WO2016197479A1 - 小区核资源管理方法及装置 - Google Patents

小区核资源管理方法及装置 Download PDF

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Publication number
WO2016197479A1
WO2016197479A1 PCT/CN2015/090013 CN2015090013W WO2016197479A1 WO 2016197479 A1 WO2016197479 A1 WO 2016197479A1 CN 2015090013 W CN2015090013 W CN 2015090013W WO 2016197479 A1 WO2016197479 A1 WO 2016197479A1
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cell
topology map
core resource
configuration index
location information
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PCT/CN2015/090013
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English (en)
French (fr)
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宋君
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中兴通讯股份有限公司
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Publication of WO2016197479A1 publication Critical patent/WO2016197479A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/16Central resource management; Negotiation of resources or communication parameters, e.g. negotiating bandwidth or QoS [Quality of Service]

Definitions

  • Embodiments of the present invention relate to, but are not limited to, the field of mobile communication technologies, and in particular, to a cell core resource management method and apparatus.
  • the base station needs to carry more and more users' needs, and more and more functions are required for the cells of the base station to cooperate with each other.
  • the core resource corresponding to the cell is fixed, that is, the software and hardware resources of the core chip of the baseband board occupied by the cell are fixed, and the efficiency of the mutually cooperating cells in cooperation with each other is affected, for example, the master of the super cell.
  • the working efficiency of the super cell is affected due to the inability to optimize the adjustment of the core resources corresponding to the primary cell and the secondary cell.
  • the embodiments of the present invention provide a method and a device for managing a cell core resource, which can solve the technical problem that the cell resource corresponding to the cell is fixed and affects the efficiency of the mutually cooperating cells in cooperation with each other.
  • the embodiment of the invention provides a cell core resource management method, which includes the following steps:
  • the core resource corresponding to the location information of the cell ID to be exchanged is set as the core resource corresponding to the cell ID to be exchanged.
  • the method before the step of modifying the cell distribution topology map and the topology map configuration index according to the exchange instruction, when the receiving the cell switching instruction, the method further includes:
  • Determining the cell distribution topology map and the state of the topology map configuration index is a modifiable state.
  • the method further includes:
  • the method further includes:
  • the method further includes:
  • the cell distribution topology map and the topology map configuration index are updated based on the cell deletion instruction.
  • the embodiment of the invention further provides a cell core resource management device, including:
  • a generating module configured to generate a cell distribution topology map and a topology map configuration index based on the cell identifier ID and the location information of the cell ID;
  • the modifying module is configured to: when receiving the cell switching instruction, modify the cell distribution topology map and the topology map configuration index according to the switching instruction;
  • a first acquiring module configured to acquire a cell ID to be exchanged and location information of the to-be-exchanged cell ID based on the modified cell distribution topology map or the topology map configuration index;
  • the first setting module is configured to set the core resource corresponding to the location information of the cell ID to be exchanged as the core resource corresponding to the cell ID to be exchanged.
  • the cell core resource management apparatus further includes:
  • the determining module is configured to determine that the cell distribution topology map and the state of the topology map configuration index are modifiable states.
  • the cell core resource management apparatus further includes:
  • a second acquiring module configured to acquire a new cell ID and location information corresponding to the newly created cell ID when detecting a newly created cell
  • the first update module is configured to update the cell distribution topology map and the topology map configuration index based on the acquired new cell ID and location information of the newly created cell ID.
  • the cell core resource management apparatus further includes:
  • a second update module configured to: when receiving the cell move instruction, update the cell distribution topology map and the topology map configuration index according to the cell move instruction;
  • a third acquiring module configured to acquire, according to the updated cell distribution topology map or the topology map configuration index, location information of the to-be-moved cell ID and the to-be-moved cell ID;
  • the second setting module is configured to set a core resource corresponding to the location information of the to-be-moved cell ID as a core resource of the to-be-moved cell.
  • the cell core resource management apparatus further includes:
  • the third update module is configured to update the cell distribution topology map and the topology map configuration index based on the cell deletion instruction when receiving the cell deletion instruction.
  • the embodiment of the invention further provides a computer readable storage medium storing program instructions, which can be implemented when the program instructions are executed.
  • the cell distribution topology map and the topology map configuration index are generated, and then when the cell exchange instruction is received, the cell distribution topology map and the topology map configuration index are modified according to the exchange instruction, and then based on the modified
  • the cell distribution topology map or the topology map configuration index acquires the location information of the cell ID to be exchanged and the cell ID to be exchanged, and finally sets the core resource corresponding to the location information of the cell ID to be exchanged to correspond to the cell ID to be exchanged.
  • the nuclear resource realizes the exchange of the core resources of the cell, so that the maintenance personnel can adjust the nuclear resources of the mutually cooperating cells, improve the working efficiency of the cooperative cells, and reduce the workload of the maintenance personnel.
  • FIG. 1 is a schematic flowchart of a cell core resource management method according to a first embodiment of the present invention
  • FIG. 2 is a schematic flowchart of a cell core resource management method according to a second embodiment of the present invention.
  • FIG. 3 is a schematic flowchart of a cell core resource management method according to a third embodiment of the present invention.
  • FIG. 4 is a schematic flowchart of a cell core resource management method according to a fourth embodiment of the present invention.
  • FIG. 5 is a schematic diagram of functional modules of a cell core resource management apparatus according to a fifth embodiment of the present invention.
  • FIG. 6 is a schematic diagram of functional blocks of a cell core resource management apparatus according to a sixth embodiment of the present invention.
  • FIG. 7 is a schematic diagram of functional modules of a cell core resource management apparatus according to a seventh embodiment of the present invention.
  • FIG. 8 is a schematic diagram of functional blocks of a cell core resource management apparatus according to an eighth embodiment of the present invention.
  • FIG. 9 is a schematic diagram of functional modules of a cell core resource management apparatus according to a ninth embodiment of the present invention.
  • FIG. 1 is a schematic flowchart diagram of a cell core resource management method according to a first embodiment of the present invention.
