WO2014090030A1 - Anr任务执行方法、系统及anr用户设备管理方法、装置 - Google Patents

Anr任务执行方法、系统及anr用户设备管理方法、装置 Download PDF

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Publication number
WO2014090030A1
WO2014090030A1 PCT/CN2013/084980 CN2013084980W WO2014090030A1 WO 2014090030 A1 WO2014090030 A1 WO 2014090030A1 CN 2013084980 W CN2013084980 W CN 2013084980W WO 2014090030 A1 WO2014090030 A1 WO 2014090030A1
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Prior art keywords
anr
user equipment
discontinuous reception
anr function
function
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PCT/CN2013/084980
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English (en)
French (fr)
Inventor
苑秋红
夏中英
赵庆元
Original Assignee
中兴通讯股份有限公司
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Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Priority to EP13861827.7A priority Critical patent/EP2934035A4/en
Priority to JP2015546818A priority patent/JP6089116B2/ja
Priority to US14/652,278 priority patent/US9930723B2/en
Publication of WO2014090030A1 publication Critical patent/WO2014090030A1/zh
Priority to HK15110715.6A priority patent/HK1210352A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/20Manipulation of established connections
    • H04W76/28Discontinuous transmission [DTX]; Discontinuous reception [DRX]
    • 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
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices
    • H04W52/0212Power saving arrangements in terminal devices managed by the network, e.g. network or access point is master and terminal is slave
    • H04W52/0216Power saving arrangements in terminal devices managed by the network, e.g. network or access point is master and terminal is slave using a pre-established activity schedule, e.g. traffic indication frame
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/02Terminal devices
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present invention relates to the field of communications, and in particular, to an ANR (Automatic Neighbor Relation) task execution method and system, and an ANR user equipment management method and apparatus.
  • ANR Automatic Neighbor Relation
  • DRX discontinuous reception
  • RRC Radio Resource Control
  • ANR is one of the key technologies of the self-optimizing network (SON) function. It can realize the self-configuration and self-optimization of the neighbor relationship, thus alleviating the work intensity of network planning and network optimization personnel, thereby reducing the network investment and Operating costs.
  • the prior art specifies that the UE capable of performing ANR measurement must have the Long DRX capability, and can only configure the DRX in the UE, and perform the ANR measurement in the sleep state of the DRX.
  • the delay requirement is up to 300ms, and the ANR between the systems requires the configuration of the DRX cycle to be more than 1000ms to complete the measurement of the global cell identifier (CGI, Cell Global Identifier) of the adjacent system neighboring area. It may take a long time to find an eligible UE (UE, User Equipment), and it takes a long time to execute the UE with the same condition, and the execution efficiency and success rate are low.
  • CGI Cell Global Identifier
  • the quality of service (QoS) of the UE is not good, and the key performance indicator method (KPI, Key) of the cell is affected. Performance Indicator) indicator. Summary of the invention
  • the main technical problem to be solved by the embodiments of the present invention is to provide an ANR task execution method, system, and ANR user equipment management method and apparatus, which solve the problem that the existing ANR task execution efficiency and success rate are low, and the overall user experience satisfaction of the cell is low. The problem.
  • an embodiment of the present invention provides an ANR task execution method, including: when an ANR function is enabled, selecting a corresponding user equipment; configuring, for the user equipment, a discontinuous reception configuration that matches the ANR function; The discontinuous reception configuration performs a corresponding ANR task.
  • the configuring, by the user equipment, the discontinuous receiving configuration that matches the ANR function includes: if the ANR function is an intra-system ANR function, configuring the user equipment Supporting discontinuous reception parameters of the ANR function in the system; if the ANR function is an inter-system ANR function, configuring the user equipment with discontinuous reception parameters supporting the inter-system ANR function.
  • the configuring, by the user equipment, a discontinuous reception configuration that matches the ANR function further includes: configuring, for the user equipment, discontinuous reception that supports the ANR function
  • the method further includes setting the user equipment to be selected by the ANR function.
  • the configuring, by the user equipment, a discontinuous reception configuration that matches the ANR function further includes: configuring, for the user equipment, discontinuous reception that supports the ANR function After the parameter, the corresponding timer corresponding to the ANR task is also started.
  • the performing the corresponding ANR task based on the discontinuous receiving configuration includes: determining whether the ANR task is executed or whether the timer expires, and if yes, the user The device performs a discontinuous reception configuration operation.
  • the performing the corresponding one based on the discontinuous reception configuration further includes: determining whether the user equipment initiates a release discontinuous reception configuration request, and if yes, performing a release discontinuous reception configuration operation on the user equipment; or determining whether the user equipment initiates a modification discontinuous reception configuration request If yes, determining whether the user equipment is suitable for discontinuous reception configuration based on the service configuration, and if applicable, reconfiguring the discontinuous reception configuration for the user equipment, and if not, releasing the discontinuous reception configuration.
  • an embodiment of the present invention further provides an ANR user equipment management method, including: when an ANR function is enabled, selecting a corresponding user equipment; and configuring, for the user equipment, discontinuous reception that matches the ANR function. Configuration.
  • the configuring, by the user equipment, the discontinuous receiving configuration that matches the ANR function includes: if the ANR function is an intra-system ANR function, configuring the user equipment A discontinuous reception parameter supporting an ANR function in the system; if the ANR function is an inter-system ANR function, configuring the user equipment to configure a discontinuous reception parameter supporting an inter-system ANR function.
  • the configuring, by the user equipment, the discontinuous receiving configuration that matches the ANR function further includes: configuring, in the user equipment, the ANR function After continuously receiving the parameters, the method further includes setting the user equipment to be selected by the ANR function.
  • the configuring, by the user equipment, the discontinuous receiving configuration that matches the ANR function further includes: configuring, in the user equipment, the ANR function After receiving the parameters continuously, the timer corresponding to the ANR task is further started.
  • the method further includes: determining whether the ANR task is executed or whether the timer expires If yes, performing de-discontinuous reception configuration operation on the user equipment.
  • the embodiment of the present invention further provides an ANR user equipment management apparatus, including: a user equipment selection module, configured to select a corresponding user equipment when the ANR function is enabled; and discontinuously receive the configuration module, configured as The user equipment selected by the user equipment selection module configures a discontinuous reception configuration that matches the ANR function.
  • the discontinuous reception configuration module includes a determination sub-module and a configuration sub-module; wherein the determination sub-module is configured to determine whether the ANR function is an intra-system ANR function or an inter-system ANR The function, and the result of the determination is sent to the configuration sub-module; the configuration sub-module is configured to configure, for the user equipment, a discontinuous reception parameter for supporting the ANR function in the system when the determination result is an ANR function in the system. And configured to configure, for the user equipment, a discontinuous reception parameter supporting an inter-system ANR function when the determination result is an inter-system ANR function.
