WO2023001227A1 - 执行gap的方法、装置及终端 - Google Patents

执行gap的方法、装置及终端 Download PDF

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Publication number
WO2023001227A1
WO2023001227A1 PCT/CN2022/106987 CN2022106987W WO2023001227A1 WO 2023001227 A1 WO2023001227 A1 WO 2023001227A1 CN 2022106987 W CN2022106987 W CN 2022106987W WO 2023001227 A1 WO2023001227 A1 WO 2023001227A1
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Prior art keywords
gap
terminal device
priority
network side
information
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PCT/CN2022/106987
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English (en)
French (fr)
Inventor
刘选兵
杨晓东
鲍炜
蒲文娟
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维沃移动通信有限公司
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Publication of WO2023001227A1 publication Critical patent/WO2023001227A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/02Arrangements for optimising operational condition

Definitions

  • the present application belongs to the technical field of wireless communication, and in particular relates to a method, device and terminal for performing gap.
  • the network side can configure multiple gap patterns (Gap Patterns) for the terminal, and the terminal can use the corresponding Gap to perform corresponding tasks.
  • the network side configures the measurement Gap for a terminal device (User Equipment, UE, also referred to as a terminal or a user terminal).
  • the UE can use the measurement Gap to perform Inter-frequency Measurements (Inter-frequency Measurements, IFM), Radio Access Technology (Radio Access Technology, RAT) Inter-RAT Measurements (Inter-RAT Measurements), etc.
  • the embodiments of the present application provide a gap execution method, device and terminal, which can solve problems such as ambiguity in terminal behavior caused when a gap configured for a UE on the network side overlaps or conflicts with another gap.
  • a method for performing a gap including: in a case where the first gap overlaps with the second gap or the measurement timing corresponding to the first task, the terminal device performs the first processing on the first gap; Wherein, the terminal device is configured with at least one gap, and the first gap and the second gap belong to the at least one gap, and the first processing includes ignoring the first gap or using the first gap.
  • an apparatus for executing a gap which is applied to a terminal device, and the apparatus includes: a first execution module configured to overlap the first gap gap with the measurement timing corresponding to the second gap or the first task In this case, the first process is performed on the first gap; wherein, the terminal device is configured with at least one gap, and the first gap and the second gap belong to the at least one gap, and the first Processing includes ignoring the first gap or using the first gap.
  • a terminal in a third aspect, includes a processor, a memory, and a program or instruction stored in the memory and operable on the processor. When the program or instruction is executed by the processor The steps of the method described in the first aspect are realized.
  • a terminal including a processor and a communication interface, wherein the communication interface is coupled to the processor, and the processor is used to run programs or instructions to implement the method described in the first aspect step.
  • a method for performing gap including: in the case that the first gap overlaps with the second gap, the network side device ignores the first gap; wherein, the first gap and the The second gap is a gap configured by the network side device for the terminal device.
  • an apparatus for executing gap which is applied to network-side equipment, and the apparatus includes: a second execution module, configured to ignore the network-side equipment when the first gap overlaps with the second gap.
  • the first gap wherein, the first gap and the second gap are gaps configured by the network side device for terminal devices.
  • a network side device in a seventh aspect, includes a processor, a memory, and a program or instruction stored in the memory and operable on the processor, the program or instruction is executed by the processor When executed, the steps of the method described in the fifth aspect are realized.
  • a network side device including a processor and a communication interface, wherein the communication interface is coupled to the processor, and the processor is used to run a program or an instruction to implement the method described in the fifth aspect. method steps.
  • a ninth aspect provides a readable storage medium, on which a program or instruction is stored, and when the program or instruction is executed by a processor, the method as described in the first aspect or the fifth aspect is implemented. step.
  • a chip in a tenth aspect, includes a processor and a communication interface, the communication interface is coupled to the processor, and the processor is used to run programs or instructions, so as to implement the first aspect or the fifth aspect The steps of the method.
  • a computer program/program product is provided, the computer program/program product is stored in a non-transitory storage medium, and the program/program product is executed by at least one processor to implement the A step in the method of the first aspect or the fifth aspect.
  • the terminal device uses the first gap or ignores the first gap when the first gap overlaps with the second gap or the measurement opportunity corresponding to the first task, thereby providing A gap processing mechanism is proposed in the scenario where the measurement opportunities corresponding to the gap and the gap or the gap and the first task overlap, which can enable the terminal device to clarify its own behavior and perform gap processing, effectively ensuring the quality of wireless communication.
  • Fig. 1 is a schematic structural diagram of a wireless communication system provided by an exemplary embodiment of the present application.
  • Fig. 2 is a schematic flowchart of a method for performing gap provided by an exemplary embodiment of the present application.
  • Fig. 3 is a schematic flowchart of a method for performing gap provided by another exemplary embodiment of the present application.
  • Fig. 4 is a schematic flow chart of a method for performing gap provided by another exemplary embodiment of the present application.
  • Fig. 5 is a schematic flow chart of a method for performing gap provided by another exemplary embodiment of the present application.
  • Fig. 6 is a schematic structural diagram of an apparatus for performing gap provided by an exemplary embodiment of the present application.
  • Fig. 7 is a schematic structural diagram of an apparatus for performing gap provided by another exemplary embodiment of the present application.
  • Fig. 8 is a schematic structural diagram of a terminal provided by an exemplary embodiment of the present application.
  • Fig. 9 is a schematic structural diagram of a network side device provided by an exemplary embodiment of the present application.
  • first, second and the like in the specification and claims of the present application are used to distinguish similar objects, and are not used to describe a specific sequence or sequence. It is to be understood that the terms so used are interchangeable under appropriate circumstances such that the embodiments of the application are capable of operation in sequences other than those illustrated or described herein and that "first" and “second” distinguish objects. It is usually one category, and the number of objects is not limited. For example, there may be one or more first objects.
  • “and/or” in the description and claims means at least one of the connected objects, and the character “/” generally means that the related objects are an "or” relationship.
  • LTE Long Term Evolution
  • LTE-Advanced LTE-Advanced
  • LTE-A Long Term Evolution-Advanced
  • CDMA Code Division Multiple Access
  • TDMA Time Division Multiple Access
  • FDMA Frequency Division Multiple Access
  • OFDMA Orthogonal Frequency Division Multiple Access
  • SC-FDMA Single-carrier Frequency-Division Multiple Access
  • system and “network” in the embodiments of the present application are often used interchangeably, and the described technology can be used for the above-mentioned system and radio technology, and can also be used for other systems and radio technologies.
  • the following description describes the New Radio (New Radio, NR) system for example purposes, and uses NR terminology in most of the following descriptions, but these techniques can also be applied to applications other than NR system applications, such as the 6th Generation (6th Generation , 6G) communication system.
  • 6th Generation 6th Generation
  • Fig. 1 shows a schematic structural diagram of a wireless communication system to which this embodiment of the present application is applicable.
  • the wireless communication system includes a terminal 11 and a network side device 12 .
  • the terminal 11 can be a mobile phone, a tablet computer (Tablet Personal Computer), a laptop computer (Laptop Computer) or a notebook computer, a personal digital assistant (Personal Digital Assistant, PDA), a palmtop computer, a netbook, a super mobile personal computer (ultra-mobile personal computer, UMPC), mobile Internet device (Mobile Internet Device, MID), wearable device (Wearable Device) or vehicle-mounted equipment (VUE), pedestrian terminal (PUE) and other terminal-side devices, wearable devices Including: smart watches, bracelets, earphones, glasses, etc.
  • the network side device 12 may be a base station or a core network, where a base station may be called a node B, an evolved node B, an access point, a base transceiver station (Base Transceiver Station, BTS), a radio base station, a radio transceiver, a basic service Basic Service Set (BSS), Extended Service Set (ESS), Node B, evolved Node-B (evolved Node-B, eNB), home Node-B, home evolved Node-B, wireless LAN (Wireless Local Area Networks, WLAN) access point, WiFi node, Transmitting Receiving Point (Transmitting Receiving Point, TRP) or some other suitable term in the field, as long as the same technical effect is achieved, the base station is not limited to specific technical terms , it should be noted that in the embodiment of the present application, only the base station in the NR system is taken as an example, but the specific type of the
  • terminal device mentioned in this application may be a single-card terminal or a multi-card terminal, which is not limited.
  • FIG. 2 it is a schematic flowchart of a method 200 for performing gap provided by an exemplary embodiment of the present application.
  • the method 200 may be executed by a terminal device, but may be specifically implemented by hardware and/or software installed in the terminal device. implement.
  • the method 200 may at least include the following steps.
  • the terminal device performs a first process on the first gap.
  • the terminal device is configured with at least one gap (gap, which may also be referred to as a gap).
  • the at least one gap may be configured by the network side device in the connected state, and the terminal device performs corresponding tasks based on at least one gap, such as paging monitoring tasks, reference signal measurement tasks or other multi-card tasks, etc. .
  • the network side device can also configure at least one gap pattern (Gap Pattern) for the terminal device, which can include at least one gap in the gap pattern, and the terminal device can perform a corresponding task based on at least one gap included in the gap pattern.
  • the gap mode may include a periodic gap mode and an aperiodic gap mode.
  • the periodic gap mode may include multiple gaps
  • the aperiodic gap mode may include one gap.
  • the first gap and the second gap belong to the at least one gap.
  • the measurement timings corresponding to the first gap and the second gap or the first task may be of equal length or unequal length, which is not limited here.
  • overlap can be understood as partial or full overlap in the time domain, where "full overlap” can be understood as one gap covering another gap, or one measurement opportunity covering one gap, etc., or one gap covering A measurement timing etc.
  • the first processing includes ignoring the first gap or using the first gap.
  • "ignoring the first gap” can be understood as not using the first gap, not executing the first gap, not executing tasks corresponding to the purpose of the gap during the first gap, and communicating with the network side during the first gap
  • the device performs sending and receiving operations, releases the configuration of the first gap, and so on.
  • using the first gap can be understood as: executing the first gap, executing tasks corresponding to the gap purpose during the first gap, not performing transceiving operations with network-side devices during the first gap, and the like.
  • the terminal device when ignoring the first gap, may only ignore the fourth gap, and the fourth gap corresponds to the second gap or the first task The first gap whose measurement timing overlaps occurs, or, the fourth gap is the first gap when the first condition is met, that is, the terminal device may only ignore all or part of the first gap where the overlap or conflict occurs .
  • the terminal device may ignore the fourth gap and at least one first gap after the fourth gap. For example, the terminal device may ignore the first gap that appears within a specified time period, and for another example, the terminal ignores all possible first gaps (that is, releases configuration information corresponding to the first gap).
  • the terminal device ignores the first gap, it can only ignore gap A, it can also ignore gap A and the gap B and C that appear in the specified duration, and it can also ignore gap A and all possible occurrences of B and C , D, E and F, which are not limited in this embodiment.
  • the terminal device uses the first gap or ignores the first gap when the measurement occasions corresponding to the first gap and the second gap or the first task overlap, thereby providing A gap processing mechanism is proposed in the scenario where the measurement opportunities corresponding to the gap and the gap or the gap and the first task overlap, which can enable the terminal device to clarify its own behavior and perform gap processing, effectively ensuring the quality of wireless communication.
  • the processing rule for the terminal device to perform the first processing on the first gap may be
  • the negotiation and determination between the terminal device and the network side device can also be realized through protocol agreement or high-level configuration or network side configuration, so that the consistency of information between the network side device and the terminal device is maintained, avoiding Data loss and other problems occur, and then maintain the connection between the terminal device and the network side device, ensure business continuity on the terminal device, and improve user experience.
  • FIG. 3 it is a schematic flowchart of a method 300 for executing gap provided by an exemplary embodiment of the present application.
  • the method 300 may be executed by a terminal device, but may be specifically implemented by hardware and/or software installed in the terminal device. implement.
  • the method 300 may at least include the following steps.
  • the terminal device performs a first process on the first gap.
  • the terminal device is configured with at least one gap, and the first gap and the second gap belong to the at least one gap, and the first processing includes ignoring the first gap or using the first gap.
  • the terminal device uses the first gap or ignores the first gap.
  • the way of gap may be different, which will be described below with different examples.
  • the terminal device uses the first gap, Any one of the following (11)-(16) can be included.
  • the terminal may use the first gap by default and ignore the second gap.
  • the terminal device may not consider the type, length, purpose, etc. of the first gap. Once the first gap overlaps with the second gap, the terminal uses the first gap by default and ignores the second gap. Two gaps.
  • the terminal device uses the first gap and ignores the second gap.
  • the priority of the first gap can be determined by the terminal device or the network side device according to one of the length of the gap, the start time of the gap, the end time of the gap, the purpose information of the gap (such as paging, connection process, etc.) One or more items are determined, and there is no limitation here.
  • the priority of a gap with a long time is higher than that of a gap with a short time; for another example, the priority of a gap with an early start time is higher than that of a gap with a later start time.
  • the priority of the purpose information can be stipulated by means of agreement agreement, for example, the priority of paging purpose (Paging Purpose) and/or link connection purpose can be agreed as high priority (High Priority Purpose), and the priority of measurement purpose low priority, or the priority of the paging purpose is higher than that of the measurement purpose... .
  • the priority of a long gap is higher than that of a short gap.
  • the start time of the first gap is earlier than the start time of the second gap.
  • gaps with earlier start times have higher priority than gaps with later start times.
  • the terminal device uses the first gap with an earlier start time and ignores the second gap.
  • ignoring the second gap mentioned in this embodiment may mean ignoring the entire second gap, or ignoring a part of the second gap.
  • the terminal device can ignore the entire second gap, that is, [30-50 ] ms, and during the first gap (ie [0-40] ms), the terminal device executes the task corresponding to the first gap.
  • the terminal device can ignore the [30-40 ] ms, and during the [30-40] ms, the terminal device executes the task corresponding to the first gap, and during the [30-50] ms, executes the task corresponding to the second gap.
  • the terminal device may determine the processing of the first gap based on at least one of the foregoing (a)-(d), for example, when (a)-(d) are simultaneously satisfied, the first gap may be used.
  • the terminal device may use the first gap first, and use the second gap later.
  • the terminal device can use the measurement gap first, and then continue to use the one-time Multi-SIM after the measurement gap ends.
  • -SIM gap For example, assuming that the first gap is a measurement gap and the second gap is a one-time multi-SIM (Multi-SIM) gap.
  • Multi-SIM multi-SIM
  • the second gap may be used within X (greater than or equal to 1) time units before the start of the first gap, and the first gap may be used after the end of the second gap.
  • the time unit may be a time slot, a symbol, a subframe, and the like.
