Method and apparatus for mobility robustness optimization mechanism for conditional handover procedures

The method and apparatus for UEs to manage CHO procedures by transmitting assistance information optimize the MRO mechanism, addressing handover failures and enhancing mobility robustness in 3GPP 5G systems.

JP7723735B2Active Publication Date: 2025-08-14LENOVO (BEIJING) LTD
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Patent Information

Application Number
JP2023519235
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2020-09-25
Publication Date
2025-08-14
Estimated Expiration
2040-09-25

AI Technical Summary

Technical Problem

The 3GPP 5G system lacks a detailed mobility robustness optimization (MRO) mechanism for conditional handover (CHO) procedures, leading to issues such as Too Early Handover, Too Late Handover, and Handover to the Wrong Cell, which are not effectively addressed.

Method used

A method and apparatus for a UE to receive CHO configuration information, perform handover or conditional handover procedures based on execution conditions, and transmit assistance information to the target or candidate cells, including details like CHO candidate cell lists, execution conditions, and timer durations, to optimize mobility.

Benefits of technology

Enhances the MRO mechanism by providing detailed information for network optimization, reducing handover failures and improving mobility robustness in wireless communication systems.

✦ Generated by Eureka AI based on patent content.

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Abstract

[0003] An embodiment of the present application relates to a method and apparatus for a mobility robustness optimization (MRO) mechanism for a conditional handover (CHO) procedure. According to one embodiment of the present application, the method may include receiving CHO configuration information for a user equipment (UE), the CHO configuration information being associated with one or more CHO candidate cells and including a set of execution conditions corresponding to the one or more CHO candidate cells; performing a handover (HO) procedure associated with a target cell in response to receiving a handover command from a source cell, or performing a CHO procedure associated with the CHO candidate cell in response to satisfying the execution conditions of the CHO candidate cell; starting a timer for the HO procedure or the CHO procedure; and stopping the timer and transmitting assistance information to the target cell or the CHO candidate cell in response to successfully accessing the target cell or the CHO candidate cell. In response to a failure in performing the HO procedure or the CHO procedure, the UE performs a re-establishment procedure and selects a cell. If the selected cell is a CHO candidate cell, the UE performs the CHO procedure and stores information regarding whether the execution condition for each of the one or more CHO candidate cells is met.
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Description

[Technical Field]

[0001] FIELD Embodiments of the present application generally relate to wireless communication technologies, and particularly to a method and apparatus for a mobility robustness optimization (MRO) mechanism for a conditional handover (CHO) procedure. [Background technology]

[0002] A base station (BS) may have several cells (or areas) for providing communication services. When a user equipment (UE) moves from a serving cell of a source BS to a target cell of a target BS, a handover procedure is performed.

[0003] When a radio link failure (RLF) or handover (HO) failure occurs for a UE, the UE can perform a radio resource control (RRC) re-establishment procedure. The UE can access a cell if the RRC re-establishment procedure is successful. The accessed network requests UE information from the UE so that the network can optimize mobility issues based on the UE information, including the RLF report from the UE. Therefore, the UE will send a failure report to the network.

[0004] The 3rd Generation Partnership Project (3GPP) 5G system or network has adopted an MRO mechanism, but details regarding the MRO mechanism for the CHO procedure have not yet been discussed in the 3GPP 5G technology. Summary of the Invention [Means for solving the problem]

[0005] Some embodiments of the present application provide a method that can be implemented by a UE, the method including: receiving CHO configuration information for the UE, the CHO configuration information being associated with one or more CHO candidate cells and including a set of execution conditions corresponding to the one or more CHO candidate cells, the UE being in an RRC connected state; performing an HO procedure associated with a target cell in response to receiving a handover command from the source cell or performing a CHO procedure associated with the CHO candidate cell in response to satisfying the execution conditions for the CHO candidate cell; starting a timer for the HO procedure or the CHO procedure; and stopping the timer and transmitting assistance information to the target cell or the CHO candidate cell in response to successfully accessing the target cell or the CHO candidate cell.

[0006] Some embodiments of the present application provide a further method that may be implemented by a UE, the method including: receiving CHO configuration information for the UE, the CHO configuration information being associated with one or more CHO candidate cells and including a set of execution conditions corresponding to the one or more CHO candidate cells, the UE being in an RRC connected state; performing an RRC re-establishment procedure in response to an occurrence of a failure, the failure being one of an RLF, an HO failure, and a CHO failure; selecting a first cell; performing the CHO procedure in response to the first cell being configured with the CHO configuration information; and storing information regarding whether the execution condition for each of the one or more CHO candidate cells is satisfied.

[0007] Some embodiments of the present application also provide an apparatus for wireless communication, the apparatus including: a non-transitory computer-readable medium having computer-executable instructions stored thereon; a receiving circuit; a transmitting circuit; and a processor coupled to the non-transitory computer-readable medium, the receiving circuit, and the transmitting circuit, wherein the computer-executable instructions cause the processor to perform the above-mentioned method performed by a UE.

[0008] The details of one or more examples are set forth in the accompanying drawings and the description below. Other features, objects, and advantages will become apparent from the description and drawings, and from the claims.

[0009] To describe the manner in which the advantages and features of the present application may be obtained, the present application will be described by reference to specific embodiments thereof that are illustrated in the accompanying drawings, which depict only exemplary embodiments of the present application and therefore should not be considered limiting of its scope. [Brief explanation of the drawings]

[0010] [Figure 1] 1 is a schematic diagram of a wireless communication system according to some embodiments of the present application. [Figure 2] 1 is an exemplary flowchart of an intra-AMF / UPF conditional handover procedure according to some embodiments of the present application; [Figure 3] FIG. 1 illustrates an exemplary UE information procedure according to some embodiments of the present application. [Figure 4] FIG. 1 illustrates an exemplary failure indication procedure according to some embodiments of the present application. [Figure 5] 1 is an exemplary flowchart of a method for transmitting assistant information according to some embodiments of the present application. [Figure 6] 1 is an exemplary flow chart of a method for performing a CHO procedure according to some embodiments of the present application. [Figure 7]FIG. 1 is an exemplary block diagram of an apparatus according to some embodiments of the present application. DETAILED DESCRIPTION OF THE INVENTION

[0011] The detailed description of the accompanying drawings is intended as an illustration of a preferred embodiment of the present application and is not intended to represent the only form in which the present application may be practiced. It is to be understood that the same or equivalent function may be accomplished by various embodiments that are intended to be encompassed within the spirit and scope of the present application.

