WO2012149838A1 - 一种站点能耗管理、呈现的方法及装置 - Google Patents

一种站点能耗管理、呈现的方法及装置 Download PDF

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Publication number
WO2012149838A1
WO2012149838A1 PCT/CN2012/072181 CN2012072181W WO2012149838A1 WO 2012149838 A1 WO2012149838 A1 WO 2012149838A1 CN 2012072181 W CN2012072181 W CN 2012072181W WO 2012149838 A1 WO2012149838 A1 WO 2012149838A1
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WO
WIPO (PCT)
Prior art keywords
energy consumption
site
consumption value
energy
graphical
Prior art date
Application number
PCT/CN2012/072181
Other languages
English (en)
French (fr)
Inventor
郭佳
高健
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.)
Filing date
Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to EP12779863.5A priority Critical patent/EP2733889B1/en
Priority to EP14160993.3A priority patent/EP2775691B1/en
Publication of WO2012149838A1 publication Critical patent/WO2012149838A1/zh

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Classifications

    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B15/00Systems controlled by a computer
    • G05B15/02Systems controlled by a computer electric
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/52Network services specially adapted for the location of the user terminal
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q50/00Information and communication technology [ICT] specially adapted for implementation of business processes of specific business sectors, e.g. utilities or tourism
    • G06Q50/06Energy or water supply
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q99/00Subject matter not provided for in other groups of this subclass
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]
    • H04L12/2803Home automation networks
    • H04L12/2823Reporting information sensed by appliance or service execution status of appliance services in a home automation network
    • H04L12/2825Reporting to a device located outside the home and the home network
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]
    • H04L12/2803Home automation networks
    • H04L12/283Processing of data at an internetworking point of a home automation network
    • H04L12/2834Switching of information between an external network and a home network
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L43/00Arrangements for monitoring or testing data switching networks
    • H04L43/04Processing captured monitoring data, e.g. for logfile generation
    • H04L43/045Processing captured monitoring data, e.g. for logfile generation for graphical visualisation of monitoring data
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]
    • H04L12/2803Home automation networks
    • H04L2012/2847Home automation networks characterised by the type of home appliance used
    • H04L2012/285Generic home appliances, e.g. refrigerators

Definitions

  • the invention relates to the field of communications, and in particular to a site energy management technology in the field of communications. Background technique
  • the embodiment of the invention provides an intuitive and efficient method and device for energy consumption management and presentation of a site, and a method for managing energy consumption of a site, which comprises:
  • an energy consumption value selection control that is graphically displayed on the display interface, and the energy consumption value selection control is configured to select at least one target energy consumption value or target energy consumption value interval; Selecting at least one target energy consumption value or target energy consumption value interval selected by the control, and selecting a target energy consumption value or a target energy consumption value interval selected by the target energy consumption value to highlight a graphic representation conforming to a predetermined display rule The graphical energy consumption value corresponding to the site and the graphical site.
  • a method for presenting a site energy consumption comprising: displaying, by using a display interface, a site located in different geographical locations and an energy consumption identifier corresponding to the site, The energy consumption identifier is used to indicate the energy consumption level of the site; and an energy consumption value selection control is generated on the display interface displaying the energy consumption identifier of the site and the site, and the energy consumption value selection control is used to select The consumption level or the energy consumption level interval; the energy consumption level selected by the control is selected according to the current energy consumption value to highlight the site that meets the predetermined display rule and the energy consumption identifier corresponding to the site.
  • a site energy management system includes: an information acquisition module, configured to acquire location information of a site and an energy consumption value corresponding to the site; and a graphical interface generation module configured to: according to the acquired location information and corresponding energy of the site The value of the energy consumption value corresponding to the site and the display is displayed on a display interface; the control generation module is configured to generate a graphic and present on the display interface a value selection control, the energy consumption value selection control is configured to select at least one target energy consumption value or a target energy consumption value interval; and a site filtering module to acquire at least one target energy consumption selected by the energy consumption value selection control a value or a target energy consumption value interval, according to the target energy consumption value or the target energy consumption value interval selected by the target energy consumption value selection control, to highlight a graphical site that meets a predetermined display rule and the graphical site corresponding to The graphical energy consumption value.
  • a site energy consumption presentation device includes: a site and an energy consumption display module, configured to display, by using a display interface, sites and locations corresponding to energy consumption identifiers in different geographic locations, where the energy consumption identifier is used to indicate the energy of the site a consumption generation module, configured to generate a display interface on the display of the energy consumption identifier of the site and the site Forming an energy consumption value selection control, the energy consumption value selection control is used to select an energy consumption level or an energy consumption level interval; and a site filtering module for selecting an energy consumption level or an energy consumption level selected by the control according to the energy consumption value
  • the method and device for managing and presenting the energy consumption of the site provided by the embodiment of the present invention can be intuitively observed by the administrator by graphically displaying the geographical location information of the site and the energy consumption value of the site on the display interface.
  • the location distribution and the energy consumption status of each site by generating an energy consumption value selection control for selecting the energy consumption value or the energy consumption value interval on the display interface, the manager can conveniently and conveniently select the required a target energy consumption value or a target energy consumption value interval, when the target energy consumption value or the target energy consumption interval is selected, highlighting the graphically corresponding site corresponding to the predetermined display rule and the graphical representation corresponding to the graphical site
  • the energy consumption value allows the administrator to intuitively screen out the required sites and quickly understand the energy consumption status of the selected sites to facilitate energy management of the site.
  • FIG. 1 is a running environment of a site energy management method according to an embodiment of the present invention
  • FIG. 2 is a data transmission mode diagram in a running environment of a site energy management method provided in FIG. 1;
  • FIG. 3 is a flowchart of a method for managing energy consumption of a site according to an embodiment of the present invention
  • FIG. 5 is a regional integrated energy consumption diagram generated by an energy management method according to an embodiment of the present invention.
  • FIG. 6 is a diagram showing an individual energy consumption diagram of a site generated by an energy management method according to an embodiment of the present invention.
  • FIG. 7 is a flowchart of another method for managing energy consumption of a site according to an embodiment of the present invention
  • FIG. 8 is a display diagram of implementing energy consumption value selection according to the site energy management method provided in FIG. 7;
  • 10 is a display diagram of a method for generating an energy consumption value selection control and an energy consumption value selection control by a site energy management method according to an embodiment of the present invention
  • FIG. 11 is a flowchart of another method for managing energy consumption of a site according to an embodiment of the present invention
  • FIG. 12 is a flowchart of another method for managing energy consumption of a site according to an embodiment of the present invention
  • FIG. 13a and FIG. 13b are diagrams according to FIG.
  • the energy management method provided in 11, 12 is used to display the geographic type selection of the site;
  • FIG. 14 is a flowchart of another method for managing energy consumption of a site according to an embodiment of the present invention
  • FIG. 15 is a diagram showing an energy-saving management method provided by FIG. 14 for energy-saving management of a site through an energy-saving control
  • 16 is a flowchart of a method for presenting a site energy consumption according to an embodiment of the present invention.
  • FIG. 17 is a diagram showing a graphical site and an energy consumption identifier generated according to a site energy consumption presentation method provided in FIG. 16;
  • FIG. 18 is a flowchart of another method for presenting a site energy consumption according to an embodiment of the present invention
  • FIG. 19 is a flowchart of a site energy consumption presentation method according to an embodiment 18 of the present invention, which selects an energy consumption level by using an energy consumption value selection control. plan;
  • FIG. 20 is a flowchart of another method for presenting a site energy consumption according to an embodiment of the present invention
  • FIG. 21 is a flowchart of another method for presenting a site energy consumption according to an embodiment of the present invention
  • FIG. 23 is a schematic diagram of a graphical interface generation module in the site energy management system of FIG. 21;
  • FIG. 24 is a schematic diagram of another graphical interface generation module in the site energy management system of FIG. 21;
  • FIG. 25 is a schematic diagram of a site energy management system according to another embodiment of the present invention
  • FIG. 26 is a schematic diagram of a site energy management system according to another embodiment of the present invention
  • FIG. 28 is a schematic diagram of a site energy management system according to another embodiment of the present invention
  • FIG. 29 is a schematic diagram of a site energy supply according to an embodiment of the present invention
  • FIG. 30 is a schematic diagram of a site energy consumption presentation device according to another embodiment of the present invention
  • FIG. 31 is a schematic diagram of a site energy consumption presentation device according to another embodiment of the present invention
  • FIG. 33 is a schematic diagram of a site energy consumption presentation device according to another embodiment of the present invention.
  • an embodiment of the present invention provides an operating environment for a site energy management method, that is, a hardware architecture for implementing the present invention, which includes a control unit 12, a transmission unit 14, and a network management unit 16.
  • the control unit 12 is configured to control the interface with loads in the station such as a base station, a load supporting energy source such as an oil machine, a solar energy, a fan, a battery, a power source, various load energy monitoring devices, and a load operating environment monitoring device such as a temperature sensor, a humidity sensor, a smoke sensor, or the like is connected to acquire an operating parameter of the load in the station, and transmit the operating parameter to the network management unit 16 through the transmission unit 14, and at the same time, according to a control signal sent by the network management unit 16 Unified energy management and scheduling of the load and load supporting energy.
  • a load supporting energy source such as an oil machine, a solar energy, a fan, a battery, a power source
  • various load energy monitoring devices such as a temperature sensor, a humidity sensor, a smoke sensor, or the like is connected to acquire an operating parameter of the load in the station, and transmit the operating parameter to the network management unit 16 through the transmission unit 14, and at the same time, according to a control signal sent by the network management
  • the operating parameters may include, but are not limited to, a site location parameter, a site energy consumption value (load energy consumption value), a load ambient temperature, a load operating temperature, and energy supply parameters of various energy devices (including Current, voltage, etc., the above operating parameters are available to the network management unit 16 to determine the operating condition of the load, and issue control commands accordingly.
  • the transmission unit 14 is configured to perform bidirectional data transmission between the control unit 12 and the network management unit 16, and the data may be an operation parameter of the load and a control instruction issued by the network management unit 16.
  • the transmission mode of the transmission unit 14 may be two transmission modes as shown in FIG. 2, ie, In-band transmission mode and out-of-band transmission mode.
  • the in-band transmission mode means that the controller of the control unit 12 performs the uplink information by using a channel (E1) of the base station (GSM/UMTS/LTE/CDMA/WIMAX), and the The load information acquired by the control unit 12 and the status information and energy consumption information of the accessory device are transmitted to The network management unit 12;
  • the out-of-band transmission mode means that the control unit 12 transmits the acquired load and the status information and energy consumption information of the accessory device to the network management through an independent channel such as a short message, GPRS, or IP.
  • Unit 16 the control unit 12 performs the uplink information by using a channel (E1) of the base station (GSM/UMTS/LTE/CDMA/WIMAX), and the The load information acquired by the control unit 12 and the status information and energy consumption information of the accessory device are transmitted to The network management unit 12;
  • the out-of-band transmission mode means that the control unit 12 transmits the acquired load and the status information and energy consumption information of the accessory device to the network management through an independent channel such
  • the network management unit 16 is configured to monitor and manage various devices on the network, and specifically, may be used to adjust operating parameters, environmental parameters, control parameters, and the like of the network devices.
  • the network management unit 16 includes a display device, a processing device, a storage device, an input device, and a data bus that connects the various devices described above.
  • the site energy management method and the site energy consumption presentation method provided by the embodiments of the present invention will be described below based on the hardware architecture introduced above. It should be noted that the above hardware architecture is exemplary for the purpose of clearly describing the present invention. The present invention can be operated in any hardware environment having the content of the present invention and is not limited to the hardware architecture described above.
  • the embodiment of the invention provides a site energy management method, which includes:
  • Obtaining at least one target energy consumption value or target energy consumption value interval selected by the energy consumption value selection control, and highlighting according to the target energy consumption value or the target energy consumption value interval selected by the target energy consumption value selection control A graphical site corresponding to a predetermined display rule and a graphical energy consumption value corresponding to the graphical site.
  • the site energy management method can obtain the geographical location information of the site and the energy consumption value of the site, and graphically display the geographical location information of the site and the energy consumption value of the site, and then present on the display interface.
  • the administrator can intuitively observe the location distribution of the site and the energy consumption status of each site, and facilitate the manager by generating an energy value selection control for selecting the energy consumption value or the energy consumption value interval on the display interface.
  • the site and the energy consumption value corresponding to the site are determined according to the acquired location information of the site and the corresponding energy consumption value.
  • Graphical and presented on a display interface includes:
  • the site generates a visualized distribution map according to the location information of the site, which facilitates the administrator to locate the site, and associates the graphical energy consumption value corresponding to the site with the geometric position of the site. It is convenient for administrators to quickly understand the energy consumption status of the site.
  • the site and the energy consumption value corresponding to the site are determined according to the acquired location information of the site and the corresponding energy consumption value.
  • Graphically and presented on a display interface further comprising: classifying energy consumption of the site according to the corresponding energy consumption value of the site, and assigning different visual elements to sites of different energy consumption levels .
  • One step is to increase the identification of the energy consumption status of the station, so that the administrator can quickly identify the energy consumption identifier of each station to determine the energy consumption status of each station.
  • the target energy consumption value or the target energy consumption value interval selected according to the target energy consumption value selection control is used to highlight a graphic pattern conforming to a predetermined display rule.
  • the graphical energy consumption value corresponding to the site and the graphical site includes: comparing the energy consumption value of the site with the selected target energy consumption value or the target energy consumption value interval, and highlighting that the energy consumption value is greater than The graphical site of the target energy consumption value and the graphical energy consumption value corresponding to the graphical site.
  • the method provides that the predetermined display rule is explicitly set to display the graphical energy consumption value corresponding to the graphical site and the graphical site whose energy consumption value is greater than the target energy consumption value, thereby
  • the display manner of the graphical energy consumption value corresponding to the imaged site and the imaged site is more consistent with the daily operation habits of the user, so that the user can quickly grasp the energy consumption value according to his experience.
  • the method of using the control is selected, thereby increasing the interface friendliness of the site energy management method of the present invention.
  • the method further comprises: weakening the graphical site that does not conform to the predetermined display rule and the corresponding graphical energy consumption value.
  • the method of the present invention further highlights the selected sites that meet the predetermined display rules and the corresponding energy consumption states, so that the administrator can manage the selected sites.
  • the generating an energy consumption value selection control that is graphically displayed on the display interface, the energy consumption value selection control is used to select The at least one target energy consumption value or the target energy consumption value interval includes: generating an energy consumption value selection control that is graphically displayed on the display interface, and the energy consumption value selection control corresponding to the site The energy consumption value is associated, wherein the maximum target energy consumption value selectable by the energy consumption value selection control is not less than the energy consumption value of the site with the largest energy consumption, wherein the energy consumption value selection control selects the smallest The target energy consumption value is not greater than the energy consumption value of the site with the lowest energy consumption.
  • the energy consumption value selection control is associated with the energy consumption value corresponding to the site, so that the selection value range of the energy consumption value selection control can be compared with the current energy consumption value of the current site. Matching between them allows the manager to accurately select the target energy consumption value or the target energy consumption value interval.
  • the generating an energy consumption value selection control that is graphically displayed on the display interface includes: generating a graphical energy consumption value A scaled scale, and a graphical cursor that generates at least one movable edge along the graphical scale to select a target energy consumption value or a target energy consumption value interval.
  • the energy consumption value selection control is set as a scale with an energy consumption value scale, and a cursor common user moving along the graphical scale is selected to select a target energy consumption value, which is consistent with the use.
  • the user's usage habits intuitively reflect the function of the energy consumption value selection control, eliminating the need for the user to learn the usage method and function of the energy consumption value selection control, and is convenient to use.
  • the method for managing a site energy consumption further includes: acquiring a set region type; and selecting, according to the target energy consumption value, a target energy consumption value or a target energy consumption value selected by the control
  • the interval highlights the graphical site corresponding to the predetermined display rule and the graphical energy consumption value corresponding to the graphical site, including:
  • the method for managing energy consumption of a site provided by the embodiment of the present invention further includes: graphically matching the acquired regional type in the graphical site that meets the predetermined display rule.
  • the graphical energy consumption values corresponding to the sites and sites are weakened.
  • the user is allowed to obtain a site conforming to the feature of the region type according to the preset region type, thereby realizing the screening of the site from a two-dimensional perspective in combination with the selection of the target energy consumption value or the target energy consumption value interval, and further facilitating management. Use of the user to enhance the user experience.
  • the obtaining a set of the region type includes: classifying the geographical location information of the site, and generating, according to the geographic location information, a The area type selection menu on the display interface, the area type selection menu is used to select one or more area types.
  • the user is allowed to associate the geographical location information of the site with the geographic type, so that the selection of the target energy consumption value can be used to filter the site from a two-dimensional perspective, thereby further facilitating the use of the administrator and improving the user experience.
  • the method for managing the energy consumption of the site provided by the embodiment of the present invention further includes: generating an energy-saving control displayed on the display interface, and selecting an energy-saving control parameter of the site by using the energy-saving control, Configuring the selected energy saving control parameter to the highlighted site, correspondingly,
  • obtaining the location information of the site and the energy consumption value corresponding to the site including: obtaining the location information of the site and the energy consumption value corresponding to the site after the control parameter is configured;
  • the energy saving control parameter can be selected by an energy saving control presented on the display interface, and the selected energy saving control parameter is configured to each highlighted station, that is, the selected site, and the site will be according to the Energy-saving control parameters to adjust its working state or operating mode to achieve energy saving purposes.
  • the energy-saving control parameters are configured to the site, and the site is adjusted according to the control parameters, the current feedback site is current.
  • the energy consumption status and the graphical energy consumption value of the site are refreshed, so that the user can timely and intuitively know the energy consumption status of the site after the energy saving control.
