Method and apparatus for signaling a radio link failure
The apparatus and method address radio link failures in dual connectivity by notifying the primary cell group of candidate cells with valid change configurations, enhancing system stability and efficiency in managing secondary cell group failures.
Patent Information
- Application Number
- JP2024096568
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2020-02-13
- Filing Date
- 2024-06-14
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2041-02-04
AI Technical Summary
Existing communication systems fail to effectively handle radio link failures in dual connectivity scenarios, particularly when master cell group fast recovery is configured, as they lack sufficient information about prepared candidate cells and execution conditions during secondary cell group failures.
An apparatus and method are provided to detect radio link failures in secondary cell groups and notify the primary cell group of candidate cells with valid change configurations, including measurement values and execution conditions, allowing for informed cell changes based on prepared cells or alternative cells.
Enhances the ability to manage radio link failures by enabling timely and efficient cell changes in dual connectivity scenarios, improving system stability and reducing downtime.
Smart Images

Figure 0007801396000002 
Figure 0007801396000003 
Figure 0007801396000004
Abstract
Description
[Technical Field]
[0001] The present disclosure relates to an apparatus, a method and a computer program, and particularly, but not exclusively, to an apparatus, a method and a computer program for signaling a radio link failure, especially when master cell group fast recovery is configured. [Background technology]
[0002] A communication system may be considered as a facility that enables a communication session between two or more entities, such as communication devices, base stations / access points, and / or other nodes, by providing a carrier between the various entities involved in the communication path. A communication system may be provided, for example, by a communication network and one or more compatible communication devices.
[0003] Access to the communication system may be via a suitable communication device or terminal. The communication device is provided with suitable signal transmission and reception equipment to enable communication, e.g., to enable access to the communication network or direct communication with other communication devices. The communication device may access a carrier provided by a station or access point and transmit and / or receive communications on the carrier.
[0004] Communication systems and associated devices typically operate according to a given standard or specification that defines what various entities associated with the system are permitted to do and how that should be accomplished. The communication protocols and / or parameters used for connectivity are also typically defined. One example of a communication system is UTRAN (3G wireless). Another example of an architecture known as Long Term Evolution (LTE) or Universal Mobile Telecommunications System (UMTS) radio access technology. Another exemplary communication system is the so-called 5G wireless or New Radio (NR) access technology. Summary of the Invention
[0005] According to one aspect, there is provided an apparatus comprising at least one processor and at least one memory containing computer program code, wherein the at least one memory and the computer program code, together with the at least one processor, cause the apparatus to operate in a dual connectivity mode, wherein the apparatus communicates with a master cell group comprising a primary cell and at least one secondary cell, and the apparatus communicates with a secondary cell group comprising the primary cell and at least one secondary cell; detect a radio link failure between the apparatus and the primary cell of the secondary cell group; and provide information to the primary cell of the master cell group based on the radio link failure, the information being information that the radio link failure occurred on the secondary cell group while waiting for a ready condition cell change from the primary cell of the secondary cell group to be fulfilled.
[0006] The at least one memory and the computer program code, together with the at least one processor, cause the device to perform at least a step of transmitting the information configured by the primary cell of the secondary cell group via its own wireless link or a wireless link of the primary cell of the master cell group.
[0007] The information may be further configured to notify the primary cell of the master cell group of an identification value associated with at least one candidate cell from the secondary cell group for which the device has a valid condition change configuration.
[0008] The information is further configured to notify the primary cell of the master cell group of an identification value associated with at least one candidate cell from the secondary cell group for which the device has a valid condition change configuration, the information indicating the at least one candidate cell in a measured cell list. (indicate) It may be a bitmap configured as follows:
[0009] The information may be further configured to notify the primary cell of the master cell group of a condition change execution condition associated with at least one candidate cell from the secondary cell group and signal measurement values of the primary cell of the secondary cell group and the at least one candidate cell from the secondary cell group.
[0010] The information may be further configured to inform the primary cell of the master cell group of the signal measurement value of the primary cell of the secondary cell group, and the at least one candidate cell from the secondary cell group may be a difference between the primary cell and the at least one candidate cell of the secondary cell group, and an execution condition for each condition change for the condition cell change associated with the cell.
[0011] The at least one memory and the computer program code, together with the at least one processor, may be configured to cause the device to perform the steps of receiving a radio resource control message from the primary cell of the master cell group, the radio resource control message comprising a cell identification of a prepared cell from the secondary cell group to change to, and performing a cell change from the primary cell of the secondary cell group to the prepared cell of the secondary cell group based on the cell identification.
[0012] The at least one memory and the computer program code, together with the at least one processor, may be configured to cause the device to: receive a radio resource control reconfiguration message from the primary cell of the master group, the radio resource control reconfiguration message comprising a cell identification of a cell other than a prepared cell from the secondary cell group to change to; and perform a cell change from the primary cell of the secondary cell group to an unprepared cell of the secondary cell group based on the cell identification.
[0013] The device may be a user equipment.
[0014] According to a second aspect, there is provided an apparatus comprising at least one processor and at least one memory containing computer program code, wherein the at least one memory and the computer program code, together with the processor, cause the apparatus to perform at least the following steps: communicate with at least one further device, wherein the further device operates in a dual connectivity mode communicating with a master cell group comprising the device and at least one secondary cell as a primary cell and communicating with a secondary cell group comprising the primary cell and at least one secondary cell; and receive information from the further device based on a radio link failure between the at least one further device and the primary cell of the secondary cell group, the information being information that the radio link failure occurred on the secondary cell group while waiting for a ready condition cell change from the primary cell of the secondary cell group to be fulfilled.
[0015] The information may be further configured to inform the at least one further device of an identity associated with at least one candidate cell from the secondary cell group for which the at least one further device has a valid condition modification configuration.
[0016] The information configured to notify the device of the identification value associated with the at least one candidate cell from the secondary cell group for which the at least one further device has a valid condition change configuration may be a bitmap configured to indicate the at least one candidate cell in a measurement cell list.
[0017] The information may be further configured to notify the device of a condition change execution condition associated with at least one candidate cell from the secondary cell group and signal measurement values of the primary cell of the secondary cell group and the at least one candidate cell from the secondary cell group.
[0018] The information may be further configured to inform the device of the signal measurement values of the primary cell of the secondary cell group, the at least one candidate cell from the secondary cell group, a difference between the primary cell and the at least one candidate cell of the secondary cell group, and execution conditions for each condition change for the condition cell change associated with the cell.
[0019] The at least one memory and the computer program code, together with the at least one processor, cause the device to perform at least the following steps: generate, based on the information, a radio resource control message comprising a cell identification of a prepared cell to change to from the secondary cell group; and provide the radio resource control message to the at least one further device, wherein the at least one further device performs a cell change from the primary cell of the secondary cell group to the prepared cell from the secondary cell group based on the cell identification.