[0012] Reference is now made in detail to several embodiments of the present application, examples of which are illustrated in the accompanying drawings. For ease of understanding, the embodiments are provided based on specific network architectures and new service scenarios, such as 3GPP 5G, 3GPP LTE Release 8, etc. All embodiments in the present application are intended to be applicable to similar technical challenges as well as the evolution of network architectures and new service scenarios. Furthermore, the terminology described in the present application may change, but this will not affect the principles of the present application.

[0013] FIG. 1 shows a schematic diagram of a wireless communication system according to some embodiments of the present application.

[0014] 1, the wireless communication system 100 includes at least one user equipment (UE) 101 and at least one base station (BS) 102. Specifically, the wireless communication system 100 includes, for illustrative purposes, one UE 101 (e.g., UE 101a) and three BSs 102 (e.g., BS 102a, BS 102b, and BS 102c). Although a particular number of UEs 101 and BSs 102 are depicted in FIG. 1, it is contemplated that any number of UEs 101 and BSs 102 may be included in the wireless communication system 100.

[0015] The UE 101 may include computing devices such as desktop computers, laptop computers, personal digital assistants (PDAs), tablet computers, smart televisions (e.g., televisions connected to the Internet), set-top boxes, game consoles, security systems (including security cameras), vehicle on-board computers, network devices (e.g., routers, switches, and modems), Internet of Things (IoT) devices, etc. According to some embodiments of the present application, the UE 101 may include a portable wireless communication device, a smartphone, a cellular phone, a flip phone, a device with a subscriber identity module, a personal computer, a selective call receiver, or any other device capable of transmitting and receiving communication signals over a wireless network. In some embodiments of the present application, the UE 101 includes a wearable device such as a smart watch, a fitness band, or an optical head-mounted display. Furthermore, the UE 101 may be referred to as a subscriber unit, a mobile, a mobile station, a user, a terminal, a mobile terminal, a wireless terminal, a fixed terminal, a subscriber station, a user terminal, or a device, or may be described using other terms used in the art. The UE 101 can communicate directly with the BS 102 via uplink (UL) communication signals.

[0016] In some embodiments of the present application, the UEs 101 may each be deployed in an IoT application, an eMBB application, and / or a URLLC application. It is contemplated that the particular types of applications deployed in the UEs 101 may vary and may be non-limiting.

[0017] The BSs 102 may be dispersed throughout a geographic region. In some embodiments of the present application, each BS 102 may be referred to as an access point, access terminal, base, base unit, macrocell, Node B, evolved Node B (eNB), gNB, NG-RAN (next generation radio access network) node, Home Node B, relay node, or device, or may be described using other terminology used in the art. The BSs 102 are generally part of a radio access network, which may include one or more controllers communicatively coupled to one or more corresponding BSs 102.

[0018] The wireless communication system 100 may be compatible with any type of network capable of transmitting and receiving wireless communication signals. For example, the wireless communication system 100 may be compatible with a wireless communication network, a cellular telephone network, a time division multiple access (TDMA)-based network, a code division multiple access (CDMA)-based network, an orthogonal frequency division multiple access (OFDMA)-based network, an LTE network, a 3GPP-based network, a 3GPP 5G network, a satellite communication network, a high altitude platform network, and / or other communication networks.

[0019] In some embodiments of the present application, the wireless communication system 100 is compatible with 5G 3GPP protocols, where the BS 102 transmits data on the downlink (DL) using an OFDM modulation scheme and the UE 101 transmits data on the UL using a single-carrier frequency division multiple access (SC-FDMA) or OFDM scheme. However, more generally, the wireless communication system 100 may implement any other open or proprietary communication protocol, such as WiMAX, among other protocols.

[0020] In some embodiments of the present application, the BS 102 may communicate using other communication protocols, such as the IEEE 802.11 family of wireless communication protocols. Additionally, in some embodiments of the present application, the BS 102 may communicate over a licensed spectrum, while in other embodiments, the BS 102 may communicate over an unlicensed spectrum. This application is not intended to be limited to any particular architecture or protocol implementation of a wireless communication system. Additionally, in some embodiments of the present application, the BS 102 may communicate with the UE 101 using 3GPP 5G protocols.

[0021] Each BS 102 may include one or more cells. Each UE 101 may perform a cell selection procedure between different cells of different BSs. Each UE 101 may handover from a serving cell of a source BS to a target cell of a target BS. For example, in the wireless communication system 100 illustrated in FIG. 1, BS 102a may function as a source BS, and BS 102b and BS 102c may each function as a target BS. When a handover is required, UE 101a illustrated in FIG. 1 may perform a handover procedure from the serving cell of BS 102a to a target cell of BS 102b or a target cell of BS 102c, depending on the result of the cell selection procedure. This handover procedure performed by UE 101a may be a conditional handover (CHO) procedure.

[0022] As specified in the 3GPP standard documents, CHO is defined as a handover that is executed by the UE when one or more handover execution conditions are met. The UE starts evaluating the execution conditions when it receives the CHO configuration and stops evaluating the execution conditions when the execution conditions are met during the CHO procedure.

[0023] According to the 3GPP standard document, the following principles apply to CHO: - The CHO configuration includes the configuration of the CHO candidate cell generated by the candidate BS and the execution conditions generated by the source BS. - An execution condition can consist of one or two trigger conditions (e.g., event A3 or event A5). Only one reference signal (RS) type is supported, and at most two different execution quantities (e.g., RSRP (Reference Signal Received Power) and RSRQ (Reference Signal Received Quality), RSRP and SINR (Signal to Interference and Noise Ratio)) can be configured simultaneously for evaluation of the CHO execution condition for a single candidate cell. Event A3: The UE's neighbor cell becomes better than the UE's source cell by an offset, and Event A5: The UE's source cell becomes worse than one threshold and the UE's neighbor cell becomes better than another threshold. - If an HO command (without any CHO configuration) is received before any CHO execution condition is met, the UE shall perform the HO procedure regardless of any CHO configuration previously received. - During the CHO procedure, i.e. from the time instance when the UE starts synchronization with the target cell, the UE does not monitor the source cell.

