WO2016206220A1 - 一种资源冲突处理方法、装置及存储介质 - Google Patents

一种资源冲突处理方法、装置及存储介质 Download PDF

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Publication number
WO2016206220A1
WO2016206220A1 PCT/CN2015/091001 CN2015091001W WO2016206220A1 WO 2016206220 A1 WO2016206220 A1 WO 2016206220A1 CN 2015091001 W CN2015091001 W CN 2015091001W WO 2016206220 A1 WO2016206220 A1 WO 2016206220A1
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cell
resource
rrc
current cell
configuration information
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PCT/CN2015/091001
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English (en)
French (fr)
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仲华
王欣
丁树
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深圳市中兴微电子技术有限公司
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Publication of WO2016206220A1 publication Critical patent/WO2016206220A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/02Arrangements for optimising operational condition
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/10Scheduling measurement reports ; Arrangements for measurement reports

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  • the present invention relates to a resource conflict processing related technology in the field of communications, and in particular, to a resource conflict processing method, apparatus, and storage medium.
  • the user equipment When there is uplink data to be sent, the user equipment (UE, User Equipment) sends a scheduling request (SR, Scheduling Request) on the Physical Uplink Control Channel (PUCCH) resource allocated by the eNB, and is used to request physical uplink sharing.
  • SR Scheduling Request
  • PUCCH Physical Uplink Control Channel
  • a PUSCH Physical Uplink Shared Channel
  • an uplink PUSCH resource is used for the UE to send uplink data.
  • Measurement Gap is a resource defined in Long Term Evolution (LTE) to support inter-frequency/heterogeneous synchronization and measurement. Since the measurement bandwidth of the LTE single radio is up to 20M, the UE needs to stop the measurement of the current frequency point during the inter-frequency/discrete measurement process, and switch the radio frequency to the frequency of the inter-frequency/discrete system for measurement.
  • the protocol negotiates that the UE and the eNB jointly generate a Gap idle time, and once the UE enters the Gap time, it will not allow any uplink and downlink channel transmission.
  • the location of the transmission resource of the SR and the location of the measurement Gap resource inevitably coincide, that is, the transmission resource of the SR collides with the measurement Gap resource, so that the UE cannot send the SR when the measurement of the Gap is started, and thus the Gap is Upstream data transmission is not possible within several subframes that are initiated.
  • An embodiment of the present invention is to provide a resource conflict processing method, device, and storage medium, which can The problem of the inability to send SR caused by the conflict between the location of the SR transmission resource and the measurement of the location of the Gap resource is avoided, and the user experience is improved.
  • An embodiment of the present invention provides a resource conflict processing method, where the method includes:
  • the current cell is marked, and the radio resource control RRC reconstruction is performed according to the preset re-establishment rule; wherein the flag indicates that the current cell is in the current cell It is disabled for a certain period of time.
  • the method before the UE determines that there is a resource conflict between the location of the SR transmission resource of the current cell and the location of the measurement Gap resource, the method further includes:
  • the UE obtains the SR transmission resource location and the measurement Gap resource location according to the SR configuration information and the measurement Gap resource configuration information carried in the received RRC reconfiguration message.
  • the performing RRC re-establishment according to the preset re-establishment rule includes:
  • the inter-frequency cell is selected to initiate an RRC re-establishment process
  • the co-frequency cell is selected to initiate an RRC re-establishment process.
  • the method when it is determined that there is neither a suitable inter-frequency cell nor a suitable intra-frequency cell, the method further includes:
  • the UE cancels the label of the current cell, and identifies that the SR resource of the current cell is unavailable, and causes the UE to process the processing manner corresponding to the case that the number of times of SR transmission exceeds the limit.
  • the method further includes:
  • the UE When the UE determines that it leaves the RRC connection state or switches to another cell, the UE removes the flag of the current cell.
  • An embodiment of the present invention further provides a resource conflict processing apparatus, where the apparatus includes: a determining module and a processing module;
  • the determining module is configured to: when it is determined that there is a resource conflict between the location of the SR sending resource of the current cell and the location of the measured Gap resource, triggering the processing module;
  • the sorting module is configured to mark the current cell and perform RRC reestablishment according to a preset re-establishment rule; wherein the flag indicates that the current cell is disabled within a certain time.
  • the device further includes an obtaining module, configured to obtain an SR sending resource location and a measuring Gap resource location according to the SR configuration information and the measured Gap resource configuration information carried in the received RRC reconfiguration message.
  • the processing module is configured to perform cell selection, and when determining that a suitable inter-frequency cell exists, select the inter-frequency cell to initiate an RRC re-establishment process;
  • the co-frequency cell is selected to initiate an RRC re-establishment process.
  • the processing module is further configured to cancel the marking of the current cell, and identify that the SR resource of the current cell is unavailable, and the processing method corresponding to the case that the number of times the SR is sent exceeds the limit.
  • the processing module is further configured to: when determining that the UE leaves the RRC connection state or switches to another cell, cancel the marking of the current cell.