[0020] The at least one memory and the computer program code, together with the at least one processor, cause the device to: generate, based on the information, a radio resource control reconfiguration message comprising a cell identity of a cell other than a prepared cell to change from the secondary cell group; and provide the radio resource control message to the at least one further device, wherein the at least one further device performs a cell change from the primary cell of the secondary cell group to an unprepared cell from the secondary cell group based on the cell identity.
[0021] The device may be a master node.
[0022] According to a third aspect, there is provided an apparatus comprising at least one processor and at least one memory containing computer program code, wherein the at least one memory and the computer program code, together with the at least one processor, cause the apparatus to: communicate with at least one further device, wherein the further device operates in a dual connectivity mode communicating with a master cell group comprising a primary cell and at least one secondary cell and communicating with a secondary cell group comprising the device as a primary cell and a secondary cell; and receive information from the at least one further device for a cell change from the primary cell in the secondary cell group.
[0023] The at least one memory and the computer program code, together with the processor, cause the device to perform at least the step of receiving a message from the primary cell of the master cell group, the message comprising information based on a radio link failure between the primary cell of the secondary cell group and the at least one further device while waiting for a ready condition cell change from the primary cell of the secondary cell group to be met.
[0024] According to a fourth aspect, there is provided a method for an apparatus, comprising the steps of operating the apparatus in a dual connectivity mode, wherein the apparatus communicates with a master cell group comprising a primary cell and at least one cell, and the apparatus communicates with a secondary cell group comprising a primary cell and at least one secondary cell; and providing information based on a radio link failure between the apparatus and the primary cell of the secondary cell group, wherein the information is information that the radio link failure occurs on the secondary cell group while waiting for a ready condition cell change from the primary cell of the secondary cell group to be satisfied.
[0025] The method may further comprise sending information configured by the primary cell of the secondary cell group via its own radio link or via a radio link of the primary cell of the master cell group.
[0026] The information may be further configured to notify the primary cell of the master cell group of an identification value associated with at least one candidate cell from the secondary cell group for which the device has a valid condition change configuration.
[0027] The information configured to notify the primary cell of the master cell group of an identification value associated with at least one candidate cell from the secondary cell group for which the device has a valid condition change configuration may be a bitmap configured to indicate the at least one candidate cell in a measured cell list.
[0028] The information may be further configured to notify the primary cell of the master cell group of a condition change execution condition associated with at least one candidate cell from the secondary cell group and signal measurement values of the primary cell of the secondary cell group and the at least one candidate cell from the secondary cell group.
[0029] The information may be further configured to notify the primary cell of the master cell group of the signal measurement value of the primary cell of the secondary cell group, and the at least one candidate cell from the secondary cell group may be a difference between the primary cell and the at least one candidate cell of the secondary cell group and respective condition change execution conditions for a condition cell change associated with the cell.
[0030] The method may comprise receiving a radio resource control message comprising a cell identity of a prepared cell from the secondary cell group to be changed, and performing a cell change from the primary cell of the secondary cell group to the prepared cell from the secondary cell group based on the cell identity.
[0031] The method may comprise receiving a radio resource control reconfiguration message from the primary cell of the master group comprising a cell identity of a cell other than a prepared cell from the secondary cell group to change to, and performing a change from the primary cell of the secondary cell group to a non-prepared cell from the secondary cell group based on the cell identity.
[0032] The device may be a user equipment.
[0033] According to a fifth aspect, there is provided a method for an apparatus, wherein the at least one memory and the computer program code, together with the processor, comprise: a step of communicating with at least one further apparatus, wherein the further apparatus operates in a dual connectivity mode communicating with a master cell group comprising the apparatus and at least one secondary cell as a primary cell and communicating with a secondary cell group comprising the primary cell and at least one secondary cell; and a step of receiving information from the further apparatus based on a radio link failure between the at least one further apparatus and the primary cell of the secondary cell group, the information being information that the radio link failure occurred on the secondary cell group while waiting for a ready condition cell change from the primary cell of the secondary cell group to be fulfilled.
[0034] The information may further be configured to inform the at least one further device of an identification value associated with at least one candidate cell from the secondary cell group for which the at least one further device has a valid condition change configuration.
[0035] The information by which the at least one further device is configured to notify the device of the identification value associated with at least one candidate cell from the secondary cell group having a valid condition change configuration may be a bitmap configured to indicate the at least one candidate cell in a measured cell list.
[0036] The information may be further configured to notify the device of a condition change execution condition associated with at least one candidate cell from the secondary cell group and signal measurement values of the primary cell of the secondary cell group and the at least one candidate cell from the secondary cell group.
[0037] The information may be further configured to notify the device of the signal measurement values of the primary cell of the cell group, and the at least one candidate cell from the secondary cell group, a difference between the primary cell and the at least one candidate cell of the secondary cell group and respective condition change execution conditions for a condition cell change associated with the cell.
[0038] The method comprises the steps of generating, based on the information, a radio resource control message comprising a cell identity of a prepared cell to change from the secondary cell group, and providing the radio resource control message to the at least one further device, wherein the at least one further device performs a cell change from the secondary cell group to the prepared cell based on the cell identity.
[0039] The method may comprise generating, based on the information, a radio resource control reconfiguration message comprising a cell identity of a cell other than a prepared cell to change from the secondary cell group; and providing the radio resource control message to the at least one further device, wherein the at least one further device performs a cell change from the primary cell of the secondary cell group to an unprepared cell from the secondary cell group based on the cell identity.
[0040] The device may be a master node.
[0041] According to a sixth aspect, there is provided a method for an apparatus, the method comprising: communicating with at least one further apparatus, the further apparatus operating in a dual connectivity mode communicating with a master cell group comprising a primary cell and at least one secondary cell, and communicating with a secondary cell group comprising the apparatus as a primary cell and a secondary cell; and receiving information regarding a cell change from the primary cell of the secondary cell group from the at least one further apparatus.
[0042] The method may comprise a step of receiving a message from the primary cell of the master cell group, the message comprising information based on a radio link failure between the primary cell of the secondary cell group and the at least one further device while waiting for a ready condition cell change from the primary cell of the secondary cell group to be met.
[0043] According to a seventh aspect, there is provided an apparatus, comprising means for operating the apparatus in a dual connectivity mode, wherein the apparatus communicates with a master cell group having a primary cell and at least one secondary cell, and the apparatus communicates with a secondary cell group having the primary cell and at least one secondary cell; detecting a radio link failure between the apparatus and the primary cell of the secondary cell group; and providing information based on the radio link failure to the primary cell of the master cell group, the information being information that the radio link failure occurred in the secondary cell group while waiting for a ready condition cell change to be satisfied from the primary cell of the secondary cell group.
[0044] The means may be adapted to transmit information configured by the primary cell of the secondary cell group via its own radio link or via a radio link of the primary cell of the master cell group.