  • the third gap is a part of the first gap that does not overlap with the second gap.
  • the first duration includes the first number of time units earlier in the first gap, so The second duration includes time units other than the first number of time units in the first gap.
  • the fourth duration includes time units other than the second number of time units in the first gap.
  • the first number and the second number can be realized through protocol agreement, high-level signaling configuration or network layer configuration, and the time unit can include time slot, symbol, subframe (subframe) ) etc.
  • the terminal device ignores the first gap.
  • the length, type, purpose information, etc. of the first gap may not be considered, and once the first gap overlaps with the second gap, the terminal device ignores the first gap by default. That is, if the first gap overlaps with the second gap, the terminal may use the first gap by default and ignore the second gap.
  • the terminal device can ignore the first gap by default .
  • the length of the first gap is shorter than the length of the second gap.
  • the start time of the first gap is later than the start time of the second gap.
  • a gap with an earlier start time has a higher priority than a gap with a later start time.
  • the priority of the purpose information of the first gap is lower than the priority of the purpose information of the second gap.
  • the first gap includes any one of the following (31)-(33).
  • the first task may include a radio resource management (Radio resource management, RRM) measurement task, etc.
  • RRM Radio resource management
  • the measurement opportunity or window used to perform the RRM measurement task may be called a synchronization signal block (Synchronization Signal and PBCH block, SSB) RRM Measurement Timing Configuration (SMTC) window or SMTC measurement opportunity or RRM measurement opportunity, etc.
  • a radio resource management Radio resource management, RRM
  • SSB synchronization Signal block
  • SMTC Measurement Timing Configuration
  • the terminal device uses the first gap by default, ignores the SMTC measurement window corresponding to the first task, or ignores the first The RRM measurement timing corresponding to the task.
  • the RRM measurement task may include the measurement task of the serving cell, the inter-frequency measurement task, the Inter-RAT measurement task, etc.; the corresponding SMTC measurement window may be the same-frequency SMTC window, an inter-frequency SMTC window, etc., here No restrictions.
  • the terminal device may perform the first task, such as RRM measurement, after using the first gap.
  • the task on the first gap may include that the UE leaves the current network to perform a multi-card task. Based on this, after the first gap starts, the UE may leave the current network to perform the task on the first gap.
  • the target task of and return to the current network after completing the target task, and perform RRM measurement.
  • the operation may be performed during the first gap or after the first gap.
  • the terminal device may perform the first task, such as RRM measurement, before using the first gap.
  • the task on the first gap may include that the UE leaves the current network to perform a multi-card task. Based on this, before the start of the first gap, perform the RRM measurement task, and then the UE may leave the current network To perform the task on the first gap.
  • the operation may be performed during the first gap or before or after the first gap.
  • the measurement period corresponding to the RRM measurement task is a first length
  • the first The length is obtained by extending the length of the measurement period by at least one length of the first gap, and the measurement gap is associated with a measurement opportunity corresponding to the RRM measurement task.
  • a measurement period includes multiple measurement occasions that can be used for the RRM measurement task
  • the measurement gap is the gap configured by the network side device for the terminal device to perform the RRM measurement task, that is, one of the The measurement gap may correspond to a measurement opportunity of an RRM measurement task.
  • the terminal device may ignore the measurement gap or measurement occasion.
  • the terminal device may also perform the ignoring all The step of the first gap above, wherein the first condition includes at least one of the following (41)-(48).
  • MCG Master cell group
  • RLF radio link failure
  • the first gap may be a gap corresponding to the MCG. That is, when the MCG radio link fails, the terminal device ignores the gap corresponding to the MCG.
  • the first gap may be a gap corresponding to the SCG. That is, when the SCG radio link fails, the terminal device ignores the gap corresponding to the SCG, or the terminal device ignores the gap corresponding to the SCG and the gap corresponding to the MCG.
  • the first timer starts running, where the first timer is used to monitor whether the wireless link fails.
  • the first timer may be T310 and/or T312.
  • the terminal device may ignore the first gap that may occur during the operation of T310 after T310 is turned on, such as the gap corresponding to the MCG and/or SCG.
  • the terminal device can also perform radio link monitoring (Radio Link Monitoring).
  • the terminal device may ignore the first gap that may appear during the operation of T312, such as the gap corresponding to the MCG and/or SCG.
  • the terminal device may also perform wireless link monitoring.
  • the terminal device sends a first message, the first message includes at least one of an MCG failure message, an SCG failure message, and a first indication message, and the first indication message is used to indicate to the network side equipment The terminal ignores the first gap.
  • the terminal device may ignore the first gap after sending the MCG failure message (that is, initiate the MCG failure information reporting process), and initiate a fast MCG recovery (fast MCG recovery ).
  • the terminal device may ignore the first gap after sending the SCG failure message (that is, initiate the SCG failure information reporting process), and initiate a fast SCG recovery (fast SCG recovery).
  • the terminal device ignores the first gap after sending the first indication message.
  • the first indication message may carry information about at least one ignored gap, such as the name and type of the gap, whether it is periodic, purpose information, and the like.
  • the network side device may ignore the possible first gap according to the first message, or ignore the first gap according to the gap carried in the first message.
  • the first message may be transmitted through radio resource control (Radio Resource Control, RRC) signaling, which is not limited here.
  • RRC Radio Resource Control
  • the terminal device initiates an MCG failure information (MCG failure information) process.
  • MCG failure information MCG failure information
  • the terminal device may ignore the first gap corresponding to the MCG when/after the MCG failure information process is triggered.
  • the network side device after receiving the MCG failure information message, ignores the corresponding first gap.
  • the terminal device initiates an SCG failure information procedure.
  • the terminal device may ignore the first gap corresponding to the SCG and MCG when/after the SCG failure information process is triggered.
  • the network side device after receiving the SCG failure information message, ignores the corresponding first gap.
  • the terminal device sends a measurement report message.
  • the terminal device may ignore the first gap within a fifth time period after sending the measurement report message.
  • the fifth duration may be implemented by a protocol agreement or a high-level signaling instruction or network configuration.
  • the fifth duration may also be determined according to the running duration of T312. For example, assuming that the terminal device sends a measurement report message and T312 is running or starts to run, then the terminal may ignore the first gap during T312 running or after T312 times out.
  • the network side device ignores the first gap after receiving the measurement report message.
  • the terminal device ignores the first gap. Gap.
  • the specific threshold may be implemented by protocol agreement or high-layer signaling instruction or network configuration.
  • the way the terminal device processes the first gap is further given, such as the priority mechanism when the gap overlaps, the conflict processing mechanism during the gap period and RRM measurement, and the wireless link failure scenario
  • the mechanism of ignoring the Gap, etc. effectively solves the conflict between the multi-card gap (such as the first gap) and the existing measurement mechanism and the wireless link failure process, and further ensures the wireless communication performance and service continuity on the terminal device , to improve user experience.
  • FIG. 4 it is a schematic flowchart of a method 400 for performing gap provided by an exemplary embodiment of the present application.
  • the method 400 may be executed by a terminal device, but may be specifically implemented by hardware and/or software installed in the terminal device. implement.
  • the method 400 may at least include the following steps.
  • the terminal device performs a first process on the first gap.
  • the terminal device is configured with at least one gap, and the first gap and the second gap belong to the at least one gap, and the first processing includes ignoring the first gap or using the first gap.
  • the terminal device does not monitor the power saving signal or the power saving signal monitoring opportunity occurring during the first gap.
  • the power-saving signal includes at least a DCP (DCI with CRC scrambled by PS-RNTI)) signal and/or a wake-up signal (Wake up signal, WUS).
  • DCP DCI with CRC scrambled by PS-RNTI
  • WUS wake-up signal
  • normal data transmission and reception can be performed between the network side device and the terminal device, for example, the network side device sends RRC reconfiguration information to the terminal device to ensure normal data transmission.
  • the network side device sends RRC reconfiguration information to the terminal device to ensure normal data transmission.
  • the manner in which the network side device schedules the terminal device may include the following (1) and/or (2).
  • Scheduling is performed on the part of the ignored first gap that is not overlapped by other gaps. For example, if the neglected first gap is partially occupied (overlapped) by the second gap, then the terminal does not perform the task corresponding to the purpose information of the first gap, and correspondingly, the network side device can Terminal scheduling is performed on the non-overlapped part of a gap.
  • the network side device may perform terminal scheduling based on the ignored first gap.
  • the terminal may also perform at least one of the following (51)-(52).
  • the terminal device sends a first gap request to the network side device.
  • the first gap request is used to request the network side device to configure the first gap. Based on this, the first gap request carries at least the priority information of the first gap and the purpose information of the first gap (such as at least one of Paging purpose), period information, start time information, length information, etc.
  • the priority of the first gap may be an absolute priority or a relative priority.
  • the priority information of the first gap may be MSIM Gap1>MeasGap>MSIM Gap2, or the priority information of the first gap may be high priority, low priority or other specified priority , without limitation here.
  • the priority of the first gap relative to the measurement Gap such as high priority, low priority, and so on.
  • the first gap with high priority takes precedence over the measurement gap; for another example, the measurement gap takes precedence over the first gap with low priority.
  • the priority information of the first gap may be determined by the terminal device based on the desired purpose information, length information, cycle information, start time information, etc. of the first gap, which is not limited here.
  • the gap configuration information (such as RRC reconfiguration information) at least carries the priority information of the first gap, the purpose information (such as Paging purpose) of the first gap, cycle information, start time information, length at least one of information, etc.
  • the priority information of the first gap carried in the gap configuration information may also be the purpose information and length information of the first gap expected by the network side device based on the terminal device , cycle information, start time information, etc., and the priority of the first gap may be an absolute priority or a relative priority, etc., which will not be repeated here.
  • the foregoing (51) and (52) may be independent of each other, or the gap configuration information in (52) may be obtained based on the configuration of the first gap request in (51).
  • the terminal device when the terminal device is a multi-card terminal, and a gap (such as the first gap) needs to be configured in the multi-card terminal, so as to go to other networks based on the gap to perform paging monitoring, then the terminal device can Sending the first gap request to the network side device to request the network side device to perform gap configuration, then, after receiving the first gap request, the network side device determines the gap configuration information and sends it to the terminal device.
  • a gap such as the first gap
  • the network side device may configure gap configuration information according to the target task and send it to the terminal device.
  • the execution subject may be a device for executing the gap, or a control module in the device for executing the gap for executing the method 200-400 for executing the gap .
  • the device for executing the gap provided by the embodiment of the present application is described by taking the apparatus for executing the gap to execute the method 200-400 for executing the gap as an example.
  • FIG. 5 it is a schematic flowchart of a method 500 for performing gap provided by an exemplary embodiment of the present application.
  • the method 500 may be executed by, but not limited to, a network-side device, specifically, it may be implemented by hardware installed in the network-side device and/or or software implementation.
  • the method 500 may at least include the following steps.
  • the first gap and the second gap are gaps configured by the network side device for the terminal device.
  • the network side device ignores the first gap, including: when at least one of the following conditions is met, the network side The device ignores the first gap: the length of the first gap is shorter than the length of the second gap; the start time of the first gap is later than the start time of the second gap; the start time of the first gap is The priority of the purpose information is lower than the priority of the purpose information of the second gap; the priority of the first gap is lower than the priority of the second gap.
  • the method further includes: when a first condition is met, the network side device executes the step of ignoring the first gap, where the first condition includes at least one of the following Item: The first message sent by the terminal device is received, the first message includes at least one of an MCG failure message, an SCG failure message, and a first indication message, and the first indication message is used to notify the network side device Instructing the network side device to ignore the first gap; receiving a measurement report message sent by the terminal device.
  • the method further includes: when the first gap is ignored, the network side device sends terminal scheduling information to the terminal device.
  • the method further includes at least one of the following: the network side device receives a first gap request sent by the terminal device, and the first gap request includes carrying at least the priority information of the first gap and/or the purpose information of the first gap; the network side device sends gap configuration information to the terminal device, and the gap configuration information carries at least the information of the first gap Priority information and/or purpose information of the first gap.
  • the terminal device is a multi-card terminal, for example, the terminal device includes card 1 and card 2, then, when the terminal device performs paging monitoring based on card 1 and card 2 , a paging conflict between card 1 and card 2 may occur, resulting in poor wireless communication performance.
  • the embodiment of the present application may adopt the following method 1 and/or 2 to handle the problem, and the content is as follows.
  • Method 1 The method of non-access stratum (Non Access Stratum, NAS) processing International Mobile Subscriber Identity (IMSI offset)
  • NAS Non Access Stratum
  • IMSI offset International Mobile Subscriber Identity
  • the UE NAS Every time the UE NAS initiates a TAU or registration request, if the terminal device detects a paging conflict, the UE NAS will carry a new IMSI offset value in the TAU or registration request to request the network side device to use the new IMSI offset value for paging.
  • the UE NAS layer carries the saved IMSI offset value in the TAU or registration request, that is, the default terminal device continues to use the configured IMSI offset value.
  • the terminal device does not detect a paging conflict within a period of time, the UE NAS layer does not carry the IMSI offset value in the TAU or registration request, that is, deletes the configured IMSI offset value.
  • Method 2 The method of RRC layer and NAS layer processing IMSI offset
  • the UE NAS layer sends the configured IMSI offset to the UE RRC layer to determine whether the saved IMSI offset is still needed.
  • the UE NAS carries the IMSI offset saved by the UE in the TAU or registration request.
  • the core network checks that the IMSI offset value has not changed, the current IMSI offset value will continue to be used, that is, the IMSI offset will not be changed.
  • the UE NAS layer does not carry the IMSI offset when initiating a TAU or registration request, that is, requests to delete the configured IMSI offset.
  • the UE NAS sends it to the UE RRC.
  • the UE RRC layer needs to update the IMSI offset, it reports the suggested IMSI offset value to the UE NAS layer.
  • the situation of updating the IMSI offset includes at least one of the following (21)-(22).
  • the UE RRC sets the suggested IMSI offset to a non-zero value
  • the UE NAS will carry the new requested IMSI offset in the TAU or registration request. If the UE RRC sets the suggested IMSI offset to 0, the UE NAS layer will not carry any IMSI offset when initiating a TAU or registration request.
  • the problem of paging conflict existing on the multi-card terminal can be effectively solved, and the wireless communication performance is ensured.
  • FIG. 6 it is a schematic structural diagram of an apparatus 600 for executing gap provided by an exemplary embodiment of the present application.
