果为不可以进行RLM/BFD/RRM测量放松,则SCG必须同时满足小区中心判断准则和低移动性状态判断准则,才可以进行RLM/BFD/RRM测量放松。
Step 3b:在确定执行测量放松后,终端进入相应的测量放松状态,并按照低移动性状态地判断周期配置要求,持续判断是否满足低移动性状态,若不满足则退出测量放松状态;另外,终端还根据当前的测量结果,判断是否需要因为不满足小区中心判断准则而退出测量放松状态。
Step 4b:终端退出测量放松状态,并回到Step 2a持续判断。
示例性的,针对基于服务小区配置的低移动性状态判断准则,例如在连接态CA/DC场景下,该测量放松方法包括如下步骤:
步骤1c:接收网络侧设备配置的低移动性状态判断准则的相关参数,例如时长T SearchDeltaP、阈值S SearchDeltaP、判断周期等,以及小区中心判断准则的相关参数,例如阈值。
可选地,小区中心判断准则的相关参数可以不配置或隐式配置。例如,终端基于小区中心判断准则是否生效的指示信息,来确定是否需要在某一CG中,进行RLM或BFD或RRM测量的小区上,判断是否满足小区中心判断准则,如果需要进行判断,则终端自行确定其小区中心判断准则中的相关参数。
在基于小区群配置的配置方式下,低移动性状态判断准则可以是在每个服务小区的配置中,将相关参数配置下来的,因此仅仅对当前服务小区生效。可选地,被配置的服务小区只能是NR的服务小区,不能是LTE的服务小区。
可选地,在每个CG内,终端按照第一个或最近一个配置低移动性状态判断准则的服务小区判断能否进行测量放松。可选地,也可以限定网络侧设备仅仅只能在需要进行RLM和/或BFD的小区,才配置低移动性状态判断准则,即,终端按照CG内PCell和PSCell和需要进行BFD测量的SCell上判断能否进行测量放松。
在被配置了低移动性状态判断准则的服务小区内,UE进一步基于其它信息判断某一服务小区是否需要进行RLM/BFD测量,在需要进行测量的小区,根据小区中心准则判断是否可以进行RLM/BFD测量放松。这一需要进行RLM/BFD测量的小区,至少包括所有的PCell和PSCell,也包括部分需要进行BFD测量的SCell。
终端在CG内需要进行BFD测量的SCell上判断能否进行测量放松,是指,例如,如果只在某个频带上的其中一个SCell配置了可以进行BFD测量放松的,则终端可以选择在该SCell上进行测量,并当满足条件时放松BFD测量。如果终端在这个频带中其它SCell上或其它频带上的SCell进行BFD测量,则终端可以认为在这个频带中其它SCell上或其它频带上的SCell无法进行BFD测量放松。
Step 2c:终端基于网络侧设备配置的低移动性状态判断准则,在相应的服务小区上,开始对该服务小区的测量结果进行判断,确定低移动性状态判断结果,以及基于小区中心判断准则,确定小区中心判断结果。具体参见前述实施例。
如果网络侧设备配置了终端需要上报判断结果,则终端需要在相应的CG,给网络侧设备上报以下至少一项:低移动性状态判断结果、小区中心判断结果或是否执行测量放松。
可选地,如果终端在该CG内的主小区PCell或主辅小区PSCell判断可以进行RLM/BFD/RRM测量放松,则辅小区SCell也进行RLM/BFD/RRM测量放松。
可选地,如果某个CG包含多个频带上的不同小区,则终端在包含主小区PCell或主辅小区PSCell的频带上基于主小区PCell或主辅小区PSCell的测量结果,判断该频带上的小区是否需要进行RLM/BFD/RRM测量放松;在不包含主小区PCell或主辅小区PSCell的频带上,终端基于SCell的测量结果判断是否进行RLM/BFD/RRM测量放松。
可选地,在不包含PCell或PSCell的频带上,终端基于SCell的测量结果,仅仅判断是否满足小区中心判断准则,即是否处于小区中心,进而基于相同CG内PCell或PSCell对应的低移动性状态判断结果,确定是否进行RLM/BFD/RRM测量放松。
可选地,如果MCG判断结果为可以进行RLM/BFD/RRM测量放松,则对所有CG都进行RLM/BFD/RRM测量放松;如果只有一个或多个SCG判断结果为可以进行RLM/BFD/RRM测量放松,则只针对判断为可进行测量放松的SCG进行RLM/BFD/RRM测量放松;
如果MCG判断结果为可以进行RLM/BFD/RRM测量放松,则只要SCG判断满足小区中心判断准则,则也进行RLM/BFD/RRM测量放松;如果MCG判断结果为不可以进行RLM/BFD/RRM测量放松,则SCG必须同时满足小区中心判断准则和低移动性状态判断准则,才可以进行RLM/BFD/RRM测量放松。
Step 3c:在确定执行测量放松后,终端进入相应的测量放松状态,并按照低移动性状态地判断周期配置要求,持续判断是否满足低移动性状态,若不满足则退出测量放松状态;另外,终端还根据当前的测量结果,判断是否需要因为不满足小区中心判断准则而退出测量放松状态。
Step 4c:终端退出测量放松状态,并回到Step 2a持续判断。
图4是本申请实施例提供的测量放松方法的流程示意图之二。如图3、 图4所示,本实施例提供的测量放松方法,包括:
步骤201、网络侧设备为终端配置低移动性状态判断准则;
步骤202、网络侧设备接收来自所述终端的第一指示信息,第一指示信息用于指示终端在至少一个小区群中各个小区群中的服务小区是否执行测量放松,终端是否执行测量放松是基于终端在各个小区群的低移动性状态判断结果和小区中心判断结果确定的,各个小区群的低移动性状态判断结果和小区中心判断结果为终端分别基于各个小区群的测量结果以及低移动性状态判断准则和小区中心判断准则确定的。
可选地,网络侧设备可以基于终端、服务小区或小区群配置低移动性状态判断准则,终端基于配置的低移动性状态判断准则以及测量结果确定低移动性状态,基于该小区群的测量结果以及小区中心判断准则确定是否处于小区中心,进而确定在该小区群中的服务小区是否执行测量放松。
其中,步骤201和步骤202并不存在限定关系。
步骤201与图3中步骤100类似,可选地,还可以包括步骤103、终端向网络侧设备上报终端在各个小区群中的服务小区是否执行测量放松。
网络侧设备的方法,与终端侧的方法,其实现原理与技术效果类似,此次不再赘述。
本实施例的方法,终端基于至少一个小区群中各个小区群的测量结果、低移动性状态判断准则以及小区中心判断准则,分别确定在各个小区群的低移动性状态判断结果和小区中心判断结果,进一步基于各个小区群的低移动性状态判断结果和小区中心判断结果,分别确定各个小区群中的服务小区是否可以进行测量放松,并在各个小区群中的服务小区分别执行测量放松,可以使得终端在网络侧设备配置了多个服务小区的情况下,针对每个小区群或每个服务小区的实际情况,来确定是否执行测量放松,在通信性能和省电性能的折中上,具有较好的灵活性。
可选地,在所述低移动性状态判断准则的配置方式为基于终端配置的情况下,所述终端在各个所述小区群的低移动性状态判断结果为所述终端 基于网络侧设备第一次配置的NR辅小区群SCG中的主辅小区PSCell的测量结果确定的;或,
所述终端在各个所述小区群的低移动性状态判断结果分别为所述终端基于各个所述小区群的主小区PCell或主辅小区PSCell的测量结果确定的;或,
所述终端在各个所述小区群的低移动性状态判断结果分别为所述终端基于各个所述小区群中至少一个服务小区的测量结果确定的;
在所述低移动性状态判断准则的配置方式为基于小区群配置的情况下,
