UE capability control method, device, terminal, and network side device
By transitioning to an RRC idle state or sending target information during RRC resumption, the UE ensures its capabilities match network expectations, preventing transmission abnormalities and ensuring smooth communication.
Patent Information
- Application Number
- JP2025505973
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2022-08-04
- Filing Date
- 2023-07-31
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2043-07-31
AI Technical Summary
The network side sends configurations to the terminal that exceed its capabilities during RRC connection resumption, causing transmission abnormalities in the terminal due to mismatched UE capabilities.
The UE transitions to an RRC idle state or initiates an RRC connection resumption procedure to ensure its capabilities match the target capabilities, or sends target information to indicate capability changes during or after the resumption process.
This approach prevents the network from configuring the terminal with settings beyond its capabilities, ensuring smooth transmission by aligning UE capabilities with network expectations.
Smart Images

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Abstract
Description
[Technical Field]
[0001] (CROSS-REFERENCE TO RELATED APPLICATIONS) This application claims priority from Chinese Patent Application No. 202210934864.5 filed in China on August 4, 2022, the entire contents of which are incorporated herein by reference.
[0002] The present application relates to the technical field of communications, and in particular to a UE capability control method, device, terminal and network side equipment. [Background technology]
[0003] When a terminal in a Radio Resource Control (RRC) inactive state is in an RRC inactive state or when it starts resuming an RRC connection, the capabilities of the user equipment (UE) may not match the UE capabilities stored on the network side. Therefore, the network side may send a configuration to the terminal that exceeds the terminal capabilities during the RRC connection resumption, which may cause a transmission abnormality in the terminal. Summary of the Invention [Problem to be solved by the invention]
[0004] The embodiments of the present application provide a UE capability control method, device, terminal, and network side device that can solve the problem in the related art that the network side sends a setting to the terminal that exceeds the terminal's capability during RRC connection resumption, causing a transmission abnormality in the terminal. [Means for solving the problem]
[0005] In a first aspect, When a trigger condition for a radio resource control (RRC) connection resumption procedure is met, the UE performs a first operation; The first operation includes: transitioning to an RRC idle state when the UE capability is lower than the target UE capability; initiating an RRC connection resumption procedure, ensuring that the UE capability of the UE is not lower than the target UE capability, and / or sending target information to indicate the UE capability of the UE during or after the RRC connection resumption process.
[0006] In a second aspect, A network side device receives target information for indicating the UE capabilities of the UE, the target information being sent when the UE initiates an RRC connection resumption procedure; or Releasing the UE to an RRC idle state when a network side device releases the UE if a first condition is met, wherein the first condition is: The UE is a MUSIM communication device; and The UE supports capability modification; and and the UE reports preference information for capability change.
[0007] In a third aspect, there is provided a UE capability control device applied to a UE, comprising: a first execution module adapted to perform a first operation when a trigger condition for a radio resource control (RRC) connection resumption procedure is met; The first operation includes: transitioning to an RRC idle state when the UE capability is lower than the target UE capability; initiating an RRC connection resumption procedure, ensuring that the UE capability of the UE is not lower than the target UE capability, and / or sending target information to indicate the UE capability of the UE during or after the RRC connection resumption process.
[0008] In a fourth aspect, a UE capability control device applied to a network side device, Used to receive target information sent by a UE when the UE initiates an RRC connection resumption procedure to indicate the UE capabilities of the UE; or a second execution module used to release the UE to an RRC idle state when a first condition is met, the first condition being: The UE is a MUSIM communication device; and The UE supports capability modification; and and the UE has reported preference information for capability change.
[0009] In a fifth aspect, there is provided a terminal comprising a processor and a memory in which programs or commands executable by the processor are stored, the programs or commands being executed by the processor to effectuate the steps of the method according to the first aspect.
[0010] In a sixth aspect, there is provided a terminal comprising a processor and a communication interface, wherein the processor is adapted to perform a first operation when a trigger condition for a radio resource control (RRC) connection resumption procedure is met, the first operation comprising: transitioning to an RRC idle state when the UE capability is lower than the target UE capability; initiating an RRC connection resumption procedure, ensuring that the UE capability of the UE is not lower than the target UE capability, and / or sending target information to indicate the UE capability of the UE during or after the RRC connection resumption process.
[0011] In a seventh aspect, there is provided a network side device comprising a processor and a memory in which a program or command executable by the processor is stored, wherein when the program or command is executed by the processor, the steps of the method described in the second aspect are realized.
[0012] In an eighth aspect, a network side device includes a processor and a communication interface, wherein the communication interface is used to receive target information for indicating UE capabilities of the UE, the target information being transmitted when the UE initiates an RRC connection resumption procedure, or the processor is used to release the UE to an RRC idle state when releasing the UE if a first condition is satisfied, the first condition being: The UE is a MUSIM communication device; and The UE supports capability modification; and and the UE has reported preference information for capability change.
[0013] In a ninth aspect, there is provided a communication system comprising a terminal and a network side device, wherein the terminal can be used to execute steps of the UE capability control method described in the first aspect, and the network side device can be used to execute steps of the UE capability control method described in the second aspect.
[0014] In a tenth aspect, there is provided a readable storage medium having a program or command stored thereon, which, when executed by a processor, causes the steps of the UE capability control method described in the first aspect to be realized, or the steps of the UE capability control method described in the second aspect to be realized.
[0015] In an eleventh aspect, there is provided a chip comprising a processor and a communication interface, wherein the communication interface and the processor are coupled, and the processor executes a program or command to realize the UE capability control method described in the first aspect, or is used to realize the UE capability control method described in the second aspect.
[0016] In a twelfth aspect, there is provided a computer program / program product stored on a storage medium, which is executed by at least one processor to implement the UE capability control method described in the first aspect or the UE capability control method described in the second aspect. [Effects of the Invention]
[0017] In the embodiment of the present application, when the trigger condition of the RRC connection resumption procedure is met, the UE can ensure that its UE capability is not lower than the target UE capability, or if the UE capability is lower than the target UE capability, the terminal transitions to an RRC idle state, or the UE sends target information to indicate the UE's current UE capability during or after the RRC connection resumption procedure. In this way, the multi-card user equipment can avoid the network side device setting an Access Stratum (AS) that exceeds the UE capability when the UE initiates RRC connection resumption, thereby avoiding transmission abnormalities between the UE and the network side device and ensuring smooth transmission between the UE and the network side device. [Brief explanation of the drawings]
[0018] [Figure 1] 1 is a block diagram of a wireless communication system to which an embodiment of the present application can be applied. [Figure 2] 1 is a flowchart of a UE capability control method provided in an embodiment of the present application; [Figure 3] 4 is a flowchart of another UE capability control method provided in an embodiment of the present application; [Figure 4] FIG. 1 is a block diagram of a UE capability control device provided in an embodiment of the present application. [Figure 5] FIG. 10 is a structural diagram of another UE capability control device provided in an embodiment of the present application. [Figure 6] FIG. 1 is a configuration diagram of a communication device provided in an embodiment of the present application. [Figure 7]FIG. 2 is a configuration diagram of a terminal provided in an embodiment of the present application. [Figure 8] FIG. 2 is a configuration diagram of a network side device provided in an embodiment of the present application. DETAILED DESCRIPTION OF THE INVENTION
[0019] Hereinafter, the technical solutions in the embodiments of the present application will be clearly explained with reference to the drawings in the embodiments of the present application, and it should be understood that the described embodiments are only a part of the embodiments of the present application, not all of the embodiments, and all other embodiments obtained by those skilled in the art based on the embodiments in the present application fall within the scope of protection of the present application.
[0020] The terms "first," "second," etc., used in the specification and claims of this application are not intended to describe a particular order or chronology, but rather to distinguish between similar objects. It should be understood that terms used in this manner may be interchanged where appropriate, so that the embodiments of this application can be practiced in orders other than those illustrated or described herein. It should also be understood that objects distinguished by "first" and "second" generally belong to a single category and do not limit the number of objects; for example, a first object may be one or more. Furthermore, in the specification and claims, "and / or" indicates at least one of connected objects, and the symbol " / " generally indicates that the preceding and following related objects are in an "or" relationship.
[0021] It should be noted that the techniques described in the embodiments of this application are not limited to Long Term Evolution (LTE) / LTE-Advanced (LTE-A) systems, but can also be used in other wireless communication systems, such as Code Division Multiple Access (CDMA), Time Division Multiple Access (TDMA), Frequency Division Multiple Access (FDMA), Orthogonal Frequency Division Multiple Access (OFDMA), Single-Carrier Frequency Division Multiple Access (SC-FDMA), and other systems. The terms "system" and "network" in the embodiments of this application are often used interchangeably, and the techniques described can be used in other systems and wireless technologies in addition to those mentioned above. While the following description will discuss New Radio (NR) systems for illustrative purposes, and NR terminology is used in much of the following description, these technologies may be used in conjunction with other systems and wireless technologies, such as 6th Generation (6G) networks. th It can also be applied to applications other than NR system applications, such as 6G (Generation 6G) communication systems.
