WO2010017701A1 - 节电管理方法和系统 - Google Patents

节电管理方法和系统 Download PDF

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Publication number
WO2010017701A1
WO2010017701A1 PCT/CN2009/070235 CN2009070235W WO2010017701A1 WO 2010017701 A1 WO2010017701 A1 WO 2010017701A1 CN 2009070235 W CN2009070235 W CN 2009070235W WO 2010017701 A1 WO2010017701 A1 WO 2010017701A1
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WO
WIPO (PCT)
Prior art keywords
energy consumption
power
attribute
mode
energy
Prior art date
Application number
PCT/CN2009/070235
Other languages
English (en)
French (fr)
Inventor
陈俏钢
Original Assignee
中兴通讯股份有限公司
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.)
Filing date
Publication date
Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Priority to EP09806304.3A priority Critical patent/EP2317803A4/en
Priority to US13/059,056 priority patent/US8560874B2/en
Publication of WO2010017701A1 publication Critical patent/WO2010017701A1/zh

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/26Power supply means, e.g. regulation thereof
    • G06F1/32Means for saving power
    • G06F1/3203Power management, i.e. event-based initiation of a power-saving mode
    • G06F1/3234Power saving characterised by the action undertaken
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices
    • H04W52/0251Power saving arrangements in terminal devices using monitoring of local events, e.g. events related to user activity
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • a network is composed of a plurality of communication nodes, which are also referred to as network elements.
  • the network elements are connected by communication lines, and the communication lines include various forms such as fiber optic cables.
  • network elements are distributed in various regions.
  • a central network management system is set up, which configures and maintains various nodes of the network through remote communication.
  • monitoring. 1 is a schematic diagram of a communication network management system in the related art. As shown in FIG.
  • the functions of the communication network management system can be further divided into a fault management function set, a configuration management function set, a charging management function set, a performance management function set, and security.
  • Management feature set these feature sets are respectively implemented by different functional modules, and the notification management function set extends the fault management function set and the configuration management function set.
  • In an integrated management communication network there are many network element nodes, each of which is a communication device, and the network element can be further divided into smaller communication devices, such as a single board. In order to meet the power saving capability of the communication device, the network management system needs to have corresponding management capabilities.
  • the internationally accepted management method is an object-oriented management method, that is, abstracting a device into an object for management, and a device in the communication network is represented by an object in the network management system.
  • an object-oriented management method that is, abstracting a device into an object for management, and a device in the communication network is represented by an object in the network management system.
  • SUMMARY OF THE INVENTION The present invention has been made in view of the lack of an effective power saving management scheme for a device in a current network management system.
  • the main object of the present invention is to provide an improved power saving management scheme to solve the related art.
  • a power saving management method is provided for power saving management of devices in a communication network, by performing objects on behalf of devices in a communication network management system.
  • the power saving management method includes: setting an energy consumption state attribute in a device object of the communication network management system, and configuring the energy consumption state attribute, so that the energy consumption state attribute is used to represent energy consumption of the electrical energy. Status; Power saving management of the device by setting the energy status attribute of the object corresponding to the device.
  • the energy consumption state includes at least one of the following: a full power mode, a power saving mode, a sleep mode, and a closed product mode.
  • the foregoing method further includes: setting an energy consumption status attribute according to the energy consumption status attribute, wherein the energy consumption status attribute includes an energy consumption status attribute value, and the energy consumption status attribute value is used to indicate the energy consumption status of the device in the energy consumption status attribute.
  • setting the energy consumption status attribute value specifically includes: when the energy consumption status attribute of the device is set to the full power mode, automatically setting the energy consumption status attribute value to the maximum power of the device operation; When set to the power saving mode, the energy status attribute value is automatically set to the minimum power and maximum power consumption of the device to ensure normal service operation; in the case where the energy state attribute of the device is set to the sleep mode, The energy status attribute value is automatically set to the minimum power and maximum power consumption of the device before sleep; when the energy status attribute of the device is set to the shutdown mode, the energy status attribute value of the shutdown mode is automatically Set to device does not consume power.
  • the foregoing method further includes: when the device and the subordinate devices of the device support the energy state attribute, when the device object is set to the full force mode, the device object corresponding to the subordinate device is also set to the full force mode; When the power save mode is set, the device object corresponding to the subordinate device is set to the full power mode, the power saving mode, the sleep mode, or the shutdown mode.
  • the subordinate device corresponds to The device object is set to sleep mode or shutdown mode; when the device and the device's subordinate devices do not support the power save mode, when the device is set to the power save mode, the device and the device's subordinate device operate according to the full force mode; And/or if the device's subordinate device does not support sleep mode and/or shutdown mode, when the device is set to sleep mode or shutdown mode, the setting failure operation information is returned, and the device remains unchanged.
  • a power saving management system for power saving management of an object device therein is provided.
  • the power saving management system includes: a configuration module, configured for a network management system The energy state attribute set in the device object in the system, and the energy state attribute is configured, so that the energy state attribute is used to indicate the energy consumption state of the power; the management module is configured to set the energy consumption of the object corresponding to the device Status, power saving management of the device.