  • the embodiment of the present invention further provides a computer storage medium, where the computer storage medium stores a computer program, and the computer program is used to execute the resource conflict processing method of the embodiment of the present invention.
  • the UE when the UE determines that the current cell's SR transmission resource location and the measurement Gap resource location have a resource conflict, the UE marks the current cell, and performs RRC reconstruction according to the preset reconstruction rule. Wherein the flag indicates that the current cell is disabled for a certain period of time. In this way, it is possible to avoid the problem that the SR transmission resource location and the measurement Gap resource location conflict cannot be sent, and the uplink authorization cannot be applied, thereby improving the user experience, and the implementation is simple and highly reliable.
  • FIG. 1 is a schematic flowchart of a resource conflict processing method according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of an RRC reestablishment process according to an embodiment of the present invention
  • FIG. 3 is a schematic flowchart of a resource conflict processing method according to Embodiment 2 of the present invention.
  • FIG. 4 is a schematic structural diagram of a resource conflict processing apparatus according to an embodiment of the present invention.
  • the UE when the UE determines that there is a resource conflict between the location of the SR transmission resource of the current cell and the location of the measurement Gap resource, the UE marks the current cell, and performs RRC reconstruction according to a preset re-establishment rule; wherein the flag indicates that the current cell is in the It is disabled for a certain period of time.
  • FIG. 1 is a schematic flowchart of a resource conflict processing method according to an embodiment of the present invention. As shown in FIG. 1 , a resource conflict processing method according to an embodiment of the present invention includes:
  • Step 101 The UE determines that the current cell's SR transmission resource location and the measurement Gap resource location have a resource conflict, marks the current cell, and performs radio resource control RRC reconstruction according to a preset re-establishment rule;
  • the flag indicates that the current cell is disabled in a certain period of time, that is, the UE does not select the current cell when performing cell selection in the certain time; wherein the length of the certain time may be set according to actual needs.
  • the method before the step, further includes: obtaining, by the UE, the SR sending resource location and the measuring Gap resource location according to the SR configuration information and the measurement Gap resource configuration information carried in the received RRC reconfiguration message;
  • the SR configuration information and the measurement Gap resource configuration information carried in the RRC reconfiguration message may be: SR configuration information and measurement Gap resource configuration information carried in an RRC reconfiguration message, or may be two different RRCs.
  • the configuration information includes an SR configuration index of the I SR SR; SR namely the the I: RadioResource ConfigDedicated->physicalConfigDedicated->
  • Obtaining, by the UE, the SR sending resource location according to the SR configuration information carried in the received RRC reconfiguration message includes:
  • the UE is configured according to the SR configuration information carried in the received RRC reconfiguration message and
  • the SFN is the system frame number sent by the SR
  • the subframe is the SR transmission subframe number
  • N OFFSET the SR is the SR subframe offset
  • the SR Periodicity is the SR transmission period; wherein, N OFFSET, SR, and SR Periodicity are based on the I SR
  • the index in Table 1 is obtained;
  • the measuring Gap resource configuration information includes measuring a Gap period, where the measurement Gap period includes two types, 40 ms and 80 ms, respectively, represented by a gapOffset cell in measConfig->MeasGapConfig in the RRC reconfiguration message; The duration is fixed at 6ms;
  • Obtaining, by the UE, the measured Gap resource location according to the measured Gap resource configuration information carried in the received RRC reconfiguration message includes:
  • the UE according to the measured Gap resource configuration information carried in the received RRC reconfiguration message and
  • T is one tenth of the Gap period
  • SFN is the Gap starting system frame number
  • the subframe is the Gap starting subframe number
  • the gapoffset is the period offset value
  • the SFN and the subframe jointly determine the Gap starting position.
  • the timer corresponding to the flag indicating that the current cell is disabled within a certain time is timed out, and the flag is cancelled.
  • the performing RRC re-establishment according to the preset re-establishment rule includes:
  • the inter-frequency cell When the UE performs cell selection to determine that a suitable inter-frequency cell exists, the inter-frequency cell is selected to initiate an RRC re-establishment process; and when it is determined that there is no suitable inter-frequency cell but a suitable intra-frequency cell exists, the co-frequency cell is selected to initiate an RRC.
  • the re-establishment process that is, the UE performs the RRC re-establishment process, preferably the inter-frequency cell, and the second-select co-frequency cell, and determines that the RRC re-establishment succeeds, and continues the SR data transmission process according to the re-established RRC connection; when determining that the RRC re-establishment fails, Initiating an RRC connection request;
  • the RRC re-establishment process initiated by the UE after selecting a suitable inter-frequency/inter-frequency cell includes:
  • the UE sends an RRC re-establishment request to the network side, and receives an RRC re-establishment message sent by the network side to complete the RRC re-establishment; as shown in FIG. 2 .
