WO2015058414A1 - 网络管理系统、方法和装置 - Google Patents

网络管理系统、方法和装置 Download PDF

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Publication number
WO2015058414A1
WO2015058414A1 PCT/CN2013/085998 CN2013085998W WO2015058414A1 WO 2015058414 A1 WO2015058414 A1 WO 2015058414A1 CN 2013085998 W CN2013085998 W CN 2013085998W WO 2015058414 A1 WO2015058414 A1 WO 2015058414A1
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WIPO (PCT)
Prior art keywords
input
unit
output
units
storage
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PCT/CN2013/085998
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English (en)
French (fr)
Inventor
谭巍
陈育华
张伟
Original Assignee
华为技术有限公司
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.)
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Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to CN201380077859.6A priority Critical patent/CN105340218B/zh
Priority to PCT/CN2013/085998 priority patent/WO2015058414A1/zh
Publication of WO2015058414A1 publication Critical patent/WO2015058414A1/zh

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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
    • H04L41/0823Configuration setting characterised by the purposes of a change of settings, e.g. optimising configuration for enhancing reliability
    • H04L41/083Configuration setting characterised by the purposes of a change of settings, e.g. optimising configuration for enhancing reliability for increasing network speed

Definitions

  • the present invention relates to the field of network communication technologies, and in particular, to a network management system, method, and apparatus. Background technique
  • the network management system is an important network element in the communication system and is responsible for performance management, configuration management, security management, billing management, and fault management of the entire network.
  • Common network management systems are in things like
  • SUN/HP/IBM and other dedicated hardware devices are implemented by means of loading software. After the input and output unit of the hardware device receives the network management request from the network management object, the input and output unit can forward the network management request to the upper layer. Software to implement network management functions through upper layer software.
  • the network management system when there are many network management objects and one hardware device cannot meet the management requirements, the network management system usually sets multiple hardware devices, and each hardware device is used to implement the specified management functions. For example, there are two hardware devices in the network management system, one of which is used for performance management and security management; the other is used to implement configuration management, accounting management, and fault management, so that when the network management object requests In the performance management, the network management request is sent to the first hardware device; when the network management object requests the fault management, the network management request is sent to the second hardware device.
  • the inventor finds that the existing solution has at least the following problems:
  • the network management object needs to request network management, the network management object can only send the network management request to the input and output unit of the corresponding hardware device, and The performance of the input and output unit of the hardware device is poor.
  • the network management request just received cannot be processed efficiently, so the processing efficiency of the existing network management system is Lower.
  • the embodiment of the present invention provides a network management system, method and device.
  • the technical solution is as follows:
  • a network management system comprising:
  • an input and output list including at least two input and output units obtained by virtualization Tuple and control unit;
  • the resource allocation unit is configured to monitor performance parameters of the at least two input and output units in real time, and select one input/output unit from the at least two input and output units according to the performance parameter to perform a forwarding operation;
  • the input/output unit is configured to forward a network management request from an external network element to the control unit when in a state selected by the resource allocation unit;
  • the control unit is configured to set configuration information according to the network management request forwarded by the input/output unit, and send the configuration information to the input/output unit;
  • the input and output unit is further configured to forward the configuration information to the external network element.
  • control unit is further configured to detect whether there is a faulty input/output unit in the input/output unit in an active state, and if the detection result is a faulty input and output Unit, transferring the to-be-processed content of the failed input-output unit to other ones of the at least two input-output units, the other input-output unit being at least the real-time monitored by the resource allocation unit
  • the performance parameters of the two input and output units are input and output units other than the failed input/output unit selected from the at least two input and output units.
  • system further includes:
  • a storage unit group including at least two storage units obtained by virtualization
  • the resource allocation unit is further configured to monitor performance parameters of the at least two storage units in real time, and select one storage unit from the at least two storage units according to the performance parameter to perform a storage operation;
  • the control unit is further configured to send the configuration information to a storage unit selected by the resource allocation unit;
  • the storage unit is configured to save the configuration information sent by the control unit when in a state selected by the resource allocation unit.
  • control unit is further configured to detect whether a faulty storage unit exists in a storage unit in an active state, if the detection result is For a faulty storage unit, the in-memory resource allocation unit of the failed storage unit is from the at least two performance parameters of the at least two storage units monitored in real time.
  • control unit is further configured to: when detecting a faulty storage unit in a storage unit that is in an active state, obtain The fault content of the faulty storage unit is generated, and the acquired fault content is sent to the other storage unit;
  • the other storage unit is further configured to save a fault content of the failed storage unit sent by the control unit.
  • control unit is further configured to: when detecting an input/output unit that has a fault in the input/output unit in an active state Obtaining a fault content of the failed input/output unit, and transmitting the acquired fault content to the storage unit;
  • the storage unit is further configured to save a fault content of the faulty input/output unit sent by the control unit.
  • a network management method includes:
  • a network management request is a request received by the input and output unit from an external network element
  • the input and output unit monitors, by the resource allocation unit, the input and output unit obtained by virtualization in real time.
  • the method further includes:
  • the method further includes: sending the configuration Information to the storage unit in the storage unit group obtained by virtualization, so as to The storage unit saves the configuration information, and the storage unit monitors, in the real-time, the performance parameter of the at least two storage units in the storage unit group, the storage unit selected according to the performance parameter.
  • the method further includes:
  • the acquired fault content is transmitted to the other storage unit such that the other storage unit saves the faulty content of the failed storage unit.
  • the method further includes:
  • the acquired fault content is transmitted to the storage unit, so that the storage unit saves the fault content of the failed input/output unit.
  • a network management apparatus configured to:
  • a request receiving module configured to receive a network management request sent by the input/output unit, where the network management request is a request from the external network element received by the input/output unit, and the input and output unit is monitored by the resource allocation unit in real time by the virtual And obtaining performance parameters of at least two input and output units in the input and output unit group, and selecting the obtained input and output unit according to performance parameters of the at least two input and output units;
  • An information configuration module configured to set configuration information according to the network management request received by the request receiving module
  • An information sending module configured to send the configuration information configured by the information configuration module to the input/output unit, so that the input/output unit forwards the configuration after receiving the configuration information Set information to the external network element.
  • the device further includes:
  • a fault detecting module configured to detect whether there is a faulty input/output unit in the input/output unit in an active state
  • a fault processing module configured to transfer the to-be-processed content of the input-output unit to other input and output of the at least two input-output units when the detection result of the fault detection module is a faulty input/output unit a unit, the other input and output unit is selected by the resource allocation unit from the at least two input and output units in addition to the faulty input and output unit according to the performance parameters of the at least two input and output units monitored in real time. Input and output unit.
  • the information sending module is configured to send the configuration information configured by the information configuration module to be virtualized a storage unit in the obtained storage unit group, so that the storage unit stores the configuration information, wherein the storage unit monitors, in real time, performance parameters of at least two storage units in the storage unit group, A storage unit selected according to the performance parameter.
  • the fault detection module is further configured to detect whether a faulty storage unit is in a storage unit in an active state
  • the fault processing module is further configured to: when the detection result of the fault detection module is a faulty storage unit, the other storage unit is configured by the resource allocation unit according to the at least storage unit that is monitored in real time. unit.
  • the apparatus further includes:
  • a fault obtaining module configured to acquire, when the fault detecting module detects that the faulty storage unit is in the working unit, obtain the fault content of the faulty storage unit;
  • a fault content sending module configured to send the fault content acquired by the fault acquiring module to the second possible implementation manner of the third aspect, in a fifth possible implementation manner, the fault acquiring module, Further, when detecting that there is a faulty input/output unit in the input/output unit in the working state, acquiring the fault content of the faulty input/output unit;
  • the fault content sending module is further configured to send the fault content acquired by the fault acquiring module to the storage unit, so that the storage unit saves a fault inner valley of the faulty input and output unit.
  • a network management apparatus includes:
  • a receiver configured to receive a network management request sent by the input/output unit, where the network management request is a request from an external network element received by the input/output unit, and the input and output unit is monitored by a resource allocation unit in real time by virtualization a performance parameter of at least two input and output units in the obtained input/output unit group, and an input/output unit obtained according to performance parameters of the at least two input and output units;
  • a processor configured to set configuration information according to the network management request received by the receiver, and a transmitter, configured to send the configuration information set by the processor to the input/output unit, so that the input and output After receiving the configuration information, the unit forwards the configuration information to the external network element.
  • the processor is further configured to detect whether an input/output unit that is in a working state has a faulty input/output unit;
  • the transmitter is further configured to transfer the to-be-processed content of the input-output unit to another input of the at least two input-output units when the detection result of the processor is a faulty input/output unit
  • An output unit wherein the other input/output unit is a faulty input/output unit selected by the resource allocation unit from the at least two input and output units according to performance parameters of the at least two input and output units monitored in real time.
  • External input and output unit is further configured to transfer the to-be-processed content of the input-output unit to another input of the at least two input-output units when the detection result of the processor is a faulty input/output unit
  • An output unit wherein the other input/output unit is a faulty input/output unit selected by the resource allocation unit from the at least two input and output units according to performance parameters of the at least two input and output units monitored in real time.
  • the transmitter is further configured to send the configuration information that is set by the processor to be virtualized a storage unit in the obtained storage unit group, so that the storage unit stores the configuration information, wherein the storage unit monitors performance parameters of at least two storage units in the storage unit group in real time by the resource allocation unit, according to The storage unit selected by the performance parameter.
  • the processor is further configured to detect whether a faulty storage unit is in a working storage unit;
  • the transmitter is further configured to: when the detection result of the processor is a faulty storage unit, transfer the storage content of the storage unit to another storage unit of the at least two storage units, the other The storage unit is configured by the resource allocation unit according to the at least two storages monitored in real time External storage unit.
  • the processor is further configured to: when detecting a faulty storage unit in a storage unit that is in an active state, obtain The fault content of the failed storage unit;
  • the transmitter is further configured to send the fault content acquired by the processor to the other storage list in combination with the second possible implementation manner of the fourth aspect.
  • the processing is performed.
  • the device is further configured to acquire the fault content of the faulty input and output unit when detecting the faulty input/output unit in the input/output unit that is in the working state;
  • the transmitter is further configured to send the fault content acquired by the processor to the storage unit, so that the storage unit saves the fault content of the failed input and output unit.
  • a network management system comprising the network management apparatus of the third aspect and various possible implementations of the third aspect.
  • a network management system comprising the network management apparatus of the fourth aspect and various possible implementations of the fourth aspect.
  • the network management request is a request from an external network element received by the input/output unit
  • the input and output unit is a virtualized input and output unit group monitored by the resource allocation unit in real time.
  • the output unit forwards the received configuration information to the external network element; solves the problem of low processing efficiency of the network management request in the prior art, and achieves performance in at least two input and output units.
  • the best input and output unit performs the forwarding operation, thereby fully utilizing the resources in the network management system, improving the resource utilization rate, and the processing efficiency of the network management system.
  • FIG. 1 is a schematic structural diagram of a network management system according to Embodiment 1 of the present invention.
  • FIG. 2A is a schematic structural diagram of a network management system according to Embodiment 2 of the present invention.
  • FIG. 2B is another schematic structural diagram of a network management system according to Embodiment 2 of the present invention
  • FIG. 3 is a flowchart of a method for network management according to Embodiment 3 of the present invention.
  • FIG. 4 is a flowchart of a method for a network management method according to Embodiment 4 of the present invention.
  • FIG. 5 is a flowchart of a method for a network management method according to Embodiment 5 of the present invention.
  • FIG. 6 is a block diagram showing the structure of a network management apparatus according to Embodiment 6 of the present invention.
  • FIG. 7 is a block diagram showing the structure of a network management apparatus according to Embodiment 7 of the present invention.
  • FIG. 8 is a block diagram showing the structure of a network management apparatus according to Embodiment 8 of the present invention. detailed description
  • FIG. 1 is a structural block diagram of a network management system according to Embodiment 1 of the present invention.
  • the network management system may include: a resource allocation unit 110, and an input and output including at least two input and output units obtained by virtualization.
  • the resource allocation unit 110 is configured to monitor performance parameters of the at least two input and output units in real time, and select one of the at least two input and output units according to the performance parameter to perform a forwarding operation;
  • an input and output unit configured to forward the network management request from the external network element to the control unit when in the state selected by the resource allocation unit 110;
  • the control unit 130 is configured to set configuration information according to the network management request forwarded by the input/output unit, and send the configuration information to the input/output unit;
  • the input and output unit is also used to forward configuration information to the external network element.
  • the network management system receives the network management request sent by the input/output unit, and the network management request is received by the input and output unit from the external network element.
  • the input/output unit is a performance parameter of at least two input and output units in the virtualized input/output unit group monitored by the resource allocation unit in real time, and the input and output unit is selected according to the performance parameters of the at least two input and output units, Setting configuration information according to the network management request, and sending the set configuration information to the input/output unit, so that the input and output unit forwards the received configuration information to the external network element after receiving the configuration information;
  • the problem of low processing efficiency of network management requests is that the best performing input/output units of at least two input and output units can be used to perform forwarding operations, thereby fully utilizing resources in the network management system, improving resource utilization, and The effect of the processing efficiency of the network management system.
  • FIG. 2A shows a structural block diagram of a network management system according to Embodiment 2 of the present invention.
  • the network management system may include: a resource allocation unit 210, and an input and output including at least two input and output units obtained by virtualization.
  • a resource allocation unit 210 configured to monitor performance parameters of at least two input and output units in real time, and select one input/output unit from at least two input and output units according to performance parameters of each input and output unit to perform a forwarding operation; specifically, The at least two input and output units of the input/output unit group 220 can register the current performance parameters to the resource allocation unit 210 in real time or at predetermined time intervals, and the corresponding resource allocation unit 210 can monitor the performance parameters of the at least two input and output units in real time. And performing a forwarding operation by selecting one of the at least two input and output units according to the monitored performance parameter.
  • the resource allocation unit 210 may select one of the best performance input and output from the at least two input and output units according to the monitored performance parameters of the at least two input and output units. Unit, and perform forwarding operations by selecting the best performing input and output unit.
  • the Hypervisior intermediate layer between the hardware device and the virtual machine can make more The virtual machine and the application share the hardware, and can be responsible for the access of the hardware resources, so the Hypervisior middle layer can monitor the performance parameters of each input and output unit in real time, that is, the resource allocation unit 210 in this embodiment may be The Hypervisior middle layer in the virtualized environment, please refer to Figure 2B for the specific structure.
  • each input/output unit corresponds to one Hypervisior intermediate layer
  • a virtual Hypervisior middle layer can be set in the network management system, and the virtual Hypervisior intermediate layer is used to monitor the input and output units from the plurality of Hypervisior intermediate layers. Performance parameters, the specific implementation form of this embodiment is not limited.
  • an input and output unit configured to forward the network management request from the external network element to the control unit when in the state selected by the resource allocation unit 210; specifically, when the external network element needs to request network management, the external network element may send The network management request is sent to the network management system.
  • the hardware device used by the network management system can forward the network through the selected input and output unit by the selected input and output unit between the hardware device and the virtual machine.
  • the management request is sent to the control unit 230, that is, the input and output unit, for forwarding the network management request from the external network element to the control unit 230 when in the state selected by the resource allocation unit 210.
  • the network management request may be any one of a performance management request, a configuration management request, a fault management request, a security management request, and a charging management request, which is similar to the network management request in the existing network management system.
  • the control unit 230 may specifically include a performance management subunit, a configuration management subunit, a fault management subunit, and a security management subunit.
  • At least one subunit of the billing management subunit such that when the network management request received from the external network element by the input and output unit is a performance management request, the input and output unit may send the performance management request to the performance management subunit; When the network management request is a fault management request, the input and output unit may send the fault management request to the fault management subunit; when the network management request is the billing management request, the input and output unit may send the billing management request to the billing management subunit, etc. Wait.
