Wireless communication method, device, equipment, storage medium and program product
Patent Information
- Application Number
- CN202280101210.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-04
- Publication Date
- 2025-05-30
AI Technical Summary
There is little research on energy saving on the network side of existing wireless communication systems, especially the lack of effective solutions for energy saving in base stations.
Provide a wireless communication method and device that sends network discontinuous communication configurations to user equipment (UE) through a base station, including network discontinuous communication configurations of cells and base stations, and the UE performs cell selection or reselection based on target information to realize network Discontinuous communication reduces unnecessary communication behaviors.
It effectively reduces the energy consumption on the network side and improves the energy-saving efficiency of the wireless communication system. Especially in multi-carrier coverage and frequency aggregation scenarios, it optimizes cell selection and handover strategies and improves the overall performance of the system.
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Figure CN120077614A_ABST
Abstract
Description
Wireless communication method, apparatus, device, storage medium, and program product Technical Field
[0001] The present application relates to the field of wireless communication technology, and in particular to a wireless communication method, apparatus, device, storage medium, and program product. Background Art
[0002] Currently, the development of wireless communication systems has become increasingly mature, among which energy saving of wireless communication systems has become a research hotspot.
[0003] Currently, there are more studies on energy saving for UE, but relatively less on energy saving on the network side.
[0004] Summary of the Invention
[0005] Based on this, embodiments of the present application provide a wireless communication method, apparatus, device, storage medium, and program product.
[0006] In a first aspect, a wireless communication method is provided, the method comprising:
[0007] The base station sends a network discontinuous communication configuration to the user equipment UE; wherein the network discontinuous communication configuration includes the network discontinuous communication configuration of the cell and / or the network discontinuous communication configuration of the base station.
[0008] In a second aspect, a wireless communication method is provided, the method comprising:
[0009] The UE receives a network discontinuous communication configuration sent by a base station; wherein the network discontinuous communication configuration includes a network discontinuous communication configuration of a cell and / or a network discontinuous communication configuration of the base station.
[0010] According to a third aspect, a wireless communication method is provided, the method comprising:
[0011] The base station sends target information for a target cell or a target frequency to the UE; wherein the target information is used to instruct the UE to perform cell selection or cell reselection or access control, or the target information is used to instruct the UE to perform cell selection or cell reselection.
[0012] In a fourth aspect, a wireless communication method is provided, the method comprising:
[0013] The UE receives target information for a target cell or a target frequency sent by a base station; the UE performs cell selection or cell reselection or access control according to the target information, or the UE performs cell selection or cell reselection according to the target information.
[0014] In a fifth aspect, a wireless communication method is provided, the method comprising:
[0015] The UE performs a first behavior; the first behavior includes at least one of the following: random access, data transmission, cell selection, cell reselection, handover, RRC state transition, acquisition of system information, synchronization, residence, paging, and paging response.
[0016] In a sixth aspect, a wireless communication device is provided, for use in a base station, the device including:
[0017] A sending module, configured to send a network discontinuous communication configuration to the UE;
[0018] The network discontinuous communication configuration includes the network discontinuous communication configuration of the cell and / or the network discontinuous communication configuration of the base station.
[0019] In a seventh aspect, a wireless communication device is provided, for use with a UE, the device including:
[0020] A receiving module, configured to receive a network discontinuous communication configuration sent by a base station;
[0021] The network discontinuous communication configuration includes the network discontinuous communication configuration of the cell and / or the network discontinuous communication configuration of the base station.
[0022] In an eighth aspect, a wireless communication device is provided, for use in a base station, the device including:
[0023] A sending module, configured to send target information for a target cell or target frequency to a UE;
[0024] The target information is used to instruct the UE to perform cell selection or cell reselection or access control, or the target information is used to instruct the UE to perform cell selection or cell reselection.
[0025] In a ninth aspect, a wireless communication device is provided for use with a UE, the device including:
[0026] A receiving module, configured to receive target information for a target cell or target frequency sent by a base station;
[0027] An execution module is configured to execute cell selection or cell reselection or access control according to the target information, or the UE executes cell selection or cell reselection according to the target information.
[0028] In a tenth aspect, a wireless communication device is provided for use with a UE, the device including:
[0029] An execution module, configured to execute the first behavior;
[0030] The first behavior includes at least one of the following: random access, data transmission, cell selection, cell reselection, handover, RRC state transition, obtaining system information, synchronization, camping, paging, and paging response.
[0031] In the eleventh aspect, a terminal device is provided, comprising: a processor and a memory, the memory being used to store a computer program, the processor being used to call and run the computer program stored in the memory to execute a method as described in any one of the second aspects above; or, to execute a method as described in any one of the fourth aspects above; or, to execute a method as described in any one of the fifth aspects above.
[0032] In the twelfth aspect, a network device is provided, comprising: a processor and a memory, the memory being used to store a computer program, the processor being used to call and run the computer program stored in the memory to execute a method as described in any one of the first aspects above; or to execute a method as described in any one of the third aspects above.
[0033] In the thirteenth aspect, a chip is provided, comprising: a processor for calling and running a computer program from a memory, so that a device equipped with the chip executes a method as described in any one of the second aspects above; or, a device equipped with the chip executes a method as described in any one of the fourth aspects above; or, a device equipped with the chip executes a method as described in any one of the fifth aspects above.
[0034] In the fourteenth aspect, a chip is provided, comprising: a processor for calling and running a computer program from a memory, so that a device equipped with the chip executes a method as described in any one of the first aspects above; or, so that a device equipped with the chip executes a method as described in any one of the third aspects above.
[0035] In the fifteenth aspect, a computer-readable storage medium is provided for storing a computer program, wherein the computer program enables a computer to execute a method as described in any one of the second aspects above; or, enables a computer to execute a method as described in any one of the fifth aspects above; or, enables a computer to execute a method as described in any one of the fourth aspects above.
[0036] In the sixteenth aspect, a computer-readable storage medium is provided for storing a computer program, wherein the computer program enables a computer to execute a method as described in any one of the first aspects above; or enables a computer to execute a method as described in any one of the third aspects above.
[0037] In the seventeenth aspect, a computer program product is provided, comprising computer program instructions, wherein the computer program instructions enable a computer to execute a method as described in any one of the second aspects above; or, enable a computer to execute a method as described in any one of the fourth aspects above; or, enable a computer to execute a method as described in any one of the fifth aspects above.
[0038] In aspect 18, a computer program product is provided, comprising computer program instructions, wherein the computer program instructions enable a computer to execute a method as described in any one of the above-mentioned first aspect; or enable a computer to execute a method as described in any one of the above-mentioned third aspect.
[0039] In the nineteenth aspect, a computer program is provided, which enables a computer to execute a method as described in any one of the second aspects above; or, enables a computer to execute a method as described in any one of the fourth aspects above; or, enables a computer to execute a method as described in any one of the fifth aspects above.
[0040] In the twentieth aspect, a computer program is provided, which enables a computer to execute a method as described in any one of the first aspects above; or, enables a computer to execute a method as described in any one of the third aspects above.
[0041] The wireless communication methods, devices, equipment, storage media, and program products provided in the embodiments of the present application provide useful assistance for energy-saving research on the network side. BRIEF DESCRIPTION OF THE DRAWINGS
[0042] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the conventional technology, the following briefly introduces the drawings required for use in the embodiments or the conventional technology descriptions. Obviously, the drawings described below are merely embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on the disclosed drawings without any creative work.
[0043] FIG1 is a schematic diagram of an implementation environment of a wireless communication method provided by an embodiment;
[0044] FIG2 is a schematic diagram of a wireless communication method provided by an embodiment;
[0045] FIG3 is a schematic diagram of a wireless communication method provided by an embodiment;
[0046] FIG4 is a block diagram of a communication device provided by an embodiment;
[0047] FIG5 is a block diagram of a communication device provided by an embodiment;
[0048] FIG6 is a block diagram of a chip provided by an embodiment. DETAILED DESCRIPTION
[0049] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0050] The embodiments of the present application do not limit the network standard of the wireless communication system involved. For example, in the embodiments of the present application, the wireless communication system may be a Long Term Evolution (LTE) system, an LTE frequency division duplex (FDD) system, an LTE time division duplex (TDD) system, a 5G communication system, or a future communication system.
[0051] Please refer to Figure 1, which shows a schematic diagram of the architecture of a wireless communication system involved in an embodiment of the present application. As shown in Figure 1, the wireless communication system may include a base station 101 and a UE 102. It should be noted that although only one UE 102 is shown in Figure 1, the reader should understand that more than one UE 102 may be included.
[0052] The base station 101 may be a base station supporting a specific function, or a base station supporting a network energy saving (NES) mode, or a base station using a network energy saving technology.
[0053] The cell corresponding to the base station 101 may be a cell supporting a specific function, or a cell supporting a network energy-saving mode, or a cell using a network energy-saving technology.
[0054] The frequency corresponding to the base station 101 may be a frequency supporting a specific function, or a frequency supporting a network energy-saving mode, or a frequency using a network energy-saving technology.
[0055] UE 102 may be a UE supporting specific functions, or a UE with network energy saving support capability, or a UE supporting network energy saving technology, or a UE with the capability to support specific functions, or a UE with the capability to support network energy saving, or a UE supporting a network energy saving mode. It may also be referred to as an NES UE.
[0056] UE 102 may also be a UE that does not support specific functions, or a UE that does not have the network energy saving support capability, or a UE that does not support network energy saving technology, or a UE that does not have the capability to support specific functions, or a UE that does not have the capability to support network energy saving, or a UE that does not support the network energy saving mode. It may also be called a traditional UE or a legacy UE.
[0057] It should be noted that the wireless communication system mentioned above may also include other network entities such as a network controller and a mobility management entity, which is not limited in the embodiments of the present application.
[0058] It should be noted that Figure 1 is merely an example of a wireless communication system to which this application applies. Of course, the methods described in the embodiments of this application can also be applied to other wireless communication systems. It should be understood that the terms "system" and "network" are often used interchangeably herein. The term "and / or" herein is simply a description of the association relationship between associated objects, indicating that three relationships can exist. For example, A and / or B can represent: A exists alone, A and B exist simultaneously, and B exists alone. In addition, the character " / " in this document generally indicates that the associated objects before and after are in an "or" relationship. It should also be understood that the "indication" mentioned in the embodiments of this application can be a direct indication, an indirect indication, or an indication of an association relationship. For example, "A indicates B" can mean that A directly indicates B, for example, B can obtain information through A; it can also mean that A indirectly indicates B, for example, A indicates C, and B can obtain information through C; it can also mean that there is an association relationship between A and B. It should also be understood that the “correspondence” mentioned in the embodiments of the present application may indicate a direct or indirect correspondence between the two, or an association relationship between the two, or a relationship between indication and being indicated, configuration and being configured, etc. It should also be understood that the “predefined” mentioned in the embodiments of the present application can be implemented by pre-saving corresponding codes, tables or other methods that can be used to indicate relevant information in a device (for example, including UE and base station), and the present application does not limit its specific implementation method. For example, predefined can refer to a definition in a protocol. It should also be understood that in the embodiments of the present application, the “protocol” may refer to a standard protocol in the field of communications, for example, it may include an LTE protocol, an NR protocol, and related protocols used in future wireless communication systems, and the present application does not limit this.
[0059] Please refer to FIG2 , which shows a schematic diagram of a wireless communication method provided in an embodiment of the present application. As shown in FIG2 , the wireless communication method includes the following steps:
[0060] Step 201: The base station sends a network discontinuous communication configuration to the UE.
[0061] Discontinuous communication may include discontinuous reception (DRX), discontinuous transmission (DTX), and discontinuous reception and discontinuous transmission.
[0062] Network discontinuous communication may include discontinuous communication behavior on the network side, which may specifically include: discontinuous reception on the network side, discontinuous transmission on the network side, discontinuous reception on the network side, and discontinuous transmission on the network side. The network side here may include base stations and / or cells, etc. The base stations that can perform discontinuous communication may be base stations that support specific functions, or base stations that support network energy saving (English abbreviation: NES) mode, or base stations that use network energy saving technology. The cells that can perform discontinuous communication may be cells that support specific functions, or cells that support network energy saving mode, or cells that use network energy saving technology.
[0063] The network discontinuous communication configuration may include a network discontinuous communication configuration of a cell and / or a network discontinuous communication configuration of a base station.
[0064] Step 202: The UE receives a network discontinuous communication configuration sent by the base station.
[0065] In an optional embodiment of the present application, the UE may perform at least one of the following according to the network discontinuous communication configuration: 1. perform sending and / or receiving; 2. perform sending; 3. perform receiving.
[0066] In an optional embodiment of the present application, the configuration method of the network discontinuous communication configuration includes at least one of the following:
[0067] 1. The network discontinuous communication configuration is configured on a per-cell basis. In other words, the network discontinuous communication configuration may be different for different cells.
[0068] 2. The network discontinuous communication configuration is configured at the base station granularity (per base station). In other words, the network discontinuous communication configuration of different base stations can be different.
[0069] 3. The network discontinuous communication configuration is configured at the granularity of the MAC entity (per MAC entity). In other words, the network discontinuous communication configuration of different MAC entities can be different.
[0070] 4. The network discontinuous communication configuration is configured on a per UE basis. In other words, the network discontinuous communication configuration for different UEs may be different.
[0071] 5. The network discontinuous communication configuration is configured at the granularity of UE group (per UE group). In other words, the network discontinuous communication configuration of different UE groups can be different.
[0072] In an optional embodiment of the present application, the network discontinuous communication configuration includes one of the following:
[0073] 1. Network discontinuous reception configuration;
[0074] 2. Network discontinuous transmission configuration;
[0075] 3. Network discontinuous reception configuration and network discontinuous transmission configuration;
[0076] 4. Network discontinuous reception and transmission configuration.
[0077] Among them, the network discontinuous reception configuration includes the configuration parameters of the network discontinuous reception; the network discontinuous transmission configuration includes the configuration parameters of the network discontinuous transmission; the network discontinuous reception and transmission configuration includes the network discontinuous transmission configuration, and discontinuous transmission includes sending and / or receiving.
[0078] In an optional embodiment of the present application, the network discontinuous reception configuration and the network discontinuous transmission configuration are respectively carried in different messages, or the network discontinuous reception configuration and the network discontinuous transmission configuration are carried in the same message.
[0079] In an optional embodiment of the present application, the network discontinuous communication configuration is carried in at least one of an RRC message, system information, and dynamic information, wherein the dynamic information includes DCI and / or MAC CE, and the RRC message includes a UE-specific RRC message or a UE group RRC message.
[0080] In an optional embodiment of the present application, the base station may send one network discontinuous communication configuration to the UE, or the base station may send multiple network discontinuous communication configurations to the UE.
[0081] In an optional embodiment of the present application, when the base station sends multiple network discontinuous communication configurations to the UE, the base station may further send a first configuration to the UE, where the first configuration includes at least one of the following:
[0082] 1. The execution order or pattern of multiple network non-contiguous communication configurations;
[0083] 2. The default network discontinuous communication configuration among multiple network discontinuous communication configurations.
[0084] In an optional embodiment of the present application, the network discontinuous communication configuration can be configured, adjusted, activated and / or deactivated through a type of information, for example, it can be configured, adjusted, activated and / or deactivated through a message such as an RRC message, or it can be configured, adjusted, activated and / or deactivated through a type of information such as a DCI.
[0085] In an optional embodiment of the present application, the network discontinuous communication configuration can be configured, adjusted, activated and / or deactivated through various information configurations, for example, it can be configured through RRC, adjusted, activated and / or deactivated through DCI.
[0086] In an optional embodiment of the present application, the base station may send dynamic indication information (for example, DCI, MAC CE, etc.) to the UE; wherein the dynamic indication information is used to indicate at least one of the following: 1. indicating network discontinuous communication configuration; 2. adjusting network discontinuous communication configuration; 3. indicating activation or deactivation of one or more network discontinuous communication configurations.
[0087] Specifically, the dynamic indication information may indicate at least one of the following:
[0088] 1. Network discontinuous communication configuration;
[0089] 2. Adjustment information of network discontinuous communication configuration;
[0090] 3. Adjustment parameters of network discontinuous communication configuration;
[0091] 4. Activation information of network discontinuous communication configuration;
[0092] 5. Deactivation information of network discontinuous communication configuration;
[0093] 6. The activation time, or activation moment, or usage duration, or deactivation moment of the network discontinuous communication configuration.
[0094] In an optional embodiment of the present application, the indication of the dynamic indication information may be permanently effective or may be effective within a certain effective range. Optionally, the effective range of the dynamic indication information includes at least one of the following:
[0095] 1. Within the first period;
[0096] 2. Within the first period of time after receiving or responding to dynamic indication information;
[0097] 3. A specific base station; or, an indicated specific base station;
[0098] 4. A specific cell; or, an indicated specific cell;
[0099] 5. A specific area; or, an indicated specific area;
[0100] 6. A specific UE, or an indicated specific UE.
[0101] In an optional embodiment of the present application, the configuration method of the effective scope of the dynamic indication information may include at least one of the following: 1. pre-configured; 2. pre-defined; 3. indicated by L1 / L2 signaling; 4. carried by dynamic indication information; 5. configured by RRC message; 6. configured by system information.