[0024] 2 illustrates an exemplary flowchart of an intra-AMF / UPF conditional handover procedure according to some embodiments of the present application. The embodiment of FIG. 2 depicts a basic conditional handover scenario in which neither the Access and Mobility Management Function (AMF) nor the User Plane Function (UPF) changes.

[0025] 2, in operation 201, a source BS (e.g., BS 102a shown in FIG. 1) may send measurement configuration information to a UE (e.g., UE 101a shown in FIG. 1), and the UE may report measurement results to the source BS based on the measurement configuration information. In operation 202, the source BS may decide to use a CHO procedure for the UE, and this decision is based on the measurement results reported by the UE.

[0026] In operation 203, the source BS may send a CHO REQUEST message to one target BS (e.g., BS 102b shown in FIG. 1) and other potential target BSs (e.g., BS 102c shown in FIG. 1). In operation 204, the target BS or other potential target BSs may perform admission control based on the load of the target cells of the target BS or other potential target BSs to determine whether to allow the UE's CHO procedure after receiving the CHO REQUEST message from the source BS.

[0027] In operation 205, based on the result of the admission control, the target BS or other potential target BSs may prepare handover resources for the UE and send a CHO REQUEST ACKNOWLEDGE message to the source BS.

[0028] In operation 206, the source BS may send an RRCReconfiguration message to the UE. The RRCReconfiguration message may include configuration information of the CHO candidate cells and corresponding CHO execution conditions.

[0029] In operation 207, the UE may send an RRCReconfigurationComplete message to the source BS. In operation 208, the UE may evaluate the CHO condition. If one of the CHO candidate cells satisfies the CHO execution condition, the UE may detach from the source cell and detach from the cell that satisfies the CHO execution condition. The CHO can synchronize with the candidate cell.

[0030] In operation 209, the UE may send a CHO complete message to the target BS or other potential target BS. In operation 210, the 5G network may switch the DL data path to the target BS or other potential target BS. Any ongoing data transfer may continue.

[0031] As specified in the 3GPP standard documents, MRO is intended to detect connection failures that occur due to Too Early Handover, Too Late Handover, or Handover to the Wrong Cell. The general procedure is as follows: After an RLF or HO failure occurs, the UE accesses a new cell via RRC re-establishment setup or RRC connection setup. When the UE enters the RRC connected state, it sends an RLF report and a RACH report to the serving cell. The serving cell sends a failure notification containing an RLF report to the previous serving cell. Finally, this information is used to optimize mobility.

[0032] With respect to the above-mentioned function of MRO, the problem of Too Early Handover or Too Late Handover or Handover to Wrong Cell is defined as follows: - [Intra-System Too Late Handover] RLF occurs after the UE has been in a cell for a long period of time, and the UE attempts to re-establish a radio link connection in another cell. - [Intra-System Too Early Handover] RLF occurs shortly after a successful handover from the source cell to the target cell, or a handover failure occurs during the handover procedure. The UE attempts to re-establish a radio link connection in the source cell. - [Intra-System Handover to Wrong Cell] RLF occurs shortly after a successful handover from a source cell to a target cell, or a handover failure occurs during the handover procedure. The UE attempts to re-establish a radio link connection in a cell other than the source or target cell.

[0033] In the above definition, "successful handover" refers to the state of the UE, i.e., successful completion of the radio access (RA) procedure.

[0034] Generally, in a UE information procedure, after an RLF or HO failure occurs, the UE can perform an RRC re-establishment procedure in the cell. The UE stores any information related to the RLF failure and / or HO failure. The UE stores the most recent RLF report, including both LTE and NR RLF reports, until the RLF report is fetched by the network or for 48 hours after the connection failure is detected. The UE makes the RLF report available to the network so that the connection failure can be analyzed.

[0035] 3 illustrates an exemplary UE information procedure according to some embodiments of the present application. The embodiment of FIG. 3 illustrates a procedure in which a UE (e.g., UE 310) communicates with a BS (e.g., BS 320). In some examples, UE 310 can function as UE 101a in FIG. 1. BS 320 can function as BS 102a, BS 102b, or BS 102c in FIG. 1.

[0036] As shown in Figure 3, in operation 301, a BS 320 (e.g., the BS 102a illustrated in Figure 1) sends a UEInformationRequest message to a UE 310 (e.g., the UE 101a illustrated in Figure 1). The BS 320 may be a source BS that controls a serving cell of the UE 310. In operation 302, the UE 310 sends a UEInformationResponse message to the BS 320, which includes an RLF report. The BS 320 may optimize mobility issues based on the response sent from the UE 310.

[0037] In a 3GPP 5G system, a failure notification may be initiated after the UE attempts to re-establish a radio link connection at NG-RAN node B (e.g., BS 420 in FIG. 4) after a failure at NG-RAN node A (e.g., BS 410 in FIG. 4). NG-RAN node B (e.g., BS 420 in FIG. 4) may initiate the failure notification procedure to multiple NG-RAN nodes if they control a cell that uses the physical cell identity (PCI) signaled by the UE during the RRC re-establishment procedure. The failure notification may also be sent to the node that was last serving the UE when this NG-RAN node fetched the RLF report from the UE. A specific example of a failure notification procedure is depicted in FIG. 4.

[0038] The purpose of the failure notification procedure is to transfer information about the RRC re-establishment attempt or the received RLF report between NG-RAN nodes. This signaling is done from the NG-RAN node where the re-establishment attempt is made or the RLF report is received to the NG-RAN node to which the UE was previously connected before the connection failure. This can help to detect RLF cases or HO failure cases.

[0039] 4 illustrates an exemplary failure notification procedure according to some embodiments of the present application. The embodiment of FIG. 4 illustrates a procedure in which one BS (e.g., BS 410) communicates with another BS (e.g., BS 420). In some examples, BS 410 or BS 420 can function as BS 102a, BS 102b, or BS 102c of FIG. 1.

