Devices and methods of communication
Patent Information
- Application Number
- EP2023957218
- Authority / Receiving Office
- EP · EP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2023-11-01
- Publication Date
- 2026-09-09
AI Technical Summary
Current CPAC-configured terminal devices need to reconfigure and re-initialize from the network side after completing random access towards a target PSCell, leading to increased delay and signaling overhead, especially in frequent SCG changes in FR2.
The terminal device determines the receipt of an RRC reconfiguration message with synchronization and initiates a conditional reconfiguration evaluation for supporting subsequent CPAC, allowing for subsequent CPAC without prior reconfiguration and re-initialization from the network side.
This approach reduces signaling overhead and interrupting time for SCG changes by enabling subsequent CPAC without the need for network-side reconfiguration and re-initialization, thereby improving communication efficiency.
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Figure CN2023129161_08052025_PF_FP_ABST
Abstract
Description
DEVICES AND METHODS OF COMMUNICATIONTECHNICAL FIELD
[0001] Embodiments of the present disclosure generally relate to the field of telecommunication, and in particular, to devices and methods of communication for a subsequent conditional primary secondary cell (PSCell) addition or change (CPAC) .BACKGROUND
[0002] Conventionally, a CPAC-configured terminal device has to release a CPAC configuration when completing random access towards a target PSCell. Hence the terminal device has no chance to perform subsequent CPAC without prior CPAC reconfiguration and re-initialization from the network side. This will increase a delay for a cell change and increase signaling overhead, especially in the case of frequent secondary cell group (SCG) changes when operating in frequency range 2 (FR2) . Therefore, multi-random access technology dual connectivity (MR-DC) with selective activation of cell groups aims at enabling subsequent CPAC after SCG change, without reconfiguration and re-initialization on a CPAC preparation from the network side. This results in a reduction of signaling overhead and an interrupting time for SCG change. However, a solution of a subsequent CPAC is still incomplete and needs to be further developed.SUMMARY
[0003] In general, embodiments of the present disclosure provide methods, devices and computer storage media of communication for a subsequent CPAC.
[0004] In a first aspect, there is provided a terminal device. The terminal device comprises a processor configured to cause the terminal device to: determine that a radio resource control (RRC) reconfiguration message indicating a reconfiguration with synchronization is received or the reconfiguration with synchronization is successfully completed; and initiate a conditional reconfiguration evaluation for a first set of conditional reconfigurations supporting a subsequent CPAC.
[0005] In a second aspect, there is provided a terminal device. The terminal device comprises a processor configured to cause the terminal device to: receive, from a network device, a list of conditional reconfigurations associated with a list of candidate PSCells; determine that an SCG release or an MR-DC release is triggered; and in accordance with a determination that a first conditional reconfiguration associated with a first candidate PSCell in the list of conditional reconfigurations comprises an execution condition for a conditional primary secondary cell addition (CPA) or subsequent CPA, replace an execution condition for the first conditional reconfiguration with the execution condition for the CPA or subsequent CPA.
[0006] In a third aspect, there is provided a terminal device. The terminal device comprises a processor configured to cause the terminal device to: determine that an execution condition of a conditional reconfiguration supporting a subsequent CPAC is fulfilled; and maintain a set of conditional reconfigurations supporting the subsequent CPAC and a security cell set identity of a serving cell by at least one of the following: performing a full configuration procedure during which the terminal device maintains the set of conditional reconfigurations and the security cell set identity of the serving cell, or releasing or clearing a dedicated radio configuration except for the set of condition reconfigurations.
[0007] In a fourth aspect, there is provided a terminal device. The terminal device comprises a processor configured to cause the terminal device to: determine that an execution condition of a conditional reconfiguration associated with an SCG is fulfilled; and perform an operation comprising at least one of the following: performing an MR-DC release or an SCG release, performing a release of secondary node (SN) -terminated data radio bearers (DRBs) , or keeping, for a radio bearer using a secondary key in a current configuration of the terminal device, packet data convergence protocol (PDCP) and service data adaptation protocol (SDAP) entities associated with the radio bearer and state variables, buffers and timers of the PDCP and SDAP entities, and releasing fields related to the radio bearer except for an identity of the radio bearer.
[0008] In a fifth aspect, there is provided a terminal device. The terminal device comprises a processor configured to cause the terminal device to: determine that at least one of an RRC re-establishment procedure or a conditional handover (CHO) recovery procedure is initiated; and maintain a conditional reconfiguration supporting a subsequent CPAC during the at least one of the RRC re-establishment procedure or the CHO recovery procedure.
[0009] In a sixth aspect, there is provided a method of communication. The method comprises: determining, at a terminal device, that an RRC reconfiguration message indicating a reconfiguration with synchronization is received or the reconfiguration with synchronization is successfully completed; and initiating a conditional reconfiguration evaluation for a first set of conditional reconfigurations supporting a subsequent CPAC.
[0010] In a seventh aspect, there is provided a method of communication. The method comprises: receiving, at a terminal device and from a network device, a list of conditional reconfigurations associated with a list of candidate PSCells; determining that an SCG release or an MR-DC release is triggered; and in accordance with a determination that a first conditional reconfiguration associated with a first candidate PSCell in the list of conditional reconfigurations comprises an execution condition for a CPA or subsequent CPA, replacing an execution condition for the first conditional reconfiguration with the execution condition for the CPA or subsequent CPA.
[0011] In an eighth aspect, there is provided a method of communication. The method comprises: determining, at a terminal device, that an execution condition of a conditional reconfiguration supporting a subsequent CPAC is fulfilled; and maintaining a set of conditional reconfigurations supporting the subsequent CPAC and a security cell set identity of a serving cell by at least one of the following: performing a full configuration procedure during which the terminal device maintains the set of conditional reconfigurations and the security cell set identity of the serving cell, or releasing or clearing a dedicated radio configuration except for the set of condition reconfigurations.
[0012] In a ninth aspect, there is provided a method of communication. The method comprises: determining, at a terminal device, that an execution condition of a conditional reconfiguration associated with an SCG is fulfilled; and performing an operation comprising at least one of the following: performing an MR-DC release or an SCG release, performing a release of SN-terminated DRBs, or keeping, for a radio bearer using a secondary key in a current configuration of the terminal device, PDCP and SDAP entities associated with the radio bearer and state variables, buffers and timers of the PDCP and SDAP entities, and releasing fields related to the radio bearer except for an identity of the radio bearer.
[0013] In a tenth aspect, there is provided a method of communication. The method comprises: determining, at a terminal device, that at least one of an RRC re-establishment procedure or a CHO recovery procedure is initiated; and maintaining a conditional reconfiguration supporting a subsequent CPAC during the at least one of the RRC re-establishment procedure or the CHO recovery procedure.
[0014] In an eleventh aspect, there is provided a computer readable medium having instructions stored thereon. The instructions, when executed on at least one processor, cause the at least one processor to perform the method according to any of the sixth to tenth aspects of the present disclosure.
[0015] Other features of the present disclosure will become easily comprehensible through the following description.BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Through the more detailed description of some embodiments of the present disclosure in the accompanying drawings, the above and other objects, features and advantages of the present disclosure will become more apparent, wherein:
[0017] FIG. 1 illustrates an example communication environment in which some embodiments of the present disclosure can be implemented;
[0018] FIG. 2 illustrates a signaling chart illustrating an example process of communication for a subsequent CPAC according to embodiments of the present disclosure;
[0019] FIG. 3 illustrates a signaling chart illustrating an example process of communication for a subsequent CPA according to embodiments of the present disclosure;
[0020] FIG. 4 illustrates a signaling chart illustrating another example process of communication for a subsequent CPAC according to embodiments of the present disclosure;
[0021] FIG. 5 illustrates a signaling chart illustrating another example process of communication for a subsequent CPAC according to embodiments of the present disclosure;
[0022] FIG. 6 illustrates a signaling chart illustrating another example process of communication for a subsequent CPAC according to embodiments of the present disclosure;
[0023] FIG. 7 illustrates a flowchart of an example method of communication implemented at a terminal device in accordance with some embodiments of the present disclosure;
[0024] FIG. 8 illustrates a flowchart of another example method of communication implemented at a terminal device in accordance with some embodiments of the present disclosure;
[0025] FIG. 9 illustrates a flowchart of another example method of communication implemented at a terminal device in accordance with some embodiments of the present disclosure;
[0026] FIG. 10 illustrates a flowchart of another example method of communication implemented at a terminal device in accordance with some embodiments of the present disclosure;
[0027] FIG. 11 illustrates a flowchart of another example method of communication implemented at a terminal device in accordance with some embodiments of the present disclosure; and
[0028] FIG. 12 illustrates a simplified block diagram of a device that is suitable for implementing embodiments of the present disclosure.
[0029] Throughout the drawings, the same or similar reference numerals represent the same or similar element.DETAILED DESCRIPTION
[0030] Principle of the present disclosure will now be described with reference to some embodiments. It is to be understood that these embodiments are described only for the purpose of illustration and help those skilled in the art to understand and implement the present disclosure, without suggesting any limitations as to the scope of the disclosure. The disclosure described herein can be implemented in various manners other than the ones described below.
[0031] In the following description and claims, unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skills in the art to which this disclosure belongs.