[0102] In an optional embodiment of the present application, the network discontinuous communication configuration includes at least one of the following:
[0103] Configuration index (index); period corresponding to the configuration; starting time of use of the configuration; duration of the active state (active or on) of network discontinuous communication; starting time of the active state of network discontinuous communication; ending time of the active state of network discontinuous communication; timer (timer) configuration corresponding to the active state of network discontinuous communication; duration of the inactive state (non-active or off) of network discontinuous communication; starting time of the inactive state of network discontinuous communication; ending time of the inactive state of network discontinuous communication; timer configuration corresponding to the inactive state of network discontinuous communication; UE behavior or network-side behavior corresponding to the active state of network discontinuous communication; indication information of UE behavior or network-side behavior corresponding to the active state of network discontinuous communication; UE behavior or network-side behavior corresponding to the inactive state of network discontinuous communication; indication information of UE behavior or network-side behavior corresponding to the inactive state of network discontinuous communication; mode information.
[0104] Optionally, the mode information mentioned above is used to indicate the behavior mode of the UE and / or the behavior mode of the network side. The behavior mode includes at least one of the following: the transmission information involved; the type of information allowed to be transmitted; the type of information not allowed to be transmitted; the type of information allowed to be transmitted and the type of information not allowed to be transmitted; and the conflict handling method.
[0105] Optionally, the UE behavior or network side behavior mentioned above includes one of the following: the type of information allowed to be transmitted; the type of information not allowed to be transmitted; the type of information allowed to be transmitted and the type of information not allowed to be transmitted.
[0106] In an optional embodiment of the present application, in a target situation, if the cell meets the first condition, the base station may execute a first network behavior, and the UE may execute a first UE behavior. The target situation includes at least one of the following: 1. Multi-carrier coverage scenario; 2. Multi-carrier configuration scenario; 3. Dual-connection scenario; 4. Carrier aggregation scenario. The first condition includes at least one of the following: 1. The cell is converted to a network energy-saving state; 2. The cell is converted to an inactive state of network discontinuous communication. The first network behavior includes at least one of the following: 1. Instructing the UE to deactivate the cell; 2. Instructing the UE to stop transmitting specific information; 3. Stop transmitting specific information. The first UE behavior may include at least one of the following: 1. Deactivating the cell; 2. Deactivating the cell according to the instruction of the base station; 3. Stop transmitting specific information according to the instruction of the base station; 4. Stop transmitting specific information; 5. Requesting the base station to deactivate the cell; 6. Requesting the base station to stop transmitting specific information; 7. Requesting the base station to stop transmitting specific information.
[0107] In an optional embodiment of the present application, in a target situation, if the cell meets the second condition, the base station may perform a second network behavior, and the UE may perform a second UE behavior. Wherein, as described above, the target situation includes at least one of the following: 1. Multi-carrier coverage scenario; 2. Multi-carrier configuration scenario; 3. Dual-connection scenario; 4. Carrier aggregation scenario. The second condition includes at least one of the following: 1. The cell is converted to a non-network energy-saving state; 2. The cell is converted to an active state of network discontinuous communication. The second network behavior includes at least one of the following: 1. Instructing the UE to activate the cell; 2. Instructing the UE to transmit specific information; 3. Transmitting specific information. Wherein, the second UE behavior includes at least one of the following: 1. Activating the cell; 2. Activating the cell according to the instruction of the base station; 3. Transmitting specific information according to the instruction of the base station; 4. Transmitting specific information; 5. Requesting the base station to activate the cell; 6. Requesting the base station to transmit specific information; 7. Requesting the base station to transmit specific information.
[0108] In an optional embodiment of the present application, considering that the UE can be configured to perform discontinuous reception, the UE discontinuous reception needs to be coordinated with the network discontinuous transmission to ensure normal communication. Optionally:
[0109] 1. When both network discontinuous transmission and UE discontinuous reception are active, the UE communicates according to the network discontinuous transmission configuration and / or the UE discontinuous reception configuration.
[0110] 2. When the network DTS is active and the UE DRX is inactive, the UE communicates according to the network DTS configuration or the UE DRX configuration.
[0111] 3. When the network discontinuous transmission is active, it is considered that the UE discontinuous reception is in use, or can work, or can communicate according to the UE discontinuous reception.
[0112] 4. When the network DTS is inactive and the UE DRX is active, the UE communicates according to the network DTS configuration, or considers that the UE is inactive for DRX.
[0113] 5. When both the network discontinuous transmission and the UE discontinuous reception are in an inactive state, the UE communicates according to the network discontinuous transmission configuration and / or the UE discontinuous reception configuration, or the UE is considered to be in an inactive state for discontinuous reception. The UE discontinuous reception configuration includes configuration parameters for the UE's discontinuous reception.
[0114] In an optional embodiment of the present application, it is optional:
[0115] 1. When the UE receives or uses the network discontinuous communication configuration for the MAC entity, the UE uses the UE discontinuous transmission configuration for the MAC entity, or performs the UE discontinuous transmission behavior for the MAC entity.
[0116] 2. When the UE uses different network discontinuous communication configurations for different cells, the UE uses different UE discontinuous transmission configurations for the UE or MAC entity, or uses the same UE discontinuous transmission configuration, or uses the intersection of different UE discontinuous transmission configurations, or uses the union of different discontinuous transmission configurations, or performs the same UE discontinuous transmission behavior, or performs different UE discontinuous transmission behaviors.
[0117] 3. When the UE uses the same network discontinuous communication configuration for different cells, the UE uses the same UE discontinuous transmission configuration for different cells, or performs the same UE discontinuous transmission behavior for different cells, or the UE uses the same UE discontinuous transmission configuration for the UE or MAC entity, or performs the same UE discontinuous transmission behavior for the UE or MAC entity. The UE discontinuous transmission configuration includes a discontinuous transmission configuration and / or a discontinuous reception configuration; and the UE discontinuous transmission behavior includes the UE's discontinuous transmission and / or discontinuous reception.
[0118] In an optional embodiment of the present application, when the discontinuous communication of the network is in an inactive state, the UE stops executing the currently ongoing third UE behavior; or, after executing the currently ongoing third UE behavior, the UE stops executing a new third UE behavior; wherein the third UE behavior includes at least one of the following: random access; paging; paging response.
[0119] Hereinafter, regarding the network discontinuous reception configuration, the embodiment of the present application also provides another embodiment.
[0120] The network configures the cell / gNB DRX / DTX configuration (the network discontinuous communication configuration described above) to the UE. Specifically, this may include at least one of the following:
[0121] The cell / gNB DRX / DTX configuration may be at least one of a cell / gNB DRX configuration, a cell / gNB DTX configuration, or a cell / gNB DRX+DTX configuration.
[0122] Optionally, the cell / gNB DRX+DTX configuration may be a cell / gNB DTX configuration plus a cell / gNB DRX configuration, or a cell / gNB unified configuration (the unified configuration does not distinguish between DTX or DRX, and the corresponding UE or network behavior includes UL and DL).
[0123] The cell / gNB DRX / DTX configuration corresponds to one configuration set, or multiple configuration sets.
[0124] Optionally, if multiple sets are configured, the network can be configured:
[0125] The order or pattern of using multiple sets. Furthermore, the network can configure the period, start time, etc. of the order or pattern of using multiple sets.
[0126] Alternatively, the network may indicate which set to use or change through dynamic information, such as DCI / MAC CE.
[0127] Optionally, the network configuration configures one or more of the multiple sets as the default set.
[0128] Optionally, the UE uses the default set to perform transmission, or uses the default set when or under the circumstances indicated by the network to activate or use the default set (such as based on DCI / MAC CE indication, or configured start offset, or receipt of enable cell / gNB DRX / DTX indication, or receipt of enable default cell / gNB DRX / DTX indication).
[0129] At least one of the at least one configuration set includes at least one of the following: a set index, a period corresponding to the set, and a start offset of the set.
[0130] At least one of the at least one configuration set includes at least one of the following: active (on) state, non-active (off) state, active (on) state duration, active (on) state start time, active (on) state end time, timer configuration corresponding to active (on) state, non-active (off) state duration, non-active (off) state start time, non-active (off) state end time, and timer configuration corresponding to non-active (off) state.
[0131] At least one of the at least one configuration set includes at least one of the following: UE or network behavior in active (on) state, UE or network behavior in non-active (off) state, UE or network behavior indication (such as index) in active (on) state, UE or network behavior indication (such as index) in non-active (off) state,
[0132] For example, it indicates which UE or NW behavior is used as example or example index.
[0133] For example, the information indicating which information the UE or network should transmit or which information cannot be transmitted includes at least one of the following: RACH, SR, CG, SPS, reference information, SRS, CSI-RS, SSB, SIB, DG.
[0134] For example:
[0135] Example 1:UE or gNB is expected to turn off all transmission and reception for data traffic and reference signal during Cell DTX / DRX non-active periods.
[0136] Example 2:UE or gNB is expected to turn off its transmission / reception only for data traffic during Cell DTX / DRX non-active periods (ie, UE or gNB will still transmit / receive reference signals)
[0137] Example 3: UE or gNB is expected to turn off its dynamic data transmission / reception during Cell DTX / DRX non-active periods (i.e., UE or gNB is expected to still perform transmission / reception in periodic resources, including SPS, CG-PUSCH, SR, RACH, and SRS).
[0138] Example 4: UE or gNB is expected to only transmit reference signals (e.g., CSI-RS for measurement).
[0139] Example 5: UE or gNB is expected to turn off any transmission and reception during Cell DTX / DRX non-active periods.
[0140] A configuration method: Cell DTX / DRX pattern contains the start offset and the duration of active / non-active mode. Additionally, for periodic Cell DTX / DRX patterns, RRC signalling can also include the periodicity of the Cell DTX / DRX pattern and / or the index of the Cell DTX / DRX pattern.
[0141] Another configuration method: Periodic Cell DTX / DRX pattern in RRC contains periodicity of the Cell DTX / DRX pattern, the start offset and the duration of active / non-active mode. Additionally, if multiple Cell DTX / DRX patterns are supported in RRC, RRC also indicates the index of the Cell DTX / DRX pattern. And / or, Cell DTX / DRX pattern in L1 / L2 signaling contains the start offset and the duration of non-active mode.
[0142] At least one of the at least one configuration set is configured per cell, per UE, or per MAC entity.
[0143] Optionally, the UE behavior corresponding to Cell DTX overrides the UE behavior corresponding to UE DRX, that is, the Cell DTX non-active period corresponds to the UE inactive time (for example, in the case of UE DRX configuration, under Cell DTX off, the UE is in the DRX off state, or the UE processes according to the DRX off state, or the UE considers Cell DTX off and transmits according to the Cell DTX off requirements (regardless of the UE DRX configuration)). Optionally, UE DRX active time can only occur if enabled in the Cell DTX active period, or the UE can or may consider UE DRX active / process according to UE DRX active during the Cell DTX active period.
[0144] One way to implement it:
[0145] In the case that Cell DTX / DRX is configured / enabled,RAN2 assumes that the UE behavior is aligned with gNB expected Cell DTX / DRX behaviour,ieCell DTX non-active period will be always the inactive time for UE(in case the UE DRX is configured)and UE DRX active time is only possible in the Cell DTX active period.
[0146] Optionally, in the case of CA or DC, if a cell transitions to the NES state, or the DRX or DTX off state, the network deactivates the cell, or the UE deactivates / suspends the cell based on the cell's NES information. Accordingly, information transmission is suspended or stopped (or only the corresponding transmission in the example is stopped).
[0147] Optionally, in the case of CA or DC, if the cell is converted to a non-NES state, or a DRX or DTX on state, the network activates the cell, or the UE activates / restores the cell according to the cell NES information. Accordingly, information transmission is resumed.
[0148] Optionally, the base station may configure the UE DRX configuration.
[0149] Optionally, if at least one of the at least one configuration set is a per-cell configuration, the UE DRX configuration or UE DRX behavior is per-cell.
[0150] Optionally, if at least one of the at least one configuration set is per MAC entity configuration, the UE DRX configuration or UE DRX behavior is per MAC entity.
[0151] Optionally, if at least one of the at least one configuration set is configured per cell entity, the UE DRX configuration or UE DRX behavior is configured per MAC entity.
[0152] Optionally, at least one of the at least one configuration set is in the active state, and the UE DRX is in the on state, and the UE follows the cell / gNB DRX and DTX configurations, and the followUE DRX configuration. That is, the UE transmits normally. Optionally, the UE maintains DRX timers, which include an inactivity timer, a HARQ RTT timer, and a retransmission timer (which can be distinguished between UL and DL).
[0153] Optionally, at least one of the at least one configuration set is in the active state and the UE DRX is in the off state, and the UE follows the cell / gNB DRX and DTX configuration (normal transmission), or follows the UE DRX configuration (cannot monitor the PDCCH and / or transmit DG). Optionally, the UE maintains DRX timers, including inactivity timers, HARQ RTT timers, and retransmission timers (which can distinguish between UL and DL), or the UE uses a short DRX cycle.
[0154] Optionally, at least one of the at least one configuration set is in the non-active state and the UE DRX is in the on state. The UE follows the cell / gNB DRX and DTX configurations (transmitted according to the cell's DRX / DRX state requirements). Optionally, the UE does not maintain (or stops or pauses) DRX timers, including inactivity timers, HARQ RTT timers, and retransmission timers (which can be differentiated between UL and DL). Alternatively, the UE uses a long DRX cycle.
[0155] Optionally, at least one of the at least one configuration set is in the non-active state and the UE DRX is in the off state. The UE follows the cell / gNB DRX and DTX configuration (transmitted according to the cell's DRX / DRX state requirements) and / or the UE follows the UE DRX configuration (cannot monitor the PDCCH and / or transmit DG). Optionally, the UE does not maintain (or stops or pauses) DRX timers, including inactivity timers, HARQ RTT timers, and retransmission timers (which can distinguish between UL and DL), or the UE uses a long DRX cycle.
[0156] Optionally, the cell / gNB DRX configuration and the cell / gNB DTX configuration can be configured independently or separately.
[0157] Optionally, if the cell / gNB DRX configuration and the cell / gNB DTX configuration can be configured independently, and if the configuration requires DCI or MAC CE activation or deactivation, the activation or deactivation information may be for the cell / gNB DRX configuration and the cell / gNB DTX respectively, or may be for the cell / gNB DRX configuration and the cell / gNB DTX together.
[0158] The network configures the cell / gNB DRX / DTX configuration via an RRC message, which may be a UE-specific RRC, UE group RRC, or system information, or SIB message.
[0159] The network configures or indicates the cell / gNB DRX / DTX configuration, where the configuration is the cell / gNB DRX / DTX mode.
[0160] For the corresponding mode, the UE performs the corresponding mode behavior, such as transmission or reception, or conflict handling, according to predefined information.
[0161] Optionally, the network may configure the cell / gNB DRX / DTX configuration to the UE via DCI or MAC CE, or adjust the configured cell / gNB DRX / DTX configuration configured by RRC, or activate the configured cell / gNB DRX / DTX configuration, or activate or deactivate a specific configured cell / gNB DRX / DTX configuration.
[0162] For example, RRC configures one set of cell / gNB DRX / DTX, and DCI or MAC CE indicates another set of cell / gNB DRX / DTX. Accordingly, the UE follows the cell / gNB DRX / DTX indicated by the DCI / MAC CE. Alternatively, the UE follows the cell / gNB DRX / DTX indicated by the DCI / MAC CE in specific circumstances (optionally, in other circumstances, it follows the cell / gNB DRX / DTX configured by RRC). Optionally, the specific circumstances are within a first duration. Optionally, the first duration is predefined and indicated by the RRC / DCI / MAC CE, and the first duration is initiated upon receipt of the cell / gNB DRX / DTX indicated by the DCI / MAC CE by the UE. The first duration may be a first timer. Optionally, the specific circumstances correspond to the cell or base station that indicates the cell / gNB DRX / DTX corresponding to the DCI / MAC CE.
[0163] For example, RRC configures a set of cell / gNB DRX / DTX parameters, and a DCI or MAC CE indicates adjustment of the RRC-configured cell / gNB DRX / DTX parameters. Optionally, the DCI indicates the adjusted parameters and / or adjusted values. Accordingly, the UE follows the DCI / MAC CE indication to adjust the cell / gNB DRX / DTX. Alternatively, the UE follows the DCI / MAC CE indication to adjust the cell / gNB DRX / DTX in specific circumstances (optionally, in other circumstances, it follows the RRC-configured cell / gNB DRX / DTX parameters). Optionally, the specific circumstances are within a first duration. Optionally, the first duration is predefined and indicated by the RRC / DCI / MAC CE, and the first duration begins when the UE receives the cell / gNB DRX / DTX indication from the DCI / MAC CE. The first duration may be a first timer. Optionally, the specific circumstances correspond to the cell or base station indicating the cell / gNB DRX / DTX corresponding to the DCI / MAC CE.
[0164] For example, RRC configures a set of cell / gNB DRX / DTX, and a DCI or MAC CE indicates activation or deactivation of the cell / gNB DRX / DTX configured by the RRC. Upon receiving the DCI / MAC CE, the UE activates or deactivates the cell / gNB DRX / DTX. Optionally, the DCI / MAC CE indicates a cell / gNB DRX / DTX set identifier for activation or deactivation. Optionally, the UE follows the DCI / MAC CE indication to activate or deactivate the cell / gNB DRX / DTX. Alternatively, the UE follows the DCI / MAC CE indication of cell / gNB DRX / DTX activation or deactivation under specific circumstances (optionally, in other circumstances, the cell / gNB DRX / DTX is considered configured but not activated). Optionally, the specific circumstances are within a first duration. Optionally, the first duration is predefined and indicated by the RRC / DCI / MAC CE, and the first duration begins when the UE receives the cell / gNB DRX / DTX indication from the DCI / MAC CE. The first duration may be a first timer. Optionally, the specific situation corresponds to a cell or base station indicating the cell / gNB DRX / DTX corresponding to the DCI / MAC CE.