  • a site energy management method 100 provided by an embodiment of the present invention is described in detail below.
  • a site energy management method 100 according to an embodiment of the present invention includes: 101. Obtain location information of a site and an energy consumption value corresponding to the site;
  • the sites When performing energy management of a site, it is first necessary to obtain the sites to be monitored and managed and their corresponding energy consumption states.
  • the sites are usually distributed in different geographical locations, so in order to understand the distribution of the sites, it is necessary to obtain Geographic location information for the site.
  • the obtaining of the geographical location information of the site and the corresponding energy consumption value may be implemented by the management unit 12 deployed in the site, that is, the management unit 12 passively acquires the corresponding site immediately or triggered by the control instruction. information.
  • the geographical location information of the site may also be pre-stored in a memory, that is, when the site is set up, the geographical location information of the site is recorded in the engineering parameter information table as shown in FIG.
  • the engineering parameter information table includes a plurality of information, and the geographical location information of the site is recorded in the engineering parameter information table in a manner of Global Positioning System (GPS) information, and the engineering parameter is directly called when needed.
  • GPS Global Positioning System
  • the GPS information of the site in the information table can be; similarly, the corresponding energy of the site
  • the consumption value may also be periodically acquired by the management unit 12 and stored in a storage device, and periodically updated, and may be directly called from the storage device when in use.
  • the device and the energy consumption value corresponding to the site are graphically displayed on a display interface according to the obtained location information of the site and the corresponding energy consumption value;
  • the site and the corresponding energy consumption are needed.
  • the value is graphically presented to the user through a display interface.
  • the function is implemented by the network management unit 16, that is, the graphical user interface GUI module is pre-stored in the network management unit 16,
  • the GUI module visually displays the distributed location and energy consumption status of the acquired site according to the geographical location information and the energy consumption value, wherein the display manner may be changed according to the user's needs, for example, may be the area shown in FIG.
  • the comprehensive energy consumption map that is, the site is divided into a plurality of different regions according to its location, and the sum of the energy consumption values of all the sites in the same region is appropriately weighted and calculated as the corresponding region.
  • Energy consumption value to indicate the energy consumption situation in the area; alternatively, the display manner may be a separate station as shown in FIG.
  • FIG energy consumption this embodiment shows all sites sucked intuitive interface presented on the display depending on the position information and energy consumption values.
  • the graphical representation may be performed by using a modular electronic map as a basic layer, and each site is calibrated and displayed in a dot manner according to the location information on the basic layer.
  • the energy consumption value corresponding to the site is displayed in a manner associated with the calibrated site, which means that the graphical energy consumption value can be used to cover the location of the graphical site, or the graphics can be displayed simultaneously.
  • the site and the graphical energy consumption value are used to show the relationship between the two through a distance between the two or through an associated symbol.
  • the energy consumption value selection control is configured to select at least one target energy consumption value or target energy consumption value interval; after the said site and the corresponding energy consumption value are graphically configured, the power consumption value of each site is correspondingly used for convenience
  • the management needs to generate an energy value selection tool on the graphical display interface.
  • the energy consumption value selection control is generated by generating a graphically displayed and displayed on the display interface.
  • the filtering of the consumption value or the energy consumption value interval is convenient for operation and improves efficiency; the energy consumption value selection control may be presented in the upper right corner of the display interface, or may be habitually presented at any position on the screen according to the user's preference.
  • the embodiment of the invention provides an energy consumption value selection control 10 for selecting an energy consumption value by dragging and dropping, and can realize the selection of the energy consumption value efficiently by dragging and dropping, thereby improving the user experience.
  • a graphical site that conforms to a predetermined display rule and a graphical energy consumption value corresponding to the graphical site are highlighted.
  • the predetermined The display rule refers to a total range of energy consumption values covered by the minimum value and the maximum value of the control value selection control, and the total energy consumption value is determined by using the selected energy consumption level as a critical condition.
  • the collection is divided into at least one subset and the at least one subset is displayed. Specifically, in the embodiment of the present invention, when the energy consumption value selection control selects a target energy consumption value, the target energy consumption value is used as a threshold value to cover the entire energy consumption value selection control.
  • the total set of energy consumption values is divided into larger than a portion of the threshold, that is, a subset of the threshold, a portion equal to the threshold, that is, another subset, and a portion smaller than the threshold, that is, a third subset;
  • a portion of the threshold that is, a subset of the threshold
  • the entire energy consumption value range covered by the control is divided into a plurality of subsets by the threshold value, that is, the target energy consumption value
  • one of the subsets may be displayed, that is, a portion larger than the threshold value is displayed, or the display is equal to the a portion of the threshold value, or a portion that is smaller than the threshold value; or may display a combination of the subsets that are divided, that is, a portion that is greater than or equal to the threshold value, or a display that is less than or equal to the threshold value.
  • the display rule is similar to the display rule when a target energy consumption value is selected, and is not redundant for the sake of brevity.
  • the site energy management method 100 can obtain the geographic location information of the site and the energy consumption value of the site, and graphically display the geographic location information of the site and the energy consumption value of the site on the display interface, so that the administrator can enable the administrator to Intuitively observing the location distribution of the site and the energy consumption status of each site, by generating an energy value selection control for selecting the energy consumption value or the energy consumption value interval on the display interface, the manager can be conveniently and conveniently Selecting a desired target energy consumption value or a target energy consumption value interval, and when the target energy consumption value or the target energy consumption interval is selected, highlighting a site that conforms to a predetermined display rule and corresponding to the graphical site
  • the graphical energy consumption value allows the administrator to intuitively screen out the required sites and quickly understand the energy consumption status of the filtered sites to facilitate energy management of the site.
  • the method for managing the energy consumption of the site provided by the embodiment of the present invention, after executing 104 or after performing 104, the method further includes:
  • a graphical site that does not meet the predetermined display rule may be The contrast of the corresponding graphical energy consumption value and the background of the display interface is reduced, or the graphical site that does not conform to the predetermined display rule and the corresponding graphical energy consumption value are hidden.
  • the display interface of the whole display interface is simple and clear compared to the display interface in FIG. 1, which is convenient for the user to recognize and carry out the next operation.
  • the method of the present invention further highlights the selected sites that meet the predetermined display rules and the corresponding energy consumption states, so that the administrator can manage the selected sites.
  • the specific implementation manner of 102 may be:
  • a visualized site distribution map which may be generated by pre-modeling the site according to its location information to form a site visualization map, which can be directly called by using the generated site during use.
  • Visualize the distribution model to map the distribution of the site The visualization is presented to the user.
  • the generating of the visualized site map may also be performed on a preliminary map (geographic map) according to the geographical location information (GPS information, having unique latitude and longitude) of the site.
  • GPS information having unique latitude and longitude
  • control unit 12 in the station transmits the geographical location information of the site to the network management unit 16 through the transmission unit 14, and the network management unit 16 calibrating the specific location of the site on a preliminary map based on the geographic location information of the site and displaying it through the display device of the network management unit 16.
  • the geographical location information of the site and the energy consumption value will be bound, ie in the geographical A mapping relationship between the location information and the energy consumption value is established.
  • the method provided in this embodiment is to use the coordinates of the site in the site profile as the display coordinates of the graphical energy consumption value, thereby Establishing a relationship between the graphical site energy consumption value and a corresponding graphical site in a geometric location in the site profile, the graphical energy consumption value representing the site and indicating the site Energy consumption value.
  • the relationship between the graphical site and the energy consumption value corresponding to the graphical site can be set according to the user's needs, such as displaying the graphical energy consumption value in the corresponding
  • An associated icon such as a connection, an arrow, etc., is generated in the vicinity of the graphical site or between the graphical energy consumption value and the corresponding graphical site.
  • the site is generated according to the location information of the site to generate a visualized distribution map, which facilitates the administrator to locate the site, and simultaneously performs geometrical mapping between the corresponding energy consumption value of the site and the site.
  • the location association makes it easy for administrators to quickly understand the energy consumption status of the site.
  • 103 includes: associating the energy consumption value selection control with an energy consumption value corresponding to the site, wherein the energy consumption value selection control is selectable
  • the maximum target energy consumption value is not less than the energy consumption value of the site with the largest energy consumption, wherein the minimum target energy consumption value selectable by the energy consumption value selection control is not greater than the energy consumption of the site with the lowest energy consumption. value.
  • the energy consumption value range covered by the energy consumption value selection control can be matched with the energy consumption value of the current graphical site.
  • the embodiment of the present invention further associates the energy consumption value selection control with the energy consumption value corresponding to the site, so as to ensure that the maximum target energy consumption value selectable by the energy consumption value selection control is not less than the largest energy consumption.
  • the energy consumption value of the site, wherein the minimum target energy consumption value selectable by the energy consumption value selection control is not greater than the energy consumption value of the site with the lowest energy consumption.
  • the energy consumption value selection control is associated with the energy consumption value corresponding to the site, so that the selection value range of the energy consumption value selection control can be compared with the current energy consumption value of the current site. Matching between them allows the manager to accurately select the target energy consumption value.
  • the energy consumption value selection control that is generated in a graphical manner and is displayed on the display interface is as follows:
  • a graphical scale having an energy consumption value scale is generated, and at least one graphical cursor movable along the graphical scale to select a target energy consumption value or a target energy consumption value interval is generated.
  • the network management unit 16 may generate a scale for identifying the energy consumption value through the GUI module, and generate at least one cursor or a slider that can move along the energy consumption value scale, according to the cursor or the slider.
  • Corresponding scale readings to determine the currently selected target energy consumption value specifically, please refer to FIG. 10 is a schematic diagram of a graphical energy consumption value selection control generated by a GUI module according to an embodiment of the present invention.
  • the graphical energy consumption value control includes a graphical scale with an energy consumption value scale.
  • two cursors/sliders 1004 slidable along the graphical scale 1002, the cursors/sliders 1004 are configured to move along the graphical scale 1002 to select a corresponding target energy consumption value or target
  • the energy consumption value interval shown in sequence from A to D in Fig. 10, selects a plurality of states of the target energy consumption value interval by the two cursors/sliders 1006.
  • the energy consumption value selection control is set as a scale with an energy consumption value scale, and a cursor common user moving along the graphical scale is selected to select a target energy consumption value, which is consistent with the use.
  • the user's usage habits intuitively reflect the function of the energy consumption value selection control, and the process of the user needing to learn the function of the energy consumption value selection control is omitted, and is convenient to use.
  • the method for managing site energy consumption provided by the embodiment of the present invention further includes:
  • An energy consumption value interval to highlight a graphical site that meets a predetermined display rule and a graphical energy consumption value corresponding to the graphical site including:
  • the different scenarios refer to regions or occasions where the site load has significant differences, such as the load of the site with the number of users in different geographical locations. There are significant differences in change, specifically, in the mountains, forest areas, villages The load of the point is small, and the load of the site in the town or city is large; more specifically, the load of the site along the high-speed rail, the university, the stadium, etc. is large, and the load of the corresponding site in other functional areas is relatively small.
  • the area covered by the site may be divided into a plurality of different geographical types, and each of the different geographical types includes a range of respective location information, and when it is required to acquire a site and a site corresponding to a certain geographical type,
  • the range of the location information covered by the acquired region type is matched with the location information of the site.
  • the location information covered by the acquired region type is defined by the longitude and latitude ranges.
  • a closed area when matching, compares the longitude and latitude of the station with the longitude range and latitude range of the selected area type, if the longitude and latitude of the station fall within the longitude range and latitude range of the selected area type The match is considered successful, otherwise the match is considered unsuccessful.
  • the site may also be assigned a predetermined geographic type according to its geographical location information, that is, a relationship or a mapping relationship between the geographical location information of the site and the geographic type is established, in which the mutual Under the relationship of the association or the mutual mapping, the corresponding geographical type may be found through the geographical location information of the site, and the corresponding geographical location information may be found by using the geographical type, and on the basis of The location information of the site is matched with the obtained region type. If the mapping relationship is the same as the preset mapping relationship or the association relationship, the matching is considered successful. Otherwise, the matching is considered unsuccessful.
  • the graphically displayed energy consumption value corresponding to the successfully matched graphical site and the graphical site is highlighted, and other unsuccessful matching graphics are displayed.
  • the site and corresponding graphical energy consumption values are weakened.
  • the method further includes: graphically matching the acquired region type in the graphical site that meets the predetermined display rule.
  • the graphical energy consumption values corresponding to the sites and sites are weakened.
  • the user is allowed to obtain a site conforming to the feature of the region type according to the preset region type, thereby realizing the screening of the site from a two-dimensional perspective in combination with the selection of the target energy consumption value, thereby further facilitating the use of the administrator and improving User experience.
  • obtaining a set region type as described in 106 includes:
  • the different scenarios refer to regions or occasions where the site load has significant differences, such as the load of the site varies significantly with the geographical location.
  • the load in the sites of mountainous areas, forest areas, and villages is small, while the loads in the towns and cities are large; more specifically, the loads in the stations along the high-speed rail, universities, stadiums, etc. are large, and corresponding
  • the load of the site in other functional areas is relatively small; according to this rule, the area covered by the site may be divided into a plurality of different geographical types, and each of the different geographical types includes a range of respective location information.
  • the location information range covered by the acquired domain type is matched with the location information of the site.
  • the geographical location information is classified, and the classified site is given a predetermined geographical type, and the The area type generates an expandable and selectable area type selection menu 132 through the GUI module of the network management unit 16, and when the area type selection menu 132 is activated or triggered, the area type selection menu 132 is expanded by one side.
  • the method is implemented by using a pull-down manner, and the region type selection menu 132 is expanded to present a plurality of region types 134, and a selection is generated at a location corresponding to each region type 134.
  • Block 136 for the user to select the area type 134; when the selection box 136 of the one or more area types 134 is checked, the selected area type 134 is matched with the geographical location information of the classified website. And highlighting the site that matches the success, and weakening the site that shows the unsuccessful match, specifically, establishing a relationship or mapping relationship between the geographic location information of the site and the geographic type of the site, where In a relationship of mutual correlation or mutual mapping, the corresponding geographical type may be found through the geographical location information of the site, and the corresponding geographical location information may be found by using the geographical type, and on the basis of The location information of the site is matched with the obtained region type. If the mapping relationship is the same as the preset mapping relationship or the association relationship, the matching is considered to be successful.
  • the matching is considered unsuccessful.
  • the graphically displayed energy consumption value corresponding to the successfully matched graphical site and the graphical site is highlighted, and other unsuccessful matching graphics are displayed.
  • the site and corresponding graphical energy consumption values are weakened.
  • the user is allowed to associate the geographical location information of the site with the geographic type, so that the selection of the target energy consumption value can be used to filter the site from a two-dimensional perspective, thereby further facilitating the use of the administrator and improving the user experience.
  • the step 103 further includes: classifying the energy consumption of the site according to the corresponding energy consumption value of the site, and different energy consumption levels.
  • the site gives different visual elements.
  • the site may be classified according to its specific energy consumption value, that is, the energy consumption of the site is divided into multiple energy consumption levels according to the hierarchical manner.
  • the different energy consumption levels are assigned to different visual elements in the embodiment of the present invention, and the visual elements may be based on the user's Preferences or requirements to set, such as the visual elements can be color, shape, size or each element to give different energy consumption levels, the specific scheme is shown in Table 1.
  • the energy consumption value of the site is divided into four different levels from 100OTPw to 4000TPw, and the energy consumption states corresponding to the four different levels are in descending order, corresponding to each different energy.
  • the energy consumption value is a color such as blue, yellow or red as a visual element to give a corresponding graphical energy consumption value corresponding to the graphical site; for the network management unit 16, the different energy will be
  • the graphical energy consumption value corresponding to the consumption level of the graphical site controls the color that is presented to the user according to the ratio of the three primary colors of RGB.
  • the identification of the energy consumption status of the station can be further increased by assigning different visual elements to the stations of different energy consumption levels, thereby facilitating the administrator to quickly identify the energy consumption identifiers of the respective sites to determine the respective sites.
  • Energy consumption status Further, referring to FIG. 14, the method for managing site energy consumption provided by the embodiment of the present invention further includes:
  • obtaining the location information of the site and the energy consumption value corresponding to the site including: obtaining the location information of the site and the energy consumption value corresponding to the site after the control parameter is configured;
  • an energy-saving management method may be provided in the embodiment of the present invention.
  • an energy-saving control may be generated by the network management unit 16, and the energy-saving parameters of the site may be effectively used.
  • the selection and setting, after the specific energy-saving control parameter is selected by the energy-saving control, is sent to the station through the transmission unit 14, and the management unit 12 in the station configures the energy-saving control parameter to each load in the station.
  • the management unit 12 in the station configures the energy-saving control parameter to each load in the station.
  • FIG. 15 an energy-saving control interface display diagram is provided in the embodiment of the present invention, and the energy-saving control 152 presented on the display interface is generated by the network management unit 16 , and the energy-saving control 152 collectively displays various types in the site.
  • the energy-saving control parameter of the load in the energy-saving control 152 of the embodiment, the intelligent carrier frequency shutdown adjustment option 154 and the control intelligent setting option 156 are displayed; the user can according to the working law of the site, the environmental condition and the like.
  • the option 154 and the control intelligent setting option 156 are used to select the corresponding energy-saving control parameter to perform energy-saving control on the site.
  • the energy-saving control parameter is configured to each site, the corresponding site corresponding to the control parameter can be obtained.
  • the energy consumption value is used to refresh the corresponding energy consumption value of each site under the new energy-saving control parameters, so as to visually observe the energy consumption status of each site after the energy-saving control.