所述终端在各个所述小区群的所述低移动性状态判断结果分别为所述终端基于各个所述小区群的主小区Pcell或主辅小区PSCell的测量结果确定的;或,
所述终端在各个所述小区群的低移动性状态判断结果分别为所述终端基于各个所述小区群中至少一个服务小区的测量结果确定的。
可选地,在所述小区中心判断准则的配置方式为基于终端配置的情况下,所述终端在各个所述小区群的小区中心判断结果为所述终端基于网络侧设备第一次配置的NR辅小区群SCG中的主辅小区PSCell的测量结果确定的;或,
所述终端在各个所述小区群的小区中心判断结果分别为所述终端基于各个所述小区群的主小区PCell或主辅小区PSCell的测量结果确定的;或,
所述终端在各个所述小区群的小区中心判断结果分别为所述终端基于各个所述小区群中至少一个服务小区的测量结果确定的;
在所述小区中心判断准则的配置方式为基于小区群配置的情况下,
所述终端在各个所述小区群的小区中心判断结果分别为所述终端基于各个所述小区群的主小区Peell或主辅小区PSCell的测量结果确定的;或,
所述终端在各个所述小区群的小区中心判断结果分别为所述终端基于各个所述小区群中至少一个服务小区的测量结果确定的。
可选地,在所述小区群包括第一频带的小区和第二频带的小区的情况下,对于存在主小区PCell或主辅小区PSCell的第一频带,所述终端在所述第一频带的低移动性状态判断结果为所述终端基于所述主小区PCell或主辅小区PSCell的测量结果确定的;
对于不存在主小区PCell或主辅小区PSCell的第二频带,所述终端在所述第二频带的低移动性判断结果为所述终端在所述第一频带的低移动性状态判断结果。
可选地,在所述小区群包括第一频带的小区和第二频带的小区的情况下,对于存在主小区PCell或主辅小区PSCell的第一频带,所述终端在所述第一频带的小区中心判断结果为所述终端基于所述主小区PCell或主辅小区PSCell的测量结果确定的;
对于不存在主小区PCell或主辅小区PSCell的第二频带,所述终端在所述第二频带的小区中心判断结果为所述终端基于所述第二频带的辅小区SCell的测量结果确定的。
可选地,在所述低移动性状态判断准则的配置方式为基于服务小区配置的情况下,
在所述低移动性状态判断准则的配置方式为基于服务小区配置的情况下,
所述终端在各个所述小区群的低移动性状态判断结果为所述终端基于第一个或最近一个配置所述低移动性判断准则的服务小区的测量结果确定的;或,
所述终端在各个所述小区群的低移动性状态判断结果分别为所述终端基于各个所述小区群的主小区Pcell或主辅小区PSCell的测量结果确定的;或,
所述终端在各个所述小区群的低移动性状态判断结果分别为所述终 端基于各个所述小区群中至少一个服务小区的测量结果确定的。
可选地,在所述小区中心判断准则的配置方式为基于服务小区配置的情况下,
所述终端在各个所述小区群的小区中心判断结果为所述终端基于第一个或最近一个配置所述小区中心判断准则的服务小区的测量结果确定的;或,
所述终端在各个所述小区群的小区中心判断结果分别为所述终端基于各个所述小区群的主小区Pcell或主辅小区PSCell的测量结果确定的;或,
所述终端在各个所述小区群的小区中心判断结果分别为所述终端基于各个所述小区群中各个服务小区的测量结果确定的。
可选地,所述终端所述小区群中的服务小区执行BFD测量放松为所述终端基于所述终端在所述小区群的低移动性状态判断结果,以及所述终端在所述小区群的小区中心判断结果确定的;其中,所述终端在所述小区群的小区中心判断结果为所述终端基于用于确定进行波束失败检测BFD测量放松的辅小区Scell的测量结果确定的。
可选地,所述方法还包括:
所述网络侧设备向所述终端发送第二指示信息,所述第二指示信息用于指示所述终端在所述小区群中的服务小区的小区中心判断准则生效。
可选地,所述小区中心准则的配置方式为基于第二指示信息的配置方式确定的。
上述实施方式中的具体实现过程与技术效果与终端侧方法实施例中类似,具体可以参见终端侧实施例中的详细介绍,此次不再赘述。
需要说明的是,本申请实施例提供的测量放松方法,执行主体可以为测量放松装置,或者,该测量放松装置中的用于执行测量放松方法的处理模块。本申请实施例中以测量放松装置执行测量放松方法为例,说明本申请实施例提供的测量放松装置。
图5是本申请提供的测量放松装置的结构示意图。本实施例提供的测量放松装置500,包括:
确定模块501,用于基于至少一个小区群中各个所述小区群的测量结果、低移动性状态判断准则以及小区中心判断准则,分别确定在各个所述小区群的低移动性状态判断结果和小区中心判断结果;
处理模块502,用于基于各个所述小区群的低移动性状态判断结果和小区中心判断结果,在各个所述小区群中的服务小区执行测量放松。
本实施例的装置,确定模块基于至少一个小区群中各个小区群的测量结果、低移动性状态判断准则以及小区中心判断准则,分别确定在各个小区群的低移动性状态判断结果和小区中心判断结果,进一步处理模块基于各个小区群的低移动性状态判断结果和小区中心判断结果,分别确定各个小区群中的服务小区是否可以进行测量放松,并在各个小区群中的服务小区分别执行测量放松,可以使得在网络侧设备配置了多个服务小区的情况下,针对每个小区群或每个服务小区的实际情况,来确定是否执行测量放松,在通信性能和省电性能的折中上,具有较好的灵活性。
可选地,处理模块502,具体用于:
针对任一所述小区群,所述终端在所述小区群的低移动性状态判断结果为处于低移动性状态,且所述终端在所述小区群的小区中心判断结果为处于小区中心,则确定在所述小区群中的服务小区执行测量放松;所述小区中心判断结果是基于所述小区群中至少一个小区对应的小区中心判断结果得到的,或,
针对任一所述小区群,所述终端在所述小区群的低移动性状态判断结果为处于低移动性状态,且在所述小区群中至少一个服务小区的小区中心判断结果为处于小区中心,则确定在所述至少一个服务小区中各个所述服务小区执行测量放松。
可选地,处理模块502,具体用于:
对于各个所述小区群中主小区群MCG,在基于所述MCG的低移动性 状态判断结果和小区中心判断结果,确定在所述MCG中的服务小区执行测量放松的情况下,在各个所述小区群中所有小区群中的服务小区执行测量放松;或,
在各个所述小区群中基于低移动性状态判断结果和小区中心判断结果确定在辅小区群SCG执行测量放松的情况下,所述终端在所述SCG中的服务小区执行测量放松。
可选地,确定模块501,具体用于:
在所述低移动性状态判断准则的配置方式为基于终端配置的情况下,
所述终端基于网络侧设备第一次配置的NR辅小区群SCG中的主辅小区PSCell的测量结果,确定所述终端在各个所述小区群的低移动性状态判断结果;或,
所述终端基于各个所述小区群的主小区PCell或主辅小区PSCell的测量结果,分别确定所述终端在各个所述小区群的低移动性状态判断结果;或,
所述终端基于各个所述小区群中至少一个服务小区的测量结果,分别确定所述终端在各个所述小区群的低移动性状态判断结果;
在所述低移动性状态判断准则的配置方式为基于小区群配置的情况下,
所述终端基于各个所述小区群的主小区PCell或主辅小区PSCell的测量结果,分别确定所述终端在各个所述小区群的所述低移动性状态判断结果;或,
所述终端基于各个所述小区群中至少一个服务小区的测量结果,分别确定所述终端在各个所述小区群的低移动性状态判断结果。
可选地,确定模块501,具体用于:
在所述小区中心判断准则的配置方式为基于终端配置的情况下,