  • each sub-unit in the control unit 230 can also occupy one virtual machine, and each The virtual machine may share the same hardware device, and may also occupy one hardware device. This embodiment does not limit this.
  • the control unit 230 is configured to set the configuration information according to the network management request forwarded by the input and output unit, and send the configuration information to the input/output unit. Specifically, after the control unit 230 receives the network management request forwarded by the input and output unit, the control unit 230 may The configuration information is set according to the network management request forwarded by the input/output unit, and after the configuration information is set, the configuration information is sent to the input/output unit.
  • the performance management subunit in the control unit 230 may detect whether the external network element is abnormal according to the performance management request, in the performance management When detecting that the external network element has abnormal performance, the processing unit sends a fault processing request to the fault management subunit, and after the fault management subunit performs fault processing, sends a configuration management request to the configuration management subunit, so that the configuration management subunit receives the request according to the receiving.
  • the configuration management request to set the configuration information, and send the configuration information to the input and output unit; and when the fault management subunit in the control unit 230 receives the fault management request, the fault management subunit may perform the external network element according to the fault management request.
  • the configuration management subunit sets the configuration information, and sends the configuration information to the input and output unit.
  • a similar processing flow can be adopted, and this embodiment will not be repeated here.
  • the input and output unit is also used to forward configuration information to the external network element. After the input and output unit receives the configuration information sent by the control unit 230, the input and output unit can also forward the configuration information to the external network element.
  • the control unit 230 is further configured to detect whether there is a faulty input/output unit in the input/output unit in an active state, and if the detection result is a faulty input/output unit, the pending content of the failed input/output unit is transferred.
  • the other input and output units are faulty inputs selected from the at least two input and output units by the resource allocation unit according to the performance parameters of the at least two input and output units monitored in real time. Input and output units other than the output unit.
  • the virtual machine of the input/output unit may be infected with a virus or the hardware device used by the virtual machine is damaged, and the like, so that the fault occurs in the input and output unit.
  • the control unit 230 can detect whether there is a faulty input and output in the input/output unit in the working state in real time or every predetermined time.
  • fault management subunit may send a configuration request to the configuration management sub-unit, configured such that the management subunit appears to be the processing contents of the input-output unit is transferred to the failure of at least two input-output units Other input and output units.
  • the control unit 230 transfers the faulty
  • the resource allocation unit 210 may select, from the at least two input and output units, the faulty input and output unit according to the performance parameters of the at least two input and output units monitored in real time. The best input and output units of the performance parameters are used as other input and output units.
  • the input/output unit in the working state refers to an input/output unit that currently has a network management request to be processed.
  • system further includes:
  • a storage unit group 240 comprising at least two storage units obtained by virtualization
  • the resource allocation unit 210 is further configured to monitor performance parameters of at least two storage units in real time, and select one storage unit from the at least two storage units according to the performance parameter to perform a storage operation; specific, performance parameters, corresponding resource allocation units
  • the 210 may also monitor performance parameters of at least one of the storage units in real time, and select one of the at least two storage units to perform a storage operation according to the performance parameter.
  • the control unit 230 is further configured to send the configuration information to the storage unit selected by the resource allocation unit 210. Specifically, when the storage unit exists in the network management system, in order to facilitate the user to view the history management record of the network management system, the control unit 230 After the configuration information is set, the control unit 230 may also transmit the configuration information to the storage unit selected by the resource allocation unit 210.
  • the storage unit is configured to save the configuration information sent by the control unit 230 when in the state selected by the resource allocation unit 210. On the other hand, when the storage unit is in the state selected by the resource allocation unit 210, the configuration information transmitted by the control unit 230 is saved.
  • control unit 230 is further configured to detect whether there is a faulty storage unit in the storage unit in the working state, and if the detection result is a faulty storage unit, The storage content of the failed storage unit is transferred to other storage units of the at least two storage units, and the other storage units are at least two storage storage units that are monitored by the resource allocation unit according to real-time monitoring. The content of the content is lost, and the control unit 230 can also detect whether there is a storage unit in the working state.
  • a faulty storage unit is generated, and when the detection result is a faulty storage unit, the storage content of the failed storage unit is transferred to another storage unit of the at least two storage units; and the control unit 230 detects that the storage unit is in the working state
  • the implementation of the faulty input/output unit in the input/output unit is similar.
  • the control unit 230 can detect whether there is a faulty storage unit in the storage unit in the working state through the fault management subunit, and the detection result is present.
  • the configuration management subunit transfers the storage content in the failed storage unit to the other storage unit. Since the resource allocation unit 210 can monitor performance parameters of at least two storage units in real time, in order to improve storage of other storage units in the two storage units in the network management system, the resource allocation unit can be used according to the performance storage unit monitored in real time. Other storage units.
  • control unit 230 is further configured to: detect the fault content of the element, and send the acquired fault content to another storage unit; specifically, to record the faulty storage.
  • the failure content of the unit so that it is convenient to perform failure analysis according to the content of the failure, and the control unit 230 detects that the storage unit in the working state has the faulty storage unit barrier content to the other storage unit.
  • Other storage units are also used to save the faulty content of the failed storage unit sent by the control unit.
  • other storage units are also used to save the fault content of the failed storage unit sent by the control unit 230.
  • control unit 230 is further configured to: when detecting the faulty input/output unit in the input/output unit in the working state, acquiring the fault of the faulty input/output unit Content, and sending the acquired fault content to the storage unit; similarly to the storage unit, in order to facilitate later viewing of the fault content of the input/output unit, the control unit 230 detects that the input and output unit in the working state has a faulty input. When the unit is output, the control unit 230 may also acquire the fault content of the failed input and output unit, and transmit the acquired fault content to the storage unit.
  • the storage unit is further configured to save the fault content of the faulty input and output unit sent by the control unit.
  • the storage unit is further configured to save the faulty input and output list sent by the control unit 230.
  • the fault content of the yuan is further configured to save the faulty input and output list sent by the control unit 230.
  • the resource allocation unit, the input and output unit, the storage unit, and the control unit in this embodiment may all be units existing in the virtual machine, and each virtual machine may share the same hardware device or occupy one each.
  • the hardware device is not limited in this embodiment.
  • the number of the hardware devices to be used in the network management system in this embodiment is less than the number of the hardware devices to be used in the prior art.
  • the network management system in the network greatly reduces the development cost.
  • the network management system receives a network management request sent by an input/output unit, where the network management request is a request from an external network element received by the input/output unit, and the input and output unit is a resource allocation unit.
  • the problem is that the best performing input/output unit of at least two input and output units can be used to perform the forwarding operation, thereby fully utilizing the resources in the network management system, improving the resource utilization rate, and the processing efficiency of the network management system.
  • the embodiment decouples the input and output unit, the storage unit and the control unit, so that when the input/output unit or the storage unit is needed, the unit with the best performance can be flexibly selected without having to request a certain network management.
  • the resource utilization in the system is improved, thereby greatly improving the processing efficiency of the network management system for the network management request.
  • the embodiment detects whether there is a faulty unit in the input/output unit or the storage unit in the working state, and transfers the content of the faulty input/output unit to be processed or the storage content of the faulty storage unit to provide the same function.
  • Other units avoid the need to deal with content processing or information loss due to failures, resulting in network management requests The problem of low processing efficiency improves the processing efficiency of the network management system.
  • FIG. 3 is a flowchart of a method for a network management method according to Embodiment 3 of the present invention.
  • the network management method may be used in the network management system according to Embodiment 1 or Embodiment 2, where the network management method is used.
  • Step 301 Receive a network management request sent by the input/output unit.
  • the network management request is a request from an external network element received by the input/output unit, and the input and output unit monitors, in real time, the performance parameter of at least two input and output units in the input and output unit group obtained by the virtualization according to the resource allocation unit, according to The input and output units of the performance parameters of at least two input and output units are selected;
  • Step 302 Set configuration information according to a network management request.
  • Step 303 Send configuration information to the input/output unit, so that the input/output unit forwards the configuration information to the external network element after receiving the configuration information.
  • the network management method receives a network management request sent by an input/output unit, where the network management request is a request from an external network element received by the input/output unit, and the input and output unit is a resource allocation unit.
  • the problem is that the best performing input/output unit of at least two input and output units can be used to perform the forwarding operation, thereby fully utilizing the resources in the network management system, improving the resource utilization rate, and the processing efficiency of the network management system.
  • the network management method may be used in the network management system according to the first embodiment or the second embodiment.
  • the network management method may include:
  • Step 401 Receive a network management request sent by the input/output unit.
  • the external network element can send a network management request to the network.
  • the input/output unit in the management system after receiving the network management request, the input and output unit can forward the network management request to the control unit, so the control unit can correspondingly receive the network management request sent by the input and output unit.
  • the network management request is a request from an external network element received by the input/output unit, and the input and output unit monitors, in real time, the performance parameter of at least two input and output units in the input and output unit group obtained by the virtualization according to the resource allocation unit, according to The performance parameters of at least two input and output units are selected as input and output units.
  • At least two input and output units in the input/output unit group can register current performance parameters to the resource allocation unit in real time, so the resource allocation unit can monitor performance parameters of at least two input and output units in real time, and according to the monitored performance.
  • the parameter selects one of the at least two input and output units to perform a forwarding operation.
  • the resource allocation unit may select one of the best performing input and output units from the at least two input and output units according to the monitored performance parameters of the at least two input and output units. And perform the forwarding operation by selecting the obtained input/output unit.
  • a hypervisior intermediate layer between the hardware device and the virtual machine can make Multiple virtual machines and applications share hardware and can be responsible for accessing hardware resources. Therefore, the Hypervisior middle layer can monitor the performance parameters of each input and output unit in real time, that is, the resource allocation unit can be virtualized in actual implementation.
  • Hypervisior middle layer when the hardware device in the network management system receives the network management request, the Hypervisior middle layer between the hardware device and the virtual machine can receive the network management request through the selected input and output unit, and will receive The incoming network management request is forwarded to the control unit, and correspondingly, the control unit can receive the network management request from the input and output unit selected by the resource allocation unit.
  • the network management request may be any one of a performance management request, a fault management request, a security management request, a configuration management request, and a charging management request
  • the control unit may include performance in order to be able to process various network management requests.
  • the input and output unit may send a performance management request to the performance management subunit; when the network management request is a fault management request, the input and output unit may send the fault management request to the fault management subunit; when the network management request is a billing management request
  • the input and output unit can send a charging management request to the charging management subunit. and many more.
  • each sub-unit in the control unit can share the same virtual machine, and each virtual machine can occupy the same hardware device, and each virtual machine can share the same hardware device. This is not a limitation.
  • a virtual Hypervisior middle layer can be set in the network management system, and the performance parameters of each input and output unit from the plurality of Hypervisior intermediate layers are monitored by using the virtual Hypervisior intermediate layer, which is specifically The form of implementation is not limited.
  • Step 402 Set configuration information according to a network management request.
  • control unit After the control unit receives the network management request, the control unit may set the configuration information according to the network management request.
  • the performance management subunit when the performance management subunit in the control unit receives the performance management request sent by the input/output unit, the performance management subunit may detect whether the external network element is abnormal according to the performance management request, and detect the external network in the performance management subunit. When the element is abnormal, sending a fault management request to the fault management subunit, and sending a configuration management request to the configuration management subunit after the fault management subunit performs fault processing, so that the configuration management subunit sets the configuration information according to the configuration management request;
  • the fault management subunit in the control unit may detect whether the external network element is faulty according to the fault management request, thereby reporting to the configuration manager when the detection result is a fault.
  • the unit sends a configuration request, so that the configuration management sub-unit sets the configuration information according to the configuration management request;
  • the control unit may also receive the request through the corresponding sub-unit, and process the management request by using a similar processing procedure. I won't go into details here.
  • Step 403 Send configuration information to the input/output unit, so that the input/output unit forwards the configuration information to the external network element after receiving the configuration information.
  • control unit may send the configuration information to the input/output unit, so that the input/output unit forwards the received configuration information to the external network element after receiving the configuration information.
  • Step 404 Send configuration information to a storage unit in the storage unit group obtained by virtualization, to The storage unit saves the configuration information.
  • the control unit may also transmit the configuration information to the storage unit in the virtualized storage unit group, so that the storage unit saves the configuration information.
  • the storage unit monitors, in real time, a performance parameter of at least two storage units in the storage unit group, and a storage unit selected according to the performance parameter.
  • the time registers the current performance parameter with the resource allocation unit, and the resource allocation unit can monitor the performance parameter of each storage unit accordingly, and select a storage unit from the at least two storage units to perform the storage operation according to the monitored performance parameter.
  • the resource allocation unit may select the storage unit with the best performance from the at least two storage units, and select the obtained storage unit.
  • this embodiment does not limit this. For example, when the control unit sends configuration information to the storage unit, the Hypervisior middle layer between the storage unit and the hardware device can store the received configuration information through the selected best performing storage unit.
  • the network management method receives a network management request sent by an input/output unit, where the network management request is a request from an external network element received by the input/output unit, and the input and output unit is a resource allocation unit.
  • the problem is that the best performing input/output unit of at least two input and output units can be used to perform the forwarding operation, thereby fully utilizing the resources in the network management system, improving the resource utilization rate, and the processing efficiency of the network management system.
  • the embodiment decouples the input and output unit, the storage unit and the control unit, so that when the input/output unit or the storage unit is needed, the unit with the best performance can be flexibly selected without having to request a certain network management.
  • the resource utilization in the system is improved, thereby greatly improving the processing efficiency of the network management system for the network management request.
  • the network management method may be used in the network management system according to the first embodiment or the second embodiment.
  • the network management method may include:
  • Step 501 Detect whether there is a faulty input/output unit in the input/output unit in the working state
  • the input/output unit since the input/output unit is in the working state, it may be faulty due to various reasons such as the virus of the virtual machine where the input/output unit is infected or the hardware device used by the virtual machine is damaged, so in order to avoid the input and output.
  • the unit fails, the content that the input/output unit needs to process cannot be processed in time, thereby reducing the processing efficiency of the network management system, and the control unit can detect whether there is a faulty input/output unit in the input/output unit in the working state.
  • the input and output unit in the working state refers to the input and output unit of the network management request that currently needs to be processed.
  • the control unit detects whether there is a faulty input/output unit in the input/output unit in the working state, and may include: the control unit passes the fault management sub- The unit detects whether there is a faulty input/output unit in the input/output unit in the working state.
  • the input and output unit group there are four input and output units A, B, C, and D, and the input and output units currently in the working state are the input and output unit A and the input and output unit B, and the fault management subunit in the control unit It is possible to detect whether or not the two input/output units of the input/output unit A and the input/output unit B have failed.
  • Step 502 If the detection result is that there is a faulty input/output unit, transfer the to-be-processed content of the input/output unit to the other one of the at least two input/output units;
  • the control unit may transfer the to-be-processed content of the input/output unit to the other input/output units of the at least two input and output units.
  • the other input/output unit is an input/output unit other than the faulty input/output unit selected from the at least two input and output units by the resource allocation unit according to the performance parameters of the at least two input and output units monitored in real time.
  • the fault management subunit may send a configuration request to the configuration management subunit, thereby configuring the subunit by Within the pending input and output unit of the faulty unit
  • the capacity is transferred to other input and output units of at least two input and output units.
  • the resource allocation unit may select performance from the at least two input and output units in addition to the faulty input and output unit according to the performance parameters of the at least two input and output units monitored in real time.
  • the parameter-optimal input and output unit acts as the other input and output unit.
  • the fault management subunit may send a configuration request to the configuration management subunit, and after receiving the configuration request, the configuration management subunit inputs the output unit A.