  • the energy saving control parameter can be selected by an energy saving control presented on the display interface, and the selected energy saving control parameter is configured to each highlighted station, that is, the selected site, and the site will be according to the Energy-saving control parameters to adjust its working state or operating mode to achieve energy saving purposes.
  • the energy-saving control parameters are configured to the site, and the site is adjusted according to the control parameters, the current feedback site is current.
  • the energy consumption status and the graphical energy consumption value of the site are refreshed, so that the user can timely and intuitively know the energy consumption status of the site after the energy saving control.
  • the embodiment of the invention further provides a method for presenting a site energy consumption, which includes:
  • the display interface displays the energy consumption identifiers of the sites and the sites in different geographical locations, and the energy consumption identifiers are used to indicate the energy consumption levels of the sites;
  • the energy consumption level or the energy consumption level interval selected by the control value selection control highlights the site that meets the predetermined display rule and the energy consumption identifier corresponding to the site.
  • the energy consumption presentation method of the site displays the energy consumption identifiers of the sites and the sites in different geographical locations on a display interface, so that the administrator can intuitively observe the location distribution of the sites and the energy consumption status of each site; Generating an energy consumption value selection control for selecting a power consumption level of the site on the display interface, for the manager to select a corresponding energy consumption level or an energy consumption level interval by using the energy consumption value selection control; After the energy consumption level or the energy consumption level interval is selected, the The method highlights the selected target energy consumption level or the target energy consumption level interval to highlight the graphical energy consumption value corresponding to the predetermined display rule graphical site and the graphical site, thereby facilitating the administrator to quickly find Go out the required site for the next step.
  • the energy consumption level selected by the current energy consumption value selection control is used to highlight the site corresponding to the predetermined display rule and the energy corresponding to the site.
  • the logo is consumed, it also includes:
  • the energy consumption identifier corresponding to the site and the site that does not meet the predetermined display rule is weakened.
  • the method of the present invention further highlights the selected sites that meet the predetermined display rules and the corresponding energy consumption states, so that the administrator can manage the selected sites.
  • the method for presenting the site energy consumption provided by the embodiment of the present invention further includes: if the site corresponds to multiple different energy consumption levels, the energy consumption identifiers of the sites belonging to different energy consumption levels Give different visual elements.
  • the identification of the energy consumption status of the station can be further increased by assigning different visual elements to the stations of different energy consumption levels, thereby facilitating the administrator to quickly identify the energy consumption identifiers of the respective sites to determine the respective sites. Energy consumption status.
  • the method for presenting the site energy consumption provided by the embodiment of the present invention further includes: generating a region type selection menu displayed on the display interface; the region type of the site and the region type selection menu The type of territory is associated;
  • the highlighting the energy consumption level selected by the control value selection control to highlight the site that meets the predetermined display rule and the energy consumption identifier corresponding to the site include: when the region type selects one or more regions in the menu When the type is selected, the highlight matches the selected territory type.
  • the method for presenting the site energy consumption provided by the embodiment of the present invention further includes: weakening the capability of the site and the site corresponding to the predetermined display rule but not matching the selected region type Consumption index.
  • the user is allowed to associate the geographical location information of the site with the geographic type, so that the selection of the target energy consumption value can be used to filter the site from a two-dimensional perspective, thereby further facilitating the use of the administrator and improving the user experience.
  • the method further includes:
  • the energy-saving control is configured to select a power-saving control parameter of the site, and when the energy-saving control parameter selected by the energy-saving control is configured to the highlighted site, correspondingly,
  • the energy consumption identifier corresponding to the site and the site in different geographic locations is displayed through the display interface, where the energy consumption identifier is used to indicate the energy consumption level of the site, including: displaying the sites and configurations in different geographic locations through the display interface
  • the energy consumption identifier corresponding to the site of the energy saving control parameter is used to indicate the energy consumption level of the site.
  • the energy saving control parameter can be selected by an energy saving control presented on the display interface, and the selected energy saving control parameter is configured to each highlighted station, that is, the selected site, and the site will be according to the Energy-saving control parameters to adjust its working state or operating mode to achieve energy saving purposes.
  • the energy-saving control parameters are configured to the site, and the site is adjusted according to the control parameters, the current feedback site is current.
  • the energy consumption status and the graphical energy consumption value of the site are refreshed, so that the user can timely and intuitively know the energy consumption status of the site after the energy saving control.
  • the energy consumption value selection control, the region type selection menu, the energy saving mode selection menu, and the location of the site and the energy consumption identifier on the display interface are mutually Do not interfere.
  • the energy consumption value selection control, the area type selection menu, the energy saving mode selection menu and the site and the energy consumption identifier are staggered in the process of displaying the energy consumption of the site, thereby highlighting the site and the energy consumption identifier to facilitate the manager. View.
  • a method for presenting an energy consumption of a site includes: 201, displaying, by using a display interface, a site located in different geographic locations and an energy consumption identifier corresponding to the site, where the energy consumption identifier is used. Indicate the energy consumption level of the site;
  • the site and its corresponding energy consumption value are presented by a display interface, wherein the site and its corresponding
  • the function is implemented by the network management unit 16, that is, the power consumption identifier is pre-stored in the network management unit 16 in the network management unit 16
  • the user interface GUI module, the GUI module according to the pre-acquisition or pre-stored geographical location information of the site and the energy consumption information corresponding to the site, the location and its corresponding energy consumption identifier are as shown in FIG. The manner is intuitively displayed to the user. In the graphical user interface shown in FIG.
  • the geographic location layer 1702 and the site and energy consumption identification layer 1704 are included, wherein the geographic location layer 1702 is common.
  • An electronic map, the layer serves as a reference background of the graphical user interface for visually displaying location information of the site layout, which is given in this embodiment.
  • the location information layer 1702 presents the map information of the Shenzhen area; the site and energy consumption identification layer 1704 is calibrated on the geographical location layer 1702 according to the geographical location information of the site, and is The calibrated location is represented by a graphical identifier indicating that the site is disposed therein, and the energy metric is also graphically displayed and displayed on the site and energy characterization layer 1704 where the graphical site is formed.
  • the identifiable identifier and the graphical site are associated with each other, and the association manner may be represented by mutual proximity in position, or may adopt
  • a solid dot is set at the location of the site to simultaneously represent the energy consumption of the site and the site, and the visualized elements such as graphics or colors are associated with each other. value.
  • the embodiment of the present invention provides a display on the display, after the user site and the corresponding energy consumption value are graphically displayed, in order to facilitate the user to quickly and conveniently find an operation control that can filter the energy consumption value of the site.
  • the control 1706 selects the current energy consumption level or the energy consumption level interval, which enables the user to quickly select the energy consumption level or the energy consumption level interval, facilitates operation and improves efficiency; and the energy consumption value selection control can be presented on the display interface. In the upper right corner, you can also get used to any position on the screen according to the user's preferences.
  • the energy consumption level or the energy consumption level interval selected by the control to highlight the selected energy consumption when the energy consumption value selection control selects an energy consumption level or an energy consumption level interval.
  • the level or energy consumption level interval will be used as a threshold for triggering a predetermined display rule, and the predetermined display rule refers to a range of energy consumption levels covered by the minimum and maximum values of the control value selection control.
  • the energy consumption value selection control selects a current energy consumption level
  • the current energy consumption level is used as a threshold value to control the entire energy covered by the energy consumption value selection control.
  • Scope of consumption The total set is divided into a portion larger than the critical value, that is, a subset of the subset, a portion equal to the critical value, that is, the other subset, and a portion smaller than the critical value, that is, the third subset; After the entire energy consumption level range covered by the energy consumption value selection control is divided into a plurality of subsets by the critical value, that is, the current energy consumption level, one of the subsets may be selected to display, that is, a portion larger than the critical value is displayed.
  • the display rule is similar to the display rule when a current energy consumption level is selected, and is not redundant for the sake of brevity.
  • the energy consumption presentation method of the site displays the energy consumption identifiers of the sites and the sites in different geographical locations on a display interface, so that the administrator can intuitively observe the location distribution of the sites and the energy consumption status of each site; Generating, on the display interface, an energy consumption value selection control for selecting an energy consumption level of the site, for the manager to select a corresponding energy consumption level by using the energy consumption value selection control; After the energy consumption level interval is selected, the method is used to highlight the graphical energy consumption value corresponding to the site that is graphically defined by the predetermined display rule and the graphical site, so that the administrator can quickly find out the required energy. Site, for the next step.
  • the method further includes:
  • the predetermined display rule is not provided. Comparison of the site and the corresponding energy consumption identifier and the background of the display interface The degree is reduced, or the site that does not meet the predetermined display rule and the corresponding energy consumption identifier are hidden. Referring to the implementation process of the methods 203 and 204 in the energy management method of the embodiment of the present invention shown in FIG.
  • the method of the present invention further highlights the selected sites that meet the predetermined display rules and the corresponding energy consumption states, so that the administrator can manage the selected sites.
  • the method further includes:
  • the energy consumption identifiers of the sites belonging to different energy consumption levels are assigned to different visual elements.
  • the different energy consumption levels are assigned to different visualized elements, and the visualized elements may be set according to user preferences or requirements, such as the visual elements may be colors, shapes, sizes, or The combination of various visual elements, in particular, the color used in the embodiment of the present invention as the above-mentioned visualized elements to give different energy consumption levels, the specific scheme is shown in Table 2.
  • the energy consumption value of the other energy consumption states the color value of the blue, yellow or red color is used as the visual element to give the corresponding graphical energy consumption value corresponding to the graphical site;
  • the graphical energy consumption values corresponding to the graphical stations of different energy consumption levels are controlled according to the ratio of the three primary colors of RGB to the color presented to the user.
  • the identification of the energy consumption status of the station can be further increased by assigning different visual elements to the stations of different energy consumption levels, thereby facilitating the administrator to quickly identify the energy consumption identifiers of the respective sites to determine the respective sites. Energy consumption status.
  • the method for presenting a site energy consumption provided by the embodiment of the present invention further includes:
  • the different scenarios refer to regions or occasions where the site load has significant differences, such as the load of the site varies significantly with the geographical location.
  • the load in the sites of mountainous areas, forest areas, and villages is small,
  • the load in the towns and cities is large; more specifically, the loads in the stations along the high-speed rail, universities, stadiums, etc. are large, and the corresponding loads in other functional areas are relatively small;
  • the overall situation of the power consumption of the site and the management method are different. Therefore, there is a need to select a site under different geographical types.
  • the region type selection menu displayed on the display interface provided by the embodiment of the present invention is used to meet such requirements.
  • the regions covered by the sites may be associated with various geographic types in the geographic type selection menu, that is, the geographic location of the sites. Establishing a mapping relationship between the location information and the type of the area. In the relationship of the mapping, the corresponding geographical type may be found by using the geographical location information of the site, and the phase type may be used to find the phase. Corresponding geographical location information.
  • the site associated with the selected region type and the energy consumption identifier corresponding to the site may be identified according to the foregoing association relationship.
  • the identified energy consumption identifiers of the identified sites and sites are highlighted in accordance with predetermined display rules.
  • the method for presenting the site energy consumption provided by the embodiment of the present invention further includes: weakening the energy consumption corresponding to the site and the site that meet the predetermined display rule but does not match the selected region type. logo.
  • the user is allowed to associate the geographical location information of the site with the geographic type, so as to combine the target energy consumption value selection to realize the screening of the site from a two-dimensional perspective, further facilitating the administrator's Use to enhance the user experience.
  • a method for presenting a site energy consumption further includes:
  • an energy-saving control that is displayed on the display interface may be provided in the embodiment of the present invention.
  • an energy-saving control may be generated by the network management unit 16, and the energy-saving control is presented on the display site and On the display interface of the energy consumption identifier corresponding to the site, the energy-saving control can effectively select and set various energy consumption parameters of the site, and after selecting the specific energy-saving control parameter through the energy-saving control,
  • the transmission unit 14 is sent to the site, and the management unit 12 in the site configures the energy-saving control parameters to the respective loads in the site to implement energy-saving management for each site.
  • the energy saving control parameter can be selected by an energy saving control presented on the display interface, and the selected energy saving control parameter is configured to each highlighted station, that is, the selected site, and the site will be according to the Energy-saving control parameters to adjust its working state or operating mode to achieve energy saving purposes.
  • the energy-saving control parameters are configured to the site, and the site is adjusted according to the control parameters, the current feedback site is current.
  • the energy consumption status and the graphical energy consumption value of the site are refreshed, so that the user can timely and intuitively know the energy consumption status of the site after the energy saving control.
  • the energy consumption value selection control, the region type selection menu, the energy saving mode selection menu, and the location of the site and the energy consumption identifier on the display interface are mutually Do not interfere.
  • the energy consumption value selection control, the area type selection menu, the energy saving mode selection menu, and the site and the energy consumption identifier are staggered in the process of displaying the energy consumption of the site, thereby highlighting the site and the energy
  • the consumption indicator is convenient for the administrator to view.
  • a site energy management system 2200 includes
  • the information obtaining module 2210 is configured to acquire the location information of the site and the energy consumption value corresponding to the site.
  • the graphical interface generating module 2220 is configured to: use the location information of the acquired site and the corresponding energy consumption value to The energy consumption value corresponding to the site is graphically displayed and presented on a display interface;
  • the control generating module 2230 is configured to generate a power consumption value selection control that is graphically displayed on the display interface, and the energy consumption value selection control is configured to select at least one target energy consumption value or target energy consumption value interval; as well as
  • the site filtering module 2240 is configured to obtain at least one target energy consumption value or target energy consumption value interval selected by the energy consumption value selection control, and select a target energy consumption value or target energy consumption according to the target energy consumption value selection control.
  • the value interval highlights the graphical site corresponding to the predetermined display rule and the graphical energy consumption value corresponding to the graphical site.
  • Each functional module of the site energy management system 2200 provided by the embodiment of the present invention can be used to execute a map.
  • the site energy management system can obtain the geographical location information of the site and the energy consumption value of the site, and graphically display the geographical location information of the site and the energy consumption value of the site on the display interface, so that the administrator can intuitively
  • the location distribution of the observation site and the energy consumption status of each site can facilitate the quick and convenient selection of the administrator by generating an energy consumption value selection control for selecting the energy consumption value or the energy consumption value interval on the display interface.
  • a required target energy consumption value or a target energy consumption value interval when the target energy consumption value or the target energy consumption interval is selected, highlighting a site that conforms to a predetermined display rule and a corresponding site of the graphical site Graphical energy consumption value, so that administrators can intuitively screen out the required sites and quickly understand the energy consumption status of the selected sites to facilitate energy management of the site.
  • the graphical interface generation module 2220 includes:
  • a site layout generating unit 2222 configured to generate a visualized site distribution map according to the acquired location information of the site
  • the energy consumption graphical unit 2224 is configured to graphically display and display the energy consumption value corresponding to the acquired site in the visualized site map, where the graphical site energy consumption value and the corresponding site The geometric locations in the site map are related to each other.
  • the graphical interface generation module 2220 generates a visualized distribution map according to the location information of the site, so that the administrator can locate the site at the same time.
  • the graphically related energy consumption value of the site is associated with the geometric location of the site, so that the administrator can quickly understand the energy consumption status of the site.
  • the graphical interface generating module 2220 further includes:
  • An energy consumption grading shaping unit 2226 configured to compare the corresponding energy consumption value with the site The energy consumption of the site is graded, and sites of different energy consumption levels are assigned different visual elements.
  • the energy consumption tapping and shaping unit 2226 in the graphical interface generation module 2220 can assign different visual elements to the sites of different energy consumption levels to further Increasing the identification of the station's energy consumption status, so that the administrator can quickly identify the energy consumption indicators of each station to determine the energy consumption status of each station.
  • the site filtering module 2240 described in the site energy management system 2200 provided by the embodiment of the present invention is specifically configured to perform the energy consumption value of the site and the selected target energy consumption value or the target energy consumption value interval. Comparing, the graphical energy consumption value corresponding to the graphical site and the graphical site whose energy consumption value is greater than the target energy consumption value is highlighted.
  • the site energy management system 2200 provided by the embodiment of the present invention specifies that the predetermined display rule is explicitly set to display the graphical site with the energy consumption value greater than the target energy consumption value and the graphical representation. Corresponding graphical energy consumption value of the site, so that the graphical display of the energy consumption value corresponding to the imaged site and the imaged site is more consistent with the user's daily operation habits, and is convenient for the user. According to its experience, the usage method of the energy consumption value selection control is quickly grasped, thereby increasing the interface friendliness of the site energy management method of the present invention.
  • a site energy management system 2200 further includes a graphic display weakening module 2250, configured to use the energy consumption value of the site and the selected target energy consumption value. Or the target energy consumption value interval is compared, and the station with the energy consumption value greater than the target energy consumption value is highlighted at the same time or after, and the graphical site that does not meet the predetermined display rule and the corresponding graphical energy consumption value are weakened.
  • the site energy consumption management system 2200 provided by the embodiment of the present invention weakens the display of the energy consumption status of the site and the site that does not meet the predetermined display rule by using the graphic display weakening module 2250, thereby Manage selected sites.
  • the control generating module 2230 is specifically configured to generate a power consumption value selection control that is graphically displayed on the display interface, and The energy consumption value selection control is associated with the energy consumption value corresponding to the site, wherein the maximum target energy consumption value selectable by the energy consumption value selection control is not less than the energy consumption value of the site with the largest energy consumption.
  • the minimum target energy consumption value selectable by the energy consumption value selection control is not greater than the energy consumption value of the site with the lowest energy consumption.
  • the site energy management system 2200 provided by the embodiment of the present invention associates the energy consumption value selection control with the energy consumption value corresponding to the site, so that the value range of the energy consumption value selection control is selected. It can match the energy consumption value corresponding to the current site, so that the manager can accurately select the target energy consumption value or the target energy consumption value interval.
