WO2010105444A1 - 控制自优化开关的方法、装置和系统 - Google Patents

控制自优化开关的方法、装置和系统 Download PDF

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Publication number
WO2010105444A1
WO2010105444A1 PCT/CN2009/070935 CN2009070935W WO2010105444A1 WO 2010105444 A1 WO2010105444 A1 WO 2010105444A1 CN 2009070935 W CN2009070935 W CN 2009070935W WO 2010105444 A1 WO2010105444 A1 WO 2010105444A1
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WO
WIPO (PCT)
Prior art keywords
self
optimizing switch
optimizing
switch
state
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2009/070935
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English (en)
French (fr)
Inventor
王蔚
邹兰
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Huawei Technologies Co Ltd
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Huawei Technologies Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority to EP19194844.7A priority Critical patent/EP3668008B1/en
Priority to EP09841727A priority patent/EP2410695A4/en
Priority to CN200980123567.5A priority patent/CN102084623B/zh
Priority to BRPI0924651A priority patent/BRPI0924651A2/pt
Priority to EP16177697.6A priority patent/EP3160085B1/en
Priority to PCT/CN2009/070935 priority patent/WO2010105444A1/zh
Application filed by Huawei Technologies Co Ltd filed Critical Huawei Technologies Co Ltd
Publication of WO2010105444A1 publication Critical patent/WO2010105444A1/zh
Priority to US13/237,134 priority patent/US10305727B2/en
Anticipated expiration legal-status Critical
Priority to US16/396,234 priority patent/US10735255B2/en
Priority to US16/929,992 priority patent/US11431560B2/en
Ceased legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0803Configuration setting
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0803Configuration setting
    • H04L41/0823Configuration setting characterised by the purposes of a change of settings, e.g. optimising configuration for enhancing reliability

Definitions

  • the present invention relates to the field of communications, and in particular, to a method, apparatus and system for controlling a self-optimizing switch.
  • SON Self Organizing Networks
  • the 3GPP (3rd Generation Partnership Project, third-generation partner, the 'Jo'J) network management introduced the concept of Integrated Reference Point (IRP).
  • the information model of the IRP definition interface includes: managed object, resource model (NRM), information interaction semantics and so on.
  • the object of NRM management is all the physical and logical networks owned by the operators and the nodes (such as the physical equipment of the equipment room) that connect these networks.
  • the standard northbound interface (Interf ace_N ) is between the Integrated Reference Point Manager (IRPManager) and the Integrated Reference Point Agent (IRPAgent).
  • IRPs including: Alarm IRP, Basic CM (Basic Configuration Management) IRP, Bulk CM (Big Data Configuration Management) IRP, PM (Performance Management) IRP, Generic Network Resource (Generic Network Resource) IRP, Not if icat ion (notification) IRP, Inventory (inventory) IRP, etc.
  • Alarm IRP Basic CM (Basic Configuration Management) IRP
  • Bulk CM Big Data Configuration Management
  • PM Performance Management
  • IRP Generic Network Resource
  • Not icat ion (notification) IRP Notification
  • Inventory inventory
  • Embodiments of the present invention provide a method, apparatus, and system for controlling a self-optimizing switch, capable of controlling start and stop of a self-optimizing process, and knowing the state of the self-optimizing switch.
  • a method for controlling a self-optimizing switch comprising: obtaining a self-optimizing switch target state; and transmitting, to the managed unit, a setting command including the target state, the setting command instructing the managed unit to modify the state of the self-optimizing switch to State the target state.
  • a method for controlling a self-optimizing switch comprising: receiving a setting command issued by a management unit and including a self-optimizing switch target state; and modifying a state of the self-optimizing switch to the target state according to the setting command.
  • a device for controlling a self-optimizing switch comprising: an obtaining module, configured to acquire a self-optimizing switch, wherein the setting command instructs a managed unit to modify a state of the self-optimizing switch to a target state.
  • a device for controlling a self-optimizing switch comprising: a receiving setting command module, configured to receive a setting command that is sent by a management unit and includes a self-optimizing switch target state; and a processing module, configured to: self-optimize the state of the switch according to the setting command Modified to the target state.
  • a system for controlling a self-optimizing switch comprising: a management unit, configured to acquire a target state of the self-optimizing switch, and send a setting command including the target state to the managed unit; the managed unit is configured to receive the management unit The setting command including the self-optimizing switch target state is modified, and the state of the self-optimizing switch is modified to the target state according to the setting command.
  • a method for controlling a self-optimizing switch comprising: issuing a query command to a managed unit, the query command indicating obtaining a current state of the self-optimizing switch; and receiving a current state of the self-optimizing switch returned by the managed unit.
  • a method for controlling a self-optimizing switch comprising: receiving a query command issued by a management unit; obtaining a current state of the self-optimizing switch according to the query command; and returning a current state of the self-optimizing switch to the management unit.
  • An apparatus for controlling a self-optimizing switch comprising: a sending module, configured to send a query command to the managed unit, the query command indicating a current state of the self-optimizing switch; and a receiving module, configured to receive the self returned by the managed unit Optimize the current state of the switch.
  • An apparatus for controlling a self-optimizing switch comprising: a receiving query command module, configured to receive a query command issued by a management unit; a query module, configured to obtain a current state of the self-optimizing switch according to the query command; The current state of the self-optimizing switch is returned to the management unit.
  • a system for controlling a self-optimizing switch comprising: a management unit, configured to send a query command to the managed unit, instruct to obtain a current state of the self-optimizing switch, and receive a current state of the self-optimizing switch returned by the management unit; And a unit, configured to receive a query command sent by the management unit, obtain a current state of the self-optimization switch according to the query command, and return a current state of the self-optimization switch to the management unit.
  • the embodiment of the invention provides a method, a device and a system for controlling a self-optimizing switch.
  • the required self-optimizing switch target state is first known, and then the state of the self-optimizing switch is modified to make the state and target of the self-optimizing switch The status is consistent; you can also get the current status of the self-optimizing switch at any time by querying the command.
  • the state of the self-optimizing switch can be controlled, thereby controlling the start or stop of the self-optimization, and the state of the self-optimizing switch can be known at any time to meet the needs of self-optimization management.
  • FIG. 1 is a flowchart of a method for controlling a self-optimizing switch according to Embodiment 1 of the present invention
  • FIG. 2 is a flowchart of a method for controlling a self-optimizing switch according to Embodiment 1 of the present invention
  • FIG. 3 is a flowchart of a method for controlling a self-optimizing switch according to Embodiment 2 of the present invention.
  • FIG. 4 is a flowchart of a method for controlling a self-optimizing switch according to Embodiment 2 of the present invention.
  • FIG. 5 is a flowchart of a method for controlling a self-optimizing switch according to Embodiment 3 of the present invention
  • FIG. 6 is a block diagram of a device for controlling a self-optimizing switch according to Embodiment 6 of the present invention
  • FIG. 7 is a block diagram of a device for controlling a self-optimizing switch according to Embodiment 6 of the present invention.
  • FIG. 8 is a block diagram of a device for controlling a self-optimizing switch according to Embodiment 7 of the present invention.
  • FIG. 9 is a block diagram of a device for controlling a self-optimizing switch according to Embodiment 7 of the present invention.
  • FIG. 10 is a system block diagram of a self-optimizing switch according to Embodiment 8 of the present invention.
  • FIG. 11 is a block diagram of a system for controlling a self-optimizing switch according to Embodiment 9 of the present invention.
  • 3GPP's self-optimization areas include Handover, Load Ba ing (load balancing), Interference Control, Capac ty & Coverage, and RACH Opt imating. Optimization), Energy Savings.
  • the embodiment of the present invention configures a self-optimizing switch attribute in each field, and the corresponding relationship is as shown in Table 1.
  • the corresponding value of the self-optimizing switch attribute of each field may be a Boolean parameter.