  • the to-be-processed content is transferred to other input/output units other than A in the input/output unit group.
  • the best performing input/output unit in the input/output units C and D monitored by the resource allocation unit is C, then configuration management The subunit can transfer the to-be-processed content in the input-output unit A to the input-output unit C.
  • the control unit detects When there is a faulty input/output unit in the working input/output unit, the control unit can acquire the fault content of the failed input/output unit.
  • the acquired fault content is sent to the storage unit, so that the storage unit saves the fault content of the failed input and output unit.
  • the control unit may send the fault content to the storage. unit.
  • the storage unit can save the fault content of the failed input and output unit sent by the control unit.
  • the storage unit selects, by the resource allocation unit, the obtained storage unit according to performance parameters of at least two storage units monitored in real time.
  • Step 503 Receive a network management request sent by the input/output unit.
  • the external network element may send a network management request to an input/output unit in the network management system, and after receiving the network management request, the input/output unit may forward the network management request to the control unit, so The control unit can correspondingly receive the network management request sent by the input and output unit.
  • the network management request is a request from an external network element received by the input/output unit, and the input and output unit monitors the input and output obtained by virtualization in real time for the resource allocation unit.
  • a performance parameter of at least two input and output units in the unit group, and the obtained input and output unit is selected according to performance parameters of the at least two input and output units;
  • the input/output unit selected by the resource allocation unit receives the network management request and forwards the network management request to the control unit, and the input/output unit fails, according to the processing manners of step 501 and step 502, the control may be known.
  • the unit will transfer the pending content of the failed input/output unit to other input and output units, and receive network management requests sent by other input and output units.
  • the control unit detects that the input/output unit A has failed, and transfers the fault management request waiting for processing in the input and output unit A to the input of the resource allocation unit reselection.
  • the unit C is output, whereby the fault management request is forwarded by the input and output unit C to the control unit, and the corresponding control unit receives the fault management request sent by the input and output unit C.
  • step 401 is similar to the step 401 in the fourth embodiment.
  • step 401 is not described here.
  • Step 504 Set configuration information according to a network management request.
  • control unit After the control unit receives the network management request, the control unit may set the configuration information according to the network management request.
  • the performance management subunit when the performance management subunit in the control unit receives the performance management request sent by the input/output unit, the performance management subunit may detect whether the external network element is abnormal according to the performance management request, and detect the external network in the performance management subunit. When the element is abnormal, sending a fault management request to the fault management subunit, and sending a configuration management request to the configuration management subunit after the fault management subunit performs fault processing, so that the configuration management subunit sets the configuration information according to the configuration management request;
  • the fault management subunit in the control unit may detect whether the external network element is faulty according to the fault management request, thereby reporting to the configuration manager when the detection result is a fault.
  • the unit sends a configuration request, so that the configuration management sub-unit sets the configuration information according to the configuration management request;
  • the control unit may also receive the request through the corresponding sub-unit, and process the management request by using a similar processing procedure. I won't go into details here.
  • Step 505 Send configuration information to the input/output unit, so that the input/output unit forwards the configuration information to the external network element after receiving the configuration information.
  • the control unit may send the configuration information to the input and output unit, so that the input and output unit forwards the received configuration information to the external network element after receiving the configuration information.
  • Step 506 Send configuration information to the storage unit in the storage unit group obtained by virtualization, so that the storage unit saves the configuration information.
  • the control unit may also transmit the configuration information to the storage unit in the virtualized storage unit group, so that the storage unit saves the configuration information.
  • the storage unit monitors, in real time, a performance parameter of at least two storage units in the storage unit group, and a storage unit selected according to the performance parameter.
  • the time registers the current performance parameter with the resource allocation unit, and the resource allocation unit can monitor the performance parameter of each storage unit accordingly, and select a storage unit from the at least two storage units to perform the storage operation according to the monitored performance parameter.
  • the resource allocation unit may select the storage unit with the best performance from the at least two storage units, and select the obtained storage unit. To implement the storage operation, this embodiment does not limit this. Specifically, when the control unit sends the configuration information to the storage unit, the Hypervisior middle layer located between the storage unit and the hardware device can store the received configuration information by selecting the best performing storage unit.
  • Step 507 Detecting whether there is a faulty storage unit in the storage unit in the working state; in order to prevent the storage unit in the working state from being faulty, the content stored in the storage unit is lost, and the control unit may also detect the storage in the working state. Is there a failed storage unit in the unit? Specifically, similar to the implementation manner of the control unit detecting whether there is a faulty input/output unit in the input/output unit in the working state, the control unit may detect, by the fault management subunit, whether there is a fault in the storage unit in the working state. Storage unit.
  • Step 508 If the detection result is that there is a faulty storage unit, transfer the storage content of the storage unit to another storage unit of at least two storage units.
  • the control unit may transfer the content stored in the failed storage unit to the other one of the at least two storage units.
  • the other storage unit is a resource allocation unit according to performance of at least two storage units monitored in real time Specifically, when the fault management subunit in the control unit detects that there is a faulty storage unit in the storage unit in the working state, the fault management subunit may send a configuration request to the configuration management sub-memory unit. Since the resource allocation unit can monitor the performance parameters of at least two storage units in real time, in order to improve the utilization efficiency of the storage unit in the network management system, the control unit transfers the failure.
  • the best performing storage unit outside the unit serves as the other storage unit.
  • the control unit detects that the fault is in the control unit.
  • the faulty storage unit in the working state storage unit sends the acquired fault content to other storage units, so that other storage units save the faulty content of the failed storage unit.
  • the control unit may further send the acquired fault content to It should be noted that the step 507 and the step 508 can be performed at any time. This embodiment is only used as an example here, and the specific execution time is not limited.
  • the network management method receives a network management request sent by an input/output unit, where the network management request is a request from an external network element received by the input/output unit, and the input and output unit is a resource allocation unit.
  • the problem is that the best performing input/output unit of at least two input and output units can be used to perform the forwarding operation, thereby fully utilizing the resources in the network management system, improving the resource utilization rate, and the processing efficiency of the network management system.
  • the input and output unit, the storage unit, and the control unit are decoupled, so that when the input/output unit or the storage unit is needed, the best performance single can be flexibly selected.
  • the element does not have to use the corresponding input and output and storage when requesting a certain network management, thereby improving the resource utilization rate in the system, thereby greatly improving the processing efficiency of the network management system for the network management request.
  • the embodiment detects whether there is a faulty unit in the input/output unit or the storage unit in the working state, and transfers the content of the faulty input/output unit to be processed or the storage content of the faulty storage unit to provide the same function.
  • the other units avoid the problem that the processing content is not processed or the information is lost due to the failure, so that the processing efficiency of the network management request is low, and the processing efficiency of the network management system is improved.
  • the network management apparatus may include: a request receiving module 610, an information configuration module 620, and an information sending module 630;
  • the request receiving module 610 is configured to receive a network management request sent by the input and output unit, where the network management request is a request received by the input and output unit from an external network element, where the input and output unit is monitored by the resource allocation unit in real time. Virtualizing the performance parameters of at least two input and output units in the input and output unit group, and selecting the input and output unit according to the performance parameters of the at least two input and output units;
  • the information configuration module 620 is configured to set configuration information according to the network management request received by the request receiving module 610;
  • the information sending module 630 is configured to send the configuration information configured by the information configuration module 620 to the input and output unit, so that after receiving the configuration information, the input and output unit forwards the configuration information to the External network element.
  • the network management apparatus receives the network management request sent by the input/output unit, where the network management request is a request from an external network element received by the input/output unit, and the input and output unit is a resource allocation unit.
  • Real-time monitoring performance parameters of at least two input and output units in the input and output unit group obtained by virtualization, selecting input and output units according to performance parameters of at least two input and output units, setting configuration information according to network management request, and Sending the set configuration information to the input/output unit, so that the input/output unit forwards the received configuration information to the external network element after receiving the configuration information; and solves the low efficiency of processing the network management request in the prior art.
  • the problem is that you can use the best performance input and output of at least two input and output units.
  • the unit performs the forwarding operation, thereby fully utilizing the resources in the network management system, improving the resource utilization rate, and the processing efficiency of the network management system.
  • the network management apparatus may include: a request receiving module 710, an information configuration module 720, and an information sending module 730;
  • the request receiving module 710 is configured to receive a network management request sent by the input and output unit, where the network management request is a request received by the input and output unit from an external network element, where the input and output unit is monitored by the resource allocation unit in real time. Virtualizing the performance parameters of at least two input and output units in the input and output unit group, and selecting the input and output unit according to the performance parameters of the at least two input and output units;
  • the information configuration module 720 is configured to set configuration information according to the network management request received by the request receiving module 710;
  • the information sending module 730 is configured to send the configuration information configured by the information configuration module 720 to the input and output unit, so that after receiving the configuration information, the input and output unit forwards the configuration information to the External network element.
  • the device further includes: a fault detection module 740 and a fault processing module 750;
  • the fault detection module 740 is configured to detect whether there is a faulty input/output unit in the input/output unit in the working state;
  • the fault processing module 750 is configured to transfer the to-be-processed content of the input-output unit to the other input of the at least two input-output units when the detection result of the fault detection module is a faulty input/output unit An output unit, wherein the other input/output unit is a faulty input/output unit selected by the resource allocation unit from the at least two input and output units according to performance parameters of the at least two input and output units monitored in real time. External input and output unit.
  • the information sending module 730 is configured to send the configuration information configured by the information configuration module to a storage unit in the storage unit group obtained by virtualization, so that the storage unit saves the configuration information, the storage unit And performing, by the resource allocation unit, real-time monitoring performance parameters of at least two storage units in the storage unit group, and selecting a storage unit according to the performance parameter.
  • the fault detection module 740 is further configured to detect whether there is a faulty storage unit in the storage unit in the working state;
  • the fault processing module 750 is further configured to: when the detection result of the fault detection module is another storage unit that is present, the other storage unit is configured by the resource allocation unit according to the storage unit that is monitored in real time. Storage unit.
  • the device further includes: a fault acquiring module 760 and a fault content sending module 770;
  • the fault obtaining module 760 is configured to: when the fault detecting module detects that the faulty storage unit is in the storage unit that is in the working state, acquire the fault content of the faulty storage unit; and the fault content sending module 770 is configured to send the fault The fault acquisition module 760 obtains the fault content to the other storage unit, so that the other storage unit saves the fault content of the failed storage unit.
  • the fault acquisition module 760 is further configured to: when detecting an input/output unit that has a fault in the input/output unit in an active state, acquire a fault content of the faulty input/output unit; the fault content sending module 770, further And sending the fault content acquired by the fault acquiring module 760 to the storage unit, so that the storage unit saves the fault content of the faulty input and output unit.
  • the network management apparatus receives the network management request sent by the input/output unit, where the network management request is a request from an external network element received by the input/output unit, and the input and output unit is a resource allocation unit.
  • the problem is that the best performing input/output unit of at least two input and output units can be used to perform the forwarding operation, thereby fully utilizing the resources in the network management system, improving the resource utilization rate, and the processing efficiency of the network management system.
  • the embodiment decouples the input and output unit, the storage unit and the control unit, so that when the input/output unit or the storage unit is needed, the unit with the best performance can be flexibly selected without having to request a certain network management. Using the corresponding input and output and storage, the resource utilization in the system is improved, thereby greatly improving the processing efficiency of the network management system for the network management request.
  • the embodiment detects whether there is a faulty unit in the input/output unit or the storage unit in the working state, and transfers the content of the faulty input/output unit to be processed or the storage content of the faulty storage unit to provide the same function.
  • the other units avoid the problem that the processing content is not processed or the information is lost due to the failure, so that the processing efficiency of the network management request is low, and the processing efficiency of the network management system is improved.
  • the network management device in the sixth embodiment and the seventh embodiment may constitute a network management system. For specific technical details of the network management system, refer to the corresponding method embodiment, and details are not described herein again.
  • the network management apparatus may include:
  • the receiver 810 is configured to receive a network management request sent by the input/output unit, where the network management request is a request from the external network element received by the input/output unit, and the input and output unit is monitored by the resource allocation unit in real time by the virtual And obtaining performance parameters of at least two input and output units in the input and output unit group, and selecting the obtained input and output unit according to performance parameters of the at least two input and output units;
  • the processor 820 is configured to set configuration information according to the network management request received by the receiver 810;
  • the transmitter 830 is configured to send the configuration information that is set by the processor 820 to the input and output unit, so that the input and output unit forwards the configuration information to the external network after receiving the configuration information. yuan.
  • the network management apparatus receives the network management request sent by the input/output unit, where the network management request is a request from an external network element received by the input/output unit, and the input and output unit is a resource allocation unit.
  • Real-time monitored virtualized input and output unit group a performance parameter of at least two of the input and output units, an input/output unit selected according to performance parameters of at least two input and output units, setting configuration information according to a network management request, and transmitting the set configuration information to the input/output unit, thereby
  • the input and output unit receives the configuration information, the received configuration information is forwarded to the external network element; the problem of low processing efficiency of the network management request in the prior art is solved, and at least two input and output units can be used.
  • the best performing input and output unit performs the forwarding operation, thereby fully utilizing the resources in the network management system, improving the resource utilization rate, and the processing efficiency of the network management system.
  • the receiver 810, the processor 820, and the transmitter 830 can also implement the following functions:
  • the processor 820 is further configured to detect whether there is a faulty input/output unit in the input/output unit in an active state;
  • the transmitter 830 is further configured to: when the detection result of the processor 820 is a faulty 'T input and output unit, transfer the to-be-processed content of the input/output unit to the at least two inputs ⁇ ' Other input/output units in the T-out unit, wherein the other input-output units are from the at least two input*'s out-of-units according to the performance parameters of the at least two input-output units monitored in real time by the resource allocation unit Input and output units selected in addition to the failed input and output unit.
  • the transmitter 830 is further configured to send the configuration information set by the processor 820 to a storage unit in a storage unit group obtained by virtualization, so that the storage unit saves the configuration information, the storage unit And performing, by the resource allocation unit, real-time monitoring performance parameters of at least two storage units in the storage unit group, and selecting a storage unit according to the performance parameter.
  • the processor 820 is further configured to detect whether there is a faulty storage unit in the storage unit in an active state
  • the transmitter 830 is further configured to: when the detection result of the processor 820 is a faulty storage unit, the other storage unit is configured by the resource allocation unit according to the performance of the at least two storage units monitored in real time.
  • the processor 820 is further configured to: when detecting a faulty storage unit in the storage unit that is in an active state, acquire a fault content of the faulty storage unit;
  • the transmitter 830 is further configured to send the fault content acquired by the processor 820 to the fifth possible implementation manner of the embodiment.
  • the processor 820 is further configured to: when detecting an input/output unit having a fault in the input/output unit in an active state, acquiring a fault content of the faulty input/output unit;
  • the transmitter 830 is further configured to send the fault content acquired by the processor 820 to the storage unit, so that the storage unit saves the fault content of the faulty input/output unit.
  • the network management apparatus receives the network management request sent by the input/output unit, where the network management request is a request from an external network element received by the input/output unit, and the input and output unit is a resource allocation unit.
  • the problem is that the best performing input/output unit of at least two input and output units can be used to perform the forwarding operation, thereby fully utilizing the resources in the network management system, improving the resource utilization rate, and the processing efficiency of the network management system.
  • the embodiment decouples the input and output unit, the storage unit and the control unit, so that when the input/output unit or the storage unit is needed, the unit with the best performance can be flexibly selected without having to request a certain network management.
  • the resource utilization in the system is improved, thereby greatly improving the processing efficiency of the network management system for the network management request.