[0022] 1 shows a block diagram of a wireless communication system applicable to an embodiment of the present application. The wireless communication system includes a user device 11 and a network side device 12. Here, the user device 11 may be a terminal side device such as a mobile phone, a tablet personal computer (Tablet PC), a laptop computer (also called a notebook computer), a personal digital assistant (PDA), a personal digital assistant (PDA), a netbook, an ultra-mobile personal computer (UMPC), a mobile internet device (MID), an augmented reality (AR) / virtual reality (VR) device, a robot, a wearable device, a vehicle user equipment (VUE), a pedestrian user equipment (PUE), a smart home (a home device with a wireless communication function such as a refrigerator, a television, a washing machine, or furniture), a game console, a personal computer (PC), an automated teller machine (ATM), or a kiosk. The wearable device includes a smart watch, a smart wristband, a smart earphone, a smart glasses, a smart accessory (such as a smart bracelet, a smart bracelet, a smart ring, a smart necklace, a smart anklet, or the like), a smart wristlet, a smart wear, etc. It should be noted that the embodiments of the present application are not limited to a specific type of the user equipment 11. The network side equipment 12 may include an access network equipment or a core network equipment, where the access network equipment may be referred to as a radio access network equipment, a radio access network (RAN), a radio access network function, or a radio access network unit.The access network equipment may include a base station, a Wireless Local Area Network (WLAN) access point, or a Wireless Fidelity (WiFi) node, and the base station may be called a Node B, an evolved Node B (eNB), an access point, a Base Transceiver Station (BTS), a radio base station, a radio transceiver, a Basic Service Set (BSS), an Extended Service Set (ESS), a Home B node, a Home evolved B node, a Transmitting Receiving Point (TRP), or any other appropriate term in the field. As long as the same technical effect can be achieved, the base station is not limited to a specific technical term. It should be noted that although the embodiments of this application only take a base station in an NR system as an example, the specific type of the base station is not limited.
[0023] For better understanding, the following provides an explanation of relevant concepts that may be involved in the embodiments of the present application.
[0024] Multi-card terminal: A multi-card terminal refers to a terminal that is equipped with one or more Universal Subscriber Identity Module (USIM) cards. Taking a dual-card terminal as an example, it can be divided into single-transmission single-reception terminal, single-transmission dual-reception terminal, and dual-transmission dual-reception terminal according to whether the terminal supports simultaneous transmission or reception in the network of two cards.
[0025] For a single-transmit, single-receive terminal, depending on the implementation of the terminal (e.g., two cards sharing the same set of hardware or radio frequency), the terminal can only alternate between sending and receiving information on the networks of the two cards in a time-division manner.
[0026] For a single-transmit dual-receive terminal, the terminal can only alternate uplink transmission on the two-card network in a time-division manner, but supports simultaneous downlink reception on the two-card network.
[0027] For dual-transmit dual-receive terminals, the terminal supports uplink transmission and downlink reception simultaneously in the network of two cards.
[0028] Temporary Capability Restriction: Currently, in a dual-transmit / dual-receive multi-card terminal, each card supports simultaneous transmission and reception using its own independent hardware module. However, this method has problems such as low hardware utilization efficiency and high cost. For this reason, 3GPP Rel-18 is studying how to support dynamic capability allocation between the two cards of a dual-card terminal when the two cards share some hardware modules. For example, if card A is in a connected state and card B is in a disconnected state, and the terminal's capabilities are occupied by card A, when card B attempts to establish or resume a Radio Resource Control (RRC) connection, some of card A's capabilities must be allocated to card B. At this time, the terminal must indicate to network A a temporary capability restriction state (i.e., some capabilities are used by another card). Otherwise, the terminal may experience problems such as data loss from network A or wasted network resources.
[0029] When a terminal instructs a network side to temporarily restrict its capabilities, the temporary capability restriction may be achieved by some radio capabilities of the terminal becoming unsupported within a short period of time, or by the terminal not changing its radio capabilities but requesting or instructing the network side to disable some functions / resources. For example, in a dual-card terminal, if dual connectivity (DC) is configured when network A is in a connected state, the secondary cell group (SCG) is in an active state. At this time, when the terminal attempts to initiate establishment of an RRC connection with network B, the multi-card terminal can request network A to suspend / deactivate the SCG.
[0030] When a terminal in an RRC inactive (INACTIVE) state is in the RRC INACTIVE state or when it initiates an RRC connection resumption, the UE capabilities do not match the UE capabilities in the Access Stratum (AS) context stored on the base station side, so the network side sends a configuration to the UE that exceeds the UE capabilities during the RRC connection resumption, resulting in a transmission abnormality in the terminal.
[0031] Next, the UE capability control method provided in the embodiments of the present application will be described in detail with reference to the drawings according to several embodiments and use cases thereof.
[0032] Please refer to Figure 2, which is a flowchart of a UE capability control method provided in an embodiment of the present application. As shown in Figure 2, the method includes: It includes step 201, in which the UE performs a first action when a trigger condition for the RRC connection resumption procedure is met.
[0033] Here, the first operation is: transitioning to an RRC idle state when the UE capability is lower than the target UE capability; initiating an RRC connection resumption procedure and ensuring that the UE capability of the UE is not lower than the target UE capability; and / or sending target information to indicate the UE capability of the UE during or after the RRC connection resumption process.
[0034] It should be noted that the method provided in the embodiments of the present application is applied to a terminal, and the terminal is a multi-card terminal, that is, the terminal is a Multi-Universal Subscriber Identity Module (MUSIM) communication device, in this case, the UE is a UE corresponding to one USIM card of the multi-card terminal, and the UE capabilities of the UE are capabilities corresponding to the UE of one USIM card, and for understanding the UE and UE capabilities in the following embodiments, please refer to the interpretation explanation herein and will not be described again below. Optionally, if the UE is a UE corresponding to a first USIM card in a MUSIM communication device, the UE capabilities of the UE and the target UE capabilities correspond to the first USIM card.
[0035] For example, when a UE includes a USIM card 1 and a USIM card 2, and the USIM card 1 (i.e., the target USIM card) is in a connected state, i.e., the USIM card 1 accesses a corresponding network 1 (i.e., a target network-side device), the UE capability is the UE capability corresponding to the USIM card 1. Optionally, the UE capability may be all UE capabilities or part of the UE capabilities (e.g., part of the capabilities of the UE is occupied by the USIM card 2).
[0036] Optionally, the target UE capabilities are the UE capabilities stored in the network side equipment or the UE capabilities last reported by the UE to the network side equipment, for example, the target UE capabilities may be the current corresponding UE capabilities reported to the network side equipment when the UE is in an RRC connected state.
[0037] Optionally, the target UE capability may be a set of UE capabilities or multiple sets of UE capabilities. For example, if the target UE capability is multiple sets of UE capabilities stored in the network side device, the first operation may be to ensure that the UE capability is not lower than the smallest set of UE capabilities among the multiple sets of UE capabilities stored in the network side device when the UE initiates an RRC connection resumption procedure based on the USIM card 1, thereby ensuring smooth transmission between the UE and the network side device.
[0038] It should be noted that both UE capabilities and target UE capabilities consist of a number of parameters to indicate the frequency bands, frequency band combinations, carrier aggregation, dual connectivity, Multiple-Input Multiple-Output (MIMO) layers, characteristics, functions, etc. that the UE supports.
[0039] Optionally, the trigger condition for the RRC connection resumption procedure is: The UE is in an RRC inactive state and has received Radio Access Network (RAN) paging; and The UE is in an RRC inactive state and receives an RRC connection resumption request sent from a higher layer; and The UE is in an RRC inactive state and an uplink service has arrived; and The UE needs to perform a RAN-based notification area update (RNAU).
[0040] In one embodiment, when a trigger condition for the RRC connection resumption procedure is met, the UE may initiate RRC connection resumption. For example, when initiating RRC connection resumption, the UE may ensure that the UE capabilities are not lower than the target UE capabilities, e.g., ensure that the UE capabilities match the target UE capabilities. For example, when initiating RRC connection resumption based on USIM card 1, the UE may allocate back the UE capabilities occupied by USIM card 2 to ensure that the UE capabilities corresponding to USIM card 1 are not lower than the target UE capabilities, e.g., are not lower than the UE capabilities stored in the network side equipment.
[0041] In another embodiment, when the trigger condition for the RRC connection resumption procedure is met, if the UE capability is lower than the target UE capability, the UE transitions to the RRC idle state. For example, when the UE receives RAN paging (i.e., the trigger condition for the RRC connection resumption procedure is met), if the UE capability is lower than the target UE capability, the UE does not initiate the RRC connection resumption procedure and transitions to the RRC idle state.