  • the method when it is determined that there is neither a suitable inter-frequency cell nor a suitable intra-frequency cell, the method further includes:
  • the UE cancels the marking of the current cell, and identifies that the SR resource of the current cell is unavailable, and causes the UE to process the processing method corresponding to the case that the number of times of the SR transmission exceeds the limit; that is, when the UE cannot find the cell that can perform RRC reestablishment only When the current cell can be found, the current cell is continuously used, the marking of the current cell is cancelled, and the SR resource of the current cell is not available;
  • the processing method corresponding to the case where the number of SR transmissions exceeds the limit may be random access or the like.
  • the UE determines that it leaves the RRC connected state or switches to another cell. When the flag of the current cell is canceled.
  • FIG. 3 is a schematic flowchart of a resource conflict processing method according to Embodiment 2 of the present invention. As shown in FIG. 3, a resource conflict processing method according to an embodiment of the present invention includes:
  • Step 301 The UE obtains an SR sending resource location and a measured Gap resource location according to the SR configuration information and the measured Gap resource configuration information carried in the received RRC reconfiguration message.
  • the SR configuration information and the measurement Gap resource configuration information carried in the RRC reconfiguration message may be: SR configuration information and measurement Gap resource configuration information carried in an RRC reconfiguration message, or may be two different RRCs.
  • a reconfiguration message where one RRC reconfiguration message carries SR configuration information, and another RRC reconfiguration message carries measurement Gap resource configuration information;
  • the configuration information includes an SR configuration index of the I SR SR; SR namely the the I: RadioResource ConfigDedicated->physicalConfigDedicated->
  • the measuring Gap resource configuration information includes measuring a Gap period, where the measurement Gap period includes two types, 40 ms and 80 ms, respectively, represented by a gapOffset cell in measConfig->MeasGapConfig in the RRC reconfiguration message; The duration is fixed at 6ms;
  • Obtaining, by the UE, the SR sending resource location according to the SR configuration information carried in the received RRC reconfiguration message includes:
  • the UE is configured according to the SR configuration information carried in the received RRC reconfiguration message and
  • the SFN is the system frame number sent by the SR
  • the subframe is the SR transmission subframe number
  • N OFFSET the SR is the SR subframe offset
  • the SR Periodicity is the SR transmission period; wherein, N OFFSET, SR, and SR Periodicity are based on the I SR
  • the index in Table 1 is obtained.
  • Obtaining, by the UE, the measured Gap resource location according to the measured Gap resource configuration information carried in the received RRC reconfiguration message includes:
  • the UE according to the measured Gap resource configuration information carried in the received RRC reconfiguration message and
  • T is one tenth of the Gap period
  • SFN is the Gap starting system frame number
  • the subframe is the Gap starting subframe number
  • the gapoffset is the period offset value
  • the SFN and the subframe jointly determine the Gap starting position.
  • Step 302 Determine whether there is a resource conflict between the location of the SR transmission resource of the current cell and the location of the measurement Gap resource. If yes, go to step 303; otherwise, go to step 304;
  • the step includes: determining whether the location of the SR sending resource of the current cell overlaps with the location of the measured Gap resource, and if there is a coincidence, determining that there is a conflict; otherwise, there is no conflict.
  • Step 303 Mark the current cell, and perform RRC reconstruction according to a preset re-establishment rule.
  • the flag indicates that the current cell is disabled in a certain period of time, that is, the UE does not select the current cell when performing cell selection in the certain time; wherein the length of the certain time can be set according to actual needs, and The timer corresponding to the flag indicating that the current cell is disabled within a certain period of time expires, and the flag is cancelled.
  • the performing RRC re-establishment according to the preset re-establishment rule includes:
  • the inter-frequency cell When the UE performs cell selection to determine that a suitable inter-frequency cell exists, the inter-frequency cell is selected to initiate an RRC re-establishment process; and when it is determined that there is no suitable inter-frequency cell but a suitable intra-frequency cell exists, the co-frequency cell is selected to initiate an RRC.
  • the re-establishment process that is, the UE performs the RRC re-establishment process, preferably the inter-frequency cell, and the secondary-selective co-frequency cell, and determines that the RRC re-establishment succeeds, and continues the SR data transmission process according to the re-established RRC connection.
  • the method when it is determined that there is neither a suitable inter-frequency cell nor a suitable intra-frequency cell, the method further includes:
  • the UE cancels the marking of the current cell, and identifies that the SR resource of the current cell is unavailable, and causes the UE to process the processing method corresponding to the case that the number of times of the SR transmission exceeds the limit; that is, when the UE cannot find the cell that can perform RRC reestablishment only When the current cell can be found, the current cell is continuously used, the marking of the current cell is cancelled, and the SR resource of the current cell is not available;
  • the processing method corresponding to the case where the number of SR transmissions exceeds the limit may be random access or the like.
  • the UE when the UE determines that it leaves the RRC connected state or switches to another cell, the UE cancels the marking of the current cell.
  • Step 304 End the current processing flow.
  • FIG. 4 is a schematic structural diagram of a resource conflict processing apparatus according to an embodiment of the present invention.
