WO2012079544A1 - 对多模基站进行管理的方法和装置 - Google Patents

对多模基站进行管理的方法和装置 Download PDF

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Publication number
WO2012079544A1
WO2012079544A1 PCT/CN2011/084225 CN2011084225W WO2012079544A1 WO 2012079544 A1 WO2012079544 A1 WO 2012079544A1 CN 2011084225 W CN2011084225 W CN 2011084225W WO 2012079544 A1 WO2012079544 A1 WO 2012079544A1
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WO
WIPO (PCT)
Prior art keywords
power
board
command
base station
control command
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Application number
PCT/CN2011/084225
Other languages
English (en)
French (fr)
Inventor
余卫东
胡蓉
于喜元
尚海涛
Original Assignee
华为技术有限公司
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Filing date
Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Publication of WO2012079544A1 publication Critical patent/WO2012079544A1/zh

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Classifications

    • 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
    • H04W52/0203Power saving arrangements in the radio access network or backbone network of wireless communication networks
    • H04W52/0206Power saving arrangements in the radio access network or backbone network of wireless communication networks in access points, e.g. base stations
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/08Access point devices
    • H04W88/10Access point devices adapted for operation in multiple networks, e.g. multi-mode access points
    • 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 technologies, and in particular, to a method and apparatus for managing a multimode base station. Background technique
  • Multi-mode base stations refer to the integration of base station equipment of various standards into one device, and can provide multiple types of wireless communication services at the same time.
  • a base station that can support both GSM and UMTS wireless standards is called a GU dual-mode base station.
  • a multimode base station can be formed by superimposing boards of different standards.
  • a certain system in a multi-mode base station may be out of service, that is, the situation of exiting the service.
  • a certain system in a multimode base station may be temporarily retired because it is temporarily not needed, or it may be permanently retired because it is eliminated during the evolution process. For the temporary withdrawal system, it needs to be restarted when it is needed.
  • GSM may temporarily retreat for a period of time, re-enable it when needed, and eventually evolve to a single-mode base station with only UMTS, and GSM is eliminated.
  • the system that has been provided is the working system, such as the UMTS system; and the system that exits the service (temporary or final) is the retire system, such as the GSM system.
  • Figure 1 includes the multimode RF module, GSM main control board, UMTS main control board, and UMTS service board.
  • the processing of the fallback system in the multimode base station can be manually performed to the base station site.
  • the power-off operation is performed on the retiring system, and the retired hardware device is pulled out; or the temporary retiring system that needs to be activated after the power-off is manually performed to the base station site to perform power-on operation.
  • Embodiments of the present invention provide a method and apparatus for managing a multimode base station.
  • embodiments of the present invention employ the following technical solutions:
  • a method for managing a multimode base station comprising:
  • the target system board-on-board operation command or the power-off operation command is invoked according to the operation type in the control command, and the control command includes the target system board information that needs to be powered on or powered off, and the corresponding target system board needs The type of operation performed;
  • a device for managing a multimode base station comprising:
  • a calling unit configured to invoke a target system on-board power operation command or a power-off operation command according to an operation type in the control command, where the control command includes a target system board information that needs to perform a power-on operation or a power-off operation, and corresponding The type of operation that the target system board needs to perform;
  • the first sending unit is configured to send a power-on operation command or a power-off operation command to the target system board.
  • the working system main control board in the multi-mode base station sends a power-on operation command or a power-off operation command to the target system board according to the control command, and controls the target system. Power-on and power-off operation of the board. No need to manually go to each base
  • the station site performs on-site power-on or power-off operations, saving human resources.
  • FIG. 1 is a schematic diagram of an evolution process of a GU dual-mode base station
  • FIG. 2 is a flowchart of a method for managing a multi-mode base station according to an embodiment of the present invention
  • FIG. 3 is a flowchart of another method for managing a multi-mode base station according to an embodiment of the present invention
  • FIG. 5 is a flowchart of a method for managing a multi-mode base station according to an embodiment of the present invention
  • FIG. 6 is a flowchart of a method for managing a multi-mode base station according to an embodiment of the present invention
  • FIG. 7 is a structural diagram of another apparatus for managing a multimode base station according to an embodiment of the present invention
  • FIG. 8 is a schematic diagram of another apparatus for managing a multimode base station according to an embodiment of the present invention
  • FIG. 9 is a structural diagram of another apparatus for managing a multimode base station according to an embodiment of the present invention.
  • the embodiment of the invention provides a method for managing a multi-mode base station. As shown in FIG. 2, the method includes the following steps: The working system main control board invokes the target system single-board power operation command or the power-off operation command according to the control command, where the control command includes the target system board information that needs to perform the power-on operation or the power-off operation, and the corresponding target format. The type of operation that the board needs to perform.
  • the control command in this embodiment is used to instruct the working system main control board to send a power-on operation command or a power-off operation command to the target system board.
  • the control command includes information about the target board that needs to be powered on or powered off, such as the address of the target board. It also includes the type of operation that will be performed on the corresponding target system board, that is, whether the target system board needs to be powered on or powered off.
  • the working system main control board invokes the corresponding target system on-board electrical operation command or power-off operation command according to the information carried in the control command.
  • the working system main control board sends a power-on operation command or a power-off operation command to the target system board, so that the target system board performs a power-on operation or a power-off operation.
  • the target system board in this embodiment is a target system board that needs to perform a power-on operation or a power-off operation included in the control command, and may be, for example, a retiring system, and is exemplified by FIG. 1 , specifically, a GSM system.
  • the working system main control board is taken as an example.
  • the working system main control board can also be replaced with the retiring system main control board. This is not limited.
  • the method further includes: performing a power-on operation or a power-off operation on the target system board.
  • the target system board can also send a response message to the working system main control board.
  • the method for managing a multimode base station provided by this embodiment, the working system master in the multimode base station
  • the control board controls the power-on and power-off operations of the target board by sending a power-on operation command or a power-off operation command to the target board. There is no need to manually go to each base station site for on-site power-on operation or power-off operation, which saves human resources, and completes the power-off operation of the retired system board that needs temporary or permanent retreat, saving power resources.
  • the embodiment of the present invention provides another method for managing a multi-mode base station. As shown in FIG. 3, the method includes the following steps:
  • the working system main control board receives the control command.
  • control command is sent to the main control software module of the working system main control board.
  • the control command in this embodiment can be used to instruct the working system main control board to send a power-on operation command or a power-off operation command to the target system board.