  • the cell resource management method includes:
  • Step S10 generating a cell score based on the cell ID (identification) and the location information of the cell ID.
  • Each baseband board of the base station includes a plurality of cores (core chips), one or more cells are distributed on each core, the cells on the baseband board are numbered and represented by a cell ID, and each cell ID is occupied by the baseband board.
  • the nuclear resources are numbered, the location information refers to the number of the nuclear resource, and the nuclear resource refers to the hardware and software resources corresponding to the core chip of the baseband board.
  • Generating a cell distribution topology map and a topology map configuration index based on the cell ID and the location information of the cell ID, where the cell distribution topology map is cell distribution information in the baseband board, and the topology map configuration index is a cell ID in the baseband board and the cell
  • the location information corresponding to the ID is shown in Table 1.
  • the cell distribution topology map and/or the topology map configuration index may be displayed, and the user (NodeB maintenance personnel) can be configured by displaying the cell distribution topology map and/or the topology map configuration index.
  • the cell ID and the location information of the cell ID are clearly and intuitively viewed, thereby determining whether management or modification of the location information of the cell ID is required.
  • Step S20 When receiving the cell exchange instruction, modify the cell distribution topology map and the topology map configuration index according to the exchange instruction.
  • the topology map configuration index is modified according to the cell exchange instruction, that is, the topology is modified according to the modified cell distribution topology.
  • the configuration index of the map is configured to modify the cell distribution topology map and the topology map configuration index according to the cell switching instruction when the cell exchange command is configured to modify the cell distribution topology map and the topology map configuration index.
  • the cell exchange instruction is triggered when the user (the maintenance personnel of the NodeB) sends an instruction to modify the cell distribution topology map and the topology map configuration index.
  • Step S30 Acquire, according to the modified cell distribution topology map or the topology map configuration index, location information of the cell ID to be exchanged and the cell ID to be exchanged;
  • the method further includes: determining whether the core resource corresponding to the location information of the cell ID to be exchanged meets the condition of the core resource of the cell to be exchanged, That is, the core resource corresponding to the location information of the cell ID to be exchanged can implement all the functions of the cell to be exchanged.
  • step S40 the core resource corresponding to the location information of the cell ID to be exchanged is set as the core resource corresponding to the cell ID to be exchanged.
  • the cell to be exchanged is a plurality of cells, thereby implementing multiple cell core resources. Exchange or redistribution.
  • the cell resource management method further includes:
  • step S100 it is determined that the cell distribution topology map and the state of the topology map configuration index are in a modifiable state.
  • Determining the cell distribution topology map and the cell ID in the topology map configuration index and the location information of the cell ID may be modified.
  • the cell distribution topology map and the topology map configuration index may be modified, and when the cell core resource control switch is closed, the cell distribution topology map is restricted.
  • modifying the topology map configuration index that is, determining that the cell distribution topology map and the topology map configuration index are in a modifiable state by determining that the cell core resource control switch is in an open state; of course, in other embodiments,
  • the sending status modification command modifies the status in the cell distribution topology map and the topology map configuration index to be repairable.
  • the state is changed, that is, the state in the current cell distribution topology map and the topology map configuration index is an unmodifiable state, and the sending state modification command sets the cell distribution topology map and the state in the topology map configuration index to a modifiable state.
  • the cell distribution topology map and the topology map configuration index are generated, and then when the cell exchange instruction is received, the cell distribution topology map and the topology map configuration index are modified according to the exchange instruction, and then based on the modified cell.
  • the distribution topology map or the topology map configuration index acquires the location information of the cell ID to be exchanged and the cell ID to be exchanged, and finally sets the core resource corresponding to the location information of the cell ID to be exchanged as the core corresponding to the cell ID to be exchanged.
  • the resource realizes the exchange of the core resources of the cell, so that the maintenance personnel can adjust the nuclear resources of the mutually cooperating cells, improve the working efficiency of the cooperative cells, and reduce the workload of the maintenance personnel.
  • FIG. 3 is a schematic flowchart diagram of a cell core resource management method according to a third embodiment of the present invention.
  • the cell core resource management method further includes:
  • Step S50 When detecting a newly created cell, acquire a new cell ID and location information corresponding to the newly created cell ID.
  • the new cell ID and the location information corresponding to the newly created cell ID are obtained.
  • Step S60 Update the cell distribution topology map and the topology map configuration index based on the acquired new cell ID and the location information of the newly created cell ID.
  • the map configuration index or the cell distribution topology map implements a real-time update of the cell distribution topology map and the topology map configuration index when the cell is successfully established.
  • the new cell ID and the location information corresponding to the newly-created cell ID are obtained, and then the cell is updated based on the acquired new cell ID and the location information of the newly-created cell ID.
  • the distribution topology map and the topology map configuration index enable real-time updating of the cell distribution topology map and the topology map configuration index when the newly created cell is successfully established, so that the cell distribution topology map and the topology map configuration index can comprehensively cover the cells in the baseband board.
  • FIG. 4 is a schematic flowchart diagram of a cell core resource management method according to a fourth embodiment of the present invention.
  • the cell core resource management method further includes:
  • Step S70 When receiving the cell move instruction, update the cell distribution topology map and the topology map configuration index according to the cell move instruction.
  • the cell distribution topology map is modified according to the cell movement instruction, that is, the cell distribution topology map is modified according to the modified topology map configuration index;
  • the topology map configuration index is modified according to the cell movement instruction, that is, the topology map configuration index is modified according to the modified cell distribution topology map; Modifying the cell distribution topology map and the topology map configuration index according to the exchange instruction when the cell movement instruction of the cell distribution topology map and the topology map configuration index is modified, where the user ( The NodeB maintenance personnel triggers the cell move instruction when sending an instruction to modify the cell distribution topology map and the topology map configuration index.
  • Step S80 Acquire location information of the to-be-moved cell ID and the to-be-moved cell ID based on the updated cell distribution topology map or the topology map configuration index.