  • the apparatus is located in a UE, and the apparatus is configured to include a determining module 41 and a processing module 42, where
  • the determining module 41 is configured to: when it is determined that the SR sending resource location of the current cell and the measured Gap resource location have a resource conflict, triggering the processing module;
  • the sorting module 42 is configured to mark the current cell and perform RRC reconstruction according to a preset re-establishment rule
  • the flag indicates that the current cell is disabled in a certain period of time, that is, the UE does not select the current cell when performing cell selection in the certain time; the length of the certain time may be set according to actual needs.
  • the apparatus further includes an obtaining module 43 configured to obtain an SR sending resource location and a measuring Gap resource location according to the SR configuration information and the measured Gap resource configuration information carried in the received RRC reconfiguration message;
  • the SR configuration information and the measurement Gap resource configuration information carried in the RRC reconfiguration message may be: SR configuration information and measurement Gap resource configuration information carried in an RRC reconfiguration message, or may be two different RRCs.
  • Reconfiguration message one of which is RRC heavy
  • the configuration message carries the SR configuration information
  • the other RRC reconfiguration message carries the measurement Gap resource configuration information.
  • the configuration information includes an SR configuration index of the I SR SR; SR namely the the I: RadioResource ConfigDedicated->physicalConfigDedicated->
  • the measuring Gap resource configuration information includes measuring a Gap period, where the measurement Gap period includes two types, 40 ms and 80 ms, respectively, represented by a gapOffset cell in measConfig->MeasGapConfig in the RRC reconfiguration message; The duration is fixed at 6ms;
  • the obtaining module 43 is configured to: according to the SR configuration information carried in the received RRC reconfiguration message and
  • the SFN is the system frame number sent by the SR
  • the subframe is the SR transmission subframe number
  • N OFFSET the SR is the SR subframe offset
  • the SR Periodicity is the SR transmission period; wherein, N OFFSET, SR, and SR Periodicity are based on the I SR
  • the index in Table 1 is obtained;
  • T is one tenth of the Gap period
  • SFN is the Gap starting system frame number
  • the subframe is the Gap starting subframe number
  • the gapoffset is the period offset value
  • the SFN and the subframe jointly determine the Gap starting position.
  • the processing module 42 is configured to perform cell selection, and when determining that a suitable inter-frequency cell exists, select the inter-frequency cell to initiate an RRC re-establishment process;
  • the processing module 42 is further configured to: when it is determined that the RRC reestablishment is successful, continue the SR data sending process according to the re-established RRC connection.
  • the processing module 42 is further configured to cancel the marking of the current cell, and identify that the SR resource of the current cell is unavailable, and the UE performs the processing manner corresponding to the case that the number of times of the SR transmission exceeds the limit;
  • the processing module 42 is further configured to perform processing according to a processing manner corresponding to a case where the number of SR transmissions exceeds the limit, such as performing random access.
  • the processing module 42 is further configured to cancel the marking of the current cell when the UE leaves the RRC connection state or switches to another cell.
  • the determining module, the processing module and the obtaining module provided in the embodiment of the present invention may be implemented by a processor, and may also be implemented by a specific logic circuit; wherein the processor may be a processor on a mobile terminal or a server, In practical applications, the processor can be a central processing unit (CPU), a microprocessor (MPU), a digital signal processor (DSP), or a field programmable gate array (FPGA).
  • CPU central processing unit
  • MPU microprocessor
  • DSP digital signal processor
  • FPGA field programmable gate array
  • the resource conflict processing method is implemented in the form of a software function module and is sold or used as a separate product, it may also be stored in a computer readable storage medium.
  • the technical solution of the embodiments of the present invention may be embodied in the form of a software product in essence or in the form of a software product stored in a storage medium, including a plurality of instructions.
  • a computer device (which may be a personal computer, server, or network device, etc.) is caused to perform all or part of the methods described in various embodiments of the present invention.
  • the foregoing storage medium includes various media that can store program codes, such as a USB flash drive, a mobile hard disk, a read only memory (ROM), a magnetic disk, or an optical disk.
  • program codes such as a USB flash drive, a mobile hard disk, a read only memory (ROM), a magnetic disk, or an optical disk.
  • an embodiment of the present invention further provides a computer storage medium, where the computer storage medium stores a computer program, where the computer program is used to execute the foregoing resources of the embodiment of the present invention.
  • Conflict handling method is used to execute the foregoing resources of the embodiment of the present invention.