  • the control command includes the target system board information that needs to be powered on or powered off, and the type of operation that needs to be performed on the target system.
  • the operation type can be whether the target system needs to be powered on or down. Electrical operation.
  • the control command includes information about the target board that needs to be powered on or powered off, such as the address of the target board. It also includes the type of operation that will be performed on the corresponding target system board.
  • control command in this embodiment may be a human language command.
  • the working system main control board After receiving the control command, the working system main control board determines whether the target system board that needs to perform the power-on operation or the power-off operation included in the control command is the working system main control board that receives the control command.
  • the main control software module of the working system main control board may first Check whether the received control command parameters are legal. After the confirmation is valid, go to step 302.
  • the main control software module of the working system main control board determines whether the target system board that needs to perform the power-on operation or the power-off operation included in the control command is the standard main control board that receives the control command. .
  • step 302a is performed.
  • step 302b is performed.
  • the working system main control board invokes the on-board electrical function of the target system or the power-off function of the target system board according to the control command. Go to step 303.
  • the power-on operation command or the power-off operation command in the embodiment may be implemented in the manner of the on-board electrical function of the target system or the power-off function of the target system.
  • the main control software module of the working system main control board calls the corresponding target system on-board electrical function or the target system single-board power-off function from the main control electromechanical management module of the working system main control board according to the information carried in the control command.
  • the working system main control board calls the power-on-board function of the target system or the power-off function of the target system board according to the control command, and obtains the target system board from the power function of the target system or the power-off function of the target system board.
  • the power operation command or the target system board power-off operation command is
  • the working system main control board sends an abnormality message to the 0MC background. The process ends.
  • the main control software module of the working system main control board sends an abnormality message to the 0MC background.
  • the working system main control board sends a power-on operation command or a power-off operation command to the target system board, so that the target system board performs a power-on operation or a power-off operation.
  • the working system main control board is based on the target system single board power function or the target system board power down Number, determines the command to be sent to the target system board, that is, the power-on operation command or the power-off operation command.
  • the main control electromechanical management module of the working system main control board sends a power-on operation command or a power-off operation command to the target system board.
  • the target system board performs a power-on operation or a power-off operation according to the received power-on operation command or the power-off operation command, and sends a response message to the working system main control board.
  • the main control electromechanical management module of the working system main control board receives the response message returned by the target system board, and the response message includes execution result information of the control command.
  • the main control electromechanical management module of the working system main control board receives the response message after the target system returns a response message. And forward the response message to the main control software module of the working system main control board.
  • the main control software module of the working system main control board receives the response message returned by the target system board forwarded by the main control electromechanical management module.
  • the working system main control board sends an execution result of the control command.
  • the main control software module of the working system main control board can send the execution result of the control command to the 0MC.
  • the working system main control board saves the control command to the configuration file.
  • the method in this embodiment may include step 308 or may not include step 308.
  • the target system board that needs to perform the power-on operation or the power-off operation can be found. You need to save the control commands in the configuration file.
  • the main control software module of the working system main control board saves the control command to the configuration file.
  • the working system main control board is taken as an example.
  • the working system main control board can also be replaced by the retiring system main control board, which is implemented by the present invention. This example does not limit this.
  • the working system main control board in the multi-mode base station controls the target system board by sending a power-on operation command or a power-off operation command to the target system board. Electrical operation and power-off operation. It is not necessary to manually power on or off the site of each base station, which saves human resources and completes the power-off operation of the temporary or permanently retired service board, saving power resources.
  • the embodiment of the invention provides another method for managing a multi-mode base station. As shown in FIG. 4, the method includes the following steps:
  • the working system main control board determines whether the configuration file includes a control command for indicating that the target system board performs the power-on operation or the operation under.
  • the main control software module of the working system main control board can determine whether the control command is included in the configuration file by querying the content of the configuration file.
  • step 402 is performed; when the main control software module of the working system main control board determines that the configuration file does not include the control command , the process ends.
  • the working system main control board obtains the control command from the configuration file.
  • the main control software module of the working system main control board obtains the control commands from the configuration file.
  • the working system main control board invokes the target system according to the control command.
  • the on-board power function or the target system board power-down function, the control command includes the target system board information that needs to be powered on or powered off, and the type of operation that the target system board needs to perform.
  • the control command in this embodiment is used to instruct the working system main control board to send a power-on operation command or a power-off operation command to the target system board.
  • the control command may include information about a target board that needs to be powered on or powered off, such as the address of the target board. It also includes the type of operation that will be performed on the corresponding target system board, that is, whether the target system board needs to perform power-on or power-off operations.
  • the main control software module of the working system main control board calls the corresponding on-board electrical function of the target system or the power-off function of the target system from the main control electromechanical management module of the working system main control board according to the information carried in the control command. And obtaining a corresponding power-on command or a power-off command from the power-on function or the power-off function.
  • the working system main control board sends a power-on operation command or a power-off operation command to the target system board, so that the target system board performs a power-on operation or a power-off operation.
  • the main control software module of the working system main control board determines the command to be sent to the target system board, that is, the power-on operation command or the power-off operation command, according to the on-board power function of the target system or the power-off function of the target system board.
  • the main control electromechanical management module of the working system main control board sends a power-on operation command or a power-off operation command to the target system board.
  • the target system board performs a power-on operation or a power-off operation according to the received power-on operation command or the power-off operation command, and sends a response message to the working system main control board, where the response message includes an execution result for the control command. information.
  • the working system main control board receives the response message returned by the target system board.
  • the main control electromechanical management module of the working system main control board returns the response message after the target system board returns The response message is received. And forward the response message to the main control software module of the working system main control board.
  • the main control software module of the working system main control board receives the target system returning response message forwarded by the main control electromechanical management module.
  • the working system main control board is taken as an example.
  • the working system main control board can also be replaced with the retiring system main control board. This is not limited.
  • the method for managing a multimode base station in the startup process of the multimode base station, or during the operation of the multimode base station, the working system in the multimode base station automatically obtains the control command from the configuration file, and
  • the main control board controls the power-on and power-off operations of the target system by sending a power-on operation command or a power-off operation command to the target board.
  • the embodiment of the present invention provides another method for managing a multi-mode base station. As shown in FIG. 5, the method includes the following steps:
  • the working system main control board detects whether there is a new standard board.
  • step 502 is performed; otherwise, the process ends.
  • the working system main control board determines whether the configuration file includes a control command.