[0042] Optionally, the UE transitions to the RRC idle state and then initiates the RRC connection establishment procedure.
[0043] Optionally, the UE may, when initiating an RRC connection establishment procedure: 1) The UE ensures that its UE capabilities are not lower than the required UE capabilities specified in the protocol or the UE capabilities stored in the core network; 2) The UE RRC connection establishment request message, RRC connection establishment complete message, Security Mode Command (SMC) completion message, UE information response message, Random access resources used in the RRC connection establishment procedure, and transmitting the UE capabilities or transmitting indication information of UE capability change or UE capability restriction via any one of the logical channels for the RRC connection establishment request message.
[0044] Alternatively, in yet another embodiment, when a trigger condition for the RRC connection resumption procedure is met, the UE initiates the RRC connection resumption procedure, and during or after the RRC connection resumption process, the UE sends target information to the network side equipment to indicate the capability of the UE, for example, indicating that the capability of the UE is restricted or that the capability of the UE has been changed, and further ensuring that the network side equipment can know the current UE capability of the UE in a timely manner, thereby avoiding a transmission abnormality between the UE and the network side equipment caused by the network side equipment sending a configuration to the UE that exceeds the UE capability.
[0045] Alternatively, as yet another embodiment of the present application, when a UE initiates an RRC connection establishment procedure in an RRC idle state (when a trigger condition for the RRC connection establishment procedure is met in the RRC idle state or when the UE returns from an RRC inactive state to the RRC idle state), if the UE capability is lower than the target UE capability, the UE may transmit target information to indicate the UE capability during or after the RRC connection establishment. The method for transmitting the target information and the content of the target information by the UE may refer to the method for when a UE in an RRC inactive state initiates an RRC connection resumption procedure. For example, if a UE in an RRC idle state receives CN paging and attempts to initiate an RRC connection establishment procedure, but the UE capability does not match the UE capability stored in the core network, the UE may indicate in an RRC connection establishment complete message or an SMC complete message that its capability is restricted or that the UE capability has changed, thereby ensuring that the network side device can timely know the UE's current capability and thereby preventing the RRC reconfiguration message sent by the network side device from carrying configuration information that exceeds the UE's current capability. Furthermore, for example, when a UE in an RRC idle state receives CN paging and attempts to initiate an RRC connection establishment procedure, but the UE capabilities do not match those stored in the core network, in this case, the UE can further send an RRC connection establishment request message on a specific logical channel, and after receiving such an RRC connection establishment request message, the network side device can know that the UE is currently in a capability change or restriction state according to the logical channel used by the UE, and can thus adopt a conservative policy when scheduling or configuring the UE. It should be noted that this embodiment differs from the previous embodiment only in the scenario or prerequisites in which the UE sends target information.In an embodiment of the present application, when the trigger condition of the RRC connection establishment procedure is met, the UE can ensure that its UE capability is not lower than the target UE capability, or the UE can send target information during the process of initiating the RRC connection establishment procedure or after the RRC establishment process, and indicate the UE's current UE capability based on the target information. In this way, the multi-card user equipment can avoid the network side device from immediately configuring an AS that exceeds the UE capability when the UE transitions to the RRC connected state or after the UE transitions to the RRC connected state, thereby avoiding transmission abnormalities between the UE and the network side device and ensuring smooth transmission between the UE and the network side device.
[0046] Optionally, the target UE capabilities include: UE capabilities stored in said UE while in an RRC inactive state; UE capabilities stored in the network side equipment, The UE capabilities last reported by the UE to the network side device; and the UE capabilities of the UE last confirmed by the network side equipment.
[0047] Here, for UE capabilities stored in the UE while in the RRC inactive state, the UE may store its reported capabilities in the UE inactive AS context.
[0048] Optionally, ensuring that the UE capabilities are not lower than the target UE capabilities includes: If the target UE capabilities include only one set of UE capabilities, the UE ensures that its UE capabilities are not lower than the target UE capabilities; or When the target UE capabilities include N sets of UE capabilities, the UE ensures that its UE capabilities are not lower than a specific set of UE capabilities therein, where N is a positive integer greater than 1.
[0049] It should be noted that the target UE capabilities are UE capabilities stored in the network side device, for example, the network side device can determine the target UE capabilities based on the UE capabilities last reported by the UE. Optionally, a UE can report only one set of UE capabilities in the RRC connected state, in which case the target UE capabilities are the reported set of UE capabilities. When the UE is in an idle state or an inactive state, for example, when the UE initiates an RRC connection resumption procedure based on USIM card 1, the UE ensures that the current UE capabilities are not lower than the target UE capabilities, i.e., not lower than the set of UE capabilities reported by the UE in the RRC connected state, thereby avoiding transmission abnormalities between the UE and the network side device after RRC connection resumption.
[0050] Alternatively, the UE may report N sets of terminal capabilities to the network side device in the RRC connected state. When the UE initiates an RRC connection resumption procedure, the UE ensures that its UE capabilities are not lower than a specific set of UE capabilities among the N sets of UE capabilities stored in the network side device, for example, not lower than the smallest set of UE capabilities thereamong, and the network side device configures the UE based on this smallest set of UE capabilities, thereby avoiding the network side device sending an AS configuration to the UE that exceeds the UE capabilities.
[0051] Optionally, the particular set of UE capabilities includes: a set of UE capabilities having the smallest capabilities among the N sets of UE capabilities; It is one of a set of UE capabilities indicated by the network side device.
[0052] For example, the network side equipment can indicate a set of UE capabilities to the UE, and when the UE initiates an RRC connection resumption procedure, the UE ensures that the current UE capabilities are not lower than the UE capabilities indicated by the network side equipment, and the network side equipment configures the UE based on the indicated UE capabilities, thereby avoiding the network side equipment from sending an AS configuration to the UE that exceeds the UE capabilities, and ensuring smooth transmission between the UE and the network side equipment.
[0053] Optionally, if the target UE capabilities include only one set of UE capabilities, the method further comprises: The method further includes, when the UE is in an RRC connected state, sending first information to the network side device to indicate the target UE capability when the UE is released to an RRC inactive state.
[0054] For example, the terminal may transmit first information to the network side when in a connected state, and this first information indicates the UE capabilities stored on the network side when the UE is released to an RRC inactive (INACTIVE) state, i.e., the target UE capabilities, for example, the target UE capabilities which are a set of minimum UE capabilities of the UE, and when the UE initiates an RRC connection resumption procedure, the network side device may configure the UE according to this minimum UE capabilities.
[0055] Specifically, the UE can move to another cell in the INACTIVE state and initiate RRC connection resumption. For example, in cell 1, after the base station corresponding to cell 1 (serving base station) receives the UE's connection resumption request, it first obtains the UE's context information from the anchor base station. Based on the UE's context information, the anchor base station can directly send the UE's minimum capability as UE capability information to the serving base station. Then, the serving base station sends an RRC connection resumption message to the UE based on the UE's context information to perform AS configuration.
[0056] In an embodiment of the present application, when a trigger condition for the RRC connection resumption procedure is met, the UE can initiate the RRC connection resumption procedure and send target information during or after the RRC connection resumption process; or when the UE initiates the RRC connection establishment procedure in an RRC idle state, if the UE capability is lower than the target UE capability, the UE can send target information during or after the RRC connection establishment, where the target information comprises: a first UE identifier associated with a first target UE capability; First indication information for indicating that the UE capability of the UE has been restricted or changed; The UE capabilities of the UE may include at least one of:
[0057] For example, the UE transmits a first UE identifier associated with a first target UE capability to the network side device during or after the RRC connection resumption process, and the network side device can determine which set of UE capabilities the UE uses based on the first UE identifier, thereby enabling the network side device to configure an AS based on the UE capabilities used by the UE. Alternatively, if the UE's current UE capabilities are close to a certain target UE capability (e.g., a first target UE capability), the UE can indicate which target UE capability is based on the UE identifier.
[0058] Alternatively, the first indication information indicates that the UE capabilities of the UE have been restricted, and the network side equipment can know that the UE capabilities have been restricted or changed based on the first indication information. In such a case, the network side equipment can perform AS configuration based on the minimum UE capabilities of the UE.
[0059] Alternatively, the first indication information is used to indicate the UE capability of the UE, and the network side device can then perform AS configuration based on the UE capability.
[0060] Optionally, the method further comprises: Before the UE transitions to an RRC inactive state, when the UE is in an RRC connected state, receiving first configuration information; Here, the first configuration information is used to configure N first UE identifiers associated with N sets of target UE capabilities, one set of the target UE capabilities corresponds to one of the first UE identifiers, the N sets of target UE capabilities include the first target UE capabilities, and N is a positive integer greater than 1.