[0045] The information may be further configured to inform the primary cell of the master cell group of an identification value for at least one candidate cell from the secondary cell group for which the device has a valid condition change configuration.
[0046] The information configured to notify the primary cell of the master cell group of an identification value for at least one candidate cell from the secondary cell group for which the device has a valid condition change configuration may be a bitmap configured to indicate the at least one candidate cell in a measured cell list.
[0047] The information may be further configured to notify the primary cell of the master cell group of a condition change execution condition related to at least one candidate cell from the secondary cell group and signal measurement values of the primary cell of the secondary cell group and the at least one candidate cell from the secondary cell group.
[0048] The information may be further configured to notify the primary cell of the master cell group of the signal measurement value of the primary cell of the secondary cell group, and the at least one candidate cell from the secondary cell group may be a difference between the primary cell and the at least one candidate cell of the secondary cell group and respective condition change execution conditions for a condition cell change associated with the cell.
[0049] The means comprises the steps of receiving a radio resource message from the primary cell of the master group comprising a prepared cell from the secondary cell group to change to, and performing a cell change from the primary cell of the secondary cell group to the prepared cell of the secondary cell group based on the cell identification.
[0050] The means comprises the steps of receiving a radio resource control reconfiguration message comprising a cell identification of a cell other than a prepared cell from the secondary cell group to change from the primary cell of the master group, and performing a cell change from the primary cell of the secondary cell group to a non-prepared cell from the secondary cell group based on the cell identification.
[0051] The device may be a user equipment.
[0052] According to an eighth aspect, the method comprises the steps of: communicating with at least one further device, wherein the further device operates in a dual connectivity mode communicating with a master cell group comprising the device and at least one secondary cell as a primary cell and communicating with a secondary cell group comprising the primary cell and at least one secondary cell; and receiving information from the at least one further device based on a radio link failure between the at least one further device and the primary cell of the secondary cell group, the information being information that the radio link failure occurred on the secondary cell group while waiting for a ready condition cell change from the primary cell of the secondary cell group to be met.
[0053] The information may further be configured to inform the at least one further device of an identification value associated with at least one candidate cell from the secondary cell group for which the at least one further device has a valid condition change configuration.
[0054] The information, which the at least one further device may be further configured to notify the device of the identification value associated with at least one candidate cell from the secondary cell group having a valid condition change configuration, may be a bitmap configured to indicate the at least one candidate cell in a measured cell list.
[0055] The information may be further configured to notify the device of a condition change execution condition related to at least one candidate cell from the secondary cell group and signal measurement values of the primary cell of the secondary cell group and the at least one candidate cell from the secondary cell group.
[0056] The information may be further configured to notify the device of the signal measurement values of the primary cell of the secondary cell group, and the at least one candidate cell from the secondary cell group, a difference between the primary cell and the at least one candidate cell of the secondary cell group and respective condition change execution conditions for the condition cell change associated with the cell.
[0057] The means comprises the steps of generating, based on the information, a radio resource control message comprising a cell identification of a prepared cell from the secondary cell group to change to, and providing the radio resource control message to the at least one further device, wherein the at least one further device performs a cell change from the primary cell of the secondary cell group to a non-prepared cell from the secondary cell group based on the cell identification.
[0058] The means comprises the steps of generating, based on the information, a radio resource control reconfiguration message comprising a cell identification of a cell other than a prepared cell from the secondary cell group to change to, and providing the radio resource control message to the at least one further device, wherein the at least one further device performs a cell change from the primary cell of the secondary cell group to an unprepared cell of the secondary cell group based on the cell identification.
[0059] The device may be a master node.
[0060] According to a ninth aspect, there is provided an apparatus comprising means for communicating with at least one further device, wherein the further device operates in a dual connectivity mode communicating with a master cell group comprising a primary cell and at least one secondary cell and communicating with a secondary cell group comprising the device as a primary cell and a secondary cell, and receiving information from the at least one further device regarding a cell change from the primary cell in the secondary cell group.
[0061] The means includes a step of receiving a message from the primary cell of the master cell group, the message comprising information based on a radio link failure between the primary cell of the secondary cell group and the at least one further device while waiting for a ready condition cell change from the primary cell of the secondary cell group to be met.
[0062] According to a tenth aspect, there is provided a non-transitory computer-readable storage medium comprising computer-readable instructions that, when executed by at least one processor, cause the device to operate in a dual connectivity mode, wherein the device communicates with a master cell group comprising a primary cell and at least one secondary cell, and the device communicates with a secondary cell group comprising the primary cell and at least one secondary cell; detect a radio link failure between the device and the primary cell of the secondary cell group; and provide information based on the primary cell of the master cell group, the information being information that the radio link failure occurs on the secondary cell group while waiting for a ready condition cell change to be satisfied from the primary cell of the secondary cell group.
[0063] According to an eleventh aspect, there is provided a non-transitory computer storage medium comprising computer-readable instructions that, when executed by at least one processor, cause an apparatus to: communicate with at least one further apparatus, wherein the further apparatus operates in a dual connectivity mode communicating with a master cell group comprising the apparatus and at least one secondary cell as a primary cell, and communicating with a secondary cell group comprising the primary cell and at least one secondary cell; and receive information from the at least one further apparatus based on a radio link failure between the at least one further apparatus and the primary cell of the secondary cell group, wherein the information is information that the radio link failure occurs on the secondary cell group while waiting for a prepared cell change from the primary cell of the secondary cell group to be fulfilled.
[0064] According to a twelfth aspect, there is provided a non-transitory computer-readable storage medium comprising computer-readable instructions that, when executed by at least one processor, cause the device to communicate with at least one further device, wherein the further device operates in a dual connectivity mode communicating with a master cell group comprising a primary cell and at least one secondary cell, and with a secondary cell group comprising the device as a primary cell and a secondary cell, and receiving from the at least one device information regarding a cell change from the primary cell of the secondary cell group.
[0065] According to a thirteenth aspect, there is provided a computer program comprising instructions causing the device to perform at least the following steps: operating the device in a dual connectivity mode, wherein the device communicates with a master cell group having a primary cell and at least one secondary cell, and the device communicates with a secondary cell group having the primary cell and at least one secondary cell group; detecting a radio link failure between the device and the primary cell of the secondary cell group; and providing information based on the radio link failure to the primary cell of the master cell group, wherein the information is information that the radio link failure occurs on the secondary cell group while waiting for a ready condition cell change to be satisfied from the primary cell of the secondary cell group.