  • the main control software module of the working system main control board can determine whether the control command is included in the configuration file by querying the content of the configuration file.
  • step 503 is performed; when the main control software module of the working system main control board determines that the configuration file does not include the control command , the process ends.
  • the working system main control board obtains the control command from the configuration file.
  • the main control software module of the working system main control board obtains the control commands from the configuration file.
  • the working system main control board invokes the target system on-board power function or the target system board power-off function according to the control command, where the control command includes a target that needs to perform a power-on operation or a power-off operation.
  • the control command in this embodiment is used to instruct the working system main control board to send a power-on operation command or a power-off operation command to the target system board.
  • the control command includes information about the target board that needs to be powered on or powered off, such as the address of the target board. It also includes the type of operation that will be performed on the corresponding target system board, that is, whether the target system board needs to be powered on or powered off.
  • the main control software module of the working system main control board calls the corresponding on-board electrical function of the target system or the power-off function of the target system from the main control electromechanical management module of the working system main control board according to the information carried in the control command.
  • the power-on operation command or the power-off operation command of the target system is obtained from the power-on function or the power-off function.
  • the working system main control board sends a power-on operation command or a power-off operation command to the target system board, so that the target system board performs a power-on operation or a power-off operation.
  • the main control software module of the working system main control board determines the command to be sent to the target system board, that is, the power-on operation command or the power-off operation command, according to the on-board power function of the target system or the power-off function of the target system board.
  • the main control electromechanical management module of the working system main control board sends a power-on operation command or a power-off operation command to the target system board.
  • the target system board performs a power-on operation or a power-off operation according to the received power-on operation command or the power-off operation command, and sends a response message to the working system main control board, where the response message includes the execution result information of the control command. .
  • the working system main control board receives the response message returned by the target system board.
  • the main control electromechanical management module of the working system main control board receives the response message after the target system returns a response message. And forward the response message to the main control software module of the working system main control board.
  • the main control software module of the working system main control board receives the target system returning response message forwarded by the main control electromechanical management module.
  • the working system main control board is taken as an example.
  • the working system main control board can also be replaced with the retiring system main control board. This is not limited.
  • the working system in the multi-mode base station automatically obtains a control command from the configuration file, and invokes the power-on operation or the lowering according to the control command.
  • the power-on function the main control board controls the power-on and power-off operations of the target board by sending a power-on operation command or a power-off operation command to the target board.
  • the manual power-on operation or power-off operation is not required at each base station site, which saves human resources, and completes the power-off operation of the temporary or permanently retired service-returning boards, thereby saving power resources.
  • An embodiment of the present invention provides a device for managing a multi-mode base station. As shown in FIG. 6, the device includes: a calling unit 61 and a first sending unit 62.
  • the calling unit 61 is configured to invoke the target system on-board power operation command or the power-off operation command according to the operation type in the control command, where the control command includes the target system board information that needs to be powered on or powered off. And the type of operation that the corresponding target system board needs to perform; the first sending unit 62 is configured to send a power-on operation command or a power-off operation command to the target system board, so that the target system board performs power-on operation or power-off operating.
  • the working system main control board in the multi-mode base station controls the target system board by sending a power-on operation command or a power-off operation command to the target system board. Electrical operation and power-off operation. It is not necessary to manually power on or off the site of each base station, which saves human resources and completes the power-off operation of the temporary or permanently retired service board, saving power resources.
  • the embodiment of the present invention provides another device for managing a multi-mode base station.
  • the method includes: a receiving unit 71, a first determining unit 72, a calling unit 73, and a first The transmitting unit 74, the saving unit 75, and the second transmitting unit 76.
  • the receiving unit 71 is configured to receive a control command.
  • the control command contains the target board information that needs to be powered on or powered off, and the type of operation that the target board needs to perform.
  • the first determining unit 72 is configured to determine whether the target system board that needs to perform the power-on operation or the power-off operation included in the control command is a standard main control board that receives the control command.
  • the calling unit 73 is configured to: when the target system board that needs to perform the power-on operation or the power-off operation included in the control command is not the system main control board that receives the control command, invoke the target system on-board power function according to the control command. Or the target system board power-off function.
  • the first sending unit 74 is configured to send a power-on operation command or a power-off operation command to the target system board, so that the target system board performs a power-on operation or a power-off operation.
  • the saving unit 75 is configured to save the control command to the configuration file.
  • the second sending unit 76 is configured to send an execution result of the control command to the operation and maintenance center in the background.
  • the working system main control board in the multi-mode base station controls the target system board by sending a power-on operation command or a power-off operation command to the target system board. Electrical operation and power-off operation. It is not necessary to manually power on or off the site of each base station, which saves human resources and completes the power-off operation of the temporary or permanently retired service-returning boards, saving power resources.
  • An embodiment of the present invention provides another apparatus for managing a multi-mode base station. As shown in FIG. 8, the second determining unit 81, the obtaining unit 82, the calling unit 83, and the first sending unit 84 are provided.
  • the second determining unit 81 is configured to determine whether the control command is included in the configuration file during the startup of the multimode base station or during the operation of the multimode base station.
  • the obtaining unit 82 is configured to obtain the control command from the configuration file when the control file is included in the configuration file.
  • the calling unit 83 is configured to invoke the target system on-board power function or the target system board power-off function according to the control command, where the control command includes the target system board information that needs to perform the power-on operation or the power-off operation, and the corresponding target format.
  • the type of operation that the board needs to perform; the first sending unit 84 is configured to send a power-on operation command or a power-off operation command to the target system board, so that the target system board performs a power-on operation or a power-off operation.
  • the apparatus for managing a multimode base station in the startup process of the multimode base station, or during the operation of the multimode base station, the working system in the multimode base station automatically obtains the control command from the configuration file, and According to the control command, the power-on operation or the power-off operation function is called, and the main control board is connected.
  • the power-on operation and power-off operation of the target system board are controlled by sending a power-on operation command or a power-off operation command to the target system.
  • the manual power-on operation or power-off operation is not required at each base station site, which saves human resources, and completes the power-off operation of the temporary or permanently retired service-returning boards, thereby saving power resources.
  • the embodiment of the present invention provides another apparatus for managing a multi-mode base station.
  • the method includes: a detecting unit 91, a second determining unit 92, an obtaining unit 93, and a calling unit. 94.
  • the detecting unit 91 is configured to detect whether there is an added standard board during the operation of the multimode base station.
  • the second determining unit 92 is configured to determine whether the control command is included in the configuration file when there is a new system board.