  • the self-optimization switch attribute value is True, it indicates that the field opens the self-optimization switch; otherwise, the field closes the self-optimization switch.
  • Embodiments of the present invention implement self-optimizing switch control by these parameters, thereby controlling self-optimizing start and stop.
  • the managed unit may be a network element management system or a network device including an integrated reference point proxy, and the managed unit may also be a network device managed by the network management system via the network element management system, and the management unit may be A network management system that includes an integrated reference point manager.
  • Embodiment 1 is a diagrammatic representation of Embodiment 1:
  • Embodiments of the present invention provide a method of controlling a self-optimizing switch. As shown in Figure 1, the method includes:
  • the user-entered command indicates the self-optimizing switch state desired by the user. For example, if the user desires that the self-optimization of the network can be stopped, the target state of the self-optimizing switch in the command is off.
  • the setting result returned by the managed unit is also received.
  • Embodiments of the present invention provide a method of controlling a self-optimizing switch. As shown in Figure 2, the method includes:
  • the self-optimizing switch is turned off; if the target state of the self-optimizing switch is turned on, the self-optimizing switch is turned on.
  • An embodiment of the present invention provides a method for controlling a self-optimizing switch, which is first obtained in the embodiment of the present invention. Know the user's desired self-optimizing switch target state, and then modify the state of the self-optimizing switch to make the state of the self-optimizing switch consistent with the target state. Through the technical solution provided by the embodiment of the present invention, the state of the self-optimizing switch can be controlled, thereby controlling the start or stop of the self-optimization, and meeting the needs of the self-optimization management.
  • Embodiment 2 is a diagrammatic representation of Embodiment 1:
  • Embodiments of the present invention provide a method of controlling a self-optimizing switch. As shown in Figure 3, the method includes:
  • Embodiments of the present invention provide a method of controlling a self-optimizing switch. As shown in Figure 4, the method includes:
  • the embodiment of the present invention provides a method for controlling a self-optimizing switch.
  • the current state of the self-optimizing switch is obtained by using a query command, and the current state of the self-optimizing switch can be known at any time by using the technical solution provided by the embodiment of the present invention. , to meet the needs of self-optimization management.
  • Embodiment 3 is a diagrammatic representation of Embodiment 3
  • the management unit may first query the managed unit for the state of the self-optimizing switch. If the state of the self-optimizing switch is consistent with the state required by the user, the management unit may no longer be The management unit issues a setup command.
  • Embodiments of the present invention provide a method of controlling a self-optimizing switch.
  • the method includes:
  • the user-entered command indicates the self-optimizing switch state desired by the user. For example, if the user desires that the self-optimization of the network can be stopped, the target state of the self-optimizing switch in the command is off. 2, obtaining the current state of the self-optimizing switch;
  • the current state of the self-optimizing switch can be obtained by using, but not limited to, the following method: sending a query command to the managed unit, the query command indicating the current state of the self-optimizing switch, and then receiving the self returned by the management unit. Optimize the current state of the switch.
  • the setting result returned by the managed unit is also received.
  • Embodiments of the present invention provide a method of controlling a self-optimizing switch.
  • the method includes:
  • the query command sent by the management unit is further received, and the current state of the self-optimizing switch is obtained according to the query command, and then the current state of the self-optimizing switch is returned to the management unit.
  • the self-optimizing switch is turned off; if the target state of the self-optimizing switch is turned on, the self-optimizing switch is turned on. After modifying the state of the self-optimizing switch to the target state, returning the setting result to the management unit. If the state of the self-optimizing switch is successfully changed to the target state, then the true return to the management unit is performed, if the self-optimizing switch is not successfully The state is modified to the target state, then return false to the snap-in.
  • the embodiment of the invention provides a method, a device and a system for controlling a self-optimizing switch.
  • the current state of the self-optimizing switch is first obtained, and then the current state of the self-optimizing switch is compared with the target state input by the user. If the current state of the self-optimizing switch does not meet the user's needs, modify the state of the self-optimizing switch so that the state of the self-optimizing switch is consistent with the target state.
  • the state of the self-optimizing switch can be known, and the state of the self-optimizing switch can be controlled, thereby controlling the self-optimized starting or stopping, and the self-optimizing management is satisfied.
  • Embodiment 4 is a diagrammatic representation of Embodiment 4:
  • a self-optimizing IRP is newly added in the 3GPP northbound interface, and the related operations of the IRP are defined to achieve the purpose of controlling the self-optimizing switch.
  • Embodiments of the present invention provide a method of controlling a self-optimizing switch. As shown in Figure 5, the method includes:
  • the integrated reference point manager sends a query command to the integrated reference point agent.
  • the user sends an inquiry command to the IRP Agent through the IRP Manager, indicating that the self-optimizing switch supported by the corresponding managed unit is obtained.
  • the format of the above query command may be: listSoFuncSwitch (ctr 10b j Inf omat ion, optimizationTypeList).
  • the input parameter c trlObjlnfomati on represents a managed unit that provides self-optimization capability.
  • the possible value types are string or enumerated. Possible values are: EM (element management system), NE instance (one or more Network element instance) and NE TYPE (network element type).
  • Optimizati onTypeL i s t is a list of optimized switch types that the managed unit has. The type of each element in the list is the type of optimizationType, which indicates the type of optimization switch that the managed unit has.
  • the optimizationType type may be an enumeration type.
  • LB, ICIC, H0, RACH, CC, and ES respectively represent load balancing self-optimization, small-interval interference coordination self-optimization, handover self-optimization, and random access channel optimization. , capacity and coverage self-optimization, energy-saving self-optimization.
  • the integrated reference point proxy returns a current state of the self-optimizing switch to the integrated reference point manager. State.
  • the integrated reference point proxy After receiving the query command issued by the integrated reference point manager, the integrated reference point proxy queries the switch state of the self-optimized domain supported by the corresponding managed unit, and returns through the current state information list of the self-optimizing switch possessed by the managed unit.
  • the current state of the self-optimizing switch being queried, for example, by returning the queryed self-optimized current state information list to the integrated reference point manager via the output parameter se 1 f Op t Func Sw it chL ist, each element in the list is managed
  • the format of the query command issued is: listSoFuncSwitch(EM, ICIC), if the returned query result is: EM, (ICIC, On), indicating that the current state of the inter-cell interference coordination self-optimization switch in the EM is on.
  • the query command format issued is: listSoFuncSwitch(eNodeB_A, (LB, ICIC) )), if the returned query result is: eNodeB.A, (LB, on; ICIC, off ), indicating that the current state of the load balancing self-optimizing switch on the eNodeB_A is on, and the current state of the small-interval interference coordination self-optimizing switch is off.
  • the format of the query command issued is: 1 is tSoFuncSwi tch ( (eNodeB.A, eNodeB.B) , (LB, ICIC)) , if the returned query result is: eNodeB_A, (LB, on, IC, off ) ; eNodeB.B, (LB, on, ICIC, on) , indicating that the state of the load balancing self-optimizing switch on the eNodeB_A is on, the state of the small-interval interference coordination self-optimizing switch is off, the state of the load balancing self-optimizing switch on the eNodeB_B, and the state of the small-interval interference coordination self-optimizing
  • the integrated reference point manager wants to query the state of the load balancing self-optimizing switch and the small-interval interference coordination self-optimizing switch on the network element of a certain type (such as eNodeB type), the format of the query command issued is: listSoFuncSwitch( ENBFunction, (LB, ICIC)), the return result includes the state of the load balancing optimization switch and the small interval interference coordination self-optimizing switch in all the NEs of the type eNodeB.
  • the returned query result is: eNodeB.A, (LB, on; ICIC, off ); eNodeB.B, (LB, on; ICIC, off ) , indicating that the load balancing self-optimized switch state on eNodeB_A is on, small interval
  • the interference coordination self-optimized switch state is off; 6 ⁇ (168_8 on load balancing self-optimized switch state is on, small-interval interference coordination self-optimized switch state is off.