[0061] For example, when the UE is in an RRC connected state, it reports its multiple sets of UE capabilities to the network side device, and when the network side device releases the UE to an RRC inactive state, it sends first configuration information to the UE, where the first configuration information includes multiple first UE identifiers corresponding to multiple sets of target UE capabilities, where each first UE identifier is associated with a set of target UE capabilities. When the UE initiates an RRC connection resumption procedure, the UE can determine the corresponding first UE identifier according to the currently used UE capabilities and report the first UE identifier to the network side device, and the network side device can further determine the target UE capabilities associated with the first UE identifier according to the first UE identifier, so that the network side device can configure an AS based on the target UE capabilities to avoid transmission abnormalities between the UE and the network side device.
[0062] Optionally, when the target UE capabilities include N sets of UE capabilities, the method further comprises: The method further includes reporting the N sets of UE capabilities to the network side device when the UE is in an RRC connected state.
[0063] It can be understood that when the UE is in an RRC connected state, the UE can report N sets of UE capabilities to the network side equipment, and further, the network side equipment can store the N sets of UE capabilities, that is, the target UE capabilities may include these N sets of UE capabilities reported by the UE.
[0064] Optionally, the step of reporting the N sets of UE capabilities to the network side equipment comprises: reporting the N sets of UE capabilities to the network side device; reporting N-1 sets of UE capabilities when one set of UE capabilities has already been stored in the network side device; and reporting, based on the set of UE capabilities, discrepancy information between the N-1 set of UE capabilities and the set of UE capabilities.
[0065] It should be noted that in reporting difference information between the N-1 set of UE capabilities and the set of UE capabilities based on the set of UE capabilities, the set of UE capabilities is considered to be the baseline UE capabilities.
[0066] The UE may also report the common part of the N sets of UE capabilities and the different part of the N sets of UE capabilities.
[0067] In an embodiment of the present application, if the target information includes first indication information, the UE: An empty bit (1 bit) in the RRC connection resumption request message, Resume cause value in the RRC connection resume request message, RRC connection resumption completion message, UE information response message, a logical channel corresponding to the RRC connection resume request message; The first indication information is sent to the network side device via any one of the random access resources used in the RRC connection resumption procedure.
[0068] Optionally, when the UE sends the first indication information through an RRC connection resume request message, the method further comprises: The method further includes, when the UE initiates an RRC connection resumption request, determining the resumption cause value according to a trigger cause of RRC connection resumption and the first indication information.
[0069] That is, when the first indication information can be indicated by a resume cause value, the UE can determine the resume cause value by combining the trigger cause of RRC connection resumption and the first indication information. For example, if RRC connection resumption is triggered by access network (Radio Access Network, RAN) paging, the corresponding resume cause is mt-access, which indicates invoked access. In this case, the probability of enabling network access is higher, so the UE should still use mt-access. If RRC connection resumption is triggered by a UE data service, the UE can set the resume cause to the first indication information instead of mo-Data.
[0070] Optionally, when the UE sends the first indication information to the network side device through the RRC connection resume complete message or the UE information response message, the first indication information is further used to indicate the restricted UE capabilities of the UE. It should be noted that, since the RRC connection resume complete message and the UE information response message can carry more information, the UE can report which of its capabilities is in a restricted state through the RRC connection resume complete message or the UE information response message, that is, the first indication information can be used to indicate the specific restricted UE capabilities.
[0071] In an embodiment of the present application, when a trigger condition for an RRC connection resumption procedure is met, the step of the UE performing a first operation includes: The method includes the UE sending the first indication information to a network side device when the UE initiates an RRC connection resumption procedure and the UE capability does not match the target UE capability.
[0072] In an embodiment of the present application, when the UE initiates an RRC connection resumption procedure, if the UE capabilities do not match the target UE capabilities, for example, if the UE capabilities do not match the UE capabilities stored in the network side equipment, the UE will send first indication information to the network side equipment to indicate that the UE capabilities have been restricted, for example, the UE can send the first indication information to the network side equipment via a UE information response message to indicate the specific restricted UE capabilities to the network side equipment. Furthermore, the network side equipment can know that the UE capabilities have been restricted based on the first indication information, thereby avoiding the network side equipment from sending a configuration that exceeds the UE capabilities to the UE.
[0073] Optionally, the UE sending the first instruction information to a network side device includes: The method includes the UE sending the first indication information to a network side device when the UE capability is occupied by multiple Universal Subscriber Identity Module (USIM) cards.
[0074] It should be noted that if the reason why the UE's capabilities are restricted is that the UE's capabilities are occupied (or called shared) by multiple USIM cards, the UE will send the first indication information to the network side equipment, and for example, the first indication information may include the reason why the UE's capabilities are restricted, so that the network side equipment can easily know that the UE's capabilities are restricted and the reason for the restriction.
[0075] It should be noted that when the network side device supports N sets of UE capabilities of the terminal, the first indication information is further used to indicate the current UE capabilities of the UE, where the N sets of UE capabilities include the current UE capabilities of the UE, so that the network side device can know the UE capabilities currently used by the UE, and can send a matching AS configuration according to the UE capabilities currently used by the UE, so as to ensure smooth transmission between the UE and the network side device.
[0076] In an embodiment of the present application, the method comprises: The method further includes the step of the UE performing the first operation when a trigger condition for an RRC connection resumption procedure is met based on second information sent by a network side device.
[0077] That is, the UE performs the first operation when a trigger condition for the RRC connection resumption procedure is satisfied based on the second information sent by the network side device. Illustratively, the second information may indicate whether the network side device permits or supports the UE to perform the first operation when a trigger condition for the RRC connection resumption procedure is satisfied. Thus, without the permission or support of the network side device, the UE cannot perform the first operation.
[0078] Optionally, the UE receives the second information by broadcast (eg, system message) or dedicated signaling.
[0079] Furthermore, the method comprises: The UE may further include, when receiving the second information, ensuring that the UE capability is not lower than the target UE capability when a trigger condition for an RRC connection resumption procedure is met, and / or sending the target information during or after the RRC connection resumption process.
[0080] For example, the second information indicates that the UE ensures that its UE capability is not lower than the target UE capability when a trigger condition for an RRC connection resumption procedure is met, and / or indicates that the UE is permitted or supported by the network side device to send the target information during or after the RRC connection resumption process, and the UE can perform the above operation when the trigger condition for an RRC connection resumption procedure is met upon receiving the second information. In this way, if the network side device does not permit or support the performance of the above operation, the UE cannot perform the above operation, thereby avoiding a transmission abnormality caused by the UE's operation not being supported by the network side device.
[0081] Optionally, the method further comprises: The method further includes a step of obtaining an RRC release message sent by a network side equipment, when the UE is released to an RRC inactive state by the network side equipment, the RRC release message including the second information for indicating at least one cell.
[0082] That is, when the UE is released into the RRC inactive state by the network side equipment, the network side equipment can indicate at least one cell that can support the UE to perform the above operation in the RRC release message, i.e., when the trigger condition of the RRC connection resumption procedure is met, the UE can ensure that the UE capability is not lower than the target UE capability and / or indicate a cell that supports the UE to send the target information during or after the RRC connection resumption process. In this way, the UE can determine in which cell the above operation can be performed based on the RRC release message, and further manage the UE's operation better.
[0083] Optionally, the UE obtains the second information based on a protocol-defined manner, where the second information corresponding to all cells within the RAN-based notification area of the UE is consistent.
[0084] Optionally, the method further comprises: The method further includes the step of the UE transitioning to an RRC idle state when a trigger condition for an RRC connection resumption procedure is met if the UE has not received the second information.
[0085] As can be understood, if the UE has not received the second information sent from the network side equipment, for example, second information that ensures that when the trigger condition of the RRC connection resumption procedure is met, the UE's UE capability is not lower than the target UE capability and / or that sending the target information during or after the RRC connection resumption process is not supported or allowed by the network side equipment, the network side equipment may not send the second information to the UE. In such a case, the UE transitions to the RRC idle state when the trigger condition of the RRC connection resumption procedure is met, thereby avoiding the network side equipment sending a configuration to the UE that exceeds the UE's capability and causing a transmission abnormality between the UE and the network side equipment.
[0086] For a better understanding, the following describes the technical solutions provided in this application through some specific examples.
[0087] Example 1 When the UE initiates an RRC connection resumption, the UE ensures that the UE capabilities are consistent with the UE capabilities in the UE context stored in the network side equipment.
[0088] Example 2 When the UE initiates RRC connection resumption, if the UE capabilities do not match the UE capabilities in the UE context stored in the network side equipment, the UE will return to RRC idle state by itself.
[0089] Example 3 When the UE is in a connected state, it can add and report a set of minimum UE capabilities, and this minimum capability will be stored in the anchor base station after the UE is released to the RRC INACTIVE state. That is, when the UE initiates the RRC connection resumption procedure, the network side device configures the UE according to this minimum capability.