  • control parameter generating module 2230 generates a power consumption value selection control that is graphically displayed on the display interface, and specifically includes: generating A graphical scale having an energy consumption value scale and generating at least one graphical cursor movable along the graphical scale to select a target energy consumption value or a target energy consumption value interval.
  • the site energy management system 2200 provided by the embodiment of the present invention sets the energy consumption value selection control to a scale with an energy consumption value scale, and generates a cursor that can be moved along the graphical scale.
  • the user selects the target energy consumption value, conforms to the user's usage habits, and intuitively reflects the function of the energy consumption value selection control, and saves the user's need to learn the usage method and function process of the energy consumption value selection control. , easy to use.
  • the site energy management system 2200 according to the embodiment of the present invention further includes: a region type obtaining module 2260, configured to acquire a set region type;
  • the site filtering module 2240 is configured to match the location information of the graphical site that meets the predetermined display rule with the acquired region type, and the graphical site that matches the acquired region type and The graphical energy consumption value corresponding to the graphical site is highlighted.
  • the graphic display weakening module 2250 is further configured to mismatch the acquired regional type in the graphical site that meets the predetermined display rule.
  • the graphical site and the corresponding graphical energy consumption value of the site are weakened.
  • the area type obtaining module 2260 provided in the site energy management system 2200 provided by the embodiment of the present invention allows the user to obtain a site conforming to the feature of the region type according to the preset region type, thereby combining the target energy consumption value or the target energy consumption.
  • the selection of the value interval realizes the screening of the site from a two-dimensional perspective, which further facilitates the use of the administrator and enhances the user experience.
  • the region type obtaining module 2260 includes:
  • a geographic location information classification unit 2262 configured to classify geographic location information of the site
  • the menu generating unit 2264 is configured to generate, according to the geographic location information classification, a region type selection menu displayed on the display interface, where the region type selection menu is used to select one or more region types.
  • the user is allowed to associate the geographical location information of the site with the geographic type, thereby implementing the selection of the target energy consumption value from a two-dimensional perspective.
  • the screening of the site further facilitates the use of the administrator and enhances the user experience.
  • the site energy management system 2200 further includes: an energy-saving control module 2270, configured to generate an energy-saving control presented on the display interface, and select energy-saving of the site by using the energy-saving control Control parameters, configure the selected energy-saving control parameters to the highlighted site, ⁇ ,
  • the information obtaining module 2210 is configured to acquire location information of the site and an energy consumption value corresponding to the site after the control parameter is configured;
  • the graphical interface generating module 2230 is configured to configure the control parameter according to the acquired location information of the site and the energy consumption value corresponding to the site after the control parameter is configured.
  • the energy consumption values corresponding to the subsequent sites are graphically represented and presented on a display interface.
  • the energy-saving control parameter can be selected through an energy-saving control presented on the display interface, and the selected energy-saving control parameter is configured to each highlighted site, that is, The selected site, the site will adjust its working state or operating mode according to the energy saving control parameter to achieve energy saving purposes, and at the same time, when the energy saving control parameter is configured to the site, and according to the control parameter
  • the current energy consumption status of the site is feedbacked and the graphical energy consumption value of the site is refreshed, so that the user can timely and intuitively know the energy consumption status of the site after the energy saving control.
  • a site energy consumption presentation device 2900 includes:
  • the site and energy consumption display module 2910 is configured to display the energy consumption identifiers corresponding to the sites and the sites in different geographical locations through the display interface, where the energy consumption identifier is used to indicate the energy consumption level of the site; and the control generation module 2920 is configured to Generating an energy consumption value selection control on the display interface displaying the energy consumption identifier of the site and the site, wherein the energy consumption value selection control is used to select an energy consumption level or energy consumption Level interval
  • the site filtering module 2930 is configured to select a site that meets the predetermined display rule and an energy consumption identifier corresponding to the site according to the energy consumption level or the energy consumption level interval selected by the power consumption value selection control.
  • the site energy consumption presenting device 2900 provided by the embodiment of the present invention can display the location distribution of the site and the individual by visually displaying the energy consumption identifiers corresponding to the sites and the sites in different geographical locations on a display interface.
  • the energy consumption status of the site by generating an energy consumption value selection control for selecting the energy consumption level of the site on the display interface, for the administrator to select the corresponding energy consumption level by using the energy consumption value selection control Or the energy consumption level interval; when the energy consumption level or the energy consumption level interval is selected, the selected target energy consumption level or the target energy consumption level interval is used by the method to highlight the site that conforms to the predetermined display rule.
  • the graphical energy consumption value corresponding to the graphical site so that the administrator can quickly find the required site for the next step.
  • the site energy consumption presentation device 2900 provided by the embodiment of the present invention further includes: a graphic display weakening module 2940, configured to weaken the energy consumption identifier corresponding to the site and the site that do not meet the predetermined display rule.
  • the site energy consumption presenting device 2900 provided by the embodiment of the present invention further highlights the selected site that meets the predetermined display rule and correspondingly by weakening the display of the energy consumption identifier corresponding to the site and the site that do not meet the predetermined display rule.
  • the energy status allows the administrator to manage the selected site.
  • the site energy consumption presentation device 2900 provided by the embodiment of the present invention further includes: a power consumption shaping module 2950, configured to: when the site corresponds to multiple different energy consumption levels, The energy consumption identification of sites with different energy consumption levels gives different visual elements.
  • the site energy consumption presenting device 2900 provided by the embodiment of the present invention can further enhance the identification of the energy consumption status of the station by assigning different visual elements to the sites of different energy consumption levels, thereby facilitating the administrator to quickly identify each site.
  • the energy consumption indicator is used to determine the energy consumption status of each site.
  • the site energy consumption device 2900 provided by the embodiment of the present invention further includes: a region type obtaining module 2960, generating a region type selection menu displayed on the display interface; The type of the region in the region type selection menu is associated;