[0040] As shown in FIG. 4, in operation 401, BS 420 transmits a failure notification message to BS 410. BS 410 is a source BS that controls an original serving cell of a UE (e.g., UE 101a illustrated in FIG. 1). BS 420 is a target BS or a new BS that controls a target cell or a CHO candidate cell of the UE. The failure notification message can be transmitted over an Xn interface or an X2 interface. For example, the failure notification message includes an RLF report container. The RLF report container can be transmitted over an Xn interface or an X2 interface.

[0041] The following table provides an introduction to some timers defined in the 3GPP standards document, including the start conditions, stop conditions, action on expiration, and possible common designations for each of these timers.

[0042] [Table 1]

[0043] 5 shows an exemplary flowchart of a method for transmitting assistant information according to some embodiments of the present application. Method 500 can be performed by a UE (for example, UE 101, UE, or UE 310 shown and illustrated in any of FIGS. 1 to 3). Although described with respect to a UE, it should be understood that other devices can be configured to perform a method similar to the method of FIG. 5.

[0044] 5, in operation 501, a UE (e.g., the UE 101 shown and illustrated in FIG. 1) receives CHO configuration information associated with one or more CHO candidate cells for the UE, and the UE is in an RRC connected state, which may also be referred to as an RRC connected state, an RRC CONNECTION state, an RRC_CONNECTION state, an RRC_CONNECTED state, or an RRC_Connected state.

[0045] In operation 5021, the UE determines whether a handover command has been received from the source cell. In operation 5031, if the answer is "YES", i.e., the UE has received a handover command from the source cell, the UE performs a HO procedure associated with the target cell.

[0046] In operation 5022, the UE determines whether the execution conditions for the CHO candidate cell are met. In operation 5032, if the answer is "YES", i.e., if the execution conditions for the CHO candidate cell are met, the UE performs the CHO procedure associated with the CHO candidate cell.

[0047] In operation 504, the UE starts a timer for the HO procedure or the CHO procedure. In operation 505, if the UE successfully accesses the target cell through the HO procedure, or if the UE successfully accesses the CHO candidate cell through the CHO procedure, the UE stops the timer for the HO procedure or the CHO procedure and sends assistance information to the target cell or the CHO candidate cell.

[0048] In one embodiment, after the UE successfully completes the HO procedure or the CHO procedure, the UE sends an indication to the target cell or the CHO candidate cell, which indicates that the status of the assistant information is available. This indication can also be referred to as an "indication indicating the availability status of the assistant information". For example, this indication can be: (1) Failure information is available; (2) information on successful HO procedures is available; and (3) Information on the success of the CHO procedure is available. At least one of the following is shown.

[0049] In one embodiment, after successfully completing the HO procedure, the UE receives a UE information request message from the target cell, and then sends a UE information response message to the target cell, where the UE information response message includes assistant information.

[0050] In a further embodiment, after successfully completing the CHO procedure, the UE receives a UE information request message from the CHO candidate cell, and then sends a UE information response message to the CHO candidate cell. The UE information response message includes assistant information.

[0051] According to some embodiments, after the HO procedure is successfully completed, the UE reports CHO-related information to the serving cell. According to some further embodiments, after the HO procedure is successfully completed, the UE reports other information not related to the CHO procedure to the serving cell. In some other embodiments, after the CHO procedure is successfully completed, the UE reports CHO-related information or other information not related to the CHO procedure to the serving cell. In all these embodiments, the information reported by the UE can be referred to as assistance information.

[0052] For example, the assistant information sent by the UE may include at least one of the following information or a combination of the following information:

[0053] In one embodiment, the assistant information includes a set of identification information for one or more CHO candidate cells of the UE and a set of execution conditions corresponding to the one or more CHO candidate cells.

[0054] In a further embodiment, if two conditions are set for one CHO candidate cell of one or more CHO candidate cells of the UE, the assistant information includes an indication of whether one of the two conditions is met or whether neither of the two conditions is met.

[0055] For example, the following two conditions can be set for one CHO candidate cell: In this example, the assistant information can include an indication that "only event A3 is met," "only event A5 is met," or "neither event A3 nor event A5 is met."

[0056] In another embodiment, the Assistant information includes a time to trigger (TTT) value corresponding to the execution condition of each CHO candidate cell of the one or more CHO candidate cells.

[0057] In yet another embodiment, the Assistant information includes measurement results for each CHO candidate cell of one or more CHO candidate cells.

[0058] In yet another embodiment, the assistant information is - the length of the handover timer, e.g., set by control signaling from the network (e.g., BS), and - the duration of the handover timer, from the time the handover timer is started until the time the handover timer is stopped Includes:

[0059] For example, the handover timer is timer T304 as specified in the 3GPP standard document. The assistance information includes the duration of timer T304 set by control signaling from the BS and the actual duration of timer T304 from the time T304 is started to the time T304 is actually stopped.

[0060] In yet another embodiment, the assistant information includes the duration between "the time when the first transmitted CHO configuration information related to one of the one or more CHO candidate cells is received" and "the time when the implementation of the HO procedure or CHO procedure is started."

[0061] In yet another embodiment, the assistant information includes the duration between "the time when the last transmitted CHO configuration information related to one of the one or more CHO candidate cells was received" and "the time when the implementation of the HO procedure or CHO procedure was started."

[0062] In yet another embodiment, the assistant information includes measurement results for each of one or more serving beams of the UE.

[0063] In yet another embodiment, the assistant information includes the status of each serving beam of one or more serving beams of the UE while the UE is performing the HO or CHO procedure. The status of each serving beam may be failed or available.

[0064] According to some embodiments, a BS of a target cell of the UE transmits a failure notification message to a BS of a source cell, e.g., via an Xn interface. According to some other embodiments, a BS of a CHO candidate cell of the UE transmits a failure notification message to a BS of a source cell, e.g., via an Xn interface. The failure notification message may include an indication of "successful completion of the HO procedure" or "successful completion of the CHO procedure." For short, "successful completion of the HO procedure" may be referred to as "successful HO procedure," etc. For short, "successful completion of the CHO procedure" may be referred to as "successful CHO procedure," etc.