[0066] According to a fourteenth aspect, there is provided a computer program comprising instructions causing an apparatus to perform at least the following steps: communicating with at least one further apparatus, wherein the further apparatus operates in a dual connectivity mode communicating with a master cell group comprising the apparatus and at least one secondary cell as a primary cell and communicating with a secondary cell group comprising the primary cell and at least one secondary cell; and receiving information from the at least one further apparatus based on a radio link failure between the at least one further apparatus and the primary cell of the secondary cell group, the information being information that the radio link failure occurred on the secondary cell group while waiting for a ready condition cell change to be satisfied from the primary cell of the secondary cell group.
[0067] According to a fifteenth aspect, there is provided a computer program comprising instructions for communicating with at least one further device, the further device operating in a dual connectivity mode to communicate with a master cell group comprising a primary cell and at least one secondary cell and to communicate with a secondary cell group comprising the device as a primary cell and a secondary cell, and receiving from the at least one further device information regarding a cell change from the primary cell of the secondary cell group. A number of different aspects have been described above. It should be understood that further aspects may be provided by a combination of any two or more of the above-described aspects.
[0068] Various other aspects are also set forth in the following detailed description and appended claims.
[0069] Some exemplary embodiments will now be described in more detail, by way of example only, with reference to the following examples and the accompanying drawings. [Brief explanation of the drawings]
[0070] [Figure 1] Figure 1 shows a schematic diagram of a 5G system (5GS). [Figure 2] FIG. 2 shows a schematic diagram of the control device. [Figure 3] FIG. 3 shows a schematic diagram of the terminal. [Figure 4] FIG. 4 shows a signaling diagram of a process for performing a conditional handover. [Figure 5] FIG. 5 shows a signaling diagram of a process for performing a conditional PS cell change triggered by an SN. [Figure 6] FIG. 6 illustrates a signaling diagram of a process for secondary cell group failure messaging, according to some embodiments. [Figure 7] FIG. 7 shows a schematic diagram of a non-volatile memory medium storing instructions that, when executed by a processor, enable the processor to perform one or more of the steps of the processes or methods of any of FIGS. 4-6. DETAILED DESCRIPTION OF THE INVENTION
[0071] In the following, several embodiments will be described with reference to mobile communication devices capable of communicating via a wireless cellular system, and a mobile communication system serving such mobile communication devices. Before describing the exemplary embodiments in detail, some general principles of wireless communication systems, their access systems, and mobile communication devices will be briefly described with reference to Figures 1, 2, and 3 to aid in understanding the technology underlying the described examples.
[0072] Figure 1 shows a schematic diagram of a 5G system (5GS). The 5GS may be composed of a terminal or user equipment (UE), a 5G radio access network (5GRAN) or next-generation radio access network (NG-RAN), a 5G core network (5GC), one or more application functions (AFs), and one or more data networks (DNs).
[0073] A 5G-RAN may comprise one or more gNodeBs (GNBs) or one or more gNodeB (GNB) distributed unit functions connected to one or more gNodeB (GNB) centralized unit functions.
[0074] 5GC may include the following entities: Network Slice Selection Function (NSSF), Network Exposure Function, Network Repository Function (NRF), Policy Control Function (PCF), Unified Data Management (UDM), Application Function (AF), Authentication Server Function (AUSF), Access and Mobility Management Function (AMF), and Session Management Function (SMF).
[0075] FIG. 2 illustrates an example of a control device 200 that controls the functions of the 5GRAN or 5GC illustrated in FIG. 1 . The control device may include at least one random access memory (RAM) 211a, at least one read-only memory (ROM) 211b, at least one processor 212, 213, and an input / output interface 214. The at least one processor 212, 213 may be coupled to the RAM 211a and the ROM 211b. The at least one processor 212, 213 may be configured to execute appropriate software code 215. The software code 215 may, for example, enable execution of one or more steps for carrying out one or more of the present aspects. The software code 215 may be stored in the ROM 211b. The control device 200 may be interconnected with other control devices 200 that control other functions of the 5GRAN or 5GC. In some embodiments, each function of the 5GRAN or 5GC includes a control device 200. In alternative embodiments, two or more functions of the 5GRAN or 5GC may share a control device.
[0076] FIG. 3 illustrates an example of a terminal 300, such as the terminal illustrated in FIG. 1. The terminal 300 may be provided by any device capable of transmitting and receiving wireless signals. Non-limiting examples include user equipment, mobile stations (MSs), or mobile devices, such as, for example, mobile phones or what are known as "smartphones," computers with wireless interface cards or other wireless interface facilities (e.g., USB dongles), personal digital assistants (PDAs), or tablets with wireless communication capabilities, machine-type communication (MTC) devices, Internet of Things (IoT) type communication devices, or any combination thereof. The terminal 300 may provide, for example, communication of data for communication. The communication may be one or more of voice, electronic mail (email), text messages, multimedia, data, machine data, etc.
[0077] The terminal 300 may receive signals via a radio or wireless interface 307 via a suitable device for receiving and may transmit signals via a suitable device for transmitting radio signals. In Figure 3, a transceiver device is indicated schematically by block 306. The transceiver device 306 may be provided, for example, by a radio unit and associated antenna device. The antenna device may be located inside or outside the mobile device.
[0078] The terminal 300 comprises at least one processor 301, at least one memory ROM 302a, at least one RAM 302b, and possible other components 303 for use in software and hardware-assisted execution of tasks designed to perform operations including controlling access to and communicating with access systems and other communication devices. The at least one processor 301 is coupled to the RAM 302b and the ROM 302a. The at least one processor 301 may be configured to execute appropriate software code 308. The software code 308 may, for example, enable one or more of the present aspects to be performed. The software code 308 may be stored in the ROM 302a.
[0079] The processor, memory and other associated controls may be provided on a suitable circuit board and / or within a chipset. This feature is indicated by reference numeral 304. The device may optionally have a user interface such as a keypad 305, a touch-sensitive screen or pad, or a combination thereof. Optionally, one or more of a display, a speaker, and a microphone may be provided depending on the type of device.
[0080] One or more of the following aspects relate to mobility in a cellular / mobile communication network, such as an LTE network or an NR network.
[0081] Conditional handover (CHO) is a feature defined in two separate work items (WIs) on mobility enhancements for both LTE and NR in Release 16. Conditional handover is similar to baseline handover (BHO), and an example is shown in Figure 4.
[0082] In this example, a system is shown that includes a UE 401, a source node (SN) 403, a target node (TN) 405, other potential target nodes 407, a serving gateway / user plane function (S-GW / UPF) 409, and a mobile management entity / access and mobility management function (MME / AMF) 411. In this example, the user equipment 401 is configured to be handed over to the target node 405 by the source node 403 as part of a conditional handover.
[0083] The first operation is to trigger the UE 401 (based on an event) to send a measurement report from the UE 401 to the source node 403, as shown in step 400 of FIG.
[0084] The source node that receives the measurement report may then be configured to perform a conditional handover decision, as shown in FIG. 4 by step 402, in which the source node hands over to another node (either the target node 405 or another potential target node 407) based on the measurement report.