  • the site filtering module 2930 is configured to: when one or more of the region type selection menus are selected, highlighting and matching the selected region type and further,
  • the site energy consumption presenting device 2900 is provided by the embodiment of the present invention, and the graphic display weakening module 2940 is further configured to weaken and display a site and a site corresponding to the predetermined display rule but not matching the selected region type. Energy consumption identification.
  • the site energy consumption presenting device 2900 provided by the embodiment of the present invention allows the user to associate the geographical location information of the site with the geographic type, thereby realizing the screening of the site from a two-dimensional perspective in combination with the selection of the target energy consumption value, further facilitating the administrator. Use to enhance the user experience.
  • the site energy consumption presenting device 2900 provided by the embodiment of the present invention further includes: an energy saving control module 2970, configured to generate an energy saving control displayed on the display interface, where the energy saving control is used to select a site An energy saving control parameter, when the energy saving control parameter selected by the energy saving control is configured to the highlighted station;
  • an energy saving control module 2970 configured to generate an energy saving control displayed on the display interface, where the energy saving control is used to select a site An energy saving control parameter, when the energy saving control parameter selected by the energy saving control is configured to the highlighted station;
  • the site and energy consumption display module 2910 is configured to display, by using a display interface, a site located in different geographical locations and an energy consumption identifier corresponding to a site configured with the energy saving control parameter,
  • the energy consumption indicator is used to indicate the energy consumption level of the site.
  • the functional modules of the site energy management system 2900 provided by the embodiments of the present invention can be used to execute the process of the site energy consumption presentation method 200 shown in FIG. 16 , and the specific working principle and implementation mechanism thereof are not redundant. For details, refer to FIG. 16 .
  • the site energy consumption presenting device 2900 provided by the embodiment of the present invention can select the energy saving control parameter through an energy saving control presented on the display interface, and configure the selected energy saving control parameter to each highlighted station, that is, the selected one.
  • Site the site will adjust its working state or operating mode according to the energy saving control parameter to achieve energy saving purposes, and at the same time, when the energy saving control parameter is configured to the site, and the site is adjusted according to the control parameter
  • the current energy consumption status of the site is feedbacked and the graphical energy consumption value of the site is refreshed, so that the user can timely and intuitively know the energy consumption status of the site after the energy saving control.
  • the present invention can be implemented by means of software plus necessary general hardware, and of course, by hardware, but in many cases, the former is a better implementation. .
  • the technical solution of the present invention which is essential or contributes to the prior art, may be embodied in the form of a software product stored in a readable storage medium, such as a floppy disk of a computer.
  • a hard disk or optical disk or the like includes instructions for causing a computer device (which may be a personal computer, a server, or a network device, etc.) to perform the methods described in various embodiments of the present invention.

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Description

一种站点能耗管理、 呈现的方法及装置 技术领域
本发明涉及通信领域, 尤其涉通信领域中站点能耗管理技术。 背景技术
在通信领域中, 站点能耗的高效管理一直是各个运营上所亟待解决的问 题, 目前对各个站点的能耗管理,通常是将各个站点的能耗值通过列表的方法 呈现给用户,用户手工的对各个站点的能耗值进行筛选分类或者进行进一步的 能耗管理, 这种能耗管理方法效率比较低, 而且对各个站点的能耗状态的印象 不直观,对整个站点覆盖区域的整个能耗状况同样不能直观的感知,对整个站 点的能耗管理效率比较低。 发明内容
本发明实施例提供了一种直观、 高效的站点能耗管理、呈现的方法及装置 一种站点能耗管理方法, 其包括:
获取站点的位置信息及站点对应的能耗值;
根据所获取的站点的位置信息及对应的能耗值,将所述的站点以及与所述 站点所对应的能耗值图形化并呈现在一显示界面上;
生成一图形化且呈现于所述的显示界面上的能耗值选择控件,所述能耗值 选择控件用以选择至少一个目标能耗值或目标能耗值区间; 获取通过所述能耗值选择控件所选择的至少一个目标能耗值或目标能耗 值区间,根据所述目标能耗值选择控件所选择的目标能耗值或目标能耗值区间 来突出显示符合预定显示规则的图形化的站点及所述图形化的站点对应的图 形化的能耗值。 一种站点能耗呈现方法, 其包括: 通过显示界面显示位于不同地理位置上的站点及站点对应的能耗标识,所 述能耗标识用以指示站点的能耗等级; 在所述显示有所述站点及站点的能耗标识的显示界面上生成一能耗值选 择控件, 所述能耗值选择控件用以选择能耗等级或者能耗等级区间; 根据当前能耗值选择控件所选择的能耗等级来突出显示符合预定显示规 则的站点及所述站点所对应的能耗标识。
一种站点能耗管理***,其包括: 信息获取模块, 用以获取站点的位置信息及站点对应的能耗值; 图形化界面生成模块, 用以根据所获取的站点的位置信息及对应的能耗 值,将所述的站点以及与所述站点所对应的能耗值图形化并呈现在一显示界面 上; 控件生成模块,用以生成一图形化且呈现于所述的显示界面上的能耗值选 择控件 , 所述能耗值选择控件用以选择至少一个目标能耗值或目标能耗值区 间; 以及 站点过滤模块,获取通过所述能耗值选择控件所选择的至少一个目标能耗 值或目标能耗值区间,根据所述目标能耗值选择控件所选择的目标能耗值或目 标能耗值区间来突出显示符合预定显示规则的图形化的站点及所述图形化的 站点对应的图形化的能耗值。 一种站点能耗呈现装置, 其包括: 站点及能耗显示模块,用以通过显示界面显示位于不同地理位置上的站点 及站点对应的能耗标识, 所述能耗标识用以指示站点的能耗等级; 控件生成模块,用以在所述显示有站点及站点的能耗标识的显示界面上生 成一能耗值选择控件,所述能耗值选择控件用以选择能耗等级或者能耗等级区 间; 以及 站点过滤模块,用以根据能耗值选择控件所选择的能耗等级或者能耗等级
本发明实施例提供的站点能耗管理、呈现的方法及装置,通过将所述站点 的地理位置信息及站点的能耗值图形化后呈现在显示界面上,可使管理员能够 直观的观察站点的位置分布以及各个站点的能耗状况,通过在所述的显示界面 上生成一个用以选择能耗值或者能耗值区间的能耗值选择控件,可方便管理者 快速方便的选择所需的目标能耗值或目标能耗值区间,当所述目标能耗值或目 标能耗区间被选定后,突出显示符合预定显示规则图形化的站点及所述图形化 的站点对应的图形化的能耗值,从而便于管理员直观的筛选出所需的站点, 并 快速了解筛选出的站点所对应的能耗状况, 以方便对站点的能耗管理。 附图说明
图 1是本发明实施例提供的一种站点能耗管理方法的运行环境; 图 2是图 1 中提供的一种站点能耗管理方法的运行环境中数据传输模式 图;
图 3是本发明实施例提供的一种站点能耗管理方法的流程图;
图 4是本发明实施例提供的一种站点能耗管理方法中所采用的所述站点 的工程参数信息表;
图 5 是根据本发明实施例提供的一种能耗管理方法生成的区域综合能耗 图;
图 6是根据本发明实施例提供的一种能耗管理方法生成的站点单独能耗 图;
图 7是本发明实施例提供的另一种站点能耗管理方法的流程图; 图 8是根据图 7中所提供的站点能耗管理方法实现能耗值选择的展示图; 图 9是本发明实施例提供的站点能耗管理方法中图形化站点及对应的能 耗值流程图; 图 10是根据本发明实施例提供的站点能耗管理方法生成能耗值选择控件 及能耗值选择控件使用的展示图;
图 11是本发明实施例提供的另一种站点能耗管理方法的流程图; 图 12是本发明实施例提供的另一种站点能耗管理方法的流程图; 图 13a及图 13b是根据图 11、 12中提供的能耗管理方法进行站点的地域 类型选择的展示图;
图 14是本发明实施例提供的另一种站点能耗管理方法的流程图; 图 15是图 14中提供的能耗管理方法通过节能控件进行站点节能管理的展 示图;
图 16是本发明实施例提供的一种站点能耗呈现方法的流程图;
图 17是根据图 16中提供的一种站点能耗呈现方法生成的图形化的站点以 及能耗标识的展示图;
图 18是本发明实施例提供的另一种站点能耗呈现方法的流程图; 图 19是根据本发明实施 18提供的一种站点能耗呈现方法通过一能耗值选 择控件选择能耗等级的展示图;
图 20是本发明实施例提供的另一种站点能耗呈现方法的流程图; 图 21是本发明实施例提供的另一种站点能耗呈现方法的流程图; 图 22是本发明实施例提供的一种站点能耗管理***的示意图;
图 23是图 21中的站点能耗管理***中图形化界面生成模块的示意图; 图 24是图 21 中的站点能耗管理***中另一图形化界面生成模块的示意 图;
图 25是本发明另一实施例提供的一种站点能耗管理***的示意图; 图 26是本发明另一实施例提供的一种站点能耗管理***的示意图; 图 27是图 26中的站点能耗管理***中的地域类型获耳 莫块的示意图; 图 28是本发明另一实施例提供的一种站点能耗管理***的示意图; 图 29是本发明一实施例提供的一种站点能耗呈现装置的示意图; 图 30是本发明另一实施例提供的一种站点能耗呈现装置的示意图; 图 31是本发明另一实施例提供的一种站点能耗呈现装置的示意图; 图 32是本发明另一实施例提供的一种站点能耗呈现装置的示意图; 图 33是本发明另一实施例提供的一种站点能耗呈现装置的示意图。 具体实施方式
请参阅图 1 , 本发明实施例提供一种站点能耗管理方法的运行环境, 即实 施本发明的硬件架构, 其包括控制单元 12, 传输单元 14, 网管单元 16。
所述控制单元 12用以通过控制接口与站点内的负载如基站、 负载配套能 源如油机、 太阳能、 风机、 电池、 电源、 各种负载能耗监控设备以及负载运行 环境监控设备如温度传感器、 湿度传感器、 烟雾传感器等连接, 用以获取站点 内负载的运行参数并将所述运行参数通过所述传输单元 14传输给所述网管单 元 16, 同时可根据所述网管单元 16所发出的控制信号对所述的负载以及负载 配套能源进行统一的能耗管理及调度。其中, 所述的运行参数可以包括但不局 限于站点的位置参数、 站点能耗值(负载的能耗值)、 负载的环境温度、 负载 的运行温度、 各种能源设备的能源供给参数(包括电流、 电压)等, 上述的运 行参数可供所述网管单元 16来判断所述负载的工作状况, 并据此发出控制指 令。
所述传输单元 14用以在所述控制单元 12与所述网管单元 16之间进行双 向数据传输, 所述数据可以是上述的负载的运行参数以及网管单元 16的发出 的控制指令。 为了能够适应目前能耗设备架设环境及传输网络, 并能够适应能 耗设备及传输网络未来的发展趋势, 所述传输单元 14的传输模式可以是如图 2所示的两种传输模式, 即, 带内传输模式及带外传输模式。 具体地, 所述的 带 内 传输模式是指 , 所述控制 单元 12 控制 器通过基站 ( GSM/UMTS/LTE/CDMA/WIMAX ) 的通道( E1 )将采集信息进行上 4艮, 实 时将所述控制单元 12所获取的负载及配套设备的状态信息和能耗信息传输给 所述网络管理单元 12; 所述的带外传输模式是指, 控制单元 12通过短信、 GPRS, IP等独立的通道将其所述获取的负载及配套设备的状态信息和能耗信 息传送回网管单元 16。
所述网管单元 16用以监控及管理各种在网的设备, 具体地, 可用以调节 这些在网设备的运行参数、 环境参数、 控制参数等。 所述网管单元 16包括显 示装置,处理装置,存储装置,输入装置, 以及连接上述各种装置的数据总线。
以下将基于以上介绍的硬件架构来说明本发明实施例提供的站点能耗管 理方法及站点能耗呈现方法, 需要注意的是, 上面的硬件架构是为了清楚的描 述本发明而给出的示例性方案,本发明可在任何具备实施本发明内容的硬件环 境中运行而不限于上述的硬件架构。
本发明实施例提供一种站点能耗管理方法, 其包括:
获取站点的位置信息及站点对应的能耗值;
根据所获取的站点的位置信息及对应的能耗值,将所述的站点以及与所述 站点所对应的能耗值图形化并呈现在一显示界面上;
生成一图形化且呈现于所述的显示界面上的能耗值选择控件,所述能耗值 选择控件用以选择至少一个目标能耗值或目标能耗值区间;
获取通过所述能耗值选择控件所选择的至少一个目标能耗值或目标能耗 值区间,根据所述目标能耗值选择控件所选择的目标能耗值或目标能耗值区间 来突出显示符合预定显示规则的图形化的站点及所述图形化的站点对应的图 形化的能耗值。
该站点能耗管理方法通过获取站点的地理位置信息及站点的能耗值,并将 所述站点的地理位置信息及站点的能耗值图形化后呈现在显示界面上,可使管 理员能够直观的观察站点的位置分布以及各个站点的能耗状况,通过在所述的 显示界面上生成一个用以选择能耗值或者能耗值区间的能耗值选择控件,可方 便管理者快速方便的选择所需的目标能耗值或目标能耗值区间,当所述目标能 耗值或目标能耗区间被选定后,突出显示符合预定显示规则图形化的站点及所 述图形化的站点对应的图形化的能耗值,从而便于管理员直观的筛选出所需的 站点,并快速了解筛选出的站点所对应的能耗状况,以方便对站点的能耗管理。
进一步地, 本发明实施例提供的站点能耗管理方法中, 所述的根据所获取 的站点的位置信息及对应的能耗值,将所述的站点以及与所述站点所对应的能 耗值图形化并呈现在一显示界面上包括:
根据所获取的站点的位置信息生成可视化的站点分布图;
将所获取的站点对应的能耗值图形化并呈现于所述的可视化的站点分布 图中, 其中, 所述的图形化的站点能耗值与对应的站点在所述站点分布图中的 几何位置相互关联。
该方法中,将所述的站点按照站点的位置信息来生成可视化的分布图, 方 便管理员对站点的定位,同时将站点对应的图形化的能耗值与站点之间做几何 位置的关联, 方便管理员能够快捷了解站点的能耗状态。
进一步地, 本发明实施例提供的站点能耗管理方法中, 所述的根据所获取 的站点的位置信息及对应的能耗值,将所述的站点以及与所述站点所对应的能 耗值图形化并呈现在一显示界面上,还包括: 根据所述与所述站点的对应的能 耗值对所述站点的能耗进行分级,并将不同能耗等级的站点赋予不同的可视化 的元素。
该方法中,可通过对不同能耗等级的站点赋予不同的可视化的元素能够进 一步的增加站能耗状况的辨识性,从而方便管理员快速的识别出各个站点的能 耗标识从而来确定各个站点的能耗状态。