[0065] In the following text, specific embodiments 1 and 2 of the method shown and illustrated in FIG. 5 are described.

[0066] Embodiment 1

[0067] According to embodiment 1, a UE (e.g., UE101, UE, or UE310 shown and exemplified in any of Figures 1 to 3) and a BS (e.g., BS102a, BS102b, BS102c, source BS, target BS, BS320, BS410, or BS420 shown and exemplified in any of Figures 1 to 4) perform the following operations. (1) Step 1: The UE is in RRC_Connected state. The BS configures the UE to report measurement results. - The UE will report measurements based on the configuration information received from the BS. (2) Step 2: Based on the measurement results, the UE is configured with a CHO configuration associated with one or more CHO candidate cells. - The UE continues to perform the measurement procedure. (3) Step 3: The UE reports the measurement results based on the configuration information. - The BS can determine whether the UE should perform the HO procedure based on the measurement results from the UE. If the CHO procedure has not been triggered, the BS can decide to perform the HO procedure. (4) Step 4: The UE receives an HO command from the source cell. - The HO command contains configuration information from the target cell. (5) Step 5: After receiving the HO command, the UE performs the HO procedure, and then the UE accesses the target cell and stops timer T304. - After the UE accesses the target cell, the HO procedure is completed successfully, which means the handover is successful. (6) Step 6: The UE sends an RRCReconfigurationComplete message to the target BS. The RRCReconfigurationComplete message includes an indication that assistant information is available, which may also be referred to as an assistant information available indication. The assistant information available indication may be a random access information available indication, a failure information available indication, or an HO success information available indication. The HO success information available indication indicates that the HO procedure has been completed successfully. (7) Step 7: After receiving the assistant information available indication from the UE, the target BS sends a UEInformationRequest message to the UE. (8) Step 8: The UE sends a UEInformationResponse message to the target BS. The following information may be included in the UEInformationResponse message: CHO-related information may be reported to the serving cell after the HO procedure is successful. The CHO-related information may include at least one of the following: 1) CHO candidate cell list and corresponding execution conditions. 2) If the combination of event A3 and event A5 is configured, the UE needs to further indicate whether one of event A3 and event A5 has already been satisfied. 3) TTT Value: The purpose of this value to be reported is to help the source cell set an appropriate TTT value. 4) Measurement results for the corresponding CHO candidate cells. The measurement results may be required to be reported. 5) The value of timer T304 and the timer instance when the UE stopped timer T304. 6) The duration between the time when the first transmitted CHO configuration related to the initial candidate cell is received and the time when the HO procedure is initiated for the accessed target cell. 7) The duration between the time when the last transmitted CHO configuration related to the initial candidate cell is received and the time when the HO procedure is started for the accessed target cell. ·Other information not related to CHO can be reported to the serving cell. 1) As usual, the BS configures a set of serving beams for the UE. This set may include one or more serving beams. The UE can indicate measurement results for each serving beam in the set of serving beams. 2) Alternatively, the UE may indicate which serving beams in the set of serving beams are "failed" or "available" when the UE is performing the HO procedure. (9) Step 9: After the target BS receives the UEInformationResponse message from the UE, it sends a failure notification message to the source BS using the Xn interface. - The UEInformationResponse message reported by the UE can be sent as a container. - The failure notification message may contain an indication of "successful completion of the HO procedure".

[0068] Embodiment 2

[0069] According to embodiment 2, a UE (e.g., UE101, UE, or UE310 shown and exemplified in any of Figures 1 to 3) and a BS (e.g., BS102a, BS102b, BS102c, source BS, target BS, BS320, BS410, or BS420 shown and exemplified in any of Figures 1 to 4) perform the following operations. (1) Step 1: The UE is in RRC_Connected state. The BS configures the UE to report measurement results. - The UE will report measurements based on the configuration information received from the BS. (2) Step 2: Based on the measurement results, the UE is configured with a CHO configuration associated with one or more CHO candidate cells. - The UE continues to perform the measurement procedure. (3) Step 3: When one execution condition for one CHO candidate cell is satisfied, the UE performs the CHO procedure, and then the UE accesses the CHO candidate cell and stops timer T304. - After the UE accesses the CHO candidate cell, the CHO procedure is completed successfully, which means the handover is successful. (4) Step 4: The UE sends an RRCReconfigurationComplete message to the target BS. The RRCReconfigurationComplete message includes an indication that the assistant information is available, which may also be referred to as an assistant information available indication. The assistant information available indication may be a random access information available indication, a failure information available indication, or a CHO success information available indication. The CHO success information available indication indicates that the CHO procedure has been completed successfully. (5) Step 5: After receiving the assistant information available indication from the UE, the target BS sends a UEInformationRequest message to the UE. (6) Step 6: The UE sends a UEInformationResponse message to the target BS. - The UEInformationResponse message contains the following information: CHO-related information may be reported to the serving cell after the CHO procedure is successful. The CHO-related information may include at least one of the following: 1) CHO candidate cell list and corresponding execution conditions. 2) If the combination of event A3 and event A5 is configured, the UE needs to further indicate whether one of event A3 and event A5 has already been satisfied. 3) TTT Value: The purpose of this value to be reported is to help the source cell set an appropriate TTT value. 4) Measurement results for the corresponding CHO candidate cells. The measurement results may be required to be reported. 5) The value of timer T304 and the timer instance when the UE stopped timer T304. 6) The duration between the time when the first transmitted CHO configuration related to the initial candidate cell is received and the time when the CHO procedure is started for the accessed CHO candidate cell. 7) The duration between the time when the last transmitted CHO configuration related to the initial candidate cell is received and the time when the CHO procedure is started for the accessed CHO candidate cell. ·Other information not related to CHO can be reported to the serving cell. 1) As usual, the BS configures a set of serving beams for the UE. This set may include one or more serving beams. The UE can indicate measurement results for each serving beam in the set of serving beams. 2) Alternatively, the UE may indicate which serving beams in the set of serving beams are "failed" or "available" when the UE is performing the CHO procedure. (7) Step 7: After the target BS receives the UEInformationResponse message from the UE, it sends a failure notification message to the source BS using the Xn interface. - The UEInformationResponse message reported by the UE can be sent as a container. - The failure notification message may include an indication of "successful completion of the CHO procedure."