[0085] The source node is then configured to prepare one or more potential target nodes, which may be performed by sending a CHO request to the potential target node, as illustrated in Figure 4 by step 404 (CHO request to target node) and step 406 (CHO request to other potential target nodes).
[0086] The message is received and admission control is performed as shown in FIG. 4 by step 408 (admission control in the target node) and step 410 (admission control in other potential target nodes).
[0087] Additionally, the potential target node may be configured to send an acknowledgement message back to the source node 403 as shown in FIG. 4 by step 412 (CHO request acknowledgement from target node) and step 414 (CHO request acknowledgement from other potential target nodes).
[0088] Upon receiving the acknowledgement message, the source node 403 is then configured to generate and send a radio resource control (RRC) reconfiguration message, or handover command, to the UE 401, as shown in FIG. 4 by step 416.
[0089] In contrast to Baseline Handover (BHO), in which the UE immediately accesses the target cell to complete the handover, in Conditional Handover (CHO), the UE 401 is configured to only access the target cell once an additional CHO execution condition expires. In other words, the HO preparation and execution phases are decoupled. The condition is set in the HO command, for example, by the source node. Thus, for example, the UE is configured to evaluate the CHO condition as shown in FIG. 4 by step 418.
[0090] While the CHO condition is being evaluated by the UE, data may still be exchanged between the UE 401 and the source node 403, as shown in step 420 of FIG.
[0091] Once the CHO condition is met for the target node, the transmission and reception of user data between the UE 401 and the source node 403 is stopped, as shown in step 422 of FIG.
[0092] Additionally, the UE 401 is configured to transmit a Physical Random Access Channel (PRACH) preamble to the target node 405, as shown in step 424 of FIG.
[0093] A random access channel (RACH) response from the target node 405 is then sent back to the UE 401 as shown in FIG.
[0094] A radio resource control (RRC) reconfiguration complete message is then sent from the UE 401 to the target node 405, as shown in FIG.
[0095] A handover success message is sent from the target node 405 to the source node 403, as shown in step 430 of FIG.
[0096] The source node 403 is then configured to stop sending / receiving data to / from the UE 401 and initiate a data forwarding operation for any received data, as shown in FIG. 4 by step 432.
[0097] Next, a sequence number (SN) status transfer message is transferred from the source node 403 to the target node 405 as shown in FIG. 4 by step 434 .
[0098] Further, data transfer between the source node 403 and the target node 405 is performed as shown in step 436 of FIG.
[0099] The source node 403 also releases the CHO preparations of other potential target nodes 407 as shown in FIG.
[0100] The path switch information is then passed to the core network as shown in FIG.
[0101] In this way, CHO allows the HO command to be sent very early, when the UE is still safe in the source cell, without jeopardizing access in the target cell and the stability of its radio link. That is, conditional handover provides mobility robustness.
[0102] CHO can also be extended for dual connectivity situations, where there is a Master Cell Group (MCG) comprising a Primary Cell (PCell) and one or more Secondary Cells (SCells), and a Secondary Cell Group (SCG) comprising a Primary Cell (PSCell) and one or more Secondary Cells (PSCells).
[0103] In these situations, the conditional handover functionality may be extended for the primary cell within a secondary group (PSCell) addition / modification procedure related to a multi-RAT dual connectivity (MR-DC) (non-standalone) scenario, which may be defined as a conditional PSCell change (CPC).
[0104] The functionality of CPC is similar to CHO in the standalone architecture as shown in Figure 4, except that a conditional execution is applied to the change of PSCell based on measurements on a secondary cell group (SCG). The radio link between the UE and the master node (MN) is available during the execution of the conditional PSCell change, which in this case can be used by the UE for radio resource control (RRC) signaling, whereas in the case of CHO in the standalone architecture, the radio link between the UE and the network is completely interrupted from the start of the CHO execution until its completion. Furthermore, in the case of a failure scenario during the conditional PSCell change, the failure can be communicated to the master node in this case.
[0105] For example, with respect to FIG. 5, an exemplary Condition PSCell Change (CPC) is triggered by the secondary node using Signaling Radio Bearer 3 (SRB3).
[0106] Thus, for example, the UE 501 is configured to send a measurement report to a source primary cell in a secondary group (S-PSCell) 505 as shown in FIG. 5 by step 500.
[0107] An RRC connection reconfiguration message is then sent back from the S-PSCell 505 to the UE 501 as shown in FIG.
[0108] The UE is then configured to evaluate the CPC conditions, as shown in Figure 5 by step 504. While the evaluation is being performed, data may be transferred between the UE 501 and the master node 503. In this case, data transmission via the source secondary node is also possible.
[0109] The CPC condition is met for T-PSCell 507 as shown in step 506 of FIG.
[0110] Once the CPC condition is met, a random access procedure (similar to the CHO condition being met as shown in Figure 4) is performed between the UE 501 and the target primary cell in the secondary group (T-PSCell) 507, as shown in step 508 of Figure 5. During this procedure, data transfer between the UE and the master node is still possible.
[0111] Once completed, the UE 501 is then configured to send an RRC Connection Reconfiguration Complete message to the T-PSCell 507, as shown in FIG. 5 by step 510.
[0112] In a basic PSCell change scenario initiated by a secondary node (SN) without the involvement of the master node (MN), the signaling procedure steps when the UE experiences a secondary group-radio link failure (S-RLF) due to various reasons including timer failure (T310 expiry) are as follows:
[0113] The UE suspends the secondary cell group (SCG) radio bearers and resets the secondary cell group-medium access control (SCG-MAC).
[0114] The UE sends the SCG-Failure information to the Master Node (MN) over the MN radio link in a radio resource control (RRC) message, which comprises the failure cause and the latest measurement report per the Source Node (SN) measurement configuration.
[0115] The MN may forward the SCG-Failure Information to the SN via an SN-Modify Request message to inform the SN of the failure scenario so that the SN can stop scheduling to the UE.
[0116] Then, the master node (MN) receives an SCG-failure indication from the UE. (indication) Upon receiving the message, two actions are possible at the MN.
[0117] If the measurement results involve cells served by the same secondary node (SN), the master node (MN) may be configured to send an SN-Modify Request to inform the SN of the SCG failure and enable the SN to take further actions which will be signaled via the MN.
[0118] And if the measurement result includes a cell served by another secondary node (SN), the master node (MN) can initiate the SN cell change procedure by triggering an SN addition procedure without forwarding the SCG failure information to the source SN, where the MN has already decided to take action to address the failure.
[0119] If an SCG failure occurs after the UE receives a Conditional PSCell Change (CPC) command from the SN, the SCG failure information indication needs to be improved to allow the MN to take appropriate action for the failure, taking into account the condition of the conditional PSCell change and the prepared cell information as well. Even if the MN decides to trigger an immediate PSCell change to the prepared cell, the MN needs to know this additional information.