  • the embodiment detects whether there is a faulty unit in the input/output unit or the storage unit in the working state, and transfers the content of the faulty input/output unit to be processed or the storage content of the faulty storage unit to provide the same function.
  • the other units avoid the problem that the processing content is not processed or the information is lost due to the failure, so that the processing efficiency of the network management request is low, and the processing efficiency of the network management system is improved.
  • the network management device according to the seventh embodiment and the eighth embodiment can be configured as a network management system. For details of the specific technical details of the network management system, refer to the corresponding method embodiment, and details are not described herein again.
  • the serial numbers of the embodiments of the present invention are merely for the description, and do not represent the advantages and disadvantages of the embodiments.
  • a person skilled in the art may understand that all or part of the steps of implementing the above embodiments may be completed by hardware, or may be instructed by a program to execute related hardware, and the program may be stored in a computer readable storage medium.
  • the storage medium mentioned may be a read only memory, a magnetic disk or an optical disk or the like.

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Abstract

本发明实施例提供了一种网络管理系统、方法和装置,涉及网络通信技术领域,所述网络管理方法可以包括:接收输入输出单元发送的网络管理请求;根据所述网络管理请求设置配置信息;发送所述配置信息至所述输入输出单元,以便所述输入输出单元在接收到所述配置信息之后,转发所述配置信息至所述外部网元;解决了现有技术中对网络管理请求的处理效率低的问题,达到了可以使用至少两个输入输出单元中性能最好的输入输出单元来执行转发操作,从而充分的利用网络管理系统中的资源、提高资源利用率以及网络管理系统的处理效率的效果。

Description

网络管理系统、 方法和装置
技术领域
本发明涉及网络通信技术领域,特别涉及一种网络管理系统、方法和装置。 背景技术
网络管理系统是通信系统中的重要网元, 用于负责整个网络的性能管理、 配置管理、 安全管理、 计费管理和故障管理。 常见的网络管理系统是在诸如
SUN/HP/IBM等专用的硬件设备的基础上加载软件的方式来实现, 在硬件设备 的输入输出单元接收到来自网络管理对象的网络管理请求之后,输入输出单元 可以将网络管理请求转发至上层软件, 从而通过上层软件来实现网络管理功 能。
然而在实际实现时, 当网络管理对象较多, 一台硬件设备无法满足管理需 求时, 网络管理系统通常会设置多台硬件设备, 每台硬件设备用来实现指定的 管理功能。 比如, 网络管理系统中有 2台硬件设备, 其中一台硬件设备用来实 现性能管理和安全管理; 另一台硬件设备用来实现配置管理、 计费管理和故障 管理, 从而当网络管理对象请求性能管理时, 发送网络管理请求至第一台硬件 设备; 当网络管理对象请求故障管理时,发送网络管理请求至第二台硬件设备。
在实现本发明的过程中, 发明人发现现有方案至少存在以下问题: 当网络管理对象需要请求网络管理时, 网络管理对象只能发送网络管理请 求至对应的硬件设备的输入输出单元, 而当该硬件设备的输入输出单元的性能 较差, 比如该输入输出单元有多个网络管理请求等待处理时, 刚接收到的网络 管理请求并不能得到高效处理, 所以现有的网络管理系统的处理效率较低。 发明内容
为了解决现有的网络管理系统对网络管理请求的处理效率低的问题, 本发 明实施例提供了一种网络管理系统、 方法和装置。 所述技术方案如下:
第一方面, 提供了一种网络管理系统, 所述系统包括:
资源分配单元、 由虚拟化得到的包括至少两个输入输出单元的输入输出单 元组和控制单元;
所述资源分配单元, 用于实时监控所述至少两个输入输出单元的性能参 数,根据所述性能参数从所述至少两个输入输出单元中选择一个输入输出单元 来执行转发操作;
所述输入输出单元, 用于在处于被所述资源分配单元选择的状态时, 转发 来自外部网元的网络管理请求至所述控制单元;
所述控制单元, 用于根据所述输入输出单元转发的所述网络管理请求设置 配置信息, 发送所述配置信息至所述输入输出单元;
所述输入输出单元, 还用于转发所述配置信息至所述外部网元。
在第一方面的第一种可能的实现方式中, 所述控制单元, 还用于检测处于 工作状态的输入输出单元中是否有出现故障的输入输出单元, 若检测结果为有 出现故障的输入输出单元, 则将出现故障的输入输出单元的待处理内容转移至 所述至少两个输入输出单元中的其它输入输出单元, 所述其它输入输出单元为 所述资源分配单元根据实时监控的所述至少两个输入输出单元的性能参数从 所述至少两个输入输出单元中选择的除出现故障的输入输出单元之外的输入 输出单元。
结合第一方面或者第一方面的第一种可能的实现方式中, 在第二种可能的 实现方式中, 所述系统还包括:
由虚拟化得到的包括至少两个存储单元的存储单元组;
所述资源分配单元, 还用于实时监控所述至少两个存储单元的性能参数, 根据所述性能参数从所述至少两个存储单元中选择一个存储单元来执行存储 操作;
所述控制单元,还用于发送所述配置信息至所述资源分配单元选择的存储 单元;
所述存储单元, 用于在处于被所述资源分配单元选择的状态时, 保存所述 控制单元发送的所述配置信息。
结合第一方面的第二种可能的实现方式, 在第三种可能的实现方式中, 所 述控制单元,还用于检测处于工作状态的存储单元中是否有出现故障的存储单 元, 若检测结果为有出现故障的存储单元, 则将出现故障的存储单元的存储内 资源分配单元根据实时监控的所述至少两个存储单元的性能参数从所述至少 结合第一方面的第三种可能的实现方式, 在第四种可能的实现方式中, 所 述控制单元,还用于在检测到处于工作状态的存储单元中有出现故障的存储单 元时, 获取出现故障的存储单元的故障内容, 并发送获取到的故障内容至所述 其它存储单元;
所述其它存储单元,还用于保存所述控制单元发送的出现故障的存储单元 的故障内容。
结合第一方面的第二种可能的实现方式, 在第五种可能的实现方式中, 所 述控制单元,还用于在检测到处于工作状态的输入输出单元中有出现故障的输 入输出单元时, 获取出现故障的输入输出单元的故障内容, 并发送获取到的故 障内容至所述存储单元;
所述存储单元,还用于保存所述控制单元发送的出现故障的输入输出单元 的故障内容。
第二方面, 提供了一种网络管理方法, 所述方法包括:
接收输入输出单元发送的网络管理请求, 所述网络管理请求为所述输入输 出单元接收到的来自外部网元的请求, 所述输入输出单元为资源分配单元实时 监控由虚拟化得到的输入输出单元组中的至少两个输入输出单元的性能参数, 根据所述至少两个输入输出单元的性能参数选择得到的输入输出单元;
根据所述网络管理请求设置配置信息;
发送所述配置信息至所述输入输出单元, 以便所述输入输出单元在接收到 所述配置信息之后, 转发所述配置信息至所述外部网元。
在第二方面的第一种可能的实现方式中, 所述方法还包括:
检测处于工作状态的输入输出单元中是否有出现故障的输入输出单元; 若检测结果为有出现故障的输入输出单元, 则将所述输入输出单元的待处 理内容转移至所述至少两个输入输出单元中的其它输入输出单元, 所述其它输 入输出单元为所述资源分配单元根据实时监控的所述至少两个输入输出单元 的性能参数从所述至少两个输入输出单元中选择的除出现故障的输入输出单 元之外的输入输出单元。
结合第二方面或者第二方面的第一种可能的实现方式, 在第二种可能的实 现方式中, 所述根据所述网络管理请求设置配置信息之后, 所述方法还包括: 发送所述配置信息至由虚拟化得到的存储单元组中的存储单元, 以便所述 存储单元保存所述配置信息, 所述存储单元为所述资源分配单元实时监控所述 存储单元组中的至少两个存储单元的性能参数,根据所述性能参数选择的存储 单元。
结合第二方面的第二种可能的实现方式, 在第二方面的第三种可能的实现 方式中, 检测处于工作状态的存储单元中是否有出现故障的存储单元;
若检测结果为有出现故障的存储单元, 则将所述存储单元的存储内容转移 至所述至少两个存储单元的其它存储单元, 所述其它存储单元为所述资源分配 单元根据实时监控的所述至少两个存储单元的性能参数从所述至少两个存储 结合第二方面的第三种可能的实现方式, 在第四种可能的实现方式中, 所 述方法还包括:
在检测到处于工作状态的存储单元中有出现故障的存储单元时, 获取出现 故障的存储单元的故障内容;
发送获取到的故障内容至所述其它存储单元, 以便所述其它存储单元保存 出现故障的存储单元的故障内容。
结合第二方面的第二种可能的实现方式, 在第五种可能的实现方式中, 所 述方法还包括:
在检测到处于工作状态的输入输出单元中有出现故障的输入输出单元时, 获取出现故障的输入输出单元的故障内容;
发送获取到的故障内容至所述存储单元, 以便所述存储单元保存出现故障 的输入输出单元的故障内容。
第三方面, 提供了一种网络管理装置, 所述装置包括:
请求接收模块, 用于接收输入输出单元发送的网络管理请求, 所述网络管 理请求为所述输入输出单元接收到的来自外部网元的请求, 所述输入输出单元 为资源分配单元实时监控由虚拟化得到的输入输出单元组中的至少两个输入 输出单元的性能参数,根据所述至少两个输入输出单元的性能参数选择得到的 输入输出单元;
信息配置模块, 用于根据所述请求接收模块接收到的所述网络管理请求设 置配置信息;
信息发送模块, 用于发送所述信息配置模块配置的所述配置信息至所述输 入输出单元, 以便所述输入输出单元在接收到所述配置信息之后, 转发所述配 置信息至所述外部网元。
在第三方面的第一种可能的实现方式中, 所述装置还包括:
故障检测模块, 用于检测处于工作状态的输入输出单元中是否有出现故障 的输入输出单元;
故障处理模块, 用于在所述故障检测模块的检测结果为有出现故障的输入 输出单元时, 将所述输入输出单元的待处理内容转移至所述至少两个输入输出 单元中的其它输入输出单元, 所述其它输入输出单元为所述资源分配单元根据 实时监控的所述至少两个输入输出单元的性能参数从所述至少两个输入输出 单元中选择的除出现故障的输入输出单元之外的输入输出单元。
结合第三方面或者第三方面的第一种可能的实现方式, 在第二种可能的实 现方式中, 所述信息发送模块, 用于发送所述信息配置模块配置的所述配置信 息至由虚拟化得到的存储单元组中的存储单元, 以便所述存储单元保存所述配 置信息, 所述存储单元为所述资源分配单元实时监控所述存储单元组中的至少 两个存储单元的性能参数, 根据所述性能参数选择的存储单元。
结合第三方面的第二种可能的实现方式, 在第三种可能的实现方式中, 所 述故障检测模块,还用于检测处于工作状态的存储单元中是否有出现故障的存 储单元;
所述故障处理模块,还用于在所述故障检测模块的检测结果为有出现故障 它存储单元, 所述其它存储单元为所述资源分配单元根据实时监控的所述至少 储单元之外的存储单元。
结合第三方面的第三种可能的实现方式, 在第四种可能的实现方式中, 所 述装置还包括:
故障获取模块, 用于在所述故障检测模块检测到处于工作状态的存储单元 中有出现故障的存储单元时, 获取出现故障的存储单元的故障内容;
故障内容发送模块, 用于发送所述故障获取模块获取到的故障内容至所述 结合第三方面的第二种可能的实现方式, 在第五种可能的实现方式中, 所 述故障获取模块,还用于在检测到处于工作状态的输入输出单元中有出现故障 的输入输出单元时, 获取出现故障的输入输出单元的故障内容; 所述故障内容发送模块,还用于发送所述故障获取模块获取到的故障内容 至所述存储单元, 以便所述存储单元保存出现故障的输入输出单元的故障内 谷。
第四方面, 提供了一种网络管理装置, 所述装置包括:
接收机, 用于接收输入输出单元发送的网络管理请求, 所述网络管理请求 为所述输入输出单元接收到的来自外部网元的请求, 所述输入输出单元为资源 分配单元实时监控由虚拟化得到的输入输出单元组中的至少两个输入输出单 元的性能参数,根据所述至少两个输入输出单元的性能参数选择得到的输入输 出单元;
处理器, 用于根据所述接收机接收到的所述网络管理请求设置配置信息; 发射机, 用于发送所述处理器设置的所述配置信息至所述输入输出单元, 以便所述输入输出单元在接收到所述配置信息之后, 转发所述配置信息至所述 夕卜部网元。
在第四方面的第一种可能的实现方式中, 所述处理器, 还用于检测处于工 作状态的输入输出单元中是否有出现故障的输入输出单元;
所述发射机,还用于在所述处理器的检测结果为有出现故障的输入输出单 元时,将所述输入输出单元的待处理内容转移至所述至少两个输入输出单元中 的其它输入输出单元, 所述其它输入输出单元为所述资源分配单元根据实时监 控的所述至少两个输入输出单元的性能参数从所述至少两个输入输出单元中 选择的除出现故障的输入输出单元之外的输入输出单元。
结合第四方面或者第四方面的第一种可能的实现方式, 在第二种可能的实 现方式中, 所述发射机, 还用于发送所述处理器设置的所述配置信息至由虚拟 化得到的存储单元组中的存储单元, 以便所述存储单元保存所述配置信息, 所 述存储单元为所述资源分配单元实时监控所述存储单元组中的至少两个存储 单元的性能参数, 根据所述性能参数选择的存储单元。
结合第四方面的第二种可能的实现方式, 在第三种可能的实现方式中, 所 述处理器, 还用于检测处于工作状态的存储单元中是否有出现故障的存储单 元;
所述发射机, 还用于在所述处理器的检测结果为有出现故障的存储单元 时, 将所述存储单元的存储内容转移至所述至少两个存储单元的其它存储单 元, 所述其它存储单元为所述资源分配单元根据实时监控的所述至少两个存储 外的存储单元。