  • the obtaining unit 93 is configured to obtain the control command from the configuration file when the control file is included in the configuration file.
  • the calling unit 94 is configured to invoke the target system on-board power function or the target system board power-off function according to the control command, where the control command includes the target system board information that needs to perform the power-on operation or the power-off operation, and the corresponding target format.
  • the type of operation that the board needs to perform; the first sending unit 95 is configured to send a power-on operation command or a power-off operation command to the target system board, so that the target system board performs a power-on operation or a power-off operation.
  • the working system in the multi-mode base station automatically obtains the control command from the configuration file, and invokes the power-on operation or the lowering according to the control command.
  • the power-on function the main control board controls the power-on and power-off operations of the target board by sending a power-on operation command or a power-off operation command to the target board. No need to manually go to each base station site for on-site power-on or power-off operation, which saves human resources, and completes the power-off operation of the temporary or permanently retired service-returning boards, saving electricity. Resources.
  • the present invention can be implemented by means of software plus necessary general hardware, and of course, by hardware, but in many cases, the former is a better implementation.
  • the computer software product of the present invention is stored in a readable storage medium, such as a floppy disk, a hard disk or an optical disk of a computer, and includes a plurality of instructions for causing a computer device (which may be a personal computer, The server, or network device, etc.) performs the methods described in various embodiments of the present invention.

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Abstract

本发明实施例公开了一种对多模基站进行管理的方法和装置,涉及通信技术领域,在对多模基站进行管理时,能够节省人力资源。该方法包括:根据控制命令中的操作类型调用目标制式单板上电操作命令或下电操作命令,所述控制命令包含需要执行上电操作或者下电操作的目标制式单板信息,以及相应目标制式单板需要执行的操作类型;向所述目标制式单板发送上电操作命令或下电操作命令。主要应用于对多模基站进行管理。

Description

对多模 进行管理的方法和装置
本申请要求了 2010年 12月 17日提交的, 申请号为 201010593607.7, 发 明名称为"对多模基站进行管理的方法和装置"的中国专利申请的优先权, 其 全部内容通过引用结合在本申请中。 技术领域
本发明涉及通信技术领域,尤其涉及对多模基站进行管理的方法和装置。 背景技术
多模基站指的是将多种制式的基站设备集成为一个设备, 可同时提供多 种制式的无线通信业务。比如能同时支持 GSM和 UMTS两种无线标准的基站称 为 GU双模基站。
目前, 可以通过叠加不同制式的单板的方式形成多模基站。
在实际应用中, 多模基站中的某种制式可能会发生退服, 即退出服务的 情况。 多模基站中的某种制式可能会因为暂时不被需要而暂时退服, 也可能 因为在演进的过程中被淘汰而永久退服。 对于暂时退服的制式在被需要的时 候还需要从新启动。
如图 1所示, 比如 GU双模基站在演进的过程中, GSM可能会暂时退服一 段时间, 需要时再重新启用, 而最终会演进到只有 UMTS 的单模基站, GSM被 淘汰, 在这种情况下, 一直提供 务的制式为工作制式, 例如 UMTS制式; 而 退出服务(暂时或最终)的制式为退服制式, 例如 GSM制式。 图 1 中包括多模 射频模块, GSM主控板, UMTS主控板以及 UMTS业务板。