[0120] As mentioned above, the SCG failure information used to provide information about the SCG failure does not include any indication about the prepared PSCells, i.e., there is no information about the PSCells that were prepared by the SN without the involvement of the MN and for which the UE received its condition PSCell change configuration.
[0121] For example, an SCG failure information message is shown below for an NR SCG failure, and a similar message exists for an LTE SCG failure.
[0122] --ASN1START --TAG-SCGFAILUREINFORMATION-START SCGFailureInformation::= SEQUENCE{ criticalExtensions CHOICE{ scgFailureInformation SCGFailureInformation-IEs, criticalExtensionsFuture SEQUENCE {} } } SCGFailureInformation-IEs::= SEQUENCE{ failureReportSCG FailureReportSCG OPTIONAL, nonCriticalExtension SEQUENCE{} OPTIONAL } FailureReportSCG::= SEQUENCE { failureType ENUMERATED t310-Expiry, randomAccessProblem, rlc-MaxNumRetx, synchReconfigFailureSCG,scg-ReconfigFailure, srb3-IntegrityFailure,spare2,spare1}, measResultFreqList MeasResultFreqList OPTIONAL, measResultSCG-Failure OCTET STRING(CONTAINING MeasResultSCG- Failure) OPTIONAL, … } MeasResultFreqList::= SEQUENCE (SIZE (1..maxFreq)) OF MeasResult2NR -- TAG-SCGFAILUREINFORMATION-STOP -- ASN1STOP [Table 1]
[0123] The concept discussed in some embodiments is a signaling procedure for Secondary Cell-Radio Link Failure (S-RLF) reporting when the UE has a condition Primary Cell-in-Secondary Group (PSCell) change already configured by a Secondary Node (SN) without the involvement of a Master Node (MN).
[0124] Thus, in some embodiments, detecting S-RLF when there is a valid condition PSCell change execution command pending, the UE sends an SCG failure indication message to the MN with the following changes:
[0125] The SCG-Failure Indication message includes additional information to inform the MN that a conditional change of the PSCell has already been prepared. This information may be represented in some embodiments by a parameter / flag called the conditional PSCell-Change-pending parameter / flag. In other words, the UE has received a conditional PSCell change configuration but has not yet executed the change (e.g., an S-RLF occurred while waiting for the PSCell change execution condition to be met).
[0126] The SCG failure indication message may also be configured to indicate the cell identities of prepared candidate PSCells for which the UE has a valid change condition configuration. In some embodiments, this may be provided as a bitmap indicating the prepared cells in the measurement cell list. In some embodiments, the MN uses this information to decide whether to trigger an SN change to a non-prepared cell or perform a PSCell change to a prepared cell. Herein, the MN may also use the signal strength difference between the prepared and non-prepared cells.
[0127] The UE may also be configured to include additional information regarding the PSCell change execution conditions for each prepared PSCell along with the measurements of the source PSCell and the prepared PSCell. Alternatively, in some embodiments, to simplify signaling, the SCG failure information may include the delta between the measurement results and the execution conditions for each of the measured cells. This information may be used by the MN to select a new PSCell within the prepared cells.
[0128] In some embodiments, upon receipt of this information, the MN may be configured to decide to send an RRC message including the cell identity of the prepared cell for which an immediate PSCell change should be triggered, and to notify the SN that a conditional cell change execution has been triggered.
[0129] Additionally, in some embodiments, the MN may initiate a PSCell change towards an unprepared target cell and send a new RRC reconfiguration message, in which case the MN notifies the SN to cancel the conditional PSCell preparation as part of the inter-node message carrying the SCG failure information.
[0130] In some embodiments, the modified SCG failure indication reporting can be controlled by the SN via RRC signaling, which is applicable only if the condition cell change is not known to the MN, otherwise the legacy SCG failure indication can continue.
[0131] A message sequence illustrating the modified SCG fault indication procedure triggered on the S-RLF when a condition PSCell change is pending is shown with respect to FIG.
[0132] Thus, for example, a UE 601, a master node (MN) 603, and a secondary node (SN) 605 are configured to operate in dual connectivity mode, as illustrated in FIG. 6 by step 600.
[0133] Then, as part of the condition PSCell change with the intra-SN target cell, the secondary node 605 is configured to send an RRC reconfiguration message to the UE, as shown in FIG. 6 by step 602.
[0134] At some point, the UE is configured to detect a secondary cell radio link failure (S-RLF), as shown in FIG. 6 by step 604.
[0135] This causes the UE 601 to generate and send a secondary cell group failure message (SCG failure message) to the master node 603, as shown in step 608 of Figure 6. The SCG failure message contains information (and is implemented as the following parameters):
[0136] Information indicating whether a conditional PSCell change is pending (CPC pending), in other words, whether the UE has a valid conditional PSCell change configuration (or the execution conditions are not yet met) while an S-RLF is detected.
[0137] This is information (prepared cell information) indicating the cell identity (physical or global cell identity, PCI) of a PSCell prepared for executing a conditional PSCell change.
[0138] This is information (Cpsc-condition) that indicates the condition PSCell execution condition of each target cell prepared in the UE.
[0139] and information (measurement results) that may include measurements of the source PSCell and the prepared target PSCell.
[0140] In some embodiments (and may be implemented as an alternative to the parameter Cpsc-condition), the message may further comprise information (Cpsc-condition-diff) including the difference between the measurement result and the execution condition of each of the measured cells. For example, the UE may be configured to indicate whether the condition was met at all (at least temporarily, and not necessarily for the duration of the time until the trigger). In some embodiments, if an A3 event is configured for a condition PSCell change (the A3 event is when the target PSCell is offset better than the source PSCell), the UE may include in the message information indicating the difference between the measurement value of the source PSCell and the measurement value of the target PSCell. Furthermore, in some embodiments, if an A5 event is configured for a condition PSCell change (the A5 event is when the source PSCell becomes worse than threshold 1 and the target PSCell becomes better than threshold 2), the UE may be configured to include in the message information indicating the difference between the measurement value of the target PSCell and threshold 2.
[0141] The MN that receives the SCG failure information message is configured to determine a target cell based on the prepared cells in the measurement results. In some embodiments, the MN is configured to use the prepared cell information and the Cpsc-condition-diff for target cell selection. This is illustrated in Figure 6 by step 608.
[0142] In some embodiments, the master node is configured to generate and send an RRC reconfiguration message to the UE 601. The RRC reconfiguration message may comprise controls for performing an immediate PSCell change for a prepared cell identification, as shown in Figure 6 by step 610. In some further embodiments, the RRC reconfiguration message may comprise controls for performing a PSCell change to an unprepared inter-SN target cell, as shown in Figure 6 by step 612.