  • the integrated reference point manager sends a setting command to the integrated reference point agent, instructing the managed unit to modify the state of the self-optimizing switch to the target state.
  • the format of the setting command issued by the integrated reference point manager is setSoFuncSwi tch (ctrlObjlnf omat ion, opt imizat ionTypeSwi tchLis t).
  • ctrlObjlnf omation represents a managed unit that provides self-optimization capabilities
  • opt imizat ionTypeSwi tchLis t is a specific switch parameter ⁇ 'J table, such as List of ⁇ optimizationType, switch>, specific parameter description reference query command listSoFuncSwitch description.
  • the integrated reference point manager sends a set command setSoFuncSwi tch (EM, ICIC, off) to the IRP Agent.
  • SoFuncSwi tch EM, ICIC, off
  • the integrated reference point manager sends the IRP Agent to the IRP Agent.
  • Set the command setSoFuncSwi tch ( eNodeB.A, (ICIC, on) , (CC, on) ).
  • the integrated reference point manager sends a setting command setSoFuncSwi tch (eNodeB_A, eNodeB. B) , (LB, off) , (CC, off) ).
  • the setting command issued by the integrated reference point manager to the IRP Agent is setSoFuncSwi tch ( ENBFunc t ion, ( RACH, on ) , (HO, on) ).
  • the integrated reference point proxy returns a setting result to the integrated reference point manager.
  • the integrated reference point agent After the integrated reference point agent receives the setup command issued by the integrated reference point manager, it also returns the setup result to the integrated reference point manager.
  • the integrated reference point proxy If the integrated reference point proxy successfully sets the state of the self-optimizing switch to the target state, the integrated reference point agent returns true to the integrated reference point manager, if the integrated reference point agent does not successfully set the state of the self-optimizing switch to the target state, The integrated reference point proxy returns false to the integrated reference point manager.
  • the embodiment of the present invention provides a method for controlling a self-optimizing switch.
  • the technical solution provided by the embodiment of the present invention can know the state of the self-optimizing switch at any time, and can control the state of the self-optimizing switch, thereby controlling the self-optimizing startup or Stop, meet the needs of self-optimization management.
  • Embodiment 5 is a diagrammatic representation of Embodiment 5:
  • Embodiments of the present invention provide a method of controlling a self-optimizing switch.
  • the embodiment of the invention implements the control self-optimization switch by modifying the NRM in the existing NRM IRP.
  • the embodiment of the present invention defines a corresponding switch attribute, and the switch is a Boolean value. When the switch property is true, the self-optimization switch is turned on; otherwise, it is turned off.
  • the entities providing self-optimization capability may be distributed on the EM, or may be distributed on each NE, or even on the EM and NE at the same time, it is necessary to add switch control attributes to the NRMs of the IRPAgent, EM, and NE respectively.
  • the IRPAgent attribute table after adding the switch control attribute. Attribute name support qualified read limit write limit iRPAgentld MM - sys temDN CM - self O tHOFuncEnabled CM MM self O t LBFuncEnab led CM MM self Opt ICFuncEnab led CM MM self O tCCFuncEnabled CM MM selfOptRACHFuncEnabled CM MM self O tESFuncEnabled CM MM where attribute iRPAgentld , sys tem ⁇ is an existing attribute of the existing IRPAgent NRM, the attributes selfOptHOFuncEnabled, self O tLBFuncEnabled, self O t ICFuncEnab led, self O tCCFuncEnabled, selfO tRACHFuncEnabled, self OptESFuncEnabled are newly added attributes.
  • M means mandatory.
  • CM means mandatory under certain conditions.
  • C means conditional.
  • the support limit of the attribute selfOptRACHFuncEnabled is CM
  • the corresponding read limit is M
  • the corresponding write limit is M. Note that the switch state of the attribute selfOptRACHFuncEnabled can be queried when self-optimization is supported, and the switch state of the attribute selfOptRACHFuncEnabled can be set.
  • the ManagementNode NRM attribute table of the EM after adding the switch control attribute As shown in Table 3, the ManagementNode NRM attribute table of the EM after adding the switch control attribute.
  • switch control attribute When the integrated reference point agents are distributed on each NE, it is necessary to add a switch control attribute to the NRM of each NE. For example, when the integrated reference point proxy is distributed in the eNodeB type network element, the switch control attribute needs to be added to the eNodeB's NRM. Table 4 shows the ENBFunction NRM attribute table of the eNB after adding the switch control attribute.
  • the existing Basic/Bulk CM IRP has defined how to query the NRM attribute and how to set the attribute.
  • the embodiment of the present invention can query the status of the self-optimizing switch by using the existing Basic/Bulk CMIRP operation, and The state of the self-optimizing switch is set to achieve the purpose of controlling the self-optimizing start or stop.
  • the embodiment of the present invention provides a method for controlling a self-optimizing switch.
  • the technical solution provided by the embodiment of the present invention can control the state of the self-optimizing switch, know the state of the self-optimizing switch, and control the self-optimizing start or stop to satisfy Self-optimized management needs.
  • Embodiments of the present invention also provide an apparatus for controlling a self-optimizing switch. As shown in FIG. 6, the apparatus includes an acquisition module 61 and a processing module 62.
  • the obtaining module 61 is configured to obtain a target state of the self-optimizing switch, and the processing module 62 is configured to send a setting command including the target state to the managed unit, where the setting command instructs the managed unit to modify the self-optimizing switch state to Target status.
  • the obtaining module is further configured to obtain a current state of the self-optimizing switch, where the acquiring module includes a sending unit and a receiving unit.
  • the sending unit is configured to send a query command to the managed unit, where the query command indicates the current state of the self-optimizing switch, and the receiving unit is configured to receive the current state of the self-optimizing switch returned by the managed unit.
  • the receiving module is further configured to receive the setting result returned by the management unit.
  • the embodiment of the present invention further provides a device for controlling a self-optimizing switch. As shown in FIG. 7, the device includes a receiving setting command module 71 and a processing module 72.
  • the receiving setting command module 71 is configured to receive a setting command that is sent by the management unit and includes a self-optimizing switch target state, and the processing module 72 is configured to modify the state of the self-optimizing switch to the target state according to the setting command.
  • the apparatus also includes a transmitting module 73 for returning a setting result to the management unit.
  • the device is further configured to report the current state of the self-optimizing switch to the management unit, and the device further includes a receiving query command module, a query module, and a sending module.
  • the receiving query command module is configured to receive a query command sent by the management unit; the query module is configured to obtain a current state of the self-optimizing switch according to the query command; and the sending module is configured to return a current state of the self-optimizing switch to the management unit.
  • An embodiment of the present invention provides a device for controlling a self-optimizing switch.
  • the technical solution provided by the embodiment of the present invention can know the current state of the self-optimizing switch, and control the state of the self-optimizing switch, thereby controlling the self-optimizing start or stop. , to meet the needs of self-optimization management.
  • the embodiment of the present invention further provides a device for controlling a self-optimizing switch. As shown in FIG. 8, the device includes a transmitting module 81 and a receiving module 82.
  • the sending module 81 is configured to send a query command to the managed unit, where the query command indicates the current state of the self-optimizing switch, and the receiving module 82 is configured to receive the current state of the self-optimizing switch returned by the managed unit.
  • the embodiment of the present invention further provides a device for controlling a self-optimizing switch.
  • the device includes a receiving query command module 91, a query module 92, and a sending module 93.
  • the receiving query command module 91 is configured to receive a query command issued by the management unit; the query module 92 is configured to obtain a current state of the self-optimizing switch according to the query command; and the sending module 93 is configured to return a self-optimizing switch to the management unit. The current state.
  • the embodiment of the present invention provides a device for controlling a self-optimizing switch.