  • Step S90 Set the core resource corresponding to the location information of the to-be-moved cell ID as the core resource of the to-be-moved cell.
  • the core resource corresponding to the location information of the to-be-moved cell ID is an idle core resource, and the idle core resource can be used to implement the All functions of the cell to be moved.
  • the cell core resource management method further includes: when receiving the cell deletion instruction, updating the cell distribution topology map and the topology map configuration index according to the cell deletion instruction.
  • the triggering mode of the cell deletion command is similar to the triggering mode of the cell switching command and the cell mobile command.
  • the cell topology map and the topology map configuration index are updated based on the cell deletion command, and are in the cell distribution topology map and the topology map configuration index.
  • the cell ID corresponding to the cell deletion command and the location information of the cell ID are deleted, and the deletion of the useless cell is implemented, so that the maintenance personnel can delete the useless cell according to the requirement.
  • the cell distribution topology map and the topology map configuration index are updated, and then the location information of the to-be-moved cell ID and the to-be-moved cell ID is obtained, and finally the to-be-moved
  • the core resource corresponding to the location information of the cell ID is set as the core resource of the cell to be mobile, and the reallocation of the core resource of the cell to be moved is realized, so that the maintenance personnel can reallocate and adjust the nuclear resources of the mutually coordinated cell according to the requirement, and improve The working efficiency of the communities that cooperate with each other.
  • FIG. 5 is a schematic diagram of functional modules of a cell core resource management apparatus according to a fifth embodiment of the present invention.
  • the cell core resource management apparatus includes:
  • the generating module 10 is configured to generate a cell distribution topology map and a topology map configuration index based on the cell ID and the location information of the cell ID;
  • Each baseband board of the base station includes a plurality of cores (core chips), one or more cells are distributed on each core, the cells on the baseband board are numbered and represented by a cell ID, and each cell ID is occupied by the baseband board.
  • the nuclear resources are numbered, the location information refers to the number of the nuclear resource, and the nuclear resource refers to the hardware and software resources corresponding to the core chip of the baseband board.
  • the generating module 10 is based on the cell ID and the cell ID
  • the location information generates a cell distribution topology map and a topology map configuration index, where the cell distribution topology map is cell distribution information in the baseband board, and the topology map configuration index is a cell ID in the baseband board and location information corresponding to the cell ID, such as a table. 1 is shown.
  • the modifying module 20 is configured to: when receiving the cell switching instruction, modify the cell distribution topology map and the topology map configuration index according to the switching instruction;
  • the first obtaining module 30 is configured to acquire, according to the modified cell distribution topology map or the topology map configuration index, location information of the cell ID to be exchanged and the cell ID to be exchanged;
  • the first obtaining module 30 obtains the cell ID to be exchanged and the location information of the to-be-exchanged cell ID in the modified cell distribution topology map or the topology map configuration index, where the presence in the cell distribution topology map or the topology map configuration index exists.
  • the cell in which the data is updated is the cell to be exchanged.
  • the first setting module 40 is configured to set the core resource corresponding to the location information of the cell ID to be exchanged as the core resource corresponding to the cell ID to be exchanged.
  • the first setting module 40 sets the core resource corresponding to the location information of the cell ID to be exchanged to the core resource corresponding to the cell ID to be exchanged, which is easy to understand.
  • the cell to be exchanged is a plurality of cells, thereby implementing more Exchange or redistribution between core resources of a cell.
  • the cell core resource management apparatus further includes:
  • the determining module 100 is configured to determine that the cell distribution topology map and the state of the topology map configuration index are modifiable states.
  • the determining module 100 determines that the cell distribution topology map and the cell ID in the topology map configuration index and the location information of the cell ID may be modified.
  • the cell distribution topology map and the topology map configuration index may be modified, and when the cell core resource control switch is closed, the cell distribution topology map is restricted.
  • the modification in the topology map configuration index that is, the determining module 100 determines that the cell distribution topology map and the topology map configuration index are in a modifiable state by determining that the cell core resource control switch is in an open state; of course, in other embodiments, The state of the cell distribution topology map and the topology map configuration index may also be sent by sending a state modification command.
  • the state is modified to a modifiable state, that is, the state in the current cell distribution topology map and the topology map configuration index is an unmodifiable state, and the sending state modification command sets the cell distribution topology map and the state in the topology map configuration index to a modifiable state.
  • the cell distribution topology map and the topology map configuration index are generated by the generating module 10, and then, when receiving the cell switching instruction, the modifying module 20 modifies the cell distribution topology map and the topology map configuration index according to the switching instruction.
  • the first obtaining module 30 obtains the location information of the cell ID to be exchanged and the cell ID to be exchanged based on the modified cell distribution topology map or the topology map configuration index, and finally the first setting module 40 sets the location of the cell ID to be exchanged.
  • the core resource corresponding to the information to be exchanged is set to the core resource corresponding to the cell ID to be exchanged, and the exchange of the cell core resources is implemented, so that the maintenance personnel can adjust the core resources of the mutually coordinated cells, improve the working efficiency of the mutually coordinated cells, and reduce The workload of maintenance personnel.
  • FIG. 7 is a schematic diagram of functional modules of a cell core resource management apparatus according to a seventh embodiment of the present invention.
  • the cell core resource management apparatus further includes:
  • the second obtaining module 50 is configured to acquire, when the newly created cell is detected, location information corresponding to the newly created cell ID and the newly created cell ID;
  • the first update module 60 is configured to update the cell distribution topology map and the topology map configuration index based on the acquired new cell ID and the location information of the newly created cell ID.
  • the first update module 60 updates the cell distribution topology map and the topology map configuration index based on the acquired new cell ID and the location information of the newly created cell ID, that is, the first update module 60 adds a new cell ID to the cell distribution topology map. And the location information of the newly created cell ID, and adding the new cell ID and the location information of the newly created cell ID in the topology map configuration index, or the first update module 60 adds a new one in the cell distribution topology map or the topology map configuration index. The cell ID and the location information of the newly created cell ID are updated, and then the topology map configuration index or the cell distribution topology map is updated, and the cell distribution topology map and the real-time update of the topology map configuration index when the cell is successfully established are implemented.