[0032] As used herein, the term ‘terminal device’ refers to any device having wireless or wired communication capabilities. Examples of the terminal device include, but not limited to, user equipment (UE) , personal computers, desktops, mobile phones, cellular phones, smart phones, personal digital assistants (PDAs) , portable computers, tablets, wearable devices, Internet of things (IoT) devices, ultra-reliable and low latency communications (URLLC) devices, Internet of everything (IoE) devices, machine type communication (MTC) devices, device on vehicle for V2X communication where X means pedestrian, vehicle, or infrastructure / network, devices for integrated access and backhaul (IAB) , small data transmission (SDT) , mobility, multicast and broadcast services (MBS) , positioning, dynamic / flexible duplex in commercial networks, reduced capability (RedCap) , Space borne vehicles or air borne vehicles in non-terrestrial networks (NTN) including Satellites and high altitude platforms (HAPs) encompassing unmanned aircraft systems (UAS) , extended reality (XR) devices including different types of realities such as augmented reality (AR) , mixed reality (MR) and virtual reality (VR) , the unmanned aerial vehicle (UAV) commonly known as a drone which is an aircraft without any human pilot, devices on high speed train (HST) , or image capture devices such as digital cameras, sensors, gaming devices, music storage and playback appliances, or Internet appliances enabling wireless or wired Internet access and browsing and the like. The ‘terminal device’ can further has ‘multicast / broadcast’ feature, to support public safety and mission critical, V2X applications, transparent IPv4 / IPv6 multicast delivery, IPTV, smart TV, radio services, software delivery over wireless, group communications and IoT applications. It may also incorporate one or multiple subscriber identity module (SIM) as known as multi-SIM. The term “terminal device” can be used interchangeably with a UE, a mobile station, a subscriber station, a mobile terminal, a user terminal or a wireless device.
[0033] The term “network device” refers to a device which is capable of providing or hosting a cell or coverage where terminal devices can communicate. Examples of a network device include, but not limited to, a Node B (NodeB or NB) , an evolved NodeB (eNodeB or eNB) , a next generation NodeB (gNB) , a transmission reception point (TRP) , a remote radio unit (RRU) , a radio head (RH) , a remote radio head (RRH) , an IAB node, a low power node such as a femto node, a pico node, a reconfigurable intelligent surface (RIS) , Network-controlled Repeaters, and the like.
[0034] The terminal device or the network device may have artificial intelligence (AI) or machine learning capability. It generally includes a model which has been trained from numerous collected data for a specific function, and can be used to predict some information.
[0035] The terminal or the network device may work on several frequency ranges, e.g. FR1 (410 MHz to 7125 MHz) , FR2 (24.25GHz to 71GHz) , frequency band larger than 100GHz as well as Tera Hertz (THz) . It can further work on licensed / unlicensed / shared spectrum. The terminal device may have more than one connections with the network devices under MR-DC application scenario. The terminal device or the network device can work on full duplex, flexible duplex and cross division duplex modes.
[0036] The network device may have the function of network energy saving, self-organizing networks (SON) / minimization of drive tests (MDT) . The terminal may have the function of power saving.
[0037] The embodiments of the present disclosure may be performed in test equipment, e.g. signal generator, signal analyzer, spectrum analyzer, network analyzer, test terminal device, test network device, channel emulator.
[0038] In one embodiment, the terminal device may be connected with a first network device and a second network device. One of the first network device and the second network device may be a master node and the other one may be a secondary node. The first network device and the second network device may use different radio access technologies (RATs) . In one embodiment, the first network device may be a first RAT device and the second network device may be a second RAT device. In one embodiment, the first RAT device is eNB and the second RAT device is gNB. Information related with different RATs may be transmitted to the terminal device from at least one of the first network device or the second network device. In one embodiment, first information may be transmitted to the terminal device from the first network device and second information may be transmitted to the terminal device from the second network device directly or via the first network device. In one embodiment, information related with configuration for the terminal device configured by the second network device may be transmitted from the second network device via the first network device. Information related with reconfiguration for the terminal device configured by the second network device may be transmitted to the terminal device from the second network device directly or via the first network device.
[0039] As used herein, the singular forms ‘a’ , ‘an’ and ‘the’ are intended to include the plural forms as well, unless the context clearly indicates otherwise. The term ‘includes’ and its variants are to be read as open terms that mean ‘includes, but is not limited to. ’ The term ‘based on’ is to be read as ‘at least in part based on. ’ The term ‘one embodiment’ and ‘an embodiment’ are to be read as ‘at least one embodiment. ’ The term ‘another embodiment’ is to be read as ‘at least one other embodiment. ’ The terms ‘first, ’ ‘second, ’ and the like may refer to different or same objects. Other definitions, explicit and implicit, may be included below.
[0040] In some examples, values, procedures, or apparatus are referred to as ‘best, ’ ‘lowest, ’ ‘highest, ’ ‘minimum, ’ ‘maximum, ’ or the like. It will be appreciated that such descriptions are intended to indicate that a selection among many used functional alternatives can be made, and such selections need not be better, smaller, higher, or otherwise preferable to other selections.
[0041] In the context of the present disclosure, the term “a cell change or addition” may be interchangeably used with “reconfigurationWithSync for SCG or MCG” . In the context of the present disclosure, the term “subsequent CPAC” may be interchangeably used with “selective activation of cell groups” , “selective activation of PSCell (SAP) ” , “subsequent CPA / CPC” , “conditional selective cell group” , or “conditional subsequent cell change” . The term “master node (MN) ” may be interchangeably used with “MCG” , and the term “secondary node (SN) ” may be interchangeably used with “SCG” .
[0042] In the context of the present disclosure, the term “PSCell” refers to a SpCell of an SCG, the term “PCell” refers to a SpCell of an MCG, and the term “SpCell” refers to a primary cell of an SCG or MCG. The term “prepared PSCells” may be interchangeably used with “candidate PSCells” , “candidate cells” or “prepared candidate PSCells” .
[0043] Embodiments of the present disclosure provide solutions of communication for a subsequent CPAC. In one aspect, upon determination that an RRC reconfiguration message indicating a reconfiguration with synchronization is received or the reconfiguration with synchronization is successfully completed, a terminal device initiates a conditional reconfiguration evaluation for a first set of conditional reconfigurations supporting a subsequent CPAC. In this way, a conditional reconfiguration evaluation for a subsequent CPAC may be continued after an MCG or SCG link is recovered.
[0044] In another aspect, a network device transmits, to a terminal device, a list of conditional reconfigurations associated with a list of candidate PSCells. Upon determination that an SCG release or an MR-DC release is triggered, if a first conditional reconfiguration associated with a first candidate PSCell in the list of conditional reconfigurations comprises an execution condition for a CPA or subsequent CPA, the terminal device replaces an execution condition for the first conditional reconfiguration with the execution condition for the CPA or subsequent CPA. In this way, a terminal device may perform or suspend a conditional reconfiguration for subsequent CPA for maintained conditional reconfigurations.
[0045] In another aspect, upon determination that an execution condition of a conditional reconfiguration supporting a subsequent CPAC is fulfilled, a terminal device maintains a set of conditional reconfigurations supporting the subsequent CPAC and a security cell set identity of a serving cell by at least one of the following: performing a full configuration procedure during which the terminal device maintains the set of conditional reconfigurations and the security cell set identity of the serving cell; or releasing or clearing a dedicated radio configuration except for the set of condition reconfigurations. In this way, a complete configuration for a conditional reconfiguration may be applied.
[0046] In another aspect, upon determination that an execution condition of a conditional reconfiguration associated with an SCG is fulfilled, a terminal device performs an operation comprising at least one of the following: performing an MR-DC release or an SCG release; performing a release of SN-terminated DRBs; or keeping, for a radio bearer using a secondary key in a current configuration of the terminal device, PDCP and SDAP entities associated with the radio bearer and state variables, buffers and timers of the PDCP and SDAP entities, and releasing fields related to the radio bearer except for an identity of the radio bearer. In this way, a complete configuration for a conditional reconfiguration may also be applied.
[0047] In another aspect, upon determination that at least one of an RRC re-establishment procedure or a CHO recovery procedure is initiated, a terminal device maintains a conditional reconfiguration supporting a subsequent CPAC during the at least one of the RRC re-establishment procedure or the CHO recovery procedure. In this way, a conditional reconfiguration supporting a subsequent CPAC may be used after an RRC re-establishment procedure or a CHO recovery procedure.
[0048] Principles and implementations of the present disclosure will be described in detail below with reference to the figures.
[0049] It is to be understood that the present solution may be applied in a SCG change, and also may be applied in an MCG change. That is, the present solution may be applied for a subsequent CPAC or a subsequent conditional handover. The subsequent CPAC or subsequent conditional handover may also be referred to as a selective activation of cell groups, a selective activation of SCGs, a subsequent SCG change, a subsequent cell group change or a subsequent conditional cell change. For convenience, embodiments of the present disclosure will be described by taking a subsequent CPAC as an example.
[0050] EXAMPLE OF COMMUNICATION NETWORK
[0051] FIG. 1 illustrates a schematic diagram of an example communication environment 100 in which embodiments of the present disclosure can be implemented. As shown in FIG. 1, the communication environment 100 may comprise a network device 110 and a terminal device 120. The network device 110 provides a cell 111 and the terminal device 120 is located in the cell 111 and served by the network device 110.
[0052] The communication environment 100 may also comprise one or more other network devices such as network devices 130, 140 and 150. The network device 130 provides cells 131, 132 and 133. The network device 140 provides cells 141, 142 and 143, and the network device 150 provides cells 151, 152 and 153. It should be noted that the number of the cells are not limited to three, and more or less cells may be provided by the network devices 130, 140 and 150.
[0053] Assuming that the terminal device 120 may establish a dual connection (i.e., simultaneous connection) with two network devices. For example, the network device 110 may serve as an MN (for convenience, also referred to as MN 110 below) , and the network device 130 may serve as a SN (for convenience, also referred to as SN 130 below) . Although only the cell 111 is shown, the MN 110 may provide multiple cells, and these cells may form an MCG for the terminal device 120. Assuming that the cell 111 is a primary cell (i.e., PCell) in the MCG. Further, the cells 131, 132 and 133 provided by the network device 130 may form a SCG for the terminal device 120. Assuming that the cell 131 is a primary cell (i.e., PSCell) in the SCG.
[0054] The SN 130 may communicate with the terminal device 120 via a channel such as a wireless communication channel. Similarly, the MN 110 may also communicate with the terminal device 120 via a channel such as a wireless communication channel. The SN 130 may communicate with the MN 110 via an Xn interface.