  • the current state of the self-optimizing switch is obtained by using a query command, and the current technical solution provided by the embodiment of the present invention can know the current state of the self-optimizing switch at any time. State, meeting the needs of self-optimization management.
  • the embodiment of the present invention further provides a system for controlling a self-optimizing switch. As shown in FIG. 10, the system includes a management unit 101 and a managed unit 102.
  • the management unit 101 is configured to obtain a target state of the self-optimizing switch, and send a setting command including the target state to the managed unit.
  • the managed unit 102 is configured to receive the target state of the self-optimizing switch delivered by the management unit 101. Setting a command, and modifying the state of the self-optimizing switch to the target state according to the setting command.
  • the management unit is further configured to send a query command to the managed unit, where the query command indicates acquiring a current state of the self-optimizing switch, and receiving a current state of the self-optimizing switch returned by the management unit;
  • the method further includes receiving a query command issued by the management unit, and returning a current state of the self-optimizing switch to the management unit.
  • the embodiment of the present invention provides a system for controlling a self-optimizing switch.
  • a self-optimizing switch target state required by a user is first known, and then the state of the self-optimizing switch is modified, so that the state of the self-optimizing switch is consistent with the target state.
  • the state of the self-optimizing switch can be controlled, thereby controlling the start or stop of the self-optimization, and the need for self-optimization management is satisfied.
  • Example 9 Embodiments of the present invention provide a system for controlling a self-optimizing switch, the system including a management unit
  • the management unit 111 is configured to send a query command to the managed unit, instructing to acquire the current state of the self-optimizing switch, and receiving the current state of the self-optimizing switch returned by the management unit; the managed unit 112 is configured to receive the management unit.
  • the issued query command obtains the current state of the self-optimizing switch according to the query command, and returns the current state of the self-optimizing switch to the management unit.
  • the embodiment of the present invention provides a system for controlling a self-optimizing switch.
  • the current state of the self-optimizing switch is obtained by using a query command, and the current technical solution provided by the embodiment of the present invention can know the current state of the self-optimizing switch at any time. State, meeting the needs of self-optimization management.
  • the present invention can be implemented by means of software plus a necessary general hardware platform, and of course, can also be through hardware, but in many cases, the former is a better implementation. the way.
  • the technical solution of the present invention which is essential or contributes to the prior art, may be embodied in the form of a software product stored in a readable storage medium, such as a floppy disk of a computer.
  • a hard disk or optical disk or the like includes instructions for causing a computer device (which may be a personal computer, a server, or a network device, etc.) to perform the methods described in various embodiments of the present invention.

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控制自优化开关的方法、 装置和系统
技术领域
本发明涉及通信领域, 尤其涉及一种控制自优化开关的方法、 装置和系 统。
背景技术
在 LTE ( Long Term Evolution, 长期演进) 系统中, 釆用 SON ( Self Organizing Networks, 自组织网絡)技术, SON将专家的经验和智能技术等 固化为自动程序, 让网絡具备自动搜集数据、 自动分析发现问题、 自动调整 的能力, 自优化(Self-Optimization) 即为 SON的一个用例。
对于 SON 的自优化, 有时候会希望它们能够自动运行, 自动的对网絡参 数、 性能等进行优化计算, 并且希望能够随时获知自优化的状态, 实现完全 的自优化管理。 但是, 在某些时候(比如网絡的全网调试、 测试或者网絡运 行已经艮稳定的情况下), 希望能够保持网絡现状, 而不希望启动网絡的自优 化。 甚至在某些特殊时候(比如做网絡的部分功能调试等), 只希望某部分网 絡自优化停止, 而不影响其他自优化流程的运行。 因此, 这些实际的场景需 求, 需要 LTE 不仅能提供网絡的自优化, 也必须能控制各优化功能的启动和 停止