所述终端基于网络侧设备第一次配置的NR辅小区群SCG中的主辅小区PSCell的测量结果,确定所述终端在各个所述小区群的小区中心判断结 果;或,
所述终端基于各个所述小区群的主小区PCell或主辅小区PSCell的测量结果,分别确定所述终端在各个所述小区群的小区中心判断结果;或,
所述终端基于各个所述小区群中至少一个服务小区的测量结果,分别确定所述终端在各个所述小区群的小区中心判断结果;
在所述小区中心判断准则的配置方式为基于小区群配置的情况下,
所述终端基于各个所述小区群的主小区Pcell或主辅小区PSCell的测量结果,分别确定所述终端在各个所述小区群的小区中心判断结果;或,
所述终端基于各个所述小区群中至少一个服务小区的测量结果,分别确定所述终端在各个所述小区群的小区中心判断结果。
可选地,确定模块501,具体用于:
在所述小区群包括第一频带的小区和第二频带的小区的情况下,对于存在主小区PCell或主辅小区PSCell的所述第一频带,基于所述主小区PCell或主辅小区PSCell的测量结果,确定所述终端在所述第一频带的低移动性状态判断结果;
对于不存在主小区PCell或主辅小区PSCell的所述第二频带,将所述第一频带的低移动性状态判断结果,确定为所述终端在所述第二频带的低移动性判断结果。
可选地,确定模块501,具体用于:
在所述小区群包括第一频带的小区和第二频带的小区的情况下,对于存在主小区PCell或主辅小区PSCell的所述第一频带,基于所述主小区PCell或主辅小区PSCell的测量结果,确定所述终端在所述第一频带的小区中心判断结果;
对于不存在主小区PCell或主辅小区PSCell的所述第二频带,基于所述第二频带的辅小区SCell的测量结果,确定所述终端在所述第二频带的小区中心判断结果。
可选地,确定模块501,具体用于:
在所述低移动性状态判断准则的配置方式为基于服务小区配置的情况下,
所述终端基于第一个或最近一个配置所述低移动性状态判断准则的服务小区的测量结果,确定所述终端在各个所述小区群的低移动性状态判断结果;或,
所述终端基于各个所述小区群的主小区PCell或主辅小区PSCell的测量结果,分别确定所述终端在各个所述小区群的低移动性状态判断结果;或,
所述终端基于各个所述小区群中至少一个服务小区的测量结果,分别确定所述终端在各个所述小区群的低移动性状态判断结果。
可选地,确定模块501,具体用于:
在所述小区中心判断准则的配置方式为基于服务小区配置的情况下,
所述终端基于第一个或最近一个配置所述小区中心判断准则的服务小区的测量结果,确定所述终端在各个所述小区群的小区中心判断结果;或,
所述终端基于各个所述小区群的主小区Pcell或主辅小区PSCell的测量结果,分别确定所述终端在各个所述小区群的小区中心判断结果;或,
所述终端基于各个所述小区群中至少一个服务小区的测量结果,分别确定所述终端在各个所述小区群的小区中心判断结果。可选地,处理模块502,具体用于:
基于用于进行波束失败检测BFD测量的辅小区SCell的测量结果,确定所述终端在所述小区群的小区中心判断结果;
基于所述终端在所述小区群的低移动性状态判断结果,以及所述终端在所述小区群的小区中心判断结果,在所述小区群中的服务小区执行BFD测量放松。
可选地,确定模块501,还用于:
针对各个所述小区群中任一服务小区,基于网络侧设备的第一指示信 息,确定所述终端在所述服务小区的小区中心判断准则生效。
可选地,所述低移动性状态判断准则为网络侧设备配置的;或,
所述低移动性状态判断准则和所述小区中心判断准则均为网络侧设备配置的。
可选地,在所述低移动性状态判断准则为网络侧设备配置的情况下,如果所述低移动性状态的配置方式为基于终端配置,则所述小区中心准则的配置方式为基于终端配置的;
如果所述低移动性状态的配置方式为基于小区群配置,则所述小区中心准则的配置方式为基于小区群配置的;
如果所述低移动性状态的配置方式为基于服务小区配置,则所述小区中心准则的配置方式为基于服务小区配置的。
可选地,所述小区中心准则的配置方式为基于第一指示信息的配置方式确定的。
上述实施方式中的具体实现过程与技术效果与终端侧方法实施例中类似,具体可以参见终端侧实施例中的详细介绍,此次不再赘述。
图6是本申请提供的测量放松装置的结构示意图。本实施例提供的测量放松装置600,包括:
发送模块601,用于为终端配置低移动性状态判断准则;
接收模块602,用于接收来自所述终端的第一指示信息,所述第一指示信息用于指示所述终端在至少一个小区群中各个小区群中的服务小区是否执行测量放松,所述终端是否执行测量放松是基于所述终端在各个所述小区群的低移动性状态判断结果和小区中心判断结果确定的,各个所述小区群的低移动性状态判断结果和小区中心判断结果为所述终端分别基于各个所述小区群的测量结果以及所述低移动性状态判断准则和小区中心判断准则确定的。
本实施例的装置,终端基于至少一个小区群中各个小区群的测量结果、低移动性状态判断准则以及小区中心判断准则,分别确定在各个小区群的 低移动性状态判断结果和小区中心判断结果,进一步基于各个小区群的低移动性状态判断结果和小区中心判断结果,分别确定各个小区群中的服务小区是否可以进行测量放松,并在各个小区群中的服务小区分别执行测量放松,可以使得终端在网络侧设备配置了多个服务小区的情况下,针对每个小区群或每个服务小区的实际情况,来确定是否执行测量放松,在通信性能和省电性能的折中上,具有较好的灵活性。
可选地,在所述低移动性状态判断准则的配置方式为基于终端配置的情况下,所述终端在各个所述小区群的低移动性状态判断结果为所述终端基于网络侧设备第一次配置的NR辅小区群SCG中的主辅小区PSCell的测量结果确定的;或,
所述终端在各个所述小区群的低移动性状态判断结果分别为所述终端基于各个所述小区群的主小区PCell或主辅小区PSCell的测量结果确定的;或,
所述终端在各个所述小区群的低移动性状态判断结果分别为所述终端基于各个所述小区群中至少一个服务小区的测量结果确定的;
在所述低移动性状态判断准则的配置方式为基于小区群配置的情况下,
所述终端在各个所述小区群的所述低移动性状态判断结果分别为所述终端基于各个所述小区群的主小区Peell或主辅小区PSCell的测量结果确定的;或,
所述终端在各个所述小区群的低移动性状态判断结果分别为所述终端基于各个所述小区群中至少一个服务小区的测量结果确定的。
可选地,在所述小区中心判断准则的配置方式为基于终端配置的情况下,所述终端在各个所述小区群的小区中心判断结果为所述终端基于网络侧设备第一次配置的辅小区群SCG中的主辅小区PSCell的测量结果确定的;或,
所述终端在各个所述小区群的小区中心判断结果分别为所述终端基 于各个所述小区群的主小区PCell或主辅小区PSCell的测量结果确定的;或,
所述终端在各个所述小区群的小区中心判断结果分别为所述终端基于各个所述小区群中至少一个服务小区的测量结果确定的;
在所述小区中心判断准则的配置方式为基于小区群配置的情况下,
所述终端在各个所述小区群的小区中心判断结果分别为所述终端基于各个所述小区群的主小区Pcell或主辅小区PSCell的测量结果确定的;或,
所述终端在各个所述小区群的小区中心判断结果分别为所述终端基于各个所述小区群中至少一个服务小区的测量结果确定的。
可选地,在所述小区群包括第一频带的小区和第二频带的小区的情况下,对于存在主小区PCell或主辅小区PSCell的第一频带,所述终端在所述第一频带的低移动性状态判断结果为所述终端基于所述主小区PCell或主辅小区PSCell的测量结果确定的;