[0055] It is to be understood that the number of devices or cells in FIG. 1 is given for the purpose of illustration without suggesting any limitations to the present disclosure. The communication environment 100 may involve any suitable number of network devices and / or terminal devices and / or cells adapted for implementing implementations of the present disclosure.
[0056] The communications in the communication environment 100 may conform to any suitable standards including, but not limited to, Global System for Mobile Communications (GSM) , Long Term Evolution (LTE) , LTE-Evolution, LTE-Advanced (LTE-A) , Wideband Code Division Multiple Access (WCDMA) , Code Division Multiple Access (CDMA) , GSM EDGE Radio Access Network (GERAN) , Machine Type Communication (MTC) and the like. The embodiments of the present disclosure may be performed according to any generation communication protocols either currently known or to be developed in the future. Examples of the communication protocols include, but not limited to, the first generation (1G) , the second generation (2G) , 2.5G, 2.75G, the third generation (3G) , the fourth generation (4G) , 4.5G, the fifth generation (5G) communication protocols, 5.5G, 5G-Advanced networks, or the sixth generation (6G) networks.
[0057] In some embodiments, the network device 110 may configure, to the terminal device 120, a conditional reconfiguration supporting a subsequent CPAC.
[0058] Assuming that the cells 131-133, 141-143 and 151-153 are configured to the terminal device 120 as candidate cells. In some scenarios, the terminal device 120 may initially communicate with only the network device 110. As the terminal device 120 moves, when a condition for a candidate cell (for example, the cell 131) is fulfilled, the terminal device 120 may be caused to establish the dual connection with the network device 110 and the network device 130. This process of SN addition may be called as a conditional PSCell addition (CPA) .
[0059] In some scenarios, the terminal device 120 may establish a dual connection with the network devices 110 and 130. The network device 110 serves as an MN and the network device 130 serves as an SN. As the terminal device 120 moves, an SN serving the terminal device 120 may be changed from the network device 130 (also referred to as a source SN or current SN 130 hereinafter) to the network device 140 (also referred to as a target SN 140 hereinafter) . This process of PSCell change may be called as a CPC.
[0060] In some scenarios, after the terminal device is configured with a conditional reconfiguration and with a subsequent CPC being enabled, and before at least one execution condition is fulfilled for any candidate PSCell, the terminal device 120 may receive a radio resource control (RRC) reconfiguration message containing reconfigurationWithSync for SCG from the network device 110, and the terminal device 120 may perform a PSCell change or addition accordingly. This procedure is called as a legacy PSCell change or addition. As an example, after the legacy PSCell change or addition procedure, the SN serving the terminal device 120 is the network device 140.
[0061] After the above CPA, CPC or legacy PSCell change or addition procedure, the terminal device 120 does not release the conditional reconfiguration supporting a subsequent CPAC, and continues to perform a conditional reconfiguration evaluation. As the terminal device 120 further moves, when a condition for still another candidate cell (for example, the cell 151) is fulfilled, an SN serving the terminal device 120 may be changed from the network device 140 to the network device 150 (also referred to as a target SN 150 hereinafter) . This process of SN change may be called as a subsequent CPC.
[0062] As shown in FIG. 1, as the terminal device 120 further moves, the terminal device 120 may move out of coverage of an SN. The network device 110 (i.e., the MN) may indicate the terminal device 120 to release a previous SN (e.g., the network device 150) . In this case, the terminal device 120 may not release the conditional reconfiguration supporting the subsequent CPAC, and continue to perform a conditional reconfiguration evaluation for subsequent CPA.
[0063] Continuing to refer to FIG. 1, as the terminal device 120 further moves, when a condition for a candidate cell (for example, the cell 141) is fulfilled, the terminal device 120 may be caused to establish a dual connection with the network device 110 and the network device 140. This process may be called as a subsequent CPA.
[0064] Embodiments of the present disclosure provide solutions of communication for a subsequent CPAC so as to enhance a subsequent CPAC procedure. The solutions will be described in connection with FIGs. 2 to 6 below.
[0065] EXAMPLE IMPLEMENTATION OF SUBSEQUENT CPAC FOR MCG / SCG FAILURE RECOVERY
[0066] Conventionally, upon a terminal device initiates a fast MCG link recovery procedure to report MCG failures when neither MCG nor SCG transmission is suspended, the terminal device may stop a conditional reconfiguration evaluation for CPC. However, it is unclear how to handle a conditional reconfiguration evaluation for a subsequent CPAC in case of fast MCG link recovery.
[0067] Furthermore, when SCG fails, a terminal device may initiate an SCG failure recovery procedure to report SCG failures when neither MCG nor SCG transmission is suspended. During the SCG failure recovery procedure, the terminal device may stop a conditional reconfiguration evaluation for CPC or CPA for both conditional reconfigurations supporting or not supporting a subsequent CPAC, and indicate an SCG failure. However, it is unclear how to handle a conditional reconfiguration evaluation for a subsequent CPAC in case of SCG link recovery.
[0068] In view of the above, embodiments of the present disclosure provide a solution of communication for a subsequent CPAC so as to overcome the above and other potential issues. The solution will be described in connection with FIG. 2 below.
[0069] FIG. 2 illustrates a signaling chart illustrating an example process 200 of communication for a subsequent CPAC according to embodiments of the present disclosure. For the purpose of discussion, the process 200 will be described with reference to FIG. 1. The process 200 may involve the terminal device 120 and the network device 110. In this example, the network device 110 is an MN serving the terminal device 120.
[0070] As shown in FIG. 2, the network device 110 may transmit 210, to the terminal device 120, a set of conditional reconfigurations associated with a set of candidate PSCells. In some embodiments, part or all of the set of conditional reconfigurations may support a subsequent CPAC (i.e., have a subsequent CPAC configuration) and comprise execution conditions for the subsequent CPAC.
[0071] Based on the set of conditional reconfigurations, the terminal device 120 may perform 220 a conditional reconfiguration evaluation for the set of candidate PSCells.
[0072] With reference to FIG. 2, the terminal device 120 may transmit 230 a failure report to the network device 110. In some embodiments, the terminal device 120 may initiate 231 a procedure of reporting a failure in an MCG (also referred to as an MCG failure herein) . In some embodiments, upon detecting a radio link failure of the MCG while a timer (e.g., T316) for an MCG failure reporting is not running, the terminal device 120 may initiate the procedure of reporting the MCG failure when neither MCG nor SCG transmission is suspended.
[0073] Upon initiating the procedure of reporting the MCG failure, in some embodiments, the terminal device 120 may stop or suspend the conditional reconfiguration evaluation for part or all of the set of conditional reconfigurations (for convenience, also referred to as a second set of conditional reconfigurations herein) that support the subsequent CPAC. In some alternative embodiments, the terminal device 120 may continue the conditional reconfiguration evaluation for the conditional reconfiguration that supports the subsequent CPAC. In other words, the termina device 120 may not stop the conditional reconfiguration evaluation for the conditional reconfiguration that supports the subsequent CPAC. The terminal device 120 may transmit an RRC message such as an MCGFailureInformation message to the network device 110 to report information of the MCG failure, and start a timer (e.g., T316) for the MCG failure reporting.
[0074] Continuing to refer to FIG. 2, in some embodiments, the terminal device 120 may initiate 232 a procedure of reporting a failure in an SCG (also referred to as an SCG failure herein) . In some embodiments, upon detecting a radio link failure of the SCG, the terminal device 120 may initiate the procedure of reporting the SCG failure when neither MCG nor SCG transmission is suspended. In some embodiments, upon detecting beam failure of a PSCell while the SCG is deactivated, the terminal device 120 may initiate the procedure of reporting the SCG failure when neither MCG nor SCG transmission is suspended. In some embodiments, upon an SCG configuration failure, the terminal device 120 may initiate the procedure of reporting the SCG failure when neither MCG nor SCG transmission is suspended. In some embodiments, upon integrity check failure indication from SCG lower layers concerning signaling radio bearer 3 (SRB3) , the terminal device 120 may initiate the procedure of reporting the SCG failure when neither MCG nor SCG transmission is suspended.
[0075] Upon initiating the procedure of reporting the SCG failure, in some embodiments, the terminal device 120 may stop or suspend the conditional reconfiguration evaluation for part or all of the set of conditional reconfigurations (for convenience, also referred to as a third set of conditional reconfigurations herein) that support the subsequent CPAC. In some alternative embodiments, the terminal device 120 may continue the conditional reconfiguration evaluation for the conditional reconfiguration that supports the subsequent CPAC. In other words, the termina device 120 may not stop the conditional reconfiguration evaluation for the conditional reconfiguration that support the subsequent CPAC. The terminal device 120 may transmit an RRC message such as an SCGFailureInformation message to the network device 110 to report information of the SCG failure.
[0076] With reference to FIG. 2, the network device 110 may transmit 240, to the terminal device 120, an RRC reconfiguration message indicating a reconfiguration with synchronization. In some embodiments, the network device 110 may transmit 241 the RRC reconfiguration message for the reconfiguration with synchronization of an MCG as a response to a reporting of a failure in the MCG. In some embodiments, the network device 110 may transmit 242 the RRC reconfiguration message for the reconfiguration with synchronization of an SCG as a response to a reporting of a failure in the SCG.
[0077] Continuing to refer to FIG. 2, upon reception of the RRC reconfiguration message indicating the reconfiguration with synchronization, the terminal device 120 may perform 250 the reconfiguration with synchronization.