[0070] Details described in all other embodiments of this application (e.g., details of the MRO mechanism for the CHO procedure and details of the assistant information transmitted) apply to the embodiment of Figure 5. Furthermore, details described in the embodiment of Figure 5 apply to all embodiments of Figures 1-4, 6, and 7.

[0071] Under some scenarios, when a CHO failure or HO failure occurs, the UE will perform a CHO procedure. This CHO procedure can be referred to as a CHO recovery procedure to some extent. There may be two cases: one case is that the UE successfully completes the CHO procedure, and the other case is that the UE does not successfully complete the CHO procedure. In these two cases, the UE needs to report some relevant information. A specific example is described in the embodiment of FIG. 6.

[0072] 6 shows an exemplary flowchart of a method for performing a CHO procedure according to some embodiments of the present application. Method 600 may be performed by a UE (e.g., UE 101, UE, or UE 310 shown and illustrated in any of FIGS. 1-3). While described with respect to a UE, it should be understood that other devices may be configured to perform methods similar to that of FIG. 6.

[0073] In the exemplary method 600 shown in FIG. 6, in operation 601, a UE (e.g., UE 101 shown and illustrated in FIG. 1) receives CHO configuration information related to one or more CHO candidate cells for the UE, and the UE is in an RRC connected state.

[0074] In operation 602, the UE initiates an RRC re-establishment procedure when a failure occurs. The failure may be one of an RLF, an HO failure, and a CHO failure.

[0075] In operation 603, the UE selects a cell, for example by performing a cell selection procedure. In operation 604, if the selected cell is configured with CHO configuration information, the UE performs the CHO procedure.

[0076] In operation 605, the UE stores information regarding whether the execution condition for each CHO candidate cell of the one or more CHO candidate cells is met.

[0077] In one embodiment, if the UE successfully completes the CHO procedure, the UE sends an indication to the selected cell indicating the availability of assistant information. This indication may also be referred to as an assistant information availability indication. For example, this indication may be included in an RRCReconfigurationComplete message.

[0078] In one example, the UE further receives a UE information request message from the selected cell and sends a UE information response message to the selected cell, where the UE information response message includes assistant information.

[0079] In a further embodiment, if the UE does not successfully complete the CHO procedure, the UE selects another cell. The UE can send an RRC re-establishment request to the other cell. The UE can further send an assistant information availability indication to the other cell in response to successfully completing the RRC re-establishment procedure initiated in operation 602 shown and illustrated in FIG. 6.

[0080] In one example, the UE further receives a UE information request message from the other cell, and sends a UE information response message to the other cell, where the UE information response message includes assistant information.

[0081] In both embodiments in which the UE successfully completes the CHO procedure and embodiments in which the UE does not successfully complete the CHO procedure, the assistant information availability indication may be at least one of the following: (1) failure information is available, and (2) Information about the successful completion of the CHO procedure is available. After the UE initiates the RRC re-establishment procedure (e.g., in operation 602 shown and illustrated in FIG. 6), the CHO procedure is performed by the UE (e.g., in operation 604 shown and illustrated in FIG. 6).

[0082] According to some embodiments, the BS of the UE's selected cell transmits a failure notification message to the BS of the source cell, e.g., via an Xn interface. According to some other embodiments, the BS of the UE's other selected cell transmits a failure notification message to the BS of the source cell, e.g., via an Xn interface. The failure notification message may include an indication of "success of the CHO procedure after initiating the RRC re-establishment procedure" or "failure of the CHO procedure after initiating the RRC re-establishment procedure." For short, "success of the CHO procedure after initiating the RRC re-establishment procedure" may be referred to as "success of the CHO recovery procedure," etc. For short, "failure of the CHO procedure after initiating the RRC re-establishment procedure" may be referred to as "failure of the CHO recovery procedure," etc.

[0083] According to some embodiments, the assistant information is: (1) a set of identification information for a subset of one or more CHO candidate cells, where the execution condition for each CHO candidate cell of this subset of CHO candidate cells was satisfied during the CHO procedure (e.g., in operation 604 shown and illustrated in FIG. 6 ); and (2) a set of identification information for another subset of CHO candidate cells of the one or more CHO candidate cells, where the execution condition for each CHO candidate cell of this another subset of CHO candidate cells is not satisfied during the CHO procedure (e.g., in operation 604 shown and exemplified in FIG. 6 ). The above-mentioned configuration includes at least one of the following:

[0084] According to some other embodiments, the assistant information is: (1) a set of identifying information for one or more CHO candidate cells; (2) a set of execution conditions corresponding to one or more CHO candidate cells; (3) When two conditions (e.g., event A3 and event A5) are set for one CHO candidate cell among one or more CHO candidate cells, an indication of whether one of these two conditions (e.g., event A3 or event A5) is satisfied or whether neither of these two conditions is satisfied; (4) a TTT value corresponding to the execution condition of each CHO candidate cell for one or more CHO candidate cells; (5) measurement results for each CHO candidate cell of one or more CHO candidate cells; (6) the duration of the handover timer (e.g., timer T304 specified in the 3GPP standard document), which is set, for example, by control signaling from the network (e.g., BS), and (7) The actual duration of the handover timer (e.g., timer T304) from the time the handover timer is started to the time the handover timer is actually stopped. It includes at least one of the following:

[0085] The following text describes specific embodiments 3 and 4 of the method illustrated and shown in FIG.