[0090] Specifically, the UE can move to another cell in the INACTIVE state and initiate RRC connection resumption. For example, in cell 1, after the base station corresponding to cell 1 (serving base station) receives the UE's connection resumption request, it first obtains the UE's context information from the anchor base station. Based on the UE's context information, the anchor base station can directly send the UE's minimum capability as UE capability information to the serving base station. Then, the serving base station sends an RRC connection resumption message to the UE based on the UE's context information to perform AS configuration.
[0091] Example 4 When the UE is in a connected state, it reports multiple sets of its capabilities to the network side device and numbers the multiple sets of UE capabilities. When the network side device releases the UE to RRC INACTIVE, it sets multiple UE identifiers (e.g., resume identities) in the RRC release message, where each UE identifier is associated with a set of UE capabilities. When the terminal initiates RRC connection resumption, it determines the UE identifier to use according to its current capabilities, and the network side determines which set of capabilities the UE uses based on the UE identifier used by the UE in the RRC connection resume request message. Specifically, when the anchor base station sends a UE context to the serving base station, it sends the UE capabilities corresponding to this UE ID to the serving base station.
[0092] Example 5 UE is A spare bit (1 bit) in the RRC connection resumption request message, Resume cause value in the RRC connection resume request message, RRC connection resumption completion message, UE information response message, a logical channel corresponding to the RRC connection resume request message; The first information is sent to the network side device to indicate that the UE capability has been restricted or changed by any of the random access resources used in the RRC connection resumption procedure.
[0093] Optionally, when the UE's capabilities are inconsistent with the UE capabilities in the context of the network side device in the RRC INACTIVE state, the UE sends the first information to the network side device, and when the inconsistency is due to the sharing of UE capabilities among multiple cards, the UE sends the first information to the network side.
[0094] Optionally, when the first information can be indicated by the resume cause value, the UE can further determine the carried resume cause value in accordance with the trigger cause of this RRC connection resumption. For example, if the RRC connection resumption is triggered by RAN paging, the corresponding resume cause is mt-access, which is invoked access. In this case, the probability of enabling access to the network is higher, so the UE should still use mt-access. If the RRC connection resumption is triggered by a data service of the terminal, the terminal can set the resume cause to the first information instead of mo-Data.
[0095] Optionally, if the first information is enabled to be indicated by the RRC connection resumption complete message or the UE information response message, since these two messages can carry more information, the UE can further report which of its capabilities is in a restricted state, and in this case, the first information includes the specific restricted capabilities.
[0096] It should be noted that before executing the fifth embodiment, the UE can first determine whether the cell it currently visits supports the operation of the fifth embodiment. The UE obtains the capability of the network side device through at least one of the following methods:
[0097] 1) System messages, 2) Dedicated signaling: when a UE is released into the RRC INACTIVE state by the network side, the network side device indicates one or more cells that support this operation in an RRC Release message.
[0098] In addition, embodiment 5 may further be combined with embodiment 3 and embodiment 4. Regarding embodiment 3 and embodiment 4, there are two cases when the anchor base station sends the UE context to the serving base station.
[0099] Case 1: When the serving base station is upgraded (for example, the serving base station supports the UE to perform operations corresponding to the above-mentioned Examples 3 to 5), it can receive multiple sets of capabilities of the UE (maximum and minimum capabilities in Method 3, multiple sets of capabilities in Method 4). At this time, the anchor base station sends the multiple sets of capabilities of the UE to the serving base station.
[0100] Case 2: If the serving base station is not upgraded, it cannot grasp the multiple sets of capabilities of the UE, and the anchor base station can only send one set of capabilities of the UE (minimum capabilities in Method 3, capabilities corresponding to the UE ID in Method 4) to the serving base station.
[0101] In the above case 1, when the UE initiates RRC connection resumption with the serving base station, it can inform the base station which set of capabilities the UE is currently using (e.g., use the lower set of capabilities) according to example 5.
[0102] In addition, the serving base station can indicate to the anchor base station whether it supports embodiment 3 or embodiment 4, and the anchor base station transmits the appropriate UE context according to the capabilities of the serving base station.
[0103] The technical solutions provided in the above embodiments of the present application can prevent the network side from configuring an AS that exceeds the UE's capabilities when the UE initiates RRC connection resumption, and can avoid the occurrence of some abnormal situations, thereby ensuring smooth transmission between the UE and the network side.
[0104] Please refer to Figure 3, which is a flowchart of another UE capability control method provided in an embodiment of the present application. As shown in Figure 3, the method includes: The method includes step 301 of releasing the UE to an RRC idle state when the network side equipment receives target information for indicating the UE capability of the UE, which is sent when the UE initiates an RRC connection resumption procedure, or when the network side equipment releases the UE when a first condition is met.
[0105] Here, the first condition is: The UE is a MUSIM communication device; and The UE supports capability modification; and The UE reports capability change preference information.
[0106] Specifically, when the UE initiates an RRC connection resumption procedure, it sends target information to the network side equipment, and the network side equipment can know the capabilities of the UE based on the target information, and can further send a configuration matching the UE capabilities to the UE based on the target information, so as to ensure smooth transmission between the network side equipment and the UE.
[0107] Alternatively, if a first condition is met, the network side device may release the UE into an RRC idle state when releasing the UE. For example, if the UE is a MUSIM communication device, or the UE supports capability change, or the UE has reported capability change preference information to the network side device, the network side device may release the UE into an RRC idle state when releasing the UE, thereby avoiding transmission abnormalities between the network side device and the UE caused by the network side device sending a setting to the UE that exceeds the UE's capability, and ensuring smooth transmission between the network side device and the UE.
[0108] Optionally, the target information comprises: a first UE identifier associated with a first target UE capability; First indication information for indicating that the UE capability of the UE has been restricted or changed; and UE capabilities of the UE.
[0109] Optionally, the method further comprises: The network side device may further include sending first configuration information to the UE; Here, the first setting information is used to set N first UE identifiers associated with N sets of target UE capabilities stored in the network side device, one set of the target UE capabilities corresponds to one of the first UE identifiers, and the N sets of target UE capabilities include the first target UE capabilities.
[0110] Optionally, the method further comprises: The method further includes receiving, by the network side device, an RRC connection resumption request initiated by the UE, the RRC connection resumption request including a target first UE identifier, the target first UE identifier being any one of the N first UE identifiers.
[0111] Optionally, when N sets of UE capabilities are stored in the network side device, the method comprises: The method further includes the step of the network side device receiving the N sets of UE capabilities reported when the UE is in an RRC connected state.
[0112] Optionally, the network side device: an empty bit in the RRC connection resume request message; the resume cause value in the RRC Connection Resume Request message, RRC connection resumption completion message, UE Information Response message, a logical channel corresponding to the RRC connection resume request message; The first indication information sent from the UE is received via any one of the random access resources used in the RRC connection resumption procedure.
[0113] It should be noted that for the relevant concepts and specific implementation procedures related to the above embodiment, you may refer to the description in the embodiment of the method described in Figure 2, and detailed descriptions will be omitted in this embodiment to avoid repetition.
[0114] Optionally, when the network side equipment is a serving base station of the UE, the method further comprises: The method further includes the step of the serving base station receiving a context of the UE, the context including the target UE capability corresponding to the target first UE identifier, sent from an anchor base station.
[0115] Specifically, when N sets of target UE capabilities and N associated first UE identifiers are stored in the network side equipment, when the anchor base station transmits the UE context to the serving base station, it can transmit the target UE capabilities corresponding to the target first UE identifier based on the UE context, for example, the UE capabilities currently used by the terminal, to the serving base station. Furthermore, the serving base station can know the UE capabilities currently used by the terminal, which helps the serving base station to better realize the UE configuration.
[0116] Optionally, the method further comprises: The method further includes the step of: the serving base station sending second indication information to the anchor base station for indicating whether the serving base station supports reception of at least two sets of UE capabilities from the UE.
[0117] Furthermore, the method comprises: The serving base station is transmitted from the anchor base station; At least two sets of UE capabilities, The method further includes receiving any one of a specific set of UE capabilities.
[0118] As can be understood, when the serving base station indicates in the second indication information that it supports the UE's reception of at least two sets of UE capabilities, the anchor base station can transmit at least two sets of UE capabilities to the serving base station, or can transmit a specific set of UE capabilities to the serving base station.
[0119] Optionally, the method further comprises: The method further includes the step of, when the serving base station does not support reception of at least two sets of UE capabilities from the UE, the serving base station receiving a specific set of UE capabilities transmitted from the anchor base station.
[0120] Optionally, the particular set of UE capabilities includes: a set of UE capabilities having the smallest capabilities among the N sets of UE capabilities; The target UE capabilities corresponding to the target first UE identifier.
[0121] According to the solution provided in the present application, a network side device receives target information sent by a UE when the UE initiates an RRC connection resumption procedure, to indicate the capabilities of the UE; and the network side device can send a configuration to the UE that matches the UE capabilities based on the target information, or release the UE into an RRC idle state when releasing the UE when a first condition is met, thereby avoiding transmission abnormalities between the network side device and the UE caused by the network side device sending a configuration to the UE that exceeds the UE capabilities, and ensuring smooth transmission between the network side device and the UE.