结合第四方面的第三种可能的实现方式, 在第四种可能的实现方式中, 所 述处理器,还用于在检测到处于工作状态的存储单元中有出现故障的存储单元 时, 获取出现故障的存储单元的故障内容;
所述发射机,还用于发送所述处理器获取到的故障内容至所述其它存储单 结合第四方面的第二种可能的实现方式, 在第五种可能的实现方式中, 所 述处理器,还用于在检测到处于工作状态的输入输出单元中有出现故障的输入 输出单元时, 获取出现故障的输入输出单元的故障内容;
所述发射机, 还用于发送所述处理器获取到的故障内容至所述存储单元, 以便所述存储单元保存出现故障的输入输出单元的故障内容。
第五方面, 提供了一种网络管理系统, 其包括第三方面以及第三方面的各 种可能的实现方式所述的网络管理装置。
第六方面, 提供了一种网络管理系统, 其包括第四方面以及第四方面的各 种可能的实现方式所述的网络管理装置。
本发明实施例提供的技术方案的有益效果是:
通过接收输入输出单元发送的网络管理请求, 该网络管理请求为输入输出 单元接收到的来自外部网元的请求,输入输出单元为资源分配单元实时监控的 由虚拟化得到的输入输出单元组中的至少两个输入输出单元的性能参数,根据 至少两个输入输出单元的性能参数选择得到的输入输出单元,根据网络管理请 求设置配置信息, 并将设置的配置信息发送至输入输出单元, 从而使得输入输 出单元在接收到配置信息之后, 将接收到的配置信息转发至外部网元; 解决了 现有技术中对网络管理请求的处理效率低的问题, 达到了可以使用至少两个输 入输出单元中性能最好的输入输出单元来执行转发操作,从而充分的利用网络 管理系统中的资源、 提高资源利用率以及网络管理系统的处理效率的效果。 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是本发明实施例一提供的网络管理系统的结构示意图;
图 2A是本发明实施例二提供的网络管理系统的结构示意图;
图 2B是本发明实施例二提供的网络管理系统的另一结构示意图; 图 3是本发明实施例三提供的网络管理方法的方法流程图;
图 4是本发明实施例四提供的网络管理方法的方法流程图;
图 5是本发明实施例五提供的网络管理方法的方法流程图;
图 6是本发明实施例六提供的网络管理装置的结构方框图;
图 7是本发明实施例七提供的网络管理装置的结构方框图;
图 8是本发明实施例八提供的网络管理装置的结构方框图。 具体实施方式
为了使本发明的目的、 技术方案和优点更加清楚, 下面将结合附图对本发 明作进一步地详细描述, 显然, 所描述的实施例仅仅是本发明一部份实施例, 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做 出创造性劳动前提下所获得的所有其它实施例, 都属于本发明保护的范围。 实施例一
请参考图 1 ,其示出了本发明实施例一提供的网络管理系统的结构方框图, 该网络管理系统可以包括: 资源分配单元 110、 由虚拟化得到的包括至少两个 输入输出单元的输入输出单元组 120和控制单元 130;
资源分配单元 110, 用于实时监控至少两个输入输出单元的性能参数, 根 据性能参数从至少两个输入输出单元中选择一个输入输出单元来执行转发操 作;
输入输出单元, 用于在处于被资源分配单元 110选择的状态时, 转发来自 外部网元的网络管理请求至控制单元;
控制单元 130,用于根据输入输出单元转发的网络管理请求设置配置信息, 发送配置信息至输入输出单元;
输入输出单元, 还用于转发配置信息至外部网元。
综上所述, 本实施例提供的网络管理系统, 通过接收输入输出单元发送的 网络管理请求, 该网络管理请求为输入输出单元接收到的来自外部网元的请 求,输入输出单元为资源分配单元实时监控的由虚拟化得到的输入输出单元组 中的至少两个输入输出单元的性能参数,根据至少两个输入输出单元的性能参 数选择得到的输入输出单元, 根据网络管理请求设置配置信息, 并将设置的配 置信息发送至输入输出单元, 从而使得输入输出单元在接收到配置信息之后, 将接收到的配置信息转发至外部网元; 解决了现有技术中对网络管理请求的处 理效率低的问题, 达到了可以使用至少两个输入输出单元中性能最好的输入输 出单元来执行转发操作, 从而充分的利用网络管理系统中的资源、 提高资源利 用率以及网络管理系统的处理效率的效果。 实施例二
请参考图 2Α, 其示出了本发明实施例二提供的网络管理系统的结构方框 图, 该网络管理系统可以包括: 资源分配单元 210、 由虚拟化得到的包括至少 两个输入输出单元的输入输出单元组 220和控制单元 230;
资源分配单元 210, 用于实时监控至少两个输入输出单元的性能参数, 根 据每个输入输出单元的性能参数从至少两个输入输出单元中选择一个输入输 出单元来执行转发操作; 具体的讲, 输入输出单元组 220中的至少两个输入输 出单元可以实时或者每隔预定时间向资源分配单元 210注册当前的性能参数, 相应的资源分配单元 210可以实时监控至少两个输入输出单元的性能参数, 并 且根据监控的性能参数从至少两个输入输出单元中选择一个输入输出单元来 执行转发操作。 优选地, 为了提高网络管理系统中各个输入输出单元的利用效 率, 资源分配单元 210可以根据监控的至少两个输入输出单元的性能参数从至 少两个输入输出单元中选择一个性能最佳的输入输出单元, 并通过选择得到的 性能最佳的输入输出单元来执行转发操作。
在实际实现时, 由于输入输出单元组中的至少两个输入输出单元是由虚拟 化得到的输入输出单元, 同时在虚拟化环境中, 位于硬件设备和虚拟机之间的 Hypervisior中间层可以使得多个虚拟机和应用程序共享硬件, 并且可以负责硬 件资源的访问,所以 Hypervisior中间层可以实时监控每个输入输出单元的性能 参数,也即本实施例中的资源分配单元 210在实际实现时可以是虚拟化环境中 的 Hypervisior中间层, 具体结构请参考图 2B。
需要说明的是, 当输入输出单元组 220中的各个输入输出单元的虚拟机占 用不同的硬件设备,也即每个输入输出单元对应一个 Hypervisior中间层时, 为 了能够实现对各个输入输出单元的性能参数的监控, 网络管理系统中可以设置 一个虚拟的 Hypervisior中间层, 通过使用该虚拟的 Hypervisior中间层来监控 来自多个 Hypervisior中间层中的各个输入输出单元的性能参数,本实施例对其 具体实现形式并不做限定。
输入输出单元, 用于在处于被资源分配单元 210选择的状态时, 转发来自 外部网元的网络管理请求至控制单元; 具体的讲, 当外部网元需要请求网络管 理时, 外部网元可以发送网络管理请求至网络管理系统, 相应的, 网络管理系 统使用的硬件设备在接收到网络管理请求之后, 处于硬件设备与虚拟机之间的 的 Hypervisior 中间层可以通过选择得到的输入输出单元来转发网络管理请求 至控制单元 230, 也即, 输入输出单元, 用于在处于被资源分配单元 210选择 的状态时,转发来自外部网元的网络管理请求至控制单元 230。在实际实现时, 网络管理请求可以是性能管理请求、 配置管理请求、 故障管理请求、 安全管理 请求和计费管理请求中的任一种, 这与现有的网络管理系统中的网络管理请求 类似, 本实施例在此不再多做赘述; 同时, 为了能够对各种网络管理请求进行 处理, 控制单元 230可以具体包括性能管理子单元、 配置管理子单元、 故障管 理子单元、 安全管理子单元以及计费管理子单元中的至少一个子单元, 从而当 输入输出单元接收到的来自外部网元的网络管理请求为性能管理请求时,输入 输出单元可以发送性能管理请求至性能管理子单元; 当网络管理请求为故障管 理请求时, 输入输出单元可以发送故障管理请求至故障管理子单元; 当网络管 理请求为计费管理请求时,输入输出单元可以发送计费管理请求至计费管理子 单元等等。
需要说明的是, 本实施例只是以控制单元 230中的各个子单元共用同一台 虚拟机为例, 在实际实现时, 控制单元 230中的各个子单元还可以各自占用一 台虚拟机, 并且各个虚拟机可以共用同一台硬件设备, 也可以各自占用一台硬 件设备, 本实施例对此并不做限定。
控制单元 230,用于根据输入输出单元转发的网络管理请求设置配置信息, 发送配置信息至输入输出单元; 具体的, 在控制单元 230接收到输入输出单元 转发的网络管理请求之后,控制单元 230可以根据输入输出单元转发的网络管 理请求设置配置信息,并在设置配置信息之后,发送配置信息至输入输出单元。 在实际实现时, 当控制单元 230中的性能管理子单元接收到性能管理请求时, 性能管理子单元可以根据性能管理请求检测外部网元是否出现异常, 在性能管 理子单元检测到外部网元出现性能异常时, 向故障管理子单元发送故障处理请 求, 并由故障管理子单元进行故障处理之后向配置管理子单元发送配置管理请 求, 从而由配置管理子单元根据接收到的配置管理请求设置配置信息, 并发送 配置信息至输入输出单元; 而当控制单元 230中的故障管理子单元接收到故障 管理请求时, 故障管理子单元可以根据故障管理请求对外部网元进行故障处 理, 并根据处理结果发送故障配置请求至配置管理子单元, 从而由配置管理子 单元设置配置信息, 并发送配置信息至输入输出单元。 类似的, 当控制单元中 的其它子单元接收到管理请求时, 可以采用类似的处理流程, 本实施例在此不 再一一赞述。
输入输出单元, 还用于转发配置信息至外部网元。 在输入输出单元接收到 控制单元 230发送的配置信息之后,输入输出单元还可以转发配置信息至外部 网元。
在本实施例的第一种可能的实现方式中,
控制单元 230, 还用于检测处于工作状态的输入输出单元中是否有出现故 障的输入输出单元, 若检测结果为有出现故障的输入输出单元, 则将出现故障 的输入输出单元的待处理内容转移至至少两个输入输出单元中的其它输入输 出单元, 其它输入输出单元为资源分配单元根据实时监控的至少两个输入输出 单元的性能参数从至少两个输入输出单元中选择的除出现故障的输入输出单 元之外的输入输出单元。
具体的, 由于输入输出单元在处于工作状态时, 可能会因为输入输出单元 所在的虚拟机感染病毒或者虚拟机使用的硬件设备损坏等等各种原因而出现 故障, 所以为了避免在输入输出单元出现故障时, 该输入输出单元需要处理的 内容不能及时处理, 从而降低网络管理系统的处理效率, 控制单元 230可以实 时或者每隔预定时间检测处于工作状态的输入输出单元中是否有出现故障的 输入输出单元, 并在检测结果为有出现故障的输入输出单元时, 将出现故障的 输入输出单元的待处理内容转移至至少两个输入输出单元中的其它输入输出 单元; 由于故障检测通常有故障管理子单元来实现, 所以上述步骤可以可以包 括控制单元 230通过故障管理子单元来检测处于工作状态的输入输出单元中是 否有出现故障的输入输出单元, 当检测结果为有出现故障的输入输出单元时, 故障管理子单元可以发送配置请求至配置管理子单元,从而由配置管理子单元 将出现故障的输入输出单元的待处理内容转移至至少两个输入输出单元中的 其它输入输出单元。 在实际实现时, 为了更好的利用网络管理系统中的资源, 避免其中一部分输入输出单元有多个网络管理请求需要处理, 而另一部分输入 输出单元处于空闲状态, 在控制单元 230转移出现故障的输入输出单元的待处 理内容至其他输入输出单元时, 资源分配单元 210可以根据实时监控的至少两 个输入输出单元的性能参数从至少两个输入输出单元中选择除出现故障的输 入输出单元之外的性能参数最佳的输入输出单元作为其它输入输出单元。 其 中, 处于工作状态的输入输出单元是指当前有需要处理的网络管理请求的输入 输出单元。
在本实施例的第二种可能的实现方式中, 系统还包括:
由虚拟化得到的包括至少两个存储单元的存储单元组 240;
资源分配单元 210, 还用于实时监控至少两个存储单元的性能参数, 根据 性能参数从至少两个存储单元中选择一个存储单元来执行存储操作; 具体的, 的性能参数,相应的资源分配单元 210还可以实时监控至少连个存储单元的性 能参数, 并根据性能参数从至少两个存储单元中选择一个存储单元来执行存储 操作。
控制单元 230,还用于发送配置信息至资源分配单元 210选择的存储单元; 具体的, 当网络管理系统中存在存储单元时, 为了便于用户之后查看网络管理 系统的历史管理记录, 在控制单元 230设置配置信息之后, 控制单元 230还可 以发送配置信息至资源分配单元 210选择的存储单元。
存储单元, 用于在处于被资源分配单元 210选择的状态时, 保存控制单元 230发送的配置信息。 而存储单元在处于被资源分配单元 210选择的状态时, 保存控制单元 230发送的配置信息。
在本实施例的第三种可能的实现方式中, 控制单元 230, 还用于检测处于 工作状态的存储单元中是否有出现故障的存储单元, 若检测结果为有出现故障 的存储单元, 则将出现故障的存储单元的存储内容转移至至少两个存储单元中 的其它存储单元, 其它存储单元为资源分配单元根据实时监控的至少两个存储 存储单元。 的内容出现丟失,控制单元 230还可以检测处于工作状态的存储单元中是否有 出现故障的存储单元, 并在检测结果为有出现故障的存储单元时, 将出现故障 的存储单元的存储内容转移至至少两个存储单元中的其它存储单元; 与控制单 元 230检测处于工作状态的输入输出单元中是否存在出现故障的输入输出单元 的实现方式类似,控制单元 230可以通过故障管理子单元来检测处于工作状态 的存储单元中是否存在出现故障的存储单元, 并在检测结果为有出现故障的存 储单元时, 发送配置管理请求至配置管理子单元, 从而由配置管理子单元将出 现故障的存储单元中的存储内容转移至其它存储单元。 由于资源分配单元 210 可以实时监控至少两个存储单元的性能参数, 所以为了提高网络管理系统中存 少两个存储单元中的其它存储单元时, 资源分配单元可以根据实时监控的性能 储单元来作为其它存储单元。
在本实施例的第四种可能的实现方式中, 控制单元 230, 还用于在检测到 元的故障内容, 并发送获取到的故障内容至其它存储单元; 具体的, 为了记录 出现故障的存储单元的故障内容,从而方便之后能够根据故障内容进行故障分 析, 在控制单元 230检测到处于工作状态的存储单元中有出现故障的存储单元 障内容至其它存储单元。
其它存储单元,还用于保存控制单元发送的出现故障的存储单元的故障内 容。 相应的, 其它存储单元, 还用于保存控制单元 230发送的出现故障的存储 单元的故障内容。
在本实施例的第五种可能的实现方式中, 控制单元 230, 还用于在检测到 处于工作状态的输入输出单元中有出现故障的输入输出单元时, 获取出现故障 的输入输出单元的故障内容, 并发送获取到的故障内容至存储单元; 与存储单 元类似的是, 为了方便之后查看输入输出单元的故障内容, 在控制单元 230检 测到处于工作状态的输入输出单元中有出现故障的输入输出单元时,控制单元 230还可以获取出现故障的输入输出单元的故障内容, 并发送获取到的故障内 容至存储单元。
存储单元,还用于保存控制单元发送的出现故障的输入输出单元的故障内 容。 相应的, 存储单元还用于保存控制单元 230发送的出现故障的输入输出单 元的故障内容。
需要说明的一点是, 本实施例中的资源分配单元、 输入输出单元、 存储单 元以及控制单元都可以是存在于虚拟机中的单元, 并且每台虚拟机可以共用同 一台硬件设备或者各自占用一台硬件设备, 本实施例对此并不做限定。 并且当 存在至少两台虚拟机共用同一硬件设备时, 本实施例中的网络管理系统需要使 用的硬件设备的个数就少于现有技术中需要使用的硬件设备的个数, 所以本实 施例中的网络管理系统大大降低了开发成本。