  • the discontinuous reception configuration module further includes a timer activation submodule, and the timer activation submodule is configured to configure a support for the user equipment in the configuration submodule.
  • an embodiment of the present invention further provides an ANR task execution system, including an ANR user equipment management apparatus and at least one user equipment;
  • the ANR user equipment management apparatus includes a user equipment selection module and a discontinuous reception configuration module.
  • the user equipment selection module is configured to select a corresponding user equipment from the at least one user equipment when the ANR function is enabled;
  • the discontinuous reception configuration module is configured to select a module for the user equipment
  • the selected user equipment configuration is configured to match the discontinuous reception configuration of the ANR function; the user equipment selected by the user equipment selection module is configured to perform a corresponding ANR task based on the discontinuous reception configuration.
  • ANR task execution method, system and ANR user equipment management provided by embodiments of the present invention
  • the method and the device when the ANR function is enabled, select a corresponding user equipment for the opened ANR function, and then configure a discontinuous receiving DRX configuration that matches the ANR function for the selected user equipment; that is, the ANR function is selected in the embodiment of the present invention.
  • the UE performs the configuration of the matched DRX parameters, and does not need to search for the UEs that meet the requirements in the UE of the entire cell, so that the efficiency and success rate of the ANR task execution can be improved.
  • the embodiment of the present invention only needs to select the ANR function.
  • the UE is specifically configured, instead of changing the configuration of all UEs in the entire cell, so the impact on the KPI of the cell can be greatly reduced, and the satisfaction of the overall user experience of the cell is improved.
  • FIG. 1 is a schematic structural diagram of an ANR user equipment management apparatus according to Embodiment 1 of the present invention
  • FIG. 2 is a schematic structural diagram of a discontinuous reception configuration module of FIG.
  • FIG. 3 is a schematic flowchart of performing an ANR task according to Embodiment 1 of the present invention.
  • FIG. 4 is a schematic flowchart of configuring a DRX configuration for a UE in FIG. 3;
  • FIG. 5 is a schematic flowchart of performing an ANR task in FIG. 3;
  • FIG. 6 is a schematic flowchart of releasing a DRX parameter according to a request for releasing a discontinuous reception configuration according to Embodiment 1 of the present invention
  • FIG. 7 is a schematic flowchart of configuring DRX parameters according to a modified discontinuous reception configuration request according to Embodiment 1 of the present invention.
  • FIG. 8 is a schematic flowchart of another execution of an ANR task according to Embodiment 1 of the present invention. detailed description
  • Embodiment 1 is a diagrammatic representation of Embodiment 1:
  • the ANR user equipment management apparatus includes: a user equipment selection module 11 (ie, a UE selection module) and a discontinuous reception configuration module 12 (ie, a DRX configuration module), where:
  • the UE selection module 11 is configured to select a corresponding UE when the ANR function is enabled;
  • the DRX configuration mode 12 is configured to configure, for the UE selected by the UE selection module, a DRX configuration that matches the ANR function.
  • the DRX configuration module may be a Radio Resource Control (RRC) module.
  • RRC Radio Resource Control
  • the DRX parameter that is specifically configured and matched for the UE selected by the ANR function does not need to find the UE that meets the DRX requirement in the UE of the entire cell, so the efficiency and success rate of the ANR task execution can be improved; Since only the UE selected by the ANR function needs to be specifically configured, instead of changing the configuration of all UEs in the entire cell, the impact on the KPI of the cell can be greatly reduced, and the satisfaction of the overall user experience of the cell is improved.
  • the UE selection module may select the corresponding UE according to the actual situation. For example, when the ANR function that is enabled is the intra-system ANR function or the inter-system ANR function, the UE selection module may select the UE according to the following principles:
  • the UE currently only has a Non-Guaranteed Bit Rate (NGBR) service
  • the current state of the UE is the cell edge user (CEU, Cell Edge User) state, that is, the UE triggers an A3-Enter event, wherein the A3-Enter event can be related to Inter-Cell Interference Coordination (ICIC).
  • CEU Cell Edge User
  • A3-Enter event can be related to Inter-Cell Interference Coordination (ICIC).
  • ICIC Inter-Cell Interference Coordination
  • the UE has Long DRX capability and ANR measurement capability.
  • the UE selection module sends the selected result to the DRX configuration module, and the DRX configuration module configures the corresponding DRX configuration for the selected UE corresponding to the corresponding ANR function type.
  • the DRX configuration module 12 in this embodiment includes a determination sub-module 121 and a configuration sub-module 122, wherein:
  • the determining sub-module 121 is configured to determine that the enabled ANR function is an ANR function in the system. Is the inter-system ANR function, and sends the judgment result to the configuration sub-module;
  • the configuration sub-module 122 is configured to: when the received judgment result is an intra-system ANR function, configure a discontinuous reception parameter for supporting the ANR function in the system for the selected UE; when the received judgment result is an inter-system ANR function, The selected UE configuration supports discontinuous reception parameters of the inter-system ANR function.
  • the DRX configuration module further includes a timer startup submodule and a status identification setting submodule, where:
  • the timer startup sub-module is configured to start a timer corresponding to the ANR task after the configuration sub-module configures the DRX parameter supporting the ANR function for the selected UE; for example, when the ANR function that is enabled is the ANR function in the system, The startup corresponds to a timer in the system; when the ANR function that is turned on is an inter-system ANR function, a timer corresponding to the system is started.
  • the status identifier setting sub-module is configured to set the UE to be selected by the ANR function after the configuration sub-module configures the discontinuous reception parameter supporting the ANR function for the selected UE.
  • the UE selected by the UE selection module performs the corresponding ANR task based on the DRX configuration.
  • the ANR user equipment management apparatus in this embodiment may further include de-duration, if yes, performing a DRX configuration operation on the UE.
  • the method includes:
  • Step 301 When the ANR function is enabled, select the corresponding UE;
  • Step 302 Configure a DRX configuration that matches the ANR function for the selected UE.
  • Step 303 Perform a corresponding ANR task based on the DRX configuration.
  • the principle of selecting a UE in step 301 can adopt the above principle.
  • Step 302 Configure a DRX configuration that matches the ANR function for the selected UE, and refer to See Figure 4 for details:
  • Step 401 Determine whether the UE is selected by the ANR function in the system or is selected by the inter-system ANR function. If the ANR function in the system is selected, the process proceeds to step 402. If the ANR function is selected, the process proceeds to step 403.
  • Step 404 Configure the selected UE according to the selected DRX parameter, and set the state of the UE to be selected by the ANR, and start the timer TANR.
  • step 303 the process of executing the corresponding ANR task based on the configured DRX parameters is shown in FIG. 5, and specifically includes:
  • Step 501 Determine whether the ANR task is completed or the timer TANR is timed out, if yes, go to step 502; otherwise, go to step 503;
  • Step 502 Perform a de-discontinuous reception configuration operation on the UE.