[0165] For example, RRC configures multiple sets of cell / gNB DRX / DTX, each set of cell / gNB DRX / DTX corresponds to a set identifier, and a DCI or MAC CE indicates which of the multiple sets of cell / gNB DRX / DTX configured by RRC is activated or deactivated. Optionally, the DCI / MAC CE indicates the set identifier of the activated or deactivated cell / gNB DRX / DTX. Optionally, the UE follows the DCI / MAC CE indication to activate or deactivate the cell / gNB DRX / DTX. Alternatively, the UE follows the DCI / MAC CE indication of the activation or deactivation of the cell / gNB DRX / DTX under specific circumstances (optionally, in other circumstances, the cell / gNB DRX / DTX is considered configured but not activated). Optionally, the specific circumstances are within a first duration. Optionally, the first duration is predefined and indicated by the RRC / DCI / MAC CE, and the first duration begins when the UE receives the cell / gNB DRX / DTX indication from the DCI / MAC CE. The first duration may be a first timer. Optionally, the specific situation corresponds to the cell or base station indicating the cell / gNB DRX / DTX corresponding to the DCI / MAC CE.
[0166] One way to implement it:
[0167] 如果小区DTX / DRX模式是非周期性的,或者gNB只是希望采用一次性模式,或者gNB想要临时调整DRX / DTX模式,则gNB可以通过动态信令来指示小区DTX / DRX模式。由L1 / L2信令指示的这种小区DTX / DRX模式可以指示UE进入小区DTX / DRX非激活模式的时间以及UE在该非激活模式下保持的时长。否则,如果是周期性小区DTX / DRX模式,gNB通过RRC重配置来配置小区DTX / DRX模式是很自然的。由RRC指示的这种小区DTX / DRX模式可以包含小区DTX / DRX周期、起始偏移以及激活 / 非激活模式的持续时间。
[0168] Another implementation method:
[0169] the gNB may use RRC signaling to configure the UEs with multiple Cell DTX / DRX configurations for different network power states respectively and then activate one of them by using L1 / L2 signaling (L1 / L2 signaling needs to include Cell DTX / DRX configuration index to be activated). As a result, the UE can use the activated Cell DTX / DRX configuration for transmission / reception.
[0170] The UE performs relevant actions according to the network instructions or configured cell / gNB DRX / DTX configuration.
[0171] Alternatively, Legacy UE cannot access a cell with cell DRX / DTX or transmit information in a cell with cell DRX / DTX, or whether Legacy UE can access a cell with cell DRX / DTX or transmit information in a cell with cell DRX / DTX depends on NW implementation. Alternatively, if the cell DTX requirement is the same as UE DRX, then Legacy UE can access a cell with cell DRX / DTX or transmit information in a cell with cell DRX / DTX.
[0172] Optionally, based on the configuration, if the cell DTX / DRX is non-active, the RACH being executed by the UE is stopped, or the paging / paging is stopped accordingly.
[0173] In another implementation (including at least one of the following):
[0174] RAN2 allows multiple sets of Cell DTX / DRX configurations in RRC signaling.
[0175] RAN2 confirms both alternatives below can be considered for Cell DTX / DRX configuration indication.
[0176] ·Alt1:Allow both periodic pattern(configured by RRC)and one-shot pattern(configured by L1 / L2 signalling).
[0177] ·Alt2:Allow multiple periodic patterns configured by RRC and one of them is activated by L1 / L2 signalling.
[0178] Periodic Cell DTX / DRX pattern in RRC configuration includes periodicity,the start offset and the duration of active / non-active mode.Additionally,if multiple Cell DTX / DRX patterns are supported,the index of the Cell DTX / DRX pattern is also indicated in the RRC configuration.
[0179] Cell DTX / DRX pattern in L1 / L2 signalling includes the start offset and the duration of non-active mode.Or for Alt1,Cell DTX / DRX pattern in L1 / L2 signalling includes the start offset and the duration of non-active mode。
[0180] RAN2 clarifies whether Example 1 covers no transmission of SIB and SSB.
[0181] In the case that Cell DTX / DRX is configured / enabled,RAN2 assumes that the UE behavior is aligned with gNB expected Cell DTX / DRX behaviour,ieCell DTX non-active period will be always the inactive time for UE(in case the UE DRX is configured)and UE DRX active time is only possible in the Cell DTX active period.
[0182] Please refer to FIG3 , which shows a schematic diagram of a wireless communication method provided in an embodiment of the present application. As shown in FIG3 , the wireless communication method includes the following steps:
[0183] Step 301: The base station sends target information for a cell and / or frequency to a UE.
[0184] The target information is used to instruct the UE to perform cell selection or cell reselection or access control, or the target information is used to instruct the UE to perform cell selection or cell reselection.
[0185] Step 302: The UE receives target information for a cell and / or frequency sent by the base station.
[0186] Step 303: The UE performs cell selection or cell reselection or access control according to the target information, or the UE performs cell selection or cell reselection according to the target information.
[0187] Optionally, the target information may be for a target cell and / or a target frequency.
[0188] In an optional embodiment of the present application, the target information is carried in at least one of the following information: RRC message; system information; SIB message; MIB message.
[0189] In an optional embodiment of the present application, when the target information is carried in system information, MIB and / or SIB, the target information includes at least one of the following:
[0190] Cell selection parameters of a candidate cell or a cell to be camped on or a cell to be selected; cell reselection parameters of a candidate cell or a cell to be camped on or a cell to be selected; cell measurement parameters of a candidate cell or a cell to be camped on or a cell to be selected; cell selection parameters of a cell at a candidate frequency point or a frequency point to be camped on or a frequency point to be selected; cell reselection parameters of a cell at a candidate frequency point or a frequency point to be camped on or a frequency point to be selected; cell measurement parameters of a cell at a candidate frequency point or a frequency point to be camped on or a frequency point to be selected; cell selection parameters of the target cell; cell reselection parameters of the target cell; cell measurement parameters of the target cell; cell selection parameters of the target frequency point; cell reselection parameters of the target frequency point; cell measurement parameters of the target frequency point; measurement parameters of the target frequency point; Selection or reselection parameters of the target frequency point; the priority of the target frequency point; cell selection parameters of other cells between frequency points; cell reselection parameters of other cells between frequency points; cell measurement parameters of other cells between frequency points; cell selection parameters of other cells within a frequency point; cell reselection parameters of other cells within a frequency point; cell measurement parameters of other cells within a frequency point; frequency list; frequency priority; cell-level measurement parameters; parameters in the S criterion; parameters in the R criterion; UAC parameters; parameters for determining frequency priority used in selection between frequencies; list of cells allowed access; list of cells not allowed access; cell selection parameters of adjacent frequency cells; cell reselection parameters of adjacent frequency cells; cell selection parameters of adjacent frequencies; cell reselection parameters of adjacent frequencies.
[0191] In an optional embodiment of the present application, the target cell is a cell that supports a specific function, or a cell that supports a network energy-saving mode, or a cell that uses a network energy-saving technology; the target frequency is a frequency that supports a specific function, or a frequency that supports a network energy-saving mode, or a frequency that uses a network energy-saving technology.
[0192] In an optional embodiment of the present application, the target information is used to instruct the UE to perform cell selection, cell reselection, or access control based on the target information and the UE's capability information, or the target information is used to instruct the UE to perform cell selection or cell reselection based on the target information and the UE's capability information. The capability information is used to indicate whether the UE supports a specific function, or whether it has network energy saving support capability, or whether it supports network energy saving technology, or whether it has the ability to support a specific function, or whether it has the ability to support network energy saving, or whether it supports a network energy saving mode.
[0193] In an optional embodiment of the present application, the cell and / or the frequency point are both accessible to, selected by, or reselected by, the first type UE and the second type UE; or, the cell and / or the frequency point allow both the first type UE and the second type UE to access, or select, or reselect; or, the cell and / or the frequency point are only accessible to, selected by, or reselected by the first type UE; or, the cell and / or the frequency point only allow the first type UE to access, or select, or reselect; or, the target cell or the target frequency point are both accessible to, selected by, or reselected by, the first type UE and the second type UE; or, the target cell or the target frequency point allow both the first type UE and the second type UE to access, or select, or reselect; or, the target cell or the target frequency point is only accessible to, selected by, or reselected by, the first type UE; or, the target cell or the target frequency point only allows the first type UE to access, or select, or reselect.
[0194] Among them, the first type of UE is: UE that supports specific functions, or UE with network energy-saving support capabilities, or UE that supports network energy-saving technology, or UE that has the ability to support specific functions, or UE that has the ability to support network energy-saving, or UE that supports network energy-saving mode, or UE of a specific version; the second type of UE is: UE that does not support specific functions, or UE that does not have network energy-saving support capabilities, or UE that does not support network energy-saving technology, or UE that does not have the ability to support specific functions, or UE that does not have the ability to support network energy-saving, or UE that does not support network energy-saving mode, or UE of a non-specific version, or an existing UE type.
[0195] In the case where “the target cell or target frequency point is accessible to, or selected by, or reselected by, the first type UE and the second type UE; or the target cell or target frequency point allows the first type UE and the second type UE to access, or select, or reselect, or the cell and / or the frequency point is accessible to, or selected by, or reselected by, the first type UE and the second type UE; or the cell and / or the frequency point allows the first type UE and the second type UE to access, or select, or reselect”, the target information is used to instruct the first type UE and the second type UE to perform different cell selection processes or cell reselection processes or access control processes, or to instruct the first type UE to perform different cell selection processes or cell reselection processes or access control processes. The target information may be used for the first type UE and the second type UE to use different cell selection rules, cell reselection rules, or access control rules, or for indicating that the first type UE and the second type UE use different cell selection configurations, cell reselection configurations, or access control configurations, or for the first type UE and the second type UE to perform different cell selection processes, cell reselection processes, or access control processes, or for the first type UE and the second type UE to use different cell selection rules, cell reselection rules, or access control rules, or for the first type UE and the second type UE to use different cell selection configurations, cell reselection configurations, or access control configurations.
[0196] For the UE that receives the target information, the UE may perform the corresponding cell selection process or cell reselection process or access control process according to the indication of the target information or according to the target information, or the UE may use the corresponding cell selection rule or cell reselection rule or access control rule according to the indication of the target information or the target information, or the UE may use the corresponding cell selection configuration or cell reselection configuration or access control configuration according to the indication of the target information or the target information.
[0197] For the UE that receives the target information, it can optionally perform a corresponding cell selection process or cell reselection process or access control process according to its own capability information, or the functions supported by the UE, or the type of the UE itself, or the version information of the UE, or whether the UE belongs to the first type of UE or the second type of UE, according to the indication of the target information or according to the target information, or the UE can use the corresponding cell selection rule or cell reselection rule or access control rule according to the indication of the target information or the target information, or the UE can use the corresponding cell selection configuration or cell reselection configuration or access control configuration according to the indication of the target information or the target information.
[0198] Optionally, the UE determines whether it is a first type UE or a second type UE, and / or which selection / reselection / access control method to adopt, based on its own capabilities, or functions supported by the UE, or the UE type, or UE version information. It should be noted that this is an example and does not limit other implementations.
[0199] Furthermore, in an optional embodiment of the present application, the target information may include two different sets of configurations or parameters, wherein the two different sets of configurations or parameters are used for the first type UE and the second type UE to perform cell selection or cell reselection or access control, respectively.
[0200] For the UE that receives the target information, the UE may select a corresponding configuration or parameter from the two different configurations or parameters included in the target information, so as to perform cell selection or cell reselection or access control according to the selected configuration or parameter.
[0201] For the UE that receives the target information, the UE can optionally determine whether it is a first type UE or a second type UE based on its own capability information, or the functions supported by the UE, or the type of the UE itself, or the version information of the UE, or whether the UE belongs to the first type UE or the second type UE. On this basis, the UE can select the corresponding configuration or parameters from the two different sets of configurations or parameters included in the target information to perform cell selection, cell reselection or access control according to the selected configuration or parameters.
[0202] Optionally, the UE determines whether it is a first type UE or a second type UE, and / or which selection / reselection / access control method to adopt, based on its own capabilities, or functions supported by the UE, or the UE type, or UE version information. It should be noted that this is an example and does not limit other implementations.
[0203] Furthermore, in an optional embodiment of the present application, the target information may include a set of cell-related configurations and / or adjustment indication information; wherein, a set of cell-related configurations is used for the UE to perform cell selection, cell reselection, or access control; the adjustment indication information is used to instruct the UE to adjust part or all parameters in a set of cell-related configurations according to the adjustment indication information, or the priority of part or all frequencies, or the priority of part or all cells; or, configuration for cells and / or frequencies; or, parameters for cells and / or frequencies.
[0204] By adjusting the content or indication of the indication information, some or all parameters in a set of cell-related configurations, or the priorities of some or all frequencies, or the priorities of some or all cells, or the configuration for cells and / or frequencies; or the parameters for cells and / or frequencies can be adjusted. Optionally, the adjustment indication information is for the first type of UE, or for the second type of UE, or for the first type and second type of UE. Optionally, based on this, the first type of UE and the second type of UE perform different adjustments, and / or, selection / reselection / access control configurations, and / or selection / reselection / access control rules, and / or, selection / reselection / access control methods. Optionally, the adjustment indication information for the first type of UE and the second type of UE, or the content of the adjustment indication information, or the indication of the adjustment indication information, may be different.
[0205] Furthermore, in an optional embodiment of the present application, the target information may include a set of frequency-related configurations and / or adjustment indication information; wherein, a set of frequency-related configurations is used for the UE to perform cell selection, cell reselection or access control; the adjustment indication information is used to instruct the UE to adjust part or all parameters in a set of frequency-related configurations according to the adjustment indication information, or the priority of part or all frequencies; or, configuration for cells and / or frequencies; or, parameters for cells and / or frequencies.
[0206] Similar to the above, by adjusting the content or indication of the indication information, some or all parameters in a set of frequency-related configurations, or the priorities of some or all frequencies, or the configuration for cells and / or frequencies; or the parameters for cells and / or frequencies can be adjusted. Optionally, the adjustment indication information is for the first type of UE, or for the second type of UE, or for the first type and second type of UE. Optionally, based on this, the first type of UE and the second type of UE perform different adjustments, and / or, selection / reselection / access control configurations, and / or selection / reselection / access control rules, and / or, selection / reselection / access control methods. Optionally, the adjustment indication information for the first type of UE and the second type of UE, or the content of the adjustment indication information, or the indication of the adjustment indication information, may be different.
[0207] Furthermore, in an optional embodiment of the present application, the target information may include a set of cell-related configurations and / or cell identifiers; the set of cell-related configurations is used for the UE to perform cell selection, cell reselection, or access control; the cell identifier is used to indicate at least one of the following: whether the target cell is a cell that supports a specific function, or a cell that supports a network energy-saving mode, or a cell that uses a network energy-saving technology; indicating whether the UE adjusts the parameters of cell selection, cell reselection, or access control based on the cell identifier; the adjustment method or adjustment amount for the configuration of the cell and / or frequency; the adjustment method or adjustment amount for the parameters of the cell and / or frequency; the priority of some or all frequencies; the priority of some or all cells.
[0208] Furthermore, in an optional embodiment of the present application, the target information may include a set of frequency-related configurations and / or frequency identifiers; wherein, a set of frequency-related configurations is used for the UE to perform cell selection, cell reselection, or access control; the frequency identifier is used to indicate at least one of the following: whether the target cell is a cell that supports a specific function, or a cell that supports a network energy-saving mode, or a cell that uses a network energy-saving technology; indicating whether the UE adjusts the parameters of cell selection, cell reselection, or access control according to the frequency identifier; the adjustment method or adjustment amount for the configuration of the cell and / or frequency; the adjustment method or adjustment amount for the parameters of the cell and / or frequency; the priority of some or all frequencies; the priority of some or all cells.
[0209] For the first type UE and the second type UE, the behaviors performed and / or the information obtained and / or the configuration rounding used and / or the configuration information used and / or the configuration parameters used based on the cell identifier or frequency identifier may be different, and / or, for the first type UE and the second type UE, they may perform different behaviors and / or obtain different information and / or use different configuration rounding and / or use different configuration information and / or use configuration parameters based on the communication protocol and the cell identifier or frequency identifier.
[0210] In an optional embodiment of the present application, based on the above, the parameter adjustment value, or the adjustment threshold is at least one of the following: predefined; preconfigured; saved by UE; indicated by RRC; indicated by dedicated information; carried by RRC release; indicated by system information.
[0211] In the case that "the cell and / or the frequency point is only accessible to, or selected by, or reselected by the first type UE; or, the cell and / or the frequency point only allows the first type UE to access, or select, or reselect; or, the target cell or target frequency point is only accessible to, or selected by, or reselected by the first type UE; or, the target cell or target frequency point only allows the first type UE to access, or select, or reselect", the base station may optionally send a first indication message and / or a second indication message to the UE; wherein the first indication message is used to prohibit the second type UE from accessing, or selecting, or reselecting the target cell or target frequency point; and the second indication message is used to allow the first type UE to access, or select, or reselect the target cell or target frequency point.