[0078] In some embodiments, upon reception of the RRC reconfiguration message indicating the reconfiguration with synchronization, the terminal device 120 may initiate or resume or continue to perform 260 the conditional reconfiguration evaluation for part or all of the second set of conditional reconfigurations. For convenience, the part or all of the second set of conditional reconfigurations may also be referred to as a first set of conditional reconfigurations herein. In some embodiments, upon reception of the RRC reconfiguration message indicating the reconfiguration with synchronization, if there is at least one valid or maintained conditional reconfiguration supporting the subsequent CPAC in UE variable, the terminal device 120 may initiate or resume or continue to perform the conditional reconfiguration evaluation for the at least one valid or maintained conditional reconfiguration. In some embodiments, upon reception of the RRC reconfiguration message indicating the reconfiguration with synchronization for MCG, if timer T316 is running, and if there is at least one valid or maintained conditional reconfiguration supporting the subsequent CPAC in UE variable, the terminal device 120 may initiate or resume or continue to perform the conditional reconfiguration evaluation for the at least one valid or maintained conditional reconfiguration. In some embodiments, upon reception of the RRC reconfiguration message indicating the reconfiguration with synchronization for SCG, if SCG fails or SCG transmission is suspended, and if there is at least one valid or maintained conditional reconfiguration supporting the subsequent CPAC in UE variable, the terminal device 120 may initiate or resume or continue to perform the conditional reconfiguration evaluation for the at least one valid or maintained conditional reconfiguration.
[0079] For illustration, an example procedure of subsequent CPAC handling for fast MCG failure recovery may be described as below.
[0080] upon reception of RRCReconfiguration with reconfigurationWithSync included in spCellConfig of MCG, if the timer T316 is running, and if there is conditional reconfiguration in MCG VarConditionalReconfig or SCG VarConditionalReconfig, (and the conditional reconfiguration is valid / not suspended) , the UE shall initiate / resume / continue the conditional reconfiguration evaluation procedure.
[0081] In this example, an information element (IE) “VarConditionalReconfig” denotes a configuration of a conditional reconfiguration, and an IE “spCellConfig” denotes a special cell configuration.
[0082] For illustration, an example procedure of subsequent CPAC handling for SCG failure recovery may be described as below.
[0083] upon reception of RRCReconfiguration with reconfigurationWithSync included in spCellConfig of an SCG, if SCG is failed or SCG transmission is suspended, if there is conditional reconfiguration in MCG VarConditionalReconfig or SCG VarConditionalReconfig, the UE shall initiate / resume / continue the conditional reconfiguration evaluation procedure.
[0084] In this example, an IE “VarConditionalReconfig” denotes a configuration of a conditional reconfiguration, and an IE “spCellConfig” denotes a special cell configuration.
[0085] With reference to FIG. 2, in some embodiments, upon successful completion of the reconfiguration with synchronization, the terminal device 120 may initiate or resume or continue to perform 260’ the conditional reconfiguration evaluation for the first set of conditional reconfigurations. In other words, upon successfully completing the random access procedure triggered for the reconfiguration with synchronization, the terminal device 120 may initiate or resume or continue the conditional reconfiguration. In some embodiments, upon successfully completing the random access procedure triggered for the reconfiguration with synchronization of MCG, the terminal device 120 may initiate or resume or continue the conditional reconfiguration. In some embodiments, upon successfully completing the random access procedure triggered for the reconfiguration with synchronization of SCG, the terminal device 120 may initiate or resume or continue the conditional reconfiguration.
[0086] For illustration, an example procedure of subsequent CPAC handling for fast MCG failure recovery may be described as below.
[0087] upon successfully completing the random access procedure triggered for the reconfigurationWithSync on in spCellConfig of the MCG, and if there is conditional reconfiguration in MCG VarConditionalReconfig or SCG VarConditionalReconfig, (and the conditional reconfiguration is valid / not suspended) , the UE shall resume / continue / perform the conditional reconfiguration evaluation procedure.
[0088] In this example, an IE “VarConditionalReconfig” denotes a configuration of a conditional reconfiguration, and an IE “spCellConfig” denotes a special cell configuration.
[0089] For illustration, an example procedure of subsequent CPAC handling for SCG failure recovery may be described as below.
[0090] upon successfully completing the random access procedure triggered for the reconfigurationWithSync on in spCellConfig of the SCG, and if there is conditional reconfiguration in MCG VarConditionalReconfig or SCG VarConditionalReconfig, the UE shall resume / continue / perform the conditional reconfiguration evaluation procedure.
[0091] In this example, an IE “VarConditionalReconfig” denotes a configuration of a conditional reconfiguration, and an IE “spCellConfig” denotes a special cell configuration.
[0092] With the process 200, a conditional reconfiguration evaluation for a subsequent CPAC may be continued after an MCG link or SCG link is recovered.
[0093] EXAMPLE IMPLEMENTATION OF SUBSEQUENT CPA FOR SCG RELEASE
[0094] Conventionally, upon an SCG release, a terminal device may continue to perform subsequent CPA evaluation. However, it is unclear how to support the subsequent CPA evaluation. Further, it is unclear how to handle the case that there is no execution condition for subsequent CPA associated with one candidate configuration upon an SCG release.
[0095] In view of the above, embodiments of the present disclosure provide a solution of communication for a subsequent CPA so as to overcome the above and other potential issues. The solution will be described in connection with FIG. 3 below.
[0096] FIG. 3 illustrates a signaling chart illustrating an example process 300 of communication for a subsequent CPA according to embodiments of the present disclosure. For the purpose of discussion, the process 300 will be described with reference to FIG. 1. The process 300 may involve the terminal device 120 and the network device 110. In this example, the network device 110 is an MN serving the terminal device 120.
[0097] As shown in FIG. 3, the network device 110 may transmit 310, to the terminal device 120, a set of conditional reconfigurations associated with a set of candidate PSCells. In some embodiments, a conditional reconfiguration in the set of conditional reconfigurations may comprise an execution condition for a CPA or a subsequent CPA.
[0098] With reference to FIG. 3, the terminal device 120 may determine 320 that an SCG release or an MR-DC release is triggered.
[0099] Continuing to refer to FIG. 3, in some embodiments, a conditional reconfiguration (for convenience, also referred to as a first conditional reconfiguration herein) associated with a candidate PSCell (for convenience, also referred to as a first candidate PSCell herein) in the list of conditional reconfigurations may comprise an execution condition for a CPA or subsequent CPA. In these embodiments, the terminal device 120 may replace 330 an execution condition for the first conditional reconfiguration with the execution condition for the CPA or subsequent CPA. Then the terminal device 120 may initiate a conditional reconfiguration evaluation for subsequent CPA based on the execution condition for the first conditional reconfiguration.
[0100] For illustration, an example procedure may be described as below.
[0101] Upon SCG release, for each conditional reconfiguration, if there is an execution condition for CPA or subsequent CPA in subsequentCondReconfig, replace condExecutionCond with the value of an execution condition for (subsequent) CPA in subsequentCondReconfig.
[0102] In this example, an IE “subsequentCondReconfig” denotes a subsequent CPA configuration in a conditional reconfiguration, and an IE “condExecutionCond” denotes an execution condition for a conditional reconfiguration.
[0103] Continuing to refer to FIG. 3, in some embodiments, a conditional reconfiguration (for convenience, also referred to as a second conditional reconfiguration herein) associated with a candidate PSCell (for convenience, also referred to as a second candidate PSCell herein) in the list of conditional reconfigurations may not comprise an execution condition for CPA or subsequent CPA. In some embodiments, if there is no execution condition for CPA or subsequent CPA, the terminal device 120 may suspend or stop or not perform 340 a conditional reconfiguration evaluation for the second conditional reconfiguration. In some embodiments, if there is no execution condition for CPA or subsequent CPA, the terminal device 120 may suspend 340’ the second conditional reconfiguration. In some embodiments, if there is no execution condition for CPA or subsequent CPA, the terminal device 120 may consider 340” the second conditional reconfiguration as invalid.
[0104] With the process 300, a terminal device may perform or suspend a conditional reconfiguration for subsequent CPA for maintained conditional reconfigurations.
[0105] EXAMPLE IMPLEMENTATION OF APPLICATION OF COMPLETE CONFIGURATION
[0106] Conventionally, for a subsequent CPAC, a network device configures a reference configuration for all conditional reconfigurations and a candidate configuration for each conditional reconfiguration. In some embodiments, a terminal device may generate a complete configuration for each conditional reconfiguration by applying the candidate configuration for each conditional reconfiguration on top of the reference configuration. In some embodiment, the terminal device may apply the conditional reconfiguration by first considering the reference configuration as the current configuration, i.e., the terminal device first considers the reference configuration to be the current configuration and then applies the conditional reconfiguration on top of the reference configuration. However, it is unclear how to apply the complete configuration for a conditional reconfiguration or how to apply the conditional reconfiguration when an execution condition of the conditional reconfiguration is fulfilled.
[0107] In view of this, embodiments of the present disclosure provide solutions of communication for a subsequent CPAC so as to overcome the above and other potential issues. The solutions will be described in connection with FIGs. 4 and 5 below. FIG. 4 illustrates a signaling chart illustrating another example process 400 of communication for a subsequent CPAC according to embodiments of the present disclosure. For the purpose of discussion, the process 400 will be described with reference to FIG. 1. The process 400 may involve the terminal device 120 and the network device 110. In this example, the network device 110 is an MN serving the terminal device 120.
[0108] As shown in FIG. 4, the network device 110 may transmit 410, to the terminal device 120, a set of conditional reconfigurations associated with a set of candidate PSCells. In some embodiments, a conditional reconfiguration in the set of conditional reconfigurations may support a subsequent CPAC (i.e., comprise an execution condition for the subsequent CPAC) . In some embodiments, a conditional reconfiguration in the set of conditional reconfigurations may not support a subsequent CPAC (i.e., not comprise an execution condition for the subsequent CPAC) . The terminal device 120 may perform a conditional reconfiguration evaluation for the set of conditional reconfigurations.
[0109] Continuing to refer to FIG. 4, the terminal device 120 may determine 420 that an execution condition of a conditional reconfiguration supporting a subsequent CPAC is fulfilled. In this case, the terminal device 120 may maintain 430 all conditional reconfigurations supporting the subsequent CPAC in the set of conditional reconfigurations, and a security cell set identity (ID) of a serving cell.