  • Step 503 The UE continues to perform the ANR task.
  • step 303 in order to further reduce the QoS impact on the UE performing the task during the execution of the ANR task, in the above step 303, referring to FIG. 6 and FIG. 7, the following steps may also be included:
  • Step 601 In the process of performing the corresponding ANR task based on the configured DRX parameter, determining whether the UE initiates the release of the discontinuous reception configuration request, and if yes, proceeding to step 602; otherwise, proceeding to step 603;
  • Step 602 Release the DRX parameter of the UE.
  • Step 603 The UE continues to perform the ANR task. See Figure 7:
  • Step 701 In the process of performing the corresponding ANR task based on the configured DRX parameter, determining whether the UE initiates the modification of the discontinuous reception configuration request, and if yes, proceeding to step 702; otherwise, proceeding to step 706;
  • Step 702 Perform a DRX parameter operation on the UE.
  • Step 703 Determine whether the user equipment is suitable for configuring DRX parameters based on the service, if applicable, go to step 704; otherwise, go to step 705;
  • Step 704 Reconfigure the discontinuous reception configuration for the UE.
  • Step 705 Release the DRX parameter of the UE.
  • Step 706 The UE continues to perform the ANR task. The steps of steps 702 to 705 described above are directly performed.
  • Step 801 Determine whether the UE is selected by the ANR function in the system or is selected by the inter-system ANR function. If the ANR function in the system is selected, the process proceeds to step 802. If the ANR function is selected, the process proceeds to step 803.
  • Step 804 Configure the selected UE according to the selected DRX parameter, and set the state of the UE to be selected by the ANR, and start the timer TANR.
  • Step 805 In the process of performing the corresponding ANR task based on the configured DRX parameter, that is, when the TAR is not timed out, it is determined whether the UE initiates the modification of the discontinuous reception configuration request, and if yes, go to step 806; otherwise, go to step 810. ; Step 806: Perform a DRX parameter operation on the UE.
  • Step 807 Determine whether the user equipment is suitable for discontinuous reception configuration based on the service configuration, if appropriate, go to step 808; otherwise, go to step 809;
  • Step 808 Reconfigure the DRX configuration for the UE.
  • Step 809 Release the DRX parameter of the UE.
  • Step 810 Wait for the UE to complete the ANR task or TANR timeout, and go to step 806.
  • the DRX parameter specially configured for the UE selected by the ANR function has the least impact on the UE, and affects the UE in the shortest time, that is, the success rate of the ANR measurement is improved, and the overall user experience of the cell is not affected, and the KPI is not affected. Further, the DRX parameter may be adjusted according to the service of the UE in time, and the QoS impact of the UE performing the ANR function is minimized.
  • Embodiment 2 In order to better understand the technical solution of the present invention, several specific UE selection processes and processes for performing ANR are described below as an example.
  • Embodiment 2
  • an UE code B reports an A3-Enter event
  • the UE capability has the Long DRX and ANR measurement capabilities; therefore, the UE codenamed B is selected for the ANR measurement.
  • the UE, the UE is tagged by the inter-system ANR function, and input to the DRX configuration module, and the DRX configuration module can be an RRC module, as follows:
  • Step 21 Determine that the UE with the code B is selected by the inter-system ANR function, and go to step 22;
  • Step 23 The RRC module configures the DRX parameter, and the UE status is set to be successfully selected by the ANR, and the timer TANR is started, and the process proceeds to step 24;
  • Step 24 When the timer TANR is clocking the Is clock, the UE completes the ANR task, and the global cell identifier (CGI, Cell Global Identifier) reports the UE to perform the ANR task, and performs the process of configuring the dedicated DRX parameter, and proceeds to step 25;
  • CGI Cell Global Identifier
  • Step 25 determining whether the UE is suitable for configuring the DRX parameter based on the service, because the DRX switch of the cell is not enabled, the DRX parameter is not configured, and the process proceeds to step 26;
  • Step 26 The UE is not suitable for configuring the DRX parameter based on the service, that is, the DRX function module does not output the DRX parameter, and then releases the DRX parameter.
  • Embodiment 3 is not suitable for configuring the DRX parameter based on the service, that is, the DRX function module does not output the DRX parameter, and then releases the DRX parameter.
  • a certain UE code C reports the A3-Enter event
  • the UE capability is capable of Long DRX and ANR measurement capability; therefore, the UE codenamed C is selected for the ANR measurement
  • the UE, the UE is tagged by the ANR in the system, and input to the DRX configuration module, as follows:
  • Step 31 Determine that the UE with the code C is selected by the ANR function in the system, and go to step 32.
  • Step 33 The RRC configures the DRX parameter, and the UE state is set to be successfully selected by the ANR, and the timer TANR is started, and the process proceeds to step 34.
  • Step 34 When the timer TANR is clocked to 0.5s, the UE completes the ANR function, and the CGI in the system performs the ANR task, and performs the process of configuring the dedicated DRX parameter, and proceeds to step 35;
  • Step 35 determining whether the UE is suitable for configuring the DRX parameter based on the service, because the DRX switch of the cell is not enabled, the DRX parameter is not configured, and the process proceeds to step 36;
  • Step 36 The UE is not suitable for configuring the DRX parameter based on the service, that is, the DRX function module does not output the DRX parameter, and then releases the DRX parameter.
  • Embodiment 4
  • a UE ID D reports an A3-Enter event
  • the event indicates that the UE is at the cell edge and enters the CEU state.
  • the UE does not trigger the handover procedure, and is in the control plane steady state.
  • the UE capability is available to have Long DRX and ANR measurement capabilities. Therefore, the UE with the code D is selected as the special For the UE used for ANR measurement, the UE is tagged by the ANR in the system and input to the DRX configuration module, as follows:
  • Step 41 Determine that the UE with the code B is selected by the ANR function in the system, and go to step 42.
  • Step 43 The RRC configures the DRX parameter, and the UE state is set to be successfully selected by the ANR, and the timer TANR is started, and the process proceeds to step 44;
  • Step 45 Perform a dedicated DRX process on the UE.
  • Step 46 determining whether the UE is suitable for configuring the DRX parameter based on the service, since the DRX switch of the cell is not turned on, the DRX parameter is not configured, and the process proceeds to step 47;
  • Step 47 The UE is not suitable for configuring the DRX parameter based on the service, that is, the DRX function module does not output the DRX parameter, and then releases the DRX parameter.
  • Embodiment 5
  • an UE code E reports an A3-Enter event
  • Example 6
  • the UE does not trigger the handover process and is in the control plane steady state.
  • the UE capability is available to have Long DRX and ANR measurement capabilities. Therefore, the UE with the code F is selected as the special For the UE used for ANR measurement, the UE is tagged by the ANR in the system and input to the DRX configuration module, as follows:
  • Step 61 Determine that the UE with the code F is selected by the ANR function in the system, and go to step 62.