现有技术中, 对于多模基站中退服制式的处理可以通过人工到基站站点 对退服制式进行下电操作, 拔出退服的硬件设备; 或者人工到基站站点对已 经下电而需要启用的暂时退服制式进行上电操作。
对于上述多模基站中处理退服制式的方式, 由于基站数量较大, 且分布 地域很广, 靠人工逐个基站站点进行操作, 造成对人力资源的浪费。 发明内容
本发明的实施例提供一种对多模基站进行管理的方法和装置。
一方面, 本发明的实施例采用如下技术方案:
一种对多模基站进行管理的方法, 包括:
根据控制命令中的操作类型调用目标制式单板上电操作命令或下电操作 命令, 所述控制命令包含需要执行上电操作或者下电操作的目标制式单板信 息, 以及相应目标制式单板需要执行的操作类型;
向所述目标制式单板发送上电操作命令或下电操作命令。
另一方面, 本发明的实施例采用如下技术方案
一种对多模基站进行管理的装置, 包括:
调用单元, 用于根据控制命令中的操作类型调用目标制式单板上电操作 命令或下电操作命令, 所述控制命令包含需要执行上电操作或者下电操作的 目标制式单板信息, 以及相应目标制式单板需要执行的操作类型;
第一发送单元, 用于向所述目标制式单板发送上电操作命令或下电操作 命令。
本发明实施例提供的对多模基站进行管理的方法和装置, 多模基站中的 工作制式主控板基于控制命令, 向目标制式单板发送上电操作命令或者下电 操作命令, 控制目标制式单板的上电操作和下电操作。 不需要人工到各个基 站站点进行现场上电操作或者下电操作, 节省了人力资源。 附图说明
为了更清楚地说明本发明实施例中的技术方案, 下面将对实施例描述中 所需要使用的附图作筒单地介绍, 显而易见地, 下面描述中的附图仅仅是本 发明的一些实施例, 对于本领域普通技术人员来讲, 在不付出创造性劳动的 前提下, 还可以根据这些附图获得其他的附图。
图 1为 GU双模基站演进过程示意图;
图 2为本发明实施例中一种对多模基站进行管理的方法的流程图; 图 3为本发明实施例中另一种对多模基站进行管理的方法的流程图; 图 4为本发明实施例中又一种对多模基站进行管理的方法的流程图; 图 5为本发明实施例中再一种对多模基站进行管理的方法的流程图; 图 6为本发明实施例中一种对多模基站进行管理的装置的结构图; 图 7为本发明实施例中另一种对多模基站进行管理的装置的结构图; 图 8为本发明实施例中又一种对多模基站进行管理的装置的结构图; 图 9为本发明实施例中再一种对多模基站进行管理的装置的结构图。 具体实施方式
下面将结合本发明实施例中的附图, 对本发明实施例中的技术方案进行 清楚、 完整地描述, 显然, 所描述的实施例仅仅是本发明一部分实施例, 而 不是全部的实施例。 基于本发明中的实施例, 本领域普通技术人员在没有作 出创造性劳动前提下所获得的所有其他实施例, 都属于本发明保护的范围。
本发明实施例提供了一种对多模基站进行管理的方法, 如图 2所示, 包 括以下步骤: 201、工作制式主控板根据控制命令调用目标制式单板上电操作命令或者 下电操作命令, 所述控制命令包含需要执行上电操作或者下电操作的目标制 式单板信息, 以及相应目标制式单板需要执行的操作类型。
本实施例中的控制命令是用来指示工作制式主控板向目标制式单板发送 上电操作命令或者下电操作命令的。
该控制命令中包括需要执行上电操作或者下电操作的目标制式单板的信 息, 比如目标制式单板的地址。 还包括对相应的目标制式单板将执行的操作 类型, 即对该目标制式单板需要执行上电操作还是下电操作。
工作制式主控板根据控制命令中携带的信息调用相应的目标制式单板上 电操作命令或者下电操作命令。
202、 工作制式主控板向目标制式单板发送上电操作命令或下电操作命 令, 以使所述目标制式单板执行上电操作或下电操作。
本实施例中的目标制式单板为控制命令中包含的需要执行上电操作或者 下电操作的目标制式单板, 例如可以是退服制式, 以图 1为例, 具体可以是 GSM制式。
需要指出的是, 本实施例以工作制式主控板为例进行了说明, 作为一种 可选的方式, 也可以将工作制式主控板替换为退服制式主控板, 本发明实施 例对此不做限定。
进一步地, 在步骤 202之后, 还可以包括: 目标制式单板执行上电操作 或下电操作。
在目标制式单板执行上电操作或下电操作后, 进一步地, 目标制式单板 还可以向工作制式主控板发送应答消息。
本实施例提供的对多模基站进行管理的方法 , 多模基站中的工作制式主 控板通过向目标制式单板发送上电操作命令或者下电操作命令的方式, 控制 目标制式单板的上电操作和下电操作。 不需要人工到各个基站站点进行现场 上电操作或者下电操作, 节省了人力资源, 并且完成了对需呀暂时或者永久 退服的退服制式单板的下电操作, 节省了电力资源。
作为本实施例的一种改进, 本发明实施例提供了另一种对多模基站进行 管理的方法, 如图 3所示, 包括以下步骤:
301、 工作制式主控板接收控制命令。
0MC ( Operat ions &Ma intenance Center , 操作维护中心)后台, 向工 作制式主控板的主控软件模块发送控制命令。
本实施例中的控制命令可以用来指示工作制式主控板向目标制式单板发 送上电操作命令或者下电操作命令。
该控制命令包含需要执行上电操作或者下电操作的目标制式单板信息, 以及相应目标制式单板需要执行的操作类型, 该操作类型可以是对该目标制 式单板需要执行上电操作还是下电操作。
该控制命令中包括需要执行上电操作或者下电操作的目标制式单板的信 息, 比如目标制式单板的地址。 还包括对相应的目标制式单板将执行的操作 类型。
作为本实施例的一种实施方式, 本实施例中的控制命令可以是人机语言 命令。
302、 工作制式主控板接收到该控制命令后, 判断该控制命令中包含的需 要执行上电操作或者下电操作的目标制式单板是否为接收所述控制命令的工 作制式主控板。
可选地, 工作制式主控板的主控软件模块接收到该控制命令后, 可以先 检查接收到的控制命令参数是否合法, 在确认合法后执行步骤 302。
即当该控制命令合法时, 工作制式主控板的主控软件模块判断该控制命 令中包含的需要执行上电操作或者下电操作的目标制式单板是否为接收该控 制命令的制式主控板。
当该控制命令中包含的需要执行上电操作或者下电操作的目标制式单板 不是接收该控制命令的制式主控板时, 执行步骤 302a。
当该控制命令中包含的需要执行上电操作或者下电操作的目标制式单板 是接收该控制命令的制式主控板时, 执行步骤 302b。
302a , 工作制式主控板根据控制命令调用目标制式单板上电函数或者目 标制式单板下电函数。 执行步骤 303。
作为本实施例的一种实施方式, 本实施例中的上电操作命令或下电操作 命令可以以目标制式单板上电函数或者目标制式单板下电函数的方式实现。
工作制式主控板的主控软件模块根据控制命令中携带的信息, 从工作制 式主控板的主控机电管理模块中调用相应的目标制式单板上电函数或者目标 制式单板下电函数。