  • the apparatus 600 may include: a first execution module 610 configured to connect between the first gap and the second gap or the first gap When the measurement opportunities corresponding to a task overlap, perform the first process on the first gap; wherein, the terminal device is configured with at least one gap, and the first gap and the second gap belong to all said at least one gap, said first processing includes ignoring said first gap or using said first gap.
  • the apparatus 600 may further include a determining module, configured to determine whether the first gap overlaps with the second gap or a measurement opportunity corresponding to the first task.
  • a determining module configured to determine whether the first gap overlaps with the second gap or a measurement opportunity corresponding to the first task.
  • the first execution module 610 is configured to perform any of the following: use the first gap and ignore the second gap ; use the first gap, and use the second gap after the first gap ends; use the first gap, and use the second gap before the first gap starts; use the third gap, and using the second gap, the third gap is a part of the first gap that does not overlap with the second gap; use the second gap within the first duration, and within the second duration
  • the first gap is used; the first duration includes the first number of time units earlier in the first gap, and the second duration includes the time divided by the first number of times in the first gap Other time units other than the unit; use the second gap in the third duration, use the first gap in the fourth duration, and the third duration includes the second gap in the first gap.
  • a number of time units, the fourth duration includes time units other than the second number of time units in the first gap.
  • the first execution module 610 uses the first gap and ignores the second gap when at least one of the following conditions is satisfied: the priority of the first gap is higher than that of the second gap. gap; the priority of the purpose information of the first gap is higher than the priority of the purpose information of the second gap; the length of the first gap is longer than the length of the second gap; the beginning of the first gap The time is earlier than the start time of the second gap.
  • the first execution module 610 ignores the first gap when the first gap overlaps with the second gap and satisfies at least one of the following conditions: the length of the first gap shorter than the length of the second gap; the start time of the first gap is later than the start time of the second gap; the priority of the purpose information of the first gap is lower than the purpose information of the second gap priority; the priority of the first gap is lower than the priority of the second gap.
  • the first execution module 610 is configured to do any of the following: use the first gap, and ignore the A first task; use the first gap, and execute the first task after the first gap ends; use the first gap, and execute the first task before the first gap starts.
  • the measurement period corresponding to the RRM measurement task is a first length, and the first length is The length of the measurement cycle is obtained by extending at least one length of the first gap, and the measurement gap is associated with a measurement opportunity corresponding to the RRM measurement task.
  • the first execution module 610 is further configured to execute the step of ignoring the first gap when a first condition is met, where the first condition includes at least one of the following: the main The radio link of the cell group MCG fails; the radio link of the secondary cell group SCG fails; the first timer starts running, wherein the first timer is used to monitor whether the radio link fails; the terminal device sends a first message, The first message includes at least one of an MCG failure message, an SCG failure message, and a first indication message, and the first indication message is used to instruct the network side device that the terminal ignores the first gap; the terminal The device initiates the MCG failure information process; the terminal device initiates the SCG failure information process; the terminal device sends a measurement report message.
  • the first execution module 610 is configured to ignore the first gap within a fifth time period after sending the measurement report message.
  • the first execution module 610 is used for any of the following: releasing the configuration information corresponding to the first gap; ignoring the fourth gap, the fourth gap is related to the second gap or the first gap The first gap in which the measurement opportunities corresponding to a task overlap, or the fourth gap is the first gap when the first condition is met; the fourth gap and at least one first gap located after the fourth gap are ignored a gap.
  • the first execution module 610 is further configured to: in the case of using the first gap, cancel the monitoring of the power-saving signal monitoring opportunity, wherein the power-saving signal includes at least a DCP signal and/or or wake-up signal.
  • the apparatus 600 further includes: a first transceiving module 610, configured to receive terminal scheduling information sent by the network side device during the first gap when the first gap is ignored.
  • a first transceiving module 610 configured to receive terminal scheduling information sent by the network side device during the first gap when the first gap is ignored.
  • the first transceiving module 610 is also used for at least one of the following: sending a first gap request to the network side device, the first gap request carrying at least the priority information of the first gap and/or The purpose information of the first gap; receiving gap configuration information sent by the network side device, the gap configuration information at least carrying the priority information of the first gap and/or the purpose information of the first gap.
  • a gap is provided.
  • the gap processing mechanism in the scenario where the measurement opportunities corresponding to the gap or the gap and the first task overlap can enable the terminal device to clarify its own behavior and perform gap processing, effectively ensuring the quality of wireless communication.
  • the device 500 for executing gap in the embodiment of the present application may be a device, a device with an operating system or an electronic device, or a component, an integrated circuit, or a chip in a terminal.
  • the apparatus or electronic equipment may be a mobile terminal or a non-mobile terminal.
  • the mobile terminal may include but not limited to the types of terminals 11 listed above, and the non-mobile terminal may be a server, a network attached storage (Network Attached Storage, NAS), a personal computer (personal computer, PC), a television ( television, TV), teller machines or self-service machines, etc., are not specifically limited in this embodiment of the present application.
  • the apparatus 600 for performing gap provided in the embodiment of the present application can realize each process realized by the method embodiments in FIG. 2 to FIG. 4 , and achieve the same technical effect. To avoid repetition, details are not repeated here.
  • FIG. 7 it is a schematic structural diagram of an apparatus 700 for executing gap provided by an exemplary embodiment of the present application.
  • the apparatus 700 may include a second execution module 710 for overlapping the first gap with the second gap.
  • the network side device ignores the first gap; wherein, the first gap and the second gap are gaps configured by the network side device for the terminal device.
  • the apparatus 700 may further include a configuration module, configured to configure at least one gap for the terminal device, where the first gap and the second gap belong to the at least one gap.
  • a configuration module configured to configure at least one gap for the terminal device, where the first gap and the second gap belong to the at least one gap.
  • the second execution module 710 is configured to ignore the first gap when at least one of the following conditions is met: the length of the first gap is shorter than the length of the second gap; The start time of the first gap is later than the start time of the second gap; the priority of the purpose information of the first gap is lower than the priority of the purpose information of the second gap; the priority of the first gap Lower priority than the second gap.
  • the second execution module 710 is configured to execute the step of ignoring the first gap when a first condition is met, wherein the first condition includes at least one of the following: receiving The first message sent by the terminal device, where the first message includes at least one of an MCG failure message, an SCG failure message, and a first indication message, and the first indication message is used to indicate to the network side equipment that the network The side device ignores the first gap; and receives the measurement report message sent by the terminal device.
  • the apparatus 700 further includes: a second transceiver module 720, configured to send terminal scheduling information to the terminal device when the first gap is ignored.
  • a second transceiver module 720 configured to send terminal scheduling information to the terminal device when the first gap is ignored.
  • the second transceiver module 720 is also used for at least one of the following: receiving a first gap request sent by a terminal device, the first gap request carrying at least the priority information of the first gap and/or The purpose information of the first gap; sending gap configuration information to the terminal device, where the gap configuration information at least carries the priority information of the first gap and/or the purpose information of the first gap.
  • the apparatus 700 for performing gap provided in the embodiment of the present application can realize each process realized by the method embodiment in FIG. 5 and achieve the same technical effect. To avoid repetition, details are not repeated here.
  • the embodiment of the present application also provides a terminal, including a processor and a communication interface, the communication interface is coupled to the processor, and the processor is used to run programs or instructions to implement the methods described in the method embodiments 200-400 steps and achieve corresponding technical effects.
  • This terminal embodiment corresponds to the above-mentioned terminal-side method embodiment, and each implementation process and implementation mode of the above-mentioned method embodiment can be applied to this terminal embodiment, and can achieve the same technical effect.
  • FIG. 8 is a schematic diagram of a hardware structure of a terminal implementing an embodiment of the present application.
  • the terminal 800 includes but is not limited to: a radio frequency unit 801, a network module 802, an audio output unit 803, an input unit 804, a sensor 805, a display unit 806, a user input unit 807, an interface unit 808, a memory 809, and a processor 810, etc. at least some of the components.
  • the terminal 800 may also include a power supply (such as a battery) for supplying power to various components, and the power supply may be logically connected to the processor 810 through the power management system, so as to manage charging, discharging, and power consumption through the power management system. Management and other functions.
  • the terminal structure shown in FIG. 8 does not constitute a limitation on the terminal, and the terminal may include more or fewer components than shown in the figure, or combine some components, or arrange different components, which will not be repeated here.
  • the input unit 804 may include a graphics processor (Graphics Processing Unit, GPU) 1041 and a microphone 8042, and the graphics processor 8041 is used for the image capture device (such as the image data of the still picture or video obtained by the camera) for processing.
  • the display unit 806 may include a display panel 8061, and the display panel 8061 may be configured in the form of a liquid crystal display, an organic light emitting diode, or the like.
  • the user input unit 807 includes a touch panel 8071 and other input devices 8072 .
  • the touch panel 8071 is also called a touch screen.
  • the touch panel 8071 may include two parts, a touch detection device and a touch controller.
  • Other input devices 8072 may include, but are not limited to, physical keyboards, function keys (such as volume control buttons, switch buttons, etc.), trackballs, mice, and joysticks, which will not be described in detail here.
  • the radio frequency unit 801 receives the downlink data from the network side device, and processes it to the processor 810; in addition, sends the uplink data to the network side device.
  • the radio frequency unit 801 includes, but is not limited to, an antenna, at least one amplifier, a transceiver, a coupler, a low noise amplifier, a duplexer, and the like.
  • the memory 809 can be used to store software programs or instructions as well as various data.
  • the memory 809 may mainly include a program or instruction storage area and a data storage area, wherein the program or instruction storage area may store an operating system, an application program or instructions required by at least one function (such as a sound playback function, an image playback function, etc.) and the like.
  • the memory 809 may include a high-speed random access memory, and may also include a nonvolatile memory, wherein the nonvolatile memory may be a read-only memory (Read-Only Memory, ROM), a programmable read-only memory (Programmable ROM) , PROM), erasable programmable read-only memory (Erasable PROM, EPROM), electrically erasable programmable read-only memory (Electrically EPROM, EEPROM) or flash memory.
  • ROM Read-Only Memory
  • PROM programmable read-only memory
  • PROM erasable programmable read-only memory
  • Erasable PROM Erasable PROM
  • EPROM electrically erasable programmable read-only memory
  • EEPROM electrically erasable programmable read-only memory
  • flash memory for example at least one magnetic disk storage device, flash memory device, or other non-volatile solid-state storage device.
  • the processor 810 may include one or more processing units; optionally, the processor 810 may integrate an application processor and a modem processor, wherein the application processor mainly processes the operating system, user interface, application programs or instructions, etc., Modem processors mainly handle wireless communications, such as baseband processors. It can be understood that the foregoing modem processor may not be integrated into the processor 810 .
  • the processor 810 is configured to perform the first processing on the first gap when the first gap overlaps with the second gap or the measurement opportunity corresponding to the first task; wherein the terminal device is configured There is at least one gap, and the first gap and the second gap belong to the at least one gap, and the first processing includes ignoring the first gap or using the first gap.
  • the processor 810 is configured to do any of the following: use the first gap and ignore the second gap; use The first gap, and use the second gap after the first gap ends; use the first gap, and use the second gap before the first gap starts; use the third gap, And using the second gap, the third gap is a part of the first gap that does not overlap with the second gap; use the second gap in the first duration, and use the second gap in the second duration
  • the first gap; the first duration includes the first number of time units earlier in the first gap, and the second duration includes the first number of time units in the first gap Other time units outside; the second gap is used within the third duration, and the first gap is used within the fourth duration, and the third duration includes the second number of later gaps in the first gap
  • the fourth duration includes other time units in the first gap except for the second number of time units.
  • the processor 810 uses the first gap and ignores the second gap when at least one of the following conditions is satisfied: the priority of the first gap is higher than that of the second gap; The priority of the purpose information of the first gap is higher than the priority of the purpose information of the second gap; the length of the first gap is longer than the length of the second gap; the start time of the first gap is earlier at the start time of the second gap.
  • the processor 810 ignores the first gap when the first gap overlaps with the second gap and satisfies at least one of the following conditions: the length of the first gap is shorter than The length of the second gap; the start time of the first gap is later than the start time of the second gap; the priority of the purpose information of the first gap is lower than the priority of the purpose information of the second gap level; the priority of the first gap is lower than the priority of the second gap.
  • the processor 810 is configured to do any of the following: use the first gap, and ignore the first Task: use the first gap, and execute the first task after the first gap ends; use the first gap, and execute the first task before the first gap starts.
  • the measurement period corresponding to the RRM measurement task is a first length, and the first length is The length of the measurement cycle is obtained by extending at least one length of the first gap, and the measurement gap is associated with a measurement opportunity corresponding to the RRM measurement task.
  • the processor 810 is further configured to execute the step of ignoring the first gap when a first condition is met, wherein the first condition includes at least one of the following: primary cell group The MCG radio link fails; the secondary cell group SCG radio link fails; the first timer starts running, wherein the first timer is used to monitor whether the radio link fails; the terminal device sends a first message, the The first message includes at least one of an MCG failure message, an SCG failure message, and a first indication message, and the first indication message is used to indicate to the network side device that the terminal ignores the first gap; the terminal device initiates The MCG failure information process is initiated; the terminal device initiates the SCG failure information process; and the terminal device sends a measurement report message.
  • the processor 810 is configured to ignore the first gap within a fifth time period after sending the measurement report message.
  • the processor 810 is used for any of the following: release the configuration information corresponding to the first gap; ignore the fourth gap, the fourth gap is related to the second gap or the first task The first gap where the corresponding measurement occasions overlap, or the fourth gap is the first gap when the first condition is met; the fourth gap and at least one first gap after the fourth gap are ignored .
  • the processor 810 is further configured to: in the case of using the first gap, cancel the monitoring of the power-saving signal monitoring opportunity, wherein the power-saving signal includes at least a DCP signal and/or a wake-up Signal.
  • the radio frequency unit 801 is configured to receive terminal scheduling information sent by the network side device during the first gap when the first gap is ignored.
  • the radio frequency unit 801 is also used for at least one of the following: sending a first gap request to the network side device, the first gap request carrying at least the priority information of the first gap and/or the first gap request receiving the gap configuration information sent by the network side device, the gap configuration information at least carrying the priority information of the first gap and/or the purpose information of the first gap.
  • a gap is provided.
  • the gap processing mechanism in the scenario where the measurement opportunities corresponding to the gap or the gap and the first task overlap can enable the terminal device to clarify its own behavior and perform gap processing, effectively ensuring the quality of wireless communication.
  • the embodiment of the present application also provides a readable storage medium, where a program or instruction is stored on the readable storage medium.
  • a program or instruction is stored on the readable storage medium.
  • the processor is the processor in the terminal described in the foregoing embodiments.