  • the second acquiring module 50 acquires the newly created cell. ID and the location information corresponding to the newly created cell ID, and then the first update module 60 updates the cell distribution topology map and the topology map configuration index based on the acquired new cell ID and the location information of the newly created cell ID, thereby realizing
  • the cell topology map and the topology map configuration index are updated in real time, so that the cell distribution topology map and the topology map configuration index can comprehensively cover the cells in the baseband board.
  • FIG. 8 is a schematic diagram of functional modules of a cell core resource management apparatus according to an eighth embodiment of the present invention.
  • the cell core resource management apparatus further includes:
  • the second update module 70 is configured to: when receiving the cell move instruction, update the cell distribution topology map and the topology map configuration index according to the cell move instruction;
  • the third obtaining module 80 is configured to acquire the location information of the to-be-moved cell ID and the to-be-moved cell ID based on the updated cell distribution topology map or the topology map configuration index;
  • the second setting module 90 is configured to set a core resource corresponding to the location information of the to-be-moved cell ID as a core resource of the to-be-moved cell.
  • the core resource corresponding to the location information of the to-be-moved cell ID is an idle core resource, and the idle core resource is used. Can be used to implement all the functions of the cell to be moved.
  • the cell core resource management apparatus further includes:
  • the third update module 110 is configured to update the cell distribution topology map and the topology map configuration index based on the cell deletion instruction when receiving the cell deletion instruction.
  • the third update module 110 updates the cell distribution topology map and the topology map configuration index based on the cell deletion instruction, and refers to deleting the cell ID corresponding to the cell deletion instruction and the location information of the cell ID in the cell distribution topology map and the topology map configuration index.
  • the deletion of the useless cell is realized, so that the maintenance personnel can delete the useless cell according to the requirement.
  • the second update module 70 updates the cell distribution topology map and the topology map configuration index
  • the third obtaining module 80 acquires the to-be-moved cell ID and the to-be-moved cell ID.
  • the second location setting module 90 sets the core resource corresponding to the location information of the to-be-moved cell ID as the core resource of the to-be-moved cell, realizing the reallocation of the nuclear resource of the cell to be moved, so that the maintenance personnel
  • the core resources of the mutually coordinated cells can be redistributed according to requirements, and the working efficiency of the mutually coordinated cells is improved.