  • the configuration module further includes: a setting module, configured to set an energy consumption status attribute according to an energy consumption status attribute, where the energy consumption status attribute includes an energy consumption status attribute value, and the energy consumption status attribute value is used to indicate that the device is in an energy consumption state. The percentage of power consumption and maximum power consumed in the energy state corresponding to the attribute.
  • the foregoing management module further includes: a query module, configured to query an energy state attribute and/or a power state attribute of the object.
  • the foregoing energy consumption attribute state includes at least one of the following: a full power mode, a power saving mode, a sleep mode, and a shutdown mode.
  • the foregoing management module further includes: a notification module, configured to report the energy consumption status attribute and/or the energy consumption status attribute change notification in a case where the energy consumption status attribute and/or the energy consumption status attribute are changed.
  • FIG. 1 is a schematic diagram of a communication network management system in the related art
  • FIG. 2 is a schematic diagram showing four new functions of a configuration function according to an embodiment of the present invention
  • FIG. 3 is a schematic diagram of a centralized function for augmenting two new state change notifications according to an embodiment of the present invention
  • FIG. 4 is a flowchart of a power saving management method according to an embodiment of the present invention
  • FIG. FIG. 6 is a schematic diagram of a use case of a power saving management function UML according to an embodiment of the present invention
  • FIG. 7 is a schematic diagram showing an object and an attribute display according to an embodiment of the present invention
  • FIG. 9 is a detailed processing flowchart of modifying an energy consumption state of an object according to an embodiment of the present invention
  • FIG. 11 is a report of the energy consumption state attribute and/or energy consumption status of the network management system according to the embodiment of the present invention.
  • FIG. 12 is a block diagram of a power saving management system according to an embodiment of the present invention;
  • FIG. 13 is a power saving management system and user according to an embodiment of the present invention; Signaling flowchart of interaction between the management device.
  • DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS The present invention provides an improved power saving management solution, in which the present invention provides an energy saving management solution.
  • the present invention provides an energy saving management solution.
  • the power-saving management function of the embodiment of the present invention centrally expands four functions in the configuration management function in the communication network management system, which are: modifying the energy consumption state attribute of the object, the energy consumption status attribute of the query object, Query the energy status attribute of the object and assign the value of the energy status attribute when creating the object.
  • the embodiment of the present invention is also in the notification tube in the communication network management system.
  • the function set expands two functions, namely: reporting the energy status change notification and reporting the energy status change notification.
  • a power saving management method for power saving management of devices in a communication network, and power saving of objects representing devices by using a communication network management system Management, to achieve power-saving management of communication equipment.
  • 4 is a flowchart of a power saving management method according to an embodiment of the present invention.
  • a power saving management method according to an embodiment of the present invention includes the following processing (step S402 to step S404): Step S402, in a communication network
  • the energy state attribute is set in the device object of the management system, that is, an energy state attribute is added to the existing device object, and the energy state attribute is configured, so that the energy state attribute is used to indicate the energy consumption state of the energy.
  • the energy state attribute can be configured to include four modes, namely: full power mode, power saving mode, sleep mode, and shutdown mode; after configuring the above four modes in the energy state attribute, performing a section on the device
  • you can set the energy status attribute of the device object that is, select the above four modes in the energy status attribute to manage the device.
  • the energy consumption status attribute is also automatically set according to the energy consumption status attribute, wherein the energy consumption status attribute includes an energy consumption status attribute value, and the energy consumption status attribute value is used to indicate the energy consumption status of the device in the energy consumption status attribute.
  • the percentage of power consumption and maximum power consumption of the next operation; Step S404, the power saving state management of the device is performed by setting an energy state attribute of the object corresponding to the device.
  • the device When the energy status attribute of the device is set to full force mode, the device automatically sets the energy consumption status attribute value to the maximum power of the device operation. (2) When the energy state attribute of the device is set to the power saving mode, the device automatically sets the energy consumption attribute value to a percentage of the minimum power and the maximum power consumption of the device to ensure normal service operation.
  • the device automatically sets the energy consumption attribute value to the percentage of the minimum power and the maximum power consumption that the device keeps before sleeping.
  • the device object corresponding to the subordinate device when the device object is set to the full force mode, the device object corresponding to the subordinate device is also set to the full force mode; In the power saving mode, the device object corresponding to the subordinate device is set to the full force mode, the power saving mode, the sleep mode, or the shutdown mode. When the device object is set to the sleep mode or the shutdown mode, the device object setting corresponding to the subordinate device is set.
  • the device and the device's subordinate devices In sleep mode or off mode; in the case where the device and the device's subordinate devices do not support the power save mode, set the device In the power save mode, the device and the device's subordinate devices operate in full force mode; when the device and/or device's subordinate devices do not support sleep mode and/or shutdown mode, when the device is set to sleep mode or shutdown mode , the setting fails operation information, and the device remains unchanged.
  • Table 1 the energy state transition is as shown in Figure 5. From the full force state to the power saving state, the power saving operation is required. On the contrary, the transition from the power saving state to the full force state requires recovery operation.
  • the following processing is included:
  • the energy state attribute is assigned;
  • the user creates the device object, if the device supports power saving management,
  • the user assigns an energy state attribute to the object, which can be assigned to one of four status values, depending on the application.