进一步地, 本发明实施例提供的站点能耗管理方法中, 所述根据所述目标 能耗值选择控件所选择的目标能耗值或目标能耗值区间来突出显示符合预定 显示规则的图形化的站点及所述图形化的站点对应的图形化的能耗值, 包括: 将站点的能耗值与所选择的目标能耗值或者目标能耗值区间做比较,突出显示 能耗值大于所述目标能耗值的所述图形化的站点及所述图形化的站点对应的 图形化的能耗值。
该方法中规定了将预定的显示规则明确的设定为显示能耗值大于所述目 标能耗值的所述图形化的站点及所述图形化的站点对应的图形化的能耗值,从 而使所述的图像化站点及所述图像化的站点所对应的图形化的能耗值的显示 方式更加的符合用户的日常操作习惯,便于使用者根据其经验快速的掌握对所 述能耗值选择控件的使用方法,从而增加了本发明的站点能耗管理方法的界面 友好性。
进一步地, 本发明实施例提供的站点能耗管理方法中,在所述将站点的能 耗值与所选择的目标能耗值或者目标能耗值区间做比较,突出显示能耗值大于 所述目标能耗值的站点同时或之后, 所述方法还包括: 弱化不符合所述预定显 示规则的图形化的站点及对应的图形化的能耗值。
本发明实施例通过该方法来进一步的凸显被选中的符合预定显示规则的 站点及对应的能耗状态, 便于管理员对所选择的站点进行管理。
更进一步, 本发明实施例提供的站点能耗管理方法中, 所述生成一图形化 且呈现于所述的显示界面上的能耗值选择控件,所述能耗值选择控件用以选择 至少一个目标能耗值或目标能耗值区间, 包括: 生成一图形化且呈现于所述的 显示界面上的能耗值选择控件,将所述的能耗值选择控件与所述站点对应的能 耗值相关联,其中所述能耗值选择控件可选择的最大的目标能耗值不小于耗能 最大的所述站点的能耗值,其中所述能耗值选择控件可选择的最小的目标能耗 值不大于耗能最小的所述站点的能耗值。
该方法中, 将所述的能耗值选择控件与所述的站点对应的能耗值关联起 来,以使所述能耗值选择控件的选值范围能够与当前的站点所对应的能耗值之 间相匹配, 从而使管理者能够精确的选择目标能耗值或则目标能耗值区间。
进一步地, 本发明实施例提供的站点能耗管理方法中, 所述的生成一图形 化且呈现于所述的显示界面上的能耗值选择控件, 包括: 生成一图形化的以能 耗值为刻度的标尺,以及生成至少一可沿所述的图形化的标尺移动以选择目标 能耗值或目标能耗值区间的图形化的游标。
该方法中,将所述的能耗值选择控件设置成为以能耗值为刻度的标尺, 并 生成一可沿所述图形化的标尺移动的游标共使用者来选择目标能耗值,符合使 用者的使用习惯, 直观的反映出所述能耗值选择控件的功能,省去了使用者需 要学习能耗值选择控件的使用方法的及功能的过程, 方便使用。
更进一步, 本发明实施例提供的站点能耗管理方法中, 还包括: 获取一设 定的地域类型;所述根据所述目标能耗值选择控件所选择的目标能耗值或目标 能耗值区间来突出显示符合预定显示规则的图形化的站点及所述图形化的站 点对应的图形化的能耗值, 包括:
将所述符合预定显示规则的图形化的站点的位置信息与所获取的地域类 型进行匹配,将与所获取的地域类型匹配的图形化的站点及所述图形化的站点 所对应的图形化的能耗值突出显示。
进一步地,在上述方法的基础上, 本发明实施例提供的站点能耗管理方法 中,还包括: 将符合预定显示规则的图形化的站点中的与所获取的地域类型不 匹配的的图形化的站点及站点所对应的图形化的能耗值弱化显示。
上述方法中,允许用户根据预设的地域类型来获取符合该地域类型特征的 站点,从而结合目标能耗值或目标能耗值区间的选择从二维角度来实现对站点 的筛选, 进一步方便管理者的使用, 提升使用者的体验。
进一步地, 本发明实施例提供的站点能耗管理方法中, 所述获取一设定的 地域类型包括: 将所述的站点的地理位置信息进行分类,根据所述地理位置信 息分类生成一呈现于所述显示界面上的地域类型选择菜单,所述地域类型选择 菜单用于选择某一或多个地域类型。
该方法中, 允许用户将站点的地理位置信息与地域类型相关联,从而结合 目标能耗值的选择从二维角度来实现对站点的筛选, 进一步方便管理者的使 用, 提升使用者的体验。
进一步地, 本发明实施例提供的站点能耗管理方法中, 还包括: 所述方法 还包括, 生成一呈现于所述显示界面上的节能控件,通过该节能控件来选择站 点的节能控制参数, 将所选择的节能控制参数配置到被突出显示的站点,对应 地,
所述的获取站点的位置信息及站点对应的能耗值, 包括, 获取站点的位置 信息及配置了所述控制参数后的站点对应的能耗值;
所述的根据所获取的站点的位置信息及对应的能耗值,将所述的站点以及 与所述站点所对应的能耗值图形化并呈现在一显示界面上, 包括,据所获取的 站点的位置信息及配置了所述控制参数后的站点对应的能耗值,将所述的站点 以及与所述配置了所述控制参数后的站点所对应的能耗值图形化并呈现在一 显示界面上。
该方法中, 可通过一呈现于显示界面上的节能控件来选择节能控制参数, 通过将选择的节能控制参数配置到各个被突出显示站点, 也就是被选择的站 点,站点将会根据所述的节能控制参数来调整其工作状态或者运作模式以实现 节能的目的, 同时, 当将所述的节能控制参数配置给站点, 并在站点根据所述 控制参数调整了工作状态后即时的反馈站点当前的能耗状态并刷新站点的图 形化的能耗值, 以方便用户及时直观的获知经过节能控制后站点的能耗状态。
以下对本发明实施例提供的一种站点能耗管理方法 100作详细说明。 请参阅图 3本发明实施例提供的一种站点能耗管理方法 100, 其包括: 101、 获取站点的位置信息及站点对应的能耗值;
在进行站点的能耗管理的时候,首先需要获取所需监控和管理的站点以及 其对应的能耗状况, 所述的站点通常是分布在不同地理位置, 因此为了了解站 点的分布情况, 需要获取站点的地理位置信息。站点的地理位置信息和对应的 能耗值的获取可以由部署在站点内的管理单元 12来实现, 即, 所述管理单元 12 即时主动的或者在控制指令的触发下被动的获取对应的站点的信息。 可选 择地, 所述的站点的地理位置信息也可预先存储在一存储器中, 即在架设站点 的时候, 所述站点的地理位置信息被记录在工程参数信息表如图 4所示中, 所 述工程参数信息表包括多种信息,而所述的站点的地理位置信息是以全球定位 ***( GPS )信息的方式记录在所述工程参数信息表内, 而在需要时直接调用 所述工程参数信息表内的站点的 GPS信息即可; 类似的, 所述站点对应的能 耗值, 也可以是由所述管理单元 12定期获取后存储在一存储装置中, 并且定 期更新, 在使用时直接从存储装置中调用即可。
102、 根据所获取的站点的位置信息及对应的能耗值, 将所述的站点以及 与所述站点所对应的能耗值图形化并呈现在一显示界面上;
当获取到所述站点的位置信息及对应能耗值后,为了使用户能够直观的看 到所述站点的分布位置以及各个站点的对应的能耗状况,需要将所述站点及对 应的能耗值图形化后通过一显示界面呈现给用户, 本发明实施例中,通过所述 的网管单元 16来实现所述功能,即在所述网管单元 16中预存图形化用户界面 GUI模块, 所述的 GUI模块根据所述地理位置信息及所述能耗值将获取的站 点的分布位置及能耗状况直观的展示出来,其中展示方式可以根据用户的需求 变化, 例如, 可以是图 5所展示的区域综合能耗图, 也就是将所述站点根据其 所在位置划分成多个不同的区域,并将在同一区域内的所有的站点的能耗值的 总和经过适当的加权计算后作为该区域的对应的能耗值来表示该区域内的耗 能状况; 可选择地, 所述的展示方式可以是如图 6所展示的单独站点能耗图, 这种展示方式则是将所有的站点根据其位置信息及能耗值直观的呈现于显示 界面上。此外可以理解的是, 所述的图形化可以是采用一模块化的电子地图作 为基础图层,而在该基础图层上根据所述的位置信息将各个站点以打点的方式 标定并显示出来,而与站点对应的能耗值则以与标定的站点相关联的方式显示 出来, 所述相关联的意思是可以用图形化的能耗值来覆盖图形化的站点的位 置,或者是同时显示图形化的站点及图形化能耗值而通过两之间的距离或者通 过一关联符号来展现两者之间的关联关系。
103、 生成一图形化且呈现于所述的显示界面上的能耗值选择控件, 所述 能耗值选择控件用以选择至少一个目标能耗值或目标能耗值区间; 在将所述的站点以及对应的能耗值图形化以后为了方便用于对各个站点 的能耗值进行相应的管理,需要在所述图形化的显示界面上生成能耗值选择工 具,本发明实施中是通过生成一图形化且呈现于所述显示界面上的能耗值选择 控件,该能耗值选择控件以拖拽的方式来实现选择至少一个目标能耗值或目标 能耗值区间, 通过所述的能耗值选择控件来选择目标能耗值或目标能耗值区 间 ,可以使用户快速的实现能耗值或能耗值区间的筛选,便于操作并提升效率; 所述的能耗值选择控件可呈现在显示界面的右上角,也可以根据用户的喜好可 习惯呈现于屏幕的任意位置。本发明实施例提供一种通过拖拽方式进行能耗值 选择的能耗值选择控件 10, 通过拖拽方式能够高效的实现能耗值的选择, 从 而提升用户的体验。
104、 获取通过所述能耗值选择控件所选择的至少一个目标能耗值或目标 能耗值区间,根据所述目标能耗值选择控件所选择的目标能耗值或目标能耗值 区间来突出显示符合预定显示规则的图形化的站点及所述图形化的站点对应 的图形化的能耗值。
通过所述的能耗值选择控件来选择一目标能耗值或者能耗值区间,所选定 的能耗值或者能耗值区间将作为一个触发预定的显示规则的临界值,所述预定 的显示规则是指以所述的能耗值选择控件的最小值及最大值所涵盖能耗值的 范围为总集,以所述选定的能耗等级为临界条件将所述的能耗值总集集划分为 至少一个子集并显示所述至少一个子集。 具体地, 本发明实施例中, 当所述能 耗值选择控件选择的是一个目标能耗值时,则将该目标能耗值作为一个临界值 将所述能耗值选择控件所涵盖的整个能耗值范围所构成的总集划分为大于该 临界值的部分, 即所述的一个子集, 等于该临界值的部分, 即所述的另外一个 子集, 以及小于该临界值的部分, 即第三个子集; 所述的能耗值选择控件所涵 盖的整个能耗值范围被所述临界值即目标能耗值划分为多个子集后,可以选择 显示其中的一个子集, 即显示大于所述临界值的部分, 或者显示等于所述临界 值的部分, 或者显示小于所述临界值的部分; 或者可以选择显示被划分出的子 集的组合, 即显示大于及等于所述临界值的部分, 或者显示小于及等于所述临 界值的部分, 或者选择大于及小于所述临界值的部分。 当所述的能耗值选择控 件选择的是一个目标能耗值区间时的显示规则与选择一个目标能耗值时的显 示规则相似, 为了简明起见不再冗述。
该站点能耗管理方法 100通过获取站点的地理位置信息及站点的能耗值, 并将所述站点的地理位置信息及站点的能耗值图形化后呈现在显示界面上,可 使管理员能够直观的观察站点的位置分布以及各个站点的能耗状况,通过在所 述的显示界面上生成一个用以选择能耗值或者能耗值区间的能耗值选择控件, 可方便管理者快速方便的选择所需的目标能耗值或目标能耗值区间,当所述目 标能耗值或目标能耗区间被选定后,突出显示符合预定显示规则图形化的站点 及所述图形化的站点对应的图形化的能耗值,从而便于管理员直观的筛选出所 需的站点, 并快速了解筛选出的站点所对应的能耗状况, 以方便对站点的能耗 管理。
进一步, 请参阅图 7, 本发明实施例提供的站点能耗管理方法中, 在执行 104的同时或执行完 104之后还包括:
105、 弱化不符合所述预定显示规则的图形化的站点及对应的图形化的能 耗值。 在突出显示符合预定显示规则的图形化的站点以及所述图形化的站点所 对应的能耗值后,为了增加被突出显示的图形化的站点以及所述图形化的站点 所对应的能耗值的显示效果, 本发明实施例中,还提供将其余的图形化的站点 及对应的图形化的能耗值弱化的方法, 具体地, 可以将不符合所述预定显示规 则的图形化的站点及对应的图形化的能耗值与显示界面的背景的对比度降低, 或者将不符合所述预定显示规则的图形化的站点及对应的图形化的能耗值隐 藏。请参阅图 8中所展示的本发明实施例能耗管理方法中方法 104及 105的实 施过程, 当用户通过所述的能耗值选择控件 10 选择一个能耗值区间如 ( 110<TPw<=94 ), 预定的显示规则可以设置为显示该能耗值区间内的能耗值 及对应的站点, 此时, 突出显示能耗值在( 110<TPw<=94 )之间的图形化的站 点以及其对应的图像化的能耗值; 而位于所述能耗值区间( 110<TPw<=94 )以 外的图像化得站点以及其对应的图形化的能耗值将被弱化或者隐藏,如此,整 个显示界面相比图 1中的显示界面就显得简洁清晰,便于用户识别和进行下一 步的操作。
本发明实施例通过该方法来进一步的凸显被选中的符合预定显示规则的 站点及对应的能耗状态, 便于管理员对所选择的站点进行管理。
更进一步, 本发明实施例提供的站点能耗管理方法中, 102的具体实现方 式可以是:
根据所获取的站点的位置信息生成可视化的站点分布图;
为能够实现本发明首先需要生成可视化的站点分布图,其生成方式可以是 将站点根据其位置信息进行预先建模, 形成一个站点可视化的分布图,在使用 时可以通过直接调用该已经生成的站点可视化分布图模型来将站点的分布情 况可视化的呈现给用户。可选择地, 所述可视化的站点分布图的生成也可以通 过即时获取站点的地理位置信息( GPS信息, 具有唯一的经纬度)后在一预备 的地图(地理位置分布图)上根据所述的地理位置信息进行标定即打点, 从而 生成可视化的地理位置分布图,具体地,请参阅图 9,由站点内的控制单元 12, 通过传输单元 14将站点的地理位置信息传输给网管单元 16, 网管单元 16根 据所述的站点的地理位置信息在一预备的地图上标定所述站点的具***置,并 通过所述网管单元 16的显示装置显示。
将所获取的站点对应的能耗值图形化并呈现于所述的可视化的站点分布 图中, 其中, 所述的图形化的站点能耗值与对应的站点在所述站点分布图中的 几何位置相互关联。
为了能够将与站点对应的能耗值准确的显示在所述可视化的站点分布图 中, 所述站点的地理位置信息与所述的能耗值之间将会被绑定, 即在所述地理 位置信息和所述能耗值之间建立映射关系,本实施例中提供的方法是将所述站 点在所述站点分布图中的坐标作为所述图形化的能耗值的显示坐标,从而在所 述的图形化的站点能耗值及对应的图形化的站点在所述站点分布图中的几何 位置之间建立关联关系,所述图形化的能耗值即可代表站点又可指示站点的能 耗值。可以理解, 所述的图形化的站点和所述图形化的站点所对应的能耗值之 间的关联关系可以根据用户的需求而设置,比如将所述图形化的能耗值显示在 对应的图形化站点的附近,或在所述所述图形化的能耗值及对应的图形化的站 点之间生成关联图标, 如连线, 箭头等。
该方法中,将所述的站点按照站点的位置信息来生成可视化的分布图, 方 便管理员对站点的定位,同时将站点对应的图形化的能耗值与站点之间做几何 位置的关联, 方便管理员能够快捷了解站点的能耗状态。
更进一步, 本发明实施例提供的站点能耗管理方法中, 103包括: 将所述的能耗值选择控件与所述站点对应的能耗值相关联,其中所述能耗 值选择控件可选择的最大的目标能耗值不小于耗能最大的所述站点的能耗值, 其中所述能耗值选择控件可选择的最小的目标能耗值不大于耗能最小的所述 站点的能耗值。
为了能够使所述的能耗值选择控件所涵盖的能耗值的范围与当前的图形 化的站点的能耗值之间匹配从而方便用户来筛选和识别站点及不同的站点的 能耗值,本发明实施例进一步将所述能耗值选择控件与所述站点对应的能耗值 相关联,以保证所述能耗值选择控件可选择的最大的目标能耗值不小于耗能最 大的所述站点的能耗值,其中所述能耗值选择控件可选择的最小的目标能耗值 不大于耗能最小的所述站点的能耗值。
该方法中, 将所述的能耗值选择控件与所述的站点对应的能耗值关联起 来,以使所述能耗值选择控件的选值范围能够与当前的站点所对应的能耗值之 间相匹配, 从而使管理者能够精确的选择目标能耗值。
具体地, 本发明实施例提供的站点能耗管理方法中, 103中所述的生成一 图形化且呈现于所述的显示界面上的能耗值选择控件包括:
生成一图形化的以能耗值为刻度的标尺,以及生成至少一可沿所述的图形 化的标尺移动以选择目标能耗值或目标能耗值区间的图形化的游标。
该方法中, 网管单元 16可以通过 GUI模块来生成一标识能耗值的标尺, 并生成至少一可以沿所述的能耗值标尺移动的游标或者叫滑块,根据所述游标 或者滑块所对应的标尺的读数来确定当前所选定的目标能耗值, 具体地,请参 阅图 10,在图 10中显示本发明实施例提供的通过 GUI模块生成的图形化的能 耗值选择控件,该图形化的能耗值控件中包括一个以能耗值为刻度的图形化标 尺 1002, 两个可沿所述图形化的标尺 1002滑动的游标 /滑块 1004, 所述游标 / 滑块 1004用以沿着所述图形化的标尺 1002移动,以选择相应目标能耗值或者 目标能耗值区间, 图 10中从 A到 D依次展示了, 通过所述的两个游标 /滑块 1006来选择目标能耗值区间的多个状态。
该方法中,将所述的能耗值选择控件设置成为以能耗值为刻度的标尺, 并 生成一可沿所述图形化的标尺移动的游标共使用者来选择目标能耗值,符合使 用者的使用习惯, 直观的反映出所述能耗值选择控件的功能,省去了使用者需 要学习能耗值选择控件的功能的过程, 方便使用。
更进一步, 请参阅图 11 , 本发明实施例提供的站点能耗管理方法中, 还 包括:
106、 获取一设定的地域类型, 将所述站点位置信息与所获取的地域类型 进行匹配, 对应地, 103中所述根据所述目标能耗值选择控件所选择的目标能 耗值或目标能耗值区间来突出显示符合预定显示规则的图形化的站点及所述 图形化的站点对应的图形化的能耗值, 包括:
将所述符合预定显示规则的图形化的站点的位置信息与所获取的地域类 型进行匹配,将与所获取的地域类型匹配的图形化的站点及所述图形化的站点 所对应的图形化的能耗值突出显示。
为了能够让用户可以根据站点能耗管理的不同场景来筛选所需站点,所述 的不同的场景指的是站点负载具有明显差异的区域或场合,比如站点的负载随 着不同地理位置用户数的变化有明显差异, 具体地, 在山区、 林区、 村庄的站 点的负载小, 而在城镇、城市的站点的负载大; 更具体的, 在高铁沿线、 高校、 体育场等范围的站点的负载大,而相应的在其他的功能区域的站点的负载相对 较小; 根据这种规律, 可以将站点所覆盖的区域划分为多个不同的地域类型, 每个所述不同的地域类型包括各自的位置信息范围 ,当需要获取某个地域类型 内的站点及站点对应的能耗值时,将所获取的地域类型所覆盖的位置信息范围 与所述站点位置信息做匹配, 具体可以是, 所获取的地域类型所覆盖的位置信 息是由经度和纬度范围来限定的一个封闭的区域,在匹配时,将站点的经度及 纬度与所选择的地域类型的经度范围和纬度范围做比较,如果站点的经度及纬 度落在所选择的地域类型的经度范围和纬度范围内则认为匹配成功,否则认为 匹配不成功。可选择地,也可将站点根据其地理位置信息赋予一预定的地域类 型,即在所述的站点的地理位置信息和所述的地域类型之间建立相互关联或者 映射的关系,在这种相互关联或者相互映射的关系下, 可以通过所述站点的地 理位置信息找到相对应的地域类型,也可以通过所述的地域类型来找到相对应 的地理位置信息,在此基础上, 来实现将所述站点位置信息与所获取的地域类 型进行匹配, 如果与预设的映射关系或者关联关系相同, 则认为匹配成功, 反 之, 则认为匹配不成功。 经过上述的站点位置信息与所获取的地域类型进行匹 配后,将匹配成功的图形化站点及所述图形化站点对应的图形化的能耗值显示 突出显示,而将其他的匹配不成功的图形化站点及对应的图形化的能耗值弱化 显示。
对应地,在步骤 106的基础上,本发明实施例提供的站点能耗管理方法中, 还包括:将符合预定显示规则的图形化的站点中的与所获取的地域类型不匹配 的的图形化的站点及站点所对应的图形化的能耗值弱化显示。 在上述方法中,允许用户根据预设的地域类型来获取符合该地域类型特征 的站点,从而结合目标能耗值的选择从二维角度来实现对站点的筛选,进一步 方便管理者的使用, 提升使用者的体验。
可选择地, 请参阅图 12, 本发明实施例提供的站点能耗管理方法中, 106 中所述的获取一设定的地域类型包括:
107、 将所述的站点的地理位置信息进行分类, 根据所述地理位置信息分 类生成一呈现于所述显示界面上的地域类型选择菜单,所述地域类型选择菜单 用于选择某一或多个地域类型。