  • the cell distribution topology map and the topology map configuration index are generated, and then when the cell exchange instruction is received, the cell distribution topology map and the topology map configuration index are modified according to the exchange instruction, and then based on the modified
  • the cell distribution topology map or the topology map configuration index acquires the location information of the cell ID to be exchanged and the cell ID to be exchanged, and finally sets the core resource corresponding to the location information of the cell ID to be exchanged to correspond to the cell ID to be exchanged.
  • the nuclear resource realizes the exchange of the core resources of the cell, so that the maintenance personnel can adjust the nuclear resources of the mutually cooperating cells, improve the working efficiency of the cooperative cells, and reduce the workload of the maintenance personnel.

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Abstract

本发明实施例公开了一种小区核资源管理方法及装置,包括:基于小区标识ID以及所述小区ID的位置信息生成小区分布拓扑图以及拓扑图配置索引;在接收到小区交换指令时,根据所述交换指令修改所述小区分布拓扑图和拓扑图配置索引;基于修改后的小区分布拓扑图或拓扑图配置索引获取待交换小区ID及所述待交换小区ID的位置信息;将所述待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源。

Description

小区核资源管理方法及装置 技术领域
本发明实施例涉及但不限于移动通信技术领域,尤其涉及一种小区核资源管理方法及装置。
背景技术
随着通信技术的快速发展,用户无线通讯需求的不断增加,基站需要承载越来越多的用户需求,需要基站的小区之间能相互协作的完成的功能越来越多。
相关技术中,小区在建立以后,小区对应的核资源已经固定,即小区占用的基带板的核芯片的软硬件资源固定,影响相互协作的小区在相互协作工作时的效率,譬如超级小区的主小区和辅小区分布在不同的芯片核上时,由于无法优化调整主小区和辅小区对应的核资源而导致影响超级小区的工作效率。
发明内容
以下是对本文详细描述的主题的概述。本概述并非是为了限制权利要求的保护范围。
本发明实施例提供一种小区核资源管理方法及装置,可以解决小区对应的核资源固定而影响相互协作的小区在相互协作工作时的效率的技术问题。
本发明实施例提供了一种小区核资源管理方法,包括以下步骤:
基于小区标识ID以及所述小区ID的位置信息生成小区分布拓扑图以及拓扑图配置索引;
在接收到小区交换指令时,根据所述交换指令修改所述小区分布拓扑图和拓扑图配置索引;
基于修改后的小区分布拓扑图或拓扑图配置索引获取待交换小区ID及所述待交换小区ID的位置信息;
将所述待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源。
可选地,在所述在接收到小区交换指令时,根据所述交换指令修改所述小区分布拓扑图和拓扑图配置索引的步骤之前,所述方法还包括:
确定所述小区分布拓扑图以及拓扑图配置索引的状态为可修改状态。
可选地,在所述将所述待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源的步骤之后,所述方法还包括:
在侦测到新建小区时,获取新建小区ID及所述新建小区ID对应的位置信息;
基于获取到的新建小区ID及所述新建小区ID的位置信息更新所述小区分布拓扑图以及拓扑图配置索引。
可选地,将所述待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源的步骤之后,所述方法还包括:
在接收到小区移动指令时,基于所述小区移动指令更新所述小区分布拓扑图和拓扑图配置索引;
基于更新后的小区分布拓扑图或拓扑图配置索引获取待移动小区ID及所述待移动小区ID的位置信息;
将所述待移动小区ID的位置信息对应的核资源设置为所述待移动小区的核资源。
可选地,在所述将所述待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源的步骤之后,所述方法还包括:
在接收到小区删除指令时,基于所述小区删除指令更新所述小区分布拓扑图和拓扑图配置索引。
本发明实施例还提供一种小区核资源管理装置,包括:
生成模块,设置为基于小区标识ID以及所述小区ID的位置信息生成小区分布拓扑图以及拓扑图配置索引;
修改模块,设置为在接收到小区交换指令时,根据所述交换指令修改所述小区分布拓扑图和拓扑图配置索引;
第一获取模块,设置为基于修改后的小区分布拓扑图或拓扑图配置索引获取待交换小区ID及所述待交换小区ID的位置信息;以及
第一设置模块,设置为将所述待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源。
可选地,所述小区核资源管理装置还包括:
确定模块,设置为确定所述小区分布拓扑图以及拓扑图配置索引的状态为可修改状态。
可选地,所述小区核资源管理装置还包括:
第二获取模块,设置为在侦测到新建小区时,获取新建小区ID及所述新建小区ID对应的位置信息;以及
第一更新模块,设置为基于获取到的新建小区ID及所述新建小区ID的位置信息更新所述小区分布拓扑图以及拓扑图配置索引。
可选地,所述小区核资源管理装置还包括:
第二更新模块,设置为在接收到小区移动指令时,基于所述小区移动指令更新所述小区分布拓扑图和拓扑图配置索引;
第三获取模块,设置为基于更新后的小区分布拓扑图或拓扑图配置索引获取待移动小区ID及所述待移动小区ID的位置信息;以及
第二设置模块,设置为将所述待移动小区ID的位置信息对应的核资源设置为所述待移动小区的核资源。
可选地,所述小区核资源管理装置还包括:
第三更新模块,设置为在在接收到小区删除指令时,基于所述小区删除指令更新所述小区分布拓扑图和拓扑图配置索引。
本发明实施例还提供一种计算机可读存储介质,存储有程序指令,当该程序指令被执行时可实现上述方法。
本发明实施例中,通过生成小区分布拓扑图以及拓扑图配置索引,然后在接收到小区交换指令时,根据所述交换指令修改所述小区分布拓扑图和拓扑图配置索引,接着基于修改后的小区分布拓扑图或拓扑图配置索引获取待交换小区ID及所述待交换小区ID的位置信息,最后将所述待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源,实现了小区核资源的交换,使得维护人员能够调整相互协作的小区的核资源,提高了相互协作的小区的工作效率,降低了维护人员的工作量。
在阅读并理解了附图和详细描述后,可以明白其他方面。
附图概述
图1为本发明第一实施例小区核资源管理方法的流程示意图;
图2为本发明第二实施例小区核资源管理方法的流程示意图;
图3为本发明第三实施例小区核资源管理方法的流程示意图;
图4为本发明第四实施例小区核资源管理方法的流程示意图;
图5为本发明第五实施例小区核资源管理装置的功能模块示意图;
图6为本发明第六实施例小区核资源管理装置的功能模块示意图;
图7为本发明第七实施例小区核资源管理装置的功能模块示意图;
图8为本发明第八实施例小区核资源管理装置的功能模块示意图;
图9为本发明第九实施例小区核资源管理装置的功能模块示意图。
本发明的实施方式
下面结合附图对本发明实施例进行详细说明。需要说明的是,在不冲突的情况下,本发明实施例以及实施例中的特征可以相互任意组合。
实施例一
参照图1,图1为本发明第一实施例小区核资源管理方法的流程示意图。
在本实施例中,该小区核资源管理方法包括:
步骤S10,基于小区ID(标识)以及所述小区ID的位置信息生成小区分 布拓扑图以及拓扑图配置索引;
基站的每个基带板包括多个核(核芯片),每个核上分布一个或多个小区,对基带板上的小区进行编号并采用小区ID表示;对每一个小区ID在基带板占用的核资源进行编号,位置信息是指该核资源的编号,核资源是指基带板的核芯片对应的软硬件资源。基于小区ID以及该小区ID的位置信息生成小区分布拓扑图以及拓扑图配置索引,其中,小区分布拓扑图为基带板中的小区分布信息,拓扑图配置索引为基带板中的小区ID以及该小区ID对应的位置信息,如表1所示。
表1
Figure PCTCN2015090013-appb-000001
在生成小区分布拓扑图以及拓扑图配置索引之后,可以显示小区分布拓扑图和/或拓扑图配置索引,通过显示小区分布拓扑图和/或拓扑图配置索引,使得用户(NodeB的维护人员)能够清晰直观的查看小区ID以及所述小区ID的位置信息,进而确定是否需要进行小区ID的位置信息的管理或修改。
步骤S20,在接收到小区交换指令时,根据所述交换指令修改所述小区分布拓扑图和拓扑图配置索引;
在接收到的小区交换指令是基于修改拓扑图配置索引触发的小区交换指令时,根据所述小区交换指令修改所述小区分布拓扑图,即根据修改后的拓扑图配置索引修改所述小区分布拓扑图;在接收到的小区交换指令是基于修改小区分布拓扑图触发的小区交换指令时,根据所述小区交换指令修改所述拓扑图配置索引,即根据修改后的小区分布拓扑图修改所述拓扑图配置索引;在接收到的小区交换指令是时修改所述小区分布拓扑图和拓扑图配置索引的小区交换指令时,根据所述小区交换指令修改所述小区分布拓扑图和拓扑图配置索引,其中,在用户(NodeB的维护人员)发送指令修改小区分布拓扑图和拓扑图配置索引时,触发该小区交换指令。
步骤S30,基于修改后的小区分布拓扑图或拓扑图配置索引获取待交换小区ID及所述待交换小区ID的位置信息;
在修改后的小区分布拓扑图或拓扑图配置索引中获取待交换小区ID及所述待交换小区ID的位置信息,其中,在小区分布拓扑图或拓扑图配置索引中的存在数据更新的小区为待交换小区。
本实施例中,在获取待交换小区ID及所述待交换小区ID的位置信息之后,还包括判断所述待交换小区ID的位置信息对应的核资源是否满足待交换小区的核资源的条件,即确定待交换小区ID的位置信息对应的核资源能够实现所述待交换小区的全部功能。
步骤S40,将所述待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源。
将待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源,容易理解,本实施例中,待交换小区为多个小区,进而实现了多个小区核资源之间的交换或重新分配。
实施例二
基于实施例一,本实施例中,参照图2,在步骤S20之前,该小区核资源管理方法还包括:
步骤S100,确定所述小区分布拓扑图以及拓扑图配置索引的状态为可修改状态。
确定所述小区分布拓扑图以及拓扑图配置索引中的小区ID以及所述小区ID的位置信息可以进行修改。
本实施例中,可以通过设置一个小区核资源控制开关,在小区核资源控制开关打开时,可以修改小区分布拓扑图以及拓扑图配置索引,在小区核资源控制开关关闭时,限制小区分布拓扑图以及拓扑图配置索引中的修改,即通过确定小区核资源控制开关处于打开状态确定所述小区分布拓扑图以及拓扑图配置索引的状态为可修改状态;当然,在其他实施例中,也可以通过发送状态修改指令将小区分布拓扑图以及拓扑图配置索引中的状态修改为可修 改状态,即在当前小区分布拓扑图以及拓扑图配置索引中的状态为不可修改状态,发送状态修改指令将小区分布拓扑图以及拓扑图配置索引中的状态修设置可修改状态。
上述实施例中,通过生成小区分布拓扑图以及拓扑图配置索引,然后在接收到小区交换指令时,根据所述交换指令修改所述小区分布拓扑图和拓扑图配置索引,接着基于修改后的小区分布拓扑图或拓扑图配置索引获取待交换小区ID及所述待交换小区ID的位置信息,最后将所述待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源,实现了小区核资源的交换,使得维护人员能够调整相互协作的小区的核资源,提高了相互协作的小区的工作效率,降低了维护人员的工作量。
实施例三
参照图3,图3为本发明第三实施例小区核资源管理方法的流程示意图。
基于第一实施例,本实施例中,在步骤S40之后,所述小区核资源管理方法还包括:
步骤S50,在侦测到新建小区时,获取新建小区ID及所述新建小区ID对应的位置信息;
在新建小区建立成功时,获取新建小区ID及所述新建小区ID对应的位置信息。
步骤S60,基于获取到的新建小区ID及所述新建小区ID的位置信息更新所述小区分布拓扑图以及拓扑图配置索引。
基于获取到的新建小区ID及所述新建小区ID的位置信息更新所述小区分布拓扑图以及拓扑图配置索引,即在小区分布拓扑图中添加新建小区ID及所述新建小区ID的位置信息,并在拓扑图配置索引添加新建小区ID及所述新建小区ID的位置信息,或者,在小区分布拓扑图或拓扑图配置索引中添加新建小区ID及所述新建小区ID的位置信息,然后更新拓扑图配置索引或小区分布拓扑图,实现了小区成功建立时小区分布拓扑图以及拓扑图配置索引的实时更新。