  • the device performs the corresponding action according to the meaning of the status value (as shown in Table 1 above). For example, the user creates a network element object on the network management system, and the energy consumption status is set to save power. The user creates one or more in the network element.
  • the energy consumption status of the board object is set to save power
  • the second step is to query the energy consumption status of the object
  • the user selects a network element (or board) object in the network management system, and issues a query energy consumption status command to obtain The energy consumption status attribute
  • the third step is to query the energy consumption status value of the object
  • the user selects a network element (or a board) object in the network management system, and issues a query for the energy consumption status value to obtain the value of the energy consumption status, for example, the maximum power. 70%
  • the fourth step the attribute change notification; when the energy consumption status or the energy consumption status changes, the network management will generate a status change notification to remind the user that the notification includes the object name of the status change and the latest status value information. .
  • the above energy consumption state and energy consumption state can be displayed in the manner shown in FIG.
  • the energy state attribute attribute is assigned an initial value.
  • Step 801 The user sends a request for creating a device object, and provides an initial value of the energy status attribute.
  • Step 802 Determine whether the created device object supports the energy status attribute. If yes, perform step 803. If not, perform the step.
  • Step 803 the configuration module of the network management system creates a device object, assigns an initial value of the energy consumption state set by the user, and performs step 804; Step 804, the device performs corresponding actions according to the energy consumption state value; Step 805, network management The system returns a failed message.
  • the process of modifying the energy consumption state of the object is described below. As shown in FIG.
  • Step 901 The user sends a request for modifying the energy state attribute of the device object, and gives The object name and the new energy consumption state attribute value; Step 902, determining whether the device object supports the energy consumption state attribute, if yes, executing step 903, if not, executing step 905; Step 903, the configuration module of the network management system The energy consumption status attribute of the specified object is modified according to the new value of the energy status attribute set by the user, and step 904 is performed; Step 904, the device performs corresponding action according to the energy consumption status value; Step 905, the network management system returns the failed information.
  • Step 1001 The user sends a request for querying the energy state attribute and/or the energy state attribute of the device object, and gives the object name;
  • Step 1002 The configuration module of the network management system obtains the energy state attribute value from the specified object and/or can The value of the consumption status attribute;
  • step 1003 the network management system returns the query result.
  • the following is a description of the processing of the energy consumption status attribute and/or the energy status attribute change notification reported by the network management system. As shown in FIG.
  • Step 1101 The network management system finds that the energy state attribute or the energy state attribute of the device object changes.
  • Step 1102 The notification module of the network management system obtains the energy state attribute and/or the energy state attribute from the object that specifies the change.
  • the value of step 1103, the notification module of the network management system issues a power status attribute and/or a power status attribute change notification to the user, and provides the changed object name and the new attribute value.
  • the power saving management system includes a configuration module 12 and a management module 14. The functions of the above modules are described in detail below.
  • the configuration module 12 is configured to configure an energy state attribute set in a device object in the network management system, and configure an energy state attribute, such that the energy state attribute is used to indicate an energy consumption state of the power, and the foregoing energy attribute state
  • the configuration module 12 may further include a setting module 120, configured to set an energy consumption status attribute according to an energy consumption status attribute, where the energy consumption status attribute includes at least: a full power mode, a power saving mode, a sleep mode, and a shutdown mode;
  • the energy consumption status attribute value, the energy consumption status attribute value is used to indicate the percentage of power consumption and maximum power consumption of the device running in the energy consumption state corresponding to the energy consumption state attribute;
  • the management module 14 is connected to the configuration module 12 for passing Set the energy consumption status of the object corresponding to the device and save power management.
  • the management module 14 further includes a query module 140 and a notification module 142, wherein the query module 140 is configured to query an energy consumption status attribute and/or an energy consumption status attribute of the object; the notification module 142 is connected to the query.
  • the module 140 and the setting module 120 are configured to report the energy consumption status attribute and/or the energy consumption status attribute change notification to the user in the event that the energy consumption status attribute and/or the energy consumption status attribute are changed.
  • the power consumption status attribute of the device is described in detail below.
  • the device automatically sets the energy consumption status attribute value to the maximum power of the device operation
  • the device automatically sets the energy consumption status attribute value to the minimum power and the maximum power consumption of the device to ensure normal service operation
  • the device In the case that the configuration module 12 will set the energy state attribute of the device to the sleep mode, the device automatically sets the energy consumption status attribute value to the percentage of the minimum power and the maximum power consumption that the device keeps before sleeping; 4) In the case that the configuration module 12 sets the energy consumption status attribute to the shutdown mode, the device automatically sets the energy consumption status attribute value of the shutdown mode to that the device does not consume power.
  • the setting of the energy state in the energy state attribute and the setting of the energy state attribute may also be separately performed by the setting module 120.
  • the setting of the power consumption status is an instruction issued by the user of the network management system, and the setting of the energy consumption status is an instruction issued by the device managed by the network management system.
  • the network management system notifies the device according to the user's instruction to modify the energy consumption status attribute.
  • the device performs the action processing on the status according to the notification. Then the device notifies the network management of the new energy consumption status, and the network management module further modifies the energy consumption status attribute.