对于不存在主小区PCell或主辅小区PSCell的第二频带,所述终端在所述第二频带的低移动性判断结果为所述终端在所述第一频带的低移动性状态判断结果。
可选地,在所述小区群包括第一频带的小区和第二频带的小区的情况下,对于存在主小区PCell或主辅小区PSCell的第一频带,所述终端在所述第一频带的小区中心判断结果为所述终端基于所述主小区PCell或主辅小区PSCell的测量结果确定的;
对于不存在主小区PCell或主辅小区PSCell的第二频带,所述终端在所述第二频带的小区中心判断结果为所述终端基于所述第二频带的辅小区SCell的测量结果确定的。
可选地,在所述低移动性状态判断准则的配置方式为基于服务小区配置的情况下,
所述终端在各个所述小区群的低移动性状态判断结果为所述终端基 于第一个或最近一个配置所述低移动性判断准则的服务小区的测量结果确定的;或,
所述终端在各个所述小区群的低移动性状态判断结果分别为所述终端基于各个所述小区群的主小区Pcell或主辅小区PSCell的测量结果确定的;或,
所述终端在各个所述小区群的低移动性状态判断结果分别为所述终端基于各个所述小区群中至少一个服务小区的测量结果确定的。
可选地,在所述小区中心判断准则的配置方式为基于服务小区配置的情况下,
所述终端在各个所述小区群的小区中心判断结果为所述终端基于第一个或最近一个配置所述小区中心判断准则的服务小区的测量结果确定的;或,
所述终端在各个所述小区群的小区中心判断结果分别为所述终端基于各个所述小区群的主小区Pcell或主辅小区PSCell的测量结果确定的;或,
所述终端在各个所述小区群的小区中心判断结果分别为所述终端基于各个所述小区群中各个服务小区的测量结果确定的。
可选地,所述终端在所述小区群中的服务小区执行波束失败检测BFD测量放松为所述终端基于所述终端在所述小区群的低移动性状态判断结果,以及所述终端在所述小区群的小区中心判断结果确定的;其中,所述终端在所述小区群的小区中心判断结果为所述终端基于进行BFD测量放松的辅小区Scell的测量结果确定的。
可选地,发送模块601,还用于:
向所述终端发送第二指示信息,所述第二指示信息用于指示所述终端在所述小区群中的服务小区的小区中心判断准则生效。
可选地,所述小区中心准则的配置方式为基于第一指示信息的配置方式确定的。
上述实施方式中的具体实现过程与技术效果与网络侧设备的方法实施例中类似,具体可以参见方法侧实施例中的详细介绍,此次不再赘述。
本申请实施例中的测量放松装置可以是装置,具有操作系统的装置或电子设备,也可以是终端中的部件、集成电路、或芯片。该装置或电子设备可以是移动终端,也可以为非移动终端。示例性的,移动终端可以包括但不限于上述所列举的终端11的类型,非移动终端可以为服务器、网络附属存储器(Network Attached Storage,NAS)、个人计算机(personal computer,PC)、电视机(television,TV)、柜员机或者自助机等,本申请实施例不作具体限定。
本申请实施例提供的测量放松装置能够实现图2至图4的方法实施例实现的各个过程,并达到相同的技术效果,为避免重复,这里不再赘述。
可选的,如图7所示,本申请实施例还提供一种通信设备700,包括处理器701,存储器702,存储在存储器702上并可在所述处理器701上运行的程序或指令,例如,该通信设备700为终端时,该程序或指令被处理器701执行时实现上述测量放松方法实施例的各个过程,且能达到相同的技术效果。该通信设备700为网络侧设备时,该程序或指令被处理器701执行时实现上述测量放松方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
本申请实施例还提供一种终端,包括处理器和通信接口,处理器用于基于至少一个小区群中各个所述小区群的测量结果、低移动性状态判断准则以及小区中心判断准则,分别确定在各个所述小区群的低移动性状态判断结果和小区中心判断结果;基于各个所述小区群的低移动性状态判断结果和小区中心判断结果,在各个所述小区群中的服务小区执行测量放松,所述通信接口用于获取至少一个小区群中各个所述小区群的测量结果。该终端实施例是与上述终端侧方法实施例对应的,上述方法实施例的各个实施过程和实现方式均可适用于该终端实施例中,且能达到相同的技术效果。具体地,图8为实现本申请实施例的一种终端的硬件结构示意图。
该终端1000包括但不限于:射频单元1001、网络模块1002、音频输出单元1003、输入单元1004、传感器1005、显示单元1006、用户输入单元1007、接口单元1008、存储器1009、以及处理器1010等部件。
本领域技术人员可以理解,终端1000还可以包括给各个部件供电的电源(比如电池),电源可以通过电源管理系统与处理器1010逻辑相连,从而通过电源管理系统实现管理充电、放电、以及功耗管理等功能。图8中示出的终端结构并不构成对终端的限定,终端可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置,在此不再赘述。
应理解的是,本申请实施例中,输入单元1004可以包括图形处理器(Graphics Processing Unit,GPU)10041和麦克风10042,图形处理器10041对在视频捕获模式或图像捕获模式中由图像捕获装置(如摄像头)获得的静态图片或视频的图像数据进行处理。显示单元1006可包括显示面板10061,可以采用液晶显示器、有机发光二极管等形式来配置显示面板10061。用户输入单元1007包括触控面板10071以及其他输入设备10072。触控面板10071,也称为触摸屏。触控面板10071可包括触摸检测装置和触摸控制器两个部分。其他输入设备10072可以包括但不限于物理键盘、功能键(比如音量控制按键、开关按键等)、轨迹球、鼠标、操作杆,在此不再赘述。
本申请实施例中,射频单元1001将来自目标服务小区的信号接收后,给处理器1010处理;另外,将终端的低移动性状态判断结果、小区中心判断结果或是否执行测量放松的至少一项发送给网络侧设备。通常,射频单元1001包括但不限于天线、至少一个放大器、收发信机、耦合器、低噪声放大器、双工器等。
存储器1009可用于存储软件程序或指令以及各种数据。存储器1009可主要包括存储程序或指令区和存储数据区,其中,存储程序或指令区可存储操作系统、至少一个功能所需的应用程序或指令(比如声音播放功能、图像播放功能等)等。此外,存储器1009可以包括高速随机存取存储器, 还可以包括非易失性存储器,其中,非易失性存储器可以是只读存储器(Read-Only Memory,ROM)、可编程只读存储器(Programmable ROM,PROM)、可擦除可编程只读存储器(Erasable PROM,EPROM)、电可擦除可编程只读存储器(Electrically EPROM,EEPROM)或闪存。例如至少一个磁盘存储器件、闪存器件、或其他非易失性固态存储器件。
处理器1010可包括一个或多个处理单元;可选的,处理器1010可集成应用处理器和调制解调处理器,其中,应用处理器主要处理操作系统、用户界面和应用程序或指令等,调制解调处理器主要处理无线通信,如基带处理器。可以理解的是,上述调制解调处理器也可以不集成到处理器1010中。