[0212] On this basis, the target information includes a first configuration or parameter, which is used to indicate a cell selection parameter or cell reselection parameter or access control parameter corresponding to the first type of UE; or, a first configuration or parameter is used for cell selection or cell reselection or access control corresponding to the first type of UE.
[0213] That is, in this case, the target information is sent specifically for the first type of UE.
[0214] In an optional embodiment of the present application, all first type UEs perform the same cell selection or reselection or access control process, or all first type UEs use the same cell selection or reselection or access control rules; or all first type UEs use the same cell selection or reselection or access control configuration.
[0215] In an optional embodiment of the present application, the first indication information is carried in the cell bar field of the MIB, or the first indication information is carried in the reserved field of the SIB, or the first indication information is carried in the list of cells / frequencies allowed for access of the SIB, or the first indication information is carried in the list of cells / frequencies not allowed for access of the SIB; the second indication information is carried in the SIB.
[0216] Hereinafter, regarding cell selection / cell reselection / access control related to network energy-saving technology, the present application also provides another embodiment.
[0217] The network configures or indicates target information. Optionally, the target information is used by the UE to perform cell selection or reselection. Specifically, it includes at least one of the following:
[0218] The target information includes frequency and / or cell information, such as frequency priority, cell-level parameters corresponding to the frequency list cell selection (S) criterion, inter-frequency priority selection parameters, cell-level parameters corresponding to the cell reselection (R) criterion, parameters corresponding to UAC, and cell measurement-related parameters.
[0219] Optionally, the following parameters can be used as examples, but other parameters are not excluded. For example, inter-frequency cell reselection criteria thresholds (e.g., NES offset applied to ThreshX, HighP, ThreshServing, LowP, ThreshX, LowP in clause 5.2.4.5 of TS 38.304). For example, offset for cell ranking criteria R (e.g., Qoffset in clause 5.2.4.6 of TS 38.304). For example, dedicated offset for its measurements (e.g., RSRP, RSRQ, Qhyst).
[0220] Using the target information, the UE dynamically adjusts cell selection or reselection parameters, or configuration information.
[0221] The network instructs or configures multiple sets of cell selection or reselection parameters. One set of parameters is for NES cells or specific UEs, and another set is for other UEs, such as legacy UEs.
[0222] The target information includes at least one of the following: whether the base station or cell is an NES cell, or configuring or indicating whether the base station or cell is in an NES state, or configuring or indicating NES-specific cell selection or reselection parameters, or configuring or indicating the UE to use NES-specific cell selection or reselection parameters, or using NES-specific cell selection or reselection parameters / mechanisms based on NES information.
[0223] The target information is carried in the SIB or a dedicated RRC message (such as RRCrelease)
[0224] If the target information is carried in both the SIB and the dedicated RRC, the UE follows the dedicated RRC message, or follows the dedicated RRC message in the first case (for example, during the first duration, the cell where the UE camps is the NES cell).
[0225] The target information indicates whether the UE has priority or low priority, or whether an NES cell or a cell in an NES state is selected or not selected. Alternatively, the target information indicates whether the UE has priority or low priority, or whether an NES frequency point is selected or not selected, or a frequency point in an NES state.
[0226] The UE is a specific UE, for example, a UE with NES capability, or a UE that supports NES, or a UE that supports NES specific parameters.
[0227] The target information includes whether the base station or cell is an NES cell or is in an NES state. Accordingly, the UE adjusts or uses cell selection and reselection parameters for NES according to the target information, or prioritizes or deprioritizes NES cells.
[0228] For example, when the S or R criteria are implemented, the UE excludes or prioritizes NES cells or cells in the NES state.
[0229] For example, in the case of implementing the S or R criteria, according to the network indication of priority or low priority NES, the UE excludes or prioritizes NES cells or cells in the NES state.
[0230] For example, when implementing the S or R criteria, the UE uses cell selection or reselection parameters for NES cells or cells in the NES state, or performs offset adjustment based on existing cell selection or reselection parameters. Optionally, the cell selection or reselection parameters or offset are predefined, or indicated by the network, or stored by the UE.
[0231] For example, when the S or R criteria are implemented, based on the network's indication of a prioritized or low-priority NES, the UE uses cell selection or reselection parameters for an NES cell or a cell in an NES state, or performs offset adjustment based on existing cell selection or reselection parameters. Optionally, the cell selection or reselection parameters or offset are predefined, or indicated by the network, or stored by the UE.
[0232] For example, according to the target information, the UE adjusts the NES cell or the NES frequency to a high priority frequency.
[0233] For example, according to the target information and the network's indication of prioritizing NES, the UE adjusts the NES cell or NES frequency to a high-priority frequency.
[0234] For example, according to the target information, the UE adjusts the NES cell or the NES frequency to a low priority frequency.
[0235] For example, according to the target information and the network's indication of a low-priority NES, the UE adjusts the NES cell or NES frequency to a high-priority frequency.
[0236] The target information includes an exclude cell list within or across a frequency band. The target information is for a specific UE. The specific UE uses the exclude cell list within or across a frequency band corresponding to the target information. Optionally, the legacy UE uses an existing exclude cell list within or across a frequency band. (i.e., the network configures or indicates multiple sets of exclude cell lists within or across a frequency band, one set for legacy UEs and one set for specific UEs).
[0237] The target information includes a frequency priority, where the frequency priority is specific to an NES frequency or cell. The NES UE uses the target information to perform cell selection or reselection. Optionally, the target information is carried in a SIB or RRC dedicated information (e.g., RRC release).
[0238] The target information includes cell-specific parameters, where the cell-specific parameters are specific to an NES frequency or cell. Optionally, the cell-specific parameters are used for the S criterion or the R criterion, or are at least one of the cell-level parameters used in the corresponding S criterion or the R criterion. The NES UE uses the target information to perform cell selection or reselection. Optionally, the target information is carried in a SIB or RRC-specific information (e.g., RRC release).
[0239] The target information includes the cell identifier or PCI-range to which access is allowed and / or not allowed, and the cell identifier or PCI-range to which access is allowed and / or not allowed corresponds to the NES frequency point or cell. Optionally, the cell identifier or PCI-range to which access is allowed and / or not allowed is used for the S criterion or R criterion. Optionally, the NES UE uses the target information to perform cell selection or reselection. Optionally, the target information is carried in an SIB or RRC dedicated information (such as RRC release).
[0240] The target information within or at a frequency includes an identifier of a frequency that is an NES or is in an NES state. Accordingly, the UE adjusts the priority (high or low) of the corresponding frequency based on the target information and / or the indication of a priority or low priority NES indicated by the network.
[0241] The target information includes the identity of the cell that is NES or in NES state. Accordingly, the UE adjusts the priority (high or low) of the corresponding cell according to the target information and / or the indication of the priority or low priority NES indicated by the network.
[0242] The target information includes the frequency and / or cell identifier of an NES or a cell in an NES state. The target information also includes an exclude cell list within or across the frequency band. The specific UE selects or excludes the cell from the exclude cell list within or across the frequency band based on the target information and / or the indication of a priority or low priority NES indicated by the network. Optionally, the legacy UE uses an existing exclude cell list within or across the frequency band (i.e., the network configures or indicates a set of exclude cell lists within or across the frequency band).
[0243] The target information includes the frequency and / or cell identifier of an NES or a cell in an NES state. The target information also includes a white cell list within or across the frequency. The specific UE selects or excludes the cell from the corresponding white cell list within or across the frequency based on the target information and / or the indication of a priority or low priority NES indicated by the network. Optionally, the legacy UE uses an existing white cell list within or across the frequency (i.e., the network configures or indicates a set of white cell lists within or across the frequency).
[0244] The target information includes a frequency priority for the NES. The target information is for a specific UE. The specific UE uses the frequency priority corresponding to the target information to perform cell selection or reselection. Optionally, the legacy UE uses the existing frequency priority to perform cell selection or reselection. (That is, for a specific frequency or frequency list, the network configures or indicates multiple sets of frequency priorities, one set for legacy UEs and one set for specific UEs).
[0245] The target information includes cell selection or reselection parameters for NES, such as parameters for cells in the S criterion or the R criterion (such as offset, etc.). The target information is for a specific UE. The specific UE uses the frequency priority corresponding to the target information to perform cell selection or reselection. Optionally, the legacy UE uses the existing frequency priority to perform cell selection or reselection. (That is, for a specific frequency or frequency list, the network configures or indicates multiple sets of frequency priorities, one set for legacy UEs and one set for specific UEs).
[0246] The target information includes a UAC configuration for the NES. The target information is for a specific UE. The specific UE performs access control using the UAC configuration corresponding to the target information. Optionally, the legacy UE uses an existing UAC configuration to perform cell selection or reselection. (That is, for a specific frequency or frequency list or cell or PLMN, the network configures or indicates multiple sets of UAC configurations, one for the legacy UE and one for the specific UE).
[0247] Optionally, in the case where the legacy UE cannot access the NES cell or is barred by the NES cell, there is no need to configure or consider the target information for the NES.
[0248] Optionally, when both legacy UE and NES UE are allowed to enter the NES cell, or the legacy UE is not barred by the NES cell, the regional information is configured or considered, or the target information for the NES is configured or considered.
[0249] Optionally, based on network policy or implementation, it is determined whether the NES UE is prioritized or the low-priority NES frequency / cell is prioritized, or whether the NES UE is prioritized or the low-priority NES frequency / cell is prioritized in cell selection or reselection.
[0250] The UE performs cell selection or reselection using the first configuration.
[0251] Optionally, the specific UE and other UEs, such as legacy UEs, use different cell selection or reselection configurations / parameters, or rules.
[0252] Optionally, the specific UE uses NES-specific or additional configurations. Alternatively, the specific UE adjusts the configured cell selection or reselection configuration (based on NES information) to perform NES-specific cell selection or reselection. Optionally, the behavior is performed at a specific time, where the specific time is indicated by the network, preconfigured, or predefined.
[0253] Optionally, if the target information, or the target information for the same cell or frequency point, is carried in the SIB and dedicated information, the UE performs cell selection or reselection according to the target information in the dedicated information. Optionally, within a predetermined duration or a predetermined cell (TA, or specific area), the UE performs cell selection or reselection according to the target information in the dedicated information.
[0254] Optionally, all NES UEs behave in the same manner in the NES cell. Alternatively, all networks do not need to perform or configure different cell selection or reselection parameters (for NES frequencies or cells) between NES UEs, or NES UEs do not need to perform different cell selection or reselection (procedures or rules) for the same NES cell, the same NES frequency, or the same NES cell or frequency, or use different cell selection or reselection parameters or configurations.
[0255] Optionally, different cell selection or reselection (procedures or rules) are performed between the NES UE type and the legacy UE type, or different cell selection or reselection parameters or configurations are used.
[0256] One way to implement it:
[0257] If the cell bar in the MIB or the reserved bit in the SIB is set to barred, the legacy UE is directly barred. The legacy UE cannot use the frequency priority and cell selection and reselection parameters indicated by the network. Therefore, the priority or parameters are for NES UEs. Optionally, when a frequency has an NES cell and a given NES cell, the network can indicate different cell selection or reselection parameters for the UE to prioritize or lower-priority NES cells. Optionally, the NES UE determines whether it can access the NES cell based on the new bar indication. The new bar indication can be in a SIB outside the MIB, such as SIB1.
[0258] If the NES information is indicated in the SIB for cell reselection, such as SIB3 / 4 / 5, the current cell may indicate the NES information of other cells on the same frequency or adjacent frequencies or cells of adjacent frequencies, and / or indicate the selection or reselection parameters of the NES frequency or cell-specific frequency or cell (or, compared with the offset of the existing configuration), and / or indicate which frequencies or cells are prioritized / lower priority (the information may be additionally configured for the NES UE). The NES UE can select or reselect the NES-specific cell based on the information.
[0259] If the legacy cell bar is set to notbarred (e.g., cell bar = barred in the MIB, or the reserved bit in the SIB is reserved), both legacy UEs and NES UEs can access it. Multiple sets of excluded cell lits within or between frequency bands can be indicated, one set for legacy UEs and one set for NES UEs. Alternatively, an excluded cell list can be indicated, but which cells in the cell list are NES cells or non-NES cells can also be indicated. Based on the cell list and the NES cell / non-NES cell indication, the NES UE determines which cells in the cell list are truly inaccessible. For example, if cell list = cell1,2,3,4, and cell1 is an NES cell, legacy UEs cannot access cells 1, 2, 3, and 4. NES UEs cannot access cells 2, 3, and 4.
[0260] Another way to implement it:
[0261] Scenario1:Cell selection and the candidate camping cell is an NES cell
[0262] In legacy, the intra- / inter frequency excluded cell list is indicated in SIB3 / 4, and such excluded cell list is only applicable for cell reselection. Thus, for Scenario1, we can focus on the method that the legacy UE is barred by using cellBarred or cell reservation fields in MIB / SIB.
[0263] With this in mind,only the NES-capable UE can access the NES cell,e.g.the gNB introduces a new IE to allow the NES-capable UE access or not.And whether to allow NES-capable UE access or prioritize can depend on the gNB strategies.
[0264] On the other hand,if the legacy UE can be allowed for the NES cell,the situation changes.To have individual handling for the legacy UE and the NES-capable UE,we prefer the gNB to indicate the NES-specific cell-level cell selection parameters,or,the UE dynamic adapts cell selection parameters if the cell is an NES cell.
[0265] cenario2:Cell reselection and the neighbour cell is an NES cell
[0266] We assume that the UE now camps on the non-NES cells and the neighbour cell(s)to reselect can be NES cell.Since both Intra / InterFreqExcludedCellList and cellBarred or cell reservation fields in MIB / SIB are applicable for cell reselection,we understand Scenario2 can further split into the following two cases.
[0267] Case2-1:legacy UE is barredby using Intra / InterFreqExcludedCellList
[0268] Normally,the gNB can indicate PCI information by using intra- / inter frequency excluded cell lists to block UEs accessing the specific cells.If the gNB would like to reuse such excluded cell list to block the legacy UE accessing the NES cells,the NES-Capable UE should be provided with another excluded cell list,otherwise,all UE have the same access operation on the NES cells.
[0269] Case2-2:legacy UE is barred by using cellBarred or cell reservation fields in MIB / SIB
[0270] 与场景1类似,如果gNB能够通过使用当前的禁止参数直接禁止传统UE接入NES小区,并通过新的指示允许支持NES的UE接入NES小区,那么就无需对支持NES的UE进行额外增强以对NES小区或频率进行优先级排序,因为只有支持NES的UE才能使用此类小区或频率。但是,如果允许传统UE接入NES小区,为了对传统UE和支持NES的UE进行单独处理,我们更倾向于gNB指示NES特定的频率 / 小区级小区重选配置,或者,如果该小区是NES小区,UE动态适配小区重选参数。
[0271] Another implementation method (including at least one of the following):
[0272] 在传统UE被禁止接入NES小区的情况下,RAN2考虑对支持NES的UE重用当前的小区(重)选机制,即无需增强。
[0273] In the cell(re)selection,RAN2 assumes a unified behavior of the NES-capable UEs in performing cell selection or reselection to an NES cell.
[0274] In the case that both the legacy UE and the NES-capable UE can(re)select the NES cell,RAN2 considers to introduce cell-level NES-specific cell(re)selection parameters to have individual handling for the UEs with / without the NES capability.
[0275] RAN2 assumes to rely on the network strategies or implementation on whether / when to prioritize or deprioritize the NES cell for the NES-capable UEs.
[0276] Please refer to FIG4 , which shows a schematic diagram of a wireless communication method provided in an embodiment of the present application. As shown in FIG4 , the wireless communication method includes the following steps:
[0277] Step 401: The UE executes a first action.
[0278] The first behavior includes at least one of the following: random access, data transmission, cell selection, cell reselection, handover, RRC state transition, obtaining system information, synchronization, residence, paging, and paging response.
[0279] In an optional embodiment of the present application, when multiple carriers are deployed, or when multiple carriers are configured, or when there is a first cell, or when there are a first cell and a second cell, the UE performs a first behavior; wherein the first cell is a cell that supports a specific function, or a cell that supports a network energy-saving mode, or a cell that uses a network energy-saving technology, or a non-anchor cell, or a cell that does not send some information; the second cell is a cell different from the first cell, or an anchor cell, or a cell that assists the first cell in transmission or access, or an auxiliary cell of the first cell, or an anchor cell, or a cell that sends first cell information or part of the information.
[0280] In an optional embodiment of the present application, the first cell transmits SSB and / or MIB, and does not transmit SIB or system information; or, the first cell does not transmit SSB and / or MIB, and does not transmit SIB or system information.
[0281] In an optional embodiment of the present application, the UE performs a first behavior, including one of the following:
[0282] The UE performs the first behavior based on the first cell or the second cell; the UE performs the first behavior based on the first cell and the second cell; the UE performs the second behavior in the first behavior based on the first cell, and performs the third behavior in the first behavior based on the second cell; wherein the second behavior and the third behavior are different from each other, or are partially the same.