为了能够让用户可以根据站点能耗管理的不同场景来筛选所需站点,所述 的不同的场景指的是站点负载具有明显差异的区域或场合,比如站点的负载随 地理位置的变化有明显差异, 具体地, 在山区、 林区、 村庄的站点的负载小, 而在城镇、 城市的站点的负载大; 更具体的, 在高铁沿线、 高校、 体育场等范 围的站点的负载大, 而相应的在其他的功能区域的站点的负载相对较小;根据 这种规律, 可以将站点所覆盖的区域划分为多个不同的地域类型,每个所述不 同的地域类型包括各自的位置信息范围,当需要获取某个地域类型内的站点及 站点对应的能耗值时,将所获取的地域类型所覆盖的位置信息范围与所述站点 位置信息做匹配, 具体地, 请参阅图 13 , 将站点根据其地理位置信息进行分 类, 并对经过分类的站点赋予一预定的地域类型,将所述的地域类型通过网管 单元 16的 GUI模块生成一个可展开并供选择的地域类型选择菜单 132, 当所 述地域类型选择菜单 132被激活或者被触发时, 所述地域类型选择菜单 132 由一侧展开, 本实施例中采用下拉的方式来实现, 所述地域类型选择菜单 132 展开, 呈现出多个地域类型 134, 在每个地域类型 134对应的位置生成有选择 框 136, 用以供用户选择所述地域类型 134; 当某一个或者多个地域类型 134 的选择框 136被勾选后,则将被选中地域类型 134与分类后的站点的地理位置 信息做匹配, 并突出显示匹配成功的站点, 同时弱化显示匹配不成功的站点, 具体地,可以是在所述的站点的地理位置信息和所述的地域类型之间建立相互 关联或者映射的关系,在这种相互关联或者相互映射的关系下, 可以通过所述 站点的地理位置信息找到相对应的地域类型,也可以通过所述的地域类型来找 到相对应的地理位置信息,在此基础上, 来实现将所述站点位置信息与所获取 的地域类型进行匹配,如果与预设的映射关系或者关联关系相同, 则认为匹配 成功, 反之, 则认为匹配不成功。 经过上述的站点位置信息与所获取的地域类 型进行匹配后 ,将匹配成功的图形化站点及所述图形化站点对应的图形化的能 耗值显示突出显示,而将其他的匹配不成功的图形化站点及对应的图形化的能 耗值弱化显示。
该方法中, 允许用户将站点的地理位置信息与地域类型相关联,从而结合 目标能耗值的选择从二维角度来实现对站点的筛选, 进一步方便管理者的使 用, 提升使用者的体验。
更进一步, 本发明实施例提供的站点能耗管理方法中, 步骤 103还包括: 根据所述与所述站点的对应的能耗值对所述站点的能耗进行分级,并将不 同能耗等级的站点赋予不同的可视化的元素。
为了能够直观的显示出站点的能耗的状况,本发明实施例中可以将站点的 根据其具体的能耗值进行分级, 即,将站点的能耗按照层级的方式划分为多个 能耗等级, 为了能够方便的辨识不同的能耗等级, 本发明实施例中采用将所述 不同的能耗等级赋予不同的可视化的元素,所述的可视化元素可以根据用户的 喜好或者需求来设置, 比如所述的可视化元素可以是颜色、 形状、 尺寸或者各 元素赋予不同的能耗等级, 具体的方案请参表 1。
表 1
Figure imgf000024_0001
在表 1中可以直观的看出站点的能耗值从 lOOOTPw到 4000TPw划分为四 个不同的等级, 所述四个不同的等级对应的能耗状态依次由低到高,对应每个 不同的能耗等级赋予不同的颜色, 比如能耗值符合 1500< TPw<=1000时, 采 用绿色来作为可视化的元素赋予对应的图像化站点所对应的图形化的能耗值, 而其他不同能耗状态的能耗值则采用蓝色、黄色或者红色等颜色来作为可视化 的元素赋予对应的图形化的站点所对应的图形化的能耗值; 对网管单元 16来 说则是将所述将不同的能耗等级的图形化的站点所对应的图形化的能耗值根 据 RGB三原色的比例来控制其呈现给用户的颜色。
该方法中,可通过对不同能耗等级的站点赋予不同的可视化的元素能够进 一步的增加站能耗状况的辨识性,从而方便管理员快速的识别出各个站点的能 耗标识从而来确定各个站点的能耗状态。 更进一步, 请参阅图 14, 本发明实施例提供的站点能耗管理方法中, 还 包括:
108、 生成一呈现于所述显示界面上的节能控件, 通过该节能控件来选择 站点的节能控制参数,将所选择的节能控制参数配置到被突出显示的站点,对 应地,
所述的获取站点的位置信息及站点对应的能耗值, 包括, 获取站点的位置 信息及配置了所述控制参数后的站点对应的能耗值;
所述的根据所获取的站点的位置信息及对应的能耗值,将所述的站点以及 与所述站点所对应的能耗值图形化并呈现在一显示界面上, 包括,据所获取的 站点的位置信息及配置了所述控制参数后的站点对应的能耗值,将所述的站点 以及与所述配置了所述控制参数后的站点所对应的能耗值图形化并呈现在一 显示界面上。
为了能够实现节能的目的, 本发明实施例中还可提供一种节能管理的方 法, 具体的, 可以通过网管单元 16生成一个节能控件, 通过该节能控件可以 对站点的各种能耗参数进行有效的选择及设置,当通过所述节能控件选择了具 体的节能控制参数后, 通过所述的传输单元 14发送给站点, 站点内的管理单 元 12将所述节能控制参数配置给站点内的各个负载从而来实现对各个站点节 能管理。 具体的请参阅图 15 , 本发明实施例提供的节能控制界面展示图, 通 过所述的网管单元 16生成呈现于显示界面上的节能控件 152, 所述节能控件 152中集中显示了站点内各种负载的节能控制参数, 本发明实施例中, 所述的 节能控件 152 中显示了智能的载频关断调节选项 154, 及控制智能设置选项 156; 用户可根据站点的工作规律, 环境状况等因素来通过所述载频关断调节 选项 154及控制智能设置选项 156来选择相应的节能控制参数来对站点进行节 能控制, 所述的节能控制参数被配置到各个站点后, 即可通过获取配置了所述 控制参数后的站点对应的能耗值以刷新各个站点在新的节能控制参数下对应 的图形化的能耗值, 以直观的观察经过节能控制后各个站点的能耗状况。
该方法中, 可通过一呈现于显示界面上的节能控件来选择节能控制参数, 通过将选择的节能控制参数配置到各个被突出显示站点, 也就是被选择的站 点,站点将会根据所述的节能控制参数来调整其工作状态或者运作模式以实现 节能的目的, 同时, 当将所述的节能控制参数配置给站点, 并在站点根据所述 控制参数调整了工作状态后即时的反馈站点当前的能耗状态并刷新站点的图 形化的能耗值, 以方便用户及时直观的获知经过节能控制后站点的能耗状态。
本发明实施例还提供一种站点能耗呈现方法, 其包括:
通过显示界面显示位于不同地理位置上的站点及站点对应的能耗标识,所 述能耗标识用以指示站点的能耗等级;
在所述显示有站点及站点的能耗标识的显示界面上生成一能耗值选择控 件, 所述能耗值选择控件用以选择能耗等级或者能耗等级区间;
根据能耗值选择控件所选择的能耗等级或者能耗等级区间来突出显示符 合预定显示规则的站点及所述站点所对应的能耗标识。
该站点能耗呈现方法通过将处于不同地理位置上的站点及站点对应的能 耗标识显示在一显示界面上,可使管理员能够直观的观察站点的位置分布以及 各个站点的能耗状况;通过在所述的显示界面上生成一个用以选择站点的能耗 等级的能耗值选择控件,供管理者通过所述能耗值选择控件来将选择相应的能 耗等级或者能耗等级区间; 当所述能耗等级或者能耗等级区间被选定后,通过 本方法将所选择的目标能耗等级或者目标能耗等级区间来突出显示符合预定 显示规则图形化的站点及所述图形化的站点对应的图形化的能耗值,从而便于 管理员快速的找出所需的站点, 以进行下一步的处理。
进一步地, 本发明实施例提供的站点能耗呈现方法中,在所述的根据当前 能耗值选择控件所选择的能耗等级来突出显示符合预定显示规则的站点及所 述站点所对应的能耗标识时, 还包括:
弱化不符合所述预定显示规则的站点及站点所对应的能耗标识。
本发明实施例通过该方法来进一步的凸显被选中的符合预定显示规则的 站点及对应的能耗状态, 便于管理员对所选择的站点进行管理。
进一步地, 本发明实施例提供的站点能耗呈现方法中, 还包括: 若若所述 的站点对应于多个不同的能耗等级,则将所述属于不同能耗等级的站点的能耗 标识赋予不同的可视化的元素。
该方法中,可通过对不同能耗等级的站点赋予不同的可视化的元素能够进 一步的增加站能耗状况的辨识性,从而方便管理员快速的识别出各个站点的能 耗标识从而来确定各个站点的能耗状态。
进一步地, 本发明实施例提供的站点能耗呈现方法中, 还包括: 生成一呈现于所述的显示界面上的地域类型选择菜单;所述站点的地域类 型及所述的地域类型选择菜单中的地域类型相关联;
所述根据能耗值选择控件所选择的能耗等级来突出显示符合预定显示规 则的站点及所述站点所对应的能耗标识包括:当所述地域类型选择菜单中的某 一或者多个地域类型被选中时,突出显示与所述被选中的地域类型相匹配并符 在上述方法的基础上,本发明实施例提供的站点能耗呈现方法中,还包括: 弱化显示符合所述预定显示规则但与所述被选中的地域类型不匹配的站点及 站点所对应的能耗标识。
根据上述方法, 允许用户将站点的地理位置信息与地域类型相关联,从而 结合目标能耗值的选择从二维角度来实现对站点的筛选,进一步方便管理者的 使用, 提升使用者的体验。
进一步地, 本发明实施例提供的站点能耗呈现方法中, 还包括:
生成一呈现于所述显示界面上的节能控件,所述节能控件用以选择站点的 节能控制参数,当所述节能控件所选择的节能控制参数被配置到被突出显示的 站点后,对应地, 所述的通过显示界面显示位于不同地理位置上的站点及站点 对应的能耗标识, 所述能耗标识用以指示站点的能耗等级包括: 通过显示界面 显示位于不同地理位置上的站点及配置了所述的节能控制参数的站点对应的 能耗标识, 所述能耗标识用以指示站点的能耗等级。
该方法中, 可通过一呈现于显示界面上的节能控件来选择节能控制参数, 通过将选择的节能控制参数配置到各个被突出显示站点, 也就是被选择的站 点,站点将会根据所述的节能控制参数来调整其工作状态或者运作模式以实现 节能的目的, 同时, 当将所述的节能控制参数配置给站点, 并在站点根据所述 控制参数调整了工作状态后即时的反馈站点当前的能耗状态并刷新站点的图 形化的能耗值, 以方便用户及时直观的获知经过节能控制后站点的能耗状态。
进一步地, 本发明实施例提供的站点能耗呈现方法中, 所述能耗值选择控 件、地域类型选择菜单、节能模式选择菜单以及所述站点及能耗标识在所述显 示界面上的位置互不干涉。 该方法中,将在站点能耗呈现的过程中使能耗值选择控件、地域类型选择 菜单、节能模式选择菜单与所述站点及能耗标识错开,从而凸显站点及能耗标 识以方便管理者查看。
请参阅图 16本发明实施例提供的一种站点能耗呈现方法 200, 其包括: 201、 通过显示界面显示位于不同地理位置上的站点及站点对应的能耗标 识, 所述能耗标识用以指示站点的能耗等级;
为了使用户能够直观的看到所述站点的分布位置以及各个站点的对应的 能耗状况, 所述的站点及其对应的能耗值被一显示界面呈现出来, 其中所述的 站点及其对应的能耗标识依其地理位置的不同而对应的显示在显示界面的不 同位置, 本发明实施例中, 通过所述的网管单元 16来实现所述功能, 即在所 述网管单元 16中预存图形化用户界面 GUI模块,所述的 GUI模块根据预先获 取或者预先存储所述站点的地理位置信息及所述站点对应的能耗信息将所述 位于站点以及其对应的能耗标识以图 17中的方式直观的展示给用户, 在图 17 中所展示的图形化的用户界面中, 包括地理位置图层 1702以及站点及能耗标 识图层 1704, 其中, 所述的地理位置图层 1702为普通的电子地图, 该图层作 为该图形化的用户界面的参照背景用以直观的展示站点所布局位置信息,本实 施例中给出的地理位置图层 1702中所呈现的是深圳地区的地图信息; 所述的 站点及能耗标识图层 1704是根据站点的地理位置信息在所述的地理位置图层 1702上做标定, 并在所标定的位置处用一图形标识来表示此处具布置有站点, 而所述能耗标识同样被图形化后显示在所述的形成有所述图形化的站点的站 点及能耗标识图层 1704上, 且所述的能标识与所述图形化的站点之间相互关 联, 其关联方式可以是通过在位置上的相互邻近来表示, 或者可以通过采用相 同的图形或色彩等可视化的元素来相关联, 或者通过设置一个关联符合实现; 本发明实施例中,在所述站点所在位置处设置一实心的圆点来同时表示站点以 及站点对应的能耗值。
202、 在所述显示有站点及站点的能耗标识的显示界面上生成一能耗值选 择控件, 所述能耗值选择控件用以选择能耗等级或者能耗等级区间;
在将所述的站点以及对应的能耗值图形化以后为了方便用户能够快捷方 便找到可对所述的站点的根据能耗值进行过滤的操作控件,本发明实施例提供 一显示在所述显示有站点及站点能耗标识的显示界面上的能耗值选择控件 1706, 所述能耗值选择控件 1706用来选择至少一个当前能耗等级或者能耗等 级区间, 通过所述的能耗值选择控件 1706来选择当前能耗等级或者能耗等级 区间, 可以使用户快速的实现能耗等级或能耗等级区间的选择,便于操作并提 升效率; 所述的能耗值选择控件可呈现在显示界面的右上角,也可以根据用户 的喜好可习惯呈现于屏幕的任意位置。
203、 根据当前能耗值选择控件所选择的能耗等级或能耗等级区间来突出 当所述的能耗值选择控件选定一能耗等级或能耗等级区间时,所选定的能 耗等级或能耗等级区间将作为一个触发预定的显示规则的临界值,所述预定的 显示规则是指以所述的能耗值选择控件的最小值及最大值所涵盖能耗等级的 范围为总集,以所述选定的能耗等级或者能耗等级区间为临界值将所述的能耗 等级总集集划分为至少一个子集并显示所述至少一个子集。具体地, 本发明实 施例中, 当所述能耗值选择控件选择的是一个当前能耗等级时, 则以当前能耗 等级为一个临界值将所述能耗值选择控件所涵盖的整个能耗等级范围所构成 总集划分为大于该临界值的部分, 即所述的一个子集, 等于该临界值的部分, 即所述的另外一个子集, 以及小于该临界值的部分, 即第三个子集; 所述的能 耗值选择控件所涵盖的整个能耗等级范围被所述临界值即当前能耗等级划分 为多个子集后,可以选择显示其中的一个子集,即显示大于所述临界值的部分, 或者显示等于所述临界值的部分, 或者显示小于所述临界值的部分; 或者可以 选择显示被划分出的子集的组合, 即显示大于及等于所述临界值的部分,或者 显示小于及等于所述临界值的部分, 或者选择大于及小于所述临界值的部分。 当所述的能耗值选择控件选择的是一个能耗等级区间时的显示规则与选择一 个当前能耗等级时的显示规则相似, 为了简明起见不再冗述。
该站点能耗呈现方法通过将处于不同地理位置上的站点及站点对应的能 耗标识显示在一显示界面上,可使管理员能够直观的观察站点的位置分布以及 各个站点的能耗状况;通过在所述的显示界面上生成一个用以选择站点的能耗 等级的能耗值选择控件,供管理者通过所述能耗值选择控件来选择相应的能耗 等级; 当所述能耗等级或者能耗等级区间被选定后,通过本方法来突出显示符 合预定显示规则图形化的站点及所述图形化的站点对应的图形化的能耗值,从 而便于管理员快速的找出所需的站点, 以进行下一步的处理。
进一步地, 请参阅图 18, 本发明实施例提供的站点能耗呈现方法中, 在 方法 203后, 还包括:
204、 弱化不符合所述预定显示规则的站点及站点所对应的能耗标识。 在突出显示符合预定显示规则的站点以及能耗标识后,为了增加被突出显 示的被选择站点以及对应的能耗标识的显示效果, 本发明实施例中,还提供将 不符合所述预定显示规则的站点及对应的能耗标识与显示界面的背景的对比 度降低, 或者将不符合所述预定显示规则的站点及对应能耗标识隐藏。请参阅 图 19中所显示的本发明实施例能耗管理方法中方法 203及 204的实施过程, 当用户通过所述的能耗值选择控件 1902 选择一个能耗等级区间如 ( 110<TPw<=94, 高能耗), 预定的显示规则可以设置为显示该能耗值区间内 的能耗标识及对应的站点, 此时, 突出显示能耗等级在 ( 110<TPw<=94 )之间 的站点以及对应的能耗标识; 而位于所述能耗等级区间( 110<TPw<=94 )以外 的站点以及的能耗标识被弱化或者隐藏,如此,整个显示界面就显得简洁清晰, 便于用户识别和进行下一步的操作。
本发明实施例通过该方法来进一步的凸显被选中的符合预定显示规则的 站点及对应的能耗状态, 便于管理员对所选择的站点进行管理。
进一步地, 本发明实施例提供的站点能耗呈现方法中, 还包括:
若所述的站点对应于多个不同的能耗等级,则将所述属于不同能耗等级的 站点的能耗标识赋予不同的可视化的元素。
本发明实施例中采用将所述不同的能耗等级赋予不同的可视化的元素,所 述的可视化元素可以根据用户的喜好或者需求来设置,比如所述的可视化元素 可以是颜色、 形状、 尺寸或者各种可视化元素的组合, 具体地, 本发明实施例 中采用颜色来作为上述可视化的元素赋予不同的能耗等级,具体的方案请参表 2。
表 2
总功耗 图示颜色 RGB 能耗状态
(Kw/h标准 0TRX)
4000<TPw<=3000 红色 R255/G30/B0 高 3000< TPw<=2500 黄色 R255/G216/B0 中
2500< TPw<=1500 蓝色 R0/G73/B255 正常
1500< TPw<=1000 绿色 R131/G183/B24 低 在表 2中可以直观的看出站点的能耗值从 lOOOTPw到 4000TPw划分为四 个不同的等级, 所述四个不同的等级对应的能耗状态依次由低到高,对应每个 不同的能耗等级赋予不同的颜色, 比如能耗值符合 1500< TPw<=1000时, 采 用绿色来作为可视化的元素赋予对应的图像化站点所对应的图形化的能耗值, 而其他不同能耗状态的能耗值则采用蓝色、黄色或者红色等颜色来作为可视化 的元素赋予对应的图形化的站点所对应的图形化的能耗值; 对网管单元 16来 说则是将所述将不同的能耗等级的图形化的站点所对应的图形化的能耗值根 据 RGB三原色的比例来控制其呈现给用户的颜色。
该方法中,可通过对不同能耗等级的站点赋予不同的可视化的元素能够进 一步的增加站能耗状况的辨识性,从而方便管理员快速的识别出各个站点的能 耗标识从而来确定各个站点的能耗状态。
进一步地, 请参阅图 20, 本发明实施例提供的站点能耗呈现方法中, 还 包括:
205、 生成一呈现于所述的显示界面上的地域类型选择菜单, 其中, 所述 站点的地域类型及所述的地域类型选择菜单中的地域类型相关联。
为了能够让用户可以根据站点能耗管理的不同场景来筛选所需站点,所述 的不同的场景指的是站点负载具有明显差异的区域或场合,比如站点的负载随 地理位置的变化有明显差异, 具体地, 在山区、 林区、 村庄的站点的负载小, 而在城镇、 城市的站点的负载大; 更具体的, 在高铁沿线、 高校、 体育场等范 围的站点的负载大, 而相应的在其他的功能区域的站点的负载相对较小; 由于 不同地域类型的站点的功耗状况整体状况以及管理方法不同, 因此, 就存在选 择不同地域类型下的站点需求,本发明实施例提供的显示在显示界面上的地域 类型选择菜单便用以满足这种需求。根据上述的不同地域类型内站点的整体功 耗不同的规律,可以将站点所覆盖的区域与所述的地域类型选择菜单中的各种 地域类型之间相互关联,即在所述的站点的地理位置信息和所述的地域类型之 间建立映射的关系,在这种映射的关系下, 可以通过所述站点的地理位置信息 找到相对应的地域类型,也可以通过所述的地域类型来找到相对应的地理位置 信息。
206、 当所述地域类型选择菜单中的某一或者多个地域类型被选中时, 突 出显示与所述被选中的地域类型相匹配并符合所述预定显示规则的站点以及 站点所对应的能耗标识。
当需要获取某个地域类型内的站点及站点对应的能耗标识时,便可根据前 述的关联关系,将与所述被选中的地域类型相关联的站点以及站点所对应的能 耗标识识别出来并将所识别出来的站点及站点对应的能耗标识中符合预定显 示规则突出显示。
在 206的基础上, 本发明实施例提供的站点能耗呈现方法中, 还包括: 弱 化显示符合所述预定显示规则但与所述被选中的地域类型不匹配的站点及站 点所对应的能耗标识。
该方法中, 允许用户将站点的地理位置信息与地域类型相关联,从而结合 目标能耗值的选择从二维角度来实现对站点的筛选, 进一步方便管理者的使 用, 提升使用者的体验。
进一步地, 请参阅图 21本发明实施例提供的站点能耗呈现方法中, 还包 括:
207、 生成一呈现于所述显示界面上的节能控件, 所述节能控件用以选择 站点的节能控制参数 ,当所述节能控件所选择的节能控制参数被配置到被突出 显示的站点后,对应地, 步骤 203中所述的通过显示界面显示位于不同地理位 置上的站点及站点对应的能耗标识,所述能耗标识用以指示站点的能耗等级包 括:通过显示界面显示位于不同地理位置上的站点及配置了所述的节能控制参 数的站点对应的能耗标识, 所述能耗标识用以指示站点的能耗等级。
为了能够实现节能的目的,本发明实施例中还可提供一呈现于显示界面上 的节能控件, 具体的, 可以通过网管单元 16生成一个节能控件, 该节能控件 呈现于所述的显示有站点及站点对应的能耗标识的显示界面上,通过该节能控 件可以对站点的各种能耗参数进行有效的选择及设置,当通过所述节能控件选 择了具体的节能控制参数后, 经通过所述的传输单元 14发送给站点, 站点内 的管理单元 12将所述节能控制参数配置给站点内的各个负载从而来实现对各 个站点节能管理。