本实施例中,通过在侦测到新建小区时,获取新建小区ID及所述新建小区ID对应的位置信息,然后基于获取到的新建小区ID及所述新建小区ID的位置信息更新所述小区分布拓扑图以及拓扑图配置索引,实现了在新建小区成功建立时实时更新所述小区分布拓扑图以及拓扑图配置索引,进而使得小区分布拓扑图以及拓扑图配置索引能够全面覆盖基带板内的小区。
实施例四
参照图4,图4为本发明第四实施例小区核资源管理方法的流程示意图。
基于第一实施例,本实施例中,在步骤S40之后,所述小区核资源管理方法还包括:
步骤S70,在接收到小区移动指令时,基于所述小区移动指令更新所述小区分布拓扑图和拓扑图配置索引;
在接收到的小区移动指令是基于修改拓扑图配置索引触发的小区移动指令时,根据小区移动指令修改所述小区分布拓扑图,即根据修改后的拓扑图配置索引修改所述小区分布拓扑图;在接收到的小区移动指令是基于修改小区分布拓扑图触发的小区移动指令时,根据小区移动指令修改所述拓扑图配置索引,即根据修改后的小区分布拓扑图修改所述拓扑图配置索引;在接收到的小区移动指令是时修改所述小区分布拓扑图和拓扑图配置索引的小区移动指令时,根据所述交换指令修改所述小区分布拓扑图和拓扑图配置索引,其中,在用户(NodeB的维护人员)发送指令修改小区分布拓扑图和拓扑图配置索引时,触发该小区移动指令。
步骤S80,基于更新后的小区分布拓扑图或拓扑图配置索引获取待移动小区ID及所述待移动小区ID的位置信息;
在更新后的小区分布拓扑图或拓扑图配置索引中获取待移动小区ID及所述待移动小区ID的位置信息,其中,在小区分布拓扑图或拓扑图配置索引中的存在数据更新的小区为待移动小区。
步骤S90,将所述待移动小区ID的位置信息对应的核资源设置为所述待移动小区的核资源。
本实施例中,一般情况下,小区分布拓扑图或拓扑图配置索引更新后,所述待移动小区ID的位置信息对应的核资源为空闲核资源,且该空闲核资源能够用于实现所述待移动小区的全部功能。
在其他实施例中,在步骤S40之后,所述小区核资源管理方法还包括:在接收到小区删除指令时,基于所述小区删除指令更新所述小区分布拓扑图和拓扑图配置索引。
小区删除指令的触发方式与小区交换指令以及小区移动指令的触发方式类似,基于所述小区删除指令更新所述小区分布拓扑图和拓扑图配置索引是指在小区分布拓扑图和拓扑图配置索引中删除小区删除指令对应的小区ID以及小区ID的位置信息,实现了无用小区的删除,使得维护人员能够根据需求删除无用的小区。
本实施例中,通过在接收到小区移动指令时,更新所述小区分布拓扑图和拓扑图配置索引,然后获取待移动小区ID及所述待移动小区ID的位置信息,最后将所述待移动小区ID的位置信息对应的核资源设置为所述待移动小区的核资源,实现了待移动小区的核资源的重新分配,使得维护人员能够根据需求重新分配调整相互协作的小区的核资源,提高了相互协作的小区的工作效率。
实施例五
参照图5,图5为本发明第五实施例小区核资源管理装置的功能模块示意图。
在本实施例中,该小区核资源管理装置包括:
生成模块10,设置为基于小区ID以及所述小区ID的位置信息生成小区分布拓扑图以及拓扑图配置索引;
基站的每个基带板包括多个核(核芯片),每个核上分布一个或多个小区,对基带板上的小区进行编号并采用小区ID表示;对每一个小区ID在基带板占用的核资源进行编号,位置信息是指该核资源的编号,核资源是指基带板的核芯片对应的软硬件资源。生成模块10基于小区ID以及该小区ID的 位置信息生成小区分布拓扑图以及拓扑图配置索引,其中,小区分布拓扑图为基带板中的小区分布信息,拓扑图配置索引为基带板中的小区ID以及该小区ID对应的位置信息,如表1所示。
修改模块20,设置为在接收到小区交换指令时,根据所述交换指令修改所述小区分布拓扑图和拓扑图配置索引;
第一获取模块30,设置为基于修改后的小区分布拓扑图或拓扑图配置索引获取待交换小区ID及所述待交换小区ID的位置信息;
第一获取模块30在修改后的小区分布拓扑图或拓扑图配置索引中获取待交换小区ID及所述待交换小区ID的位置信息,其中,在小区分布拓扑图或拓扑图配置索引中的存在数据更新的小区为待交换小区。
第一设置模块40,设置为将所述待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源。
第一设置模块40将待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源,容易理解,本实施例中,待交换小区为多个小区,进而实现了多个小区核资源之间的交换或重新分配。
实施例六
基于实施例五,本实施例中,参照图6,小区核资源管理装置还包括:
确定模块100,设置为确定所述小区分布拓扑图以及拓扑图配置索引的状态为可修改状态。
确定模块100确定所述小区分布拓扑图以及拓扑图配置索引中的小区ID以及所述小区ID的位置信息可以进行修改。
本实施例中,可以通过设置一个小区核资源控制开关,在小区核资源控制开关打开时,可以修改小区分布拓扑图以及拓扑图配置索引,在小区核资源控制开关关闭时,限制小区分布拓扑图以及拓扑图配置索引中的修改,即确定模块100通过确定小区核资源控制开关处于打开状态确定所述小区分布拓扑图以及拓扑图配置索引的状态为可修改状态;当然,在其他实施例中,也可以通过发送状态修改指令将小区分布拓扑图以及拓扑图配置索引中的状 态修改为可修改状态,即在当前小区分布拓扑图以及拓扑图配置索引中的状态为不可修改状态,发送状态修改指令将小区分布拓扑图以及拓扑图配置索引中的状态修设置可修改状态。
本实施例中,通过生成模块10生成小区分布拓扑图以及拓扑图配置索引,然后在接收到小区交换指令时,修改模块20根据所述交换指令修改所述小区分布拓扑图和拓扑图配置索引,接着第一获取模块30基于修改后的小区分布拓扑图或拓扑图配置索引获取待交换小区ID及所述待交换小区ID的位置信息,最后第一设置模块40将所述待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源,实现了小区核资源的交换,使得维护人员能够调整相互协作的小区的核资源,提高了相互协作的小区的工作效率,降低了维护人员的工作量。
实施例七
参照图7,图7为本发明第七实施例小区核资源管理装置的功能模块示意图。
基于第五实施例,本实施例中,小区核资源管理装置还包括:
第二获取模块50,设置为在侦测到新建小区时,获取新建小区ID及所述新建小区ID对应的位置信息;
第一更新模块60,设置为基于获取到的新建小区ID及所述新建小区ID的位置信息更新所述小区分布拓扑图以及拓扑图配置索引。
第一更新模块60基于获取到的新建小区ID及所述新建小区ID的位置信息更新所述小区分布拓扑图以及拓扑图配置索引,即第一更新模块60在小区分布拓扑图中添加新建小区ID及所述新建小区ID的位置信息,并在拓扑图配置索引添加新建小区ID及所述新建小区ID的位置信息,或者,第一更新模块60在小区分布拓扑图或拓扑图配置索引中添加新建小区ID及所述新建小区ID的位置信息,然后更新拓扑图配置索引或小区分布拓扑图,实现了小区成功建立时小区分布拓扑图以及拓扑图配置索引的实时更新。
本实施例中,通过在侦测到新建小区时,第二获取模块50获取新建小区 ID及所述新建小区ID对应的位置信息,然后第一更新模块60基于获取到的新建小区ID及所述新建小区ID的位置信息更新所述小区分布拓扑图以及拓扑图配置索引,实现了在新建小区成功建立时实时更新所述小区分布拓扑图以及拓扑图配置索引,进而使得小区分布拓扑图以及拓扑图配置索引能够全面覆盖基带板内的小区。