[0110] With reference to FIG. 4, in some embodiments, if an execution condition of one conditional reconfiguration supporting a subsequent CPAC is fulfilled, the terminal device 120 may perform 431 a full configuration procedure. During the full configuration procedure, the terminal device 120 may maintain all the conditional reconfigurations supporting the subsequent CPAC, and the security cell set ID of the serving cell. In this way, a terminal device may perform a modified full configuration procedure with a conditional reconfiguration with a subsequent CPAC configuration maintained. In other words, during the full configuration procedure, the terminal device 120 may maintain (i.e., not release) a conditional reconfiguration with subsequent CPAC configuration in UE variable (e.g., at least one of MCG VarConditionalReconfig or SCG VarConditionalReconfig) and security cell set ID of serving PSCell in UE variable (e.g., VarServingSecurityCellSetID) .
[0111] In some embodiments, the conditional reconfigurations supporting the subsequent CPAC may be associated with an MCG. That is, the conditional reconfigurations supporting the subsequent CPAC may be stored in MCG VarConditionalReconfig. In some embodiments, the conditional reconfigurations supporting the subsequent CPAC may be associated with an SCG. That is, the conditional reconfigurations supporting the subsequent CPAC may be stored in SCG VarConditionalReconfig.
[0112] In some embodiments, during the full configuration procedure, the terminal device 120 may maintain value of the state variables of PDCP entities and identities associated with all radio bearers (RBs) (i.e., DRB and SRB) .
[0113] In some embodiments, if the full configuration procedure is performed, the terminal device 120 may apply a complete configuration of the conditional reconfiguration or apply the conditional reconfiguration. In other words, the terminal device 120 may perform a full configuration procedure first, and then apply the complete configuration of the conditional reconfiguration. Alternatively, the terminal device 120 may perform a full configuration procedure, and then apply the conditional reconfiguration by first considering the reference configuration as the current configuration.
[0114] In some embodiments, the full configuration procedure may comprise releasing or clearing all current dedicated radio configurations except for the following: MCG C-RNTI; access stratum (AS) security configurations associated with a master key; SRB1 / SRB2 configurations and DRB / multicast radio bearer (MRB) configurations; and a logged measurement configuration.
[0115] In some embodiments, the terminal device 120 may generate a complete configuration of the conditional reconfiguration by including a configuration of the full configuration procedure in an MCG configuration of the complete configuration. In other words, upon generation of a complete configuration for each conditional reconfiguration, the terminal device 120 may include a fullConfig IE in the MCG configuration / MCG RRCReconfiguration of the complete configuration. In some embodiments, the terminal device 120 may include a configuration of the full configuration procedure in the conditional reconfiguration stored in the UE variable. For example, the terminal device 120 may include an fullConfig IE in the MCG configuration / MCG RRCReconfiguration of the conditional reconfiguration stored in the VarConditionalReconfig.
[0116] In some embodiments, the terminal device 120 may receive, from an MN (i.e., the network device 110) , the configuration of the full configuration procedure in a MCG configuration of a reference configuration for a list of conditional reconfigurations or in a MCG configuration of a configuration of the conditional reconfiguration. In other words, the MN may include a fullConfig IE in the MCG configuration of the reference configuration, or in the MCG configuration of the configuration of the conditional reconfiguration.
[0117] In some embodiments, when applying the complete configuration or applying the conditional reconfiguration by first considering the reference configuration as the current configuration, the terminal device 120 may determine whether to perform a security key update procedure based on a security cell set ID of a serving cell and a security cell set ID of a candidate cell, and perform an SRB or DRB addition procedure. If the security cell set ID of the serving cell is not equal to the security cell set ID of the candidate cell, the terminal device 120 may need to perform the security key update procedure. Otherwise, the terminal device 120 may not need to perform the security key update procedure. In some embodiments, during the SRB or DRB addition procedure, if the security key update procedure is determined to be not performed, the terminal device 120 may establish a PDCP entity and configure the PDCP entity with the maintained value of state variables of PDCP entity corresponding to the released RB with the same identity. In other words, the initial value of the state variables of the established PDCP entity are set as the maintained value of the state variables of PDCP entity corresponding to the released RB with the same identity.
[0118] In this way, applying of a complete configuration during conditional reconfiguration execution may be defined based on a full configuration procedure.
[0119] Continuing to refer to FIG. 4, in some embodiments, if an execution condition of one conditional reconfiguration supporting a subsequent CPAC in the set of conditional reconfigurations is fulfilled, the terminal device 120 may release or clear 432 a dedicated radio configuration except for the set of conditional reconfigurations. In this way, a terminal device may perform a set of behaviors dedicated for subsequent CPAC.
[0120] In some embodiments, if an execution condition of one conditional reconfiguration supporting a subsequent CPAC in the set of conditional reconfigurations is fulfilled, the terminal device 120 may release, for a protocol data unit (PDU) session that is a part of a current configuration of the terminal device 120, a SDAP entity of the terminal device and a DRB associated with the PDU session.
[0121] In some embodiments, if an execution condition of one conditional reconfiguration supporting a subsequent CPAC in the set of conditional reconfigurations is fulfilled, the terminal device 120 may keep, for a radio bearer in a current configuration of the terminal device 120, PDCP and SDAP entities associated with the radio bearer and state variables, buffers and timers of the PDCP and SDAP entities, and release fields related to the radio bearer except for an ID of the radio bearer.
[0122] In some embodiments, the terminal device 120 may release or clear a common radio configuration. In some embodiments, the terminal device 120 may use default values for a timer (e.g., T310) configured for radio link failure detection and a timer (e.g., T311) configured for an RRC reestablishment and constants for a number (e.g., N310) of time of continuous reception of an out-of-sync indication and a number (e.g., N311) of time of continuous reception of an in-sync indication. In some embodiments, the terminal device 120 may apply a complete configuration associated with the conditional reconfiguration. In some embodiments, the terminal device 120 may apply the conditional reconfiguration by first considering the reference configuration as the current configuration.
[0123] For illustration, an example procedure may be described as below.
[0124] If the execution condition of one conditional reconfiguration is fulfilled, the UE shall:
[0125] - release / clear all current dedicated radio configuration, except for / maintain of the following:
[0126] MCG C-RNTI,
[0127] AS security configurations associated with the master key or secondary key,
[0128] SRB configurations and DRB configurations,
[0129] a radio link control (RLC) entity configuration, and
[0130] conditional reconfiguration supporting subsequent CPAC in UE variable (MCG VarConditionalReconfig and SCG VarConditionalReconfig) ;
[0131] - release / clear all current common radio configurations;
[0132] - use default values for timers T310, T311 and constants N310, N311;
[0133] - (Option 1) for each pdu-Session that is part of the current UE configuration, release the SDAP entity and release each DRB associated to the pdu-Session;
[0134] - (Option 2) for each SRB / DRB in current UE configuration,
[0135] keep the associated PDCP and SDAP entities, their state variables, buffers and timers,
[0136] release all fields related to the SRB / DRB configuration except for srb-Identity and drb-Identity; and
[0137] - apply the complete configuration associated with the conditional reconfiguration after the above steps.
[0138] In this way, applying of a complete configuration during conditional reconfiguration execution may be defined based on a dedicated procedure for subsequent CPAC.
[0139] FIG. 5 illustrates a signaling chart illustrating another example process 500 of communication for a subsequent CPAC according to embodiments of the present disclosure. For the purpose of discussion, the process 500 will be described with reference to FIG. 1. The process 500 may involve the terminal device 120 and the network device 110. In this example, the network device 110 is an MN serving the terminal device 120.
[0140] As shown in FIG. 5, the network device 110 may transmit 510, to the terminal device 120, a set of conditional reconfigurations associated with a set of candidate PSCells. In some embodiments, a conditional reconfiguration in the set of conditional reconfigurations may support a subsequent CPAC (i.e., comprise an execution condition for the subsequent CPAC) . In some embodiments, a conditional reconfiguration in the set of conditional reconfigurations may not support a subsequent CPAC (i.e., not comprise an execution condition for the subsequent CPAC) . The terminal device 120 may perform a conditional reconfiguration evaluation for the set of conditional reconfigurations.
[0141] Continuing to refer to FIG. 5, the terminal device 120 may determine 520 whether an execution condition of a conditional reconfiguration associated with an SCG is fulfilled.
[0142] With reference to FIG. 5, in some embodiments, if the execution condition of the conditional reconfiguration associated with the SCG is fulfilled, the terminal device 120 may perform 530 an MR-DC release or an SCG release.
[0143] In some embodiments, the terminal device 120 may perform the MR-DC release or the SCG release before applying a complete configuration associated with the conditional reconfiguration or applying the conditional reconfiguration by first considering the reference configuration as the current configuration. In other words, the terminal device 120 may perform MR-DC release or SCG release first, and then apply the complete configuration of the conditional reconfiguration or apply the conditional reconfiguration by first considering the reference configuration as the current configuration.
[0144] In some embodiments, upon generation of the complete configuration, the terminal device 120 may include an MR-DC SCG configuration IE (e.g., mrdc-SecondaryCellGroupConfig IE) set to release in an MCG configuration (or MCG RRCReconfiguration) of the complete configuration. In some embodiments, the terminal device 120 may include the MR-DC SCG configuration IE (e.g., mrdc-SecondaryCellGroupConfig IE) set to release in the MCG configuration / MCG RRCReconfiguration of the conditional reconfiguration stored in UE variable VarConditionalReconfig.
[0145] In some embodiments, the terminal device 120 may receive, from an MN (i.e., the network device 110) , a configuration of the conditional reconfiguration, and an MR-DC SCG configuration IE (e.g., mrdc-SecondaryCellGroupConfig IE) set to release may be included in an MCG configuration of the configuration of the conditional reconfiguration. In other words, the MN may include the mrdc-SecondaryCellGroupConfig IE set to release in the MCG configuration of the configuration of the conditional reconfiguration.
[0146] In some embodiments, the terminal device 120 may receive a reference configuration from an MN (i.e., the network device 110) , and an MR-DC SCG configuration IE set to release may be included in an MCG configuration of the reference configuration. In other words, the MN may include the mrdc-SecondaryCellGroupConfig IE set to release in the MCG configuration of the reference configuration.