[0086] Embodiment 3

[0087] In embodiment 3, the UE successfully completes the CHO recovery procedure. According to embodiment 3, the UE (e.g., the UE 101, UE, or UE 310 illustrated in any of FIGS. 1 to 3) and the BS (e.g., the BS 102a, BS 102b, BS 102c, source BS, target BS, BS 320, BS 410, or BS 420 illustrated in any of FIGS. 1 to 4) perform the following operations in the "success of the CHO recovery procedure." (1) Step 1: A UE in RRC_Connected state is configured with CHO configuration information. The following three failures occur in the UE: - RLF, - HO failure, and - CHO failure One of these will happen. (2) Step 2: After a failure occurs, the UE performs a cell selection procedure and starts timer T311 for the cell selection procedure. (3) Step 3: If the selected cell is configured with CHO configuration information, the UE accesses the selected cell through a subsequent CHO procedure. - the UE stops timer T311. - The UE stores information on whether the execution condition for each CHO candidate cell is met. (4) Step 4: If the UE successfully accesses the selected cell, it sends an RRCReconfigurationComplete message to the target BS. The RRCReconfigurationComplete message includes an indication that the assistance information is available. The assistant information availability indication may be an indication that random access information is available, an indication that failure information is available, or an indication that CHO recovery success information (indicating successful completion of the CHO recovery procedure) is available. (5) Step 5: The target BS sends a UEInformationRequest message to the UE. (6) Step 6: The UE sends a UEInformationResponse message to the target BS. - The UEInformationResponse message contains the following information: ·CHO candidate cells that met the execution conditions during the CHO recovery procedure. ·CHO candidate cells that do not meet the execution conditions during the CHO recovery procedure. (7) Step 7: After the target BS receives the UEInformationResponse message from the UE, it sends a failure notification message to the source BS using the Xn interface. - The UEInformationResponse message reported by the UE can be sent as a container. - The failure notification message includes an indication that the CHO recovery procedure was successful.

[0088] Embodiment 4

[0089] In embodiment 4, the UE fails to complete the CHO recovery procedure. According to embodiment 4, the UE (e.g., the UE 101, the UE, or the UE 310 illustrated in any of FIGS. 1 to 3) and the BS (e.g., the BS 102a, the BS 102b, the BS 102c, the source BS, the target BS, the BS 320, the BS 410, or the BS 420 illustrated in any of FIGS. 1 to 4) perform the following operations in the event of a "CHO recovery procedure failure." (1) Step 1: A UE in RRC_Connected state is configured with CHO configuration information. Three failures at the UE: - RLF, - HO failure, and - CHO failure One of these will happen. (2) Step 2: After a failure occurs, the UE performs a cell selection procedure. (3) Step 3: If the selected cell is configured with CHO configuration information, the UE accesses the selected cell by performing a CHO procedure. - The UE stores information on whether the execution condition for each CHO candidate cell is met. (4) Step 4: If the UE fails to access the selected cell, it performs an RRC re-establishment procedure, eg, upon expiry of timer T304, to select a new suitable cell. (5) Step 5: The UE sends an RRCReestablishmentRequest message to the selected cell. After successfully accessing the cell, the UE sends an RRCReestablishmentComplete message, which includes an indication that assistant information is available, i.e., an assistant information available indication. (6) Step 6: After the target BS receives the assistant information available indication, it sends a UEInformationRequest message to the UE. (7) Step 7: The UE sends a UEInformationResponse message to the target BS. - The UEInformationResponse message contains the following information: ·CHO candidate cells that met the execution conditions during the CHO recovery procedure. ·CHO candidate cells that do not meet the execution conditions during the CHO recovery procedure. (8) Step 8: After the target BS receives the UEInformationResponse message from the UE, it sends a failure notification message to the source BS using the Xn interface. - The UEInformationResponse message reported by the UE can be sent as a container. - The failure notification message includes an indication of "Failure of CHO recovery procedure."

[0090] Details described in all other embodiments of this application (e.g., details of the MRO mechanism for the CHO procedure and details of the assistant information transmitted) apply to the embodiment of Figure 6. Furthermore, details described in the embodiment of Figure 6 apply to all embodiments of Figures 1-5 and 7.

[0091] 7 shows an exemplary block diagram of an apparatus according to some embodiments of the present application. In some embodiments of the present application, the apparatus 700 may be a UE capable of at least performing the method illustrated in FIG. 5 or FIG. 6.

[0092] As shown in FIG. 7, the apparatus 700 may include at least one receiver 702, at least one transmitter 704, at least one non-transitory computer-readable medium 706, and at least one processor 708 coupled to the at least one receiver 702, the at least one transmitter 704, and the at least one non-transitory computer-readable medium 706.

[0093] 7, elements such as at least one receiver 702, at least one transmitter 704, at least one non-transitory computer-readable medium 706, and at least one processor 708 are referred to in the singular, but the plural is also contemplated unless limitation to the singular is explicitly stated. In some embodiments of the present application, the at least one receiver 702 and the at least one transmitter 704 are combined into a single device such as a transceiver. In some embodiments of the present application, the apparatus 700 may further include an input device, a memory, and / or other components.

[0094] In some embodiments of the present application, at least one non-transitory computer-readable medium 706 may have computer-executable instructions stored thereon programmed to perform the operations of the method depicted in, for example, either of Figures 5 and 6 in conjunction with at least one receiver 702, at least one transmitter 704, and at least one processor 708.

[0095] Those skilled in the art will appreciate that the operations of the methods described in connection with the aspects disclosed herein can be embodied directly in hardware, as a software module executed by a processor, or as a combination of the two. A software module may reside in RAM memory, flash memory, ROM memory, EPROM memory, EEPROM memory, registers, a hard disk, a removable disk, a CD-ROM, or any other form of storage medium known in the art. Additionally, in some aspects, the operations of the methods may reside as one, a combination, or a set of codes and / or instructions on a non-transitory computer-readable medium, which may be incorporated into a computer program product.

[0096] While the present disclosure has been described using specific embodiments thereof, it is apparent that many alternatives, modifications, and variations may be apparent to those skilled in the art. For example, various components of these embodiments may be exchanged, added, or substituted in other embodiments. Also, not all elements of each figure are necessary for the operation of the disclosed embodiments. For example, one skilled in the art would be able to make and use the teachings of the present disclosure by simply using the elements of the independent claims. Accordingly, the embodiments of the present disclosure described herein are intended to be illustrative, not limiting. Various changes can be made without departing from the spirit and scope of the present disclosure.