工作制式主控板根据控制命令调用目标制式单板上电函数或者目标制式 单板下电函数, 并从该目标制式单板上电函数或者目标制式单板下电函数中 获取目标制式单板上电操作命令或目标制式单板下电操作命令。
302b , 工作制式主控板向 0MC后台发送异常提示信息。 流程结束。
工作制式主控板的主控软件模块向 0MC后台发送异常提示信息。
303、 工作制式主控板向目标制式单板发送上电操作命令或下电操作命 令, 以使所述目标制式单板执行上电操作或下电操作。
工作制式主控板根据目标制式单板上电函数或者目标制式单板下电函 数, 确定需要向目标制式单板发送的命令, 即上电操作命令或下电操作命令。 工作制式主控板的主控机电管理模块向目标制式单板发送上电操作命令或下 电操作命令。
304、 目标制式单板根据接收到的上电操作命令或下电操作命令执行上电 操作或者下电操作, 并向工作制式主控板发送应答消息。
305、工作制式主控板的主控机电管理模块接收目标制式单板返回的应答 消息, 该应答消息中包括控制命令的执行结果信息。
工作制式主控板的主控机电管理模块在目标制式单板返回应答消息后, 接收该应答消息。 并将该应答消息转发到工作制式主控板的主控软件模块。
306、工作制式主控板的主控软件模块接收主控机电管理模块转发来的目 标制式单板返回的应答消息。
307、 工作制式主控板发送所述控制命令的执行结果。
为了使 0MC后台的用户能够及时的知道其发生的控制命令的执行结果, 工作制式主控板的主控软件模块可以发送所述控制命令的执行结果给 0MC后
308、 工作制式主控板将所述控制命令保存到配置文件中。
可选地, 本实施例中的方法可以包括步骤 308 , 也可以不包括步骤 308。 为了使多模基站在启动过程中, 或者在运行过程中能够发现需要执行上电操 作或者下电操作的目标制式单板, 并对相应的目标制式单板执行上电操作或 者下电操作, 于是需要在配置文件中保存控制命令。 工作制式主控板的主控 软件模块将所述控制命令保存到配置文件中。
需要指出的是, 本实施例以工作制式主控板为例进行了说明, 作为一种 可选的方式, 也可以将工作制式主控板替换为退服制式主控板, 本发明实施 例对此不做限定。
本实施例提供的对多模基站进行管理的方法 , 多模基站中的工作制式主 控板通过向目标制式单板发送上电操作命令或者下电操作命令的方式, 控制 目标制式单板的上电操作和下电操作。 不需要人工到各个基站站点进行现场 上电操作或者下电操作, 节省了人力资源, 并且完成了对暂时或者永久退服 的退服制式单板的下电操作, 节省了电力资源。
本发明实施例提供了又一种对多模基站进行管理的方法, 如图 4所示, 包括以下步骤:
401、工作制式主控板判断配置文件中是否包含用于指示目标制式单板执 行上电操作或者下的操作的控制命令。
在多模基站启动过程中, 或者在多模基站的运行过程中, 而又没有用户 通过 0MC后台发送控制命令时, 对于多模基站中的制式单板, 会存在有些制 式单板本该下电而没有下电, 本该上电而没有上电的情况。 此时, 就需要工 作制式主控板自行作出判断, 判断出多模基站中的哪些制式单板需要进行下 电操作, 哪些制式单板需要进行上电操作。
于是, 工作制式主控板的主控软件模块可以通过查询配置文件内容, 判 断配置文件中是否包含该控制命令。
当工作制式主控板的主控软件模块判断出配置文件中包含所述控制命令 时, 执行步骤 402; 当工作制式主控板的主控软件模块判断出配置文件中不 包含所述控制命令时, 流程结束。
402、 工作制式主控板从配置文件中获取其中的控制命令。
工作制式主控板的主控软件模块从配置文件中获取其中的控制命令。
403、 在获取到控制命令后, 工作制式主控板根据控制命令调用目标制式 单板上电函数或者目标制式单板下电函数, 所述控制命令包含需要执行上电 操作或者下电操作的目标制式单板信息, 以及相应目标制式单板需要执行的 操作类型。
本实施例中的控制命令是用来指示工作制式主控板向目标制式单板发送 上电操作命令或者下电操作命令的。
该控制命令中可以包括需要执行上电操作或者下电操作的目标制式单板 的信息, 比如目标制式单板的地址。 还包括对相应的目标制式单板将执行的 操作类型, 即对该目标制式单板需要执行上电操作还是下电操作。
工作制式主控板的主控软件模块根据控制命令中携带的信息, 从工作制 式主控板的主控机电管理模块中调用相应的目标制式单板上电函数或者目标 制式单板下电函数, 并从该上电函数或者下电函数中获取相应的上电命令或 者下电命令。
404、 工作制式主控板向目标制式单板发送上电操作命令或下电操作命 令, 以使所述目标制式单板执行上电操作或下电操作。
工作制式主控板的主控软件模块根据目标制式单板上电函数或者目标制 式单板下电函数, 确定需要向目标制式单板发送的命令, 即上电操作命令或 下电操作命令。 工作制式主控板的主控机电管理模块向目标制式单板发送上 电操作命令或下电操作命令。
405、 目标制式单板根据接收到的上电操作命令或下电操作命令执行上电 操作或者下电操作, 并向工作制式主控板发送应答消息, 该应答消息中包括 对于控制命令的执行结果信息。
406、 工作制式主控板接收目标制式单板返回的应答消息。
工作制式主控板的主控机电管理模块在目标制式单板返回应答消息后, 接收该应答消息。 并将该应答消息转发到工作制式主控板的主控软件模块。
407、工作制式主控板的主控软件模块接收主控机电管理模块转发的目标 制式单板返回应答消息。
需要指出的是, 本实施例以工作制式主控板为例进行了说明, 作为一种 可选的方式, 也可以将工作制式主控板替换为退服制式主控板, 本发明实施 例对此不做限定。
本实施例提供的对多模基站进行管理的方法,在多模基站的启动过程中, 或者在多模基站的运行过程中, 多模基站中的工作制式自动从配置文件中获 取控制命令, 并根据该控制命令调用上电操作或者下电操作函数, 主控板通 过向目标制式单板发送上电操作命令或者下电操作命令的方式, 控制目标制 式单板的上电操作和下电操作。 不需要人工到各个基站站点进行现场上电操 作或者下电操作, 节省了人力资源, 并且完成了对暂时或者永久退服的退服 制式单板的下电操作, 节省了电力资源。
作为本实施例的一种改进, 本发明实施例提供了再一种对多模基站进行 管理的方法, 如图 5所示, 包括以下步骤:
501、 工作制式主控板检测是否有新增制式单板。
在多模基站的运行过程中, 当工作制式主控板的主控软件模块检测出有 新增制式单板时, 执行步骤 502; 否则流程结束。
502、 工作制式主控板判断配置文件中是否包含控制命令。
在多模基站启动过程中, 或者在多模基站的运行过程中, 而又没有通过
0MC 后台发送控制命令时, 对于多模基站中的制式单板, 会存在有些制式单 板本该下电而没有下电, 本该上电而没有上电的情况。 此时, 就需要工作制 式主控板自行作出判断, 判断出多模基站中的哪些制式单板需要进行下电操 作, 哪些制式单板需要进行上电操作。