需要说明的另一点是, 由于本实施例中的输入输出单元、 存储单元和控制 单元都可以认为是运行在虚拟机中的应用程序, 所以在实际实现时, 通信系统 中的优化两个应用程序之间的通信性能的各种技术手段也都可以用于上述各 个单元中, 从而进一步提高网络管理系统的性能, 对于其具体的实现细节可以 参考现有的相关技术文献, 本实施例在此不再——赘述。
综上所述, 本实施例提供的网络管理系统, 通过接收输入输出单元发送的 网络管理请求, 该网络管理请求为输入输出单元接收到的来自外部网元的请 求,输入输出单元为资源分配单元实时监控的由虚拟化得到的输入输出单元组 中的至少两个输入输出单元的性能参数,根据至少两个输入输出单元的性能参 数选择得到的输入输出单元, 根据网络管理请求设置配置信息, 并将设置的配 置信息发送至输入输出单元, 从而使得输入输出单元在接收到配置信息之后, 将接收到的配置信息转发至外部网元; 解决了现有技术中对网络管理请求的处 理效率低的问题, 达到了可以使用至少两个输入输出单元中性能最好的输入输 出单元来执行转发操作, 从而充分的利用网络管理系统中的资源、 提高资源利 用率以及网络管理系统的处理效率的效果。
本实施例通过将输入输出单元、 存储单元以及控制单元进行解耦, 使得在 需要使用输入输出单元或者存储单元时, 可以灵活的选择其中性能最好的单 元, 而不必在请求某一网络管理时使用与其对应的输入输出和存储, 提高了系 统中的资源利用率, 从而大大提高了网络管理系统对网络管理请求的处理效 率。
本实施例通过检测处于工作状态的输入输出单元或者存储单元中是否有 出现故障的单元, 并将出现故障的输入输出单元的待处理内容或者出现故障的 存储单元的存储内容转移至提供同类功能的其它单元, 避免了由于出现故障而 不能及时对待处理内容进行处理或者信息丟失,从而导致的对网络管理请求的 处理效率低的问题, 提高了网络管理系统的处理效率。 实施例三
请参考图 3 ,其示出了本发明实施例三提供的网络管理方法的方法流程图, 该网络管理方法可以用于实施例一或者实施例二所述的网络管理系统中, 该网 络管理方法可以包括:
步骤 301 , 接收输入输出单元发送的网络管理请求;
其中, 网络管理请求为输入输出单元接收到的来自外部网元的请求, 输入 输出单元为资源分配单元实时监控由虚拟化得到的输入输出单元组中的至少 两个输入输出单元的性能参数,根据至少两个输入输出单元的性能参数选择得 到的输入输出单元;
步骤 302, 根据网络管理请求设置配置信息;
步骤 303 , 发送配置信息至输入输出单元, 以便输入输出单元在接收到配 置信息之后, 转发配置信息至外部网元。
综上所述, 本实施例提供的网络管理方法, 通过接收输入输出单元发送的 网络管理请求, 该网络管理请求为输入输出单元接收到的来自外部网元的请 求,输入输出单元为资源分配单元实时监控的由虚拟化得到的输入输出单元组 中的至少两个输入输出单元的性能参数,根据至少两个输入输出单元的性能参 数选择得到的输入输出单元, 根据网络管理请求设置配置信息, 并将设置的配 置信息发送至输入输出单元, 从而使得输入输出单元在接收到配置信息之后, 将接收到的配置信息转发至外部网元; 解决了现有技术中对网络管理请求的处 理效率低的问题, 达到了可以使用至少两个输入输出单元中性能最好的输入输 出单元来执行转发操作, 从而充分的利用网络管理系统中的资源、 提高资源利 用率以及网络管理系统的处理效率的效果。 实施例四 该网络管理方法可以用于实施例一或者实施例二所述的网络管理系统中, 该网 络管理方法可以包括:
步骤 401 , 接收输入输出单元发送的网络管理请求;
当外部网元需要请求网络管理时, 外部网元可以发送网络管理请求至网络 管理系统中的输入输出单元, 输入输出单元在接收到网络管理请求之后, 可以 将网络管理请求转发至控制单元, 所以控制单元可以相应的接收输入输出单元 发送的网络管理请求。
其中, 网络管理请求为输入输出单元接收到的来自外部网元的请求, 输入 输出单元为资源分配单元实时监控由虚拟化得到的输入输出单元组中的至少 两个输入输出单元的性能参数,根据至少两个输入输出单元的性能参数选择得 到的输入输出单元。
具体的讲,输入输出单元组中的至少两个输入输出单元可以实时向资源分 配单元注册当前的性能参数, 所以资源分配单元可以实时监控至少两个输入输 出单元的性能参数, 并且根据监控的性能参数从至少两个输入输出单元中选择 一个输入输出单元来执行转发操作。 优选地, 为了提高网络管理系统中各个输 入输出单元的利用效率, 资源分配单元可以根据监控的至少两个输入输出单元 的性能参数从至少两个输入输出单元中选择一个性能最佳的输入输出单元, 并 通过选择得到的输入输出单元来执行转发操作。 并且在实际实现时, 由于输入 输出单元组中的至少两个输入输出单元是由虚拟化得到的输入输出单元, 同时 在虚拟化环境中,位于硬件设备和虚拟机之间的 Hypervisior中间层可以使得多 个虚拟机和应用程序共享硬件, 并且可以负责硬件资源的访问, 所以 Hypervisior中间层可以实时监控每个输入输出单元的性能参数,也即资源分配 单元在实际实现时可以是虚拟化环境中的 Hypervisior中间层,当网络管理系统 中的硬件设备在接收到网络管理请求时, 处于硬件设备和虚拟机之间的 Hypervisior中间层就可以通过选择得到的输入输出单元来接收网络管理请求, 并将接收到的网络管理请求转发至控制单元, 相应的, 控制单元可以接收到来 自资源分配单元选择的输入输出单元的网络管理请求。
另外, 网络管理请求可以为性能管理请求、故障管理请求、安全管理请求、 配置管理请求和计费管理请求中的任一种, 同时为了能够对各种网络管理请求 进行处理, 控制单元可以包括性能管理子单元、 配置管理子单元、 故障管理子 单元、 安全管理子单元以及计费管理子单元中的至少一个子单元; 从而当输入 输出单元接收到的来自外部网元的网络管理请求为性能管理请求时,输入输出 单元可以发送性能管理请求至性能管理子单元; 当网络管理请求为故障管理请 求时, 输入输出单元可以发送故障管理请求至故障管理子单元; 当网络管理请 求为计费管理请求时,输入输出单元可以发送计费管理请求至计费管理子单元 等等。
需要说明的一点是, 控制单元中的各个子单元可以共用同一虚拟机, 也可 以各占用一台虚拟机, 并且各个虚拟机可以共用同一硬件设备, 也可以各自占 用一台硬件设备, 本实施例对此并不做限定。
需要说明的另一点是, 当输入输出单元组中的各个输入输出单元的虚拟机 占用不同的硬件设备, 也即每个输入输出单元对应一个 Hypervisior中间层时, 为了能够实现对各个输入输出单元的性能参数的监控, 网络管理系统中可以设 置一个虚拟的 Hypervisior中间层, 通过使用该虚拟的 Hypervisior中间层来监 控来自多个 Hypervisior中间层中的各个输入输出单元的性能参数,本实施例对 其具体实现形式并不做限定。
步骤 402, 根据网络管理请求设置配置信息;
在控制单元接收到网络管理请求之后,控制单元可以根据网络管理请求设 置配置信息。
具体的, 当控制单元中的性能管理子单元接收到输入输出单元发送的性能 管理请求时, 性能管理子单元可以根据性能管理请求检测外部网元是否出现异 常, 在性能管理子单元检测到外部网元出现异常时, 向故障管理子单元发送故 障管理请求, 并由故障管理子单元进行故障处理之后向配置管理子单元发送配 置管理请求, 从而由配置管理子单元根据配置管理请求设置配置信息;
当控制单元中的故障管理子单元接收到输入输出单元发送的故障管理请 求时, 故障管理子单元可以根据故障管理请求检测外部网元是否出现故障, 从 而在检测结果为出现故障时向配置管理子单元发送配置请求,从而由配置管理 子单元根据配置管理请求设置配置信息;
类似的, 当网络管理请求为配置管理请求、 计费管理请求或者安全管理请 求时, 控制单元也可以通过相应的子单元来接收请求, 并采用类似的处理流程 对管理请求进行处理, 本实施例对此不再赘述。
步骤 403 , 发送配置信息至输入输出单元, 以便输入输出单元在接收到配 置信息之后, 转发配置信息至外部网元。
在控制单元设置配置信息之后,控制单元可以发送配置信息至输入输出单 元, 以便输入输出单元在接收到配置信息之后, 转发接收到的配置信息至外部 网元。
步骤 404, 发送配置信息至由虚拟化得到的存储单元组中的存储单元, 以 便存储单元保存配置信息。
为了使得之后可以查看网络管理系统的历史管理记录, 在控制单元设置配 置信息之后,控制单元还可以发送配置信息至由虚拟化得到的存储单元组中的 存储单元, 以便存储单元保存配置信息。 其中, 存储单元为资源分配单元实时 监控存储单元组中的至少两个存储单元的性能参数,根据性能参数选择的存储 单元。 时间向资源分配单元注册当前的性能参数, 资源分配单元可以相应的监控每个 存储单元的性能参数, 并根据监控的性能参数从至少两个存储单元中选择一个 存储单元来执行存储操作。其中,为了更好的利用网络管理系统中的各个单元, 从而提高网络管理系统的处理效率, 资源分配单元可以从至少两个存储单元中 选择性能最佳的存储单元, 并通过选择得到的存储单元来实现存储操作, 本实 施例对此并不做限定。 比如当控制单元发送配置信息至存储单元时, 位于存储 单元与硬件设备之间的 Hypervisior 中间层即可通过选择的性能最佳的存储单 元来存储接收到的配置信息。
综上所述, 本实施例提供的网络管理方法, 通过接收输入输出单元发送的 网络管理请求, 该网络管理请求为输入输出单元接收到的来自外部网元的请 求,输入输出单元为资源分配单元实时监控的由虚拟化得到的输入输出单元组 中的至少两个输入输出单元的性能参数,根据至少两个输入输出单元的性能参 数选择得到的输入输出单元, 根据网络管理请求设置配置信息, 并将设置的配 置信息发送至输入输出单元, 从而使得输入输出单元在接收到配置信息之后, 将接收到的配置信息转发至外部网元; 解决了现有技术中对网络管理请求的处 理效率低的问题, 达到了可以使用至少两个输入输出单元中性能最好的输入输 出单元来执行转发操作, 从而充分的利用网络管理系统中的资源、 提高资源利 用率以及网络管理系统的处理效率的效果。
本实施例通过将输入输出单元、 存储单元以及控制单元进行解耦, 使得在 需要使用输入输出单元或者存储单元时, 可以灵活的选择其中性能最好的单 元, 而不必在请求某一网络管理时使用与其对应的输入输出和存储, 提高了系 统中的资源利用率, 从而大大提高了网络管理系统对网络管理请求的处理效 率。 实施例五 该网络管理方法可以用于实施例一或者实施例二所述的网络管理系统中, 该网 络管理方法可以包括:
步骤 501 , 检测处于工作状态的输入输出单元中是否有出现故障的输入输 出单元;
在网络管理系统中, 由于输入输出单元在处于工作状态时, 可能会因为输 入输出单元所在的虚拟机感染病毒或者虚拟机使用的硬件设备损坏等各种原 因而出现故障, 所以为了避免在输入输出单元出现故障时, 该输入输出单元需 要处理的内容不能及时处理, 从而降低网络管理系统的处理效率, 控制单元可 以检测处于工作状态的输入输出单元中是否有出现故障的输入输出单元。 其 中, 处于工作状态的输入输出单元是指当前有需要处理的网络管理请求的输入 输出单元。
具体的, 由于故障检测通常是由控制单元中的故障管理子单元来完成, 所 以控制单元检测处于工作状态的输入输出单元中是否有出现故障的输入输出 单元, 可以包括: 控制单元通过故障管理子单元来检测处于工作状态的输入输 出单元中是否有出现故障的输入输出单元。
比如, 输入输出单元组中有 A、 B、 C和 D四个输入输出单元, 并且当前 处于工作状态的输入输出单元为输入输出单元 A和输入输出单元 B,则控制单 元中的故障管理子单元可以分别检测输入输出单元 A和输入输出单元 B两个 输入输出单元是否出现故障。
步骤 502, 若检测结果为有出现故障的输入输出单元, 则将输入输出单元 的待处理内容转移至至少两个输入输出单元中的其它输入输出单元;
如果控制单元的检测结果为有出现故障的输入输出单元, 则控制单元可以 将输入输出单元的待处理内容转移至至少两个输入输出单元中的其它输入输 出单元。 其中, 其它输入输出单元为资源分配单元根据实时监控的至少两个输 入输出单元的性能参数从至少两个输入输出单元中选择的除出现故障的输入 输出单元之外的输入输出单元。
具体的,控制单元在通过故障管理子单元检测到处于工作状态的输入输出 单元中有出现故障的输入输出单元时,故障管理子单元可以发送配置请求至配 置管理子单元,从而由配置管理子单元将出现故障的输入输出单元的待处理内 容转移至至少两个输入输出单元中的其它输入输出单元。 在实际实现时, 为了 更好的利用网络管理系统中的资源,避免其中一部分输入输出单元有多个网络 管理请求需要处理, 而另一部分输入输出单元处于空闲状态, 在控制单元转移 出现故障的输入输出单元的待处理内容至其它输入输出单元时, 资源分配单元 可以根据实时监控的至少两个输入输出单元的性能参数从至少两个输入输出 单元中选择除出现故障的输入输出单元之外的性能参数最佳的输入输出单元 作为其它输入输出单元。
比如,如果故障管理子单元的检测结果为输入输出单元 A出现故障, 则故 障管理子单元可以发送配置请求至配置管理子单元, 配置管理子单元在接收到 配置请求之后,将输入输出单元 A中的待处理内容转移至输入输出单元组中的 除 A之外的其它输入输出单元, 比如, 资源分配单元监控的输入输出单元 C和 D中性能最佳的输入输入输出单元为 C,则配置管理子单元可以将输入输 出单元 A中的待处理内容转移至输入输出单元 C。
另外, 在检测到处于工作状态的输入输出单元中有出现故障的输入输出单 元时, 获取出现故障的输入输出单元的故障内容; 具体的, 为了获知输入输出 单元的具体故障内容,在控制单元检测到处于工作状态的输入输出单元中有出 现故障的输入输出单元时,控制单元可以获取出现故障的输入输出单元的故障 内容。
发送获取到的故障内容至存储单元, 以便存储单元保存出现故障的输入输 出单元的故障内容。 具体的, 为了记录出现故障的输入输出单元的故障内容, 从而方便之后可以根据故障内容进行故障分析, 在控制单元获取到出现故障的 输入输出单元的故障内容之后, 控制单元可以发送故障内容至存储单元。 相应 的, 存储单元可以保存控制单元发送的出现故障的输入输出单元的故障内容。 其中,存储单元为资源分配单元根据实时监控的至少两个存储单元的性能参数 选择得到的存储单元。
步骤 503 , 接收输入输出单元发送的网络管理请求;
当外部网元需要请求网络管理时, 外部网元可以发送网络管理请求至网络 管理系统中的输入输出单元, 输入输出单元在接收到网络管理请求之后, 可以 将网络管理请求转发至控制单元, 所以控制单元可以相应的接收输入输出单元 发送的网络管理请求。 其中, 网络管理请求为输入输出单元接收到的来自外部 网元的请求,输入输出单元为资源分配单元实时监控由虚拟化得到的输入输出 单元组中的至少两个输入输出单元的性能参数,根据至少两个输入输出单元的 性能参数选择得到的输入输出单元;
然而, 如果被资源分配单元选择得到的输入输出单元在接收到网络管理请 求之后, 转发网络管理请求至控制单元之前, 输入输出单元出现故障, 则根据 步骤 501和步骤 502的处理方式可以知道,控制单元将把出现故障的输入输出 单元的待处理内容转移至其它输入输出单元, 并接收其它输入输出单元发送的 网络管理请求。
比如,输入输出单元 A等待处理的内容为故障管理请求, 则在控制单元检 测到输入输出单元 A出现故障, 并将输入输出单元 A中等待处理的故障管理 请求转移至资源分配单元重新选择的输入输出单元 C,从而由输入输出单 C转 发故障管理请求至控制单元,相应的控制单元接收输入输出单元 C发送的故障 管理请求。
需要说明的是, 本步骤与实施例四中的步骤 401类似, 具体技术细节请参 考步骤 401 , 本实施例在此不再赘述。