  • the readable storage medium includes a computer readable storage medium, such as a computer read-only memory (Read-Only Memory, ROM).
  • the embodiment of the present application also provides a network side device, including a processor and a communication interface, the communication interface is coupled to the processor, and the processor is used to run programs or instructions to implement the method described in the method embodiment 500 method steps.
  • the network-side device embodiment corresponds to the above-mentioned network-side device method embodiment, and each implementation process and implementation mode of the above-mentioned method embodiment can be applied to this network-side device embodiment, and can achieve the same technical effect.
  • the embodiment of the present application also provides a network side device.
  • the network device 900 includes: an antenna 901 , a radio frequency device 902 , and a baseband device 903 .
  • the antenna 901 is connected to the radio frequency device 902 .
  • the radio frequency device 902 receives information through the antenna 901, and sends the received information to the baseband device 903 for processing.
  • the baseband device 903 processes the information to be sent and sends it to the radio frequency device 902
  • the radio frequency device 902 processes the received information and sends it out through the antenna 901 .
  • the foregoing frequency band processing device may be located in the baseband device 903 , and the method performed by the network side device in the above embodiments may be implemented in the baseband device 903 , and the baseband device 903 includes a processor 904 and a memory 905 .
  • the baseband device 903 may include at least one baseband board, for example, a plurality of chips are arranged on the baseband board, as shown in FIG.
  • the baseband device 903 may further include a network interface 906 for exchanging information with the radio frequency device 902, and the interface is, for example, a common public radio interface (CPRI for short).
  • CPRI common public radio interface
  • the network side device in the embodiment of the present invention also includes: instructions or programs stored in the memory 905 and executable on the processor 904, and the processor 904 calls the instructions or programs in the memory 905 to execute the modules shown in FIG. 7 To avoid duplication, the method of implementation and to achieve the same technical effect will not be repeated here.
  • the embodiment of the present application further provides a chip, the chip includes a processor and a communication interface, the communication interface is coupled to the processor, and the processor is used to run the program or instruction of the network side device to implement the above method embodiment
  • the chip includes a processor and a communication interface
  • the communication interface is coupled to the processor
  • the processor is used to run the program or instruction of the network side device to implement the above method embodiment
  • the chip mentioned in the embodiment of the present application may also be called a system-on-chip, a system-on-chip, a system-on-a-chip, or a system-on-a-chip.
  • the embodiment of the present application also provides a computer program product, the computer program product includes a processor, a memory, and a program or instruction stored in the memory and operable on the processor, the program or instruction is executed by the
  • the above-mentioned processor is executed, each process in the above-mentioned method embodiment 200-500 can be realized, and the same technical effect can be achieved. To avoid repetition, details are not repeated here.
  • the term “comprising”, “comprising” or any other variation thereof is intended to cover a non-exclusive inclusion such that a process, method, article or apparatus comprising a set of elements includes not only those elements, It also includes other elements not expressly listed, or elements inherent in the process, method, article, or device. Without further limitations, an element defined by the phrase “comprising a " does not preclude the presence of additional identical elements in the process, method, article, or apparatus comprising that element.
  • the scope of the methods and devices in the embodiments of the present application is not limited to performing functions in the order shown or discussed, and may also include performing functions in a substantially simultaneous manner or in reverse order according to the functions involved. Functions are performed, for example, the described methods may be performed in an order different from that described, and various steps may also be added, omitted, or combined. Additionally, features described with reference to certain examples may be combined in other examples.
  • the methods of the above embodiments can be implemented by means of software plus a necessary general-purpose hardware platform, and of course also by hardware, but in many cases the former is better implementation.
  • the technical solution of the present application can be embodied in the form of computer software products, which are stored in a storage medium (such as ROM/RAM, magnetic disk, etc.) , CD-ROM), including several instructions to make a terminal (which may be a mobile phone, a computer, a server, an air conditioner, or a network device, etc.) execute the methods described in the various embodiments of the present application.

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Abstract

本申请公开了一种执行gap的方法、装置及终端,属于无线通信技术领域,本申请实施例的执行gap的方法包括:在第一间隙gap与第二gap或第一任务对应的测量时机发生重叠的情况下,终端设备对所述第一gap执行第一处理;其中,所述终端设备被配置有至少一个gap、且所述第一gap和所述第二gap属于所述至少一个gap,所述第一处理包括忽略所述第一gap或使用所述第一gap。

Description

执行gap的方法、装置及终端
交叉引用
本发明要求在2021年07月21日提交中国专利局、申请号为202110826028.0、发明名称为“执行gap的方法、装置及终端”的中国专利申请的优先权,该申请的全部内容通过引用结合在本发明中。
技术领域
本申请属于无线通信技术领域,具体涉及一种执行gap的方法、装置及终端。
背景技术
相关技术中,网络侧可以为终端配置多种间隙模式(Gap Pattern),且终端可以利用对应的Gap来执行相应的任务。例如,网络侧给终端设备(User Equipment,UE,也可称作终端或者用户终端)配置测量Gap。UE可以利用该测量Gap执行异频测量(Inter-frequency Measurements,IFM)、无线接入技术(Radio Access Technology,RAT)间测量(Inter-RAT Measurements)等。
但是,一旦网络侧为UE配置的一个gap与另一个gap等等发生重叠或冲突,会导致终端行为模糊等问题出现,影响无线通信性能。
发明内容
本申请实施例提供一种执行gap的方法、装置及终端,能够解决网络侧为UE配置的一个gap与另一个gap等等发生重叠或冲突时,而导致的终端行为模糊等问题。
第一方面,提供了一种执行gap的方法,包括:在第一gap与第二gap或第一任务对应的测量时机发生重叠的情况下,终端设备对所述第一gap执行第一处理;其中,所述终端设备被配置有至少一个gap、且所述第一gap 和所述第二gap属于所述至少一个gap,所述第一处理包括忽略所述第一gap或使用所述第一gap。
第二方面,提供了一种执行gap的装置,应用于终端设备,所述装置包括:第一执行模块,用于在第一间隙gap与第二gap或第一任务对应的测量时机发生重叠的情况下,对所述第一gap执行第一处理;其中,所述终端设备被配置有至少一个gap、且所述第一gap和所述第二gap属于所述至少一个gap,所述第一处理包括忽略所述第一gap或使用所述第一gap。
第三方面,提供了一种终端,该终端包括处理器、存储器及存储在所述存储器上并可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如第一方面所述的方法的步骤。
第四方面,提供了一种终端,包括处理器及通信接口,其中,所述通信接口和所述处理器耦合,所述处理器用于运行程序或指令,实现如第一方面所述的方法的步骤。
第五方面,提供了一种执行gap的方法,包括:在第一间隙gap与第二gap发生重叠的情况下,网络侧设备忽略所述第一gap;其中,所述第一gap和所述第二gap是所述网络侧设备为终端设备配置的gap。
第六方面,提供了一种执行gap的装置,应用于网络侧设备,所述装置包括:第二执行模块,用于在第一间隙gap与第二gap发生重叠的情况下,网络侧设备忽略所述第一gap;其中,所述第一gap和所述第二gap是所述网络侧设备为终端设备配置的gap。
第七方面,提供了一种网络侧设备,该终端包括处理器、存储器及存储在所述存储器上并可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如第五方面所述的方法的步骤。
第八方面,提供了一种网络侧设备,包括处理器及通信接口,其中,所述通信接口和所述处理器耦合,所述处理器用于运行程序或指令,实现如第五方面所述的方法的步骤。
第九方面,提供了一种可读存储介质,所述可读存储介质上存储程序或 指令,所述程序或指令被处理器执行时,实现如第一方面或第五方面所述的方法的步骤。