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Abstract

本发明公开了一种资源冲突处理方法,包括:UE确定当前小区的调度请求(SR)发送资源位置与测量Gap资源位置存在资源冲突时,标记当前小区,并依据预设的重建规则进行无线资源控制(RRC)重建;其中,所述标记表征当前小区在一定时间内被禁用。本发明还公开了一种资源冲突处理装置及存储介质。

Description

一种资源冲突处理方法、装置及存储介质 技术领域
本发明涉及通信领域中资源冲突处理相关技术,尤其涉及一种资源冲突处理方法、装置及存储介质。
背景技术
当有上行数据待发时,用户设备(UE,User Equipment)在eNB分配的物理上行控制信道(PUCCH,Physical Uplink Control Channel)资源上发送调度请求(SR,Scheduling Request),用于请求物理上行共享信道(PUSCH,Physical Uplink Shared Channel)资源;上行PUSCH资源用于UE发送上行数据。
测量Gap是长期演进(LTE,Long Term Evolution)中为了支持异频/异制式同步和测量而定义的资源。由于LTE单射频的测量带宽最大为20M,因此在执行异频/异制式测量过程中,UE需要停止当前频点的测量,将射频切换到异频/异制式的频点上进行测量,为此协议中协商了UE和eNB共同产生一个Gap空闲时间,UE一旦进入Gap时间,将不允许任何上下行信道传输。
然而,在现有技术中,SR的发送资源位置与测量Gap资源位置不可避免会出现重合,即SR的发送资源与测量Gap资源冲突,从而导致在测量Gap启动时UE无法发送SR,进而在Gap启动的几个子帧内,无法进行上行数据发送。
发明内容
本发明实施例期望提供一种资源冲突处理方法、装置及存储介质,能 够避免SR发送资源位置与测量Gap资源位置冲突导致的无法发送SR的问题,提高用户体验。
本发明实施例的技术方案是这样实现的:
本发明实施例提供了一种资源冲突处理方法,所述方法包括:
用户设备UE确定当前小区的调度请求SR发送资源位置与测量Gap资源位置存在资源冲突时,标记当前小区,并依据预设的重建规则进行无线资源控制RRC重建;其中,所述标记表征当前小区在一定时间内被禁用。
上述方案中,UE确定当前小区的SR发送资源位置与测量Gap资源位置存在资源冲突之前,所述方法还包括:
UE依据接收的RRC重配置消息中携带的SR配置信息及测量Gap资源配置信息获得SR发送资源位置及测量Gap资源位置。
上述方案中,所述依据预设的重建规则进行RRC重建包括:
UE进行小区选择,确定存在合适的异频小区时,选取所述异频小区发起RRC重建过程;
确定不存在合适的异频小区但存在合适的同频小区时,选取所述同频小区发起RRC重建过程。
上述方案中,确定既不存在合适的异频小区也不存在合适的同频小区时,所述方法还包括:
UE取消对当前小区的标记,并标识当前小区的SR资源不可用,使UE采取SR发送次数超限的情况对应的处理方式进行处理。
上述方案中,所述方法还包括:
UE确定自身离开RRC连接状态或切换进入其它小区时,取消对当前小区的标记。
本发明实施例还提供了一种资源冲突处理装置,所述装置包括:确定模块及处理模块;其中,
所述确定模块,配置为确定当前小区的SR发送资源位置与测量Gap资源位置存在资源冲突时,触发处理模块;
所述排序模块,配置为标记当前小区,并依据预设的重建规则进行RRC重建;其中,所述标记表征当前小区在一定时间内被禁用。
上述方案中,所述装置还包括获取模块,配置为依据接收的RRC重配置消息中携带的SR配置信息及测量Gap资源配置信息获得SR发送资源位置及测量Gap资源位置。
上述方案中,所述处理模块,配置为进行小区选择,确定存在合适的异频小区时,选取所述异频小区发起RRC重建过程;
确定不存在合适的异频小区但存在合适的同频小区时,选取所述同频小区发起RRC重建过程。
上述方案中,所述处理模块,还配置为取消对当前小区的标记,并标识当前小区的SR资源不可用,使UE采取SR发送次数超限的情况对应的处理方式进行处理。
上述方案中,所述处理模块,还配置为确定UE离开RRC连接状态或切换进入其它小区时,取消对当前小区的标记。
本发明实施例还提供了一种计算机存储介质,所述计算机存储介质存储有计算机程序,该计算机程序用于执行本发明实施例的上述资源冲突处理方法。
本发明实施例所提供的资源冲突处理方法、装置及存储介质,UE确定当前小区的SR发送资源位置与测量Gap资源位置存在资源冲突时,标记当前小区,并依据预设的重建规则进行RRC重建;其中,所述标记表征当前小区在一定时间内被禁用。如此,能够避免SR发送资源位置与测量Gap资源位置冲突导致的无法发送SR、无法申请上行授权的问题,提高用户体验,且实现简单、可靠性高。
附图说明
图1为本发明实施例一资源冲突处理方法流程示意图;
图2为本发明实施例RRC重建过程示意图;
图3为本发明实施例二资源冲突处理方法流程示意图;
图4为本发明实施例资源冲突处理装置组成结构示意图。
具体实施方式
在本发明实施例中,UE确定当前小区的SR发送资源位置与测量Gap资源位置存在资源冲突时,标记当前小区,并依据预设的重建规则进行RRC重建;其中,所述标记表征当前小区在一定时间内被禁用。