3GPP ( 3rd Generation Partnership Project , 第三代合作伙伴计戈 'J ) 网管引入了集成参考点 (Integration Reference Point, IRP ) 的概念。 IRP 定义接口的信息模型包括: 被管对象、 资源模型 (NRM)、 信息交互语义等内 容。 其中, NRM管理的对象就是运营商所拥有的全部物理、 逻辑网絡以及连接 这些网絡的节点 (如机房物理设备等)。 集成参考点管理者(IRPManager)和 集成参考点代理(IRPAgent)之间是标准的北向接口 ( Interf ace_N )。
目前, 3GPP已经定义的 IRP包括: Alarm (告警) IRP、 Basic CM (基本 配置管理) IRP、 Bulk CM(大数据配置管理) IRP、 PM (性能管理) IRP、 Generic Network Resource (通用网洛资源) IRP、 Not if icat ion (通知) IRP, Inventory (库存) IRP等。 这些 IRP已经满足了绝大部分的接口需求和业务需求。 但是, 在 SON的自优化管理中, 已有的这些 IRP无法满足控制自优化流 程的启动和停止的需求, 并且不能随时获知自优化流程的状态。
发明内容
本发明实施例提供了一种控制自优化开关的方法、 装置和系统, 能够控 制自优化流程的启动和停止, 并获知自优化开关的状态。
为达到上述目的, 本发明的实施例釆用如下技术方案:
一种控制自优化开关的方法, 包括: 获取自优化开关目标状态; 向被管 理单元下发包含所述目标状态的设置命令, 所述设置命令指示被管理单元将 自优化开关的状态修改为所述目标状态。
一种控制自优化开关的方法, 包括: 接收管理单元下发的包含自优化开 关目标状态的设置命令; 根据所述设置命令将自优化开关的状态修改为所述 目标状态。
一种控制自优化开关的装置, 包括: 获取模块, 用于获取自优化开关目 所述设置命令指示被管理单元将自优化开关的状态修改为目标状态。
一种控制自优化开关的装置, 包括: 接收设置命令模块, 用于接收管理 单元下发的包含自优化开关目标状态的设置命令; 处理模块, 用于根据所述 设置命令将自优化开关的状态修改为所述目标状态。
一种控制自优化开关的系统, 包括: 管理单元, 用于获取自优化开关的 目标状态, 并向被管理单元下发包含所述目标状态的设置命令; 被管理单元, 用于接收管理单元下发的包含自优化开关目标状态的设置命令, 并根据所述 设置命令将自优化开关的状态修改为所述目标状态。
一种控制自优化开关的方法, 包括: 向被管理单元下发查询命令, 所述 查询命令指示获取自优化开关的当前状态; 接收被管理单元返回的自优化开 关的当前状态。 一种控制自优化开关的方法, 包括: 接收管理单元下发的查询命令; 根 据所述查询命令获取自优化开关的当前状态; 向所述管理单元返回自优化开 关的当前状态。
一种控制自优化开关的装置, 包括: 发送模块, 用于向被管理单元下发 查询命令, 所述查询命令指示获取自优化开关的当前状态; 接收模块, 用于 接收被管理单元返回的自优化开关的当前状态。
一种控制自优化开关的装置, 包括: 接收查询命令模块, 用于接收管理 单元下发的查询命令; 查询模块, 用于根据所述查询命令获取自优化开关的 当前状态; 发送模块, 用于向所述管理单元返回自优化开关的当前状态。
一种控制自优化开关的系统, 包括: 管理单元, 用于向被管理单元下发 查询命令, 指示获取自优化开关的当前状态, 并接收被管理单元返回的自优 化开关的当前状态; 被管理单元, 用于接收所述管理单元下发的查询命令, 根据所述查询命令获取自优化开关的当前状态, 并向所述管理单元返回自优 化开关的当前状态。
本发明实施例提供了一种控制自优化开关的方法、 装置和系统, 本发明 实施例中先获知需要的自优化开关目标状态, 之后修改自优化开关的状态, 使自优化开关的状态与目标状态一致; 也可以随时通过查询命令获取自优化 开关的当前状态。 通过本发明实施例提供的技术方案, 能够控制自优化开关 的状态, 从而控制自优化的启动或停止, 并且能够随时获知自优化开关的状 态, 满足自优化管理的需要。
附图说明
图 1为本发明实施例一所述控制自优化开关的方法流程图;
图 2为本发明实施例一所述控制自优化开关的方法流程图;
图 3为本发明实施例二所述控制自优化开关的方法流程图;
图 4为本发明实施例二所述控制自优化开关的方法流程图;
图 5为本发明实施例三所述控制自优化开关的方法流程图; 图 6为本发明实施例六所述控制自优化开关的装置框图;
图 7为本发明实施例六所述控制自优化开关的装置框图。
图 8为本发明实施例七所述控制自优化开关的装置框图;
图 9为本发明实施例七所述控制自优化开关的装置框图;
图 10为本发明实施例八所述控制自优化开关的系统框图;
图 11为本发明实施例九所述控制自优化开关的系统框图。
具体实施方式
目前, 3GPP的自优化领域包括 Handover (切换) 、 Load Ba lanc ing (负 载平衡) 、 Interference Control (干扰控制) 、 Capac i ty & Coverage (容 量和覆盖) 、 RACH Opt imiza t ion (随机接入信道优化) 、 Energy Savings (节能) 。
为了实现对这些自优化领域的自优化开关的控制, 本发明实施例在每个 领域中都配置一个自优化开关属性, 对应关系如表 1所示。
Figure imgf000006_0001
Figure imgf000006_0002
每个领域的自优化开关属性的对应取值可以是布尔型参数。 当自优化开 关属性取值为 True时, 说明该领域打开自优化开关; 反之说明该领域关闭自 优化开关。
本发明实施例通过这些参数实现自优化开关控制, 从而控制自优化的启 动和停止。 在本发明实施例中, 被管理单元可以是包含集成参考点代理的网元管理 系统或者网絡设备, 被管理单元也可以是经由网元管理系统接受网絡管理系 统管理的网絡设备, 管理单元可以是包含集成参考点管理者的网絡管理系统。
下面结合附图对本发明实施例控制自优化开关的方法、 装置和系统进行 详细描述。
实施例一:
本发明实施例提供了一种控制自优化开关的方法。 如图 1 所示, 该方法 包括:
101 , 获取自优化开关目标状态, 例如可以通过接收用户输入的表示自优 化开关目标状态的指令;
用户输入的指令表明了用户所希望的自优化开关状态, 比如用户希望网 絡的自优化能够停止, 则所述指令中自优化开关的目标状态为关闭。
102 , 向被管理单元下发包含所述目标状态的设置命令, 所述设置命令指 示被管理单元将自优化开关的状态修改为目标状态。
在向被管理单元下发包含自优化开关目标状态的设置命令之后, 还要接 收被管理单元返回的设置结果。
本发明实施例提供了一种控制自优化开关的方法。 如图 2 所示, 该方法 包括:
201 , 接收管理单元下发的包含自优化开关目标状态的设置命令。
202 , 根据所述设置命令将自优化开关的状态修改为所述目标状态。
如果自优化开关的目标状态是关闭, 那么就关闭自优化开关; 如果自优 化开关的目标状态是打开, 那么就打开自优化开关。 在将自优化开关的状态 修改为目标状态后, 向管理单元返回设置结果, 如果将自优化开关的状态成 功修改为目标状态, 那么向管理单元返回真, 如果没能成功地将自优化开关 的状态修改为目标状态, 那么向管理单元返回假。
本发明实施例提供了一种控制自优化开关的方法, 本发明实施例中先获 知用户需要的自优化开关目标状态, 之后修改自优化开关的状态, 使自优化 开关的状态与目标状态一致。 通过本发明实施例提供的技术方案, 能够控制 自优化开关的状态, 从而控制自优化的启动或停止, 满足自优化管理的需要。
实施例二:
本发明实施例提供了一种控制自优化开关的方法。 如图 3 所示, 该方法 包括:
301 , 向被管理单元下发查询命令, 所述查询命令指示获取自优化开关的 当前状态;
302 , 接收被管理单元返回的自优化开关的当前状态。
本发明实施例提供了一种控制自优化开关的方法。 如图 4 所示, 该方法 包括:
401 , 接收管理单元下发的查询命令;
402 , 根据所述查询命令获取自优化开关的当前状态;
403 , 向所述管理单元返回自优化开关的当前状态。
本发明实施例提供了一种控制自优化开关的方法, 本发明实施例中通过 查询命令获取自优化开关的当前状态, 通过本发明实施例提供的技术方案, 能够随时获知自优化开关的当前状态, 满足自优化管理的需要。
实施例三:
在管理单元向被管理单元下发设置命令之前, 管理单元还可以先向被管 理单元查询自优化开关的状态, 如果自优化开关的状态与用户需要的状态一 致, 那么管理单元可以不再向被管理单元下发设置命令。
本发明实施例提供了一种控制自优化开关的方法。 该方法包括:
1 , 获取自优化开关目标状态, 例如通过接收用户输入的表示自优化开关 目标状态的指令;
用户输入的指令表明了用户所希望的自优化开关状态, 比如用户希望网 絡的自优化能够停止, 则所述指令中自优化开关的目标状态为关闭。 2 , 获取自优化开关的当前状态;
本实施例中可以釆用但不限于如下方式获取自优化开关的当前状态: 向 被管理单元下发查询命令, 所述查询命令指示获取自优化开关的当前状态, 之后接收被管理单元返回的自优化开关的当前状态。