第十方面,提供了一种芯片,所述芯片包括处理器和通信接口,所述通信接口和所述处理器耦合,所述处理器用于运行程序或指令,实现如第一方面或第五方面所述的方法的步骤。
第十一方面,提供了一种计算机程序产品/程序产品,所述计算机程序/程序产品被存储在非瞬态的存储介质中,所述程序/程序产品被至少一个处理器执行以实现如第一方面或第五方面所述的方法的步骤。
在本申请实施例中,终端设备通过在第一gap与第二gap或第一任务对应的测量时机发生重叠的情况下,使用所述第一gap或忽略所述第一gap,由此,提供了一种gap与gap或gap与第一任务对应的测量时机重叠场景下的gap处理机制,能够使得终端设备明确自身行为并进行gap处理,有效的确保了无线通信质量。
附图说明
图1是本申请一示例性实施例提供的无线通信系统的结构示意图。
图2是本申请一示例性实施例提供的执行gap的方法的流程示意图。
图3是本申请另一示例性实施例提供的执行gap的方法的流程示意图。
图4是本申请又一示例性实施例提供的执行gap的方法的流程示意图。
图5是本申请又一示例性实施例提供的执行gap的方法的流程示意图。
图6是本申请一示例性实施例提供的执行gap装置的结构示意图。
图7是本申请另一示例性实施例提供的执行gap装置的结构示意图。
图8是本申请一示例性实施例提供的终端的结构示意图。
图9是本申请一示例性实施例提供的网络侧设备的结构示意图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行 清楚地描述,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员所获得的所有其他实施例,都属于本申请保护的范围。
本申请的说明书和权利要求书中的术语“第一”、“第二”等是用于区别类似的对象,而不用于描述特定的顺序或先后次序。应该理解这样使用的术语在适当情况下可以互换,以便本申请的实施例能够以除了在这里图示或描述的那些以外的顺序实施,且“第一”、“第二”所区别的对象通常为一类,并不限定对象的个数,例如第一对象可以是一个,也可以是多个。此外,说明书以及权利要求中“和/或”表示所连接对象的至少其中之一,字符“/”一般表示前后关联对象是一种“或”的关系。
值得指出的是,本申请实施例所描述的技术不限于长期演进型(Long Term Evolution,LTE)/LTE的演进(LTE-Advanced,LTE-A)系统,还可用于其他无线通信系统,诸如码分多址(Code Division Multiple Access,CDMA)、时分多址(Time Division Multiple Access,TDMA)、频分多址(Frequency Division Multiple Access,FDMA)、正交频分多址(Orthogonal Frequency Division Multiple Access,OFDMA)、单载波频分多址(Single-carrier Frequency-Division Multiple Access,SC-FDMA)和其他系统。本申请实施例中的术语“系统”和“网络”常被可互换地使用,所描述的技术既可用于以上提及的系统和无线电技术,也可用于其他系统和无线电技术。以下描述出于示例目的描述了新空口(New Radio,NR)系统,并且在以下大部分描述中使用NR术语,但是这些技术也可应用于NR系统应用以外的应用,如第6代(6th Generation,6G)通信系统。
图1示出本申请实施例可应用的一种无线通信系统的结构示意图。无线通信系统包括终端11和网络侧设备12。其中,终端11可以是手机、平板电脑(Tablet Personal Computer)、膝上型电脑(Laptop Computer)或称为笔记本电脑、个人数字助理(Personal Digital Assistant,PDA)、掌上电脑、上网本、超级移动个人计算机(ultra-mobile personal computer,UMPC)、移动上 网装置(Mobile Internet Device,MID)、可穿戴式设备(Wearable Device)或车载设备(VUE)、行人终端(PUE)等终端侧设备,可穿戴式设备包括:智能手表、手环、耳机、眼镜等。需要说明的是,在本申请实施例并不限定终端11的具体类型。网络侧设备12可以是基站或核心网,其中,基站可被称为节点B、演进节点B、接入点、基收发机站(Base Transceiver Station,BTS)、无线电基站、无线电收发机、基本服务集(Basic Service Set,BSS)、扩展服务集(Extended Service Set,ESS)、B节点、演进型B节点(evolved Node-B,eNB)、家用B节点、家用演进型B节点、无线局域网(Wireless Local Area Networks,WLAN)接入点、WiFi节点、发送接收点(Transmitting Receiving Point,TRP)或所述领域中其他某个合适的术语,只要达到相同的技术效果,所述基站不限于特定技术词汇,需要说明的是,在本申请实施例中仅以NR系统中的基站为例,但是并不限定基站的具体类型。
下面结合附图,通过一些实施例及其应用场景对本申请实施例提供的技术方案进行详细地说明。
需要注意,本申请中提及的终端设备可以是单卡终端或多卡终端,对此不做限制。
如图2所示,为本申请一示例性实施例提供的执行gap的方法200的流程示意图,该方法200可以但不限于由终端设备执行,具体可由安装于终端设备中的硬件和/或软件执行。本实施例中,所述方法200至少可以包括如下步骤。
S210,在第一gap与第二gap或第一任务对应的测量时机发生重叠的情况下,终端设备对所述第一gap执行第一处理。
其中,所述终端设备被配置有至少一个间隙(gap,也可称作间隔)。本实施例中,所述至少一个gap可以是在连接状态下由网络侧设备配置,而终端设备基于至少一个gap执行相应的任务,如寻呼监测任务、参考信号测量任务或其他多卡任务等。
或者,网络侧设备也可以给终端设备配置至少一个gap模式(Gap Pattern), 该gap模式中可以包含至少一个gap,而终端设备可以基于gap模式中包括的至少一个gap执行相应的一任务。其中,gap模式可以包括周期性gap模式和非周期性gap模式。其中,周期性gap模式可以包含多个gap,非周期性gap模式可以包含一个gap。
所述第一gap和所述第二gap属于所述至少一个gap。此外,第一gap与第二gap或第一任务对应的测量时机可以等长或非等长,在此不做限制。
前述的“重叠”可以理解为在时域上部分重叠或全部重叠,其中,“全部重叠”可以理解为一个gap覆盖了另一个gap,或一个测量时机覆盖了一个gap等,或一个gap覆盖了一个测量时机等。
所述第一处理包括忽略所述第一gap或使用所述第一gap。其中,“忽略所述第一gap”可以理解为不使用第一gap、不执行第一gap、在第一gap期间不执行gap目的(purpose)对应的任务、在第一gap期间可以与网络侧设备进行收发操作、释放第一gap的配置等。
对应的,“使用所述第一gap”可以理解为:执行第一gap、在第一gap期间执行gap purpose对应的任务、在第一gap期间不可以与网络侧设备进行收发操作等。
基于此,作为一种可能的实现方式,所述终端设备在忽略所述第一gap时,可以仅忽略第四gap,所述第四gap是与所述第二gap或所述第一任务对应的测量时机发生重叠的第一gap,或者,所述第四gap是在满足第一条件时的第一gap,也就是说,终端设备可以仅忽略发生重叠或冲突的第一gap的全部或部分。
或者,所述终端设备可以忽略第四gap以及第四gap之后的至少一个第一gap。例如,所述终端设备可以忽略在指定时长内出现的第一gap,又例如,所述终端忽略全部可能出现的全部第一gap(即释放第一gap对应的配置信息)。
示例性的,假设与第二gap或第一任务对应的测量时机发生重叠的第一gap记作A,在A之后可能出现的第一gap记作B、C、D、E、F(时间顺序), 那么,所述终端设备在忽略第一gap时,可以仅忽略gap A,也可以忽略gap A以及指定时长里面出现的gap B和C,还可以忽略gap A以及所有可能出现的B、C、D、E和F,本实施例对此不做限制。
本实施例中,所述终端设备通过在第一gap与第二gap或第一任务对应的测量时机发生重叠的情况下,使用所述第一gap或忽略所述第一gap,由此,提供了一种gap与gap或gap与第一任务对应的测量时机重叠场景下的gap处理机制,能够使得终端设备明确自身行为并进行gap处理,有效的确保了无线通信质量。
需要注意的是,在本实施例以及后续实施例中,关于所述终端设备对所述第一gap执行第一处理的处理规则(如使用第一gap、忽略第一gap的规则),可以是所述终端设备与网络侧设备之间进行协商确定,也可以是通过协议约定或高层配置或网络侧配置的方式实现,由此,使得网络侧设备与终端设备之间保持信息的一致性,避免数据丢失等问题发生,进而维持终端设备与网络侧设备之间的连接,保证终端设备上的业务连续性,提升用户体验。
如图3所示,为本申请一示例性实施例提供的执行gap的方法300的流程示意图,该方法300可以但不限于由终端设备执行,具体可由安装于终端设备中的硬件和/或软件执行。本实施例中,所述方法300至少可以包括如下步骤。
S310,在第一间隙gap与第二gap或第一任务对应的测量时机发生重叠的情况下,终端设备对所述第一gap执行第一处理。
其中,所述终端设备被配置有至少一个gap、且所述第一gap和所述第二gap属于所述至少一个gap,所述第一处理包括忽略所述第一gap或使用所述第一gap。
可以理解,S310的实现过程除了可以参照方法实施例200中的相关描述之外,作为一种可能的实现方式,在不同场景下,所述终端设备使用所述第一gap或忽略所述第一gap的方式可能不同,下面结合不同的示例对其进行说明。
示例1
在场景为所述第一gap与第二gap发生重叠的情况下,也就是,在所述第一gap与所述第二gap发生重叠的情况下,所述终端设备使用所述第一gap,可以包括以下(11)-(16)中的任意一项。
(11)使用所述第一gap,忽略所述第二gap。
其中,在一种实现方式中,可以在第一gap为指定长度、指定类型(如测量gap等)或具有指定目的信息(用于进行寻呼监测等)等时,如果所述第一gap与所述第二gap发生重叠,那么,所述终端可以默认使用所述第一gap,忽略第二gap。
或者,所述终端设备可以不考虑第一gap的类型、长度、目的等,一旦所述第一gap与所述第二gap发生重叠,那么,所述终端默认使用所述第一gap,忽略第二gap。
此外,在另一种实现方式中,也可以在满足以下(a)-(d)中的至少之一的情况下,所述终端设备使用所述第一gap,忽略所述第二gap。
(a)所述第一gap的优先级高于所述第二gap。
其中,所述第一gap的优先级可以由终端设备或网络侧设备根据gap的长短、gap的开始时间、gap的结束时间、gap的目的信息(如寻呼、连接过程等)等中的一项或多项确定,在此不做限制。
例如,时间长的gap的优先级高于时间短的gap的优先级;又例如,开始时间早的gap的优先级高于开始时间晚的gap的优先级等。
(b)所述第一gap的目的信息的优先级高于所述第二gap的目的信息的优先级。
其中,可以通过协议约定等方式约定目的信息的优先级,例如,可以约定寻呼目的(Paging Purpose)和/或链路连接目的的优先级为高优先级(High Priority Purpose),测量目的的优先级为低优先级,或者,寻呼目的的优先级高于测量目的的优先级……。
(c)所述第一gap的长度长于所述第二gap的长度。
也就是,时间长的gap的优先级高于时间短的gap的优先级。
(d)所述第一gap的开始时间早于所述第二gap的开始时间。
也就是,开始时间早的gap的优先级高于开始时间晚的gap的优先级。
例如,基于(d),假设第一gap和第二gap部分重叠,那么,所述终端设备使用开始时间早的第一gap,忽略第二gap。
需要注意,本实施例中所述的“忽略第二gap”可以是忽略整个第二gap,也可以是忽略第二gap中的部分。
例如,假设第一gap的开始时间为0ms、结束时间为40ms,而第二gap的开始时间是30ms、结束时间是50ms,那么,所述终端设备可以忽略整个第二gap,即[30~50]ms,以及在第一gap(即[0~40]ms)期间,所述终端设备执行第一gap对应的任务。
又例如,假设第一gap的开始时间为0ms、结束时间为40ms,而第二gap的开始时间是30ms、结束时间是50ms,那么,所述终端设备可以忽略第二gap中的[30~40]ms,且在该[30~40]ms,所述终端设备执行第一gap对应的任务,以及在[30~50]ms期间,执行第二gap对应的任务。
本实施例中,所述终端设备可以基于前述(a)-(d)中的至少一项确定第一gap的处理,例如,可以在同时满足(a)-(d)时,使用所述第一gap,忽略第二gap;又例如,可以在同时满足(a)和(b)时,使用所述第一gap,忽略第二gap,又例如,可以在同时满足(a)、(b)和(d)时,使用所述第一gap,忽略第二gap等,在此不做限制。
(12)使用所述第一gap,以及在所述第一gap结束后使用所述第二gap。
其中,假设所述第一gap和所述第二gap部分重叠,那么,所述终端设备可以先使用第一gap,延后使用第二gap。
例如,假设第一gap为测量gap,所述第二gap为一次性多卡(Multi-SIM)gap,那么,所述终端设备可以先使用测量gap,然后在测量gap结束后继续使用一次性Multi-SIM gap。
(13)使用所述第一gap,以及在所述第一gap开始之前使用所述第二 gap。
其中,可以在所述第一gap开始之前的X(大于等于1)个时间单元内使用所述第二gap,以及在所述第二gap结束后使用所述第一gap。可选的,所述时间单元可以为时隙、符号、子帧等。
(14)使用第三gap,以及使用所述第二gap,所述第三gap是所述第一gap中未与所述第二gap重叠的部分gap。
其中,在使用第三gap以及所述第二gap时,同时忽略了所述第一gap中除所述第三gap之外的其他gap。
(15)在第一时长内使用第二gap,以及在第二时长内使用所述第一gap;所述第一时长包括所述第一gap中时间靠前的第一数量个时间单元,所述第二时长包括所述第一gap中除所述第一数量个时间单元之外的其他时间单元。
(16)在第三时长内使用所述第二gap,在第四时长内使用所述第一gap,所述第三时长包括所述第一gap中时间靠后的第二数量个时间单元,所述第四时长包括所述第一gap中除所述第二数量个时间单元之外的其他时间单元。
其中,在前述(15)和(16)中,第一数量、第二数量可以通过协议约定、高层信令配置或网络层配置实现,所述时间单元可以包括时隙、符号、子帧(subframe)等中的任一项。
示例2
在场景为所述第一gap与第二gap发生重叠的情况下,也就是,在所述第一gap与所述第二gap发生重叠、且满足以下(21)-(25)中的至少之一的情况下,所述终端设备忽略所述第一gap。
(21)所述终端设备忽略所述第一gap。
其中,可以不考虑第一gap的长度、类型、目的信息等,一旦第一gap与第二gap重叠,所述终端设备默认忽略所述第一gap。也就是,如果所述第一gap与所述第二gap发生重叠,那么,所述终端可以默认使用所述第一gap,忽略第二gap。
或者,在第一gap的长度、类型、目的等为指定长度、指定类型、指定 目的时,一旦所述第一gap与第二gap重叠,那么,所述终端设备可以默认忽略所述第一gap。
(22)所述第一gap的长度短于所述第二gap的长度。
可以理解,时间长的gap的优先级高于时间短的gap的优先级。
(23)所述第一gap的开始时间晚于所述第二gap的开始时间。
可以理解,开始时间早的gap的优先级高于开始时间晚的gap的优先级。
(24)所述第一gap的目的信息的优先级低于所述第二gap的目的信息的优先级。
(25)所述第一gap的优先级低于所述第二gap的优先级。
其中,关于(22)-(25)的实现过程可以参照前述(11)中的相关描述,为避免重复,在此不再赘述。
示例3
在场景为所述第一gap与第一任务对应的测量时机发生重叠的情况下,也就是,在所述第一gap与第一任务对应的测量时机发生重叠的情况下,所述终端设备使用所述第一gap,包括以下(31)-(33)中的任意一项。
(31)使用所述第一gap,以及忽略所述第一任务。
其中,所述第一任务可以包括无线资源管理(Radio resource management,RRM)测量任务等,用于执行RRM测量任务的测量时机或窗口可以称为基于同步信号块(Synchronization Signal and PBCH block,SSB)的RRM测量定时配置(SMTC)窗口或SMTC测量时机或RRM测量时机等。
基于此,在所述第一gap期间,出现RRM测量任务需要执行,那么,所述终端设备默认使用所述第一gap,忽略所述第一任务对应的SMTC测量窗口,或忽略所述第一任务对应的RRM测量时机。