步骤 504, 根据网络管理请求设置配置信息;
在控制单元接收到网络管理请求之后,控制单元可以根据网络管理请求设 置配置信息。
具体的, 当控制单元中的性能管理子单元接收到输入输出单元发送的性能 管理请求时, 性能管理子单元可以根据性能管理请求检测外部网元是否出现异 常, 在性能管理子单元检测到外部网元出现异常时, 向故障管理子单元发送故 障管理请求, 并由故障管理子单元进行故障处理之后向配置管理子单元发送配 置管理请求, 从而由配置管理子单元根据配置管理请求设置配置信息;
当控制单元中的故障管理子单元接收到输入输出单元发送的故障管理请 求时, 故障管理子单元可以根据故障管理请求检测外部网元是否出现故障, 从 而在检测结果为出现故障时向配置管理子单元发送配置请求,从而由配置管理 子单元根据配置管理请求设置配置信息;
类似的, 当网络管理请求为配置管理请求、 计费管理请求或者安全管理请 求时, 控制单元也可以通过相应的子单元来接收请求, 并采用类似的处理流程 对管理请求进行处理, 本实施例对此不再赘述。
步骤 505 , 发送配置信息至输入输出单元, 以便输入输出单元在接收到配 置信息之后, 转发配置信息至外部网元。 在控制单元设置配置信息之后,控制单元可以发送配置信息至输入输出单 元, 以便输入输出单元在接收到配置信息之后, 转发接收到的配置信息至外部 网元。
步骤 506, 发送配置信息至由虚拟化得到的存储单元组中的存储单元, 以 便存储单元保存配置信息。
为了使得之后可以查看网络管理系统的历史管理记录, 在控制单元设置配 置信息之后,控制单元还可以发送配置信息至由虚拟化得到的存储单元组中的 存储单元, 以便存储单元保存配置信息。 其中, 存储单元为资源分配单元实时 监控存储单元组中的至少两个存储单元的性能参数,根据性能参数选择的存储 单元。 时间向资源分配单元注册当前的性能参数, 资源分配单元可以相应的监控每个 存储单元的性能参数, 并根据监控的性能参数从至少两个存储单元中选择一个 存储单元来执行存储操作。其中,为了更好的利用网络管理系统中的各个单元, 从而提高网络管理系统的处理效率, 资源分配单元可以从至少两个存储单元中 选择性能最佳的存储单元, 并通过选择得到的存储单元来实现存储操作, 本实 施例对此并不做限定。 具体的, 当控制单元发送配置信息至存储单元时, 位于 存储单元与硬件设备之间的 Hypervisior 中间层即可通过选择的性能最佳的存 储单元来存储接收到的配置信息。
步骤 507 , 检测处于工作状态的存储单元中是否有出现故障的存储单元; 为了防止处于工作状态的存储单元出现故障时,存储单元中存储的内容出 现丟失,控制单元还可以检测处于工作状态的存储单元中是否有出现故障的存 储单元。 具体的, 与控制单元检测处于工作状态的输入输出单元中是否存在出 现故障的输入输出单元的实现方式类似,控制单元可以通过故障管理子单元来 检测处于工作状态的存储单元中是否存在出现故障的存储单元。
步骤 508, 若检测结果为有出现故障的存储单元, 则将存储单元的存储内 容转移至至少两个存储单元的其它存储单元。
如果控制单元的检测结果为有出现故障的存储单元, 则控制单元可以将出 现故障的存储单元中存储的内容转移至至少两个存储单元中的其它存储单元。 其中, 其它存储单元为资源分配单元根据实时监控的至少两个存储单元的性能 具体的,在控制单元中的故障管理子单元检测到处于工作状态的存储单元 中有出现故障的存储单元时,故障管理子单元可以发送配置请求至配置管理子 存储单元。 由于资源分配单元可以实时监控至少两个存储单元的性能参数, 所 以为了提高网络管理系统中存储单元的利用效率,在控制单元转移出现故障的
单元之外的性能最佳的存储单元来作为其它存储单元。
另外, 在检测到处于工作状态的存储单元中有出现故障的存储单元时, 获 取出现故障的存储单元的故障内容; 具体的, 为了获知出现故障的存储单元的 故障内容, 在控制单元检测到处于工作状态的存储单元中有出现故障的存储单 发送获取到的故障内容至其它存储单元, 以便其它存储单元保存出现故障 的存储单元的故障内容。 具体的, 为了记录出现故障的存储单元的故障内容, 从而方便之后根据故障内容进行故障分析,在控制单元获取到出现故障的存储 单元的故障内容之后, 控制单元还可以发送获取到的故障内容至其它存储单 需要说明的是, 步骤 507和步骤 508可以在任意时刻执行, 本实施例只是 以在此处执行为例, 对其具体的执行时刻并不做限定。
综上所述, 本实施例提供的网络管理方法, 通过接收输入输出单元发送的 网络管理请求, 该网络管理请求为输入输出单元接收到的来自外部网元的请 求,输入输出单元为资源分配单元实时监控的由虚拟化得到的输入输出单元组 中的至少两个输入输出单元的性能参数,根据至少两个输入输出单元的性能参 数选择得到的输入输出单元, 根据网络管理请求设置配置信息, 并将设置的配 置信息发送至输入输出单元, 从而使得输入输出单元在接收到配置信息之后, 将接收到的配置信息转发至外部网元; 解决了现有技术中对网络管理请求的处 理效率低的问题, 达到了可以使用至少两个输入输出单元中性能最好的输入输 出单元来执行转发操作, 从而充分的利用网络管理系统中的资源、 提高资源利 用率以及网络管理系统的处理效率的效果。
本实施例通过将输入输出单元、 存储单元以及控制单元进行解耦, 使得在 需要使用输入输出单元或者存储单元时, 可以灵活的选择其中性能最好的单 元, 而不必在请求某一网络管理时使用与其对应的输入输出和存储, 提高了系 统中的资源利用率, 从而大大提高了网络管理系统对网络管理请求的处理效 率。
本实施例通过检测处于工作状态的输入输出单元或者存储单元中是否有 出现故障的单元, 并将出现故障的输入输出单元的待处理内容或者出现故障的 存储单元的存储内容转移至提供同类功能的其它单元, 避免了由于出现故障而 不能及时对待处理内容进行处理或者信息丟失,从而导致的对网络管理请求的 处理效率低的问题, 提高了网络管理系统的处理效率。 实施例六
请参考图 6,其示出了本发明实施例六提供的网络管理装置的结构方框图, 该网络管理装置可以包括: 请求接收模块 610、 信息配置模块 620和信息发送 模块 630;
请求接收模块 610, 用于接收输入输出单元发送的网络管理请求, 所述网 络管理请求为所述输入输出单元接收到的来自外部网元的请求, 所述输入输出 单元为资源分配单元实时监控由虚拟化得到的输入输出单元组中的至少两个 输入输出单元的性能参数,根据所述至少两个输入输出单元的性能参数选择得 到的输入输出单元;
信息配置模块 620, 用于根据所述请求接收模块 610接收到的所述网络管 理请求设置配置信息;
信息发送模块 630, 用于发送所述信息配置模块 620配置的所述配置信息 至所述输入输出单元, 以便所述输入输出单元在接收到所述配置信息之后, 转 发所述配置信息至所述外部网元。
综上所述, 本实施例提供的网络管理装置, 通过接收输入输出单元发送的 网络管理请求, 该网络管理请求为输入输出单元接收到的来自外部网元的请 求,输入输出单元为资源分配单元实时监控的由虚拟化得到的输入输出单元组 中的至少两个输入输出单元的性能参数,根据至少两个输入输出单元的性能参 数选择得到的输入输出单元, 根据网络管理请求设置配置信息, 并将设置的配 置信息发送至输入输出单元, 从而使得输入输出单元在接收到配置信息之后, 将接收到的配置信息转发至外部网元; 解决了现有技术中对网络管理请求的处 理效率低的问题, 达到了可以使用至少两个输入输出单元中性能最好的输入输 出单元来执行转发操作, 从而充分的利用网络管理系统中的资源、 提高资源利 用率以及网络管理系统的处理效率的效果。 实施例七
请参考图 7,其示出了本发明实施例七提供的网络管理装置的结构方框图, 该网络管理装置可以包括: 请求接收模块 710、 信息配置模块 720和信息发送 模块 730;
请求接收模块 710, 用于接收输入输出单元发送的网络管理请求, 所述网 络管理请求为所述输入输出单元接收到的来自外部网元的请求, 所述输入输出 单元为资源分配单元实时监控由虚拟化得到的输入输出单元组中的至少两个 输入输出单元的性能参数,根据所述至少两个输入输出单元的性能参数选择得 到的输入输出单元;
信息配置模块 720, 用于根据所述请求接收模块 710接收到的所述网络管 理请求设置配置信息;
信息发送模块 730, 用于发送所述信息配置模块 720配置的所述配置信息 至所述输入输出单元, 以便所述输入输出单元在接收到所述配置信息之后, 转 发所述配置信息至所述外部网元。
在本实施例的第一种可能的实现方式中, 所述装置还包括: 故障检测模块 740和故障处理模块 750;
故障检测模块 740, 用于检测处于工作状态的输入输出单元中是否有出现 故障的输入输出单元;
故障处理模块 750, 用于在所述故障检测模块的检测结果为有出现故障的 输入输出单元时, 将所述输入输出单元的待处理内容转移至所述至少两个输入 输出单元中的其它输入输出单元, 所述其它输入输出单元为所述资源分配单元 根据实时监控的所述至少两个输入输出单元的性能参数从所述至少两个输入 输出单元中选择的除出现故障的输入输出单元之外的输入输出单元。
在本实施例的第二种可能的实现方式中,
所述信息发送模块 730, 用于发送所述信息配置模块配置的所述配置信息 至由虚拟化得到的存储单元组中的存储单元, 以便所述存储单元保存所述配置 信息, 所述存储单元为所述资源分配单元实时监控所述存储单元组中的至少两 个存储单元的性能参数, 根据所述性能参数选择的存储单元。 在本实施例的第三种可能的实现方式中,
所述故障检测模 740块,还用于检测处于工作状态的存储单元中是否有出 现故障的存储单元;
所述故障处理模块 750, 还用于在所述故障检测模块的检测结果为有出现 的其它存储单元, 所述其它存储单元为所述资源分配单元根据实时监控的所述 的存储单元之外的存储单元。
在本实施例的第四种可能的实现方式中, 所述装置还包括: 故障获取模块 760和故障内容发送模块 770;
故障获取模块 760, 用于在所述故障检测模块检测到处于工作状态的存储 单元中有出现故障的存储单元时, 获取出现故障的存储单元的故障内容; 故障内容发送模块 770, 用于发送所述故障获取模块 760获取到的故障内 容至所述其它存储单元, 以便所述其它存储单元保存出现故障的存储单元的故 障内容。
在本实施例的第五种可能的实现方式中,
所述故障获取模块 760, 还用于在检测到处于工作状态的输入输出单元中 有出现故障的输入输出单元时, 获取出现故障的输入输出单元的故障内容; 所述故障内容发送模块 770, 还用于发送所述故障获取模块 760获取到的 故障内容至所述存储单元, 以便所述存储单元保存出现故障的输入输出单元的 故障内容。
综上所述, 本实施例提供的网络管理装置, 通过接收输入输出单元发送的 网络管理请求, 该网络管理请求为输入输出单元接收到的来自外部网元的请 求,输入输出单元为资源分配单元实时监控的由虚拟化得到的输入输出单元组 中的至少两个输入输出单元的性能参数,根据至少两个输入输出单元的性能参 数选择得到的输入输出单元, 根据网络管理请求设置配置信息, 并将设置的配 置信息发送至输入输出单元, 从而使得输入输出单元在接收到配置信息之后, 将接收到的配置信息转发至外部网元; 解决了现有技术中对网络管理请求的处 理效率低的问题, 达到了可以使用至少两个输入输出单元中性能最好的输入输 出单元来执行转发操作, 从而充分的利用网络管理系统中的资源、 提高资源利 用率以及网络管理系统的处理效率的效果。 本实施例通过将输入输出单元、 存储单元以及控制单元进行解耦, 使得在 需要使用输入输出单元或者存储单元时, 可以灵活的选择其中性能最好的单 元, 而不必在请求某一网络管理时使用与其对应的输入输出和存储, 提高了系 统中的资源利用率, 从而大大提高了网络管理系统对网络管理请求的处理效 率。
本实施例通过检测处于工作状态的输入输出单元或者存储单元中是否有 出现故障的单元, 并将出现故障的输入输出单元的待处理内容或者出现故障的 存储单元的存储内容转移至提供同类功能的其它单元, 避免了由于出现故障而 不能及时对待处理内容进行处理或者信息丟失,从而导致的对网络管理请求的 处理效率低的问题, 提高了网络管理系统的处理效率。 需要说明的是, 由实施例六和实施例七所述的网络管理装置可以构成一个 网络管理系统, 该网络管理系统的具体技术细节请参考对应的方法实施例, 本 实施在此不再赘述。 实施例八
请参考图 8,其示出了本发明实施例八提供的网络管理装置的结构方框图, 该网络管理装置可以包括:
接收机 810, 用于接收输入输出单元发送的网络管理请求, 所述网络管理 请求为所述输入输出单元接收到的来自外部网元的请求, 所述输入输出单元为 资源分配单元实时监控由虚拟化得到的输入输出单元组中的至少两个输入输 出单元的性能参数,根据所述至少两个输入输出单元的性能参数选择得到的输 入输出单元;
处理器 820, 用于根据所述接收机 810接收到的所述网络管理请求设置配 置信息;
发射机 830, 用于发送所述处理器 820设置的所述配置信息至所述输入输 出单元, 以便所述输入输出单元在接收到所述配置信息之后, 转发所述配置信 息至所述外部网元。
综上所述, 本实施例提供的网络管理装置, 通过接收输入输出单元发送的 网络管理请求, 该网络管理请求为输入输出单元接收到的来自外部网元的请 求,输入输出单元为资源分配单元实时监控的由虚拟化得到的输入输出单元组 中的至少两个输入输出单元的性能参数,根据至少两个输入输出单元的性能参 数选择得到的输入输出单元, 根据网络管理请求设置配置信息, 并将设置的配 置信息发送至输入输出单元, 从而使得输入输出单元在接收到配置信息之后, 将接收到的配置信息转发至外部网元; 解决了现有技术中对网络管理请求的处 理效率低的问题, 达到了可以使用至少两个输入输出单元中性能最好的输入输 出单元来执行转发操作, 从而充分的利用网络管理系统中的资源、 提高资源利 用率以及网络管理系统的处理效率的效果。 实施例九
在实施例八的一个优选实施例中,接收机 810、处理器 820以及发射机 830 还可以实现如下功能:
在本实施例的第一种可能的实现方式中,
所述处理器 820, 还用于检测处于工作状态的输入输出单元中是否有出现 故障的输入输出单元;
所述发射机 830, 还用于在所述处理器 820的检测结果为有出现故障的 ' T 入输出单元时,将所述输入输出单元的待处理内容转移至所述至少两个输入糸 ' T 出单元中的其它输入输出单元, 所述其它输入输出单元为所述资源分配单元根 据实时监控的所述至少两个输入输出单元的性能参数从所述至少两个输入 * ' T 出单元中选择的除出现故障的输入输出单元之外的输入输出单元。
在本实施例的第二种可能的实现方式中,
所述发射机 830, 还用于发送所述处理器 820设置的所述配置信息至由虚 拟化得到的存储单元组中的存储单元, 以便所述存储单元保存所述配置信息, 所述存储单元为所述资源分配单元实时监控所述存储单元组中的至少两个存 储单元的性能参数, 根据所述性能参数选择的存储单元。
在本实施例的第三种可能的实现方式中,
所述处理器 820, 还用于检测处于工作状态的存储单元中是否有出现故障 的存储单元;
所述发射机 830, 还用于在所述处理器 820的检测结果为有出现故障的存 储单元, 所述其它存储单元为所述资源分配单元根据实时监控的所述至少两个 存储单元的性能 元之外的存储单元。
在本实施例的第四种可能的实现方式中,
所述处理器 820, 还用于在检测到处于工作状态的存储单元中有出现故障 的存储单元时, 获取出现故障的存储单元的故障内容;
所述发射机 830, 还用于发送所述处理器 820获取到的故障内容至所述其 在本实施例的第五种可能的实现方式中,