[0122] The UE capability control method provided in the embodiment of the present application may be performed by a UE capability control device. In the embodiment of the present application, the UE capability control device provided in the embodiment of the present application will be described by taking the UE capability control device performing the UE capability control method as an example.
[0123] Please refer to Fig. 4, which is a block diagram of the UE capability control device provided in the embodiment of the present application. As shown in Fig. 4, the UE capability control device 400 includes: a first execution module 401 used to perform a first operation when a trigger condition of a radio resource control (RRC) connection resumption procedure is met; Here, the first operation is: transitioning to an RRC idle state when the UE capability is lower than the target UE capability; initiating an RRC connection resumption procedure and ensuring that the UE capability of the UE is not lower than the target UE capability; and / or sending target information to indicate the UE capability of the UE during or after the RRC connection resumption process.
[0124] Optionally, the target UE capabilities include: UE capabilities stored in said UE while in an RRC inactive state; UE capabilities stored in the network side equipment, The UE capabilities last reported by the UE to the network side device; and the UE capabilities of the UE last confirmed by the network side equipment.
[0125] Optionally, the first execution module 401 further comprises: If the target UE capabilities include only one set of UE capabilities, ensuring that the UE capabilities of the UE are not lower than the target UE capabilities; or When the target UE capability includes N sets of UE capabilities, this is used to ensure that the UE capability of the UE is not lower than a specific set of UE capabilities therein, where N is a positive integer greater than 1.
[0126] Optionally, the particular set of UE capabilities includes: a set of UE capabilities having the smallest capabilities among the N sets of UE capabilities; It is one of a set of UE capabilities indicated by the network side device.
[0127] Optionally, if the target UE capabilities include only one set of UE capabilities, the device: The device further comprises a sending module, when in an RRC connected state, used for sending first information to the network side device for indicating the target UE capability when the UE is released to an RRC inactive state.
[0128] Optionally, the target information comprises: a first UE identifier associated with a first target UE capability; First indication information for indicating that the UE capability of the UE has been restricted or changed; and UE capabilities of the UE.
[0129] Optionally, the device comprises: The method further includes: receiving first configuration information when the UE is in an RRC connected state before transitioning to an RRC inactive state; Here, the first configuration information is used to configure N first UE identifiers associated with N sets of target UE capabilities, one set of the target UE capabilities corresponds to one of the first UE identifiers, the N sets of target UE capabilities include the first target UE capabilities, and N is a positive integer greater than 1.
[0130] Optionally, if the target UE capabilities include N sets of UE capabilities, the device: The UE further comprises a reporting module used for reporting the N sets of UE capabilities to the network side device when the UE is in an RRC connected state.
[0131] Optionally, the reporting module further comprises: reporting the N sets of UE capabilities to the network side device; reporting N-1 sets of UE capabilities when one set of UE capabilities has already been stored in the network side device; and reporting discrepancy information between the N-1 set of UE capabilities and the one set of UE capabilities based on the one set of UE capabilities.
[0132] Optionally, the device comprises: an empty bit in the RRC connection resume request message; the resume cause value in the RRC Connection Resume Request message, RRC connection resumption completion message, UE Information Response message, a logical channel corresponding to the RRC connection resume request message; The first indication information is sent to the network side device via any one of the random access resources used in the RRC connection resumption procedure.
[0133] Optionally, when the UE sends the first indication information through an RRC connection resumption request message, the device: The device further comprises a determination module used for determining the resumption cause value according to a trigger cause of RRC connection resumption and the first indication information when the UE initiates an RRC connection resumption request.
[0134] Optionally, when the device sends the first indication information to the network side equipment via the RRC connection resumption complete message or the UE information response message, the first indication information is further used to indicate the restricted UE capabilities of the UE.
[0135] Optionally, the first execution module 401 further comprises: When an RRC connection resumption procedure is initiated, if the UE capability does not match the target UE capability, the first indication information is sent to the network side device.
[0136] Optionally, the first execution module 401 further comprises: It is used to send the first indication information to a network side device when the UE capability of the UE is occupied by multiple Universal Subscriber Identity Module (USIM) cards.
[0137] Optionally, when the network side equipment supports N sets of UE capabilities of the terminal, the first indication information is further used to indicate the current UE capabilities of the UE, and the N sets of UE capabilities include the current UE capabilities of the UE.
[0138] Optionally, the first execution module 401 further comprises: The second information is used to perform the first operation when a trigger condition for the RRC connection resumption procedure is met based on the second information sent by the network side device.
[0139] Optionally, the device receives the second information by broadcast or dedicated signaling.
[0140] Optionally, the first execution module 401 further comprises: When the second information is received, it is used to ensure that the UE capability is not lower than the target UE capability when the trigger condition of the RRC connection resumption procedure is met, and / or to send the target information during or after the RRC connection resumption process.
[0141] Optionally, the device comprises: The UE further comprises an acquisition module used for acquiring an RRC release message sent by a network side equipment when the UE is released to an RRC inactive state by the network side equipment, the RRC release message including the second information for indicating at least one cell.
[0142] Optionally, the device obtains the second information based on a protocol-defined manner, wherein the second information corresponding to all cells within the UE's access network RAN-based notification area is consistent.
[0143] Optionally, the first execution module 401 further comprises: If the second information is not received, it is used to transition to the RRC idle state when the trigger condition for the RRC connection resumption procedure is met.
[0144] Optionally, when the UE is a UE corresponding to a first USIM card in a MUSIM communication device, the UE capabilities of the UE and the target UE capabilities correspond to the first USIM card.
[0145] In an embodiment of the present application, in a multi-card user equipment, when the UE initiates RRC connection resumption, the device can prevent the network side equipment from configuring an AS that exceeds the UE's capabilities, thereby avoiding transmission abnormalities between the UE and the network side equipment and ensuring smooth transmission between the UE and the network side equipment.
[0146] In the embodiment of the present application, the UE capability control device 400 may be an electronic device, such as an electronic device with an operating system, or a component of an electronic device, such as an integrated circuit or chip. The electronic device may be a terminal or other device other than a terminal. Exemplarily, the terminal may include, but is not limited to, the types of terminal 11 listed above. The other device may be a server, a network attached storage (NAS), etc., and is not specifically limited in the embodiment of the present application.
[0147] The UE capability control device 400 provided in the embodiment of the present application can implement each process implemented in the method embodiment of Figure 2 and achieve the same technical effect, so detailed description will be omitted here to avoid repetition.
[0148] Please refer to Fig. 5, which is a block diagram of another UE capability control device provided in an embodiment of the present application. As shown in Fig. 5, the UE capability control device 500 includes: Used to receive target information sent by a UE when the UE initiates an RRC connection resumption procedure to indicate the UE capabilities of the UE; or a second execution module 501, used for releasing the UE to an RRC idle state when a first condition is met, wherein the first condition is: The UE is a MUSIM communication device; and The UE supports capability modification; and The UE reports capability change preference information.
[0149] Optionally, the target information comprises: a first UE identifier associated with a first target UE capability; First indication information for indicating that the UE capability of the UE has been restricted or changed; and UE capabilities of the UE.
[0150] Optionally, the device comprises: The first setting information is transmitted to the UE via a first transmitting module, and the first setting information is transmitted to the UE via a first transmitting module. Here, the first setting information is used to set N first UE identifiers associated with N sets of target UE capabilities stored in the device, one set of the target UE capabilities corresponds to one of the first UE identifiers, and the N sets of target UE capabilities include the first target UE capabilities.
[0151] Optionally, the device comprises: The device further comprises a first receiving module adapted to receive an RRC connection resumption request initiated by the UE, the RRC connection resumption request including a target first UE identifier, the target first UE identifier being any one of the N first UE identifiers.
[0152] Optionally, when N sets of UE capabilities are stored in the device, the first receiving module further comprises: It is used to receive the N sets of UE capabilities reported when the UE is in an RRC connected state.
[0153] Optionally, the device comprises: an empty bit in the RRC connection resume request message; the resume cause value in the RRC Connection Resume Request message, RRC connection resumption completion message, UE Information Response message, a logical channel corresponding to the RRC connection resume request message; The first indication information sent from the UE is received via any one of the random access resources used in the RRC connection resumption procedure.
[0154] Optionally, the device is a serving base station for the UE, and the device: The mobile station further comprises a second receiving module adapted to receive a context of the UE, including the target UE capability corresponding to the target first UE identifier, sent from an anchor base station.
[0155] Optionally, the device comprises: The apparatus further comprises a second sending module used for sending second indication information to the anchor base station for indicating whether the apparatus supports reception of at least two sets of UE capabilities for the UE.
[0156] Optionally, the second receiving module further comprises: transmitted from the anchor base station, At least two sets of UE capabilities, It is used to receive any one of a specific set of UE capabilities.