本实施例中,所述RRM测量任务可以包括服务小区的测量任务、异频测量任务、Inter-RAT测量任务等;相应的SMTC测量窗口可以是同频SMTC窗口、异频SMTC窗口等,在此不做限制。
(32)使用所述第一gap,以及在所述第一gap结束后执行所述第一任 务。
也就是,所述终端设备可以在使用第一gap后执行第一任务,如RRM测量。例如,对于多卡终端,所述第一gap上的任务可以包括UE离开当前网络去执行多卡任务,基于此,在所述第一gap开始后,UE可以离开当前网络去执行第一gap上的目标任务,并在完成目标任务后返回当前网络,执行RRM测量。其中,该操作可以在第一gap期间或第一gap后执行。
(33)使用所述第一gap,以及在所述第一gap开始之前执行所述第一任务。
也就是,所述终端设备可以在使用第一gap前执行第一任务,如RRM测量。例如,对于多卡终端,所述第一gap上的任务可以包括UE离开当前网络去执行多卡任务,基于此,在所述第一gap开始前,执行RRM测量任务,然后UE可以离开当前网络去执行第一gap上的任务。其中,该操作可以在第一gap期间或第一gap前后执行。
需要注意的是:前述(32)和(33)中所述的第一gap结束后或开始前,也可以理解为所述终端设备执行第一gap上的任务后或第一gap上的任务开始前,对此不做限制。
需要注意,在前述示例1-示例3中,在所述第一任务为RRM测量任务和/或忽略测量gap的情况下,所述RRM测量任务对应的测量周期为第一长度,所述第一长度是对所述测量周期的长度扩展至少一个所述第一gap的长度得到,所述测量gap与所述RRM测量任务对应的测量时机关联。
例如,假设一个测量周期中包括多个可用于RRM测量任务的测量时机,而测量gap是所述网络侧设备为所述终端设备配置的用于执行RRM测量任务的gap,也就是,一个所述测量gap可以对应一个RRM测量任务的测量时机。
基于此,终端设备可能忽略测量gap或测量时机。
示例4
除前述的几种场景之外,在场景为下述(41)-(48)中的至少一个时, 也就是,在满足第一条件的情况下,所述终端设备也可执行所述忽略所述第一gap的步骤,其中,所述第一条件包括以下(41)-(48)中至少一项。
(41)主小区组(Master cell group,MCG)无线链路失败(RLF)。
其中,与MCG对应,所述第一gap可以为MCG对应的gap。也就是,在MCG无线链路失败时,所述终端设备忽略MCG对应的gap。
(42)辅小区组(Secondary Cell Group,SCG)无线链路失败。
其中,与SCG对应,所述第一gap可以为SCG对应的gap。也就是,在SCG无线链路失败时,所述终端设备忽略SCG对应的gap,或者,所述终端设备忽略SCG对应的gap以及MCG对应的gap。
(43)第一定时器开始运行,其中,所述第一定时器用于监测无线链路是否失败。
可选地,所述第一定时器可以是T310和/或T 312。
基于此,所述终端设备可在T310开启后,忽略T310运行期间可能出现的第一gap,如MCG和/或SCG对应的gap等。相应的,在T310运行的第一gap期间,所述终端设备还可执行无线链路监测(Radio Link Monitoring)。
或者,所述终端设备可在T312开启后,忽略T312运行期间可能出现的第一gap,如MCG和/或SCG对应的gap。相应的,在T312运行的Gap期间,所述终端设备还可执行无线链路监测。
(44)所述终端设备发送了第一消息,所述第一消息包括MCG失败消息、SCG失败消息和第一指示消息中的至少一种,所述第一指示消息用于向网络侧设备指示所述终端忽略所述第一gap。
其中,在第一消息为MCG失败消息的情况下,所述终端设备可以在发送了MCG失败消息(即发起MCG failure information上报流程)后,忽略第一gap,以及发起快速MCG恢复(fast MCG recovery)。
在第一消息为SCG失败消息的情况下,所述终端设备可以在发送SCG失败消息(即发起SCG failure information上报流程)后,忽略第一gap,以及发起快速SCG恢复(fast SCG recovery)。
在第一消息为第一指示消息的情况下,所述终端设备在发送第一指示消息后,忽略第一gap。所述第一指示消息中可以携带有至少一个被忽略的gap的信息,如gap的名称、类型、是否为周期性、目的信息等。
与所述终端设备对应,所述网络侧设备也可以在接收到所述终端设备发送的第一消息后,根据第一消息忽略可能实现的第一gap,或者根据第一消息中携带的gap的信息,忽略可能出现的对应gap,在此不做限制。
一种实现方式中,所述第一消息可通过无线资源控制(Radio Resource Control,RRC)信令进行传输,在此不做限制。
(45)所述终端设备发起了MCG失败信息(MCG failure information)过程。
也就是,所述终端设备可在MCG failure information过程触发时/后,忽略MCG对应的第一gap。
相应的,所述网络侧设备在接收到MCG failure information消息后,忽略对应的第一gap。
(46)所述终端设备发起了SCG失败信息过程。
也就是,所述终端设备可在SCG failure information过程触发时/后,忽略SCG和MCG对应的第一gap。
相应的,所述网络侧设备在接收到SCG failure information消息后,忽略对应的第一gap。
(47)所述终端设备发送了测量报告消息。
其中,作为一种实现方式,所述终端设备可在发送了所述测量报告消息之后的第五时长内,忽略所述第一gap。
本实施例中,所述第五时长可以由协议约定或高层信令指示或网络配置实现。
此外,所述第五时长也可以根据T312的运行时长确定。例如,假设所述终端设备发送了测量报告消息、且T312处于运行期间或开始运行,那么,所述终端可在T312运行期间或T312超时后,忽略所述第一gap。
相应的,所述网络侧设备在接收到测量报告消息后,忽略所述第一gap。
(48)第一gap与第二gap发生重叠的比例超过特定门限。
例如,第一gap被第二gap占用的比例超过了50%等,那么,所述第一gaps上剩余部分可能不够执行该第一gap的purpose对应的任务,因此,所述终端设备忽略第一Gap。
可选的,所述特定门限可以由协议约定或高层信令指示或网络配置实现。
本实施例中,通过结合不同的场景,进一步给出了终端设备对第一gap进行处理的方式,如gap重叠时的优先级机制、gap期间以及RRM测量的冲突处理机制、无线链路失败场景下忽略Gap的机制等,有效解决了多卡gap(如第一gap)与现有测量机制以及无线链路失败过程等的冲突问题,进一步确保了无线通信性能,以及终端设备上的业务持续性,提升用户体验。
如图4所示,为本申请一示例性实施例提供的执行gap的方法400的流程示意图,该方法400可以但不限于由终端设备执行,具体可由安装于终端设备中的硬件和/或软件执行。本实施例中,所述方法400至少可以包括如下步骤。
S410,在第一间隙gap与第二gap或第一任务对应的测量时机发生重叠的情况下,终端设备对所述第一gap执行第一处理。
其中,所述终端设备被配置有至少一个gap、且所述第一gap和所述第二gap属于所述至少一个gap,所述第一处理包括忽略所述第一gap或使用所述第一gap。
可以理解,S410的实现过程可以参照方法实施例200和/300中的相关描述,为避免重复,在此不再赘述。
S420,所述终端设备在使用所述第一gap的情况下,取消对省电信号监听时机的监听。
也即是,所述终端设备不监听所述第一gap期间出现的省电信号或省电信号监听时机。
可选地,所述省电信号至少包括DCP(DCI with CRC scrambled by  PS-RNTI))信号和/或唤醒信号(Wake up signal,WUS)。
S430,所述终端设备忽略所述第一gap的情况下,接收网络侧设备在所述第一gap期间发送的终端调度信息。
也即是,在被忽略的第一gap期间,所述网络侧设备与终端设备之间可以进行正常的数据收发,如网络侧设备向终端设备发送RRC重配置信息,以确保数据的正常传输。可以理解,假设第一gap被配置为执行A任务,但是由于gap重叠等问题,导致第一gap被忽略,即不执行A任务,那么,所述网络侧设备依旧可以在第一gap期间与终端设备进行数据收发。
可选地,所述网络侧设备调度所述终端设备的方式可以包括如下(1)和/或(2)。
(1)在被忽略的第一gap中未被其他gap重叠的部分上进行调度。例如,该被忽略的第一gap被第二Gap占用(重叠)了一部分,那么,所述终端是不执行该第一gap的目的信息对应的任务,相应的,所述网络侧设备可以在第一gap上未被重叠的部分进行终端调度。
(2)由于所述终端设备发送第一消息或测量报告信息,而导致终端设备忽略第一gap时,所述网络侧设备可以基于被忽略的该第一gap进行终端调度。
进一步,作为一种可能的实现方式,所述终端在执行S410之前,还可以执行以下(51)-(52)中的至少一项。
(51)所述终端设备向网络侧设备发送第一gap请求。
其中,所述第一gap请求用于向网络侧设备请求配置第一gap,基于此,所述第一gap请求中至少携带有第一gap的优先级信息、所述第一gap的目的信息(如Paging purpose)、周期信息、开始时间信息、长度信息等中的至少一个。
可选地,所述第一gap的优先级可以是绝对优先级或相对优先级。
例如,对于绝对优先级,所述第一gap的优先级信息可以是MSIM Gap1>MeasGap>MSIM Gap2,或者所述第一gap的优先级信息可以是高优先级、 低优先级或其他指定优先级,在此不做限制。
又例如,对于相对优先级,可以有:第一gap相对于测量Gap的优先级:如高优先级、低优先级等。如,高优先级的第一gap优先于测量gap;又如,测量gap优先于低优先级的第一gap。
另外,所述第一gap的优先级信息可以是所述终端设备基于期望的第一gap的目的信息、长度信息、周期信息、开始时间信息等确定,在此不做限制。
(52)接收网络侧设备发送的gap配置信息。
其中,所述gap配置信息(如RRC重配置信息)中至少携带有所述第一gap的优先级信息、所述第一gap的目的信息(如Paging purpose)、周期信息、开始时间信息、长度信息等中的至少一个。
此外,与所述第一gap请求类似,所述gap配置信息中携带的第一gap的优先级信息也可以是所述网络侧设备基于所述终端设备期望的第一gap的目的信息、长度信息、周期信息、开始时间信息等确定,且,所述第一gap的优先级可以是绝对优先级或相对优先级等,在此不再赘述。
可以理解,前述(51)和(52)可以是相互独立的,也可以是(52)中的gap配置信息基于(51)中的第一gap请求配置得到。
例如,在所述终端设备为多卡终端,且所述多卡终端中需要配置一个gap(如第一gap),以基于该gap去其他网络进行寻呼监听时,那么,所述终端设备可以发送第一gap请求给网络侧设备,以请求网络侧设备进行gap配置,那么,所述网络侧设备在接收到该第一gap请求后,确定gap配置信息并发送给终端设备。
又例如,当网络侧设备需要调度终端设备执行目标任务时,所述网络侧设备可以根据目标任务配置gap配置信息并发送给终端设备。
需要说明的是,本申请实施例提供的执行gap的方法200-400,执行主体可以为执行gap的装置,或者,该执行gap的装置中的用于执行执行gap的方法200-400的控制模块。本申请实施例中以执行gap的装置执行执行gap 的方法200-400为例,说明本申请实施例提供的执行gap的装置。
如图5所示,为本申请一示例性实施例提供的执行gap的方法500的流程示意图,该方法500可以但不限于由网络侧设备执行,具体可由安装于网络侧设备中的硬件和/或软件执行。本实施例中,所述方法500至少可以包括如下步骤。
S510,在第一间隙gap与第二gap发生重叠的情况下,网络侧设备忽略所述第一gap。
其中,所述第一gap和所述第二gap是所述网络侧设备为终端设备配置的gap。
一种实现方式中,在所述第一gap与所述第二gap发生重叠的情况下,网络侧设备忽略所述第一gap,包括:在满足以下至少之一的情况下,所述网络侧设备忽略所述第一gap:所述第一gap的长度短于所述第二gap的长度;所述第一gap的开始时间晚于所述第二gap的开始时间;所述第一gap的目的信息的优先级低于所述第二gap的目的信息的优先级;所述第一gap的优先级低于所述第二gap的优先级。
另一种实现方式中,所述方法还包括:在满足第一条件的情况下,所述网络侧设备执行所述忽略所述第一gap的步骤,其中,所述第一条件包括以下至少一项:接收到所述终端设备发送的第一消息,所述第一消息包括MCG失败消息、SCG失败消息和第一指示消息中的至少一种,所述第一指示消息用于向网络侧设备指示所述网络侧设备忽略所述第一gap;接收到所述终端设备发送的测量报告消息。
另一种实现方式中,所述方法还包括:在忽略所述第一gap的情况下,所述网络侧设备发送终端调度信息给所述终端设备。
另一种实现方式中,网络侧设备忽略所述第一gap之前,所述方法还包括以下至少一项:所述网络侧设备接收终端设备发送的第一gap请求,所述第一gap请求中至少携带有第一gap的优先级信息和/或所述第一gap的目的信息;网络侧设备发送gap配置信息给所述终端设备,所述gap配置信息中 至少携带有所述第一gap的优先级信息和/或所述第一gap的目的信息。
可以理解,本实施例给出的各实现方式的实现过程可参照前述方法实施例200-400中的相关描述,并达到相应的技术效果,为避免重复,在此不再赘述。
在前述方法实施例的基础上,如果所述终端设备为多卡终端,例如,所述终端设备包括卡1和卡2,那么,所述终端设备在基于卡1、卡2进行寻呼监听时,可能会出现卡1和卡2之间的寻呼冲突,进而导致无线通信性能差。对此,本申请实施例可采用如下方式1和/或2进行处理,内容如下。
方式1:非接入层(Non Access Stratum,NAS)处理国际移动用户识别码偏移(IMSI offset)的方法
(1)每次UE NAS发起TAU或者注册请求时,若终端设备检测到了寻呼冲突,则UE NAS就在TAU或者注册请求中携带新的IMSI offset值,以请求网络侧设备根据该新的IMSI offset值进行寻呼。
(2)若一段时间内终端未检测到寻呼冲突,则UE NAS层在TAU或者注册请求中携带保存的IMSI offset值,即默认终端设备继续使用配置的IMSI offset值。
(3)若一段时间内终端设备未检测到寻呼冲突,则UE NAS层在TAU或者注册请求中不携带IMSI offset值,即删除配置的IMSI offset值。
方式2:RRC层和NAS层处理IMSI offset的方法
(1)当UE发起TAU或者注册请求时,UE NAS层将配置的IMSI offset发给UE RRC层,以判断保存的IMSI offset是否还需要。
(a)若UE RRC反馈需要IMSI offset值,则UE NAS在TAU或者注册请求中携带UE保存的IMSI offset。
其中,若核心网检查IMSI offset值未发生变化,则继续使用当前的IMSI offset值,即不变更IMSI offset。
(b)若UE RRC反馈不需要IMSI offset值,则UE NAS层在发起TAU或者注册请求时不携带IMSI offset,即请求删除配置的IMSI offset。
(2)一旦UE NAS收到了接受的IMSI offset(acceptedIMSI offset),那么,UE NAS发给UE RRC。UE RRC层在需要更新IMSI offset的情况下,向UE NAS层上报建议的IMSI offset值。
其中更新IMSI offset的情况包括以下(21)-(22)中的至少一项。
(21)目前保存的IMSI offset存在寻呼冲突,需要重新配置IMSI offset;
(22)指示终端不再需要当前保存的IMSI offset值。
例如,若UE RRC将建议的IMSI offset设置为非0值,UE NAS就在TAU或者注册请求中携带新的requested IMSI offset。若UE RRC将建议的IMSI offset设置为0,则UE NAS层在发起TAU或者注册请求时就不携带任何IMSI offset。
基于前述的方式1和/或方式2,能够有效解决多卡终端上存在的寻呼冲突问题,确保了无线通信性能。
如图6所示,为本申请一示例性实施例提供的执行gap的装置600的结构示意图,该装置600可以包括:第一执行模块610,用于在第一间隙gap与第二gap或第一任务对应的测量时机发生重叠的情况下,对所述第一gap执行第一处理;其中,所述终端设备被配置有至少一个gap、且所述第一gap和所述第二gap属于所述至少一个gap,所述第一处理包括忽略所述第一gap或使用所述第一gap。
可选地,所述装置600还可以包括确定模块,用于确定所述第一gap是否与第二gap或第一任务对应的测量时机发生重叠。