[0143] In some embodiments, where the RRC reconfiguration message may include controls to perform a PSCell change to an unprepared inter-SN target cell, the master node (MN) 603 is further configured to generate and send an SN modification request message to the secondary node (SN) 605, as shown in Figure 6 by step 614. In some embodiments, the SN modification request message comprises an SCG failure indicator and further a flag or parameter indicating that a PSCell change is triggered.
[0144] In such embodiments, the failure message can provide the MN with additional information about the prepared target PSCell when an S-RLF is detected. Furthermore, using the extended information in the SCG failure report, the MN can react immediately by triggering the execution of a conditional PSCell change without waiting for the SN to respond back using the MN radio link, which saves additional signaling over the Xn interface and reduces the delay in handling the S-RLF. Furthermore, in some embodiments, due to the extended SCG failure information, the NW can release pre-reserved resources in candidate PSCells that are no longer considered (e.g., based on reported measurements of prepared PSCells).
[0145] FIG. 7 shows a schematic diagram of non-volatile memory media 1300a (e.g., a computer disk (CD) or digital versatile disk (DVD)) and 1300b (e.g., a universal serial bus (USB) memory stick) that store instructions and / or parameters 1302 that, when executed by a processor, enable the processor to perform one or more of the process or method steps of FIGS. 4-6.
[0146] It should be noted that embodiments of the present invention may be implemented as circuitry, in software, hardware, application logic, or a combination of software, hardware, and application logic. In exemplary embodiments, the application logic, software, or instruction set is maintained on any one of a variety of conventional computer-readable media. In the context of this document, a "computer-readable medium" may be any medium or means that can contain, store, communicate, propagate, or carry instructions for use by or in connection with an instruction execution system, apparatus, or device, such as a computer or smartphone, or user equipment.
[0147] As used in this application, the term “circuit” refers to all of the following: (a) a hardware-only circuit implementation (such as an implementation in analog and / or digital circuitry only); (b) a combination of circuitry and software (and / or firmware), including (where applicable): (i) a processor or (ii) portions of a processor / software (including a digital signal processor), software, and memory(s) that cooperate to cause a device such as a mobile phone or a server to perform various functions; and (c) a circuit such as a microprocessor or portion of a microprocessor that requires software or firmware for operation, even if the software or firmware is not physically present. This definition of “circuit” applies to all uses of this term in this application, including any claims. As a further example, the term “circuit” as used in this application also encompasses implementations of simply a processor(s) or portion of a processor and its(their) accompanying software and / or firmware. The term “circuit” would also cover, for example, a baseband integrated circuit or an application processor integrated circuit for a mobile phone, or similar integrated circuits in a server, cellular network device, or other network device, if applicable to certain claim elements.
[0148] The described features, advantages, and characteristics of the invention may be combined in any suitable manner in one or more embodiments. Those skilled in the art will recognize that the invention can be practiced without one or more of the specific features or advantages of a particular embodiment. In other cases, additional features and advantages may be recognized in some embodiments that may not be present in all embodiments of the invention. Those skilled in the art will readily appreciate that the above-described invention may be implemented with a different sequence of steps and / or with hardware elements in different configurations than those disclosed. Thus, while the invention has been described based on these preferred embodiments, it will be apparent to those skilled in the art that certain modifications, variations, and alternative constructions will become apparent while remaining within the spirit and scope of the invention. The present specification describes at least the following items. (1) at least one processor; at least one memory containing computer program code, The at least one memory and the computer program code, together with the at least one processor, at least, operating the device in a dual connectivity mode, wherein the device communicates with a master cell group comprising a primary cell and at least one secondary cell, and the device communicates with a secondary cell group comprising the primary cell and at least one secondary cell; detecting a radio link failure between the device and the primary cell of the secondary cell group; and a step of providing information to the primary cell of the master cell group based on the radio link failure, the information being information that the radio link failure occurred on the secondary cell group while waiting for a ready condition cell change from the primary cell of the secondary cell group to be satisfied. (2) The device described in (1), characterized in that the at least one memory and the computer program code, together with the at least one processor, cause the device to perform a step of transmitting information configured by the primary cell of the secondary cell group via its own wireless link or the wireless link of the primary cell of the master cell group. (3) The device described in (1) or (2), characterized in that the information further notifies the primary cell of the master cell group of an identification value associated with at least one candidate cell from the secondary cell group for which the device has a valid condition change configuration. (4) The device described in (3), characterized in that the information that notifies the primary cell of the master cell group of an identification value associated with at least one candidate cell from the secondary cell group for which the device has a valid condition cell change is a bitmap indicating the at least one candidate cell in a measured cell list. (5) The device described in any one of (1) to (4), characterized in that the information further notifies the primary cell of the master cell group of a condition change execution condition related to at least one candidate cell from the secondary cell group and signal measurement values of the primary cell of the secondary cell group and the at least one candidate cell from the secondary cell group. (6) The device described in (5), characterized in that the information further notifies the primary cell of the master cell group of signal measurement values of the secondary cell group, and the at least one candidate cell from the secondary cell group is a difference between the primary cell and the at least one candidate cell of the secondary cell group and respective condition change execution conditions for the condition cell change associated with the cell. (7) The at least one memory and the computer program code, together with the at least one processor, at least, receiving a radio resource control message from the primary cell of the master cell group, the radio resource control message comprising a cell identity of a prepared cell from the secondary cell group to change to; The device described in any one of (1) to (6), characterized in that the device is caused to perform a step of performing a cell change from the primary cell of the secondary cell group to a prepared cell from the secondary cell group based on the cell identification. (8) The at least one memory and the computer program code, together with the at least one processor, at least, receiving a radio resource control reconfiguration message from the primary cell of the master group, the message comprising a cell identity of a cell other than a prepared cell from the secondary cell group to be changed; The device described in any one of (1) to (5), characterized in that the device is caused to perform a step of performing a cell change from the primary cell of the secondary cell group to a cell that is not prepared from the secondary cell group based on the cell identification. (9) The device according to any one of (1) to (8), characterized in that the device is a user equipment. (10) at least one processor; at least one memory containing computer program code, The at least one memory and the computer program code, together with the at least one processor, at least, communicating with at least one further device, wherein the further device is in communication with a master cell group comprising the device as a primary cell and at least one secondary cell, and the device is operating in a dual connectivity mode in communication with a secondary cell group comprising the primary cell and at least one secondary cell; and receiving information from the at least one further device based on a radio link failure between the at least one further device and the primary cell of the secondary cell group, the information being information that the radio link failure occurred on the secondary cell group while waiting for a ready condition cell change from the primary cell of the secondary cell group to be fulfilled. (11) The device described in (10), wherein the information further notifies the device of an identification value associated with at least one candidate cell from the secondary cell group for which the at least one further device has a valid condition change configuration. (12) The device described in (11), characterized in that the information that notifies the device of an identification value associated with at least one candidate cell from the secondary cell group for which the