  • Step 63 The RRC configures the DRX parameter, and the UE state is set to be successfully selected by the ANR. Start the timer TANR, go to step 64;
  • Step 65 Execute to configure a dedicated DRX process
  • Step 66 Determine whether the UE is suitable for configuring the DRX parameter based on the service. Since the DRX switch of the cell is turned on, the DRX parameter needs to be reconfigured.
  • the ANR user equipment management apparatus and the UE selection module of the ANR user equipment management apparatus, the DRX configuration module, and the judgment submodule, the configuration submodule, the status identifier setting submodule, and the timer in the DRX configuration module are provided in the embodiment of the present invention.
  • the sub-module can be implemented by a processor in the base station, and can also be implemented by a specific logic circuit.
  • the processor can be a central processing unit (CPU). (MPU, Micro Processor Unit), Digital Signal Processor (DSP) or Field-Programmable Gate Array (FPGA).
  • the above description is only a preferred embodiment of the present invention, and is not intended to limit the scope of the patent protection of the present invention.
  • the equivalent structure or equivalent flow transformation made by the description of the present invention and the contents of the drawings may be directly or indirectly applied to other related
  • the technical field is equally included in the scope of patent protection of the present invention.
  • the UE selected by the ANR function performs the specially configured DRX parameters, thereby affecting the least UE, and affecting the shortest time of the UE, thereby improving the success rate of the ANR measurement without affecting the overall user experience of the cell, and does not affect the KPI indicator; Ground,
  • the embodiment of the present invention can also adjust the DRX parameter according to the service of the UE in time, and reduce the QoS impact of the UE performing the ANR function to a minimum.

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Abstract

摘要本发明公开了一种ANR任务执行方法、系统及ANR用户设备管理方法、装置,在ANR功能开启时,为开启的ANR功能选择相应的用户设备,然后为所选中的用户设备配置与该ANR功能匹配的不连续接收配置;即本发明对ANR功能选中的UE进行专门配置匹配的DRX参数,而不需要在整个小区中配置了Long DRX的UE中去查找符合要求的UE,因此可提高ANR任务执行的效率以及成功率;同时,本发明只需要对ANR功能选中的UE进行专门配置,而不是改变整个小区中的所有UE的配置,因此可大大降低对小区的KPI的影响,提高小区整体用户体验的满意度。

Description

ANR任务执行方法、 系统及 A R用户设备管理方法、 装置 技术领域
本发明涉及通信领域, 具体涉及一种自动邻区关系 (ANR, Automatic Neighbor Relation )任务执行方法、 系统及一种 ANR用户设备管理方法、 装置。 背景技术
在 3GPP 的长期演进项目系统中, 在无线资源控制 ( RRC, Radio Resource Control ) 连接态下引入了不连续接收 ( DRX, Discontinuous Reception )。 DRX是指终端非连续接收下行调度和下行数据, 在不需要接 收下行数据的时候, 终端可以处于休眠(sleep )状态, 终端的射频单元甚 至其他处理单元都可以不工作, 从而达到省电的目的。
ANR是自优化网络 ( SON, Self-Organizing Networks )功能的关键技 术之一, 可以实现邻区关系的自配置和自优化, 从而緩解网络规划和网络 优化人员的工作强度, 进而降低建网投入和运营成本。 现有技术规定能进 行 ANR测量的 UE必须具备 Long DRX能力, 且只能在 UE配置了 DRX, 在 DRX的 sleep状态进行 ANR测量,由于目前标准化的 9种业务类型标识 ( QCI, QoS Class Identifier ) 的时延要求最大为 300ms, 而系统间的 ANR 要求 DRX周期的配置在 1000ms以上, 才能完成测量到异系统邻区的全球 小区标识(CGI, Cell Global Identifier )的要求, 如果按照这种条件去寻找 可能找不到符合条件的用户设备(UE, User Equipment ), 且查找符合条件 的 UE需花费较长的时间,执行效率以及成功率都较低。 而如果将给小区中 的所有 UE配置的 DRX周期配置为 1000ms以上,则 UE的服务质量( QoS, Quality of Service )感受不好, 会影响小区的关键绩效指标法 (KPI, Key Performance Indicator )指标。 发明内容