其中,处理器1010,用于基于至少一个小区群中各个所述小区群的测量结果、低移动性状态判断准则以及小区中心判断准则,分别确定在各个所述小区群的低移动性状态判断结果和小区中心判断结果;
基于各个所述小区群的低移动性状态判断结果和小区中心判断结果,在各个所述小区群中的服务小区执行测量放松。
上述实施方式中,终端基于至少一个小区群中各个小区群的测量结果、低移动性状态判断准则以及小区中心判断准则,分别确定在各个小区群的低移动性状态判断结果和小区中心判断结果,进一步基于各个小区群的低移动性状态判断结果和小区中心判断结果,分别确定各个小区群中的服务小区是否可以进行测量放松,并在各个小区群中的服务小区分别执行测量放松,可以使得终端在网络侧设备配置了多个服务小区的情况下,针对每个小区群或每个服务小区的实际情况,来确定是否执行测量放松,在通信性能和省电性能的折中上,具有较好的灵活性。
可选地,处理器1010具体用于:
针对任一所述小区群,所述终端在所述小区群的低移动性状态判断结果为处于低移动性状态,且所述终端在所述小区群的小区中心判断结果为处于小区中心,则确定在所述小区群中的服务小区执行测量放松;所述小 区中心判断结果是基于所述小区群中至少一个服务小区对应的小区中心判断结果得到的,或,
针对任一所述小区群,所述终端在所述小区群的低移动性状态判断结果为处于低移动性状态,且在所述小区群中至少一个服务小区的小区中心判断结果为处于小区中心,则确定在所述至少一个服务小区中各个所述服务小区执行测量放松。
上述实施方式中,针对任一小区群,需要同时满足两种判断准则,才能执行测量放松,即终端在小区群的低移动性状态判断结果需要满足处于低移动性状态,小区中心判断结果需要满足处于小区中心,能够保障终端的通信性能,而且小区群内的各个服务小区还可以分别执行测量放松,灵活性较大。
可选地,处理器1010具体用于:
对于各个所述小区群中新空口NR主小区群MCG,在基于所述MCG的低移动性状态判断结果和小区中心判断结果,确定在所述MCG中的服务小区执行测量放松的情况下,在各个所述小区群中所有小区群中的服务小区执行测量放松;或,
在各个所述小区群中存在基于低移动性状态判断结果和小区中心判断结果确定在辅小区群SCG执行测量放松的情况下,在所述SCG中的服务小区执行测量放松。
上述实施方式中,对于确定在MCG中的服务小区执行测量放松的情况下,可以不确定其他的小区群是否可以执行测量放松,直接在其他的小区群执行测量放松,节省了判断时间,并减少了终端的功耗。
可选地,处理器1010具体用于:
在所述低移动性状态判断准则的配置方式为基于终端配置的情况下,
所述终端基于网络侧设备第一次配置的NR辅小区群SCG中的主辅小区PSCell的测量结果,确定所述终端在各个所述小区群的低移动性状态判断结果;或,
所述终端基于各个所述小区群的主小区PCell或主辅小区PSCell的测量结果,分别确定所述终端在各个所述小区群的低移动性状态判断结果;或,
所述终端基于各个所述小区群中至少一个服务小区的测量结果,分别确定所述终端在各个所述小区群的低移动性状态判断结果;
在所述低移动性状态判断准则的配置方式为基于小区群配置的情况下,
所述终端基于各个所述小区群的主小区PCell或主辅小区PSCell的测量结果,分别确定所述终端在各个所述小区群的所述低移动性状态判断结果;或,
所述终端基于各个所述小区群中至少一个服务小区的测量结果,分别确定所述终端在各个所述小区群的低移动性状态判断结果。
上述实施方式中,终端可以基于网络侧设备发送的低移动性状态判断准则的配置方式确定基于小区群中哪些服务小区的测量结果,确定该终端在该小区群的低移动性判断结果,处理复杂度较低。
可选地,处理器1010具体用于:
在所述小区中心判断准则的配置方式为基于终端配置的情况下,
所述终端基于网络侧设备第一次配置的NR辅小区群SCG中的主辅小区PSCell的测量结果,确定所述终端在各个所述小区群的小区中心判断结果;或,
所述终端基于各个所述小区群的主小区PCell或主辅小区PSCell的测量结果,分别确定所述终端在各个所述小区群的小区中心判断结果;或,
所述终端基于各个所述小区群中至少一个服务小区的测量结果,分别确定所述终端在各个所述小区群的小区中心判断结果;
在所述小区中心判断准则的配置方式为基于小区群配置的情况下,
所述终端基于各个所述小区群的主小区Pcell或主辅小区PSCell的测量结果,分别确定所述终端在各个所述小区群的小区中心判断结果;或,
所述终端基于各个所述小区群中至少一个服务小区的测量结果,分别确定所述终端在各个所述小区群的小区中心判断结果。
上述实施方式中,小区中心判断准则的配置灵活性较大,由于处于小区中心与否与终端的实现性能和算法有关,因此实际小区中心判断准则的配置方式可以较为灵活;通过借助低移动性状态的配置方式来确定小区中心判断准则的配置方式,可以达到较好的降低信令开销的效果。
可选地,处理器1010具体用于:
在所述小区群包括第一频带的小区和第二频带的小区的情况下,对于存在主小区PCell或主辅小区PSCell的所述第一频带,基于所述主小区PCell或主辅小区PSCell的测量结果,确定所述终端在所述第一频带的低移动性状态判断结果;
对于不存在主小区PCell或主辅小区PSCell的所述第二频带,将所述第一频带的低移动性状态判断结果,确定为所述终端在所述第二频带的低移动性判断结果。
可选地,处理器1010具体用于:
在所述小区群包括第一频带的小区和第二频带的小区的情况下,对于存在主小区PCell或主辅小区PSCell的所述第一频带,基于所述主小区PCell或主辅小区PSCell的测量结果,确定所述终端在所述第一频带的小区中心判断结果;
对于不存在主小区PCell或主辅小区PSCell的所述第二频带,基于所述第二频带的辅小区SCell的测量结果,确定所述终端在所述第二频带的小区中心判断结果。
上述实施方式中,针对不同频带,可以分别确定终端在不同频带的低移动性状态判断结果和小区中心判断结果,进而可以在不同频带分别执行测量放松,灵活性较大。
可选地,处理器1010具体用于:
在所述低移动性状态判断准则的配置方式为基于服务小区配置的情 况下,
所述终端基于第一个或最近一个配置所述低移动性状态判断准则的服务小区的测量结果,确定所述终端在各个所述小区群的低移动性状态判断结果;或,
所述终端基于各个所述小区群的主小区PCell或主辅小区PSCell的测量结果,分别确定所述终端在各个所述小区群的低移动性状态判断结果;或,
所述终端基于各个所述小区群中至少一个服务小区的测量结果,分别确定所述终端在各个所述小区群的低移动性状态判断结果。
上述实施方式中,终端可以基于网络侧设备发送的低移动性状态判断准则的配置方式确定基于小区群中哪些服务小区的测量结果,确定该终端在该小区群的低移动性判断结果,处理复杂度较低。
可选地,处理器1010具体用于:
在所述小区中心判断准则的配置方式为基于服务小区配置的情况下,
所述终端基于第一个或最近一个配置所述小区中心判断准则的服务小区的测量结果,确定所述终端在各个所述小区群的小区中心判断结果;或,
所述终端基于各个所述小区群的主小区Pcell或主辅小区PSCell的测量结果,分别确定所述终端在各个所述小区群的小区中心判断结果;或,
所述终端基于各个所述小区群中至少一个服务小区的测量结果,分别确定所述终端在各个所述小区群的小区中心判断结果。上述实施方式中,终端可以基于网络侧设备发送的低移动性状态判断准则的配置方式确定基于小区群中哪些服务小区的测量结果,确定该终端在该小区群的小区中心判断结果,处理复杂度较低。