[0157] Optionally, the second receiving module further comprises: The device is used to receive a specific set of UE capabilities transmitted from the anchor base station when the device does not support reception of at least two sets of UE capabilities from a UE.
[0158] Optionally, the particular set of UE capabilities includes: a set of UE capabilities having the smallest capabilities among the N sets of UE capabilities; The target UE capabilities corresponding to the target first UE identifier.
[0159] In an embodiment of the present application, the device receives target information for indicating the capabilities of the UE, which is sent by the UE when the UE initiates an RRC connection resumption procedure; and the device can further send a configuration to the UE that matches the UE capabilities based on the target information, or release the UE to an RRC idle state when releasing the UE when a first condition is met, thereby avoiding a transmission abnormality between the device and the UE caused by the device sending a configuration to the UE that exceeds the UE capabilities.
[0160] The UE capability control device 500 provided in the embodiment of the present application can implement each process implemented by the network side device in the method embodiment of Figure 3, and achieve the same technical effects, so detailed description will be omitted here to avoid repetition.
[0161] Optionally, as shown in Fig. 6, an embodiment of the present application further provides a communication device 600 including a processor 601 and a memory 602 storing a program or command executable by the processor 601. For example, if the communication device 600 is a terminal, when the program or command is executed by the processor 601, each step of the embodiment of the method described in Fig. 2 above can be realized, and the same technical effect can be achieved. If the communication device 600 is a network-side device, when the program or command is executed by the processor 601, each step of the embodiment of the method described in Fig. 3 above can be realized, and the same technical effect can be achieved. In order to avoid repetition, detailed description will be omitted here.
[0162] An embodiment of the present application further provides a terminal including a processor and a communication interface, wherein the processor is configured to perform a first operation when a trigger condition for an RRC connection resumption procedure is met, the first operation including: transitioning to an RRC idle state when the UE's UE capabilities are lower than the target UE capabilities; initiating an RRC connection resumption procedure to ensure that the UE's UE capabilities are not lower than the target UE capabilities; and / or sending target information to indicate the UE's UE capabilities during or after the RRC connection resumption process. This embodiment of the terminal corresponds to the above-mentioned embodiment of the terminal-side method, and the implementation processes and modes of the above-mentioned embodiment of the method can all be applied to this embodiment of the terminal, and the same technical effects can be achieved. Specifically, FIG. 7 is a schematic diagram of the hardware configuration of a terminal implementing the embodiment of the present application.
[0163] The terminal 700 includes at least some components such as, but not limited to, a radio frequency unit 701, a network module 702, an audio output unit 703, an input unit 704, a sensor 705, a display unit 706, a user input unit 707, an interface unit 708, a memory 709, and a processor 710.
[0164] As will be understood by those skilled in the art, the terminal 700 may further include a power source (e.g., a battery) for supplying power to each component, and the power source may be logically connected to the processor 710 via a power management system, which may further realize functions such as charge / discharge management and power consumption management. The configuration of the terminal shown in Figure 7 is not intended to limit the terminal, and the terminal may include more or fewer components than those shown, or a combination of some components, or a different component arrangement, and detailed description thereof will be omitted here.
[0165] It should be understood that in the embodiment of the present application, the input unit 704 may include a graphics processing unit (GPU) 7041 and a microphone 7042 for processing image data of still or video images captured by an image capture device (e.g., a camera) in a video capture mode or an image capture mode. The display unit 706 may include a display panel 7061, which may be configured in the form of a liquid crystal display, an organic light-emitting diode, or the like. The user input unit 707 includes at least one of a touch panel 7071 and other input devices 7072. The touch panel 7071 is also called a touch screen. The touch panel 7071 may include two parts: a touch detection device and a touch controller. The other input devices 7072 may include, but are not limited to, a physical keyboard, function buttons (e.g., volume control buttons, switch buttons, etc.), a trackball, a mouse, and a control lever. Detailed descriptions thereof are omitted here.
[0166] In the embodiment of the present application, the radio frequency unit 701 receives downlink data from the network side device and then transmits the data to the processor 710 for processing. The radio frequency unit 701 can also transmit uplink data to the network side device. Typically, the radio frequency unit 701 includes, but is not limited to, an antenna, an amplifier, a receiver / transmitter, a coupler, a low-noise amplifier, a duplexer, etc.
[0167] The memory 709 can be used to store software programs or commands and various data. The memory 709 may mainly include a first storage area for storing programs or commands, such as an operating system, an application or command required for at least one function (e.g., audio playback function, image playback function, etc.), and a second storage area for storing data. The memory 709 may include volatile memory or nonvolatile memory, or may include both volatile and nonvolatile memory. Here, the nonvolatile memory may be read-only memory (ROM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), electrically erasable programmable read-only memory (EEPROM), or flash memory. The volatile memory may be random access memory (RAM), static random access memory (SRAM), dynamic random access memory (DRAM), synchronous dynamic random access memory (SDRAM), double data rate synchronous dynamic random access memory (DDRSDRAM), enhanced synchronous dynamic random access memory (ESDRAM), synch link dynamic random access memory (SLDRAM), and direct Rambus random access memory (DRRAM). Memory 709 in embodiments of the present application includes, but is not limited to, these and any other suitable memory.
[0168] The processor 710 may include one or more processing units, and may optionally integrate an application processor that mainly processes operations related to an operating system, a user interface, and applications, and a modem processor that mainly processes wireless communication signals, such as a baseband processor, into the processor 710. It is understood that the modem processor need not be integrated into the processor 710.
[0169] Wherein, the processor 710 is adapted to perform a first operation when a trigger condition for an RRC connection resumption procedure is met, the first operation comprising: transitioning to an RRC idle state when the UE capability is lower than the target UE capability; initiating an RRC connection resumption procedure and ensuring that the UE capability of the UE is not lower than the target UE capability; and / or sending target information to indicate the UE capability of the UE during or after the RRC connection resumption process.
[0170] In the embodiment of the present application, as a multi-card terminal, when the terminal starts to resume an RRC connection, it can avoid the network side equipment from configuring an AS that exceeds the terminal's capabilities, thereby avoiding transmission abnormalities between the terminal and the network side equipment and ensuring smooth transmission between the terminal and the network side equipment.
[0171] The terminal 700 provided in the embodiment of the present application can implement all the processes of the embodiment of the method described in Figure 2 above, and can achieve the same technical effects, so detailed descriptions will be omitted here to avoid repetition.
[0172] An embodiment of the present application further provides a network side device as a target node, the network side device comprising a processor and a communication interface, the communication interface being used to receive target information for indicating the capability of the UE, sent when an RRC connection resumption procedure is initiated by the UE, or the processor being used to release the UE to an RRC idle state when a first condition is met, the first condition including at least one of the following: the UE is a MUSIM communication device, the UE supports capability change, and the UE has reported capability change preference information. This embodiment of the network side device corresponds to the embodiment of the method described in Figure 3 above, and all implementation processes and realization forms of the embodiment of the method can be applied to this embodiment of the network side device, and the same technical effects can be achieved.
[0173] Specifically, an embodiment of the present application further provides a network side device. As shown in Fig. 8, the network side device 800 includes an antenna 81, a radio frequency device 82, a baseband device 83, a processor 84, and a memory 85. The antenna 81 is connected to the radio frequency device 82. In the uplink direction, the radio frequency device 82 receives information through the antenna 81 and transmits the received information to the baseband device 83 for processing. In the downlink direction, the baseband device 83 processes the information to be transmitted and transmits it to the radio frequency device 82, which processes the received information before transmitting it via the antenna 81.
[0174] In the above embodiment, the method performed by the network side device can be realized by the baseband device 83, which includes a baseband processor.
[0175] The baseband device 83 may, for example, include at least one baseband board on which multiple chips are installed, and as shown in FIG. 8, one of the chips is, for example, a baseband processor connected to a memory 85 via a bus interface and calling a program in the memory 85 to perform the operations of the network equipment shown in the above method embodiments.
[0176] The network side equipment may further include a network interface 86, which may be, for example, a common public radio interface (CPRI).
[0177] Specifically, the network side device 800 of the embodiment of the present invention further includes a command or program stored in the memory 85 and executable by the processor 84, and the processor 84 invokes the command or program in the memory 85 to execute the method executed by each module shown in Fig. 5, thereby achieving the same technical effect. In order to avoid repetition, detailed description will be omitted here.
[0178] An embodiment of the present application further provides a readable storage medium, which stores a program or command, and when the program or command is executed by a processor, the processes of the method embodiment shown in Figure 2 above are realized, or the processes of the method embodiment shown in Figure 3 above are realized, and the same technical effects can be achieved. In order to avoid repetition, detailed descriptions are omitted here.
[0179] The processor may be the processor in the terminal described in the above embodiment. The readable storage medium may be non-volatile or non-transitory. The readable storage medium may include a computer readable storage medium such as a computer read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk.