本发明实施例要解决的主要技术问题是,提供一种 ANR任务执行方法、 系统及 ANR用户设备管理方法、 装置, 解决现有 ANR任务执行效率及成 功率低, 以及小区整体用户体验满意度低的问题。
为解决上述技术问题, 本发明实施例提供一种 ANR任务执行方法, 包 括: ANR功能开启时, 选择相应的用户设备; 为所述用户设备配置与所述 ANR 功能匹配的不连续接收配置; 基于所述不连续接收配置执行对应的 ANR任务。
在本发明的一种实施例中, 所述为所述用户设备配置与所述 ANR功能 匹配的不连续接收配置, 包括: 若所述 ANR功能为系统内 ANR功能, 则 为所述用户设备配置支持系统内 ANR功能的不连续接收参数;若所述 ANR 功能为系统间 ANR功能, 为所述用户设备配置支持系统间 ANR功能的不 连续接收参数。
在本发明的一种实施例中, 所述为所述用户设备配置与所述 ANR功能 匹配的不连续接收配置, 还包括: 在为所述用户设备配置好支持所述 ANR 功能的不连续接收参数后,还包括将所述用户设备设置为被 ANR功能选中 的状态。
在本发明的一种实施例中, 所述为所述用户设备配置与所述 ANR功能 匹配的不连续接收配置, 还包括: 在为所述用户设备配置好支持所述 ANR 功能的不连续接收参数后, 还包括对应所述 ANR任务启动相应的定时器。
在本发明的一种实施例中, 所述基于所述不连续接收配置执行对应的 ANR任务, 包括: 判断所述 ANR任务是否执行完毕或所述定时器是否超 时, 如是, 则对所述用户设备进行去不连续接收配置操作。
在本发明的一种实施例中, 所述基于所述不连续接收配置执行对应的 ANR任务,还包括: 判断所述用户设备是否发起释放不连续接收配置请求, 如是, 则对所述用户设备进行释放不连续接收配置操作; 或判断所述用户 设备是否发起修改不连续接收配置请求, 如是, 则判断所述用户设备是否 适合基于业务配置不连续接收配置, 如适合, 则对所述用户设备重新配置 不连续接收配置, 如不合适, 则释放不连续接收配置。
为了解决上述技术问题,本发明实施例还提供了一种 ANR用户设备管 理方法, 包括: ANR功能开启时, 选择相应的用户设备; 为所述用户设备 配置与所述 ANR功能匹配的不连续接收配置。
在本发明的一种实施例中, 所述为所述用户设备配置与所述 ANR功能 匹配的不连续接收配置, 包括: 若所述 ANR功能为系统内 ANR功能, 则 为所述用户设备配置支持系统内 ANR功能的不连续接收参数;若所述 ANR 功能为系统间 ANR功能, 则为所述用户设备配置支持系统间 ANR功能的 不连续接收参数。
在本发明的一种实施例中, 所述为所述用户设备配置与所述 ANR功能 匹配的不连续接收配置, 还包括: 在所述为所述用户设备配置好支持所述 ANR功能的不连续接收参数后, 还包括将所述用户设备设置为被 ANR功 能选中的状态。
在本发明的一种实施例中, 所述为所述用户设备配置与所述 ANR功能 匹配的不连续接收配置, 还包括: 在所述为所述用户设备配置好支持所述 ANR功能的不连续接收参数后, 还包括对应所述 ANR任务启动相应的定 时器。
在本发明的一种实施例中,在所述为所述用户设备配置与所述 ANR功 能匹配的不连续接收配置后, 还包括: 判断所述 ANR任务是否执行完毕或 所述定时器是否超时, 如是, 则对所述用户设备进行去不连续接收配置操 作。 为了解决上述问题,本发明实施例还提供了一种 ANR用户设备管理装 置, 包括: 用户设备选择模块, 配置为在 ANR功能开启时, 选择相应的用 户设备; 不连续接收配置模块, 配置为为所述用户设备选择模块所选中的 用户设备配置与所述 ANR功能匹配的不连续接收配置。
在本发明的一种实施例中, 所述不连续接收配置模块包括判断子模块 和配置子模块; 其中, 所述判断子模块, 配置为判断所述 ANR功能是系统 内 ANR功能还是系统间 ANR功能,并将判断结果发送给所述配置子模块; 所述配置子模块, 配置为在所述判断结果为系统内 ANR功能时, 为所述用 户设备配置支持系统内 ANR功能的不连续接收参数; 以及配置为在所述判 断结果为系统间 ANR功能时, 为所述用户设备配置支持系统间 ANR功能 的不连续接收参数。
在本发明的一种实施例中, 所述不连续接收配置模块还包括定时器启 动子模块; 所述定时器启动子模块, 配置为在所述配置子模块为所述用户 设备配置好支持所述 ANR功能的不连续接收参数后, 启动对应所述 ANR 任务的定时器。
为了解决上述技术问题,本发明实施例还提供了一种 ANR任务执行系 统, 包括 ANR用户设备管理装置和至少一个用户设备; 所述 ANR用户设 备管理装置包括用户设备选择模块和不连续接收配置模块; 其中, 所述用 户设备选择模块, 配置为在 ANR功能开启时, 从所述至少一个用户设备中 选择相应的用户设备; 所述不连续接收配置模块, 配置为为所述用户设备 选择模块所选中的用户设备配置与所述 ANR功能匹配的不连续接收配置; 被所述用户设备选择模块选中的用户设备, 配置为基于所述不连续接收配 置执行对应的 ANR任务。
本发明实施例的有益效果是:
本发明实施例提供的 ANR任务执行方法、 系统及 ANR用户设备管理 方法、 装置, 在 ANR功能开启时, 为开启的 ANR功能选择相应的用户设 备, 然后为所选中的用户设备配置与该 ANR功能匹配的不连续接收 DRX 配置; 即本发明实施例对 ANR功能选中的 UE进行专门配置匹配的 DRX 参数,而不需要在整个小区的 UE中去查找符合要求的 UE,因此可提高 ANR 任务执行的效率以及成功率; 同时, 本发明实施例只需要对 ANR功能选中 的 UE进行专门配置, 而不是改变整个小区中的所有 UE的配置, 因此可大 大降低对小区的 KPI的影响, 提高小区整体用户体验的满意度。 附图说明
图 1为本发明实施例一中 ANR用户设备管理装置的结构示意图; 图 2为图 1中不连续接收配置模块的结构示意图;
图 3为本发明实施例一中执行 ANR任务的流程示意图;
图 4为图 3中为 UE配置 DRX配置的流程示意图;
图 5为图 3中执行 ANR任务的流程示意图;
图 6为本发明实施例一中根据释放不连续接收配置请求释放 DRX参数 的流程示意图;
图 7为本发明实施例一中根据修改不连续接收配置请求配置 DRX参数 的流程示意图;
图 8为本发明实施例一中另一执行 ANR任务的流程示意图。 具体实施方式
实施例一:
请参见图 1所示,本实施例作为示例提供的 ANR用户设备管理装置包 括: 用户设备选择模块 11 (即 UE选择模块 )和不连续接收配置模块 12 (即 DRX配置模块), 其中:
UE选择模块 11, 配置为在 ANR功能开启时, 选择相应的 UE; DRX配置模 12,配置为为 UE选择模块所选中的 UE配置与所述 ANR 功能匹配的 DRX配置。
这里, 所述 DRX配置模块可以是无线资源控制(RRC, Radio Resource Control )模块。