[0283] Wherein, optionally, the second behavior includes at least one of the following: random access, data transmission, handover, RRC state transition, and the third behavior includes at least one of the following: camp, paging, paging response, obtaining system information, cell selection, cell reselection, RRC state transition; or,
[0284] The second behavior includes at least one of the following: random access, data transmission, handover, RRC state transition; the third behavior includes at least one of the following: camp, paging, paging response, obtaining system information, cell selection, cell reselection, RRC state transition, random access, data transmission, handover; or,
[0285] The second behavior includes at least one of the following: camping, paging, paging response, obtaining system information, cell selection, cell reselection, random access, data transmission, handover, RRC state transition; the third behavior includes at least one of the following: camping, paging, paging response, obtaining system information, cell selection, cell reselection, RRC state transition; or,
[0286] The second behavior includes at least one of the following: reside, paging, paging response, obtaining system information, cell selection, cell reselection, random access, data transmission, switching, and state transition. The third behavior includes at least one of the following: reside, paging, paging response, obtaining system information, cell selection, cell reselection, RRC state transition, random access, data transmission, and switching.
[0287] In an optional embodiment of the present application, when the first cell transmits SSB and / or MIB and does not transmit SIB or system information, the UE performs the first behavior based on the first cell; or, performs the first behavior based on the second cell; or, the UE performs the second behavior based on the first cell and performs the third behavior based on the second cell.
[0288] Further, optionally, the UE preferentially performs the first behavior or the third behavior based on the second cell.
[0289] In an optional embodiment of the present application, when the first cell does not transmit SSB and / or MIB, and does not transmit SIB or system information, the UE performs the first behavior based on the second cell; or, the UE performs the second behavior based on the first cell, and performs the third behavior based on the second cell.
[0290] In an optional embodiment of the present application, the UE selects to perform the first behavior in the first cell and / or the second cell, and / or selects to perform the second behavior in the first cell, and / or selects to perform the third behavior in the second cell; or,
[0291] The UE selects to perform the first behavior in the first cell and / or the second cell based on the first rule or the first policy or the network indication or the UE selection reference, and / or selects to perform the second behavior in the first cell and / or selects to perform the third behavior in the second cell.
[0292] In an optional embodiment of the present application, the first rule, or the first policy, or the network indication, or the UE selection reference includes at least one of the following:
[0293] The first rule or the first strategy is configured by the network side; the selection threshold or parameter or condition configured or indicated by the network; the network configures or indicates the execution of the first behavior or the second behavior or the third behavior from the first cell or the second cell; the network configures or indicates the content of the first behavior; the network configures or indicates the content of the second behavior; the network configures or indicates the content of the third behavior; the amount of data to be transmitted; the priority order; whether the UE obtains the random access configuration of the first cell; whether the UE obtains the data transmission configuration of the first cell; whether the UE obtains the data transmission scheduling of the first cell; signal strength.
[0294] In an optional embodiment of the present application, when the first cell does not transmit SIB, the UE obtains the system information of the first cell or the update of the system information from the second cell; or, when the first cell does not transmit SIB, the UE obtains the SIB1 of the first cell or the update of the SIB1 system information from the second cell.
[0295] In an optional embodiment of the present application, the UE enters an idle or inactive state, or, when the UE leaves the linked state, the UE returns to or reselects to the second cell; and / or, when the UE is in the idle or inactive state, the UE performs at least one of camping, listening to paging, responding to paging, cell selection, and cell reselection in the second cell; and / or, when the UE is in the idle or inactive state, the UE enters the linked state from the second cell; and / or, when the UE is in the idle or inactive state, the UE enters the linked state from the second cell or the first cell; and / or, when the UE is in the idle or inactive state and enters the linked state from the second cell, the UE performs data transmission in the second cell; and / or, when the UE is in the idle or inactive state, the UE enters the linked state from the second cell. In the case of an idle or inactive state, and the second cell enters the linked state, the UE performs data transmission in the second cell, or, when the UE is in an idle or inactive state, and the first cell enters the linked state, the UE performs data transmission in the first cell; and / or, when the UE is in an idle or inactive state, and enters the linked state from the second cell, the UE performs data transmission in the second cell until leaving the linked state; and / or, when the UE is in an idle or inactive state, and the second cell enters the linked state, the UE performs data transmission in the second cell until leaving the linked state; or, when the UE is in an idle or inactive state, and the first cell enters the linked state, the UE performs data transmission in the first cell until leaving the linked state.
[0296] Hereinafter, regarding the UE executing the first behavior, the embodiments of the present application also provide another embodiment.
[0297] Scenario 1: The NES cell transmits SSBs but not SIBs (optionally, the NES cell is the first cell, and the secondary cell of the NES cell is the second cell)
[0298] Optionally, the Legacy UE does not reside in the NES cell, or does not perform data transmission / RACH in the NES cell.
[0299] Optionally, the NES UE behavior is at least one of the following:
[0300] The NES UE resides in the NES cell and / or monitors paging in the NES cell.
[0301] The NES UE monitors paging in the NES cell and initiates RACH in response to paging.
[0302] The NES UE obtains the RACH configuration of the NES cell through the secondary cell (such as the anchor cell) of the NES cell.
[0303] The auxiliary cell (such as the anchor cell) of the NES cell broadcasts or carries the system information of the NES cell, or at least one system information in the system information, or at least one system information IE in the system information, or only broadcasts or carries the SIB1 of the NES cell or at least part of the IEs in the SIB1.
[0304] The NES UE determines whether to perform related operations in an NES cell or a secondary cell based on predefined rules or network-configured criteria. Furthermore, the NES cell to perform the operations in (if multiple NES cells exist) may also be determined.
[0305] The NES UE determines whether to perform RACH from the NES cell or the secondary cell, and / or whether to perform data transmission from the NES cell or the secondary cell, and / or which NES cell to perform RACH from, through indication information of the NES cell or the secondary cell of the NES cell.
[0306] The NES UE determines whether to receive paging or respond to paging from the NES cell or the secondary cell through indication information of the NES cell or the secondary cell of the NES cell, and / or determines from which NES cell to receive paging or respond to paging.
[0307] Based on the data volume information, the NES UE determines whether to perform RACH from the NES cell or the supplementary cell, and / or whether to perform data transmission from the NES cell or the supplementary cell, and / or whether to respond to paging from the NES cell or the supplementary cell. Alternatively, the NES cell from which to perform the RACH and / or data transmission may be determined. For example, if the data volume exceeds a threshold, the RACH and / or data transmission is performed from the NES; otherwise, the RACH and / or data transmission is performed from the supplementary cell. For example, if the data volume exceeds threshold 1, the RACH and / or data transmission is performed from NES cell 1; if the data volume exceeds threshold 1 but is less than threshold 2, the RACH and / or data transmission is performed from NES cell 2; otherwise, the RACH and / or data transmission is performed from the supplementary cell. Optionally, the threshold may be predefined, preconfigured, or indicated by the NES cell or the supplementary cell.
[0308] Based on the channel quality information, the NES UE determines whether to perform RACH from the NES cell or the supplementary cell, and / or whether to perform data transmission from the NES cell or the supplementary cell, and / or whether to respond to paging from the NES cell or the supplementary cell. Alternatively, the NES cell may be further determined. For example, the cell with the best channel quality may be selected to perform the operation. For example, if the NES cell has the best channel quality, the NES cell is selected. Another example is the cell with channel quality above a threshold that is selected to perform the operation. For example, if the NES cell channel quality is above the threshold, the NES cell is selected; if the anchor cell channel quality is above the threshold, the anchor cell is selected. Furthermore, if multiple cells have channel quality above the threshold, a random selection is made, or the NES cell with the best quality is prioritized, or the anchor cell with the best quality is selected. For another example, if the channel quality is above threshold 1, the operation is performed from NES cell 1; if the channel quality is above threshold 2, the operation is performed from NES cell 2; otherwise, the operation is performed from the supplementary cell. Optionally, the threshold may be predefined, preconfigured, or indicated by the NES cell or the supplementary cell.
[0309] If the RACH configuration of the NES cell is configured, or the UE obtains the RACH configuration of the NES cell, the UE performs RACH and / or data transmission from the NES cell or the NES cell that knows the RACH configuration.
[0310] The NES UE preferentially performs RACH from the NES cell and / or performs data transmission from the NES cell.
[0311] When the NES UE obtains the RACH configuration of the NES cell and / or the data transmission configuration / scheduling of the NES cell, it performs RACH from the NES cell and / or performs data transmission from the NES cell.
[0312] The NES UE periodically obtains the system information of the NES cell from the secondary cell, or obtains whether there is paging or system information update of the NES cell.
[0313] The NES UE obtains NES cell system information from the secondary cell (e.g., the secondary cell notifies the NES cell) or checks whether there is any NES cell paging or system information update. Alternatively, the NES UE switches to the secondary cell. Alternatively, the NES UE switches to the secondary cell to obtain NES cell system information or checks whether there is any NES cell paging or system information update.
[0314] After the NES cell RACH, the NES UE enters the linked state, obtains transmission resources from the NES cell, and performs data transmission.
[0315] An NES UE resides in an anchor cell (a secondary cell of an NES cell). Furthermore, it obtains NES cell system information, such as SIB1, from the anchor cell. The NES UE performs RACH and / or data transmission from the NES cell according to specific rules, or the NES UE performs RACH and / or data transmission from the NES cell. Furthermore, the NES UE is handed over or redirected to another cell based on a network handover instruction or a dedicated RRC message. Furthermore, the NES UE monitors paging from the secondary cell and monitors paging from different NES cells.
[0316] Obtaining NES cell system information, such as SIB1, from the anchor cell. The NES UE performs RACH and / or data transmission from the NES cell according to specific rules, or the NES UE performs RACH and / or data transmission from the NES cell. Optionally, the NES cell system information does not include SIBs other than SIB1, such as SIB2, 3, 4, and 5 corresponding to the NES cell, which are used for cell selection or reselection.
[0317] The NES cell does not support cell selection or reselection of the UE, and / or does not indicate the SIB2, 3, 4, 5 and other parameters corresponding to the NES cell for cell selection or reselection. When the UE accesses the network or RACH is executed in the NES cell, the UE returns to the anchor cell periodically, or after a certain time, or after completing data transmission, or returns to the idle or inactive state, or leaves the linked state, or actively requests switching or redirection to the anchor cell. Or, when the UE accesses the network or RACH is executed in the NES cell, the network requires or instructs the UE to return to the anchor cell periodically, or after a certain time, or after completing data transmission, or the network requires or instructs the UE to return to the idle or inactive state, or the network requires or instructs the UE to leave the linked state, or the network requires or instructs the UE to switch or redirection to the anchor cell.
[0318] The NES cell may be one of a Pcell, a Pscell, and a Scell.
[0319] Scenario 2: The NES cell does not transmit SSBs and does not transmit SIBs (optionally, the NES cell is the first cell, and the secondary cell of the NES cell is the second cell)
[0320] Optionally, the legacy UE does not reside in the NES cell, or does not perform data transmission / RACH in the NES cell.
[0321] Optionally, the NES UE behavior is at least one of the following:
[0322] The NES UE camps on a secondary cell (such as an anchor cell) of the NES cell and / or monitors paging from the secondary cell of the NES cell.
[0323] NES Cell can only serve as the Scell of the UE, not as the SpCell.
[0324] The NES UE monitors paging in a secondary cell (e.g., an anchor cell) of the NES cell. Optionally, the NES UE initiates RACH and / or performs data transmission in the NES cell based on an indication from the secondary cell (e.g., an indication to perform data transmission or paging in the NES), or based on whether the paging indication corresponds to an NES cell.
[0325] The NES UE monitors paging in a secondary cell (e.g., an anchor cell) of the NES cell. Optionally, the NES UE initiates RACH and / or performs data transmission in the secondary cell of the NES cell based on an instruction from the secondary cell (e.g., an instruction to perform data transmission or paging in the secondary cell), or based on whether the paging instruction corresponds to a non-NES cell.
[0326] Under a first condition in which the NES cell performs RACH and / or data transmission, the NES UE switches to the NES's secondary cell. Optionally, the first condition may be periodic, such as the NES UE periodically switching to the NES cell or the secondary cell. Optionally, the first condition may be a first duration, which may be indicated by the secondary cell or preconfigured. Optionally, the first condition may be resource expiration, such as when resources for NES data transmission expire or are completely used.
[0327] The NES UE obtains the RACH configuration and / or data transmission configuration of the NES cell through the secondary cell (such as the anchor cell) of the NES cell.
[0328] The NES UE determines whether to perform RACH from the NES cell or the secondary cell, and / or whether to perform data transmission from the NES cell or the secondary cell, through indication information of the NES cell or the secondary cell of the NES cell.
[0329] The NES UE determines whether to perform RACH from the NES cell or the secondary cell, and / or whether to perform data transmission from the NES cell or the secondary cell based on the data volume information. For example, if the data volume is greater than a threshold, the UE performs RACH and / or data transmission from the NES cell; otherwise, the UE performs data transmission from the secondary cell.
[0330] The NES UE preferentially performs RACH from the NES cell and / or performs data transmission from the NES cell.
[0331] When the NES UE obtains the RACH configuration of the NES cell and / or the data transmission configuration / scheduling of the NES cell, it performs RACH from the NES cell and / or performs data transmission from the NES cell.
[0332] The NES UE periodically obtains the system information of the NES cell from the secondary cell, or obtains whether there is paging or system information update of the NES cell.
[0333] The NES UE obtains NES cell system information from the secondary cell (e.g., the secondary cell notifies the NES cell) or checks whether there is any NES cell paging or system information update. Alternatively, the NES UE switches to the secondary cell. Alternatively, the NES UE switches to the secondary cell to obtain NES cell system information or checks whether there is any NES cell paging or system information update.
[0334] After executing RACH in the NES cell or the secondary cell, the NES UE enters the linked state, obtains transmission resources, and performs data transmission.
[0335] The auxiliary cell (such as the anchor cell) of the NES cell broadcasts or carries the system information of the NES cell, or at least one system information in the system information, or at least one system information IE in the system information, or only broadcasts or carries the SIB1 of the NES cell or at least part of the IEs in the SIB1.
[0336] When the UE accesses the network or RACH is executed in an NES cell, the UE returns to the anchor cell periodically, or after a certain period of time, or after completing data transmission, or returns to the idle or inactive state, or leaves the linked state, or actively requests handover or redirection to the anchor cell. Alternatively, when the UE accesses the network or RACH is executed in an NES cell, the network requires or instructs the UE to return to the anchor cell periodically, or after a certain period of time, or after completing data transmission, or the network requires or instructs the UE to return to the idle or inactive state, or the network requires or instructs the UE to leave the linked state, or the network requires or instructs the UE to handover or redirection to the anchor cell.
[0337] In another implementation, for at least one of the scenarios where an NES cell transmits SSBs or does not transmit SSBs, the UE behavior in the following table may be used. Optionally, in the scenario where an NES cell transmits SSBs or does not transmit SSBs, system information of all or part of the NES cell is also included. (Optionally, the NES cell is the first cell, and the secondary cell of the NES cell is the second cell.)
[0338]
[0339]
[0340] In another implementation, at least one of the following actions may be considered:
[0341] In the case that the NES cell transmits neither SSB nor SI message,RAN2 considers the NES cell as a serving cell other than SpCell and checks whether / how to enhance the current CA mechanism.
[0342] In the case that the NES cell transmits SSB but not the system information,if the UE supports CA,RAN2 considers the NES cell as a serving cell other than SpCell and checks whether / how to enhance the current CA mechanism.
[0343] In the case that the NES cell transmits SSB but notthe system information,the SIB1 of the NES cell can be delivered via the SI of the anchor cell.FFS on how the UE knows the association between the NES cell and the anchor cell.
[0344] In the case that the NES cell transmits SSB but not the system information,the UE camps on the anchor cell.
[0345] In the case that the NES cell transmits SSB but not the system information, the UE can access the NES cell by using the NES cell-related RACH configuration which is indicated by the anchor cell.
[0346] This application document also involves a handover process. In the case of network energy saving, for the following scenarios, if the candidate cell for handover or the target cell for handover, or the candidate target cell for handover is a cell for network energy saving, or a cell that supports network energy saving technology, or a cell that uses network energy saving technology, then the network can configure the selection priority of multiple candidate cells in the conditional handover configuration. Furthermore, the UE selects the candidate cell for handover based on the priority. For example, when multiple candidate selections meet the conditions, the cell with the highest priority is selected for handover. For another example, when multiple candidate selections meet the conditions, the cell with the highest priority is selected for handover based on the information of the NES cell.
[0347] For example, the following is an illustration of this scenario: UEs are HO'ed due to source link degradation, where TARGET cell is selected with consideration of whether it is an NES cell or not. For example, for the scenario, an exemplary solution is as follows (including at least one of the following):
[0348] On top of existing CHO mechanism, gNB can configure a priority value for each candidate target cell.
[0349] The setting of priority value is transmitted to the UE.
[0350] If more than 1 candidate target cell satisfy the existing CHO condition(ieA3 / A5 like event), the UE selects target cell for HO execution based on their priority value configured by source gNB.
[0351] In an optional embodiment of the present application, a wireless communication device is also provided, which includes a sending module for sending a network discontinuous communication configuration to a UE; wherein the network discontinuous communication configuration includes the network discontinuous communication configuration of the cell and / or the network discontinuous communication configuration of the base station.
[0352] The wireless communication device may further include other modules, which are not specifically limited in the embodiment of the present application. The wireless communication device may be used to implement the method executed by the base station in the embodiment shown in FIG. 2 .
[0353] In an optional embodiment of the present application, a wireless communication device is also provided, which includes a receiving module for receiving a network discontinuous communication configuration sent by a base station; wherein the network discontinuous communication configuration includes the network discontinuous communication configuration of the cell and / or the network discontinuous communication configuration of the base station.