[0147] Continuing to refer to FIG. 5, in some embodiments, if the execution condition of the conditional reconfiguration associated with the SCG is fulfilled, for a radio bearer using a secondary key in a current configuration of the terminal device 120, the terminal device 120 may keep 540 PDCP and SDAP entities associated with the radio bearer, and state variables, buffers and timers of the PDCP and SDAP entities, and release fields related to the radio bearer except for an ID of the radio bearer.
[0148] Continuing to refer to FIG. 5, in some embodiments, if the execution condition of the conditional reconfiguration associated with the SCG is fulfilled, the terminal device 120 may perform 550 a release of SN-terminated DRBs. For example, the terminal device 120 may perform release of all SN-terminated DRBs. An SN-terminated DRB may refer to a DRB using a secondary key. In some embodiments, the terminal device 120 may perform a release of direct SRB between an SN and the terminal device 120. For example, the terminal device 120 may perform release of all direct SRBs between the SN and the terminal device 120. In some embodiments, the terminal device 120 may maintain value of state variables of PDCP entities and identities associated with DRBs and SRBs, (e.g., all DRBs and SRBs, or all SN-terminated DRBs and direct SRBs between the SN and the terminal device 120) .
[0149] In some embodiments, when applying the complete configuration or applying the conditional reconfiguration by first considering the reference configuration as the current configuration, the terminal device 120 may perform an SRB or DRB addition procedure. In some embodiments, during the SRB or DRB addition procedure, the terminal device 120 may establish a PDCP entity and configure the PDCP entity with the maintained value of state variables of the PDCP entity corresponding to the released RB with the same identity. In other words, the initial value of the state variables of the established PDCP entity are set as the maintained value of the state variables of PDCP entity corresponding to the released RB with the same identity.
[0150] In this way, a terminal device may perform MR-DC release and SN-terminated DRB release when an execution condition of a conditional reconfiguration associated with an SCG is fulfilled, and a complete configuration during conditional reconfiguration execution may be defined.
[0151] It is to be understood that the MR-DC release or SCG release may be carried out in any suitable ways existing or to be developed in future, and the present disclosure does not limit this aspect.
[0152] EXAMPLE IMPLEMENTATION OF SUBSEQUENT CPAC MAINTENANCE
[0153] Conventionally, upon initiating an RRC re-establishment procedure, a terminal device may remove all the entries within an MCG configuration (e.g., MCG VarConditionalReconfig) . However, it is unclear whether to remove a conditional reconfiguration with a subsequent CPAC configuration in this case.
[0154] Furthermore, during a CHO recovery procedure, all conditional reconfigurations may be removed conventionally. That is, for RRC reconfiguration applied due to a conditional reconfiguration execution upon cell selection performed while a timer (e.g., T311) for radio link failure detection was running, all conditional reconfigurations may be removed. However, it is unclear whether to remove a conditional reconfiguration with a subsequent CPAC configuration in this case.
[0155] In view of the above, embodiments of the present disclosure provide a solution of communication for a subsequent CPAC so as to overcome the above and other potential issues. The solution will be described in connection with FIG. 6 below. FIG. 6 illustrates a signaling chart illustrating another example process 600 of communication for a subsequent CPAC according to embodiments of the present disclosure. For the purpose of discussion, the process 600 will be described with reference to FIG. 1. The process 600 may involve the terminal device 120 and the network device 110. In this example, the network device 110 is an MN serving the terminal device 120.
[0156] As shown in FIG. 6, the network device 110 may transmit 610, to the terminal device 120, a set of conditional reconfigurations associated with a set of candidate PSCells. In some embodiments, part or all of the set of conditional reconfigurations may support a subsequent CPAC (i.e., have a subsequent CPAC configuration) and comprise execution conditions for the subsequent CPAC.
[0157] With reference to FIG. 6, the terminal device 120 may determine 620 that at least one of an RRC re-establishment procedure or a CHO recovery procedure is initiated. In this case, the terminal device 120 may maintain 630 a conditional reconfiguration supporting a subsequent CPAC during the at least one of the RRC re-establishment procedure or the CHO recovery procedure.
[0158] In some embodiments, the terminal device 120 may maintain (i.e., not release) a conditional reconfiguration supporting a subsequent CPAC in the set of conditional reconfigurations during the RRC re-establishment procedure.
[0159] For illustration, an example procedure may be described as below.
[0160] During RRC re-establishment procedure, upon selecting a suitable NR cell, the UE removes all the entries in the condReconfigList within the MCG VarConditionalReconfig for which subsequentCondReconfig is not present (or the UE remove all the entries in the condReconfigList within the MCG VarConditionalReconfig except the entries for which subsequentCondReconfig is presented) .
[0161] In this example, an IE “condReconfigList” denotes a list of conditional reconfigurations, an IE “subsequentCondReconfig” denotes a subsequent CPAC configuration of a conditional reconfiguration, and an IE “MCG VarConditionalReconfig” denotes a conditional reconfiguration associated with an MCG.
[0162] In this way, a condition reconfiguration supporting a subsequent CPAC may be used after an RRC re-establishment procedure.
[0163] In some embodiments, the terminal device 120 may maintain (i.e., not release) a conditional reconfiguration supporting a subsequent CPAC in the set of conditional reconfigurations during the CHO recovery procedure.
[0164] For illustration, an example procedure may be described as below.
[0165] If the RRCReconfiguration is applied due to a conditional reconfiguration execution upon cell selection performed while timer T311 was running, the UE removes all the entries in the condReconfigList within the MCG VarConditionalReconfig and the SCG VarConditionalReconfig for which subsequentCondReconfig is not present (or the UE remove all the entries in the condReconfigList within the MCG VarConditionalReconfig and the SCG VarConditionalReconfig except the entries for which subsequentCondReconfig is presented) .
[0166] In this example, an IE “condReconfigList” denotes a list of conditional reconfigurations, an IE “subsequentCondReconfig” denotes a subsequent CPAC configuration of a conditional reconfiguration, an IE “MCG VarConditionalReconfig” denotes a conditional reconfiguration associated with an MCG, and an IE “SCG VarConditionalReconfig” denotes a conditional reconfiguration associated with an SCG.
[0167] In this way, a condition reconfiguration supporting a subsequent CPAC may be used after a CHO recovery procedure.
[0168] It is to be understood that the RRC re-establishment procedure and the CHO recovery procedure may be carried out in any suitable ways existing or to be developed in future, and the present disclosure does not limit this aspect.
[0169] It is also to be understood that operations described in the processes 200 to 600 may be carried out separately or in any suitable combinations, and the present disclosure does not limit this aspect.
[0170] EXAMPLE IMPLEMENTATION OF METHODS
[0171] Accordingly, embodiments of the present disclosure provide methods of communication implemented at a terminal device. These methods will be described below with reference to FIGs. 7 to 11.
[0172] FIG. 7 illustrates a flowchart of an example method 700 of communication implemented at a terminal device in accordance with some embodiments of the present disclosure. For example, the method 700 may be performed at the terminal device 120 as shown in FIG. 1. It is to be understood that the method 700 may include additional blocks not shown and / or may omit some blocks as shown, and the scope of the present disclosure is not limited in this regard.
[0173] As shown in FIG. 7, at block 710, the terminal device 120 determines that an RRC reconfiguration message indicating a reconfiguration with synchronization is received or the reconfiguration with synchronization is successfully completed.
[0174] At block 720, the terminal device 120 initiates a conditional reconfiguration evaluation for a first set of conditional reconfigurations supporting a subsequent CPAC.
[0175] In some embodiments, the reconfiguration with synchronization may be for an MCG. In some embodiments, if a procedure for reporting a failure in the MCG is initiated, the terminal device 120 may stop a conditional reconfiguration evaluation for a second set of conditional reconfigurations. In some embodiments, the reconfiguration with synchronization for the MCG may be received as a response to a reporting of a failure in the MCG.
[0176] In some embodiments, the reconfiguration with synchronization may be for an SCG. In some embodiments, if a procedure for reporting a failure in the SCG is initiated, the terminal device 120 may stop a conditional reconfiguration evaluation for a third set of conditional reconfigurations.
[0177] With the method 700, a conditional reconfiguration evaluation for a subsequent CPAC may be continued after an MCG or SCG link is recovered.
[0178] FIG. 8 illustrates a flowchart of another example method 800 of communication implemented at a terminal device in accordance with some embodiments of the present disclosure. For example, the method 800 may be performed at the terminal device 120 as shown in FIG. 1. It is to be understood that the method 800 may include additional blocks not shown and / or may omit some blocks as shown, and the scope of the present disclosure is not limited in this regard.
[0179] As shown in FIG. 8, at block 810, the terminal device 120 receives, from the network device 110, a list of conditional reconfigurations associated with a list of candidate PSCells.
[0180] At block 820, the terminal device 120 determines that an SCG release or an MR-DC release is triggered.
[0181] At block 830, the terminal device 120 determines that a first conditional reconfiguration associated with a first candidate PSCell in the list of conditional reconfigurations comprises an execution condition for a CPA or subsequent CPA.
[0182] At block 840, the terminal device 120 replaces an execution condition for the first conditional reconfiguration with the execution condition for the CPA or subsequent CPA.
[0183] In some embodiments, if a second conditional reconfiguration associated with a second candidate PSCell in the list of conditional reconfigurations does not comprise an execution condition for the CPA or subsequent CPA, the terminal device 120 may perform an operation comprising at least one of the following: suspending a conditional reconfiguration evaluation for the second conditional reconfiguration; suspending the second conditional reconfiguration; or considering the second conditional reconfiguration as invalid.
[0184] With the method 800, a terminal device may perform or suspend a conditional reconfiguration for subsequent CPA for maintained conditional reconfigurations.