可见, 本实施例中对 ANR功能选中的 UE进行专门配置匹配的 DRX 参数, 不需要在整个小区的 UE中去查找符合 DRX要求的 UE, 因此可提 高 ANR任务执行的效率以及成功率; 同时, 由于只需要对 ANR功能选中 的 UE进行专门配置, 而不是改变整个小区中的所有 UE的配置, 因此可大 大降低对小区的 KPI的影响, 提高小区整体用户体验的满意度。
本实施例中, UE选择模块选择相应 UE的规则可根据实际情况进行设 置,例如:当开启的 ANR功能为系统内 ANR功能或者系统间 ANR功能时, UE选择模块可按以下原则选择 UE:
( 1 ) UE当前只有不保证速率 (NGBR, Non-Guaranteed Bit Rate )业 务;
( 2 ) UE当前状态为小区边缘用户 ( CEU, Cell Edge User )状态, 即 UE触发 A3-Enter事件,其中, A3-Enter事件可与小区间干扰消除技术( ICIC, Inter-Cell Interference Coordination )的中心区域 /边缘区域判决的测量共用一 套 A3测量控制;
( 3 ) UE当前处于控制面稳态;
( 4 ) UE具备 Long DRX能力和 ANR测量能力。
UE选择模块将选择的结果发送给 DRX配置模块, DRX配置模块则对 被选中的 UE对应相应的 ANR功能类型配置相应的 DRX配置。请参见图 2, 本实施例中的 DRX配置模块 12包括判断子模块 121和配置子模块 122,其 中:
判断子模块 121, 配置为判断开启的 ANR功能是系统内 ANR功能还 是系统间 ANR功能, 并将判断结果发送给配置子模块;
配置子模块 122, 配置为在接收到的判断结果为系统内 ANR功能时, 为选中的 UE配置支持系统内 ANR功能的不连续接收参数; 在接收到的判 断结果为系统间 ANR功能时, 为选中的 UE配置支持系统间 ANR功能的 不连续接收参数。
在本实施例中, DRX配置模块还包括定时器启动子模块以及状态标识 设置子模块, 其中:
定时器启动子模块,配置为在配置子模块为选中的 UE配置好支持 ANR 功能的 DRX参数后,启动对应该 ANR任务的定时器;例如,当开启的 ANR 功能为系统内 ANR功能时,则启动对应于系统内的定时器; 当开启的 ANR 功能为系统间 ANR功能时, 则启动对应于系统内的定时器。
状态标识设置子模块, 配置为在配置子模块为选中的 UE 配置好支持 ANR功能的不连续接收参数后, 将该 UE设置为被 ANR功能选中的状态。
经上述配置后, 被 UE选择模块选中的 UE基于上述 DRX配置执行对 应的 ANR任务。
优选地,本实施例中的 ANR用户设备管理装置还可进一步包括去不连 时, 如是, 则对该 UE进行去 DRX配置操作。
为了更好的理解本发明的技术方案, 下面结合 ANR任务执行的具体流 程对本发明的技术方案做进一步地说明, 请参见图 3, 其包括:
步骤 301 : ANR功能开启时, 选择相应的 UE;
步骤 302: 为选择的 UE配置与所述 ANR功能匹配的 DRX配置; 步骤 303: 基于所述 DRX配置执行对应的 ANR任务。
其中, 步骤 301中选择 UE的原则可采用上述原则。
步骤 302为选择的 UE配置与所述 ANR功能匹配的 DRX配置, 请参 见图 4, 具体可如下:
步骤 401:判断 UE被系统内 ANR功能选中还是被系统间 ANR功能选 中, 如果被系统内 ANR功能选中则转至步骤 402, 如被系统间 ANR功能 选中则转至步骤 403 ;
步骤 402: 取支持系统内 ANR功能的 DRX参数, 定时器选取对应系 统内的定时器: TANR= TANRintra, 转至步骤 404;
步骤 403: 取支持系统间 ANR功能的 DRX参数, 定时器选取对应系 统间的定时器: TANR= TANRinter, 转至步骤 404;
步骤 404: 根据选择的 DRX参数对选中的 UE进行配置, 同时将 UE 的状态置为被 ANR选中, 启动定时器 TANR。
在上述步骤 303中, 基于配置好的 DRX参数执行对应的 ANR任务的 过程请参见图 5, 具体包括:
步骤 501 : 判断 ANR任务是否执行完毕或定时器 TANR是否超时, 如 是, 转至步骤 502; 否则, 转至步骤 503 ;
步骤 502: 对 UE进行去不连续接收配置操作。
步骤 503: UE继续执行 ANR任务。
同时, 为了进一步达到在执行 ANR任务过程中, 降低对执行该任务的 UE的 QoS影响, 在上述步骤 303中, 请参见图 6和图 7, 还可包括以下步 骤:
请参见图 6:
步骤 601 : 在基于配置好的 DRX参数执行对应的 ANR任务的过程中, 判断 UE是否发起释放不连续接收配置请求,如是, 则转至步骤 602; 否则, 转至步骤 603 ;
步骤 602: 释放 UE的 DRX参数;
步骤 603: UE继续执行 ANR任务。 请参见图 7:
步骤 701 : 在基于配置好的 DRX参数执行对应的 ANR任务的过程中, 判断 UE是否发起修改不连续接收配置请求,如是, 则转至步骤 702; 否则, 转至步骤 706;
步骤 702: 对 UE进行去 DRX参数操作;
步骤 703 : 判断所述用户设备是否适合基于业务配置 DRX参数, 如适 合, 转至步骤 704; 否则, 转至步骤 705;
步骤 704: 对 UE重新配置不连续接收配置。
步骤 705: 释放 UE的 DRX参数。
步骤 706: UE继续执行 ANR任务。 直接执行上述步骤 702至 705的步骤。
上述 ANR任务执行的总体流程图如图 8所示:
步骤 801:判断 UE被系统内 ANR功能选中还是被系统间 ANR功能选 中, 如果被系统内 ANR功能选中则转至步骤 802, 如被系统间 ANR功能 选中则转至步骤 803 ;
步骤 802: 取支持系统内 ANR功能的 DRX参数, 定时器选取对应系 统内的定时器: TANR= TANRintra, 转至步骤 804;
步骤 803: 取支持系统间 ANR功能的 DRX参数, 定时器选取对应系 统间的定时器: TANR= TANRinter, 转至步骤 804;
步骤 804: 根据选择的 DRX参数对选中的 UE进行配置, 同时将 UE 的状态置为被 ANR选中, 启动定时器 TANR;
步骤 805: 在基于配置好的 DRX参数执行对应的 ANR任务的过程中, 即 TANR未超时时, 判断 UE是否发起修改不连续接收配置请求, 如是, 则转至步骤 806; 否则, 转至步骤 810; 步骤 806: 对 UE进行去 DRX参数操作;
步骤 807: 判断所述用户设备是否适合基于业务配置不连续接收配置, 如适合, 转至步骤 808; 否则, 转至步骤 809;
步骤 808: 对 UE重新配置 DRX配置。
步骤 809: 释放 UE的 DRX参数。
步骤 810: 等待 UE完成 ANR任务或 TANR超时, 转至步骤 806。 可见, 本实施例对 ANR功能选中的 UE进行专门配置的 DRX参数, 影响最少的 UE, 且影响 UE最短时间, 即提高 ANR测量的成功率, 又不 影响小区整体用户的感受, 同时不影响 KPI指标; 进一步地, 还可依据 UE 的业务及时调整 DRX参数, 对执行 ANR功能的 UE的 QoS影响降低到最 低。