  • the user sends a message to the setting module 120, 3 ⁇ ⁇ , tampering with the energy status request;
  • the setting module 120 repairs the energy consumption state of the managed device according to the user's request. Change, and return a message to the user that the response is successful;
  • the setting module 120 sends an indication to the managed device to instruct the device to perform the latest energy consumption state
  • the managed device performs the corresponding action according to the status table according to the instruction sent by the setting module 120;
  • the setting module 120 sends an indication to the notification module 142, and the notification module 142 has modified the energy consumption status of the managed device, and prepares to notify the user;
  • the notification module 142 sends a port for changing the energy consumption status to the user according to the indication message of the setting module 120. 7.
  • the managed device provides the new energy consumption status to the setting module 120.
  • the setting module 120 modifies the value of the energy consumption status according to the provided energy consumption status, and sends a message to the notification module 142, indicating that the energy consumption status of the management device of the notification module 142 has been modified, and is ready to notify the user;
  • the notification module 142 sends a port for changing the power consumption to the user according to the notification message sent by the setting module 120.

Description

节电管理方法和系统
技术领域 本发明涉及通信领域, 并且特别地, 涉及一种节电管理方法和系统。 背景技术 在通信网络中, 网络由多个通信节点组成, 这些通信节点 (网络节点) 又称为网元。 网元之间通过通信线路连接, 通信线路包括光纤电缆等多种形 式。 另外, 网元分散分布在各个地区, 为了实现对这些网元的设备的配置、 维护和监控, 设置了一个中心网络管理系统, 该中心网络管理系统通过远程 通信对网络的各个节点进行配置、 维护和监控。 图 1是相关技术中通信网络 管理系统的示意图, 如图 1所示, 通信网络管理系统的功能可以进一步分成 故障管理功能集、 配置管理功能集、 计费管理功能集、 性能管理功能集、 安 全管理功能集, 这些功能集分别由不同的功能模块实现, 并且, 通知管理功 能集对故障管理功能集、 配置管理功能集进行了扩展。 目前, 在电信领域中, 研究并开发节约能源的设备是研究的重点。 在综合管理的通信网络中,有很多网元节点,每个节点是一个通信设备, 网元可以进一步分成更小的通信设备, 例如单板。 为了配合通信设备的节电 能力, 网管需要具备相应的管理能力。 目前, 国际通行的管理方法是面向对 象的管理方法, 即, 将设备抽象成对象进行管理, 通信网络中的一个设备在 网络管理系统中用一个对象来表示。 目前, 还没有针对通信网络中的设备节电功能的成熟管理技术。 发明内容 考虑到目前网络管理系统中缺少一种针对设备的有效节电管理方案的 问题而提出本发明, 为此, 本发明的主要目的在于提供一种改进的节电管理 方案, 以解决相关技术中的上述问题。 