3 , 若所述当前状态与用户需要的目标状态不一致, 则向被管理单元下发 包含所述目标状态的设置命令, 所述设置命令指示被管理单元将自优化开关 的状态修改为目标状态。
如果自优化开关的目标状态为关闭, 并且自优化开关的当前状态为打开, 那么向被管理单元下发包含自优化开关目标状态为关闭的设置命令, 所述设 置命令指示被管理单元关闭自优化开关; 如果自优化开关的目标状态为打开, 并且自优化开关的当前状态为关闭, 那么向被管理单元下发包含自优化开关 目标状态为打开的设置命令, 所述设置命令指示被管理单元打开自优化开关。
如果自优化开关的当前状态与目标状态一致, 那么不必再向被管理单元 下发包含自优化开关目标状态的设置命令。
在向被管理单元下发包含自优化开关目标状态的设置命令之后, 还要接 收被管理单元返回的设置结果。
本发明实施例提供了一种控制自优化开关的方法。 该方法包括:
1 , 接收管理单元下发的包含自优化开关目标状态的设置命令;
在接收设置命令之前, 还要接收管理单元下发的查询命令, 并根据所述 查询命令获取自优化开关的当前状态, 再向所述管理单元返回自优化开关的 当前状态。
2, 根据所述设置命令将自优化开关的状态修改为所述目标状态。
如果自优化开关的目标状态是关闭, 那么就关闭自优化开关; 如果自优 化开关的目标状态是打开, 那么就打开自优化开关。 在将自优化开关的状态 修改为目标状态后, 向管理单元返回设置结果, 如果将自优化开关的状态成 功修改为目标状态, 那么向管理单元返回真, 如果没能成功地将自优化开关 的状态修改为目标状态, 那么向管理单元返回假。
本发明实施例提供了一种控制自优化开关的方法、 装置和系统, 本发明 实施例中先获取自优化开关的当前状态, 再将自优化开关的当前状态和用户 输入的目标状态进行比较, 如果自优化开关的当前状态不符合用户的需要, 则修改自优化开关的状态, 使自优化开关的状态与目标状态一致。 通过本发 明实施例提供的技术方案, 能够获知自优化开关的状态, 并控制自优化开关 的状态, 从而控制自优化的启动或停止, 满足自优化管理的需要。
实施例四:
本发明实施例通过在 3GPP北向接口里新增加一种自优化 IRP, 并定义该 IRP的相关操作来达到控制自优化开关的目的。
本发明实施例提供了一种控制自优化开关的方法。 如图 5 所示, 该方法 包括:
501, 集成参考点管理者向集成参考点代理下发查询命令。
用户通过 IRP Manager向 IRP Agent发送查询命令, 指示获取相应被管理 单元支持的自优化开关情况。 例如, 在具体实现过程中上述查询命令的格式 可以为: listSoFuncSwitch (ctr 10b j Inf omat ion, optimizationTypeList)。
其中, 输入参数 c trlObjlnfomati on代表提供自优化能力的被管理单元, 可能的取值类型是字符串或者枚举型, 可能的取值是: EM (网元管理系统) 、 NE instance (一个或多个网元实例 ) 和 NE TYPE ( 网元类型 ) 。 optimizati onTypeL i s t是被管理单元具有的优化开关类型列表, 列表里的每 个元素的类型为 optimizationType类型, 分别表示被管理单元具有的优化开 关类型。
具体的, optimizationType类型可以是枚举型,例如,可分别用 LB、 ICIC、 H0、 RACH、 CC、 ES分别代表负载均衡自优化、 小区间干扰协调自优化、 切换 自优化、 随机接入信道优化、 容量和覆盖自优化、 节能自优化。
502, 集成参考点代理向所述集成参考点管理者返回自优化开关的当前状 态。
集成参考点代理接收到集成参考点管理者下发的查询命令后, 查询相应 的被管理单元所支持的自优化领域的开关状态, 并通过被管理单元具有的自 优化开关的当前状态信息列表返回被查询的自优化开关的当前状态,例如通 过输出参数 s e 1 f Op t Func Sw i t chL i s t向集成参考点管理者返回被查询的自优 当前状态信息列表, 列表里的每个元素是被管理单元以及其具有的优化开关 和对应的当前状态值歹1 J表,如 ( ctrlObjlnfomation, Lis t<opt imizat ionType, switch>) 。 当返回的当前状态 switch值为 on时(为了直观, 用 on代替 True, off代替 False, 也可以直接用 True、 False表示,例 ¾口, 可以用 true表示开关 打开, false表示开关关闭; 当然, 也可以釆用 true表示开关关闭, false表 示开关打开。 ) , 表明该开关的状态为打开, 当返回的当前状态值 switch为 off时, 表明该开关的状态为关闭。
下面举例说明几种查询情况:
1、 如果集成参考点管理者要查询 EM上的小区间干扰协调自优化的开关状 态, 下发的查询命令格式为: listSoFuncSwitch(EM, ICIC) , 如果返回的查询 结果为: EM, ( ICIC, on) , 表明 EM中小区间干扰协调自优化开关的当前状态 为打开。
2、 如果集成参考点管理者要查询实体网元 6^(168_ 上负载均衡自优化开 关、 小区间干扰协调自优化开关的状态, 下发的查询命令格式为: listSoFuncSwitch(eNodeB_A, (LB, ICIC)) , 如果返回的查询结果为: eNodeB.A, (LB, on; ICIC, off ) , 表明 eNodeB_A上负载均衡自优化开关的 当前状态为打开, 小区间干扰协调自优化开关的当前状态为关闭。
3、 如果集成参考点管理者要查询两个以上实体网元, 如 eNodeB_A、 eNodeB_B上的负载均衡自优化开关、 小区间干扰协调自优化开关的状态, 下 发 的 查 询 命 令 格 式 为 : 1 i s tSoFuncSwi tch ( (eNodeB.A, eNodeB.B) , (LB, ICIC)) , 如果返回的查询结果 为: eNodeB_A, (LB, on, IC, off ) ; eNodeB.B, (LB, on, ICIC, on) , 表明 eNodeB_A上负载均衡自优化开关的状态为打开, 小区间干扰协调自优化 开关的状态为关闭, eNodeB_B上负载均衡自优化开关的状态、 小区间干扰协 调自优化开关的状态均为打开。
4、 如果集成参考点管理者要查询某种类型 (如 eNodeB类型)的网元上负 载均衡自优化开关、 小区间干扰协调自优化开关的状态, 下发的查询命令格 式为: listSoFuncSwitch( ENBFunction, ( LB, ICIC ) ) , 则返回结果中包含 所有类型为 eNodeB的网元中的负载均衡优化开关、 小区间干扰协调自优化开 关的状态。如果返回的查询结果为: eNodeB.A, (LB, on; ICIC, off ); eNodeB.B, (LB, on; ICIC, off ) , 表明 eNodeB_A上负载平衡自优化的开关状态为打开, 小区间干扰协调自优化的开关状态为关闭; 6^(168_8上负载平衡自优化的开 关状态为打开, 小区间干扰协调自优化的开关状态为关闭。
503, 集成参考点管理者向集成参考点代理下发设置命令, 指示被管理单 元将自优化开关的状态修改为目标状态。
例如, 在具体实现过程中, 上述集成参考点管理者下发的设置命令的格 式为 setSoFuncSwi tch (ctrlObjlnf omat ion, opt imizat ionTypeSwi tchLis t)。 其中 , ctrlObjlnf omation代表提供 自 优化能力的被管理单元, opt imizat ionTypeSwi tchLis t是具体的开关参数歹 'J表 , 如 List of <optimizationType, switch>, 具体 的 参数说 明 参考 查 询 命令 listSoFuncSwitch中的说明。
下面举例说明几种设置情况:
1、 如果需要把 EM中的小区间干扰协调自优化开关设置为打开, 则集成参 考点管理者向 IRP Agent下发设置命令 setSoFuncSwi tch (EM, ICIC, off ) 。
2、 如果需要把网元实体 eNodeB_A中的小区间干扰协调自优化开关、 容量 和覆盖自优化开关状态都设置为打开, 集成参考点管理者向 IRP Agent下发设 置命令 setSoFuncSwi tch ( eNodeB.A, (ICIC, on) , (CC, on) ) 。
3、 如果需要把网元实体 eNodeB_A、 eNodeB_B中的负载均衡自优化开关、 容量和覆盖自优化开关设置为关闭, 则集成参考点管理者向 IRP Agent下发设 置命令 setSoFuncSwi tch ( (eNodeB_A, eNodeB.B) , (LB, off) , (CC, off) ) 。
4、 如果要把类型为 ENBFunc t i on的所有网元中的随机接入信道优化开关、 切换自优化开关都设置为打开, 则集成参考点管理者向 IRP Agent下发的设置 命令为 setSoFuncSwi tch (ENBFunc t ion, ( RACH, on ) , (HO, on) ) 。
504 , 集成参考点代理向集成参考点管理者返回设置结果。
在集成参考点代理接收到集成参考点管理者下发的设置命令后, 还要向 集成参考点管理者返回设置结果。