为了更好地理解本发明的技术方案,下面结合几个具体的 UE选择过程 以及执行 ANR的过程为例进行说明。 实施例二:
LTE小区中, 打开异系统(即系统间) ANR开关, 设置 A3-Enter事件 的门限为 -3dB, TANRinter为 3s。
此时有某 UE代号 B上报 A3-Enter事件, 经过 UE选择模块判定: 代 号为 B的 UE当前只有 QCI = 9的默认承载业务, 即只有 NGBR业务; 同 时, 由于上报 A3-Enter事件, 说明 UE处于小区边缘, 进入 CEU状态; 当 前 UE未触发切换流程等, 处于控制面稳态; 同时 UE能力具备 Long DRX 和 ANR测量能力; 因此, 此代号为 B的 UE被选作专门用于 ANR测量的 UE, 给此 UE打上标签被系统间 ANR功能选中, 输入到 DRX配置模块, 该 DRX配置模块可为 RRC模块, 具体如下:
步骤 21 : 判断代号为 B的 UE被系统间 ANR功能选中, 转至步骤 22; 步骤 22: 取支持系统间 ANR的 DRX参数, DRX周期设置为 1280ms, 定时器选取系统间的, TANR= TANRinter=3 s, 转至步骤 23;
步骤 23 : RRC模块配置 DRX参数, 同时 UE状态被置为成功被 ANR 选中, 启动定时器 TANR, 转至步骤 24;
步骤 24: 在定时器 TANR计时 Is钟时, UE完成 ANR任务, 全球小 区识别码( CGI, Cell Global Identifier )上报该 UE执行完 ANR任务, 执行 去配置专门 DRX参数过程, 转至步骤 25;
步骤 25:判定 UE是否适合基于业务配置 DRX参数,由于小区的 DRX 开关未打开, 所以不配置 DRX参数, 转至步骤 26;
步骤 26: UE不适合基于业务配置 DRX参数, 即 DRX功能模块不会 输出 DRX参数, 则释放 DRX参数。 实施例三:
LTE 小区中, 打开系统内 ANR开关, 设置 A3-Enter事件的门限为 -3dB, TANRinter为 ls。
此时有某 UE代号 C上报 A3-Enter事件, 经过 UE选择模块判定: 代 号为 C的 UE当前只有 QCI = 9的默认承载业务, 即只有 NGBR业务; 同 时, 由于上报 A3-Enter事件, 说明 UE处于小区边缘, 进入 CEU状态; 当 前 UE未触发切换流程等, 处于控制面稳态; 同时查看 UE能力具备 Long DRX和 ANR测量能力; 因此, 此代号为 C的 UE被选作专门用于 ANR测 量的 UE, 给此 UE打上标签被系统内 ANR选中, 输入到 DRX配置模块, 具体如下:
步骤 31 : 判断代号为 C的 UE被系统内 ANR功能选中, 转至步骤 32; 步骤 32: 取支持系统内 ANR的 DRX参数, DRX周期设置为 320ms, 定时器选取系统内的, TANR= TANRintra=ls, 转至步骤 33;
步骤 33: RRC配置 DRX参数,同时 UE状态被置为成功被 ANR选中, 启动定时器 TANR,转至步骤 34; 步骤 34:在定时器 TANR计时到 0.5s钟时, UE完成 ANR功能, 系统 内 CGI该 UE执行完 ANR任务, 执行去配置专门 DRX参数过程, 转至步 骤 35;
步骤 35:判定 UE是否适合基于业务配置 DRX参数,由于小区的 DRX 开关未打开, 所以不配置 DRX参数, 转至步骤 36;
步骤 36: UE不适合基于业务配置 DRX参数, 即 DRX功能模块不会 输出 DRX参数, 则释放 DRX参数。 实施例四:
LTE小区中,打开系统内 ANR开关,设置 A3-Enter事件的门限为 -3dB, TANRinter为 ls。
此时有某 UE代号 D上报 A3-Enter事件, 经过 UE选择模块判定: 代 号为 D的 UE当前有 QCI = 9和 QCI=6的 NGBR承载业务, 即只有 NGBR 业务; 同时, 由于上报 A3-Enter事件, 说明 UE处于小区边缘, 进入 CEU 状态; 目前 UE未触发切换流程等, 处于控制面稳态; 同时查看 UE能力具 备 Long DRX和 ANR测量能力; 因此, 此代号为 D的 UE被选作专门用于 ANR测量的 UE, 给此 UE打上标签被系统内 ANR选中, 输入到 DRX配 置模块, 具体如下:
步骤 41 : 判断代号为 B的 UE被系统内 ANR功能选中, 转至步骤 42; 步骤 42: 取支持系统内 ANR的 DRX参数, DRX周期设置为 320ms, 定时器选取系统内的, TANR= TANRintra= 1 s, 转至步骤 43;
步骤 43: RRC配置 DRX参数,同时 UE状态被置为成功被 ANR选中, 启动定时器 TANR, 转至步骤 44;
步骤 44: 在定时器 TANR计时到 0.5s钟时, UE发起建立 QCI=1的语 音业务, 判定必须去除 DRX参数, 否则会影响 UE的 QoS;
步骤 45: 对 UE执行去配置专门的 DRX过程; 步骤 46:判定 UE是否适合基于业务配置 DRX参数,由于小区的 DRX 开关未打开, 所以不配置 DRX参数, 转至步骤 47;
步骤 47: UE不适合基于业务配置 DRX参数, 即 DRX功能模块不会 输出 DRX参数, 则释放 DRX参数。 实施例五:
LTE 小区中, 打开系统内 ANR开关, 设置 A3-Enter事件的门限为 -3dB, TANRinter为 ls。
此时有某 UE代号 E上报 A3-Enter事件, 经过 UE选择模块判定: 代 号为 E的 UE当前有 QCI = 9和 QCI=1的承载业务, QCI=1的业务为 GBR 业务, 不满足条件 a ), 所以不能被 ANR功能选中。 实施例六:
LTE小区中,打开系统内 ANR开关,设置 A3-Enter事件的门限为 -3dB, TANRinter为 ls。
此时有某 UE代号 F上报 A3-Enter事件, 经过 UE选择模块判定: 代 号为 F的 UE当前有 QCI = 9和 QCI=6的 NGBR承载业务, 即只有 NGBR 业务; 同时, 由于上报 A3-Enter事件, 说明 UE处于小区边缘, 进入 CEU 状态; 目前 UE未触发切换流程等, 处于控制面稳态; 同时查看 UE能力具 备 Long DRX和 ANR测量能力; 因此, 此代号为 F的 UE被选作专门用于 ANR测量的 UE, 给此 UE打上标签被系统内 ANR选中, 输入到 DRX配 置模块, 具体如下:
步骤 61 : 判断代号为 F的 UE被系统内 ANR功能选中, 转至步骤 62; 步骤 62 取支持系统内 ANR的 DRX参数, DRX周期设置为 320ms, 定时器选取系统内的, TANR= TANRintra= 1 s, 转至步骤 63;
步骤 63: RRC配置 DRX参数,同时 UE状态被置为成功被 ANR选中, 启动定时器 TANR, 转至步骤 64;
步骤 64: 在定时器 TANR计时到 0.5s钟时, UE发起建立 QCI=1的语 音业务, 判定必须去除专门 DRX参数, 否则会影响 UE的 QoS; 转至步骤 65;