为了实现上述目的,才艮据本发明的一个方面,提供了一种节电管理方法, 用于对通信网络中的设备进行节电管理, 通过在通信网络管理系统中, 对代 表设备的对象进行节电管理, 实现对通信设备的节电管理。 才艮据本发明实施例的节电管理方法包括:在通信网络管理系统的设备对 象中设置能耗状态属性, 并对能耗状态属性进行配置, 使得能耗状态属性用 于表示电能的能耗状态; 通过设置设备所对应对象的能耗状态属性, 对设备 进行节电管理。 其中, 上述能耗状态至少包括以下之一: 全力模式、 节电模式、 睡眠模 式、 关积 4莫式。 此外, 上述方法进一步包括: 根据能耗状态属性设置能耗状况属性, 其 中, 能耗状况属性包括能耗状况属性值, 能耗状况属性值用于表示设备在能 耗状态属性对应的能耗状态下运行的功耗与最大功耗的百分比。 优选地,设置能耗状况属性值具体包括: 在设备的能耗状态属性被设置 为全力模式的情况下, 将能耗状况属性值自动设置为设备运行的最大功率; 在设备的能耗状态属性被设置为节电模式的情况下, 将能耗状况属性值自动 设置为设备保证正常业务运行的最小功率与最大功耗的百分比; 在设备的能 耗状态属性被设置为睡眠模式的情况下, 将能耗状况属性值自动设置为设备 保持睡眠前记忆的最小功率与最大功耗的百分比; 在设备的能耗状态属性被 设置为关机模式的情况下, 将关机模式的能耗状况属性值自动设置为设备不 消耗功率。 此外, 上述方法进一步包括: 在设备和设备的下属设备都支持能耗状态 属性的情况下, 在设备对象设置为全力模式时, 将下属设备所对应的设备对 象也设置为全力模式; 在设备对象设置为节电模式时, 将下属设备所对应的 设备对象设置为全力模式、 节电模式、 睡眠模式或者关机模式, 在设备对象 设置为睡眠模式或关机模式的情况下, 将下属设备所对应的设备对象设置为 睡眠模式或关机模式;在设备和设备的下属设备都不支持节电模式的情况下, 在将设备设置为节电模式时, 设备和设备的下属设备按照全力模式运行; 在 设备和 /或设备的下属设备不支持睡眠模式和 /或关机模式的情况下, 在将设 备设置为睡眠模式或关机模式时, 则返回设置失败操作信息, 设备保持原有 状态不变。 才艮据本发明的另一方面, 提供了一种节电管理系统, 用于对其中的对象 设备进行节电管理。 才艮据本发明实施例的节电管理系统包括: 配置模块, 用于对网络管理系 统中的设备对象中设置的能耗状态属性, 并对能耗状态属性进行配置, 使得 能耗状态属性用于表示电能的能耗状态; 管理模块, 用于通过设置设备所对 应对象的能耗状态, 对设备进行节电管理。 此外, 上述配置模块进一步包括: 设置模块, 用于根据能耗状态属性设 置能耗状况属性, 其中, 能耗状况属性包括能耗状况属性值, 能耗状况属性 值用于表示设备在能耗状态属性对应的能耗状态下运行的功耗与最大功耗的 百分比。 此外, 上述管理模块进一步包括: 查询模块, 用于对对象的能耗状态属 性和 /或能耗状况属性进行查询。 其中, 上述能耗属性状态至少包括以下之一: 全力模式、 节电模式、 睡 眠模式、 关机模式。 此外, 上述管理模块进一步包括: 通知模块, 用于在能耗状态属性和 / 或能耗状况属性改变的情况下,报告能耗状态属性和 /或能耗状况属性改变通 知。 借助于本发明的技术方案,通过对通信网络管理系统中的现有设备对象 增加新的能耗状态属性、并通过配置以及设置能耗状态对设备进行节电管理, 能够解决相关技术中无法对通信网络中的设备进行节电管理的问题, 使得管 理更加地规范化, 并且, 还具有适应性广的特点。 本发明的其它特征和优点将在随后的说明书中阐述, 并且, 部分地从说 明书中变得显而易见, 或者通过实施本发明而了解。 本发明的目的和其他优 点可通过在所写的说明书、 权利要求书、 以及附图中所特别指出的结构来实 现和获得。 附图说明 附图用来提供对本发明的进一步理解, 并且构成说明书的一部分, 与本 发明的实施例一起用于解释本发明, 并不构成对本发明的限制。 在附图中: 图 1是相关技术中通信网络管理系统的示意图; 图 2是才艮据本发明实施例的配置功能集中扩充四个新功能的示意图; 图 3 是才艮据本发明实施例的通知功能集中扩充两个新状态改变通知的 示意图; 图 4是才艮据本发明实施例的节电管理方法的流程图; 图 5是才艮据本发明实施例的能耗状态转换示意图; 图 6是才艮据本发明实施例的节电管理功能 U M L用例示意图; 图 7是才艮据本发明实施例的对象和属性显示的示意图; 图 8 是根据本发明实施例的创建对象时对能耗状态属性赋初始值的详 细处理的流程图; 图 9是根据本发明实施例的修改对象的能耗状态的详细处理流程图; 图 10是才艮据本发明实施例的查询对象的能耗状态属性和 /或能耗状况属 性的详细处理流程图; 图 11是才艮据本发明实施例的网管系统上报能耗状态属性和 /或能耗状况 属性改变通知的详细处理流程图; 图 12是才艮据本发明实施例的节电管理系统的框图; 图 13是才艮据本发明实施例的节电管理系统与用户和被管理设备之间进 行交互的信令流程图。 具体实施方式 功能相无述 考虑到相关技术中存在的无法对通信网络中的设备进行节电管理的问 题, 本发明实施例提出了一种改进的节电管理方案, 在本发明实施例中, 通 过对现有的设备管理对象增加能耗状态属性, 也就是把节电能力抽象成一个 状态属性, 通过对状态属性的管理, 来对通信网络中设备的节电功能进行管 理。 