于是, 工作制式主控板的主控软件模块可以通过查询配置文件内容, 判 断配置文件中是否包含所述控制命令。
当工作制式主控板的主控软件模块判断出配置文件中包含所述控制命令 时, 执行步骤 503; 当工作制式主控板的主控软件模块判断出配置文件中不 包含所述控制命令时, 流程结束。
503、 工作制式主控板从配置文件中获取其中的控制命令。
工作制式主控板的主控软件模块从配置文件中获取其中的控制命令。
504、 在获取到控制命令后, 工作制式主控板根据控制命令调用目标制式 单板上电函数或者目标制式单板下电函数, 所述控制命令包含需要执行上电 操作或者下电操作的目标制式单板信息, 以及相应目标制式单板需要执行的 操作类型。
本实施例中的控制命令是用于指示工作制式主控板向目标制式单板发送 上电操作命令或者下电操作命令的。
该控制命令中包括需要执行上电操作或者下电操作的目标制式单板的信 息, 比如目标制式单板的地址。 还包括对相应的目标制式单板将执行的操作 类型, 即对该目标制式单板需要执行上电操作还是下电操作。
工作制式主控板的主控软件模块根据控制命令中携带的信息, 从工作制 式主控板的主控机电管理模块中调用相应的目标制式单板上电函数或者目标 制式单板下电函数, 并从该上电函数或者下电函数获取目标制式单板上电操 作命令或者下电操作命令。
505、 工作制式主控板向目标制式单板发送上电操作命令或下电操作命 令, 以使所述目标制式单板执行上电操作或下电操作。 工作制式主控板的主控软件模块根据目标制式单板上电函数或者目标制 式单板下电函数, 确定需要向目标制式单板发送的命令, 即上电操作命令或 下电操作命令。
工作制式主控板的主控机电管理模块向目标制式单板发送上电操作命令 或下电操作命令。
506、 目标制式单板根据接收到的上电操作命令或下电操作命令执行上电 操作或者下电操作, 并向工作制式主控板发送应答消息, 该应答消息中包括 控制命令的执行结果信息。
507、 工作制式主控板接收目标制式单板返回的应答消息。
工作制式主控板的主控机电管理模块在目标制式单板返回应答消息后, 接收该应答消息。 并将该应答消息转发到工作制式主控板的主控软件模块。
508、工作制式主控板的主控软件模块接收主控机电管理模块转发的目标 制式单板返回应答消息。
需要指出的是, 本实施例以工作制式主控板为例进行了说明, 作为一种 可选的方式, 也可以将工作制式主控板替换为退服制式主控板, 本发明实施 例对此不做限定。
本实施例提供的对多模基站进行管理的方法,在多模基站的运行过程中, 多模基站中的工作制式自动从配置文件中获取控制命令, 并根据该控制命令 调用上电操作或者下电操作函数, 主控板通过向目标制式单板发送上电操作 命令或者下电操作命令的方式, 控制目标制式单板的上电操作和下电操作。 不需要人工到各个基站站点进行现场上电操作或者下电操作, 节省了人力资 源, 并且完成了对暂时或者永久退服的退服制式单板的下电操作, 节省了电 力资源。 本发明实施例提供了一种对多模基站进行管理的装置装置,如图 6所示, 包括: 调用单元 61、 第一发送单元 62。
其中,调用单元 61用于根据控制命令中的操作类型调用目标制式单板上 电操作命令或下电操作命令, 所述控制命令包含需要执行上电操作或者下电 操作的目标制式单板信息, 以及相应目标制式单板需要执行的操作类型; 第 一发送单元 62用于向目标制式单板发送上电操作命令或下电操作命令,以使 所述目标制式单板执行上电操作或下电操作。
本实施例提供的对多模基站进行管理的装置, 多模基站中的工作制式主 控板通过向目标制式单板发送上电操作命令或者下电操作命令的方式, 控制 目标制式单板的上电操作和下电操作。 不需要人工到各个基站站点进行现场 上电操作或者下电操作, 节省了人力资源, 并且完成了对暂时或者永久退服 的退服制式单板的下电操作, 节省了电力资源。
作为本实施例的一种改进, 本发明实施例提供另一种对多模基站进行管 理的装置, 如图 7所示, 包括: 接收单元 71、 第一判断单元 72、 调用单元 73、 第一发送单元 74、 保存单元 75、 第二发送单元 76。
其中, 接收单元 71用于接收控制命令。 该控制命令包含需要执行上电操 作或者下电操作的目标制式单板信息, 以及相应目标制式单板需要执行的操 作类型。
第一判断单元 72 用于判断该控制命令中包含的需要执行上电操作或者 下电操作的目标制式单板是否为接收所述控制命令的制式主控板。
调用单元 73 用于当该控制命令中包含的需要执行上电操作或者下电操 作的目标制式单板不是接收所述控制命令的制式主控板时, 根据控制命令调 用目标制式单板上电函数或者目标制式单板下电函数。 第一发送单元 74 用于向目标制式单板发送上电操作命令或下电操作命 令, 以使所述目标制式单板执行上电操作或下电操作。保存单元 75用于将所 述控制命令保存到配置文件中。第二发送单元 76用于向操作维护中心后台发 送所述控制命令的执行结果。
本实施例提供的对多模基站进行管理的装置, 多模基站中的工作制式主 控板通过向目标制式单板发送上电操作命令或者下电操作命令的方式, 控制 目标制式单板的上电操作和下电操作。 不需要人工到各个基站站点进行现场 上电操作或者下电操作, 节省了人力资源, 并且完成了对暂时或者永久退服 的退服制式单板的下电操作, 节省了电力资源。
本发明实施例提供又一种对多模基站进行管理的装置, 如图 8所示, 包 括: 第二判断单元 81、 获取单元 82、 调用单元 83、 第一发送单元 84。
其中, 在多模基站启动过程中, 或者在多模基站运行过程中, 第二判断 单元 81用于判断配置文件中是否包含所述控制命令。
获取单元 82用于当配置文件中包含所述控制命令时,从配置文件中获取 所述控制命令。
调用单元 83 用于根据控制命令调用目标制式单板上电函数或者目标制 式单板下电函数, 所述控制命令包含需要执行上电操作或者下电操作的目标 制式单板信息, 以及相应目标制式单板需要执行的操作类型; 第一发送单元 84用于向目标制式单板发送上电操作命令或下电操作命令, 以使所述目标制 式单板执行上电操作或下电操作。
本实施例提供的对多模基站进行管理的装置,在多模基站的启动过程中, 或者在多模基站的运行过程中, 多模基站中的工作制式自动从配置文件中获 取控制命令, 并根据该控制命令调用上电操作或者下电操作函数, 主控板通 过向目标制式单板发送上电操作命令或者下电操作命令的方式, 控制目标制 式单板的上电操作和下电操作。 不需要人工到各个基站站点进行现场上电操 作或者下电操作, 节省了人力资源, 并且完成了对暂时或者永久退服的退服 制式单板的下电操作, 节省了电力资源。