可选地,处理器1010具体用于:
基于用于进行波束失败检测BFD测量的辅小区SCell的测量结果,确定所述终端在所述小区群的小区中心判断结果;
基于所述终端在所述小区群的低移动性状态判断结果,以及所述终端在所述小区群的小区中心判断结果,在所述小区群中的服务小区执行BFD测量放松。
上述实施方式中,针对BFD测量放松,可以基于用于确定进行BFD测量的SCell的测量结果,确定终端在小区群的小区中心判断结果,并基于终端在小区群的低移动性状态判断结果,确定执行测量放松,在减少了测量开销的同时,使得执行测量放松的小区更具有针对性。
可选地,处理器1010还用于:
针对各个所述小区群中任一服务小区,基于网络侧设备的第一指示信息,确定所述终端在所述服务小区的小区中心判断准则生效。
可选地,所述低移动性状态判断准则为网络侧设备配置的;或,
所述低移动性状态判断准则和所述小区中心判断准则均为网络侧设备配置的。
可选地,在所述低移动性状态判断准则为网络侧设备配置的情况下,如果所述低移动性状态的配置方式为基于终端配置,则所述小区中心准则的配置方式为基于终端配置的;
如果所述低移动性状态的配置方式为基于小区群配置,则所述小区中心准则的配置方式为基于小区群配置的;
如果所述低移动性状态的配置方式为基于服务小区配置,则所述小区中心准则的配置方式为基于服务小区配置的。
可选地,所述小区中心准则的配置方式为基于第一指示信息的配置方式确定的。
上述实施方式中,终端可以基于网络侧设备发送的指示信息,确定小区中心判断准则是否生效,或者基于指示信息的配置方式,确定小区中心判断准则采用的配置方式,进而可以确定基于小区群中哪些服务小区的测量结果,确定该终端在该小区群的小区中心判断结果,处理复杂度较低。
本申请实施例还提供一种网络侧设备,包括处理器和通信接口,处理 器用于为终端配置低移动性状态判断准则,通信接口用于接收来自所述终端的第一指示信息,第一指示信息用于指示终端在至少一个小区群中各个小区群中的服务小区是否执行测量放松,终端是否执行测量放松是基于终端在各个小区群的低移动性状态判断结果和小区中心判断结果确定的,各个小区群的低移动性状态判断结果和小区中心判断结果为终端分别基于各个小区群的测量结果以及低移动性状态判断准则和小区中心判断准则确定的。该网络侧设备实施例是与上述网络侧设备方法实施例对应的,上述方法实施例的各个实施过程和实现方式均可适用于该网络侧设备实施例中,且能达到相同的技术效果。
本申请实施例还提供了一种网络侧设备。如图9所示,该网络设备900包括:天线91、射频装置92、基带装置93。天线91与射频装置92连接。在上行方向上,射频装置92通过天线91接收信息,将接收的信息发送给基带装置93进行处理。在下行方向上,基带装置93对要发送的信息进行处理,并发送给射频装置92,射频装置92对收到的信息进行处理后经过天线91发送出去。
上述频带处理装置可以位于基带装置93中,以上实施例中网络侧设备执行的方法可以在基带装置93中实现,该基带装置93包括处理器94和存储器95。
基带装置93例如可以包括至少一个基带板,该基带板上设置有多个芯片,如图9所示,其中一个芯片例如为处理器94,与存储器95连接,以调用存储器95中的程序,执行以上方法实施例中所示的网络设备操作。
该基带装置93还可以包括网络接口96,用于与射频装置92交互信息,该接口例如为通用公共无线接口(common public radio interface,简称CPRI)。
本申请实施例的网络侧设备还包括:存储在存储器95上并可在处理器94上运行的指令或程序,处理器94调用存储器95中的指令或程序执行图6所示各模块执行的方法,并达到相同的技术效果,为避免重复,故 不在此赘述。
本申请实施例还提供一种可读存储介质,所述可读存储介质上存储有程序或指令,该程序或指令被处理器执行时实现上述测量放松方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
其中,所述处理器为上述实施例中所述的终端中的处理器。所述可读存储介质,包括计算机可读存储介质,如计算机只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、磁碟或者光盘等。
本申请实施例另提供了一种芯片,所述芯片包括处理器和通信接口,所述通信接口和所述处理器耦合,所述处理器用于运行程序或指令,实现上述测量放松方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
应理解,本申请实施例提到的芯片还可以称为系统级芯片,系统芯片,芯片系统或片上系统芯片等。
本申请实施例另提供了一种计算机程序产品,包括计算机程序,所述计算机程序被处理器执行时实现上述测量放松方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。此外,需要指出的是,本申请实施方式中的方法和装置的范围不限按示出或讨论的顺序来执行功能,还可包括根据所涉及的功能按基本同时的方式或按相反的顺序来执行功能,例如,可以按不同于所描述的次序来执行所描述的方法,并且还可以添加、省去、或组合各种步骤。另外,参照某些示例所 描述的特征可在其他示例中被组合。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分可以以计算机软件产品的形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端(可以是手机,计算机,服务器,或者网络设备等)执行本申请各个实施例所述的方法。
上面结合附图对本申请的实施例进行了描述,但是本申请并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制性的,本领域的普通技术人员在本申请的启示下,在不脱离本申请宗旨和权利要求所保护的范围情况下,还可做出很多形式,均属于本申请的保护之内。

Claims (29)

  1. 一种测量放松方法,包括:
    所述终端基于至少一个小区群中各个所述小区群的测量结果、低移动性状态判断准则以及小区中心判断准则,分别确定在各个所述小区群的低移动性状态判断结果和小区中心判断结果;
    所述终端基于各个所述小区群的低移动性状态判断结果和小区中心判断结果,在各个所述小区群中的服务小区执行测量放松。
  2. 根据权利要求1所述的测量放松方法,其中,所述终端基于各个所述小区群的低移动性状态判断结果和小区中心判断结果,在各个所述小区群中的服务小区执行测量放松,包括:
    针对任一所述小区群,所述终端在所述小区群的低移动性状态判断结果为处于低移动性状态,且所述终端在所述小区群的小区中心判断结果为处于小区中心,则所述终端确定在所述小区群中的服务小区执行测量放松;所述终端在所述小区群的小区中心判断结果是基于所述小区群中至少一个服务小区对应的小区中心判断结果得到的,或,
    针对任一所述小区群,所述终端在所述小区群的低移动性状态判断结果为处于低移动性状态,且在所述小区群中至少一个服务小区的小区中心判断结果为处于小区中心,则所述终端确定在所述至少一个服务小区中各个所述服务小区执行测量放松。
  3. 根据权利要求1或2所述的测量放松方法,其中,所述终端基于各个所述小区群的低移动性状态判断结果和小区中心判断结果,在各个所述小区群中的服务小区执行测量放松,包括:
    对于各个所述小区群中主小区群MCG,在基于所述MCG的低移动性状态判断结果和小区中心判断结果,确定在所述MCG中的服务小区执行测量放松的情况下,所述终端在各个所述小区群中所有小区群中的服务小区执行测量放松;或,
    在各个所述小区群中存在基于低移动性状态判断结果和小区中心判断结果确定在辅小区群SCG执行测量放松的情况下,所述终端在所述SCG中的服务小区执行测量放松。
  4. 根据权利要求1或2所述的测量放松方法,其中,所述分别确定在各个所述小区群的低移动性状态判断结果,包括:
    在所述低移动性状态判断准则的配置方式为基于终端配置的情况下,
    所述终端基于网络侧设备第一次配置的NR辅小区群SCG中的主辅小区PSCell的测量结果,确定所述终端在各个所述小区群的低移动性状态判断结果;或,
    所述终端基于各个所述小区群的主小区PCell或主辅小区PSCell的测量结果,分别确定所述终端在各个所述小区群的低移动性状态判断结果;或,
    所述终端基于各个所述小区群中至少一个服务小区的测量结果,分别确定所述终端在各个所述小区群的低移动性状态判断结果;
    在所述低移动性状态判断准则的配置方式为基于小区群配置的情况下,
    所述终端基于各个所述小区群的主小区PCell或主辅小区PSCell的测量结果,分别确定所述终端在各个所述小区群的所述低移动性状态判断结果;或,
    所述终端基于各个所述小区群中至少一个服务小区的测量结果,分别确定所述终端在各个所述小区群的低移动性状态判断结果。
  5. 根据权利要求4所述的测量放松方法,其中,所述终端基于所述小区群的主小区PCell或主辅小区PSCell的测量结果,确定所述终端在所述小区群的低移动性状态判断结果,包括:
    在所述小区群包括第一频带的小区和第二频带的小区的情况下,对于存在主小区PCell或主辅小区PSCell的所述第一频带,所述终端基于所述主小区PCell或主辅小区PSCell的测量结果,确定所述终端在所述第一频 带的低移动性状态判断结果;
    对于不存在主小区PCell或主辅小区PSCell的所述第二频带,所述终端将所述第一频带的低移动性状态判断结果,确定为所述终端在所述第二频带的低移动性判断结果。
  6. 根据权利要求1或2所述的测量放松方法,其中,分别确定在各个所述小区群的小区中心判断结果,包括:
    在所述小区中心判断准则的配置方式为基于终端配置的情况下,
    所述终端基于网络侧设备第一次配置的NR辅小区群SCG中的主辅小区PSCell的测量结果,确定所述终端在各个所述小区群的小区中心判断结果;或,
    所述终端基于各个所述小区群的主小区PCell或主辅小区PSCell的测量结果,分别确定所述终端在各个所述小区群的小区中心判断结果;或,
    所述终端基于各个所述小区群中至少一个服务小区的测量结果,分别确定所述终端在各个所述小区群的小区中心判断结果;
    在所述小区中心判断准则的配置方式为基于小区群配置的情况下,
    所述终端基于各个所述小区群的主小区Pcell或主辅小区PSCell的测量结果,分别确定所述终端在各个所述小区群的小区中心判断结果;或,
    所述终端基于各个所述小区群中至少一个服务小区的测量结果,分别确定所述终端在各个所述小区群的小区中心判断结果。
  7. 根据权利要求6所述的测量放松方法,其中,所述终端基于所述小区群的主小区PCell或主辅小区PSCell的测量结果,确定所述终端在所述小区群的小区中心判断结果,包括:
    在所述小区群包括第一频带的小区和第二频带的小区的情况下,对于存在主小区PCell或主辅小区PSCell的所述第一频带,所述终端基于所述主小区PCell或主辅小区PSCell的测量结果,确定所述终端在所述第一频带的小区中心判断结果;
    对于不存在主小区PCell或主辅小区PSCell的所述第二频带,所述终 端基于所述第二频带的辅小区SCell的测量结果,确定所述终端在所述第二频带的小区中心判断结果。
  8. 根据权利要求1或2所述的测量放松方法,其中,分别确定在各个所述小区群的低移动性状态判断结果,包括:
    在所述低移动性状态判断准则的配置方式为基于服务小区配置的情况下,
    所述终端基于第一个或最近一个配置所述低移动性状态判断准则的服务小区的测量结果,确定所述终端在各个所述小区群的低移动性状态判断结果;或,
    所述终端基于各个所述小区群的主小区PCell或主辅小区PSCell的测量结果,分别确定所述终端在各个所述小区群的低移动性状态判断结果;或,
    所述终端基于各个所述小区群中至少一个服务小区的测量结果,分别确定所述终端在各个所述小区群的低移动性状态判断结果。
  9. 根据权利要求1或2所述的测量放松方法,其中,分别确定在各个所述小区群的小区中心判断结果,包括:
    在所述小区中心判断准则的配置方式为基于服务小区配置的情况下,
    所述终端基于第一个或最近一个配置所述小区中心判断准则的服务小区的测量结果,确定所述终端在各个所述小区群的小区中心判断结果;或,
    所述终端基于各个所述小区群的主小区Pcell或主辅小区PSCell的测量结果,分别确定所述终端在各个所述小区群的小区中心判断结果;或,
    所述终端基于各个所述小区群中至少一个服务小区的测量结果,分别确定所述终端在各个所述小区群的小区中心判断结果。
  10. 根据权利要求8所述的测量放松方法,其中,基于所述终端在所述小区群的低移动性状态判断结果和小区中心判断结果,在所述小区群中的服务小区执行测量放松,包括:
    所述终端基于用于进行波束失败检测BFD测量的辅小区SCell的测量结果,确定所述终端在所述小区群的小区中心判断结果;
    所述终端基于所述终端在所述小区群的低移动性状态判断结果,以及所述终端在所述小区群的小区中心判断结果,在所述小区群中的服务小区执行BFD测量放松。
  11. 根据权利要求1或2所述的测量放松方法,其中,所述方法还包括:
    针对各个所述小区群中任一服务小区,所述终端基于网络侧设备的第一指示信息,确定所述终端在所述服务小区的小区中心判断准则生效。
  12. 根据权利要求1或2所述的测量放松方法,其中,
    所述低移动性状态判断准则为网络侧设备配置的;或,
    所述低移动性状态判断准则和所述小区中心判断准则均为网络侧设备配置的。
  13. 根据权利要求12所述测量放松方法,其中,
    在所述低移动性状态判断准则为网络侧设备配置的情况下,如果所述低移动性状态的配置方式为基于终端配置,则所述小区中心准则的配置方式为基于终端配置的;
    如果所述低移动性状态的配置方式为基于小区群配置,则所述小区中心准则的配置方式为基于小区群配置的;
    如果所述低移动性状态的配置方式为基于服务小区配置,则所述小区中心准则的配置方式为基于服务小区配置的。
  14. 根据权利要求11所述测量放松方法,其中,
    所述小区中心准则的配置方式为基于第一指示信息的配置方式确定的。
  15. 一种测量放松方法,包括:
    网络侧设备为终端配置低移动性状态判断准则;
    所述网络侧设备接收来自所述终端的第一指示信息,所述第一指示信 息用于指示所述终端在至少一个小区群中各个所述小区群中的服务小区是否执行测量放松,所述终端是否执行测量放松是基于所述终端在各个所述小区群的低移动性状态判断结果和小区中心判断结果确定的,各个所述小区群的低移动性状态判断结果和小区中心判断结果为所述终端分别基于各个所述小区群的测量结果以及所述低移动性状态判断准则和小区中心判断准则确定的。