可选地,在所述第一gap与所述第二gap发生重叠的情况下,所述第一执行模块610,用于以下任意一项:使用所述第一gap,忽略所述第二gap;使用所述第一gap,以及在所述第一gap结束后使用所述第二gap;使用所述第一gap,以及在所述第一gap开始之前使用所述第二gap;使用第三gap,以及使用所述第二gap,所述第三gap是所述第一gap中未与所述第二gap重叠的部分gap;在第一时长内使用第二gap,以及在第二时长内使用所述第一gap;所述第一时长包括所述第一gap中时间靠前的第一数量个时间单元, 所述第二时长包括所述第一gap中除所述第一数量个时间单元之外的其他时间单元;在第三时长内使用所述第二gap,在第四时长内使用所述第一gap,所述第三时长包括所述第一gap中时间靠后的第二数量个时间单元,所述第四时长包括所述第一gap中除所述第二数量个时间单元之外的其他时间单元。
可选地,在满足以下至少之一的情况下,所述第一执行模块610,使用所述第一gap,忽略所述第二gap:所述第一gap的优先级高于所述第二gap;所述第一gap的目的信息的优先级高于所述第二gap的目的信息的优先级;所述第一gap的长度长于所述第二gap的长度;所述第一gap的开始时间早于所述第二gap的开始时间。
可选地,在所述第一gap与所述第二gap发生重叠、且满足以下至少之一的情况下,所述第一执行模块610忽略所述第一gap:所述第一gap的长度短于所述第二gap的长度;所述第一gap的开始时间晚于所述第二gap的开始时间;所述第一gap的目的信息的优先级低于所述第二gap的目的信息的优先级;所述第一gap的优先级低于所述第二gap的优先级。
可选地,在所述第一gap与第一任务对应的测量时机发生重叠的情况下,所述第一执行模块610,用于以下任意一项:使用所述第一gap,以及忽略所述第一任务;使用所述第一gap,以及在所述第一gap结束后执行所述第一任务;使用所述第一gap,以及在所述第一gap开始之前执行所述第一任务。
可选地,在所述第一任务为RRM测量任务和/或所述终端设备忽略测量gap的情况下,所述RRM测量任务对应的测量周期为第一长度,所述第一长度是对所述测量周期的长度扩展至少一个所述第一gap的长度得到,所述测量gap与所述RRM测量任务对应的测量时机关联。
可选地,所述第一执行模块610,还用于在满足第一条件的情况下,执行所述忽略所述第一gap的步骤,其中,所述第一条件包括以下至少一项:主小区组MCG无线链路失败;辅小区组SCG无线链路失败;第一定时器开始运行,其中,所述第一定时器用于监测无线链路是否失败;所述终端设备发送了第一消息,所述第一消息包括MCG失败消息、SCG失败消息和第一 指示消息中的至少一种,所述第一指示消息用于向网络侧设备指示所述终端忽略所述第一gap;所述终端设备发起了MCG失败信息过程;所述终端设备发起了SCG失败信息过程;所述终端设备发送了测量报告消息。
可选地,所述第一执行模块610,用于在发送了所述测量报告消息之后的第五时长内,忽略所述第一gap。
可选地,所述第一执行模块610用于以下任一项:释放所述第一gap对应的配置信息;忽略第四gap,所述第四gap是与所述第二gap或所述第一任务对应的测量时机发生重叠的第一gap,或者,所述第四gap是在满足第一条件时的第一gap;忽略所述第四gap以及位于所述第四gap之后的至少一个第一gap。
可选地,所述第一执行模块610,还用于:在使用所述第一gap的情况下,取消对省电信号监听时机的监听,其中,所述省电信号至少包括DCP信号和/或唤醒信号。
可选地,所述装置600还包括:第一收发模块610,用于在忽略所述第一gap的情况下,接收网络侧设备在所述第一gap期间发送的终端调度信息。
可选地,所述第一收发模块610,还用于以下至少一项:向网络侧设备发送第一gap请求,所述第一gap请求中至少携带有第一gap的优先级信息和/或所述第一gap的目的信息;接收网络侧设备发送的gap配置信息,所述gap配置信息中至少携带有所述第一gap的优先级信息和/或所述第一gap的目的信息。
本实施例中,通过在第一gap与第二gap或第一任务对应的测量时机发生重叠的情况下,使用所述第一gap或忽略所述第一gap,由此,提供了一种gap与gap或gap与第一任务对应的测量时机重叠场景下的gap处理机制,能够使得终端设备明确自身行为并进行gap处理,有效的确保了无线通信质量。
需要注意,本申请实施例中的执行gap的装置500可以是装置,具有操作系统的装置或电子设备,也可以是终端中的部件、集成电路、或芯片。该 装置或电子设备可以是移动终端,也可以为非移动终端。示例性的,移动终端可以包括但不限于上述所列举的终端11的类型,非移动终端可以为服务器、网络附属存储器(Network Attached Storage,NAS)、个人计算机(personal computer,PC)、电视机(television,TV)、柜员机或者自助机等,本申请实施例不作具体限定。
本申请实施例提供的执行gap的装置600能够实现图2至图4的方法实施例实现的各个过程,并达到相同的技术效果,为避免重复,这里不再赘述。
如图7所示,为本申请一示例性实施例提供的执行gap的装置700的结构示意图,该装置700可以包括第二执行模块710,用于在第一间隙gap与第二gap发生重叠的情况下,网络侧设备忽略所述第一gap;其中,所述第一gap和所述第二gap是所述网络侧设备为终端设备配置的gap。
可选的,所述装置700还可以包括配置模块,用于为所述终端设备配置至少一个gap,其中,所述第一gap和所述第二gap属于所述至少一个gap。
可选的,所述第二执行模块710,用于在满足以下至少之一的情况下,忽略所述第一gap:所述第一gap的长度短于所述第二gap的长度;所述第一gap的开始时间晚于所述第二gap的开始时间;所述第一gap的目的信息的优先级低于所述第二gap的目的信息的优先级;所述第一gap的优先级低于所述第二gap的优先级。
可选的,所述第二执行模块710,用于在满足第一条件的情况下,执行所述忽略所述第一gap的步骤,其中,所述第一条件包括以下至少一项:接收到所述终端设备发送的第一消息,所述第一消息包括MCG失败消息、SCG失败消息和第一指示消息中的至少一种,所述第一指示消息用于向网络侧设备指示所述网络侧设备忽略所述第一gap;接收到所述终端设备发送的测量报告消息。
可选的,所述装置700还包括:第二收发模块720,用于在忽略所述第一gap的情况下,发送终端调度信息给所述终端设备。
可选的,所述第二收发模块720,还用于以下至少一项:接收终端设备 发送的第一gap请求,所述第一gap请求中至少携带有第一gap的优先级信息和/或所述第一gap的目的信息;发送gap配置信息给所述终端设备,所述gap配置信息中至少携带有所述第一gap的优先级信息和/或所述第一gap的目的信息。
本申请实施例提供的执行gap的装置700能够实现图5的方法实施例实现的各个过程,并达到相同的技术效果,为避免重复,这里不再赘述。
本申请实施例还提供一种终端,包括处理器和通信接口,所述通信接口和所述处理器耦合,所述处理器用于运行程序或指令,实现如方法实施例200-400中所述的步骤,并达到相应的技术效果。该终端实施例是与上述终端侧方法实施例对应的,上述方法实施例的各个实施过程和实现方式均可适用于该终端实施例中,且能达到相同的技术效果。具体地,图8为实现本申请实施例的一种终端的硬件结构示意图。
该终端800包括但不限于:射频单元801、网络模块802、音频输出单元803、输入单元804、传感器805、显示单元806、用户输入单元807、接口单元808、存储器809、以及处理器810等中的至少部分部件。
本领域技术人员可以理解,终端800还可以包括给各个部件供电的电源(比如电池),电源可以通过电源管理系统与处理器810逻辑相连,从而通过电源管理系统实现管理充电、放电、以及功耗管理等功能。图8中示出的终端结构并不构成对终端的限定,终端可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置,在此不再赘述。
应理解的是,本申请实施例中,输入单元804可以包括图形处理器(Graphics Processing Unit,GPU)1041和麦克风8042,图形处理器8041对在视频捕获模式或图像捕获模式中由图像捕获装置(如摄像头)获得的静态图片或视频的图像数据进行处理。显示单元806可包括显示面板8061,可以采用液晶显示器、有机发光二极管等形式来配置显示面板8061。用户输入单元807包括触控面板8071以及其他输入设备8072。触控面板8071,也称为触摸屏。触控面板8071可包括触摸检测装置和触摸控制器两个部分。其他输 入设备8072可以包括但不限于物理键盘、功能键(比如音量控制按键、开关按键等)、轨迹球、鼠标、操作杆,在此不再赘述。
本申请实施例中,射频单元801将来自网络侧设备的下行数据接收后,给处理器810处理;另外,将上行的数据发送给网络侧设备。通常,射频单元801包括但不限于天线、至少一个放大器、收发信机、耦合器、低噪声放大器、双工器等。
存储器809可用于存储软件程序或指令以及各种数据。存储器809可主要包括存储程序或指令区和存储数据区,其中,存储程序或指令区可存储操作系统、至少一个功能所需的应用程序或指令(比如声音播放功能、图像播放功能等)等。此外,存储器809可以包括高速随机存取存储器,还可以包括非易失性存储器,其中,非易失性存储器可以是只读存储器(Read-Only Memory,ROM)、可编程只读存储器(Programmable ROM,PROM)、可擦除可编程只读存储器(Erasable PROM,EPROM)、电可擦除可编程只读存储器(Electrically EPROM,EEPROM)或闪存。例如至少一个磁盘存储器件、闪存器件、或其他非易失性固态存储器件。
处理器810可包括一个或多个处理单元;可选的,处理器810可集成应用处理器和调制解调处理器,其中,应用处理器主要处理操作系统、用户界面和应用程序或指令等,调制解调处理器主要处理无线通信,如基带处理器。可以理解的是,上述调制解调处理器也可以不集成到处理器810中。
其中,处理器810,用于在第一间隙gap与第二gap或第一任务对应的测量时机发生重叠的情况下,对所述第一gap执行第一处理;其中,所述终端设备被配置有至少一个gap、且所述第一gap和所述第二gap属于所述至少一个gap,所述第一处理包括忽略所述第一gap或使用所述第一gap。
可选地,在所述第一gap与所述第二gap发生重叠的情况下,所述处理器810,用于以下任意一项:使用所述第一gap,忽略所述第二gap;使用所述第一gap,以及在所述第一gap结束后使用所述第二gap;使用所述第一gap,以及在所述第一gap开始之前使用所述第二gap;使用第三gap,以及使用所 述第二gap,所述第三gap是所述第一gap中未与所述第二gap重叠的部分gap;在第一时长内使用第二gap,以及在第二时长内使用所述第一gap;所述第一时长包括所述第一gap中时间靠前的第一数量个时间单元,所述第二时长包括所述第一gap中除所述第一数量个时间单元之外的其他时间单元;在第三时长内使用所述第二gap,在第四时长内使用所述第一gap,所述第三时长包括所述第一gap中时间靠后的第二数量个时间单元,所述第四时长包括所述第一gap中除所述第二数量个时间单元之外的其他时间单元。
可选地,在满足以下至少之一的情况下,所述处理器810,使用所述第一gap,忽略所述第二gap:所述第一gap的优先级高于所述第二gap;所述第一gap的目的信息的优先级高于所述第二gap的目的信息的优先级;所述第一gap的长度长于所述第二gap的长度;所述第一gap的开始时间早于所述第二gap的开始时间。
可选地,在所述第一gap与所述第二gap发生重叠、且满足以下至少之一的情况下,所述处理器810忽略所述第一gap:所述第一gap的长度短于所述第二gap的长度;所述第一gap的开始时间晚于所述第二gap的开始时间;所述第一gap的目的信息的优先级低于所述第二gap的目的信息的优先级;所述第一gap的优先级低于所述第二gap的优先级。
可选地,在所述第一gap与第一任务对应的测量时机发生重叠的情况下,所述处理器810,用于以下任意一项:使用所述第一gap,以及忽略所述第一任务;使用所述第一gap,以及在所述第一gap结束后执行所述第一任务;使用所述第一gap,以及在所述第一gap开始之前执行所述第一任务。
可选地,在所述第一任务为RRM测量任务和/或所述终端设备忽略测量gap的情况下,所述RRM测量任务对应的测量周期为第一长度,所述第一长度是对所述测量周期的长度扩展至少一个所述第一gap的长度得到,所述测量gap与所述RRM测量任务对应的测量时机关联。
可选地,所述处理器810,还用于在满足第一条件的情况下,执行所述忽略所述第一gap的步骤,其中,所述第一条件包括以下至少一项:主小区 组MCG无线链路失败;辅小区组SCG无线链路失败;第一定时器开始运行,其中,所述第一定时器用于监测无线链路是否失败;所述终端设备发送了第一消息,所述第一消息包括MCG失败消息、SCG失败消息和第一指示消息中的至少一种,所述第一指示消息用于向网络侧设备指示所述终端忽略所述第一gap;所述终端设备发起了MCG失败信息过程;所述终端设备发起了SCG失败信息过程;所述终端设备发送了测量报告消息。
可选地,所述处理器810,用于在发送了所述测量报告消息之后的第五时长内,忽略所述第一gap。
可选地,所述处理器810用于以下任一项:释放所述第一gap对应的配置信息;忽略第四gap,所述第四gap是与所述第二gap或所述第一任务对应的测量时机发生重叠的第一gap,或者,所述第四gap是在满足第一条件时的第一gap;忽略所述第四gap以及位于所述第四gap之后的至少一个第一gap。
可选地,所述处理器810,还用于:在使用所述第一gap的情况下,取消对省电信号监听时机的监听,其中,所述省电信号至少包括DCP信号和/或唤醒信号。
可选地,射频单元801用于在忽略所述第一gap的情况下,接收网络侧设备在所述第一gap期间发送的终端调度信息。
可选地,射频单元801还用于以下至少一项:向网络侧设备发送第一gap请求,所述第一gap请求中至少携带有第一gap的优先级信息和/或所述第一gap的目的信息;接收网络侧设备发送的gap配置信息,所述gap配置信息中至少携带有所述第一gap的优先级信息和/或所述第一gap的目的信息。
本实施例中,通过在第一gap与第二gap或第一任务对应的测量时机发生重叠的情况下,使用所述第一gap或忽略所述第一gap,由此,提供了一种gap与gap或gap与第一任务对应的测量时机重叠场景下的gap处理机制,能够使得终端设备明确自身行为并进行gap处理,有效的确保了无线通信质量。
本申请实施例还提供一种可读存储介质,所述可读存储介质上存储有程序或指令,该程序或指令被处理器执行时实现上述方法实施例200-500中的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
其中,所述处理器为上述实施例中所述的终端中的处理器。所述可读存储介质,包括计算机可读存储介质,如计算机只读存储器(Read-Only Memory,ROM)。
本申请实施例还提供一种网络侧设备,包括处理器和通信接口,所述通信接口和所述处理器耦合,所述处理器用于运行程序或指令,实现如方法实施例500中所述的方法的步骤。该网络侧设备实施例是与上述网络侧设备方法实施例对应的,上述方法实施例的各个实施过程和实现方式均可适用于该网络侧设备实施例中,且能达到相同的技术效果。
具体地,本申请实施例还提供了一种网络侧设备。如图9所示,该网络设备900包括:天线901、射频装置902、基带装置903。天线901与射频装置902连接。在上行方向上,射频装置902通过天线901接收信息,将接收的信息发送给基带装置903进行处理。在下行方向上,基带装置903对要发送的信息进行处理,并发送给射频装置902,射频装置902对收到的信息进行处理后经过天线901发送出去。
上述频带处理装置可以位于基带装置903中,以上实施例中网络侧设备执行的方法可以在基带装置903中实现,该基带装置903包括处理器904和存储器905。
基带装置903例如可以包括至少一个基带板,该基带板上设置有多个芯片,如图9所示,其中一个芯片例如为处理器904,与存储器905连接,以调用存储器905中的程序,执行以上方法实施例中所示的网络设备操作。
该基带装置903还可以包括网络接口906,用于与射频装置902交互信息,该接口例如为通用公共无线接口(common public radio interface,简称CPRI)。
具体地,本发明实施例的网络侧设备还包括:存储在存储器905上并可 在处理器904上运行的指令或程序,处理器904调用存储器905中的指令或程序执行图7所示各模块执行的方法,并达到相同的技术效果,为避免重复,故不在此赘述。
本申请实施例另提供了一种芯片,所述芯片包括处理器和通信接口,所述通信接口和所述处理器耦合,所述处理器用于运行网络侧设备程序或指令,实现上述方法实施例200-500中的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