[0097] As used in this document, the terms "comprise," "comprising," or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements may include not only those elements, but also other elements not expressly listed or inherent in such process, method, article, or apparatus. The use of an element preceded by "a," "an," etc., without further constraints, does not preclude the presence of additional identical elements in the process, method, article, or apparatus that comprises the element. Also, the term "another" is defined as at least a second or more. The term "having," etc., is defined herein as "comprising." [Explanation of symbols]

[0098] 100 Wireless Communication System 101 User Equipment (UE) 101a UE 102 Base station (BS) 102a BS 102b BS 102c BS 310 UE 320BS 410 BS 420 BS 500 ways 600 ways 700 equipment 702 receiver 704 Transmitter 706 Non-transitory computer-readable medium 708 processor

Claims

1. receiving conditional handover (CHO) configuration information for a user equipment (UE), the CHO configuration information being associated with one or more CHO candidate cells and including a set of execution conditions corresponding to the one or more CHO candidate cells, the UE being in a radio resource control (RRC) connected state; In response to receiving a handover command from the source cell, performing a handover (HO) procedure related to a target cell, or in response to fulfilling an execution condition for a CHO candidate cell, performing a CHO procedure related to the CHO candidate cell; starting a timer for the HO or CHO procedure; In response to successfully accessing the target cell or the CHO candidate cell, stopping the timer and sending assistant information to the target cell or the CHO candidate cell, the assistant information including the set of execution conditions corresponding to the one or more CHO candidate cells; In response to successful completion of the HO procedure or the CHO procedure, sending an indication to the target cell or the CHO candidate cell indicating the availability of the assistant information; Including, the indication includes that failure information is available; The method, wherein the indication further includes HO procedure success information being available or CHO procedure success information being available.

2. The step of transmitting the assistant information includes: receiving a UE information request message from the target cell after the HO procedure is successfully completed, or receiving the UE information request message from the CHO candidate cell after the CHO procedure is successfully completed; sending a UE information response message to the target cell or the CHO candidate cell, the UE information response message including the assistant information; 10. The method of claim 1, further comprising:

3. The assistant information is a set of identification information for the one or more CHO candidate cells; In response to two conditions being set for a CHO candidate cell of the one or more CHO candidate cells, an indication indicating whether one of the two conditions is satisfied or neither of the two conditions is satisfied; a time-to-trigger (TTT) value corresponding to an execution condition of each of the one or more CHO candidate cells; a measurement result for each of the one or more CHO candidate cells; the length of the handover timer, as set by control signaling; the duration of the handover timer from when the handover timer is started to when the handover timer is stopped; a duration between receiving a first transmitted CHO configuration information associated with one of the one or more CHO candidate cells and starting to perform the HO procedure or the CHO procedure; and a duration between receiving the last transmitted CHO configuration information associated with one of the one or more CHO candidate cells and starting the HO procedure or the CHO procedure; The method of claim 1 , further comprising at least one of:

4. The assistant information is Measurement results for each of one or more serving beams of the UE; and a status of each of the one or more serving beams during the HO procedure or the CHO procedure, the status being either failed or available; The method of claim 1 , comprising at least one of:

5. receiving conditional handover (CHO) configuration information for a user equipment (UE), the CHO configuration information being associated with one or more CHO candidate cells and including a set of execution conditions corresponding to the one or more CHO candidate cells, the UE being in a radio resource control (RRC) connected state; initiating an RRC re-establishment procedure in response to the occurrence of a failure, the failure being one of a radio link failure (RLF), a handover (HO) failure, and a CHO failure; selecting a first cell; performing a CHO procedure in response to the first cell being configured with CHO configuration information; storing information regarding whether an execution condition for each of the one or more CHO candidate cells is satisfied; Including, sending an indication of availability of assistant information to the first cell in response to successful completion of the CHO procedure, the assistant information including the set of execution conditions corresponding to the one or more CHO candidate cells; further comprising The indication is: Failure information is available, and information regarding the successful completion of the CHO procedure performed after initiating the RRC re-establishment procedure is available; A method comprising:

6. in response to not successfully completing the CHO procedure; selecting a second cell; sending an RRC re-establishment request to the second cell; In response to successfully completing the RRC re-establishment procedure, sending an indication to the second cell indicating availability of assistant information.

6. The method of claim 5, further comprising:

7. receiving a UE information request message from the first cell and sending a UE information response message to the first cell; or receiving the UE information request message from a second cell and sending the UE information response message to the second cell; further comprising The UE information response message includes the assistant information; 7. The method of claim 5 or claim 6.

8. A failure notification message is sent from a base station (BS) of one of the first cell and the second cell to a BS of a source cell, the failure notification message including an indication, the indication including: the success of the CHO procedure after initiating the RRC re-establishment procedure; and Failure of the CHO procedure after initiating the RRC re-establishment procedure.

8. The method of claim 7, comprising one of:

9. The assistant information is a set of identification information for a first subset of CHO candidate cells of the one or more CHO candidate cells, wherein an execution condition for each CHO candidate cell of the first subset of CHO candidate cells is satisfied during the CHO procedure; and a set of identification information for a second subset of CHO candidate cells of the one or more CHO candidate cells, wherein an execution condition for each CHO candidate cell of the second subset of CHO candidate cells is not satisfied during the CHO procedure; The method of claim 7, comprising at least one of:

10. The assistant information is a set of identification information for the one or more CHO candidate cells; In response to two conditions being set for a CHO candidate cell of the one or more CHO candidate cells, an indication indicating whether one of the two conditions is satisfied or neither of the two conditions is satisfied; a time-to-trigger (TTT) value corresponding to an execution condition of each of the one or more CHO candidate cells; a measurement result for each of the one or more CHO candidate cells; The length of the handover timer, as set by control signaling, and The duration of the handover timer from when the handover timer is started to when the handover timer is stopped 7. The method of claim 5, further comprising at least one of:

11. a non-transitory computer-readable medium having computer-executable instructions stored thereon; A receiving circuit; A transmitting circuit; a processor coupled to the non-transitory computer-readable medium, the receiving circuitry, and the transmitting circuitry; Equipped with The computer-executable instructions cause the processor to perform the method of any one of claims 1 to 10. Device.

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