[0354] The wireless communication device may further include other modules, which are not specifically limited in the embodiment of the present application. The wireless communication device may be used to implement the method executed by the UE in the embodiment shown in FIG. 2 .
[0355] In an optional embodiment of the present application, a wireless communication device is also provided, which includes a sending module for sending target information for cells and / or frequencies to a UE; wherein the target information is used to instruct the UE to perform cell selection or cell reselection or access control, or the target information is used to instruct the UE to perform cell selection or cell reselection.
[0356] The wireless communication device may further include other modules, which are not specifically limited in the embodiment of the present application. The wireless communication device may be used to implement the method executed by the base station in the embodiment shown in FIG3 .
[0357] In an optional embodiment of the present application, a wireless communication device is also provided, which includes a receiving module for receiving target information for cells and / or frequencies sent by a base station; an execution module for performing cell selection or cell reselection or access control according to the target information, or the UE performs cell selection or cell reselection according to the target information.
[0358] The wireless communication device may further include other modules, which are not specifically limited in the embodiment of the present application. The wireless communication device may be used to implement the method executed by the UE in the embodiment shown in FIG. 3 .
[0359] In an optional embodiment of the present application, a wireless communication device is also provided, which includes an execution module for executing a first behavior; the first behavior includes at least one of the following: random access, data transmission, cell selection, cell reselection, switching, RRC state transition, obtaining system information, synchronization, residence, paging, and paging response.
[0360] The wireless communication device may further include other modules, which are not specifically limited in the embodiment of the present application. The wireless communication device may be used to implement the method executed by the UE in the embodiment shown in FIG. 4 .
[0361] Figure 5 is a schematic structural diagram of a communication device provided in an embodiment of the present application. The communication device can be a UE or a base station. The communication device 500 shown in Figure 5 includes a processor 510, which can call and run a computer program from a memory to implement the method in the embodiment of the present application.
[0362] In some embodiments, as shown in FIG5 , the communication device 500 may further include a memory 520. The processor 510 may call and execute a computer program from the memory 520 to implement the method in the embodiment of the present application.
[0363] The memory 520 may be a separate device independent of the processor 510 , or may be integrated into the processor 510 .
[0364] In some embodiments, as shown in FIG5 , the communication device 500 may further include a transceiver 530 , and the processor 510 may control the transceiver 530 to communicate with other devices, specifically, to send information or data to other devices, or to receive information or data sent by other devices.
[0365] The transceiver 530 may include a transmitter and a receiver. The transceiver 530 may further include an antenna, and the number of antennas may be one or more.
[0366] In some embodiments, the communication device 500 may implement the corresponding processes implemented by the UE or base station in the various methods of the embodiments of the present application, which will not be described in detail here for the sake of brevity.
[0367] Figure 6 is a schematic structural diagram of a chip according to an embodiment of the present application. The chip 600 shown in Figure 6 includes a processor 610, which can call and run a computer program from a memory to implement the method according to the embodiment of the present application.
[0368] In some embodiments, as shown in FIG6 , the chip 600 may further include a memory 620 , wherein the processor 610 may call and execute a computer program from the memory 620 to implement the method in the embodiment of the present application.
[0369] The memory 620 may be a separate device independent of the processor 610 , or may be integrated into the processor 610 .
[0370] In some embodiments, the chip 600 may further include an input interface 630. The processor 610 may control the input interface 630 to communicate with other devices or chips, and specifically, may obtain information or data sent by other devices or chips.
[0371] In some embodiments, the chip 600 may further include an output interface 640. The processor 610 may control the output interface 640 to communicate with other devices or chips, and specifically, may output information or data to other devices or chips.
[0372] In some embodiments, the chip 600 can be applied to the communication device in the embodiments of the present application, and the chip 600 can implement the corresponding processes implemented by the UE or base station in the various methods of the embodiments of the present application. For the sake of brevity, they will not be repeated here.
[0373] It should be understood that the chip 600 mentioned in the embodiment of the present application can also be called a system-level chip, a system chip, a chip system or a system-on-chip chip, etc.
[0374] It should be understood that the processor of the embodiments of the present application may be an integrated circuit chip with signal processing capabilities. During implementation, each step of the above method embodiment can be completed by hardware integrated logic circuits in the processor or software instructions. The above processor can be a general-purpose processor, a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field programmable gate array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, or discrete hardware components. The various methods, steps, and logic block diagrams disclosed in the embodiments of the present application can be implemented or executed. The general-purpose processor can be a microprocessor or any conventional processor. The steps of the method disclosed in the embodiments of the present application can be directly embodied as being executed by a hardware decoding processor, or can be executed by a combination of hardware and software modules in the decoding processor. The software module can be located in a storage medium mature in the art, such as random access memory, flash memory, read-only memory, programmable read-only memory, electrically erasable programmable memory, registers, etc. The storage medium is located in the memory, and the processor reads the information in the memory and completes the steps of the above method in combination with its hardware.
[0375] It is understood that the memory in the embodiments of the present application may be a volatile memory or a non-volatile memory, or may include both volatile and non-volatile memories. Among them, the non-volatile memory may be a read-only memory (ROM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), an electrically erasable programmable read-only memory (EEPROM), or a flash memory. The volatile memory may be a random access memory (RAM), which is used as an external cache. By way of example and not limitation, many forms of RAM are available, such as static random access memory (SRAM), dynamic random access memory (DRAM), synchronous dynamic random access memory (SDRAM), double data rate synchronous dynamic random access memory (DDR SDRAM), enhanced synchronous dynamic random access memory (ESDRAM), synchronous link dynamic random access memory (SLDRAM), and direct RAM bus random access memory (DR RAM). It should be noted that the memory of the systems and methods described herein is intended to include, but is not limited to, these and any other suitable types of memory.
[0376] It should be understood that the above-mentioned memories are exemplary but not restrictive. For example, the memories in the embodiments of the present application may also be static random access memory (SRAM), dynamic random access memory (DRAM), synchronous dynamic random access memory (SDRAM), double data rate synchronous dynamic random access memory (DDR SDRAM), enhanced synchronous dynamic random access memory (ESDRAM), synchronous link DRAM (SLDRAM), and direct RAM RAM (DR RAM), etc. In other words, the memories in the embodiments of the present application are intended to include, but are not limited to, these and any other suitable types of memories.
[0377] An embodiment of the present application also provides a computer-readable storage medium for storing a computer program.
[0378] Optionally, the computer-readable storage medium can be applied to the UE or base station in the embodiments of the present application, and the computer program enables the UE or base station to execute the processes implemented by the UE or base station in the various methods of the embodiments of the present application. For the sake of brevity, they will not be repeated here.
[0379] An embodiment of the present application also provides a computer program product, including computer program instructions.
[0380] Optionally, the computer program product can be applied to the UE or base station in the embodiments of the present application, and the computer program instructions enable the UE or base station to execute the corresponding processes implemented by the UE or base station in the various methods of the embodiments of the present application. For the sake of brevity, they will not be repeated here.
[0381] The embodiment of the present application also provides a computer program.
[0382] Optionally, the computer program can be applied to the UE or base station in the embodiments of the present application. When the computer program runs on the UE or base station, the UE or base station executes the processes implemented by the UE or base station in the various methods of the embodiments of the present application. For the sake of brevity, they are not repeated here.
[0383] Those skilled in the art will appreciate that the units and algorithm steps of each example described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, or a combination of computer software and electronic hardware. Whether these functions are performed in hardware or software depends on the specific application and design constraints of the technical solution. Professional and technical personnel can use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of this application.
[0384] Those skilled in the art will clearly understand that, for the convenience and brevity of description, the specific working processes of the systems, devices and units described above can refer to the corresponding processes in the aforementioned method embodiments and will not be repeated here.
[0385] In the several embodiments provided in this application, it should be understood that the disclosed systems, devices and methods can be implemented in other ways. For example, the device embodiments described above are merely schematic. For example, the division of the units is merely a logical function division. In actual implementation, there may be other division methods, such as multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the mutual coupling or direct coupling or communication connection shown or discussed can be through some interfaces, indirect coupling or communication connection of devices or units, which can be electrical, mechanical or other forms.
[0386] The units described as separate components may or may not be physically separate, and the components shown as units may or may not be physical units, that is, they may be located in one place or distributed across multiple network units. Some or all of these units may be selected to achieve the purpose of this embodiment according to actual needs.
[0387] In addition, each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
[0388] If the functions are implemented in the form of software functional units and sold or used as independent products, they can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present application, or the part that contributes to the prior art, or the part of the technical solution, can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes several instructions for enabling a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the method described in each embodiment of the present application. The aforementioned storage medium includes various media that can store program codes, such as a USB flash drive, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk.
[0389] The technical features of the above-mentioned embodiments can be combined arbitrarily. In order to make the description concise, not all possible combinations of the technical features in the above-mentioned embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0390] The above-described embodiments merely represent several implementation methods of the present application. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that a person of ordinary skill in the art may make various modifications and improvements without departing from the spirit of the present application, and these modifications and improvements fall within the scope of protection of the present application. Therefore, the scope of protection of the present patent application shall be determined by the appended claims.
Claims
1. A wireless communication method, characterized in that: The method comprises: The base station sends a network discontinuous communication configuration to the user equipment UE; The network discontinuous communication configuration includes the network discontinuous communication configuration of the cell and / or the network discontinuous communication configuration of the base station.
2. The method according to claim 1, characterized in that The network discontinuous communication configuration includes at least one of the following: The network discontinuous communication configuration is configured at a cell granularity; The network discontinuous communication configuration is configured at a base station granularity; The network discontinuous communication configuration is configured at the granularity of MAC entity; The network discontinuous communication configuration is configured at the UE granularity; The network discontinuous communication configuration is configured based on the granularity of UE groups.
3. The method according to claim 1 or 2, characterized in that The network discontinuous communication configuration includes one of the following: Network discontinuous reception configuration; Network discontinuous transmission configuration; The network discontinuous reception configuration and the network discontinuous transmission configuration; Network discontinuous reception and transmission configuration; Among them, the network discontinuous reception configuration includes configuration parameters of network discontinuous reception; the network discontinuous transmission configuration includes configuration parameters of network discontinuous transmission; the network discontinuous reception and transmission configuration includes network discontinuous transmission configuration, and the discontinuous transmission includes sending and / or receiving.
4. The method according to claim 3, characterized in that The network discontinuous reception configuration and the network discontinuous transmission configuration are respectively carried in different messages, or the network discontinuous reception configuration and the network discontinuous transmission configuration are carried in the same message.
5. The method according to any one of claims 1 to 4, characterized in that: The network discontinuous communication configuration is carried in at least one of an RRC message, system information and dynamic information.
6. The method according to claim 5, characterized in that The dynamic information includes DCI and / or MAC CE, and the RRC message includes a UE-specific RRC message or a UE group RRC message.
7. The method according to any one of claims 1 to 6, characterized in that: The base station sends a network discontinuous communication configuration to the user equipment UE, including at least one of the following: The base station sends the network discontinuous communication configuration to the UE; The base station sends a plurality of the network discontinuous communication configurations to the UE.
8. The method according to any one of claims 1 to 7, characterized in that: The network discontinuous communication configuration is configured, adjusted, activated and / or deactivated through a message; or, The network discontinuous communication configuration is configured, adjusted, activated and / or deactivated through a variety of information.
9. The method according to any one of claims 1 to 8, characterized in that: The method further comprises: The base station sends dynamic indication information to the UE; The dynamic indication information is used to indicate at least one of the following: indicating a discontinuous communication configuration of the network; Adjusting the network discontinuous communication configuration; Instructing to activate or deactivate one or more of the network discontinuous communication configurations.
10. The method according to claim 9, characterized in that The dynamic indication information is used to indicate at least one of the following contents: Network discontinuous communication configuration; Adjustment information of network discontinuous communication configuration; Adjustment parameters for network discontinuous communication configuration; Activation information of network discontinuous communication configuration; Deactivation information of network discontinuous communication configuration; The activation time, activation moment, usage duration, or deactivation moment of the network discontinuous communication configuration.
11. The method according to claim 9 or 10, characterized in that The effective range of the dynamic indication information includes at least one of the following: Within the first period; within a first time period of receiving or corresponding to the dynamic indication information; A specific base station; or, an indicated specific base station; a specific cell; or, an indicated specific cell; specific areas; or, a specific area indicated; A specific UE, or an indicated specific UE.
12. The method according to claim 11, characterized in that The effective range may be at least one of the following: Preconfigured; predefined; indicated by L1 / L2 signaling; carried by the dynamic indication; configured by RRC message; configured by system information.
13. The method according to any one of claims 1 to 12, characterized in that: The network discontinuous communication configuration includes at least one of the following: Configure indexes; Configure the corresponding cycle; The start time of configuration use; The duration of active state of non-continuous network communication; The time when the active state of discontinuous network communication starts; The time when the active state of discontinuous network communication ends; Timer configuration corresponding to the active state of network discontinuous communication; The duration of inactivity of non-continuous network communication; The starting time of the inactive state of discontinuous network communication; The time when the inactive state of discontinuous network communication ends; Timer configuration corresponding to the inactive state of discontinuous network communication; UE behavior or network-side behavior corresponding to the active state of discontinuous network communication; Indication information of UE behavior corresponding to the active state of network discontinuous communication or indication information of network-side behavior; UE behavior or network-side behavior corresponding to the inactive state of discontinuous network communication; Indication information of UE behavior corresponding to the inactive state of network discontinuous communication or indication information of network-side behavior; Mode information.
14. The method according to claim 13, characterized in that The mode information is used to indicate the behavior mode of the UE and / or the behavior mode of the network side; The behavior pattern includes at least one of the following: The information transferred; the types of information permitted to be transferred; The types of information that are not permitted to be transmitted; the types of information that are permitted to be transmitted and the types of information that are not permitted to be transmitted; Conflict resolution methods.
15. The method according to claim 13, characterized in that The UE behavior or the network side behavior includes one of the following: the types of information permitted to be transferred; The types of information that are not permitted to be transmitted; The types of information that are permitted to be transmitted and the types of information that are not permitted to be transmitted.
16. The method according to claim 7, characterized in that In a case where the base station sends a plurality of the network discontinuous communication configurations to the UE, the method further includes: The base station sends a first configuration to the UE; The first configuration includes at least one of the following: an execution order or pattern of a plurality of said network non-continuous communication configurations; a default network discontinuous communication configuration among the plurality of network discontinuous communication configurations.
17. The method according to any one of claims 1 to 16, characterized in that: The method further comprises: If the cell meets the first condition, the base station performs a first network behavior; The first condition includes at least one of the following: the cell is converted to a network energy-saving state; the cell is converted to an inactive state of network discontinuous communication; The first network behavior includes at least one of the following: instructing the UE to deactivate the cell; instructing the UE to stop transmitting specific information; and stopping transmitting specific information.
18. The method according to any one of claims 1 to 17, characterized in that: The method further comprises: If the cell satisfies a second condition, the base station performs a second network behavior; The second condition includes at least one of the following: the cell is converted to a non-network energy-saving state; the cell is converted to an active state of network discontinuous communication; The second network behavior includes at least one of the following: instructing the UE to activate the cell; instructing the UE to transmit specific information; and transmitting specific information.
19. The method according to claim 17 or 18, characterized in that The method further comprises: In a target case, if the cell satisfies a first condition, the base station performs a first network behavior; and / or, In the target case, if the cell satisfies a second condition, the base station performs a second network behavior; The target situation includes at least one of the following: a multi-carrier coverage scenario; a multi-carrier configuration scenario; a dual-connection scenario; and a carrier aggregation scenario.
20. A wireless communication method, characterized in that: The method comprises: The UE receives the network discontinuous communication configuration sent by the base station; The network discontinuous communication configuration includes the network discontinuous communication configuration of the cell and / or the network discontinuous communication configuration of the base station.
21. The method according to claim 20, characterized in that The network discontinuous communication configuration includes at least one of the following: The network discontinuous communication configuration is configured at a cell granularity; The network discontinuous communication configuration is configured at a base station granularity; The network discontinuous communication configuration is configured at the granularity of MAC entity; The network discontinuous communication configuration is configured at the UE granularity; The network discontinuous communication configuration is configured based on the granularity of UE groups.
22. The method according to claim 20 or 21, characterized in that The network discontinuous communication configuration includes one of the following: Network discontinuous reception configuration; Network discontinuous transmission configuration; The network discontinuous reception configuration and the network discontinuous transmission configuration; Network discontinuous reception and transmission configuration; Among them, the network discontinuous reception configuration includes configuration parameters of network discontinuous reception; the network discontinuous transmission configuration includes configuration parameters of network discontinuous transmission; the network discontinuous reception and transmission configuration includes network discontinuous transmission configuration, and the discontinuous transmission includes sending and / or receiving.
23. The method according to any one of claims 20 to 22, characterized in that: The method further comprises at least one of the following: The UE performs sending and / or receiving according to the network discontinuous communication configuration; The UE performs transmission according to the network discontinuous transmission configuration; The UE performs reception according to the network discontinuous reception configuration.