at least one further device has a valid condition cell change is a bitmap indicating the at least one candidate cell in a measured cell list. (13) The device described in any of (10) to (12), characterized in that the information further notifies the device of a condition change execution condition related to at least one candidate cell from the secondary cell group and signal measurement values of the primary cell of the secondary cell group and the at least one candidate cell from the secondary cell group. (14) The device described in (13), characterized in that the information further notifies the device of signal measurement values of the secondary cell group, the at least one candidate cell from the secondary cell group, a difference between the primary cell and the at least one candidate cell of the secondary cell group, and respective condition change execution conditions for the condition cell change associated with the cell. (15) The at least one memory and the computer program code, together with the at least one processor, at least, generating a radio resource control message based on the information, the radio resource control message comprising a cell identity of a prepared cell from the secondary cell group to be changed; The apparatus according to any one of (10) to (14), characterized in that the apparatus is caused to provide the radio resource control message to the at least one further apparatus, wherein the at least one further apparatus performs a cell change from the primary cell of the secondary cell group to a prepared cell from the secondary cell group based on the cell identification. (16) The at least one memory and the computer program code, together with the at least one processor, at least, generating a radio resource control reconfiguration message based on the information, the message comprising a cell identity of a cell other than a prepared cell from the secondary cell group to be changed; and providing the radio resource control message to the at least one further device, wherein the at least one further device performs a cell change from the primary cell of the secondary cell group to a cell that is not prepared from the secondary cell group based on the cell identification. (17) The device according to any one of (10) to (16), characterized in that the device is a master node. (18) at least one processor; at least one memory containing computer program code, The at least one memory and the computer program code, together with the at least one processor, at least, communicating with at least one further device, the further device operating in a dual connectivity mode communicating with a master cell group comprising a primary cell and at least one secondary cell, and with a secondary cell group comprising the device as a primary cell and a secondary cell; and receiving information for a cell change from the primary cell of the secondary cell group from the at least one further device. (19) The at least one memory and the computer program code, together with the at least one processor, at least, The device described in (18) is characterized in that the device is caused to receive a message from the primary cell of the master cell group, the message comprising information based on a radio link failure between the primary cell of the secondary cell group and the at least one further device while waiting for a ready condition cell change to be met from the primary cell of the secondary cell group.
Claims
1. operating a user equipment in a dual connectivity mode, wherein the user equipment communicates with a master cell group comprising a primary cell and at least one secondary cell, and the user equipment communicates with a secondary cell group comprising the primary cell and at least one secondary cell; detecting a radio link failure between the user equipment and the primary cell of the secondary cell group; providing information based on the radio link failure to the primary cell of the master cell group; 1. A user equipment comprising: means configured to: When there is a pending valid conditional primary cell, PSCell, change execution command for the secondary cell group, the information indicates that the radio link failure occurred on the secondary cell group while waiting for the conditional primary cell, PSCell, change execution command for the secondary cell group to be satisfied.
2. 2. The user equipment of claim 1, wherein the information is configured by the primary cell of the secondary cell group, and the means is configured to at least cause the user equipment to transmit the information via a radio link of the primary cell of the master cell group.
3. 3. The user equipment of claim 1, wherein the information is further configured to notify the primary cell of the master cell group of an identification value associated with at least one candidate cell from the secondary cell group for which the user equipment has a valid condition change configuration.
4. 4. The user equipment of claim 3, wherein the information configured to notify the primary cell of the master cell group of an identification value associated with at least one candidate cell from the secondary cell group for which the user equipment has a valid condition change configuration is a bitmap configured to indicate the at least one candidate cell in a measured cell list.
5. The user equipment according to any one of claims 1 to 4, wherein the information is further configured to notify the primary cell of the master cell group of a condition change execution condition related to at least one candidate cell from the secondary cell group and signal measurement values of the primary cell of the secondary cell group and the at least one candidate cell from the secondary cell group.
6. 6. The user equipment of claim 5, wherein the information is further configured to notify the primary cell of the master cell group of a difference between the signal measurement values of the primary cell of the secondary cell group and the at least one candidate cell from the secondary cell group and the condition change execution condition related to the at least one candidate cell from the secondary cell group.
7. The means comprises: receiving, from the primary cell of the master cell group, a radio resource control message comprising a cell identity of a prepared cell from the secondary cell group for which the user equipment has a valid modification condition configuration; performing a cell change from the primary cell of the secondary cell group to the prepared cell from the secondary cell group based on the cell identity; The user equipment according to any one of claims 1 to 6, configured to cause the user equipment to at least:
8. The means comprises: receiving, from the primary cell of the master group, a radio resource control reconfiguration message comprising a cell identity of a cell other than a prepared cell from the secondary cell group for which the user equipment has a valid modification condition configuration; performing a cell change from the primary cell of the secondary cell group to an unprepared cell from the secondary cell group for which the user equipment does not have a valid condition change configuration based on the cell identity; The user equipment according to any one of claims 1 to 6, wherein the user equipment is configured to at least:
9. communicating with a user equipment, the user equipment being configured to operate in a dual connectivity mode and communicating with a master cell group provided by a base station, the master cell group comprising a primary cell and at least one secondary cell, and with a secondary cell group comprising the primary cell and at least one secondary cell; receiving information from the user equipment based on a radio link failure between the user equipment and the primary cell of the secondary cell group; 1. A base station comprising: means configured to: When there is a pending valid conditional primary cell, PSCell, change execution command for the secondary cell group, the information indicates that the radio link failure occurred on the secondary cell group while waiting for the conditional primary cell, PSCell, change execution command for the secondary cell group to be satisfied.
10. 10. The base station of claim 9, wherein the information is further configured to inform the base station of an identification value associated with at least one candidate cell from the secondary cell group for which the user equipment has a valid condition change configuration.
11. 11. The base station according to claim 9 or 10, wherein the information is further configured to inform the base station of a condition change execution condition relating to at least one candidate cell from the secondary cell group and signal measurement values of the primary cell of the secondary cell group and the at least one candidate cell from the secondary cell group.
12. 12. The base station of claim 11, wherein the information is further configured to inform the base station of a difference between the signal measurements of the primary cell of the secondary cell group and the at least one candidate cell from the secondary cell group and respective condition change execution conditions for the condition cell change associated with the at least one candidate cell from the secondary cell group.
13. The means comprises: generating, based on the information, a radio resource control message comprising a cell identity of a prepared cell from the secondary cell group for which the user equipment has an effective condition change configuration; providing the radio resource control message to the user equipment such that the user equipment is configured to perform a cell change from the primary cell of the secondary cell group to the prepared cell from the secondary cell group based on the cell identity; The base station according to any one of claims 9 to 12, wherein the base station at least:
14. The base station according to any one of claims 9 to 13, wherein the base station is a master node.