如图 2所示, 本发明实施例的节电管理功能在通信网络管理系统中的配 置管理功能集中扩充四个功能, 分别为: 修改对象的能耗状态属性、 查询对 象的能耗状态属性、 查询对象的能耗状况属性、 创建对象时将能耗状态属性 赋值。 此外, 如图 3所示, 本发明实施例还在通信网络管理系统中的通知管 理功能集扩充了两个功能, 分别为: 上报能耗状态改变通知、 上报能耗状况 改变通知。 以下结合附图对本发明的优选实施例进行说明, 应当理解, 此处所描述 的优选实施例仅用于说明和解释本发明, 并不用于限定本发明。如果不冲突, 本发明实施例以及实施例中的特征可以相互组合。 方法实施例 才艮据本发明的实施例, 提供了一种节电管理方法, 用于对通信网络中的 设备进行节电管理, 通过在通信网络管理系统中, 对代表设备的对象进行节 电管理, 实现对通信设备的节电管理。 图 4是根据本发明实施例的节电管理方法的流程图, 如图 4所示, 根据 本发明实施例的节电管理方法包括以下处理 (步骤 S402至步骤 S404 ): 步骤 S402, 在通信网络管理系统的设备对象中设置能耗状态属性, 即, 在现有的设备对象中增加一能耗状态属性, 并对能耗状态属性进行配置, 使 得能耗状态属性用于表示电能的能耗状态; 具体地, 能耗状态属性可以配置 为包括四种模式, 分别为: 全力模式、 节电模式、 睡眠模式、 关机模式; 在 能耗状态属性中配置上述四种模式后, 在对设备进行节电管理时, 就可以设 置设备对象的能耗状态属性, 即, 选择能耗状态属性中的上述四种模式, 对 设备进行管理。 优选地, 还可以根据能耗状态属性自动地设置能耗状况属性, 其中, 能 耗状况属性包括能耗状况属性值, 能耗状况属性值用于表示设备在能耗状态 属性对应的能耗状态下运行的功耗与最大功耗的百分比; 步骤 S404, 通过设置设备所对应对象的能耗状态属性, 对设备进行节 电管理。 通过上述技术方案, 能够实现对网络系统中的设备对象进行节电管理。 下面结合表 1 , 对本发明中四个能耗状态属性进行详细说明。
(一 )在设备的能耗状态属性被设置为全力模式的情况下, 设备自动将 能耗状况属性值设置为设备运行的最大功率。 (二)在设备的能耗状态属性被设置为节电模式的情况下, 设备自动将 能耗状况属性值设置为设备保证正常业务运行的最小功率与最大功耗的百分 比。
(三)在设备的能耗状态属性被设置为睡眠模式的情况下, 设备自动将 能耗状况属性值设置为设备保持睡眠前记忆的最小功率与最大功耗的百分 比。
(四)在设备的能耗状态属性被设置为关机模式的情况下, 设备自动将 关机模式的能耗状况属性值设置为设备不消耗功率。 表 1
Figure imgf000008_0001
通过表 1可以看出,在设备和设备的下属设备都支持能耗状态属性的情 况下, 在设备对象设置为全力模式时, 下属设备所对应的设备对象也设置为 全力模式; 在设备对象设置为节电模式时, 下属设备所对应的设备对象设置 为全力模式、 节电模式、 睡眠模式或者关机模式, 在设备对象设置为睡眠模 式或关机模式的情况下, 下属设备所对应的设备对象设置为睡眠模式或关机 模式; 在设备和设备的下属设备都不支持节电模式的情况下, 在将设备设置 为节电模式时, 设备和设备的下属设备按照全力模式运行; 在设备和 /或设备 的下属设备不支持睡眠模式和 /或关机模式的情况下,在将设备设置为睡眠模 式或关机模式时, 则返回设置失败操作信息, 设备保持原有状态不变。 另夕卜, 在表 1中, 能耗状态转换如图 5所示, 从全力状态转换到节电状 态, 需要进行节电操作, 相反, 从节电状态转换到全力状态, 需要恢复操作, 进行全力操作; 从全力模式转换到关机模式, 执行关机动作, 从全力模式转 换到睡眠模式, 需要进行休眠操作; 从节电模式转换到睡眠模式, 需要执行 休眠操作, 从睡眠模式转换节电操作, 需要进行唤醒操作; 从节电模式转换 到关机模式, 需要进行关机操作, 从关机模式转换到节电模式, 需要进行开 机操作。 下面, 结合实例, 对本发明实施例进行详细说明, 口图 6所示, 包括以 下处理: 第一步, 创建对象时给能耗状态属性赋值; 用户创建设备对象时, 如果 设备支持节电管理, 用户给对象的能耗状态属性赋值, 根据应用需要, 可以 赋值成 4个状态值中的一个。 设备按照状态值对应的意义, 执行相应的动作 (如上表 1 所示), 例如, 用户在网管上创建一个网元对象, 能耗状态设置 为省电; 用户在这个网元中创建一个或者多个单板对象, 单板对象的能耗状 态设置为省电; 第二步, 查询对象的能耗状态; 用户在网管选中一个网元 (或者单板) 对象, 发出查询能耗状态指令, 获得能耗状态属性; 第三步,查询对象的能耗状况值; 用户在网管选中一个网元(或者单板) 对象,发出查询能耗状况值指令,获得能耗状况的值,例如,最大功率的 70%; 第四步, 属性改变通知; 当能耗状态或者能耗状况发生改变后, 网管会 产生状态改变通知, 提醒用户, 通知中包括发生状态改变的对象名、 以及最 新的状态值信息。 上述能耗状态和能耗状况可以按照图 7所示的方式进行显示。 