24. The method according to any one of claims 20 to 23, characterized in that The method further comprises at least one of the following: When both network discontinuous transmission and UE discontinuous reception are in active states, the UE communicates according to the network discontinuous transmission configuration and / or the UE discontinuous reception configuration; When the network discontinuous transmission is in an active state and the UE discontinuous reception is in an inactive state, the UE communicates according to the network discontinuous transmission configuration or the UE discontinuous reception configuration; When the network discontinuous transmission is active, it is considered that the UE discontinuous reception is in use, or can be operated, or can communicate according to the UE discontinuous reception; When the network discontinuous transmission is in an inactive state and the UE discontinuous reception is in an active state, the UE communicates according to the network discontinuous transmission configuration, or the UE is considered to be in an inactive state for discontinuous reception; When both the network discontinuous transmission and the UE discontinuous reception are in an inactive state, the UE communicates according to the network discontinuous transmission configuration and / or the UE discontinuous reception configuration, or the UE is considered to be in an inactive state due to discontinuous reception; The UE discontinuous reception configuration includes configuration parameters of the UE's discontinuous reception.
25. The method according to claim 22, wherein The network discontinuous reception configuration and the network discontinuous transmission configuration are respectively carried in different messages, or the network discontinuous reception configuration and the network discontinuous transmission configuration are carried in the same message.
26. The method according to any one of claims 20 to 25, characterized in that The network discontinuous communication configuration is carried in at least one of an RRC message, system information and dynamic information.
27. The method according to claim 26, characterized in that The dynamic information includes DCI and / or MAC CE, and the RRC message includes a UE-specific RRC message or a UE group RRC message.
28. The method according to any one of claims 20 to 27, characterized in that The UE receives a network discontinuous communication configuration sent by a base station, including at least one of the following: The UE receives the network discontinuous communication configuration sent by the base station; The UE receives the multiple network discontinuous communication configurations sent by the base station.
29. The method according to any one of claims 20 to 28, characterized in that The network discontinuous communication configuration is configured, adjusted, activated and / or deactivated through a message; or, The network discontinuous communication configuration is configured, adjusted, activated and / or deactivated through a variety of information.
30. The method according to any one of claims 20 to 29, characterized in that The method further comprises: The UE receives dynamic indication information sent by the base station; The dynamic indication information is used to indicate at least one of the following: indicating a discontinuous communication configuration of the network; Adjusting the network discontinuous communication configuration; Instructing to activate or deactivate one or more of the network discontinuous communication configurations.
31. The method according to claim 30, characterized in that The UE performs at least one of the following based on the dynamic indication information: Network discontinuous communication configuration; Adjustment information of network discontinuous communication configuration; Adjustment parameters for network discontinuous communication configuration; Activation information of network discontinuous communication configuration; Deactivation information of network discontinuous communication configuration; The activation time, activation moment, usage duration, or deactivation moment of the network discontinuous communication configuration.
32. The method according to claim 30 or 31, characterized in that The effective range of the dynamic indication information includes at least one of the following: Within the first period; within a first time period of receiving or corresponding to the dynamic indication information; A specific base station; or, an indicated specific base station; a specific cell; or, an indicated specific cell; specific areas; or, a specific area indicated; A specific UE, or an indicated specific UE.
33. The method according to claim 32, characterized in that The effective range may be at least one of the following: Preconfigured; predefined; indicated by L1 / L2 signaling; carried by the dynamic indication; configured by RRC message; configured by system information.
34. The method according to any one of claims 20 to 33, characterized in that The network discontinuous communication configuration includes at least one of the following: Configure indexes; Configure the corresponding cycle; The start time of configuration use; The duration of active state of non-continuous network communication; The time when the active state of discontinuous network communication starts; The time when the active state of discontinuous network communication ends; Timer configuration corresponding to the active state of network discontinuous communication; The duration of inactivity of non-continuous network communication; The starting time of the inactive state of discontinuous network communication; The time when the inactive state of discontinuous network communication ends; Timer configuration corresponding to the inactive state of discontinuous network communication; UE behavior or network-side behavior corresponding to the active state of discontinuous network communication; Indication information of UE behavior corresponding to the active state of network discontinuous communication or indication information of network-side behavior; UE behavior or network-side behavior corresponding to the inactive state of discontinuous network communication; Indication information of UE behavior corresponding to the inactive state of network discontinuous communication or indication information of network-side behavior; Mode information.
35. The method according to claim 34, wherein The mode information is used to indicate the behavior mode of the UE and / or the behavior mode of the network side; The behavior pattern includes at least one of the following: The information transferred; the types of information permitted to be transferred; The types of information that are not permitted to be transmitted; the types of information that are permitted to be transmitted and the types of information that are not permitted to be transmitted; Conflict resolution methods.
36. The method according to claim 34, wherein The UE behavior or the network side behavior includes one of the following: the types of information permitted to be transferred; The types of information that are not permitted to be transmitted; The types of information that are permitted to be transmitted and the types of information that are not permitted to be transmitted.
37. The method according to claim 28, wherein In the case where the UE receives a plurality of the network discontinuous communication configurations sent by the base station, the method further includes: The UE receives a first configuration sent by the base station; The first configuration includes at least one of the following: an execution order or pattern of a plurality of said network non-continuous communication configurations; a default network discontinuous communication configuration among the plurality of network discontinuous communication configurations.
38. The method according to any one of claims 20 to 37, characterized in that The method further comprises: If the cell satisfies a first condition, the UE performs a first UE behavior; The first condition includes at least one of the following: the cell is converted to a network energy-saving state; the cell is converted to an inactive state of network discontinuous communication; The first UE behavior includes at least one of the following: deactivating the cell; deactivating the cell according to the instruction of the base station; stopping transmitting specific information according to the instruction of the base station; stopping transmitting specific information; requesting the base station to deactivate the cell; requesting the base station to stop transmitting specific information; requesting the base station to stop transmitting specific information.
39. The method according to any one of claims 19 to 37, characterized in that The method further comprises: If the cell satisfies a second condition, the UE performs a second UE behavior; The second condition includes at least one of the following: the cell is converted to a non-network energy-saving state; the cell is converted to an active state of network discontinuous communication; The second UE behavior includes at least one of the following: activating the cell; activating the cell according to the instruction of the base station; transmitting specific information according to the instruction of the base station; transmitting specific information; requesting the base station to activate the cell; requesting the base station to transmit specific information; requesting the base station to transmit specific information.
40. The method according to claim 38 or 39, characterized in that The method further comprises: In a target case, if the cell satisfies a first condition, the UE performs a first UE behavior; and / or, In a target case, if the cell satisfies a second condition, the UE performs a second UE behavior; The target situation includes at least one of the following: a multi-carrier coverage scenario; a multi-carrier configuration scenario; a dual-connection scenario; and a carrier aggregation scenario.
41. The method according to any one of claims 20 to 40, characterized in that The method comprises at least one of the following: In a case where the UE receives or uses the network discontinuous communication configuration for the MAC entity, the UE uses the UE discontinuous transmission configuration for the MAC entity, or performs a UE discontinuous transmission behavior for the MAC entity; In a case where the UE uses different network discontinuous communication configurations for different cells, the UE uses different UE discontinuous transmission configurations, or uses the same UE discontinuous transmission configuration, or uses an intersection of different UE discontinuous transmission configurations, or uses a union of different discontinuous transmission configurations, or performs the same UE discontinuous transmission behavior, or performs different UE discontinuous transmission behaviors, for the UE or MAC entity; In a case where the UE uses the same network discontinuous communication configuration for different cells, the UE uses the same UE discontinuous transmission configuration for different cells, or performs the same UE discontinuous transmission behavior for different cells; Alternatively, the UE uses the same UE discontinuous transmission configuration for the UE or MAC entity, or performs the same UE discontinuous transmission behavior for the UE or MAC entity; The UE discontinuous transmission configuration includes a discontinuous transmission configuration and / or a discontinuous reception configuration; and the UE discontinuous transmission behavior includes a discontinuous transmission and / or a discontinuous reception of the UE.
42. The method according to any one of claims 20 to 41, characterized in that The method further comprises: When the discontinuous communication of the network is in an inactive state, the UE stops executing the currently ongoing third UE behavior; or, after executing the currently ongoing third UE behavior, the UE stops executing the new third UE behavior; The third UE behavior includes at least one of the following: Random access; paging; paging response.
43. A wireless communication method, characterized in that: The method comprises: The base station sends target information for the cell and / or frequency to the UE; The target information is used to instruct the UE to perform cell selection or cell reselection or access control, or the target information is used to instruct the UE to perform cell selection or cell reselection.
44. The method according to claim 43, wherein The base station sends target information for the cell or frequency to the UE, including: The base station sends the target information for the target cell and / or target frequency to the UE.
45. The method according to claim 44, wherein The target information is carried in at least one of the following information: RRC message; system information; SIB message; MIB message.
46. The method according to claim 45, characterized in that In the case where the target information is carried in system information, MIB, and / or SIB, the target information includes at least one of the following: Cell selection parameters of a candidate cell, a cell to be camped on, or a cell to be selected; Cell reselection parameters of a candidate cell, a cell to be camped on, or a cell to be selected; Cell measurement parameters of a candidate cell, a cell to be camped on, or a cell to be selected; Cell selection parameters of a cell at a candidate frequency point or a frequency point to be camped on or a frequency point to be selected; Cell reselection parameters of a cell with a candidate frequency point, a frequency point to be camped on, or a frequency point to be selected; Cell measurement parameters of cells at candidate frequencies, frequencies to be settled, or frequencies to be selected; cell selection parameters of the target cell; cell reselection parameters of the target cell; cell measurement parameters of the target cell; cell selection parameters of the target frequency; cell reselection parameters of the target frequency; The cell measurement parameters of the target frequency point; The measurement parameters of the target frequency point; Selection or reselection parameters of the target frequency point; The priority of the target frequency; Cell selection parameters for other cells between frequency points; Cell reselection parameters for other cells between frequency points; Cell measurement parameters of other cells between frequency points; Cell selection parameters for other cells within the frequency band; Cell reselection parameters for other cells within the frequency band; Cell measurement parameters of other cells within the frequency band; Frequency list; Frequency priority; Cell-level measurement parameters; Parameters in the S criterion; Parameters in the R criterion; UAC parameters; Parameters used to determine frequency priority for inter-frequency selection; List of cells allowed to be accessed; List of cells that are not allowed to be accessed; Cell selection parameters for adjacent frequency cells; Cell reselection parameters for adjacent frequency cells; Adjacent frequency cell selection parameters; Adjacent frequency cell reselection parameters.
47. The method according to any one of claims 44 to 46, characterized in that The target information is used to instruct the UE to perform cell selection or cell reselection or access control according to the target information and the capability information of the UE, or the target information is used to instruct the UE to perform cell selection or cell reselection according to the target information and the capability information of the UE; The capability information is used to indicate whether the UE supports a specific function, or whether it has network energy-saving support capability, or whether it supports network energy-saving technology, or whether it has the ability to support a specific function, or whether it has the ability to support network energy-saving, or whether it supports a network energy-saving mode.
48. The method according to any one of claims 44 to 47, characterized in that The target cell is a cell supporting a specific function, or a cell supporting a network energy-saving mode, or a cell using a network energy-saving technology; The target frequency is a frequency that supports a specific function, or a frequency that supports a network energy-saving mode, or a frequency that uses a network energy-saving technology.
49. The method according to claim 44 or 48, characterized in that The cell and / or the frequency point are both accessible to the first type UE and the second type UE, or are selected or reselected; or, The cell and / or the frequency point may both allow the first type UE and the second type UE to access, or select, or reselect; or, The cell and / or the frequency point are only accessible to the first type of UE, or are selected or reselected; or, The cell and / or the frequency point may only allow the first type of UE to access, select, or reselect; or, The target cell and / or the target frequency point are both accessible to the first type UE and the second type UE, or are selected or reselected; or, The target cell and / or the target frequency point may both allow the first type UE and the second type UE to access, select, or reselect; or, The target cell and / or the target frequency point are only accessible to the first type of UE, or are selected or reselected; or, The target cell and / or the target frequency point may only allow the first type of UE to access, select, or reselect.
50. The method according to claim 49, wherein The first type of UE is: a UE supporting a specific function, or a UE with a network energy saving support capability, or a UE supporting a network energy saving technology, or a UE with a capability to support a specific function, or a UE with a capability to support network energy saving, or a UE supporting a network energy saving mode, or a UE of a specific version; The second type UE is: a UE that does not support specific functions, or a UE that does not have network energy saving support capabilities, or a UE that does not support network energy saving technology, or a UE that does not have the ability to support specific functions, or a UE that does not have the ability to support network energy saving, or a UE that does not support network energy saving mode, or a non-specific version of the UE, or an existing UE type.
51. The method according to claim 50, characterized in that The target information is used to instruct the first type UE and the second type UE to perform different cell selection processes or cell reselection processes or access control processes, or to instruct the first type UE and the second type UE to use different cell selection rules or cell reselection rules or access control rules, or to instruct the first type UE and the second type UE to use different cell selection configurations or cell reselection configurations or access control configurations; or, the target information is used for the first type UE and the second type UE to perform different cell selection processes or cell reselection processes or access control processes, or for the first type UE and the second type UE to use different cell selection rules or cell reselection rules or access control rules, or for the first type UE and the second type UE to use different cell selection configurations or cell reselection configurations or access control configurations.
52. The method according to claim 51, characterized in that The target information includes two different sets of configurations or parameters; The two different sets of configurations or parameters are used for the first type UE and the second type UE to perform cell selection or cell reselection or access control respectively.
53. The method according to claim 51, characterized in that The target information includes a set of cell-related configuration and / or adjustment instruction information; The set of cell-related configurations is used for the UE to perform cell selection, cell reselection, or access control; The adjustment indication information is used to instruct the UE to adjust some or all parameters in the set of cell-related configurations, or the priorities of some or all frequencies, or the priorities of some or all cells according to the adjustment indication information; or the configuration for the cell and / or frequency; or the parameters for the cell and / or frequency.
54. The method according to any one of claims 51 to 53, characterized in that The target information includes a set of frequency-related configuration and / or adjustment instruction information; The set of frequency-related configurations is used for the UE to perform cell selection, cell reselection, or access control; The adjustment indication information is used to instruct the UE to adjust some or all parameters in the set of frequency-related configurations, or the priorities of some or all frequencies according to the adjustment indication information; or the configuration for the cell and / or frequency; or the parameters for the cell and / or frequency.
55. The method according to claim 51, wherein The target information includes a set of cell-related configurations and / or cell identifiers; The set of cell-related configurations is used for the UE to perform cell selection, cell reselection, or access control; The cell identifier is used to indicate at least one of the following: whether the target cell is a cell supporting a specific function, or a cell supporting a network energy-saving mode, or a cell using a network energy-saving technology; Instructing the UE whether to adjust parameters of cell selection, cell reselection, or access control based on the cell identifier; Adjustment method or amount for cell and / or frequency configuration; Adjustment method or amount of adjustment for cell and / or frequency parameters; Priority of some or all frequencies; Priority of some or all cells.
56. The method according to any one of claims 51 to 55, characterized in that The target information includes a set of frequency-related configurations and / or frequency identifiers; The set of frequency-related configurations is used for the UE to perform cell selection, cell reselection, or access control; The frequency point identifier is used to indicate at least one of the following: whether the target cell is a cell supporting a specific function, or a cell supporting a network energy-saving mode, or a cell using a network energy-saving technology; Instructing the UE whether to adjust parameters of cell selection, cell reselection, or access control according to the frequency identifier; Adjustment method or amount for cell and / or frequency configuration; Adjustment method or amount of adjustment for cell and / or frequency parameters; Prioritization of some or all frequencies; Priority of some or all cells.
57. The method according to any one of claims 53 to 56, characterized in that The parameter adjustment value or adjustment threshold is at least one of the following: Predefined; preconfigured; saved by UE; indicated by RRC; indicated by dedicated information; carried by RRC release; indicated by system information.
58. The method according to claim 50, wherein The method further comprises: The base station sends first indication information and / or second indication information to the UE; The first indication information is used to prohibit the second type UE from accessing, selecting, or reselecting the target cell or the target frequency; The second indication information is used to allow the first type UE to access, select, or reselect the target cell or the target frequency.
59. The method according to claim 58, characterized in that The target information includes a first configuration or parameter, where the first configuration or parameter is used to indicate a cell selection parameter, a cell reselection parameter, or an access control parameter corresponding to the first type of UE; or The first configuration or parameter is used for cell selection, cell reselection or access control corresponding to the first type of UE.
60. The method according to claim 59, wherein All first type UEs perform the same cell selection or reselection or access control process, or all first type UEs use the same cell selection or reselection or access control rules; or all first type UEs use the same cell selection or reselection or access control configuration.
61. The method according to claim 58, wherein The first indication information is carried in the cell bar field of the MIB, or the first indication information is carried in the reserved field of the SIB, or the first indication information is carried in the list of cells / frequencies allowed for access of the SIB, or the first indication information is carried in the list of cells / frequencies not allowed for access of the SIB; The second indication information is carried in the SIB.
62. A wireless communication method, characterized in that: The method comprises: The UE receives target information for the cell and / or frequency sent by the base station; The UE performs cell selection or cell reselection or access control according to the target information, or the UE performs cell selection or cell reselection according to the target information.
63. The method according to claim 60, wherein The UE receives target information for a cell and / or frequency sent by a base station, including: The UE receives target information for a target cell and / or a target frequency sent by the base station.
64. The method according to claim 63, wherein The target information is carried in at least one of the following information: RRC message; system information; SIB message; MIB message.