实施例一
图1为本发明实施例一资源冲突处理方法流程示意图;如图1所示,本发明实施例资源冲突处理方法包括:
步骤101:UE确定当前小区的SR发送资源位置与测量Gap资源位置存在资源冲突时,标记当前小区,并依据预设的重建规则进行无线资源控制RRC重建;
这里,所述标记表征当前小区在一定时间内被禁用,即UE在所述一定时间内进行小区选择时不选当前小区;其中,所述一定时间的长短可以依据实际需要进行设定。
在一实施例中,本步骤之前,所述方法还包括:UE依据接收的RRC重配置消息中携带的SR配置信息及测量Gap资源配置信息获得SR发送资源位置及测量Gap资源位置;
这里,所述RRC重配置消息中携带的SR配置信息及测量Gap资源配置信息既可以为:一个RRC重配置消息中携带的SR配置信息及测量Gap资源配置信息,也可以为两个不同的RRC重配置消息,其中一个RRC重配置消息中携带SR配置信息,另一个RRC重配置消息中携带测量Gap资 源配置信息;
其中,所述SR配置信息包括SR配置索引ISR;所述ISR即为:RadioResource ConfigDedicated->physicalConfigDedicated->
schedulingRequestConfig下的sr-ConfigIndex信元值;
UE依据接收的RRC重配置消息中携带的SR配置信息获得SR发送资源位置包括:
UE依据接收的RRC重配置消息中携带的SR配置信息及
(10×SFN+subframe-NOFFSET,SR)modSRPeriodicity=0,获得SR发送资源位置;
其中,SFN为SR发送的系统帧号,subframe为SR发送子帧号,NOFFSET,SR为SR子帧偏移,SRPeriodicity为SR发送周期;其中,NOFFSET,SR和SRPeriodicity根据ISR在表一中索引得到;
Figure PCTCN2015091001-appb-000001
表一
所述测量Gap资源配置信息包括测量Gap周期,所述测量Gap周期包括两种,分别为40ms和80ms,由RRC重配消息中的measConfig->MeasGapConfig中的gapOffset信元表示;所述测量Gap的时长固定为6ms;
UE依据接收的RRC重配置消息中携带的测量Gap资源配置信息获得测量Gap资源位置包括:
UE依据接收的RRC重配置消息中携带的测量Gap资源配置信息及
SFN mod T=FLOOR(gapOffset/10);subframe=gapOffset mod 10;获得测量Gap资源位置;
其中,T为Gap周期的十分之一,SFN为Gap起始系统帧号,subframe为Gap起始子帧号,gapoffset为周期偏移值;SFN和subframe共同决定Gap起始位置。
在一实施例中,表征当前小区在一定时间内被禁用的标记对应的定时器超时,取消所述标记。
在一实施例中,所述依据预设的重建规则进行RRC重建包括:
UE进行小区选择,确定存在合适的异频小区时,选取所述异频小区发起RRC重建过程;确定不存在合适的异频小区但存在合适的同频小区时,选取所述同频小区发起RRC重建过程;也就是说,UE进行RRC重建过程中优选异频小区,次选同频小区,确定RRC重建成功时,依据重建后的RRC连接继续SR数据发送过程;确定RRC重建失败时,则重新发起RRC连接请求;
UE选择合适的异频/同频小区后发起的RRC重建过程包括:
UE发送RRC重建请求给网络侧,接收网络侧发送的RRC重建消息,以完成RRC重建;如图2所示。
在一实施例中,确定既不存在合适的异频小区也不存在合适的同频小区时,所述方法还包括:
UE取消对当前小区的标记,并标识当前小区的SR资源不可用,使UE采取SR发送次数超限的情况对应的处理方式进行处理;也就是说,当UE无法找到可以进行RRC重建的小区只能找到当前小区时,则继续使用当前小区,取消对当前小区的标记,并标识当前小区的SR资源不可用;
这里,SR发送次数超限的情况对应的处理方式可以为随机接入等。
在一实施例中,UE确定自身离开RRC连接状态或切换进入其它小区 时,取消对当前小区的标记。
实施例二
图3为本发明实施例二资源冲突处理方法流程示意图;如图3所示,本发明实施例资源冲突处理方法包括:
步骤301:UE依据接收的RRC重配置消息中携带的SR配置信息及测量Gap资源配置信息获得SR发送资源位置及测量Gap资源位置;
这里,所述RRC重配置消息中携带的SR配置信息及测量Gap资源配置信息既可以为:一个RRC重配置消息中携带的SR配置信息及测量Gap资源配置信息,也可以为两个不同的RRC重配置消息,其中一个RRC重配置消息中携带SR配置信息,另一个RRC重配置消息中携带测量Gap资源配置信息;
其中,所述SR配置信息包括SR配置索引ISR;所述ISR即为:RadioResource ConfigDedicated->physicalConfigDedicated->
schedulingRequestConfig下的sr-ConfigIndex信元值;