所述处理器 820, 还用于在检测到处于工作状态的输入输出单元中有出现 故障的输入输出单元时, 获取出现故障的输入输出单元的故障内容;
所述发射机 830, 还用于发送所述处理器 820获取到的故障内容至所述存 储单元, 以便所述存储单元保存出现故障的输入输出单元的故障内容。
综上所述, 本实施例提供的网络管理装置, 通过接收输入输出单元发送的 网络管理请求, 该网络管理请求为输入输出单元接收到的来自外部网元的请 求,输入输出单元为资源分配单元实时监控的由虚拟化得到的输入输出单元组 中的至少两个输入输出单元的性能参数,根据至少两个输入输出单元的性能参 数选择得到的输入输出单元, 根据网络管理请求设置配置信息, 并将设置的配 置信息发送至输入输出单元, 从而使得输入输出单元在接收到配置信息之后, 将接收到的配置信息转发至外部网元; 解决了现有技术中对网络管理请求的处 理效率低的问题, 达到了可以使用至少两个输入输出单元中性能最好的输入输 出单元来执行转发操作, 从而充分的利用网络管理系统中的资源、 提高资源利 用率以及网络管理系统的处理效率的效果。
本实施例通过将输入输出单元、 存储单元以及控制单元进行解耦, 使得在 需要使用输入输出单元或者存储单元时, 可以灵活的选择其中性能最好的单 元, 而不必在请求某一网络管理时使用与其对应的输入输出和存储, 提高了系 统中的资源利用率, 从而大大提高了网络管理系统对网络管理请求的处理效 率。
本实施例通过检测处于工作状态的输入输出单元或者存储单元中是否有 出现故障的单元, 并将出现故障的输入输出单元的待处理内容或者出现故障的 存储单元的存储内容转移至提供同类功能的其它单元, 避免了由于出现故障而 不能及时对待处理内容进行处理或者信息丟失,从而导致的对网络管理请求的 处理效率低的问题, 提高了网络管理系统的处理效率。 需要说明的是, 由实施例七和实施例八所述的网络管理装置可以构成一个 网络管理系统, 该网络管理系统的具体技术细节请参考对应的方法实施例, 本 实施在此不再赘述。 上述本发明实施例序号仅仅为了描述, 不代表实施例的优劣。
本领域普通技术人员可以理解实现上述实施例的全部或部分步骤可以通 过硬件来完成, 也可以通过程序来指令相关的硬件完成, 所述的程序可以存储 于一种计算机可读存储介质中, 上述提到的存储介质可以是只读存储器, 磁盘 或光盘等。
以上所述仅为本发明的较佳实施例, 并不用以限制本发明, 凡在本发明的 精神和原则之内, 所作的任何修改、 等同替换、 改进等, 均应包含在本发明的 保护范围之内。

Claims

权 利 要 求 书
1、 一种网络管理系统, 其特征在于, 所述系统包括:
资源分配单元、 由虚拟化得到的包括至少两个输入输出单元的输入输出单 元组和控制单元;
所述资源分配单元, 用于实时监控所述至少两个输入输出单元的性能参数, 根据所述性能参数从所述至少两个输入输出单元中选择一个输入输出单元来执 行转发操作;
所述输入输出单元, 用于在处于被所述资源分配单元选择的状态时, 转发 来自外部网元的网络管理请求至所述控制单元;
所述控制单元, 用于根据所述输入输出单元转发的所述网络管理请求设置 配置信息, 发送所述配置信息至所述输入输出单元;
所述输入输出单元, 还用于转发所述配置信息至所述外部网元。
2、 根据权利要求 1所述的系统, 其特征在于,
所述控制单元, 还用于检测处于工作状态的输入输出单元中是否有出现故 障的输入输出单元, 若检测结果为有出现故障的输入输出单元, 则将出现故障 的输入输出单元的待处理内容转移至所述至少两个输入输出单元中的其它输入 输出单元, 所述其它输入输出单元为所述资源分配单元根据实时监控的所述至 少两个输入输出单元的性能参数从所述至少两个输入输出单元中选择的除出现 故障的输入输出单元之外的输入输出单元。
3、 根据权利要求 1或 2所述的系统, 其特征在于, 所述系统还包括: 由虚拟化得到的包括至少两个存储单元的存储单元组;
所述资源分配单元, 还用于实时监控所述至少两个存储单元的性能参数, 根据所述性能参数从所述至少两个存储单元中选择一个存储单元来执行存储操 作;
所述控制单元, 还用于发送所述配置信息至所述资源分配单元选择的存储 单元;
所述存储单元, 用于在处于被所述资源分配单元选择的状态时, 保存所述 控制单元发送的所述配置信息。
4、 根据权利要求 3所述的系统, 其特征在于,
所述控制单元, 还用于检测处于工作状态的存储单元中是否有出现故障的 存储单元, 若检测结果为有出现故障的存储单元, 则将出现故障的存储单元的 为所述资源分配单元根据实时监控的所述至少两个存储单元的性能参数从所述
5、 根据权利要求 4所述的系统, 其特征在于,
所述控制单元, 还用于在检测到处于工作状态的存储单元中有出现故障的 存储单元时, 获取出现故障的存储单元的故障内容, 并发送获取到的故障内容 至所述其它存储单元;
所述其它存储单元, 还用于保存所述控制单元发送的出现故障的存储单元 的故障内容。
6、 根据权利要求 3所述的系统, 其特征在于,
所述控制单元, 还用于在检测到处于工作状态的输入输出单元中有出现故 障的输入输出单元时, 获取出现故障的输入输出单元的故障内容, 并发送获取 到的故障内容至所述存储单元;
所述存储单元, 还用于保存所述控制单元发送的出现故障的输入输出单元 的故障内容。
7、 一种网络管理方法, 其特征在于, 所述方法包括:
接收输入输出单元发送的网络管理请求, 所述网络管理请求为所述输入输 出单元接收到的来自外部网元的请求, 所述输入输出单元为资源分配单元实时 监控由虚拟化得到的输入输出单元组中的至少两个输入输出单元的性能参数, 根据所述至少两个输入输出单元的性能参数选择得到的输入输出单元;
根据所述网络管理请求设置配置信息;
发送所述配置信息至所述输入输出单元, 以便所述输入输出单元在接收到 所述配置信息之后, 转发所述配置信息至所述外部网元。
8、 根据权利要求 10所述的方法, 其特征在于, 所述方法还包括: 检测处于工作状态的输入输出单元中是否有出现故障的输入输出单元; 若检测结果为有出现故障的输入输出单元, 则将所述输入输出单元的待处 理内容转移至所述至少两个输入输出单元中的其它输入输出单元, 所述其它输 入输出单元为所述资源分配单元根据实时监控的所述至少两个输入输出单元的 性能参数从所述至少两个输入输出单元中选择的除出现故障的输入输出单元之 外的输入输出单元。
9、 根据权利要求 7或 8所述的方法, 其特征在于, 所述根据所述网络管理 请求设置配置信息之后, 所述方法还包括:
发送所述配置信息至由虚拟化得到的存储单元组中的存储单元, 以便所述 存储单元保存所述配置信息, 所述存储单元为所述资源分配单元实时监控所述 存储单元组中的至少两个存储单元的性能参数, 根据所述性能参数选择的存储 单元。
10、 根据权利要求 9所述的方法, 其特征在于, 所述方法还包括: 检测处于工作状态的存储单元中是否有出现故障的存储单元;
若检测结果为有出现故障的存储单元, 则将所述存储单元的存储内容转移 至所述至少两个存储单元的其它存储单元, 所述其它存储单元为所述资源分配 单元根据实时监控的所述至少两个存储单元的性能参数从所述至少两个存储单 元中选择的除出现故障的存储单元之外的存储单元。
11、 根据权利要求 10所述的方法, 其特征在于, 所述方法还包括: 在检测到处于工作状态的存储单元中有出现故障的存储单元时, 获取出现 故障的存储单元的故障内容;
发送获取到的故障内容至所述其它存储单元, 以便所述其它存储单元保存 出现故障的存储单元的故障内容。
12、 根据权利要求 9所述的方法, 其特征在于, 所述方法还包括: 在检测到处于工作状态的输入输出单元中有出现故障的输入输出单元时, 获取出现故障的输入输出单元的故障内容; 发送获取到的故障内容至所述存储单元 , 以便所述存储单元保存出现故障 的输入输出单元的故障内容。
13、 一种网络管理装置, 其特征在于, 所述装置包括:
请求接收模块, 用于接收输入输出单元发送的网络管理请求, 所述网络管 理请求为所述输入输出单元接收到的来自外部网元的请求, 所述输入输出单元 为资源分配单元实时监控由虚拟化得到的输入输出单元组中的至少两个输入输 出单元的性能参数, 根据所述至少两个输入输出单元的性能参数选择得到的输 入输出单元;
信息配置模块, 用于根据所述请求接收模块接收到的所述网络管理请求设 置配置信息;
信息发送模块, 用于发送所述信息配置模块配置的所述配置信息至所述输 入输出单元, 以便所述输入输出单元在接收到所述配置信息之后, 转发所述配 置信息至所述外部网元。
14、 根据权利要求 13所述的装置, 其特征在于, 所述装置还包括: 故障检测模块, 用于检测处于工作状态的输入输出单元中是否有出现故障 的输入输出单元;
故障处理模块, 用于在所述故障检测模块的检测结果为有出现故障的输入 输出单元时, 将所述输入输出单元的待处理内容转移至所述至少两个输入输出 单元中的其它输入输出单元, 所述其它输入输出单元为所述资源分配单元根据 实时监控的所述至少两个输入输出单元的性能参数从所述至少两个输入输出单 元中选择的除出现故障的输入输出单元之外的输入输出单元。
15、 根据权利要求 13或 14所述的装置, 其特征在于,
所述信息发送模块, 还用于发送所述信息配置模块配置的所述配置信息至 由虚拟化得到的存储单元组中的存储单元, 以便所述存储单元保存所述配置信 息, 所述存储单元为所述资源分配单元实时监控所述存储单元组中的至少两个 存储单元的性能参数, 根据所述性能参数选择的存储单元。
16、 根据权利要求 15所述的装置, 其特征在于, 所述故障检测模块, 还用于检测处于工作状态的存储单元中是否有出现故 障的存储单元;
所述故障处理模块, 还用于在所述故障检测模块的检测结果为有出现故障 的存储单元时, 将所述存储单元的存储内容转移至所述至少两个存储单元的其 它存储单元, 所述其它存储单元为所述资源分配单元根据实时监控的所述至少 单元之外的存储单元。
17、 根据权利要求 16所述的装置, 其特征在于, 所述装置还包括: 故障获取模块, 用于在所述故障检测模块检测到处于工作状态的存储单元 中有出现故障的存储单元时, 获取出现故障的存储单元的故障内容;
故障内容发送模块, 用于发送所述故障获取模块获取到的故障内容至所述 其它存储单元, 以便
18、 根据权利要求 15所述的装置, 其特征在于,
所述故障获取模块, 还用于在检测到处于工作状态的输入输出单元中有出 现故障的输入输出单元时, 获取出现故障的输入输出单元的故障内容;
所述故障内容发送模块, 还用于发送所述故障获取模块获取到的故障内容 至所述存储单元, 以便所述存储单元保存出现故障的输入输出单元的故障内容。
19、 一种网络管理装置, 其特征在于, 所述装置包括:
接收机, 用于接收输入输出单元发送的网络管理请求, 所述网络管理请求 为所述输入输出单元接收到的来自外部网元的请求, 所述输入输出单元为资源 分配单元实时监控由虚拟化得到的输入输出单元组中的至少两个输入输出单元 的性能参数, 根据所述至少两个输入输出单元的性能参数选择得到的输入输出 单元;
处理器, 用于根据所述接收机接收到的所述网络管理请求设置配置信息; 发射机, 用于发送所述处理器设置的所述配置信息至所述输入输出单元, 以便所述输入输出单元在接收到所述配置信息之后, 转发所述配置信息至所述 夕卜部网元。
20、 根据权利要求 19所述的装置, 其特征在于,
所述处理器, 还用于检测处于工作状态的输入输出单元中是否有出现故障 的输入输出单元;
所述发射机, 还用于在所述处理器的检测结果为有出现故障的输入输出单 元时, 将所述输入输出单元的待处理内容转移至所述至少两个输入输出单元中 的其它输入输出单元, 所述其它输入输出单元为所述资源分配单元根据实时监 控的所述至少两个输入输出单元的性能参数从所述至少两个输入输出单元中选 择的除出现故障的输入输出单元之外的输入输出单元。
21、 根据权利要求 19或 20所述的装置, 其特征在于,
所述发射机, 还用于发送所述处理器设置的所述配置信息至由虚拟化得到 的存储单元组中的存储单元, 以便所述存储单元保存所述配置信息, 所述存储 单元为所述资源分配单元实时监控所述存储单元组中的至少两个存储单元的性 能参数, 根据所述性能参数选择的存储单元。
22、 根据权利要求 21所述的装置, 其特征在于,
所述处理器, 还用于检测处于工作状态的存储单元中是否有出现故障的存 储单元;
所述发射机, 还用于在所述处理器的检测结果为有出现故障的存储单元时, 将所述存储单元的存储内容转移至所述至少两个存储单元的其它存储单元, 所 述其它存储单元为所述资源分配单元根据实时监控的所述至少两个存储单元的 单元。
23、 根据权利要求 22所述的装置, 其特征在于,
所述处理器, 还用于在检测到处于工作状态的存储单元中有出现故障的存 储单元时, 获取出现故障的存储单元的故障内容;
所述发射机, 还用于发送所述处理器获取到的故障内容至所述其它存储单 元, 以便;
24、 根据权利要求 19所述的方法, 其特征在于, 所述处理器, 还用于在检测到处于工作状态的输入输出单元中有出现故障 的输入输出单元时, 获取出现故障的输入输出单元的故障内容;
所述发射机, 还用于发送所述处理器获取到的故障内容至所述存储单元, 以便所述存储单元保存出现故障的输入输出单元的故障内容。
25、 一种网络管理系统, 其特征在于, 其包括如权利要求 13至 18任一所 述的网络管理装置。
26、 一种网络管理系统, 其特征在于, 其包括如权利要求 19至 24任一所 述的网络管理装置。
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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101296185A (zh) * 2008-06-05 2008-10-29 杭州华三通信技术有限公司 一种均衡组的流量控制方法及装置
US20080275989A1 (en) * 2003-12-05 2008-11-06 Ebersole Dwayne E Optimizing virtual interface architecture (via) on multiprocessor servers and physically independent consolidated nics
CN102314372A (zh) * 2010-05-25 2012-01-11 微软公司 虚拟机i/o多路径配置
CN103368764A (zh) * 2012-04-10 2013-10-23 中兴通讯股份有限公司 一种虚拟网络的实现方法及网络管理系统

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20080275989A1 (en) * 2003-12-05 2008-11-06 Ebersole Dwayne E Optimizing virtual interface architecture (via) on multiprocessor servers and physically independent consolidated nics
CN101296185A (zh) * 2008-06-05 2008-10-29 杭州华三通信技术有限公司 一种均衡组的流量控制方法及装置
CN102314372A (zh) * 2010-05-25 2012-01-11 微软公司 虚拟机i/o多路径配置
CN103368764A (zh) * 2012-04-10 2013-10-23 中兴通讯股份有限公司 一种虚拟网络的实现方法及网络管理系统

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