[0180] An embodiment of the present application further provides a chip, the chip comprising a processor and a communication interface, the communication interface and the processor are coupled together, and the processor executes a program or command to implement each process of the method embodiment shown in FIG. 2 above, or to implement each process of the method embodiment shown in FIG. 3 above, and the same technical effect can be achieved. In order to avoid repetition, detailed description will be omitted here.
[0181] It should be understood that the chips referred to in the embodiments of this application may also be referred to as system level chips, system chips, chip systems, or system-on-chips, etc.
[0182] The embodiments of the present application further provide a computer program / program product, which is stored in a storage medium and can be executed by at least one processor to implement the processes of the method embodiments shown in Figure 2 above or the processes of the method embodiments shown in Figure 3 above, and achieve the same technical effects. In order to avoid repetition, detailed descriptions are omitted here.
[0183] An embodiment of the present application further provides a communication system including a terminal that can be used to perform the steps of the method described in FIG. 2 and a network side device that can be used to perform the steps of the method described in FIG. 3.
[0184] It should be noted that, as used herein, terms such as "comprises," "consists of," or any other variation thereof are intended to include a non-exclusive inclusion, such that a process, method, article, or apparatus comprising a series of elements includes not only those elements but also other elements not expressly specified or elements inherent in such process, method, article, or apparatus. Unless otherwise specified, an element defined by the phrase "comprises a..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes the element. It should also be noted that the scope of the methods and apparatuses in the embodiments of this application is not limited to performing functions in the order shown or discussed, but may include performing functions substantially simultaneously or in the reverse order, depending on such functionality. For example, the described method may be performed in a different order than described, and various steps may be added, omitted, or combined. Furthermore, features described with reference to one example may be combined in other examples.
[0185] From the above description of the embodiments, those skilled in the art can clearly understand that the methods of the above embodiments can be realized in the form of a combination of software and a necessary common hardware platform, and of course, they can also be realized by hardware, but in many cases the former is a more preferred embodiment. Based on this view, the technical means of the present application, or the part that contributes to the prior art, can be embodied in the form of a computer software product, which is stored in a storage medium (e.g., ROM / RAM, magnetic disk, optical disk) and includes a plurality of commands for causing a terminal (which may be a mobile phone, computer, server, air conditioner, network device, etc.) to execute the methods described in each embodiment of the present application.
[0186] Although the examples of the present application have been described above with reference to the drawings, the present application is not limited to the above-mentioned specific embodiments, which are merely illustrative and not limiting. Based on the suggestions of the present application, many forms that a person skilled in the art can make without departing from the spirit of the present application and the scope of protection of the claims are all within the scope of protection of the present application.
Claims
1. When a trigger condition for a radio resource control (RRC) connection resumption procedure is met, the UE performs a first operation; The first operation includes: transitioning to an RRC idle state if the UE capability is lower than the target UE capability; initiating an RRC connection resumption procedure, ensuring that the UE capability of the UE is not lower than the target UE capability, and / or sending target information during or after the RRC connection resumption process; The UE capability control method, wherein the target information includes first indication information for indicating that the UE capability of the UE has been restricted or changed.
2. The target UE capabilities are: UE capabilities stored in the UE while in an RRC inactive state; UE capabilities stored in the network side equipment; the UE capabilities last reported by the UE to the network side device; 2. The UE capability control method according to claim 1, wherein the UE capability includes at least one of: a UE capability of the UE last confirmed by a network side device.
3. Ensuring that the UE capability of the UE is not lower than the target UE capability includes: If the target UE capabilities include only one set of UE capabilities, the UE ensures that the UE capabilities of the UE are not lower than the target UE capabilities; or 2. The UE capability control method of claim 1, wherein when the target UE capability includes N sets of UE capabilities, the UE guarantees that the UE capability of the UE is not lower than a specific set of UE capabilities therein, and N is a positive integer greater than 1.
4. The particular set of UE capabilities may include: a set of UE capabilities with the smallest capabilities among the N sets of UE capabilities; 4. The UE capability control method according to claim 3, wherein the UE capability is any one of a set of UE capabilities indicated by a network side device.
5. If the target UE capabilities include only one set of UE capabilities, 4. The UE capability control method according to claim 3, further comprising: when the UE is in an RRC connected state, sending first information to a network side device for indicating the target UE capability when the UE is released to an RRC inactive state.
6. The target information further includes: a first UE identifier associated with the first target UE capability; 4. The UE capability control method according to claim 1, wherein the UE capability includes at least one of:
7. The UE A free bit in the RRC connection resume request message; the resume cause value in the RRC Connection Resume Request message; RRC connection resumption completion message, UE Information Response message, a logical channel corresponding to an RRC connection resume request message; The UE capability control method according to claim 1 , further comprising: transmitting the first indication information to the network side device via any one of a random access resource used in an RRC connection resumption procedure, a random access resource used in an RRC connection resumption procedure, and a random access resource used in an RRC connection resumption procedure.
8. 8. The UE capability control method according to claim 7, wherein when the UE sends the first indication information to a network side device via the RRC connection resumption complete message or the UE information response message, the first indication information is further used to indicate limited UE capabilities of the UE.
9. The step of the UE performing a first action when a trigger condition for an RRC connection resumption procedure is met includes:
2. The UE capability control method according to claim 1, further comprising: transmitting the first indication information to a network side device when the UE initiates an RRC connection resumption procedure and the UE capability does not match the target UE capability.
10. The UE sending the first instruction information to the network side device includes:
10. The UE capability control method according to claim 9, further comprising: when the UE capability of the UE is occupied by multiple Universal Subscriber Identity Module (USIM) cards, the UE sending the first indication information to a network side device.
11. 2. The UE capability control method according to claim 1, further comprising: when a trigger condition for an RRC connection resumption procedure is met based on second information sent by a network side device, the UE performs the first operation.
12. The UE capability control method according to claim 11, wherein the UE receives the second information by broadcast or dedicated signaling.
13. The method of claim 11, wherein the second information is used by the UE to perform a first action when a trigger condition for a radio resource control (RRC) connection resumption procedure is met.
14. 2. The UE capability control method according to claim 1, wherein when the UE is a UE corresponding to a first USIM card in a multi-universal subscriber identity module (MUSIM) communication device, the UE capability of the UE and the target UE capability correspond to the first USIM card.
15. The network side device receives target information sent when the UE initiates an RRC connection resumption procedure; or Releasing the UE to an RRC idle state when a network side device releases the UE if a first condition is met, wherein the first condition is: The UE is a MUSIM communication device; The UE supports capability modification; and the UE has reported capability change preference information; The UE capability control method, wherein the target information includes first indication information for indicating that the UE capability of the UE has been restricted or changed.
16. The target information further includes: a first UE identifier associated with the first target UE capability; 16. The UE capability control method of claim 15, wherein the UE capability includes at least one of:
17. The network side device A free bit in the RRC connection resume request message; the resume cause value in the RRC Connection Resume Request message; RRC connection resumption completion message, UE Information Response message, a logical channel corresponding to an RRC connection resume request message; The UE capability control method according to claim 15, wherein the first indication information transmitted from the UE is received via any one of a random access resource used in an RRC connection resumption procedure, a random access resource used in an RRC connection resumption procedure, and a random access resource used in an RRC connection resumption procedure.
18. The method of claim 17, further comprising: transmitting second information to the UE; The method of claim 15, wherein the second information is used by the UE to perform a first action when a trigger condition for a radio resource control (RRC) connection resumption procedure is met.
19. A UE capability control device applied to a UE, comprising: a first execution module adapted to perform a first operation when a trigger condition for a radio resource control (RRC) connection resumption procedure is met; The first operation includes: transitioning to an RRC idle state if the UE capability is lower than the target UE capability; initiating an RRC connection resumption procedure, ensuring that the UE capability of the UE is not lower than the target UE capability, and / or sending target information during or after the RRC connection resumption process; The UE capability control device, wherein the target information includes first indication information for indicating that the UE capability of the UE has been restricted or changed.
20. Used to receive target information sent by the UE when it initiates an RRC connection resumption procedure, or a second execution module used to release the UE to an RRC idle state when a first condition is met, the first condition being: The UE is a MUSIM communication device; The UE supports capability modification; and the UE has reported capability change preference information; The UE capability control device, wherein the target information includes first indication information for indicating that the UE capability of the UE has been restricted or changed.
21. A terminal comprising a processor and a memory in which a program or command executable by the processor is stored, wherein when the program or command is executed by the processor, the steps of the UE capability control method according to any one of claims 1 to 14 are realized.
22. A network side device comprising a processor and a memory in which a program or command executable by the processor is stored, wherein when the program or command is executed by the processor, the steps of the UE capability control method described in any one of claims 15 to 18 are realized.
Citation Information
Patent Citations
User equipment and method for multi-SIM operation
WO2021147958A1