能耗状态属性赋初始值 下面, 对创建对象时, 对能耗状态属性赋初始值的处理过程进行说明, 如图 8所示, 包括以下处理: 步骤 801 , 用户下发创建设备对象请求, 并提供能耗状态属性初始值; 步骤 802, 判断创建的设备对象是否支持能耗状态属性; 如果支持, 则 执行步骤 803 , 如果不支持, 则执行步骤 805; 步骤 803 , 网络管理系统的配置模块创建出设备对象, 按照用户设置的 能耗状态初始值赋值, 并执行步骤 804; 步骤 804, 设备按照能耗状态值进行相应动作; 步骤 805 , 网络管理系统返回失败的信息。 修改对象的能耗状态 下面, 对修改对象的能耗状态的处理进行说明, 如图 9所示, 包括以下 处理: 步骤 901 , 用户下发修改设备对象的能耗状态属性的请求, 并给出对象 名称和新的能耗状态属性值; 步骤 902, 判断设备对象是否支持能耗状态属性, 如果支持, 则执行步 骤 903 , 如果不支持, 则执行步骤 905; 步骤 903 , 网络管理系统的配置模块按照用户设置的能耗状态属性新 值, 修改指定对象的能耗状态属性, 并执行步骤 904; 步骤 904 , 设备按照能耗状态值进行相应的动作; 步骤 905 , 网络管理系统返回失败的信息。 查询对象的能耗状态属性和 /或能耗状况属性 下面, 对查询对象的能耗状态属性和 /或能耗状况属性的处理过程进行 说明, 如图 10所示, 包括以下处理: 步骤 1001 , 用户下发查询设备对象的能耗状态属性和 /或能耗状况属性 的请求, 并给出对象名称; 步骤 1002, 网络管理系统的配置模块从指定对象中获取能耗状态属性 值和 /或能耗状况属性的值; 步骤 1003 , 网络管理系统返回查询结果。 上 4艮能耗状态属性和 /或能耗状况属性改变通知 下面, 对网管系统上报能耗状态属性和 /或能耗状况属性改变通知的处 理进行说明, 如图 11所示, 包括以下处理: 步骤 1101 , 网络管理系统发现设备对象的能耗状态属性或能耗状况属 性发生改变; 步骤 1102, 网络管理系统的通知模块从指定发生改变的对象, 获取能 耗状态属性和 /或能耗状况属性的值; 步骤 1103 , 网络管理系统的通知模块向用户发出能耗状态属性和 /或能 耗状况属性改变通知, 提供发生改变的对象名和新的属性值。 通过本实施例的技术方案, 能够对通信网络中的设备进行节电管理, 并 且使得状态信息的划分更为清晰高效, 同时避免了冗余, 更加地规范化。 系统实施例 才艮据本发明的实施例, 提供了一种节电管理系统, 图 12是才艮据本发明 实施例的节电管理系统的框图, 如图 12 所示, 根据本发明实施例的节电管 理系统包括配置模块 12和管理模块 14。 下面对上述模块的功能进行详细说 明。 配置模块 12, 用于对网络管理系统中的设备对象中设置的能耗状态属 性, 并对能耗状态属性进行配置, 使得能耗状态属性用于表示电能的能耗状 态, 上述能耗属性状态至少包括: 全力模式、 节电模式、 睡眠模式、 关机模 式; 优选地, 配置模块 12还可以进一步包括设置模块 120, 用于根据能耗 状态属性设置能耗状况属性, 其中, 能耗状况属性包括能耗状况属性值, 能 耗状况属性值用于表示设备在能耗状态属性对应的能耗状态下运行的功耗与 最大功耗的百分比; 管理模块 14, 连接至配置模块 12, 用于通过设置设备所对应对象的能 耗状态, 对设备进行节电管理。 优选地, 管理模块 14还可以进一步包括查询模块 140和通知模块 142, 其中, 查询模块 140, 用于对对象的能耗状态属性和 /或能耗状况属性进行查 询; 通知模块 142, 连接至查询模块 140和设置模块 120, 如图 3所示, 用 于在能耗状态属性和 /或能耗状况属性改变的情况下, 向用户报告能耗状态属 性和 /或能耗状况属性改变通知。 下面, 对设备的能耗状态属性进行详细说明。
(一) 在配置模块 12将能耗状态属性被设置为全力模式的情况下, 设 备自动将能耗状况属性值设置为设备运行的最大功率;
(二) 在配置模块 12将能耗状态属性被设置为节电模式的情况下, 设 备自动将能耗状况属性值设置为设备保证正常业务运行的最小功率与最大功 耗的百分比;
(三) 在配置模块 12将在设备的能耗状态属性被设置为睡眠模式的情 况下, 设备自动将能耗状况属性值设置为设备保持睡眠前记忆的最小功率与 最大功耗的百分比; (四) 在配置模块 12将能耗状态属性被设置为关机模式的情况下, 设 备自动将关机模式的能耗状况属性值设置为设备不消耗功率。 需要说明的是, 在实际的应用中, 也可以由设置模块 120单独进行能耗 状态属性中的能耗状态的配置以及能耗状况属性的设置。 其中, 设置能耗状 态为网管系统的用户发出的指令, 而设置能耗状况是网管系统管理的设备所 发出的指令。 网管系统按照用户的指令修改能耗状态属性后通知设备, 设备 根据通知执行对该状态的动作处理, 然后设备将新的能耗状况通知到网管, 网管的设置模块再修改能耗状况属性。 通过本实施例提供的技术方案, 通过设置配置模块和管理模块, 能够对 通信网络中的设备进行节电管理。 基于以上的描述, 下面结合附图 13 , 对上述处理过程进行详细的说明。 如图 13所示, 才艮据本发明实施例的节电管理系统的处理流程包括如下过程:
1、 用户向设置模块 120发送 ]3武值 ί'爹改能耗状态请求;
2、 设置模块 120才艮据用户的请求, 对被管理的设备的能耗状态进行修 改, 并向用户返回应答成功的消息;
3、 设置模块 120向被管理的设备发送指示, 指示设备执行最新的能耗 状态;