[0185] FIG. 9 illustrates a flowchart of another example method 900 of communication implemented at a terminal device in accordance with some embodiments of the present disclosure. For example, the method 900 may be performed at the terminal device 120 as shown in FIG. 1. It is to be understood that the method 900 may include additional blocks not shown and / or may omit some blocks as shown, and the scope of the present disclosure is not limited in this regard.
[0186] As shown in FIG. 9, at block 910, the terminal device 120 determines that an execution condition of a conditional reconfiguration supporting a subsequent CPAC is fulfilled.
[0187] At block 920, the terminal device 120 maintains a set of conditional reconfigurations supporting the subsequent CPAC and a security cell set identity of a serving cell by at least one of the following: performing a full configuration procedure during which the terminal device maintains the set of conditional reconfigurations and the security cell set identity of the serving cell, or releasing or clearing a dedicated radio configuration except for the set of conditional reconfigurations.
[0188] In some embodiments where the set of conditional reconfigurations is maintained by performing the full configuration procedure, if the full configuration procedure is performed, the terminal device 120 may apply a complete configuration of the conditional reconfiguration. Alternatively, if the full configuration procedure is performed, the terminal device 120 may apply the conditional reconfiguration by first considering a reference configuration for a list of conditional reconfigurations as a current configuration.
[0189] In some embodiments where the set of conditional reconfigurations is maintained by performing the full configuration procedure, the terminal device 120 may generate a complete configuration of the conditional reconfiguration by including a configuration of the full configuration procedure in an MCG configuration of the complete configuration.
[0190] In some embodiments where the set of conditional reconfigurations is maintained by performing the full configuration procedure, the terminal device 120 may receive, from an MN (e.g., the network device 110) , the configuration of the full configuration procedure in a MCG configuration of a reference configuration for a list of conditional reconfigurations or in a MCG configuration of a configuration of the conditional reconfiguration. It is to be understood that any combination of the above operations may also be feasible.
[0191] In some embodiments where the set of conditional reconfigurations is maintained by releasing or clearing the dedicated radio configuration, the terminal device 120 may release, for a PDU session that is a part of a current configuration of the terminal device 120, an SDAP entity of the terminal device 120 and a DRB associated with the PDU session.
[0192] In some embodiments where the set of conditional reconfigurations is maintained by releasing or clearing the dedicated radio configuration, the terminal device 120 may keep, for a radio bearer in a current configuration of the terminal device, PDCP and SDAP entities associated with the radio bearer and state variables, buffers and timers of the PDCP and SDAP entities, and release fields related to the radio bearer except for an identity of the radio bearer.
[0193] In some embodiments where the set of conditional reconfigurations is maintained by releasing or clearing the dedicated radio configuration, the terminal device 120 may release or clear a common radio configuration. In some embodiments where the set of conditional reconfigurations is maintained by releasing or clearing the dedicated radio configuration, the terminal device 120 may use default values for a timer configured for radio link failure detection and a timer configured for an RRC reestablishment and constants for a number of time of continuous reception of an out-of-sync indication and a number of time of continuous reception of an in-sync indication. In some embodiments where the set of conditional reconfigurations is maintained by releasing or clearing the dedicated radio configuration, the terminal device 120 may apply a complete configuration associated with the conditional reconfiguration. In some embodiments where the set of conditional reconfigurations is maintained by releasing or clearing the dedicated radio configuration, the terminal device 120 may apply the conditional reconfiguration by first considering a reference configuration for a list of conditional reconfigurations as a current configuration. It is to be understood that any combination of the above operations may also be feasible.
[0194] With the method 900, a complete configuration for a conditional reconfiguration may be applied.
[0195] FIG. 10 illustrates a flowchart of another example method 1000 of communication implemented at a terminal device in accordance with some embodiments of the present disclosure. For example, the method 1000 may be performed at the terminal device 120 as shown in FIG. 1. It is to be understood that the method 1000 may include additional blocks not shown and / or may omit some blocks as shown, and the scope of the present disclosure is not limited in this regard.
[0196] As shown in FIG. 10, at block 1010, the terminal device 120 determines that an execution condition of a conditional reconfiguration associated with an SCG is fulfilled.
[0197] At block 1020, the terminal device 120 performs an operation comprising at least one of the following: performing an MR-DC release or an SCG release; performing a release of SN-terminated DRBs; or keeping, for a radio bearer using a secondary key in a current configuration of the terminal device, PDCP and SDAP entities associated with the radio bearer and state variables, buffers and timers of the PDCP and SDAP entities, and releasing fields related to the radio bearer except for an identity of the radio bearer.
[0198] In some embodiments, the terminal device 120 may perform the MR-DC release or the SCG release by at least one of the following: performing the MR-DC release or the SCG release before applying a complete configuration associated with the conditional reconfiguration; including, upon generation of the complete configuration, an MR-DC SCG configuration IE set to release in an MCG configuration of the complete configuration; or receiving, from a master node, a configuration of the conditional reconfiguration or a reference configuration, the MR-DC SCG configuration IE set to release being included in an MCG configuration of the reference configuration or in an MCG configuration of the configuration of the conditional reconfiguration.
[0199] With the method 1000, a complete configuration for a conditional reconfiguration may also be applied.
[0200] FIG. 11 illustrates a flowchart of another example method 1100 of communication implemented at a terminal device in accordance with some embodiments of the present disclosure. For example, the method 1100 may be performed at the terminal device 120 as shown in FIG. 1. It is to be understood that the method 1100 may include additional blocks not shown and / or may omit some blocks as shown, and the scope of the present disclosure is not limited in this regard.
[0201] As shown in FIG. 11, at block 1110, the terminal device 120 determines that at least one of an RRC re-establishment procedure or a CHO recovery procedure is initiated.
[0202] At block 1120, the terminal device 120 maintains a conditional reconfiguration supporting a subsequent CPAC during the at least one of the RRC re-establishment procedure or the CHO recovery procedure.
[0203] In other words, upon determination that the RRC re-establishment procedure is initiated, the terminal device 120 may maintain the conditional reconfiguration supporting the subsequent CPAC during the RRC re-establishment procedure. Upon determination that the CHO recovery procedure is initiated, the terminal device 120 may maintain the conditional reconfiguration supporting the subsequent CPAC during the CHO recovery procedure.
[0204] With the method 1100, a conditional reconfiguration supporting a subsequent CPAC may be used after an RRC re-establishment procedure or a CHO recovery procedure.
[0205] It is to be understood that operations of the methods 700 to 1100 correspond to that described with reference to FIGs. 2 to 6, and thus other details are not repeated here for conciseness.
[0206] EXAMPLE IMPLEMENTATION OF DEVICE
[0207] FIG. 12 is a simplified block diagram of a device 1200 that is suitable for implementing embodiments of the present disclosure. The device 1200 can be considered as a further example implementation of the terminal device 120 or the network device 110 as shown in FIG. 1. Accordingly, the device 1200 can be implemented at or as at least a part of the terminal device 120 or the network device 110.
[0208] As shown, the device 1200 includes a processor 1210, a memory 1220 coupled to the processor 1210, a suitable transceiver 1240 coupled to the processor 1210, and a communication interface coupled to the transceiver 1240. The memory 1210 stores at least a part of a program 1230. The transceiver 1240 may be for bidirectional communications or a unidirectional communication based on requirements. The transceiver 1240 may include at least one of a transmitter 1242 or a receiver 1244. The transmitter 1242 and the receiver 1244 may be functional modules or physical entities. The transceiver 1240 has at least one antenna to facilitate communication, though in practice an Access Node mentioned in this application may have several ones. The communication interface may represent any interface that is necessary for communication with other network elements, such as X2 / Xn interface for bidirectional communications between eNBs / gNBs, S1 / NG interface for communication between a Mobility Management Entity (MME) / Access and Mobility Management Function (AMF) / SGW / UPF and the eNB / gNB, Un interface for communication between the eNB / gNB and a relay node (RN) , or Uu interface for communication between the eNB / gNB and a terminal device.
[0209] The program 1230 is assumed to include program instructions that, when executed by the associated processor 1210, enable the device 1200 to operate in accordance with the embodiments of the present disclosure, as discussed herein with reference to FIGs. 1 to 11. The embodiments herein may be implemented by computer software executable by the processor 1210 of the device 1200, or by hardware, or by a combination of software and hardware. The processor 1210 may be configured to implement various embodiments of the present disclosure. Furthermore, a combination of the processor 1210 and memory 1220 may form processing means 1250 adapted to implement various embodiments of the present disclosure.
[0210] The memory 1220 may be of any type suitable to the local technical network and may be implemented using any suitable data storage technology, such as a non-transitory computer readable storage medium, semiconductor based memory devices, magnetic memory devices and systems, optical memory devices and systems, fixed memory and removable memory, as non-limiting examples. While only one memory 1220 is shown in the device 1200, there may be several physically distinct memory modules in the device 1200. The processor 1210 may be of any type suitable to the local technical network, and may include one or more of general purpose computers, special purpose computers, microprocessors, digital signal processors (DSPs) and processors based on multicore processor architecture, as non-limiting examples. The device 1200 may have multiple processors, such as an application specific integrated circuit chip that is slaved in time to a clock which synchronizes the main processor.
[0211] In some embodiments, a terminal device comprises a circuitry configured to: determine that an RRC reconfiguration message indicating a reconfiguration with synchronization is received or the reconfiguration with synchronization is successfully completed; and initiate a conditional reconfiguration evaluation for a first set of conditional reconfigurations supporting a subsequent CPAC.
[0212] In some embodiments, a terminal device comprises a circuitry configured to: receive, from a network device, a list of conditional reconfigurations associated with a list of candidate PSCells; determine that an SCG release or an MR-DC release is triggered; and in accordance with a determination that a first conditional reconfiguration associated with a first candidate PSCell in the list of conditional reconfigurations comprises an execution condition for a CPA or subsequent CPA, replace an execution condition for the first conditional reconfiguration with the execution condition for the CPA or subsequent CPA.