65. The method according to claim 64, characterized in that In the case where the target information is carried in system information, MIB, and / or SIB, the target information includes at least one of the following: Cell selection parameters of a candidate cell, a cell to be camped on, or a cell to be selected; Cell reselection parameters of a candidate cell, a cell to be camped on, or a cell to be selected; Cell measurement parameters of a candidate cell, a cell to be camped on, or a cell to be selected; Cell selection parameters of a cell at a candidate frequency point or a frequency point to be camped on or a frequency point to be selected; Cell reselection parameters of a cell with a candidate frequency point, a frequency point to be camped on, or a frequency point to be selected; Cell measurement parameters of cells at candidate frequencies, frequencies to be settled, or frequencies to be selected; cell selection parameters of the target cell; cell reselection parameters of the target cell; cell measurement parameters of the target cell; cell selection parameters of the target frequency; cell reselection parameters of the target frequency; The cell measurement parameters of the target frequency point; The measurement parameters of the target frequency point; Selection or reselection parameters of the target frequency point; The priority of the target frequency; Cell selection parameters for other cells between frequency points; Cell reselection parameters for other cells between frequency points; Cell measurement parameters of other cells between frequency points; Cell selection parameters for other cells within the frequency band; Cell reselection parameters for other cells within the frequency band; Cell measurement parameters of other cells within the frequency band; Frequency list; Frequency priority; Cell-level measurement parameters; Parameters in the S criterion; Parameters in the R criterion; UAC parameters; Parameters used to determine frequency priority for inter-frequency selection; List of cells allowed to be accessed; List of cells that are not allowed to be accessed; Cell selection parameters for adjacent frequency cells; Cell reselection parameters for adjacent frequency cells; Adjacent frequency cell selection parameters; Adjacent frequency cell reselection parameters.
66. The method according to any one of claims 63 to 65, characterized in that The UE performing cell selection, cell reselection, or access control according to the target information, or the UE performing cell selection or cell reselection according to the target information includes: The UE performs cell selection or cell reselection or access control according to the target information and the capability information of the UE, or the UE performs cell selection or cell reselection according to the target information and the capability information of the UE; The capability information is used to indicate whether the UE supports a specific function, or whether it has network energy-saving support capability, or whether it supports network energy-saving technology, or whether it has the ability to support a specific function, or whether it has the ability to support network energy-saving, or whether it supports a network energy-saving mode.
67. The method according to any one of claims 63 to 66, characterized in that The target cell is a cell supporting a specific function, or a cell supporting a network energy-saving mode, or a cell using a network energy-saving technology; The target frequency is a frequency that supports a specific function, or a frequency that supports a network energy-saving mode, or a frequency that uses a network energy-saving technology.
68. The method according to claim 67, characterized in that The cell and / or the frequency point are both accessible to the first type UE and the second type UE, or are selected or reselected; or, The cell and / or the frequency point may both allow the first type UE and the second type UE to access, or select, or reselect; or, The cell and / or the frequency point are only accessible to the first type of UE, or are selected or reselected; or, The cell and / or the frequency point may only allow the first type of UE to access, select, or reselect; or, The target cell or the target frequency point is accessible to both the first type UE and the second type UE, or is selected or reselected; or, The target cell or the target frequency point may allow both the first type UE and the second type UE to access, select, or reselect; or, The target cell or the target frequency point is only accessible to the first type of UE, or is selected or reselected; or, The target cell or the target frequency point may only allow the first type of UE to access, select, or reselect.
69. The method according to claim 68, characterized in that The first type of UE is: a UE supporting a specific function, or a UE with a network energy saving support capability, or a UE supporting a network energy saving technology, or a UE with a capability to support a specific function, or a UE with a capability to support network energy saving, or a UE supporting a network energy saving mode, or a UE of a specific version; The second type UE is: a UE that does not support specific functions, or a UE that does not have network energy saving support capabilities, or a UE that does not support network energy saving technology, or a UE that does not have the ability to support specific functions, or a UE that does not have the ability to support network energy saving, or a UE that does not support network energy saving mode, or a non-specific version of the UE, or an existing UE type.
70. The method according to claim 69, wherein The target information is used to instruct the first type UE and the second type UE to perform different cell selection processes or cell reselection processes or access control processes, or to instruct the first type UE and the second type UE to use different cell selection rules or cell reselection rules or access control rules, or to instruct the first type UE and the second type UE to use different cell selection configurations or cell reselection configurations or access control configurations; or, the target information is used for the first type UE and the second type UE to perform different cell selection processes or cell reselection processes or access control processes, or for the first type UE and the second type UE to use different cell selection rules or cell reselection rules or access control rules, or for the first type UE and the second type UE to use different cell selection configurations or cell reselection configurations or access control configurations.
71. The method according to claim 70, characterized in that The target information includes two different sets of configurations or parameters; The two different sets of configurations or parameters are used for the first type UE and the second type UE to perform cell selection or cell reselection or access control respectively.
72. The method of claim 66, wherein: The target information includes a set of cell-related configuration and / or adjustment instruction information; The set of cell-related configurations is used for the UE to perform cell selection, cell reselection, or access control; The adjustment indication information is used to instruct the UE to adjust some or all parameters in the set of cell-related configurations according to the adjustment indication information, or the priorities of some or all frequencies, or the priorities of some or all cells, or the configuration for the cell and / or frequency; or the parameters for the cell and / or frequency.
73. The method according to claim 70, characterized in that The target information includes a set of frequency-related configuration and / or adjustment instruction information; The set of frequency-related configurations is used for the UE to perform cell selection, cell reselection, or access control; The adjustment indication information is used to instruct the UE to adjust some or all parameters in the set of frequency-related configurations according to the adjustment indication information, or the priorities of some or all frequencies, or the configuration for the cell and / or frequency; or the parameters for the cell and / or frequency.
74. The method according to claim 70, characterized in that The target information includes a set of cell-related configurations and / or cell identifiers; The set of cell-related configurations is used for the UE to perform cell selection, cell reselection, or access control; The cell identifier is used to indicate at least one of the following: whether the target cell is a cell supporting a specific function, or a cell supporting a network energy-saving mode, or a cell using a network energy-saving technology; Instructing the UE whether to adjust parameters of cell selection, cell reselection, or access control based on the cell identifier; Adjustment method or amount for cell and / or frequency configuration; Adjustment method or amount of adjustment for cell and / or frequency parameters; Prioritization of some or all frequencies; Priority of some or all cells.
75. The method according to claim 70, wherein The target information includes a set of frequency-related configurations and / or frequency identifiers; The set of frequency-related configurations is used for the UE to perform cell selection, cell reselection, or access control; The frequency point identifier is used to indicate at least one of the following: whether the target cell is a cell supporting a specific function, or a cell supporting a network energy-saving mode, or a cell using a network energy-saving technology; Instructing the UE whether to adjust parameters of cell selection, cell reselection, or access control according to the frequency identifier; Adjustment method or amount for cell and / or frequency configuration; Adjustment method or amount of adjustment for cell and / or frequency parameters; Prioritization of some or all frequencies; Priority of some or all cells.
76. The method according to any one of claims 72 to 75, characterized in that The parameter adjustment value or adjustment threshold is at least one of the following: Predefined; preconfigured; saved by UE; indicated by RRC; indicated by dedicated information; carried by RRC release; indicated by system information.
77. The method according to claim 69, wherein The method further comprises: The UE receives the first indication information and / or the second indication information sent by the base station; The first indication information is used to prohibit the second type UE from accessing, selecting, or reselecting the target cell or the target frequency; The second indication information is used to allow the first type UE to access, select, or reselect the target cell or the target frequency.
78. The method according to claim 77, characterized in that The target information includes a first configuration or parameter, where the first configuration or parameter is used to indicate a cell selection parameter, a cell reselection parameter, or an access control parameter corresponding to the first type of UE; or The first configuration or parameter is used for cell selection, cell reselection or access control corresponding to the first type of UE.
79. The method according to claim 78, characterized in that All first type UEs perform the same cell selection or reselection or access control process, or all first type UEs use the same cell selection or reselection or access control rules; or all first type UEs use the same cell selection or reselection or access control configuration.
80. The method of claim 77, wherein: The first indication information is carried in the cell bar field of the MIB, or the first indication information is carried in the reserved field of the SIB, or the first indication information is carried in the list of cells / frequencies allowed for access of the SIB, or the first indication information is carried in the list of cells / frequencies not allowed for access of the SIB; The second indication information is carried in the SIB.
81. A wireless communication method, characterized in that: The method comprises: The UE performs the first action; The first behavior includes at least one of the following: random access, data transmission, cell selection, cell reselection, handover, RRC state transition, obtaining system information, synchronization, camping, paging, and paging response.
82. The method according to claim 81, characterized in that In a case where multiple carriers are deployed, or in a case where multiple carriers are configured, or in a case where a first cell exists, or in a case where a first cell and a second cell exist, the UE performs the first behavior; The first cell is a cell supporting a specific function, or a cell supporting a network energy-saving mode, or a cell using a network energy-saving technology, or a non-anchor cell, or a cell that does not send some information; The second cell is a cell different from the first cell, or an anchor cell, or a cell assisting the first cell in transmission or access, or an auxiliary cell of the first cell, or an anchor cell, or a cell sending the first cell information or part of the information.
83. The method according to claim 72, wherein The first cell transmits SSB and / or MIB, and does not transmit SIB or system information; or The first cell does not transmit SSB and / or MIB, and does not transmit SIB or system information.
84. The method according to claim 81, wherein The UE performs a first behavior, including one of the following: The UE performs the first behavior based on the first cell or the second cell; The UE performs the first behavior based on the first cell and the second cell; The UE performs a second behavior in the first behavior based on the first cell, and performs a third behavior in the first behavior based on the second cell; The second behavior and the third behavior are different from each other, or are partially the same.
85. The method according to claim 84, characterized in that When the first cell transmits an SSB and / or an MIB and does not transmit an SIB or system information, the UE performs the first behavior based on the first cell; Alternatively, performing the first behavior based on the second cell; Alternatively, the UE performs the second behavior based on the first cell, and performs the third behavior based on the second cell.
86. The method according to claim 85, characterized in that include: The UE preferentially performs the first behavior or the third behavior based on the second cell.
87. The method according to claim 84, characterized in that include: When the first cell does not transmit an SSB and / or an MIB, and does not transmit an SIB or system information, the UE performs the first behavior based on the second cell; Alternatively, the UE performs the second behavior based on the first cell, and performs the third behavior based on the second cell.
88. The method according to any one of claims 84 to 87, characterized in that The second behavior includes at least one of the following: random access, data transmission, handover, RRC state transition, and the third behavior includes at least one of the following: camp, paging, paging response, obtaining system information, cell selection, cell reselection, RRC state transition; or The second behavior includes at least one of the following: random access, data transmission, handover, RRC state transition; the third behavior includes at least one of the following: camp, paging, paging response, obtaining system information, cell selection, cell reselection, RRC state transition, random access, data transmission, handover; or, The second behavior includes at least one of the following: camping, paging, paging response, obtaining system information, cell selection, cell reselection, random access, data transmission, handover, RRC state transition; the third behavior includes at least one of the following: camping, paging, paging response, obtaining system information, cell selection, cell reselection, RRC state transition; or, The second behavior includes at least one of the following: reside, paging, paging response, obtaining system information, cell selection, cell reselection, random access, data transmission, switching, and state transition; the third behavior includes at least one of the following: reside, paging, paging response, obtaining system information, cell selection, cell reselection, RRC state transition, random access, data transmission, and switching.
89. The method according to any one of claims 84 to 88, characterized in that The method further comprises: The UE selects to perform the first behavior in the first cell and / or the second cell, and / or selects to perform the second behavior in the first cell, and / or selects to perform the third behavior in the second cell; or The UE selects to perform the first behavior in the first cell and / or the second cell based on a first rule or a first policy or a network indication or a UE selection benchmark, and / or selects to perform the second behavior in the first cell, and / or selects to perform the third behavior in the second cell.
90. The method according to claim 89, wherein The first rule, the first policy, the network instruction, or the UE selection reference includes at least one of the following: The first rule or the first policy is configured by the network side; Selection thresholds, parameters or conditions for network configuration or indication; The network configures or instructs the first cell or the second cell to perform the first behavior, the second behavior, or the third behavior; a network configuration or content indicating the first behavior; a network configuration or instruction for the content of the second behavior; a network configuration or content indicating the third behavior; The amount of data to be transferred; order of priority; whether the UE obtains the random access configuration of the first cell; whether the UE obtains the data transmission configuration of the first cell; whether the UE obtains the data transmission scheduling of the first cell; Signal strength.
91. The method according to claim 83, wherein The method further comprises: In a case where the first cell does not transmit the SIB, the UE obtains, from the second cell, system information or an update of system information of the first cell; or, In a case where the first cell does not transmit the SIB, the UE obtains the SIB1 of the first cell or an update of the SIB1 system information from the second cell.
92. The method according to any one of claims 81 to 91, characterized in that The method further comprises: The UE enters an idle or inactive state, or, when the UE leaves a connected state, the UE returns to or reselects the second cell; and / or, The UE, in an idle or inactive state, performs at least one of camping, monitoring paging, responding to paging, cell selection, and cell reselection on the second cell; and / or, The UE enters a linked state from the second cell when in an idle or inactive state; and / or, The UE, in an idle or inactive state, enters a linked state from the second cell or the first cell; and / or, When the UE is in an idle or inactive state and enters a linked state from the second cell, the UE performs data transmission in the second cell; and / or, When the UE is in an idle or inactive state and the second cell enters a linked state, the UE performs data transmission in the second cell; or when the UE is in an idle or inactive state and the first cell enters a linked state, the UE performs data transmission in the first cell; and / or, When the UE is in an idle or inactive state and enters a linked state from the second cell, the UE performs data transmission in the second cell until leaving the linked state; and / or, When the UE is in an idle or inactive state and the second cell enters a linked state, the UE performs data transmission in the second cell until it leaves the linked state; or, when the UE is in an idle or inactive state and the first cell enters a linked state, the UE performs data transmission in the first cell until it leaves the linked state.
93. A wireless communication device, characterized in that For use in a base station, the device includes: A sending module, configured to send a network discontinuous communication configuration to the UE; The network discontinuous communication configuration includes the network discontinuous communication configuration of the cell and / or the network discontinuous communication configuration of the base station.
94. A wireless communication device, characterized in that For UE, the device includes: A receiving module, configured to receive a network discontinuous communication configuration sent by a base station; The network discontinuous communication configuration includes the network discontinuous communication configuration of the cell and / or the network discontinuous communication configuration of the base station.
95. A wireless communication device, characterized in that For use in a base station, the device includes: A sending module, configured to send target information for a cell and / or frequency to a UE; The target information is used to instruct the UE to perform cell selection or cell reselection or access control, or the target information is used to instruct the UE to perform cell selection or cell reselection.
96. A wireless communication device, characterized in that For UE, the device includes: A receiving module, configured to receive target information for a cell and / or frequency sent by a base station; An execution module is configured to execute cell selection or cell reselection or access control according to the target information, or the UE executes cell selection or cell reselection according to the target information.
97. A wireless communication device, characterized in that For UE, the device includes: An execution module, configured to execute the first behavior; The first behavior includes at least one of the following: random access, data transmission, cell selection, cell reselection, handover, RRC state transition, obtaining system information, synchronization, camping, paging, and paging response.
98. A terminal device, characterized in that include: A processor and a memory, the memory being used to store a computer program, the processor being used to call and run the computer program stored in the memory to execute the method as claimed in any one of claims 20 to 42; or, to execute the method as claimed in any one of claims 62 to 80; or, to execute the method as claimed in any one of claims 81 to 92.
99. A network device, characterized in that include: A processor and a memory, the memory being used to store a computer program, the processor being used to call and run the computer program stored in the memory to execute the method as claimed in any one of claims 1 to 19; or to execute the method as claimed in any one of claims 43 to 61.
100. A chip, characterized in that: include: A processor for calling and running a computer program from a memory so that a device equipped with the chip performs a method as described in any one of claims 20 to 42; or, a device equipped with the chip performs a method as described in any one of claims 62 to 80; or, a device equipped with the chip performs a method as described in any one of claims 81 to 92.
101. A chip, characterized in that: include: A processor, configured to call and run a computer program from a memory so that a device equipped with the chip executes a method as described in any one of claims 1 to 19; or, to cause a device equipped with the chip to execute a method as described in any one of claims 43 to 61.
102. A computer-readable storage medium, characterized in that Used to store a computer program, the computer program causing a computer to execute the method according to any one of claims 20 to 42; or causing a computer to execute the method according to any one of claims 62 to 80; or causing a computer to execute the method according to any one of claims 81 to 92.
103. A computer-readable storage medium, characterized in that Used to store a computer program, the computer program causing a computer to execute the method according to any one of claims 1 to 19; or causing a computer to execute the method according to any one of claims 43 to 61.
104. A computer program product, characterized in that Comprising computer program instructions, the computer program instructions causing a computer to execute the method according to any one of claims 20 to 42; or causing a computer to execute the method according to any one of claims 62 to 80; or causing a computer to execute the method according to any one of claims 81 to 92.
105. A computer program product, characterized in that The method comprises computer program instructions, wherein the computer program instructions cause a computer to execute the method according to any one of claims 1 to 19; or cause a computer to execute the method according to any one of claims 43 to 61.
106. A computer program, characterized in that The computer program enables a computer to execute the method according to any one of claims 20 to 42; or enables a computer to execute the method according to any one of claims 62 to 80; or enables a computer to execute the method according to any one of claims 81 to 92.
107. A computer program, characterized in that The computer program enables a computer to execute the method according to any one of claims 1 to 19; or enables a computer to execute the method according to any one of claims 43 to 61.