所述测量Gap资源配置信息包括测量Gap周期,所述测量Gap周期包括两种,分别为40ms和80ms,由RRC重配消息中的measConfig->MeasGapConfig中的gapOffset信元表示;所述测量Gap的时长固定为6ms;
UE依据接收的RRC重配置消息中携带的SR配置信息获得SR发送资源位置包括:
UE依据接收的RRC重配置消息中携带的SR配置信息及
(10×SFN+subframe-NOFFSET,SR)modSRPeriodicity=0,获得SR发送资源位置;
其中,SFN为SR发送的系统帧号,subframe为SR发送子帧号,NOFFSET,SR为SR子帧偏移,SRPeriodicity为SR发送周期;其中,NOFFSET,SR和SRPeriodicity根据ISR在表一中索引得到。
UE依据接收的RRC重配置消息中携带的测量Gap资源配置信息获得测量Gap资源位置包括:
UE依据接收的RRC重配置消息中携带的测量Gap资源配置信息及
SFN mod T=FLOOR(gapOffset/10);subframe=gapOffset mod 10;获得测量Gap资源位置;
其中,T为Gap周期的十分之一,SFN为Gap起始系统帧号,subframe为Gap起始子帧号,gapoffset为周期偏移值;SFN和subframe共同决定Gap起始位置。
步骤302:判断当前小区的SR发送资源位置与测量Gap资源位置是否存在资源冲突,如果存在,执行步骤303;否则,执行步骤304;
本步骤包括:判断当前小区的SR发送资源位置与测量Gap资源位置是否重合,如果重合则确定存在冲突;否则不存在冲突。
步骤303:标记当前小区,依据预设的重建规则进行RRC重建;
这里,所述标记表征当前小区在一定时间内被禁用,即UE在所述一定时间内进行小区选择时不选当前小区;其中,所述一定时间的长短可以依据实际需要进行设定,而当表征当前小区在一定时间内被禁用的标记对应的定时器超时,取消所述标记。
在一实施例中,所述依据预设的重建规则进行RRC重建包括:
UE进行小区选择,确定存在合适的异频小区时,选取所述异频小区发起RRC重建过程;确定不存在合适的异频小区但存在合适的同频小区时,选取所述同频小区发起RRC重建过程;也就是说,UE进行RRC重建过程中优选异频小区,次选同频小区,确定RRC重建成功时,依据重建后的RRC连接继续SR数据发送过程。
在一实施例中,确定既不存在合适的异频小区也不存在合适的同频小区时,所述方法还包括:
UE取消对当前小区的标记,并标识当前小区的SR资源不可用,使UE采取SR发送次数超限的情况对应的处理方式进行处理;也就是说,当UE无法找到可以进行RRC重建的小区只能找到当前小区时,则继续使用当前小区,取消对当前小区的标记,并标识当前小区的SR资源不可用;
这里,SR发送次数超限的情况对应的处理方式可以为随机接入等。
在一实施例中,UE确定自身离开RRC连接状态或切换进入其它小区时,取消对当前小区的标记。
步骤304:结束本次处理流程。
实施例三
图4为本发明实施例资源冲突处理装置组成结构示意图;所述装置位于UE,如图4所示,本发明实施例资源冲突处理装置组成包括:确定模块41及处理模块42;其中,
所述确定模块41,配置为确定当前小区的SR发送资源位置与测量Gap资源位置存在资源冲突时,触发处理模块;
所述排序模块42,配置为标记当前小区,并依据预设的重建规则进行RRC重建;
其中,所述标记表征当前小区在一定时间内被禁用,即UE在所述一定时间内进行小区选择时不选当前小区;所述一定时间的长短可以依据实际需要进行设定。
在一实施例中,所述装置还包括获取模块43,配置为依据接收的RRC重配置消息中携带的SR配置信息及测量Gap资源配置信息获得SR发送资源位置及测量Gap资源位置;
这里,所述RRC重配置消息中携带的SR配置信息及测量Gap资源配置信息既可以为:一个RRC重配置消息中携带的SR配置信息及测量Gap资源配置信息,也可以为两个不同的RRC重配置消息,其中一个RRC重 配置消息中携带SR配置信息,另一个RRC重配置消息中携带测量Gap资源配置信息;
其中,所述SR配置信息包括SR配置索引ISR;所述ISR即为:RadioResource ConfigDedicated->physicalConfigDedicated->
schedulingRequestConfig下的sr-ConfigIndex信元值;
所述测量Gap资源配置信息包括测量Gap周期,所述测量Gap周期包括两种,分别为40ms和80ms,由RRC重配消息中的measConfig->MeasGapConfig中的gapOffset信元表示;所述测量Gap的时长固定为6ms;
所述获取模块43,配置为依据接收的RRC重配置消息中携带的SR配置信息及
(10×SFN+subframe-NOFFSET,SR)modSRPeriodicity=0,获得SR发送资源位置;
其中,SFN为SR发送的系统帧号,subframe为SR发送子帧号,NOFFSET,SR为SR子帧偏移,SRPeriodicity为SR发送周期;其中,NOFFSET,SR和SRPeriodicity根据ISR在表一中索引得到;
以及,配置为依据接收的RRC重配置消息中携带的测量Gap资源配置信息及SFN mod T=FLOOR(gapOffset/10);subframe=gapOffset mod 10;获得测量Gap资源位置;