4、 被管理的设备根据设置模块 120发送的指示, 按照状态表执行相应 的动作;
5、 设置模块 120向通知模块 142发送指示, 通知模块 142被管理设备 的能耗状态已经修改, 准备通知用户;
6、 通知模块 142根据设置模块 120的指示消息, 向用户发送能耗状态 改变的通 口; 7、 被管理的设备向设置模块 120提供新的能耗状况;
8、 设置模块 120根据提供的能耗状况, 对能耗状况的值进行修改, 并 向通知模块 142发送消息, 指示通知模块 142被管理设备的能耗状况已经修 改, 准备通知用户;
9、 通知模块 142根据设置模块 120发送的通知消息, 向用户发送能耗 况改变的通 口。 综上所述, 借助于本发明的技术方案, 通过对通信网络管理系统中的现 有设备对象增加新的能耗状态属性、 并通过配置以及设置能耗状态对设备进 行节电管理, 能够解决相关技术中无法对通信网络中的设备进行节电管理的 问题, 能够使得状态信息的划分更为清晰高效, 同时避免了冗余, 更加地规 范^^ 并且, 还具有适应性广的特点。 以上所述仅为本发明的优选实施例而已, 并不用于限制本发明, 对于本 领域的技术人员来说, 本发明可以有各种更改和变^^ 凡在本发明的^^申和 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. 一种节电管理方法, 用于通过对代表设备的对象进行节电管理, 来实现 对通信设备的节电管理, 其特征在于, 所述方法包括:
在通信网络管理系统的设备对象中设置能耗状态属性,并对所述能 耗状态属性进行配置,使得所述能耗状态属性用于表示电能的能耗状态; 通过设置所述设备所对应对象的能耗状态属性,对所述设备进行节 电管理。
2. 根据权利要求 1所述的方法, 其特征在于, 所述能耗状态至少包括以下 之一: 全力模式、 节电模式、 睡眠模式、 关机模式。
3. 根据权利要求 2所述的方法, 其特征在于, 进一步包括:
根据所述能耗状态属性设置能耗状况属性, 其中, 所述能耗状况属 性包括能耗状况属性值, 所述能耗状况属性值用于表示设备在所述能耗 状态属性对应的能耗状态下运行的功耗与最大功耗的百分比。
4. 根据权利要求 3所述的方法, 其特征在于, 所述设置能耗状况属性值包 括:
在所述设备的能耗状态属性被设置为全力模式的情况下,将所述能 耗状况属性值自动设置为所述设备运行的最大功率;
在所述设备的能耗状态属性被设置为节电模式的情况下,将所述能 耗状况属性值自动设置为所述设备保证正常业务运行的最小功率与最大 功耗的百分比;
在所述设备的能耗状态属性被设置为睡眠模式的情况下,将所述能 耗状况属性值自动设置为所述设备保持睡眠前记忆的最小功率与最大功 耗的百分比;
在所述设备的能耗状态属性被设置为关机模式的情况下,将所述关 机模式的能耗状况属性值自动设置为所述设备不消耗功率。 才艮据权利要求 3所述的方法, 其特征在于, 所述方法进一步包括: 在所述设备和所述设备的下属设备都支持能耗状态属性的情况下, 在所述设备对象设置为全力模式时, 将所述下属设备所对应的设备对象 也设置为全力模式; 在所述设备对象设置为节电模式时, 将所述下属设 备所对应的设备对象设置为全力模式、 节电模式、 睡眠模式或者关机模 式, 在所述设备对象设置为睡眠模式或关机模式的情况下, 将所述下属 设备所对应的设备对象设置为睡眠模式或关机模式;
在所述设备和所述设备的下属设备都不支持节电模式的情况下,在 将所述设备设置为节电模式时, 所述设备和所述设备的下属设备按照全 力模式运行;
在所述设备和 /或所述设备的下属设备不支持睡眠模式和 /或关机模 式的情况下, 在将所述设备设置为睡眠模式或关机模式时, 则返回设置 失败操作信息, 所述设备保持原有状态不变。 一种节电管理系统, 用于对其中的对象设备进行节电管理, 其特征在于, 所述节电管理系统包括:
配置模块, 用于对网络管理系统中的设备对象中设置能耗状态属 性, 并对所述能耗状态属性进行配置, 使得所述能耗状态属性用于表示 电能的能耗状态;
管理模块, 用于通过设置所述设备所对应对象的能耗状态, 对所述 设备进行节电管理。 根据权利要求 6所述的节电管理系统, 其特征在于, 所述配置模块进一 步包括:
设置模块, 用于根据所述能耗状态属性设置能耗状况属性, 其中, 所述能耗状况属性包括能耗状况属性值, 所述能耗状况属性值用于表示 设备在所述能耗状态属性对应的能耗状态下运行的功耗与最大功耗的百 分比。 根据权利要求 7所述的节电管理系统, 其特征在于, 所述管理模块进一 步包括:
查询模块, 用于对所述对象的能耗状态属性和 /或能耗状况属性进 行查询。 根据权利要求 7所述的节电管理系统, 其特征在于, 所述能耗状态至少 包括以下之一: 全力模式、 节电模式、 睡眠模式、 关机模式。 根据权利要求 7所述的节电管理系统, 其特征在于, 所述管理模块进一 步包括:
通知模块, 用于在能耗状态属性和 /或能耗状况属性改变的情况下, 报告能耗状态属性和 /或能耗状况属性改变通知。
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EP2317803A1 (en) 2011-05-04
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