如果集成参考点代理成功地将自优化开关的状态设置为目标状态, 集成 参考点代理向集成参考点管理者返回真, 如果集成参考点代理没有成功地将 自优化开关的状态设置为目标状态, 集成参考点代理向集成参考点管理者返 回假。
本发明实施例提供了一种控制自优化开关的方法,通过本发明实施例提供 的技术方案, 能够随时获知自优化开关的状态, 并能够控制自优化开关的状 态, 从而控制自优化的启动或停止, 满足自优化管理的需要。
实施例五:
本发明实施例提供了一种控制自优化开关的方法。
本发明实施例通过修改已有 NRM IRP中的 NRM来实现控制自优化开关。 本 发明实施例针对每个自优化领域, 都定义一种对应的开关属性, 开关为布尔 型取值。 当开关属性为真时, 打开自优化开关; 反之则关闭。
由于提供自优化能力的实体可能集中分布在 EM上, 也可能分散分布在各 个 NE上, 甚至同时分布在 EM和 NE上, 因此, 需要分别在 IRPAgent、 EM、 NE的 NRM中增加开关控制属性。
如表 2所示为增加开关控制属性后的 IRPAgent属性表。 属性名 支持限定 读限定 写限定 iRPAgentld M M - sys temDN C M - self O tHOFuncEnabled CM M M self O t LBFuncEnab led CM M M self Opt ICFuncEnab led CM M M self O tCCFuncEnabled CM M M selfOptRACHFuncEnabled CM M M self O tESFuncEnabled CM M M 其中, 属性 iRPAgentld, sys tem匪为现有 IRPAgent NRM已有的属性, 属 性 selfOptHOFuncEnabled、 self O tLBFuncEnabled, self O t ICFuncEnab led, self O tCCFuncEnabled、 selfO tRACHFuncEnabled、 self OptESFuncEnabled 为新增加的属性。 M的意思是必选, CM的意思是某些条件下必选, C的意思是 有条件的, 比如属性 selfOptRACHFuncEnabled对应的支持限定是 CM, 对应的 读限定是 M, 对应的写限定是 M, 说明可以在支持自优化时查询获得属性 selfOptRACHFuncEnabled 的 开 关 状 态 , 并 且 可 以 设 置 属 性 selfOptRACHFuncEnabled的开关 态。
如表 3所示为增加开关控制属性后的 EM的 ManagementNode NRM属性表。
Figure imgf000014_0001
Figure imgf000014_0002
userDef inedState M M M locat ionName M M - swVers ion M M - managedElements M M - self O tHOFuncEnabled CM M M self O t LBFuncEnab led CM M M self Opt ICFuncEnab led CM M M self O tCCFuncEnabled CM M M selfOptRACHFuncEnabled CM M M self O tESFuncEnabled CM M M 其 中 , 属 性 managementNodeld 、 userLabel 、 vendorName 、 userDef inedState、 locat ionName、 swVers ion , managedElements是现有 ManagementNode NRM 已 有 的 属 性 , 属 性 self OptHOFuncEnabled 、 self O tLBFuncEnabled, self Opt ICFuncEnab led, self OptCCFuncEnabled, selfOptRACHFuncEnabled, self OptESFuncEnabled为新增加的属性。
当集成参考点代理分布在各个 NE上时, 需要在各 NE的 NRM中增加开关控制 属性。 比如, 当集成参考点代理分布在 eNodeB类型的网元中时, 需要在 eNodeB 的 NRM中增加开关控制属性。 如表 4所示为增加开关控制属性后的 eNB的 ENBFunction NRM属性表。
Figure imgf000015_0001
Figure imgf000015_0002
self O tHOFuncEnabled CM M M self O t LBFuncEnab led CM M M self Opt ICFuncEnab led CM M M self O tCCFuncEnabled CM M M selfOptRACHFuncEnabled CM M M self O tESFuncEnabled CM M M 其中 , 属性 x2BlackList 、 x2WhiteList , x2H0BlackList是现有 ENBFunction NRM 已 有 的 属 性 , 属 性 self OptHOFuncEnabled 、 self O tLBFuncEnabled, self Opt ICFuncEnab led, self OptCCFuncEnabled, selfOptRACHFuncEnabled, self OptESFuncEnabled为新增加的属性。
现有的 Basic/Bulk CM IRP中已经定义了如何对 NRM属性进行查询以及如 何对属性进行设置, 本发明实施例利用现有的 Basic/Bulk CMIRP操作就可以 对自优化开关的状态进行查询, 并对自优化开关的状态进行设置, 从而达到 控制自优化的启动或停止的目的。
本发明实施例提供了一种控制自优化开关的方法, 通过本发明实施例提 供的技术方案, 能够控制自优化开关的状态, 获知自优化开关的状态, 并控 制自优化的启动或停止, 满足自优化管理的需要。
实施例六:
本发明实施例还提供了一种控制自优化开关的装置。 如图 6 所示, 该装 置包括获取模块 61和处理模块 62。
其中, 获取模块 61用于获取自优化开关的目标状态, 处理模块 62用于 向被管理单元下发包含所述目标状态的设置命令, 所述设置命令指示被管理 单元将自优化开关状态修改为目标状态。
其中, 获取模块还用于获取自优化开关的当前状态, 此时所述获取模块 包括发送单元和接收单元。 其中, 发送单元用于向被管理单元下发查询命令, 所述查询命令指示获 取自优化开关的当前状态; 接收单元用于接收被管理单元返回的自优化开关 的当前状态。
接收模块还用于接收被管理单元返回的设置结果。
本发明实施例还提供了一种控制自优化开关的装置, 如图 7 所示, 该装 置包括接收设置命令模块 71和处理模块 72。
其中, 接收设置命令模块 71用于接收管理单元下发的包含自优化开关目 标状态的设置命令, 处理模块 72用于根据所述设置命令将自优化开关的状态 修改为所述目标状态。
该装置还包括发送模块 73 , 用于向所述管理单元返回设置结果。
该装置还用于向管理单元上报自优化开关的当前状态, 该装置还包括接 收查询命令模块、 查询模块和发送模块。
其中接收查询命令模块用于接收管理单元下发的查询命令; 查询模块用 于根据所述查询命令获取自优化开关的当前状态; 发送模块用于向所述管理 单元返回自优化开关的当前状态。
本发明实施例提供了一种控制自优化开关的装置, 通过本发明实施例提 供的技术方案, 能够获知自优化开关的当前状态, 并控制自优化开关的状态, 从而控制自优化的启动或停止, 满足自优化管理的需要。
实施例七:
本发明实施例还提供了一种控制自优化开关的装置, 如图 8 所示, 该装 置包括发送模块 81和接收模块 82。
其中, 发送模块 81用于向被管理单元下发查询命令, 所述查询命令指示 获取自优化开关的当前状态; 接收模块 82用于接收被管理单元返回的自优化 开关的当前状态。
本发明实施例还提供了一种控制自优化开关的装置, 如图 9 所示, 该装 置包括接收查询命令模块 91、 查询模块 92和发送模块 93。 其中, 接收查询命令模块 91用于接收管理单元下发的查询命令; 查询模 块 92用于根据所述查询命令获取自优化开关的当前状态; 发送模块 93用于 向所述管理单元返回自优化开关的当前状态。
本发明实施例提供了一种控制自优化开关的装置, 本发明实施例中通过 查询命令指示获取自优化开关的当前状态, 通过本发明实施例提供的技术方 案, 能够随时获知自优化开关的当前状态, 满足自优化管理的需要。
实施例八:
本发明实施例还提供了一种控制自优化开关的系统, 如图 10所示, 该系 统包括管理单元 101和被管理单元 102。
其中, 管理单元 101 用于获取自优化开关的目标状态, 向被管理单元下 发包含所述目标状态的设置命令; 被管理单元 102用于接收管理单元 101下 发的包含自优化开关目标状态的设置命令, 并根据所述设置命令将自优化开 关的状态修改为所述目标状态。
其中, 所述管理单元还用于向被管理单元下发查询命令, 所述查询命令 指示获取自优化开关的当前状态, 并接收被管理单元返回的自优化开关的当 前状态; 所述被管理单元还用于接收所述管理单元下发的查询命令, 并向所 述管理单元返回自优化开关的当前状态。