  16. 根据权利要求15所述的测量放松方法,其中,
    在所述低移动性状态判断准则的配置方式为基于终端配置的情况下,所述终端在各个所述小区群的低移动性状态判断结果为所述终端基于网络侧设备第一次配置的NR辅小区群SCG中的主辅小区PSCell的测量结果确定的;或,
    所述终端在各个所述小区群的低移动性状态判断结果分别为所述终端基于各个所述小区群的主小区PCell或主辅小区PSCell的测量结果确定的;或,
    所述终端在各个所述小区群的低移动性状态判断结果分别为所述终端基于各个所述小区群中至少一个服务小区的测量结果确定的;
    在所述低移动性状态判断准则的配置方式为基于小区群配置的情况下,
    所述终端在各个所述小区群的所述低移动性状态判断结果分别为所述终端基于各个所述小区群的主小区Pcell或主辅小区PSCell的测量结果确定的;或,
    所述终端在各个所述小区群的低移动性状态判断结果分别为所述终端基于各个所述小区群中至少一个服务小区的测量结果确定的。
  17. 根据权利要求16所述的测量放松方法,其中,
    在所述小区群包括第一频带的小区和第二频带的小区的情况下,对于存在主小区PCell或主辅小区PSCell的第一频带,所述终端在所述第一频带的低移动性状态判断结果为所述终端基于所述主小区PCell或主辅小区 PSCell的测量结果确定的;
    对于不存在主小区PCell或主辅小区PSCell的第二频带,所述终端在所述第二频带的低移动性判断结果为所述终端在所述第一频带的低移动性状态判断结果。
  18. 根据权利要求15或16所述的测量放松方法,其中,
    在所述小区中心判断准则的配置方式为基于终端配置的情况下,所述终端在各个所述小区群的小区中心判断结果为所述终端基于网络侧设备第一次配置的NR辅小区群SCG中的主辅小区PSCell的测量结果确定的;或,
    所述终端在各个所述小区群的小区中心判断结果分别为所述终端基于各个所述小区群的主小区PCell或主辅小区PSCell的测量结果确定的;或,
    所述终端在各个所述小区群的小区中心判断结果分别为所述终端基于各个所述小区群中至少一个服务小区的测量结果确定的;
    在所述小区中心判断准则的配置方式为基于小区群配置的情况下,
    所述终端在各个所述小区群的小区中心判断结果分别为所述终端基于各个所述小区群的主小区Pcell或主辅小区PSCell的测量结果确定的;或,
    所述终端在各个所述小区群的小区中心判断结果分别为所述终端基于各个所述小区群中至少一个服务小区的测量结果确定的。
  19. 根据权利要求18所述的测量放松方法,其中,
    在所述小区群包括第一频带的小区和第二频带的小区的情况下,对于存在主小区PCell或主辅小区PSCell的第一频带,所述终端在所述第一频带的小区中心判断结果为所述终端基于所述主小区PCell或主辅小区PSCell的测量结果确定的;
    对于不存在主小区PCell或主辅小区PSCell的第二频带,所述终端在所述第二频带的小区中心判断结果为所述终端基于所述第二频带的辅小 区SCell的测量结果确定的。
  20. 根据权利要求15所述的测量放松方法,其中,
    在所述低移动性状态判断准则的配置方式为基于服务小区配置的情况下,
    所述终端在各个所述小区群的低移动性状态判断结果为所述终端基于第一个或最近一个配置所述低移动性判断准则的服务小区的测量结果确定的;或,
    所述终端在各个所述小区群的低移动性状态判断结果分别为所述终端基于各个所述小区群的主小区Pcell或主辅小区PSCell的测量结果确定的;或,
    所述终端在各个所述小区群的低移动性状态判断结果分别为所述终端基于各个所述小区群中至少一个服务小区的测量结果确定的。
  21. 根据权利要求15、16或20任一项所述的测量放松方法,其中,
    在所述小区中心判断准则的配置方式为基于服务小区配置的情况下,
    所述终端在各个所述小区群的小区中心判断结果为所述终端基于第一个或最近一个配置所述小区中心判断准则的服务小区的测量结果确定的;或,
    所述终端在各个所述小区群的小区中心判断结果分别为所述终端基于各个所述小区群的主小区Pcell或主辅小区PSCell的测量结果确定的;或,
    所述终端在各个所述小区群的小区中心判断结果分别为所述终端基于各个所述小区群中各个服务小区的测量结果确定的。
  22. 根据权利要求20所述的测量放松方法,其中,
    所述终端在所述小区群中的服务小区执行波束失败检测BFD测量放松为所述终端基于所述终端在所述小区群的低移动性状态判断结果,以及所述终端在所述小区群的小区中心判断结果确定的;其中,所述终端在所述小区群的小区中心判断结果为所述终端基于用于进行BFD测量的辅小 区Scell的测量结果确定的。
  23. 根据权利要求15或16所述的测量放松方法,其中,所述方法还包括:
    所述网络侧设备向所述终端发送第二指示信息,所述第二指示信息用于指示所述终端在所述小区群中的服务小区的小区中心判断准则生效。
  24. 根据权利要求23所述测量放松方法,其中,
    所述小区中心准则的配置方式为基于第二指示信息的配置方式确定的。
  25. 一种测量放松装置,包括:
    确定模块,用于基于至少一个小区群中各个所述小区群的测量结果、低移动性状态判断准则以及小区中心判断准则,分别确定在各个所述小区群的低移动性状态判断结果和小区中心判断结果;
    处理模块,用于基于各个所述小区群的低移动性状态判断结果和小区中心判断结果,在各个所述小区群中的服务小区执行测量放松。
  26. 一种测量放松装置,包括:
    发送模块,用于为终端配置低移动性状态判断准则;
    接收模块,用于接收来自所述终端的第一指示信息,所述第一指示信息用于指示所述终端在各个小区群中的服务小区是否执行测量放松,所述终端是否执行测量放松是基于所述终端在各个所述小区群的低移动性状态判断结果和小区中心判断结果确定的,各个所述小区群的低移动性状态判断结果和小区中心判断结果为所述终端分别基于各个所述小区群的测量结果以及所述低移动性状态判断准则和小区中心判断准则确定的。
  27. 一种终端,包括处理器,存储器及存储在所述存储器上并可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如权利要求1至14任一项所述的测量放松方法的步骤。
  28. 一种网络侧设备,包括处理器,存储器及存储在所述存储器上并可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行 时实现如权利要求15至24任一项所述的测量放松方法的步骤。
  29. 一种可读存储介质,所述可读存储介质上存储程序或指令,所述程序或指令被处理器执行时实现如权利要求1-14任一项所述的测量放松方法,或者实现如权利要求15至24任一项所述的测量放松方法的步骤。
PCT/CN2022/109998 2021-08-06 2022-08-03 测量放松方法、装置、终端及网络侧设备 WO2023011536A1 (zh)

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