[0213] In some embodiments, a terminal device comprises a circuitry configured to: determine that an execution condition of a conditional reconfiguration supporting a subsequent CPAC is fulfilled; and maintain a set of conditional reconfigurations supporting the subsequent CPAC and a security cell set identity of a serving cell by at least one of the following: performing a full configuration procedure during which the terminal device maintains the set of conditional reconfigurations and the security cell set identity of the serving cell, or releasing or clearing a dedicated radio configuration except for the set of condition reconfigurations.
[0214] In some embodiments, a terminal device comprises a circuitry configured to: determine that an execution condition of a conditional reconfiguration associated with an SCG is fulfilled; and perform an operation comprising at least one of the following: performing an MR-DC release or an SCG release, performing a release of SN-terminated DRBs, or keeping, for a radio bearer using a secondary key in a current configuration of the terminal device, PDCP and SDAP entities associated with the radio bearer and state variables, buffers and timers of the PDCP and SDAP entities, and releasing fields related to the radio bearer except for an identity of the radio bearer.
[0215] In some embodiments, a terminal device comprises a circuitry configured to: determine that at least one of an RRC re-establishment procedure or a CHO recovery procedure is initiated; and maintain a conditional reconfiguration supporting a subsequent CPAC during the at least one of the RRC re-establishment procedure or the CHO recovery procedure.
[0216] The term “circuitry” used herein may refer to hardware circuits and / or combinations of hardware circuits and software. For example, the circuitry may be a combination of analog and / or digital hardware circuits with software / firmware. As a further example, the circuitry may be any portions of hardware processors with software including digital signal processor (s) , software, and memory (ies) that work together to cause an apparatus, such as a terminal device or a network device, to perform various functions. In a still further example, the circuitry may be hardware circuits and or processors, such as a microprocessor or a portion of a microprocessor, that requires software / firmware for operation, but the software may not be present when it is not needed for operation. As used herein, the term circuitry also covers an implementation of merely a hardware circuit or processor (s) or a portion of a hardware circuit or processor (s) and its (or their) accompanying software and / or firmware.
[0217] Generally, various embodiments of the present disclosure may be implemented in hardware or special purpose circuits, software, logic or any combination thereof. Some aspects may be implemented in hardware, while other aspects may be implemented in firmware or software which may be executed by a controller, microprocessor or other computing device. While various aspects of embodiments of the present disclosure are illustrated and described as block diagrams, flowcharts, or using some other pictorial representation, it will be appreciated that the blocks, apparatus, systems, techniques or methods described herein may be implemented in, as non-limiting examples, hardware, software, firmware, special purpose circuits or logic, general purpose hardware or controller or other computing devices, or some combination thereof.
[0218] The present disclosure also provides at least one computer program product tangibly stored on a non-transitory computer readable storage medium. The computer program product includes computer-executable instructions, such as those included in program modules, being executed in a device on a target real or virtual processor, to carry out the process or method as described above with reference to FIGs. 1 to 11. Generally, program modules include routines, programs, libraries, objects, classes, components, data structures, or the like that perform particular tasks or implement particular abstract data types. The functionality of the program modules may be combined or split between program modules as desired in various embodiments. Machine-executable instructions for program modules may be executed within a local or distributed device. In a distributed device, program modules may be located in both local and remote storage media.
[0219] Program code for carrying out methods of the present disclosure may be written in any combination of one or more programming languages. These program codes may be provided to a processor or controller of a general purpose computer, special purpose computer, or other programmable data processing apparatus, such that the program codes, when executed by the processor or controller, cause the functions / operations specified in the flowcharts and / or block diagrams to be implemented. The program code may execute entirely on a machine, partly on the machine, as a stand-alone software package, partly on the machine and partly on a remote machine or entirely on the remote machine or server.
[0220] The above program code may be embodied on a machine readable medium, which may be any tangible medium that may contain, or store a program for use by or in connection with an instruction execution system, apparatus, or device. The machine readable medium may be a machine readable signal medium or a machine readable storage medium. A machine readable medium may include but not limited to an electronic, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any suitable combination of the foregoing. More specific examples of the machine readable storage medium would include an electrical connection having one or more wires, a portable computer diskette, a hard disk, a random access memory (RAM) , a read-only memory (ROM) , an erasable programmable read-only memory (EPROM or Flash memory) , an optical fiber, a portable compact disc read-only memory (CD-ROM) , an optical storage device, a magnetic storage device, or any suitable combination of the foregoing.
[0221] Further, while operations are depicted in a particular order, this should not be understood as requiring that such operations be performed in the particular order shown or in sequential order, or that all illustrated operations be performed, to achieve desirable results. In certain circumstances, multitasking and parallel processing may be advantageous. Likewise, while several specific implementation details are contained in the above discussions, these should not be construed as limitations on the scope of the present disclosure, but rather as descriptions of features that may be specific to particular embodiments. Certain features that are described in the context of separate embodiments may also be implemented in combination in a single embodiment. Conversely, various features that are described in the context of a single embodiment may also be implemented in multiple embodiments separately or in any suitable sub-combination.
[0222] Although the present disclosure has been described in language specific to structural features and / or methodological acts, it is to be understood that the present disclosure defined in the appended claims is not necessarily limited to the specific features or acts described above. Rather, the specific features and acts described above are disclosed as example forms of implementing the claims.
Claims
1.A terminal device comprising:a processor configured to cause the terminal device to:determine that a radio resource control (RRC) reconfiguration message indicating a reconfiguration with synchronization is received or the reconfiguration with synchronization is successfully completed; andinitiate a conditional reconfiguration evaluation for a first set of conditional reconfigurations supporting a subsequent conditional primary secondary cell addition or change (CPAC) .2.The terminal device of claim 1, wherein the reconfiguration with synchronization is for a master cell group (MCG) , and wherein the terminal device is further caused to:in accordance with a determination that a procedure for reporting a failure in the MCG is initiated, stop a conditional reconfiguration evaluation for a second set of conditional reconfigurations.3.The terminal device of claim 1, wherein the reconfiguration with synchronization is for a master cell group (MCG) , and the reconfiguration with synchronization is received as a response to a reporting of a failure in the MCG.4.The terminal device of claim 1, wherein the reconfiguration with synchronization is for a secondary cell group (SCG) , and wherein the terminal device is further caused to:in accordance with a determination that a procedure for reporting a failure in the SCG is initiated, stop a conditional reconfiguration evaluation for a third set of conditional reconfigurations.5.A terminal device comprising:a processor configured to cause the terminal device to:receive, from a network device, a list of conditional reconfigurations associated with a list of candidate primary secondary cells (PSCells) ;determine that a secondary cell group (SCG) release or a multi-rate dual connectivity (MR-DC) release is triggered; andin accordance with a determination that a first conditional reconfiguration associated with a first candidate PSCell in the list of conditional reconfigurations comprises an execution condition for a conditional primary secondary cell addition (CPA) or subsequent CPA, replace an execution condition for the first conditional reconfiguration with the execution condition for the CPA or subsequent CPA.6.The terminal device of claim 5, wherein the terminal device is further caused to:in accordance with a determination that a second conditional reconfiguration associated with a second candidate PSCell in the list of conditional reconfigurations comprises no execution conditions for the CPA or subsequent CPA, perform an operation comprising at least one of the following:suspending a conditional reconfiguration evaluation for the second conditional reconfiguration;suspending the second conditional reconfiguration; orconsidering the second conditional reconfiguration as invalid.7.A terminal device comprising:a processor configured to cause the terminal device to:determine that an execution condition of a conditional reconfiguration supporting a subsequent conditional addition or change (CPAC) is fulfilled; andmaintain a set of conditional reconfigurations supporting the subsequent conditional addition or change (CPAC) and a security cell set identity of a serving cell by at least one of the following:performing a full configuration procedure during which the terminal device maintains the set of conditional reconfigurations and the security cell set identity of the serving cell, orreleasing or clearing a dedicated radio configuration except for the set of conditional reconfigurations.8.The terminal device of claim 7, wherein the set of conditional reconfigurations is maintained by performing the full configuration procedure, and wherein the terminal device is further caused to at least one of the following:in accordance with a determination that the full configuration procedure is performed, apply a complete configuration of the conditional reconfiguration, or apply the conditional reconfiguration by first considering a reference configuration for a list of conditional reconfigurations as a current configuration;generate a complete configuration of the conditional reconfiguration by including a configuration of the full configuration procedure in a master cell group (MCG) configuration of the complete configuration; orreceive, from a master node, the configuration of the full configuration procedure in a MCG configuration of the reference configuration for the list of conditional reconfigurations or in a MCG configuration of a configuration of the conditional reconfiguration.9.The terminal device of claim 7, wherein the set of conditional reconfigurations is maintained by releasing or clearing the dedicated radio configuration, and wherein the terminal device is further caused to:release, for a protocol data unit (PDU) session that is a part of a current configuration of the terminal device, a service data adaptation protocol (SDAP) entity of the terminal device and a data radio bear (DRB) associated with the PDU session.10.The terminal device of claim 7, wherein the set of conditional reconfigurations is maintained by releasing or clearing the dedicated radio configuration, and wherein the terminal device is further caused to:keep, for a radio bearer in a current configuration of the terminal device, packet data convergence protocol (PDCP) and service data adaptation protocol (SDAP) entities associated with the radio bearer and state variables, buffers and timers of the PDCP and SDAP entities; andrelease fields related to the radio bearer except for an identity of the radio bearer.11.The terminal device of claim 7, wherein the set of conditional reconfigurations is maintained by releasing or clearing the dedicated radio configuration, and wherein the terminal device is further caused to at least one of the following:release or clear a common radio configuration;use default values for a timer configured for radio link failure detection and a timer configured for a radio resource control (RRC) reestablishment and constants for a number of time of continuous reception of an out-of-sync indication and a number of time of continuous reception of an in-sync indication; orapply a complete configuration associated with the conditional reconfiguration, or apply the conditional reconfiguration by first considering a reference configuration for a list of conditional reconfigurations as a current configuration.