应理解,本申请实施例提到的芯片还可以称为系统级芯片,系统芯片,芯片系统或片上系统芯片等。
本申请实施例还提供了一种计算机程序产品,该计算机程序产品包括处理器、存储器及存储在所述存储器上并可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时,实现上述方法实施例200-500中的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。此外,需要指出的是,本申请实施方式中的方法和装置的范围不限按示出或讨论的顺序来执行功能,还可包括根据所涉及的功能按基本同时的方式或按相反的顺序来执行功能,例如,可以按不同于所描述的次序来执行所描述的方法,并且还可以添加、省去、或组合各种步骤。另外,参照某些示例所描述的特征可在其他示例中被组合。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分可以以计算机软件产品的 形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端(可以是手机,计算机,服务器,空调器,或者网络设备等)执行本申请各个实施例所述的方法。
上面结合附图对本申请的实施例进行了描述,但是本申请并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制性的,本领域的普通技术人员在本申请的启示下,在不脱离本申请宗旨和权利要求所保护的范围情况下,还可做出很多形式,均属于本申请的保护之内。

Claims (37)

  1. 一种执行gap的方法,包括:
    在第一间隙gap与第二gap或第一任务对应的测量时机发生重叠的情况下,终端设备对所述第一gap执行第一处理;
    其中,所述终端设备被配置有至少一个gap、且所述第一gap和所述第二gap属于所述至少一个gap,所述第一处理包括忽略所述第一gap或使用所述第一gap。
  2. 如权利要求1所述的方法,其中,在所述第一gap与所述第二gap发生重叠的情况下,所述终端设备使用所述第一gap,包括以下任意一项:
    使用所述第一gap,忽略所述第二gap;
    使用所述第一gap,以及在所述第一gap结束后使用所述第二gap;
    使用所述第一gap,以及在所述第一gap开始之前使用所述第二gap;
    使用第三gap,以及使用所述第二gap,所述第三gap是所述第一gap中未与所述第二gap重叠的部分gap;
    在第一时长内使用第二gap,以及在第二时长内使用所述第一gap;所述第一时长包括所述第一gap中时间靠前的第一数量个时间单元,所述第二时长包括所述第一gap中除所述第一数量个时间单元之外的其他时间单元;
    在第三时长内使用所述第二gap,在第四时长内使用所述第一gap,所述第三时长包括所述第一gap中时间靠后的第二数量个时间单元,所述第四时长包括所述第一gap中除所述第二数量个时间单元之外的其他时间单元。
  3. 如权利要求2所述的方法,其中,使用所述第一gap,忽略所述第二gap,包括:
    在满足以下至少之一的情况下,所述终端使用所述第一gap,忽略所述第二gap:
    所述第一gap的优先级高于所述第二gap;
    所述第一gap的目的信息的优先级高于所述第二gap的目的信息的优先级;
    所述第一gap的长度长于所述第二gap的长度;
    所述第一gap的开始时间早于所述第二gap的开始时间。
  4. 如权利要求1所述的方法,其中,在所述第一gap与所述第二gap发生重叠的情况下,所述终端设备忽略所述第一gap,包括:
    在满足以下至少之一的情况下,所述终端设备忽略所述第一gap:
    所述第一gap的长度短于所述第二gap的长度;
    所述第一gap的开始时间晚于所述第二gap的开始时间;
    所述第一gap的目的信息的优先级低于所述第二gap的目的信息的优先级;
    所述第一gap的优先级低于所述第二gap的优先级。
  5. 如权利要求1所述的方法,其中,在所述第一gap与第一任务对应的测量时机发生重叠的情况下,所述终端设备使用所述第一gap,包括以下任意一项:
    使用所述第一gap,以及忽略所述第一任务;
    使用所述第一gap,以及在所述第一gap结束后执行所述第一任务;
    使用所述第一gap,以及在所述第一gap开始之前执行所述第一任务。
  6. 如权利要求5所述的方法,其中,在所述第一任务为RRM测量任务和/或所述终端设备忽略测量gap的情况下,所述RRM测量任务对应的测量周期为第一长度,所述第一长度是对所述测量周期的长度扩展至少一个所述第一gap的长度得到,所述测量gap与所述RRM测量任务对应的测量时机关联。
  7. 如权利要求1所述的方法,其中,所述方法还包括:
    在满足第一条件的情况下,所述终端设备执行所述忽略所述第一gap的步骤,其中,所述第一条件包括以下至少一项:
    主小区组MCG无线链路失败;
    辅小区组SCG无线链路失败;
    第一定时器开始运行,其中,所述第一定时器用于监测无线链路是否失 败;
    所述终端设备发送了第一消息,所述第一消息包括MCG失败消息、SCG失败消息和第一指示消息中的至少一种,所述第一指示消息用于向网络侧设备指示所述终端设备忽略所述第一gap;
    所述终端设备发起了MCG失败信息过程;
    所述终端设备发起了SCG失败信息过程;
    所述终端设备发送了测量报告消息。
  8. 如权利要求7所述的方法,其中,在发送了测量报告消息的情况下,忽略所述第一gap,包括:
    在发送了所述测量报告消息之后的第五时长内,忽略所述第一gap。
  9. 如权利要求1-8中任一项所述的方法,其中,忽略所述第一gap,包括以下任一项:
    释放所述第一gap对应的配置信息;
    忽略第四gap,所述第四gap是与所述第二gap或所述第一任务对应的测量时机发生重叠的第一gap,或者,所述第四gap是在满足第一条件时的第一gap;
    忽略所述第四gap以及位于所述第四gap之后的至少一个第一gap。
  10. 如权利要求1-8中任一项所述的方法,其中,所述方法还包括:
    所述终端设备在使用所述第一gap的情况下,取消对省电信号监听时机的监听,其中,所述省电信号至少包括DCP信号和/或唤醒信号。
  11. 如权利要求1-8中任一项所述的方法,其中,所述方法还包括:
    所述终端设备忽略所述第一gap的情况下,接收网络侧设备在所述第一gap期间发送的终端调度信息。
  12. 如权利要求1-8中任一项所述的方法,其中,对第一gap执行第一处理之前,所述方法还包括以下至少一项:
    所述终端设备向网络侧设备发送第一gap请求,所述第一gap请求中至少携带有第一gap的优先级信息和/或所述第一gap的目的信息;
    接收网络侧设备发送的gap配置信息,所述gap配置信息中至少携带有所述第一gap的优先级信息和/或所述第一gap的目的信息。
  13. 一种执行gap的方法,包括:
    在第一间隙gap与第二gap发生重叠的情况下,网络侧设备忽略所述第一gap;
    其中,所述第一gap和所述第二gap是所述网络侧设备为终端设备配置的gap。
  14. 如权利要求13所述的方法,其中,在所述第一gap与所述第二gap发生重叠的情况下,网络侧设备忽略所述第一gap,包括:
    在满足以下至少之一的情况下,所述网络侧设备忽略所述第一gap:
    所述第一gap的长度短于所述第二gap的长度;
    所述第一gap的开始时间晚于所述第二gap的开始时间;
    所述第一gap的目的信息的优先级低于所述第二gap的目的信息的优先级;
    所述第一gap的优先级低于所述第二gap的优先级。
  15. 如权利要求13所述的方法,其中,所述方法还包括:
    在满足第一条件的情况下,所述网络侧设备执行所述忽略所述第一gap的步骤,其中,所述第一条件包括以下至少一项:
    接收到所述终端设备发送的第一消息,所述第一消息包括MCG失败消息、SCG失败消息和第一指示消息中的至少一种,所述第一指示消息用于向网络侧设备指示所述网络侧设备忽略所述第一gap;
    接收到所述终端设备发送的测量报告消息。
  16. 如权利要求13-15中任一项所述的方法,其中,所述方法还包括:
    在忽略所述第一gap的情况下,所述网络侧设备发送终端调度信息给所述终端设备。
  17. 如权利要求13-15中任一项所述的方法,其中,网络侧设备忽略所述第一gap之前,所述方法还包括以下至少一项:
    所述网络侧设备接收终端设备发送的第一gap请求,所述第一gap请求中至少携带有第一gap的优先级信息和/或所述第一gap的目的信息;
    所述网络侧设备发送gap配置信息给所述终端设备,所述gap配置信息中至少携带有所述第一gap的优先级信息和/或所述第一gap的目的信息。
  18. 一种执行gap的装置,应用于终端设备,所述装置包括:
    第一执行模块,用于在第一间隙gap与第二gap或第一任务对应的测量时机发生重叠的情况下,对所述第一gap执行第一处理;
    其中,所述终端设备被配置有至少一个gap、且所述第一gap和所述第二gap属于所述至少一个gap,所述第一处理包括忽略所述第一gap或使用所述第一gap。
  19. 如权利要求18所述的装置,其中,在所述第一gap与所述第二gap发生重叠的情况下,所述第一执行模块,用于以下任意一项:
    使用所述第一gap,忽略所述第二gap;
    使用所述第一gap,以及在所述第一gap结束后使用所述第二gap;
    使用所述第一gap,以及在所述第一gap开始之前使用所述第二gap;
    使用第三gap,以及使用所述第二gap,所述第三gap是所述第一gap中未与所述第二gap重叠的部分gap;
    在第一时长内使用第二gap,以及在第二时长内使用所述第一gap;所述第一时长包括所述第一gap中时间靠前的第一数量个时间单元,所述第二时长包括所述第一gap中除所述第一数量个时间单元之外的其他时间单元;
    在第三时长内使用所述第二gap,在第四时长内使用所述第一gap,所述第三时长包括所述第一gap中时间靠后的第二数量个时间单元,所述第四时长包括所述第一gap中除所述第二数量个时间单元之外的其他时间单元。
  20. 如权利要求19所述的装置,其中,在满足以下至少之一的情况下,所述第一执行模块,使用所述第一gap,忽略所述第二gap:
    所述第一gap的优先级高于所述第二gap;
    所述第一gap的目的信息的优先级高于所述第二gap的目的信息的优先 级;
    所述第一gap的长度长于所述第二gap的长度;
    所述第一gap的开始时间早于所述第二gap的开始时间。
  21. 如权利要求18所述的装置,其中,在所述第一gap与所述第二gap发生重叠、且满足以下至少之一的情况下,所述第一执行模块忽略所述第一gap:
    所述第一gap的长度短于所述第二gap的长度;
    所述第一gap的开始时间晚于所述第二gap的开始时间;
    所述第一gap的目的信息的优先级低于所述第二gap的目的信息的优先级;
    所述第一gap的优先级低于所述第二gap的优先级。
  22. 如权利要求18所述的装置,其中,在所述第一gap与第一任务对应的测量时机发生重叠的情况下,所述第一执行模块,用于以下任意一项:
    使用所述第一gap,以及忽略所述第一任务;
    使用所述第一gap,以及在所述第一gap结束后执行所述第一任务;
    使用所述第一gap,以及在所述第一gap开始之前执行所述第一任务。
  23. 如权利要求22所述的装置,其中,在所述第一任务为RRM测量任务和/或忽略测量gap的情况下,所述RRM测量任务对应的测量周期为第一长度,所述第一长度是对所述测量周期的长度扩展至少一个所述第一gap的长度得到,所述测量gap与所述RRM测量任务对应的测量时机关联。
  24. 如权利要求18所述的装置,其中,所述第一执行模块,还用于在满足第一条件的情况下,执行所述忽略所述第一gap的步骤,其中,所述第一条件包括以下至少一项:
    主小区组MCG无线链路失败;
    辅小区组SCG无线链路失败;
    第一定时器开始运行,其中,所述第一定时器用于监测无线链路是否失败;
    所述终端设备发送了第一消息,所述第一消息包括MCG失败消息、SCG失败消息和第一指示消息中的至少一种,所述第一指示消息用于向网络侧设备指示所述终端设备忽略所述第一gap;
    所述终端设备发起了MCG失败信息过程;
    所述终端设备发起了SCG失败信息过程;
    所述终端设备发送了测量报告消息。
  25. 如权利要求24所述的装置,其中,所述第一执行模块,用于在发送了所述测量报告消息之后的第五时长内,忽略所述第一gap。
  26. 如权利要求18-25中任一项所述的装置,其中,所述第一执行模块用于以下任一项:
    释放所述第一gap对应的配置信息;
    忽略第四gap,所述第四gap是与所述第二gap或所述第一任务对应的测量时机发生重叠的第一gap,或者,所述第四gap是在满足第一条件时的第一gap;
    忽略所述第四gap以及位于所述第四gap之后的至少一个第一gap。
  27. 如权利要求18-25中任一项所述的装置,其中,所述第一执行模块,还用于:在使用所述第一gap的情况下,取消对省电信号监听时机的监听,其中,所述省电信号至少包括DCP信号和/或唤醒信号。
  28. 如权利要求18-25中任一项所述的装置,其中,所述装置还包括:
    第一收发模块,用于在忽略所述第一gap的情况下,接收网络侧设备在所述第一gap期间发送的终端调度信息。
  29. 如权利要求28所述的装置,其中,所述第一收发模块,还用于以下至少一项:
    向网络侧设备发送第一gap请求,所述第一gap请求中至少携带有第一gap的优先级信息和/或所述第一gap的目的信息;
    接收网络侧设备发送的gap配置信息,所述gap配置信息中至少携带有所述第一gap的优先级信息和/或所述第一gap的目的信息。
  30. 一种执行gap的装置,应用于网络侧设备,所述装置包括:
    第二执行模块,用于在第一间隙gap与第二gap发生重叠的情况下,网络侧设备忽略所述第一gap;其中,所述第一gap和所述第二gap是所述网络侧设备为终端设备配置的gap。
  31. 如权利要求30所述的装置,其中,所述第二执行模块,用于在满足以下至少之一的情况下,忽略所述第一gap:
    所述第一gap的长度短于所述第二gap的长度;
    所述第一gap的开始时间晚于所述第二gap的开始时间;
    所述第一gap的目的信息的优先级低于所述第二gap的目的信息的优先级;
    所述第一gap的优先级低于所述第二gap的优先级。
  32. 如权利要求30所述的装置,其中,所述第二执行模块,用于在满足第一条件的情况下,执行所述忽略所述第一gap的步骤,其中,所述第一条件包括以下至少一项:
    接收到所述终端设备发送的第一消息,所述第一消息包括MCG失败消息、SCG失败消息和第一指示消息中的至少一种,所述第一指示消息用于向网络侧设备指示所述网络侧设备忽略所述第一gap;
    接收到所述终端设备发送的测量报告消息。
  33. 如权利要求30-32中任一项所述的装置,其中,所述装置还包括:
    第二收发模块,用于在忽略所述第一gap的情况下,发送终端调度信息给所述终端设备。
  34. 如权利要求33所述的装置,其中,所述第二收发模块,还用于以下至少一项:
    接收终端设备发送的第一gap请求,所述第一gap请求中至少携带有第一gap的优先级信息和/或所述第一gap的目的信息;
    发送gap配置信息给所述终端设备,所述gap配置信息中至少携带有所述第一gap的优先级信息和/或所述第一gap的目的信息。
  35. 一种终端,包括处理器,存储器及存储在所述存储器上并可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如权利要求1至12任一项所述的执行gap的方法的步骤。
  36. 一种网络侧设备,包括处理器,存储器及存储在所述存储器上并可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如权利要求13至17任一项所述的执行gap的方法的步骤。
  37. 一种可读存储介质,所述可读存储介质上存储程序或指令,所述程序或指令被处理器执行时实现如权利要求1-12任一项所述的执行gap的方法的步骤,或者,实现如权利要求13-17任一项所述的执行gap的方法的步骤。
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