作为本实施例的一种改进, 本发明实施例提供再一种对多模基站进行管 理的装置, 如图 9所示, 包括: 检测单元 91、 第二判断单元 92、 获取单元 93、 调用单元 94、 第一发送单元 95。
其中, 在多模基站运行过程中, 检测单元 91用于检测是否有新增制式单 板。
第二判断单元 92用于当有新增制式单板时,判断配置文件中是否包含所 述控制命令。
获取单元 93用于当配置文件中包含所述控制命令时,从配置文件中获取 所述控制命令。调用单元 94用于根据控制命令调用目标制式单板上电函数或 者目标制式单板下电函数, 所述控制命令包含需要执行上电操作或者下电操 作的目标制式单板信息, 以及相应目标制式单板需要执行的操作类型; 第一 发送单元 95用于向目标制式单板发送上电操作命令或下电操作命令,以使所 述目标制式单板执行上电操作或下电操作。
本实施例提供的对多模基站进行管理的装置,在多模基站的运行过程中, 多模基站中的工作制式自动从配置文件中获取控制命令, 并根据该控制命令 调用上电操作或者下电操作函数, 主控板通过向目标制式单板发送上电操作 命令或者下电操作命令的方式, 控制目标制式单板的上电操作和下电操作。 不需要人工到各个基站站点进行现场上电操作或者下电操作, 节省了人力资 源, 并且完成了对暂时或者永久退服的退服制式单板的下电操作, 节省了电 力资源。
通过以上的实施方式的描述, 所属领域的技术人员可以清楚地了解到本 发明可借助软件加必需的通用硬件的方式来实现, 当然也可以通过硬件, 但 很多情况下前者是更佳的实施方式。 基于这样的理解, 本发明的技术方案本 计算机软件产品存储在可读取的存储介质中, 如计算机的软盘, 硬盘或光盘 等, 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的方法。
以上所述, 仅为本发明的具体实施方式, 但本发明的保护范围并不局限 于此, 任何熟悉本技术领域的技术人员在本发明揭露的技术范围内, 可轻易 想到变化或替换, 都应涵盖在本发明的保护范围之内。 因此, 本发明的保护 范围应所述以权利要求的保护范围为准。

Claims

权利 要求
1、 一种对多模基站进行管理的方法, 其特征在于, 包括:
根据控制命令调用目标制式单板上电操作命令或下电操作命令, 所述控 制命令包含需要执行上电操作或者下电操作的目标制式单板信息, 以及相应 目标制式单板需要执行的操作类型;
向所述目标制式单板发送所述上电操作命令或所述下电操作命令, 以使 所述目标制式单板执行上电操作或下电操作。
2、根据权利要求 1所述的对多模基站进行管理的方法,其特征在于, 在 所述根据控制命令调用目标制式单板上电操作命令或下电操作命令之前, 所 述方法还包括:
接收所述控制命令。
3、 根据权利要求 2所述的对多模基站进行管理的方法, 其特征在于, 在 所述根据控制命令调用目标制式单板上电操作命令或下电操作命令之前, 所 述方法还包括:
判断所述控制命令包含的需要执行上电操作或者下电操作的目标制式单 板是否为接收所述控制命令的制式主控板;
所述根据控制命令调用目标制式单板上电操作命令或下电操作命令包 括: 当所述控制命令中包含的需要执行上电操作或者下电操作的目标制式单 板不是接收所述控制命令的制式主控板时, 根据控制命令调用目标制式单板 上电操作命令或下电操作命令。
4、根据权利要求 3所述的对多模基站进行管理的方法,其特征在于, 所 述方法还包括: 将所述控制命令保存到配置文件中。
5、根据权利要求 4所述的对多模基站进行管理的方法,其特征在于, 所 述方法还包括:
向操作维护中心发送所述控制命令的执行结果。
6、 根据权利要求 1所述的对多模基站进行管理的方法, 其特征在于, 在 所述根据控制命令调用目标制式单板上电操作命令或下电操作命令之前, 所 述方法还包括:
判断配置文件中是否包含所述控制命令;
当所述配置文件中包含所述控制命令时, 从配置文件中获取所述控制命 令。
7、 根据权利要求 6所述的对多模基站进行管理的方法, 其特征在于, 在 多模基站的运行过程中,在所述判断配置文件中是否包含所述控制命令之前, 所述方法还包括:
检测是否有新增制式单板;
所述判断配置文件中是否包含所述控制命令包括: 当检测出有新增制式 单板时, 判断配置文件中是否包含所述控制命令。
8、根据权利要求 1至 7任一项所述的对多模基站进行管理的方法, 其特 征在于, 所述控制命令为人机语言命令。
9、根据权利要求 1至 7任一项所述的对多模基站进行管理的方法, 其特 征在于, 所述根据控制命令调用目标制式单板上电操作命令或下电操作命令 包括:根据控制命令调用目标制式单板上电函数或者目标制式单板下电函数。
10、 一种对多模基站进行管理的装置, 其特征在于, 包括:
调用单元, 用于根据控制命令调用目标制式单板上电操作命令或下电操 作命令, 所述控制命令包含需要执行上电操作或者下电操作的目标制式单板 信息, 以及相应目标制式单板需要执行的操作类型;
第一发送单元, 用于向所述目标制式单板发送所述上电操作命令或所述 下电操作命令, 以使所述目标制式单板执行上电操作或下电操作。
11、 根据权利要求 10所述的对多模基站进行管理的装置, 其特征在于, 所述对多模基站进行管理的装置还包括:
接收单元, 用于接收所述控制命令。
12、 根据权利要求 11所述的对多模基站进行管理的装置, 其特征在于, 所述对多模基站进行管理的装置还包括:
第一判断单元, 用于判断所述控制命令中包含的需要执行上电操作或者 下电操作的目标制式单板是否为接收所述控制命令的制式主控板;
所述调用单元, 用于当所述控制命令中包含的需要执行上电操作或者下 电操作的目标制式单板不是接收所述控制命令的制式主控板时, 根据控制命 令中的操作类型调用目标制式单板上电操作命令或下电操作命令。
13、 根据权利要求 12所述的对多模基站进行管理的装置, 其特征在于, 所述对多模基站进行管理的装置还包括:
保存单元, 用于将所述控制命令保存到配置文件中。
14、 根据权利要求 12所述的对多模基站进行管理的装置, 其特征在于, 所述对多模基站进行管理的装置还包括:
第二发送单元, 用于向操作维护中心发送所述控制命令的执行结果。
15、 根据权利要求 10所述的对多模基站进行管理的装置, 其特征在于, 所述对多模基站进行管理的装置还包括:
第二判断单元, 用于判断配置文件中是否包含所述控制命令; 获取单元, 当所述配置文件中包含所述控制命令时, 从配置文件中获取 所述控制命令。
16、 根据权利要求 15所述的对多模基站进行管理的装置, 其特征在于, 所述对多模基站进行管理的装置还包括: 检测单元, 用于检测是否有新增制式单板;
所述第二判断单元, 用于当所述检测单元检测出有新增制式单板时, 判 断配置文件中是否包含所述控制命令。
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