其中,T为Gap周期的十分之一,SFN为Gap起始系统帧号,subframe为Gap起始子帧号,gapoffset为周期偏移值;SFN和subframe共同决定Gap起始位置。
在一实施例中,所述处理模块42,配置为进行小区选择,确定存在合适的异频小区时,选取所述异频小区发起RRC重建过程;
确定不存在合适的异频小区但存在合适的同频小区时,选取所述同频小区发起RRC重建过程;
所述处理模块42,还配置为确定RRC重建成功时,依据重建后的RRC连接继续SR数据发送过程。
在一实施例中,所述处理模块42,还配置为取消对当前小区的标记,并标识当前小区的SR资源不可用,使UE采取SR发送次数超限的情况对应的处理方式进行处理;
相应的,所述处理模块42,还配置为采取SR发送次数超限的情况对应的处理方式进行处理,如进行随机接入等。
在一实施例中,所述处理模块42,还配置为确定UE离开RRC连接状态或切换进入其它小区时,取消对当前小区的标记。
本发明实施例中提出的确定模块、处理模块及获取模块都可以通过处理器来实现,当然也可通过具体的逻辑电路实现;其中所述处理器可以是移动终端或服务器上的处理器,在实际应用中,处理器可以为中央处理器(CPU)、微处理器(MPU)、数字信号处理器(DSP)或现场可编程门阵列(FPGA)等。
本发明实施例中,如果以软件功能模块的形式实现上述资源冲突处理方法,并作为独立的产品销售或使用时,也可以存储在一个计算机可读取存储介质中。基于这样的理解,本发明实施例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中,包括若干指令用以使得一台计算机设备(可以是个人计算机、服务器、或者网络设备等)执行本发明各个实施例所述方法的全部或部分。而前述的存储介质包括:U盘、移动硬盘、只读存储器(Read Only Memory,ROM)、磁碟或者光盘等各种可以存储程序代码的介质。这样,本发明实施例不限制于任何特定的硬件和软件结合。
相应地,本发明实施例还提供一种计算机存储介质,该计算机存储介质中存储有计算机程序,该计算机程序用于执行本发明实施例的上述资源 冲突处理方法。
以上所述仅为本发明的较佳实施例而已,并非用于限定本发明的保护范围。

Claims (11)

  1. 一种资源冲突处理方法,所述方法包括:
    用户设备UE确定当前小区的调度请求SR发送资源位置与测量Gap资源位置存在资源冲突时,标记当前小区,并依据预设的重建规则进行无线资源控制RRC重建;其中,所述标记表征当前小区在一定时间内被禁用。
  2. 根据权利要求1所述方法,其中,UE确定当前小区的SR发送资源位置与测量Gap资源位置存在资源冲突之前,所述方法还包括:
    UE依据接收的RRC重配置消息中携带的SR配置信息及测量Gap资源配置信息获得SR发送资源位置及测量Gap资源位置。
  3. 根据权利要求1或2所述方法,其中,所述依据预设的重建规则进行RRC重建包括:
    UE进行小区选择,确定存在合适的异频小区时,选取所述异频小区发起RRC重建过程;
    确定不存在合适的异频小区但存在合适的同频小区时,选取所述同频小区发起RRC重建过程。
  4. 根据权利要求3所述方法,其中,确定既不存在合适的异频小区也不存在合适的同频小区时,所述方法还包括:
    UE取消对当前小区的标记,并标识当前小区的SR资源不可用,使UE采取SR发送次数超限的情况对应的处理方式进行处理。
  5. 根据权利要求1或2所述方法,其中,所述方法还包括:
    UE确定自身离开RRC连接状态或切换进入其它小区时,取消对当前小区的标记。
  6. 一种资源冲突处理装置,所述装置包括:确定模块及处理模块;其中,
    所述确定模块,配置为确定当前小区的SR发送资源位置与测量Gap 资源位置存在资源冲突时,触发处理模块;
    所述排序模块,配置为标记当前小区,并依据预设的重建规则进行RRC重建;其中,所述标记表征当前小区在一定时间内被禁用。
  7. 根据权利要求6所述装置,其中,所述装置还包括获取模块,配置为依据接收的RRC重配置消息中携带的SR配置信息及测量Gap资源配置信息获得SR发送资源位置及测量Gap资源位置。
  8. 根据权利要求6或7所述装置,其中,所述处理模块,配置为进行小区选择,确定存在合适的异频小区时,选取所述异频小区发起RRC重建过程;
    确定不存在合适的异频小区但存在合适的同频小区时,选取所述同频小区发起RRC重建过程。
  9. 根据权利要求8所述装置,其中,所述处理模块,还配置为取消对当前小区的标记,并标识当前小区的SR资源不可用,使UE采取SR发送次数超限的情况对应的处理方式进行处理。
  10. 根据权利要求6或7所述装置,其中,所述处理模块,还配置为确定UE离开RRC连接状态或切换进入其它小区时,取消对当前小区的标记。
  11. 一种计算机存储介质,所述计算机存储介质中存储有计算机可执行指令,该计算机可执行指令用于执行权利要求1至5任一项所述的资源冲突处理方法。
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