在管理单元向被管理单元下发设置命令之后, 所述管理单元还用于接收 所述被管理单元返回的设置结果, 所述被管理单元还用于向所述管理单元返 回设置结果。 本发明实施例提供了一种控制自优化开关的系统, 本发明实施例中先获 知用户需要的自优化开关目标状态, 之后修改自优化开关的状态, 使自优化 开关的状态与目标状态一致。 通过本发明实施例提供的技术方案, 能够控制 自优化开关的状态, 从而控制自优化的启动或停止, 满足自优化管理的需要。
实施例九: 本发明实施例提供了一种控制自优化开关的系统, 该系统包括管理单元
111和被管理单元 112。
其中, 管理单元 111 用于向被管理单元下发查询命令, 指示获取自优化 开关的当前状态, 并接收被管理单元返回的自优化开关的当前状态; 被管理 单元 112 用于接收所述管理单元下发的查询命令, 根据所述查询命令获取自 优化开关的当前状态, 并向所述管理单元返回自优化开关的当前状态。 本发明实施例提供了一种控制自优化开关的系统, 本发明实施例中通过 查询命令指示获取自优化开关的当前状态, 通过本发明实施例提供的技术方 案, 能够随时获知自优化开关的当前状态, 满足自优化管理的需要。
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平台的方式来实现, 当然也可以通过硬件, 但很多情况下前者是更佳的实施方式。 基于这样的理解, 本发明的技术方案 本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来, 该计算机软件产品存储在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, 或者网絡设备等)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 范围应以所述权利要求的保护范围为准。

Claims

权利 要 求 书
1、 一种控制自优化开关的方法, 其特征在于, 包括:
获取自优化开关目标状态;
向被管理单元下发包含所述目标状态的设置命令, 所述设置命令指示被管 理单元将自优化开关的状态修改为所述目标状态。
2、 根据权利要求 1所述的控制自优化开关的方法, 其特征在于, 所述向被 管理单元下发包含所述目标状态的设置命令之前, 该方法还包括:
获取自优化开关的当前状态。
3、 根据权利要求 2所述的控制自优化开关的方法, 其特征在于, 所述获取 自优化开关的当前状态包括:
向被管理单元下发查询命令, 所述查询命令指示获取自优化开关的当前状 态;
接收被管理单元返回的自优化开关的当前状态。
4、 根据权利要求 1至 3中任意一项所述的控制自优化开关的方法, 其特征 在于, 所述向被管理单元下发包含所述目标状态的设置命令之后, 该方法还包 括:
接收被管理单元返回的设置结果。
5、 根据权利要求 1所示的控制自优化开关的方法, 其特征在于, 所述设置 命令中包含被管理单元信息、 自优化开关的类型以及自优化开关的目标状态。
6、 根据权利要求 3所示的控制自优化开关的方法, 其特征在于, 所述查询 命令中包含被管理单元信息和被管理单元具有的自优化开关类型列表, 所述列 表里的每个元素分别表示被管理单元具有的自优化开关类型。
7、 根据权利要求 3所示的控制自优化开关的方法, 其特征在于, 所述接收 被管理单元返回的自优化开关的当前状态, 具体为:
接收被管理单元通过被管理单元具有的自优化开关的当前状态信息列表返 回的自优化开关的当前状态, 所述列表里的每个元素是被管理单元以及其具有 的自优化开关和自优化开关所对应的当前状态值列表。
8、 一种控制自优化开关的方法, 其特征在于, 包括:
接收管理单元下发的包含自优化开关目标状态的设置命令;
根据所述设置命令将自优化开关的状态修改为所述目标状态。
9、 根据权利要求 8所述的控制自优化开关的方法, 其特征在于, 所述接收 管理单元下发的包含自优化开关目标状态的设置命令之前, 该方法还包括: 接收管理单元下发的查询命令;
根据所述查询命令获取自优化开关的当前状态;
向所述管理单元返回自优化开关的当前状态。
10、 根据权利要求 8或 9所述的控制自优化开关的方法, 其特征在于, 所 述根据所述设置命令将自优化开关的状态修改为所述目标状态之后, 该方法还 包括:
向所述管理单元返回设置结果。
11、 一种控制自优化开关的装置, 其特征在于, 包括:
获取模块, 用于获取自优化开关的目标状态; 置命令指示被管理单元将自优化开关的状态修改为目标状态。
12、 根据权利要求 11所述的控制自优化开关的装置, 其特征在于, 所述获取模块还用于获取自优化开关的当前状态。
1 3、 根据权利要求 12所述的控制自优化开关的装置, 其特征在于, 所述获 取模块包括:
发送单元, 用于向被管理单元下发查询命令, 所述查询命令指示获取自优 化开关的当前状态;
接收单元, 用于接收被管理单元返回的自优化开关的当前状态。
14、 根据权利要求 11所述的控制自优化开关的装置, 其特征在于, 所述接收模块还用于接收被管理单元返回的设置结果。
15、 一种控制自优化开关的装置, 其特征在于, 包括:
接收设置命令模块, 用于接收管理单元下发的包含自优化开关目标状态的 设置命令;
处理模块, 用于根据所述设置命令将自优化开关的状态修改为所述目标状 态。
16、 根据权利要求 15所述的控制自优化开关的装置, 其特征在于, 该装置 还包括:
接收查询命令模块, 用于接收管理单元下发的查询命令;
查询模块, 用于根据所述查询命令获取自优化开关的当前状态;
发送模块, 用于向所述管理单元返回自优化开关的当前状态。
17、 根据权利要求 16所述的控制自优化开关的装置, 其特征在于, 所述发送模块还用于向所述管理单元返回设置结果。
18、 一种控制自优化开关的系统, 其特征在于, 包括:
管理单元, 用于获取自优化开关的目标状态, 并向被管理单元下发包含所 述目标状态的设置命令;
被管理单元, 用于接收管理单元下发的包含自优化开关目标状态的设置命 令, 并根据所述设置命令将自优化开关的状态修改为所述目标状态。
19、 根据权利要求 18所述的控制自优化开关的系统, 其特征在于, 所述管理单元还用于向被管理单元下发查询命令, 来获取自优化开关的当 前状态;
所述被管理单元还用于接收所述管理单元下发的查询命令, 并向所述管理 单元返回自优化开关的当前状态。
20、 根据权利要求 18或 19所述的控制自优化开关的系统, 其特征在于, 所述管理单元还用于接收所述被管理单元返回的设置结果;
所述被管理单元还用于向所述管理单元返回设置结果。
21、 一种控制自优化开关的方法, 其特征在于, 包括: 向被管理单元下发查询命令, 所述查询命令指示获取自优化开关的当前状 态;
接收被管理单元返回的自优化开关的当前状态。
22、 一种控制自优化开关的方法, 其特征在于, 包括:
接收管理单元下发的查询命令;
根据所述查询命令获取自优化开关的当前状态;
向所述管理单元返回自优化开关的当前状态。
23、 一种控制自优化开关的装置, 其特征在于, 包括:
发送模块, 用于向被管理单元下发查询命令, 所述查询命令指示获取自优 化开关的当前状态;
接收模块, 用于接收被管理单元返回的自优化开关的当前状态。
24、 一种控制自优化开关的装置, 其特征在于, 包括:
接收查询命令模块, 用于接收管理单元下发的查询命令;
查询模块, 用于根据所述查询命令获取自优化开关的当前状态;
发送模块, 用于向所述管理单元返回自优化开关的当前状态。
25、 一种控制自优化开关的系统, 其特征在于, 包括:
管理单元, 用于向被管理单元下发查询命令, 指示获取自优化开关的当前 状态, 并接收被管理单元返回的自优化开关的当前状态;
被管理单元, 用于接收所述管理单元下发的查询命令, 根据所述查询命令 获取自优化开关的当前状态, 并向所述管理单元返回自优化开关的当前状态。
PCT/CN2009/070935 2009-03-20 2009-03-20 控制自优化开关的方法、装置和系统 Ceased WO2010105444A1 (zh)

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BRPI0924651A BRPI0924651A2 (pt) 2009-03-20 2009-03-20 método, aparelho e sistema para controlar comutador de auto-otimização
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PCT/CN2009/070935 WO2010105444A1 (zh) 2009-03-20 2009-03-20 控制自优化开关的方法、装置和系统
EP19194844.7A EP3668008B1 (en) 2009-03-20 2009-03-20 Method, apparatus, and system for controlling self-optimization switch
US13/237,134 US10305727B2 (en) 2009-03-20 2011-09-20 Method, apparatus and system for controlling self-optimization switch
US16/396,234 US10735255B2 (en) 2009-03-20 2019-04-26 Method, apparatus, and system for controlling self-optimization switch
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