步骤 65: 执行去配置专门的 DRX过程;
步骤 66:判定 UE是否适合基于业务配置 DRX参数,由于小区的 DRX 开关打开, 所以需重配置 DRX参数。
本发明实施例中提出的 ANR用户设备管理装置, 以及 ANR用户设备 管理装置的 UE选择模块、 DRX配置模块, 以及 DRX配置模块中的判断子 模块、 配置子模块、 状态标识设置子模块和定时器启动子模块, 都可以通 过基站中的处理器来实现, 当然也可通过具体的逻辑电路实现; 比如, 在 实际应用中,所述处理器可以为中央处理器(CPU, Central Processing Unit ), 处理器( MPU, Micro Processor Unit )、数字信号处理器( DSP, Digital Signal Processor )或现场可编程门阵列 ( FPGA, Field - Programmable Gate Array ) 等。
以上所述仅为本发明的优选实施例, 并非因此限制本发明的专利保护 范围, 凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换, 或直接或间接运用在其他相关的技术领域, 均同理包括在本发明的专利保 护范围。 工业实用性 本发明实施例当自动邻区关系 ANR功能开启时,选择相应的用户设备; 然后为所述用户设备配置与所述 ANR功能匹配的不连续接收配置; 可见, 本发明实施例能够对 ANR功能选中的 UE进行专门配置的 DRX参数, 从 而影响最少的 UE, 并且影响 UE时间的最短, 进而提高了 ANR测量的成 功率, 又不影响小区整体用户的感受, 同时不影响 KPI指标; 进一步地, 本发明实施例还可依据 UE的业务及时调整 DRX参数, 对执行 ANR功能 的 UE的 QoS影响降低到最低。

Claims

权利要求书
1、 一种 ANR任务执行方法, 包括:
自动邻区关系 ANR功能开启时, 选择相应的用户设备;
为所述用户设备配置与所述 ANR功能匹配的不连续接收配置; 基于所述不连续接收配置执行对应的 ANR任务。
2、 如权利要求 1所述的 ANR任务执行方法, 其中, 所述为所述用户 设备配置与所述 ANR功能匹配的不连续接收配置, 包括:
若所述 ANR功能为系统内 ANR功能, 则为所述用户设备配置支持系 统内 ANR功能的不连续接收参数;
若所述 ANR功能为系统间 ANR功能, 则为所述用户设备配置支持系 统间 ANR功能的不连续接收参数。
3、 如权利要求 2所述的 ANR任务执行方法, 其中, 所述为所述用户 设备配置与所述 ANR功能匹配的不连续接收配置, 还包括:
在为所述用户设备配置好支持所述 ANR功能的不连续接收参数后,还 包括将所述用户设备设置为被 ANR功能选中的状态。
4、 如权利要求 2所述的 ANR任务执行方法, 其中, 所述为所述用户 设备配置与所述 ANR功能匹配的不连续接收配置, 还包括:
在为所述用户设备配置好支持所述 ANR功能的不连续接收参数后,还 包括对应所述 ANR任务启动相应的定时器。
5、 如权利要求 1至 4任一项所述的 ANR任务执行方法, 其中, 所述 基于所述不连续接收配置执行对应的 ANR任务, 包括: 所述用户设备进行去不连续接收配置操作。
6、 如权利要求 5所述的 ANR任务执行方法, 其中, 所述基于所述不 连续接收配置执行对应的 ANR任务, 还包括: 判断所述用户设备是否发起释放不连续接收配置请求, 如是, 则对所 述用户设备进行释放不连续接收配置操作; 或判断所述用户设备是否发起 修改不连续接收配置请求, 如是, 则判断所述用户设备是否适合基于业务 配置不连续接收配置, 如适合, 则对所述用户设备重新配置不连续接收配 置, 如不合适, 则释放不连续接收配置。
7、 一种 ANR用户设备管理方法, 包括:
自动邻区关系 ANR功能开启时, 选择相应的用户设备;
为所述用户设备配置与所述 ANR功能匹配的不连续接收配置。
8、 如权利要求 7所述的 ANR用户设备管理方法, 其中, 所述为所述 用户设备配置与所述 ANR功能匹配的不连续接收配置, 包括:
若所述 ANR功能为系统内 ANR功能, 则为所述用户设备配置支持系 统内 ANR功能的不连续接收参数;
若所述 ANR功能为系统间 ANR功能, 则为所述用户设备配置支持系 统间 ANR功能的不连续接收参数。
9、 如权利要求 8所述的 ANR用户设备管理方法, 其中, 所述为所述 用户设备配置与所述 ANR功能匹配的不连续接收配置, 还包括:
在所述为所述用户设备配置好支持所述 ANR 功能的不连续接收参数 后, 还包括将所述用户设备设置为被 ANR功能选中的状态。
10、 如权利要求 8所述的 ANR用户设备管理方法, 其中, 所述为所述 用户设备配置与所述 ANR功能匹配的不连续接收配置, 还包括:
在所述为所述用户设备配置好支持所述 ANR 功能的不连续接收参数 后, 还包括对应所述 ANR任务启动相应的定时器。
11、 如权利要求 10所述的 ANR用户设备管理方法, 其中, 在所述为 所述用户设备配置与所述 ANR功能匹配的不连续接收配置后,所述方法还 包括: 所述用户设备进行去不连续接收配置操作。
12、 一种 ANR用户设备管理装置, 包括:
用户设备选择模块, 配置为在自动邻区关系 ANR功能开启时, 选择相 应的用户设备;
不连续接收配置模块, 配置为为所述用户设备选择模块所选中的用户 设备配置与所述 ANR功能匹配的不连续接收配置。
13、 如权利要求 12所述的 ANR用户设备管理装置, 其中, 所述不连 续接收配置模块包括判断子模块和配置子模块, 其中,
所述判断子模块, 配置为判断所述 ANR功能是系统内 ANR功能还是 系统间 ANR功能, 并将判断结果发送给所述配置子模块;
所述配置子模块, 配置为在所述判断结果为系统内 ANR功能时, 为所 述用户设备配置支持系统内 ANR功能的不连续接收参数; 以及配置为在所 述判断结果为系统间 ANR功能时, 为所述用户设备配置支持系统间 ANR 功能的不连续接收参数。
14、 如权利要求 13所述的 ANR用户设备管理装置, 其中, 所述不连 续接收配置模块还包括定时器启动子模块;
所述定时器启动子模块, 配置为在所述配置子模块为所述用户设备配 置好支持所述 ANR功能的不连续接收参数后, 启动对应所述 ANR任务的 定时器。
15、 一种 ANR任务执行系统, 包括 ANR用户设备管理装置和至少一 个用户设备; 所述 ANR用户设备管理装置包括用户设备选择模块和不连续 接收配置模块; 其中,
所述用户设备选择模块, 配置为在 ANR功能开启时, 从所述至少一个 用户设备中选择相应的用户设备; 所述不连续接收配置模块, 配置为为所述用户设备选择模块所选中的 用户设备配置与所述 ANR功能匹配的不连续接收配置;
被所述用户设备选择模块选中的用户设备, 配置为基于所述不连续接 收配置执行对应的 ANR任务。
PCT/CN2013/084980 2012-12-13 2013-10-10 Anr任务执行方法、系统及anr用户设备管理方法、装置 WO2014090030A1 (zh)

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