实施例八
图8为本发明第八实施例小区核资源管理装置的功能模块示意图。
基于第五实施例,本实施例中,小区核资源管理装置还包括:
第二更新模块70,设置为在接收到小区移动指令时,基于所述小区移动指令更新所述小区分布拓扑图和拓扑图配置索引;
第三获取模块80,设置为基于更新后的小区分布拓扑图或拓扑图配置索引获取待移动小区ID及所述待移动小区ID的位置信息;
第二设置模块90,设置为将所述待移动小区ID的位置信息对应的核资源设置为所述待移动小区的核资源。
本实施例中,一般情况下,在第二更新模块70更新小区分布拓扑图或拓扑图配置索引后,所述待移动小区ID的位置信息对应的核资源为空闲核资源,且该空闲核资源能够用于实现所述待移动小区的全部功能。
实施例九
基于第五实施例,参照图9,小区核资源管理装置还包括:
第三更新模块110,设置为在在接收到小区删除指令时,基于所述小区删除指令更新所述小区分布拓扑图和拓扑图配置索引。
第三更新模块110基于所述小区删除指令更新所述小区分布拓扑图和拓扑图配置索引是指在小区分布拓扑图和拓扑图配置索引中删除小区删除指令对应的小区ID以及小区ID的位置信息,实现了无用小区的删除,使得维护人员能够根据需求删除无用的小区。
本实施例中,通过在接收到小区移动指令时,第二更新模块70更新所述小区分布拓扑图和拓扑图配置索引,然后第三获取模块80获取待移动小区ID及所述待移动小区ID的位置信息,最后第二设置模块90将所述待移动小区ID的位置信息对应的核资源设置为所述待移动小区的核资源,实现了待移动小区的核资源的重新分配,使得维护人员能够根据需求重新分配调整相互协作的小区的核资源,提高了相互协作的小区的工作效率。
本领域普通技术人员可以理解上述方法中的全部或部分步骤可通过程序来指令相关硬件完成,上述程序可以存储于计算机可读存储介质中,如只读存储器、磁盘或光盘等。可选地,上述实施例的全部或部分步骤也可以使用一个或多个集成电路来实现。相应地,上述实施例中的各模块/单元可以采用硬件的形式实现,也可以采用软件功能模块的形式实现。本发明实施例不限制于任何特定形式的硬件和软件的结合。
工业实用性
本发明实施例中,通过生成小区分布拓扑图以及拓扑图配置索引,然后在接收到小区交换指令时,根据所述交换指令修改所述小区分布拓扑图和拓扑图配置索引,接着基于修改后的小区分布拓扑图或拓扑图配置索引获取待交换小区ID及所述待交换小区ID的位置信息,最后将所述待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源,实现了小区核资源的交换,使得维护人员能够调整相互协作的小区的核资源,提高了相互协作的小区的工作效率,降低了维护人员的工作量。

Claims (11)

  1. 一种小区核资源管理方法,包括:
    基于小区标识ID以及所述小区ID的位置信息生成小区分布拓扑图以及拓扑图配置索引;
    在接收到小区交换指令时,根据所述交换指令修改所述小区分布拓扑图和拓扑图配置索引;
    基于修改后的小区分布拓扑图或拓扑图配置索引获取待交换小区ID及所述待交换小区ID的位置信息;
    将所述待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源。
  2. 如权利要求1所述的小区核资源管理方法,在所述在接收到小区交换指令时,根据所述交换指令修改所述小区分布拓扑图和拓扑图配置索引之前,所述方法还包括:
    确定所述小区分布拓扑图以及拓扑图配置索引的状态为可修改状态。
  3. 如权利要求1或2所述的小区核资源管理方法,在所述将所述待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源之后,所述方法还包括:
    在侦测到新建小区时,获取新建小区ID及所述新建小区ID对应的位置信息;
    基于获取到的新建小区ID及所述新建小区ID的位置信息更新所述小区分布拓扑图以及拓扑图配置索引。
  4. 如权利要求1或2所述的小区核资源管理方法,将所述待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源之后,所述方法还包括:
    在接收到小区移动指令时,基于所述小区移动指令更新所述小区分布拓扑图和拓扑图配置索引;
    基于更新后的小区分布拓扑图或拓扑图配置索引获取待移动小区ID及 所述待移动小区ID的位置信息;
    将所述待移动小区ID的位置信息对应的核资源设置为所述待移动小区的核资源。
  5. 如权利要求1或2所述的小区核资源管理方法,在所述将所述待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源之后,所述方法还包括:
    在接收到小区删除指令时,基于所述小区删除指令更新所述小区分布拓扑图和拓扑图配置索引。
  6. 一种小区核资源管理装置,包括:
    生成模块,设置为基于小区标识ID以及所述小区ID的位置信息生成小区分布拓扑图以及拓扑图配置索引;
    修改模块,设置为在接收到小区交换指令时,根据所述交换指令修改所述小区分布拓扑图和拓扑图配置索引;
    第一获取模块,设置为基于修改后的小区分布拓扑图或拓扑图配置索引获取待交换小区ID及所述待交换小区ID的位置信息;以及
    第一设置模块,设置为将所述待交换小区ID的位置信息对应的核资源设置为所述待交换小区ID对应的核资源。
  7. 如权利要求6所述的小区核资源管理装置,所述小区核资源管理装置还包括:
    确定模块,设置为确定所述小区分布拓扑图以及拓扑图配置索引的状态为可修改状态。
  8. 如权利要求6或7所述的小区核资源管理装置,所述小区核资源管理装置还包括:
    第二获取模块,设置为在侦测到新建小区时,获取新建小区ID及所述新建小区ID对应的位置信息;以及
    第一更新模块,设置为基于获取到的新建小区ID及所述新建小区ID的位置信息更新所述小区分布拓扑图以及拓扑图配置索引。
  9. 如权利要求6或7所述的小区核资源管理装置,所述小区核资源管理装置还包括:
    第二更新模块,设置为在接收到小区移动指令时,基于所述小区移动指令更新所述小区分布拓扑图和拓扑图配置索引;
    第三获取模块,设置为基于更新后的小区分布拓扑图或拓扑图配置索引获取待移动小区ID及所述待移动小区ID的位置信息;以及
    第二设置模块,设置为将所述待移动小区ID的位置信息对应的核资源设置为所述待移动小区的核资源。
  10. 如权利要求6或7所述的小区核资源管理装置,所述小区核资源管理装置还包括:
    第三更新模块,设置为在在接收到小区删除指令时,基于所述小区删除指令更新所述小区分布拓扑图和拓扑图配置索引。
  11. 一种计算机可读存储介质,存储有程序指令,当该程序指令被执行时可实现权利要求1-5任一项所述的方法。
PCT/CN2015/090013 2015-06-11 2015-09-18 小区核资源管理方法及装置 WO2016197479A1 (zh)

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