该方法中, 可通过一呈现于显示界面上的节能控件来选择节能控制参数, 通过将选择的节能控制参数配置到各个被突出显示站点, 也就是被选择的站 点,站点将会根据所述的节能控制参数来调整其工作状态或者运作模式以实现 节能的目的, 同时, 当将所述的节能控制参数配置给站点, 并在站点根据所述 控制参数调整了工作状态后即时的反馈站点当前的能耗状态并刷新站点的图 形化的能耗值, 以方便用户及时直观的获知经过节能控制后站点的能耗状态。 可以理解, 本发明实施例提供的站点能耗呈现方法中, 所述能耗值选择控 件、地域类型选择菜单、节能模式选择菜单以及所述站点及能耗标识在所述显 示界面上的位置互不干涉。
本发明是实施例提供的方法中,将在站点能耗呈现的过程中使能耗值选择 控件、 地域类型选择菜单、 节能模式选择菜单与所述站点及能耗标识错开, 从 而凸显站点及能耗标识以方便管理者查看。
请参阅图 22, 本发明另一实施例提供的一种站点能耗管理*** 2200, 其 包括,
信息获取模块 2210, 用以获取站点的位置信息及站点对应的能耗值; 图形化界面生成模块 2220, 用以根据所获取的站点的位置信息及对应的 能耗值,将所述的站点以及与所述站点所对应的能耗值图形化并呈现在一显示 界面上;
控件生成模块 2230, 用以生成一图形化且呈现于所述的显示界面上的能 耗值选择控件,所述能耗值选择控件用以选择至少一个目标能耗值或目标能耗 值区间; 以及
站点过滤模块 2240, 获取通过所述能耗值选择控件所选择的至少一个目 标能耗值或目标能耗值区间,根据所述目标能耗值选择控件所选择的目标能耗 值或目标能耗值区间来突出显示符合预定显示规则的图形化的站点及所述图 形化的站点对应的图形化的能耗值。
本发明实施例提供的站点能耗管理*** 2200的各功能模块可用于执行图
3所示站点能耗专利方法 100的流程, 其具体工作原理及实现机制不再冗述, 详细内容请参阅图 3中所述的站点能耗管理方法中的描述。 该站点能耗管理***通过获取站点的地理位置信息及站点的能耗值,并将 所述站点的地理位置信息及站点的能耗值图形化后呈现在显示界面上,可使管 理员能够直观的观察站点的位置分布以及各个站点的能耗状况,通过在所述的 显示界面上生成一个用以选择能耗值或者能耗值区间的能耗值选择控件,可方 便管理者快速方便的选择所需的目标能耗值或目标能耗值区间,当所述目标能 耗值或目标能耗区间被选定后,突出显示符合预定显示规则图形化的站点及所 述图形化的站点对应的图形化的能耗值,从而便于管理员直观的筛选出所需的 站点,并快速了解筛选出的站点所对应的能耗状况,以方便对站点的能耗管理。
请参阅图 23 , 本发明实施例提供的站点能耗管理*** 2200中, 所述的图 形化界面生成模块 2220包括:
站点布局生成单元 2222, 用以根据所获取的站点的位置信息生成可视化 的站点分布图;
能耗图形化单元 2224, 用以将所获取的站点对应的能耗值图形化并呈现 于所述的可视化的站点分布图中, 其中, 所述的图形化的站点能耗值与对应的 站点在所述站点分布图中的几何位置相互关联。
本发明实施例提供的该站点能耗管理*** 2200中, 通过所述图形化界面 生成模块 2220将所述的站点按照站点的位置信息来生成可视化的分布图, 方 便管理员对站点的定位,同时将站点对应的图形化的能耗值与站点之间做几何 位置的关联, 方便管理员能够快捷了解站点的能耗状态。
请参阅图 24, 本发明实施例提供的站点能耗管理*** 2200中, 所述的图 形化界面生成模块 2220还包括:
能耗分级赋形单元 2226, 用以根据所述与所述站点的对应的能耗值对所 述站点的能耗进行分级, 并将不同能耗等级的站点赋予不同的可视化的元素。 本发明实施例提供的该站点能耗管理*** 2200中, 通过所述图形化界面 生成模块 2220中的能耗分接赋形单元 2226对不同能耗等级的站点赋予不同的 可视化的元素能够进一步的增加站能耗状况的辨识性,从而方便管理员快速的 识别出各个站点的能耗标识从而来确定各个站点的能耗状态。
进一步地, 本发明实施例提供的一种站点能耗管理*** 2200中所述的站 点过滤模块 2240, 具体用以将站点的能耗值与所选择的目标能耗值或者目标 能耗值区间做比较,突出显示能耗值大于所述目标能耗值的所述图形化的站点 及所述图形化的站点对应的图形化的能耗值。
本发明实施例提供的该站点能耗管理*** 2200中, 规定了将预定的显示 规则明确的设定为显示能耗值大于所述目标能耗值的所述图形化的站点及所 述图形化的站点对应的图形化的能耗值,从而使所述的图像化站点及所述图像 化的站点所对应的图形化的能耗值的显示方式更加的符合用户的日常操作习 惯,便于使用者根据其经验快速的掌握对所述能耗值选择控件的使用方法,从 而增加了本发明的站点能耗管理方法的界面友好性。
进一步地, 请参阅图 25 , 本发明实施例提供的一种站点能耗管理*** 2200, 还包括图形显示弱化模块 2250, 用以在所述将站点的能耗值与所选择 的目标能耗值或者目标能耗值区间做比较,突出显示能耗值大于所述目标能耗 值的站点同时或之后,弱化不符合所述预定显示规则的图形化的站点及对应的 图形化的能耗值。
本发明实施例提供的该站点能耗管理*** 2200中通过图形显示弱化模块 2250 来弱化显示不符合预定显示规则的站点及站点对应的能耗状态, 从而进 对所选择的站点进行管理。
更进一步, 本发明实施例提供的站点能耗管理*** 2200中, 所述的控件 生成模块 2230, 具体用以, 生成一图形化且呈现于所述的显示界面上的能耗 值选择控件,将所述的能耗值选择控件与所述站点对应的能耗值相关联,其中 所述能耗值选择控件可选择的最大的目标能耗值不小于耗能最大的所述站点 的能耗值,其中所述能耗值选择控件可选择的最小的目标能耗值不大于耗能最 小的所述站点的能耗值。
本发明实施例提供的该站点能耗管理*** 2200中通过将所述的能耗值选 择控件与所述的站点对应的能耗值关联起来,以使所述能耗值选择控件的选值 范围能够与当前的站点所对应的能耗值之间相匹配,从而使管理者能够精确的 选择目标能耗值或则目标能耗值区间。
进一步地, 本发明实施例提供的站点能耗管理***中, 所述的控件生成模 块 2230 所实现的生成一图形化且呈现于所述的显示界面上的能耗值选择控 件, 具体包括: 生成一图形化的以能耗值为刻度的标尺, 以及生成至少一可沿 所述的图形化的标尺移动以选择目标能耗值或目标能耗值区间的图形化的游 标。
本发明实施例提供的该站点能耗管理*** 2200中通过将所述的能耗值选 择控件设置成为以能耗值为刻度的标尺,并生成一可沿所述图形化的标尺移动 的游标共使用者来选择目标能耗值,符合使用者的使用习惯, 直观的反映出所 述能耗值选择控件的功能,省去了使用者需要学习能耗值选择控件的使用方法 的及功能的过程, 方便使用。 请参阅图 26, 本发明实施例提供的该站点能耗管理*** 2200, 还包括: 地域类型获取模块 2260, 用以获取一设定的地域类型;
对应地, 所述的站点过滤模块 2240用以将所述符合预定显示规则的图形 化的站点的位置信息与所获取的地域类型进行匹配,将与所获取的地域类型匹 配的图形化的站点及所述图形化的站点所对应的图形化的能耗值突出显示。
进一步地, 本发明实施例提供的该站点能耗管理*** 2200中, 所述的图 形显示弱化模块 2250还用以将符合预定显示规则的图形化的站点中的与所获 取的地域类型不匹配的的图形化的站点及站点所对应的图形化的能耗值弱化 显示。
本发明实施例提供的该站点能耗管理*** 2200中所提供的地域类型获取 模块 2260允许用户根据预设的地域类型来获取符合该地域类型特征的站点, 从而结合目标能耗值或目标能耗值区间的选择从二维角度来实现对站点的筛 选, 进一步方便管理者的使用, 提升使用者的体验。
请参阅图 27, 本发明实施例提供的该站点能耗管理*** 2200中, 所述的 地域类型获取模块 2260包括:
地理位置信息分类单元 2262, 用以将所述的站点的地理位置信息进行分 类;
菜单生成单元 2264, 用以根据所述地理位置信息分类生成一呈现于所述 显示界面上的地域类型选择菜单,所述地域类型选择菜单用于选择某一或多个 地域类型。
本发明实施例提供的该站点能耗管理*** 2200中, 允许用户将站点的地 理位置信息与地域类型相关联,从而结合目标能耗值的选择从二维角度来实现 对站点的筛选, 进一步方便管理者的使用, 提升使用者的体验。
请参阅图 28, 本发明实施例提供的站点能耗管理*** 2200, 还包括: 节能控制模块 2270, 用以生成一呈现于所述显示界面上的节能控件, 通 过该节能控件来选择站点的节能控制参数,将所选择的节能控制参数配置到被 突出显示的站点, ^应地,
所述信息获取模块 2210, 用以获取站点的位置信息及配置了所述控制参 数后的站点对应的能耗值;
所述图形化界面生成模块 2230, 用以据所获取的站点的位置信息及配置 了所述控制参数后的站点对应的能耗值 ,将所述的站点以及与所述配置了所述 控制参数后的站点所对应的能耗值图形化并呈现在一显示界面上。
本发明实施例提供的该站点能耗管理*** 2200中, 可通过一呈现于显示 界面上的节能控件来选择节能控制参数,通过将选择的节能控制参数配置到各 个被突出显示站点,也就是被选择的站点, 站点将会根据所述的节能控制参数 来调整其工作状态或者运作模式以实现节能的目的, 同时, 当将所述的节能控 制参数配置给站点,并在站点根据所述控制参数调整了工作状态后即时的反馈 站点当前的能耗状态并刷新站点的图形化的能耗值,以方便用户及时直观的获 知经过节能控制后站点的能耗状态。 请参阅图 29, 本发明另一实施例提供的 一种站点能耗呈现装置 2900, 其包括:
站点及能耗显示模块 2910, 用以通过显示界面显示位于不同地理位置上 的站点及站点对应的能耗标识, 所述能耗标识用以指示站点的能耗等级; 控件生成模块 2920, 用以在所述显示有站点及站点的能耗标识的显示界 面上生成一能耗值选择控件,所述能耗值选择控件用以选择能耗等级或者能耗 等级区间;
站点过滤模块 2930, 用以根据能耗值选择控件所选择的能耗等级或者能 耗等级区间来突出显示符合预定显示规则的站点及所述站点所对应的能耗标 识。
本发明实施例提供的站点能耗呈现装置 2900, 通过将处于不同地理位置 上的站点及站点对应的能耗标识显示在一显示界面上,可使管理员能够直观的 观察站点的位置分布以及各个站点的能耗状况;通过在所述的显示界面上生成 一个用以选择站点的能耗等级的能耗值选择控件,供管理者通过所述能耗值选 择控件来将选择相应的能耗等级或者能耗等级区间;当所述能耗等级或者能耗 等级区间被选定后,通过本方法将所选择的目标能耗等级或者目标能耗等级区 间来突出显示符合预定显示规则图形化的站点及所述图形化的站点对应的图 形化的能耗值,从而便于管理员快速的找出所需的站点,以进行下一步的处理。
请参与图 30, 本发明实施例提供的站点能耗呈现装置 2900, 还包括: 图形显示弱化模块 2940, 用以弱化不符合所述预定显示规则的站点及站 点所对应的能耗标识。
本发明实施例提供的站点能耗呈现装置 2900通过将不符合所述预定显示 规则的站点及站点所对应的能耗标识弱化显示,来进一步的凸显被选中的符合 预定显示规则的站点及对应的能耗状态, 便于管理员对所选择的站点进行管 理。
请参与图 31 , 本发明实施例提供的站点能耗呈现装置 2900, 还包括: 能耗赋形模块 2950, 用以在所述的站点对应于多个不同的能耗等级时, 将所述属于不同能耗等级的站点的能耗标识赋予不同的可视化的元素。 本发明实施例提供的站点能耗呈现装置 2900, 通过对不同能耗等级的站 点赋予不同的可视化的元素能够进一步的增加站能耗状况的辨识性,从而方便 管理员快速的识别出各个站点的能耗标识从而来确定各个站点的能耗状态。
请参与图 32, 本发明实施例提供的站点能耗呈现装置 2900, 还包括: 地域类型获取模块 2960, 生成一呈现于所述的显示界面上的地域类型选 择菜单; 所述站点的地域类型及所述的地域类型选择菜单中的地域类型相关 联;
对应地, 所述站点过滤模块 2930, 用以当所述地域类型选择菜单中的某 一或者多个地域类型被选中时,突出显示与所述被选中的地域类型相匹配并符 进一步地, 本发明实施例提供的站点能耗呈现装置 2900, 所述的图形显 示弱化模块 2940还用以, 弱化显示符合所述预定显示规则但与所述被选中的 地域类型不匹配的站点及站点所对应的能耗标识。
本发明实施例提供的站点能耗呈现装置 2900, 允许用户将站点的地理位 置信息与地域类型相关联,从而结合目标能耗值的选择从二维角度来实现对站 点的筛选, 进一步方便管理者的使用, 提升使用者的体验。
请参与图 33 , 本发明实施例提供的站点能耗呈现装置 2900, 还包括: 节能控制模块 2970, 用以生成一呈现于所述显示界面上的节能控件, 所 述节能控件用以选择站点的节能控制参数,当所述节能控件所选择的节能控制 参数被配置到被突出显示的站点后;
对应地, 所述站点及能耗显示模块 2910, 用以通过显示界面显示位于不 同地理位置上的站点及配置了所述的节能控制参数的站点对应的能耗标识,所 述能耗标识用以指示站点的能耗等级。
本发明实施例提供的站点能耗管理*** 2900的各功能模块可用于执行图 16所示站点能耗呈现方法 200的流程, 其具体工作原理及实现机制不再冗述, 详细内容请参阅图 16中所述的站点能耗呈现方法中的描述。
本发明实施例提供的站点能耗呈现装置 2900, 可通过一呈现于显示界面 上的节能控件来选择节能控制参数,通过将选择的节能控制参数配置到各个被 突出显示站点,也就是被选择的站点, 站点将会根据所述的节能控制参数来调 整其工作状态或者运作模式以实现节能的目的, 同时, 当将所述的节能控制参 数配置给站点,并在站点根据所述控制参数调整了工作状态后即时的反馈站点 当前的能耗状态并刷新站点的图形化的能耗值,以方便用户及时直观的获知经 过节能控制后站点的能耗状态。通过以上的实施方式的描述, 所属领域的技术 人员可以清楚地了解到本发明可借助软件加必需的通用硬件的方式来实现,当 然也可以通过硬件, 但很多情况下前者是更佳的实施方式。 基于这样的理解, 本发明的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品 的形式体现出来,该计算机软件产品存储在可读取的存储介质中,如计算机的 软盘, 硬盘或光盘等, 包括若干指令用以使得一台计算机设备(可以是个人计 算机, 服务器, 或者网络设备等)执行本发明各个实施例所述的方法。

Claims

权 利 要 求
1.一种站点能耗管理方法, 其特征在于:
获取站点的位置信息及站点对应的能耗值;
根据所获取的站点的位置信息及对应的能耗值,将所述的站点以及与所述 站点所对应的能耗值图形化并呈现在一显示界面上;
生成一图形化且呈现于所述的显示界面上的能耗值选择控件,所述能耗值 选择控件用以选择至少一个目标能耗值或目标能耗值区间;
获取通过所述能耗值选择控件所选择的至少一个目标能耗值或目标能耗 值区间,根据所述目标能耗值选择控件所选择的目标能耗值或目标能耗值区间 来突出显示符合预定显示规则的图形化的站点及所述图形化的站点对应的图 形化的能耗值。
2. 如权利要求 1 所述的站点能耗管理方法, 其特征在于: 所述的根据所 获取的站点的位置信息及对应的能耗值,将所述的站点以及与所述站点所对应 的能耗值图形化并呈现在一显示界面上包括:
根据所获取的站点的位置信息生成可视化的站点分布图;
将所获取的站点对应的能耗值图形化并呈现于所述的可视化的站点分布 图中, 其中, 所述的图形化的站点能耗值与对应的站点在所述站点分布图中的 几何位置相互关联。
3. 如权利要求 2所述的能耗管理方法, 其特征在于, 所述的根据所获取 的站点的位置信息及对应的能耗值,将所述的站点以及与所述站点所对应的能 耗值图形化并呈现在一显示界面上,还包括: 根据所述与所述站点的对应的能 耗值对所述站点的能耗进行分级,并将不同能耗等级的站点赋予不同的可视化 的元素。
4. 如权利要求 1至 3任意一项所述的站点能耗管理方法, 其特征在于: 所述根据所述目标能耗值选择控件所选择的目标能耗值或目标能耗值区间来 突出显示符合预定显示规则的图形化的站点及所述图形化的站点对应的图形 化的能耗值, 包括: 将站点的能耗值与所选择的目标能耗值或者目标能耗值区 间做比较,突出显示能耗值大于所述目标能耗值的所述图形化的站点及所述图 形化的站点对应的图形化的能耗值。
5. 如权利要求 4所述的站点能耗管理方法, 其特征在于: 在所述将站点 的能耗值与所选择的目标能耗值或者目标能耗值区间做比较,突出显示能耗值 大于所述目标能耗值的站点同时或之后, 所述方法还包括: 弱化不符合所述预 定显示规则的图形化的站点及对应的图形化的能耗值。
6.如权利要求 1至 3任意一项所述的站点能耗管理方法, 其特征在于: 所 述生成一图形化且呈现于所述的显示界面上的能耗值选择控件,所述能耗值选 择控件用以选择至少一个目标能耗值或目标能耗值区间, 包括: 生成一图形化 且呈现于所述的显示界面上的能耗值选择控件,将所述的能耗值选择控件与所 述站点对应的能耗值相关联,其中所述能耗值选择控件可选择的最大的目标能 耗值不小于耗能最大的所述站点的能耗值 ,其中所述能耗值选择控件可选择的 最小的目标能耗值不大于耗能最小的所述站点的能耗值。
7.如权利要求 6所述的站点能耗管理方法, 其特征在于: 所述的生成一图 形化且呈现于所述的显示界面上的能耗值选择控件, 包括: 生成一图形化的以 能耗值为刻度的标尺,以及生成至少一可沿所述的图形化的标尺移动以选择目 标能耗值或目标能耗值区间的图形化的游标。
8.如权利要求 6所述的站点能耗管理方法,其特征在于,所述方法还包括: 获取一设定的地域类型;所述根据所述目标能耗值选择控件所选择的目标能耗 值或目标能耗值区间来突出显示符合预定显示规则的图形化的站点及所述图 形化的站点对应的图形化的能耗值, 包括:
将所述符合预定显示规则的图形化的站点的位置信息与所获取的地域类 型进行匹配,将与所获取的地域类型匹配的图形化的站点及所述图形化的站点 所对应的图形化的能耗值突出显示。
9. 如权利要求 8所述的站点能耗管理方法, 其特征在于, 所述方法还包 括:将符合预定显示规则的图形化的站点中的与所获取的地域类型不匹配的的 图形化的站点及站点所对应的图形化的能耗值弱化显示。
10.如权利要求 8所述的站点能耗管理方法, 其特征在于, 所述获取一设 定的地域类型包括: 将所述的站点的地理位置信息进行分类,根据所述地理位 置信息分类生成一呈现于所述显示界面上的地域类型选择菜单,所述地域类型 选择菜单用于选择某一或多个地域类型。
11. 如权利要求 4所述的能耗管理方法, 其特征在于, 所述方法还包括, 生成一呈现于所述显示界面上的节能控件 ,通过该节能控件来选择站点的节能 控制参数, 将所选择的节能控制参数配置到被突出显示的站点, 对应地,
所述的获取站点的位置信息及站点对应的能耗值, 包括, 获取站点的位置 信息及配置了所述控制参数后的站点对应的能耗值;
所述的根据所获取的站点的位置信息及对应的能耗值,将所述的站点以及 与所述站点所对应的能耗值图形化并呈现在一显示界面上, 包括,据所获取的 站点的位置信息及配置了所述控制参数后的站点对应的能耗值,将所述的站点 以及与所述配置了所述控制参数后的站点所对应的能耗值图形化并呈现在一 显示界面上。
12.—种站点能耗呈现方法, 其特征在于:
通过显示界面显示位于不同地理位置上的站点及站点对应的能耗标识,所 述能耗标识用以指示站点的能耗等级;
在所述显示有所述站点及站点的能耗标识的显示界面上生成一能耗值选 择控件, 所述能耗值选择控件用以选择能耗等级或者能耗等级区间;
根据能耗值选择控件所选择的能耗等级来突出显示符合预定显示规则规 则的站点及所述站点所对应的能耗标识。
13.如权利要求 12所述的站点能耗呈现方法, 其特征在于, 所述方法, 还 包括:
弱化不符合所述预定显示规则的站点及站点所对应的能耗标识。
14.如权利要求 10或 12所述的站点能耗呈现方法, 其特征在于, 所述方 法还包括:
若所述的站点对应于多个不同的能耗等级,则将所述属于不同的能耗等级 的站点的能耗标识赋予不同的可视化的元素。
15.如权利要求 14所述的站点能耗呈现方法, 其特征在于,
所述的可视元素为颜色、 几何形状、 尺寸或者颜色、 几何形状、 尺寸中任 意两者或三者得组合。
16. 如权利要求 12或 13所述的站点能耗呈现方法, 其特征在于, 所述方 法还包括: 生成一呈现于所述的显示界面上的地域类型选择菜单;所述站点的地域类 型及所述的地域类型选择菜单中的地域类型相关联;
所述根据能耗值选择控件所选择的能耗等级来突出显示符合预定显示规 则的站点及所述站点所对应的能耗标识包括:当所述地域类型选择菜单中的某 一或者多个地域类型被选中时,突出显示与所述被选中的地域类型相匹配并符
17. 如权利要求 16所述的站点能耗呈现方法, 其特征在于, 所述方法还 包括:弱化显示符合所述预定显示规则但与所述被选中的地域类型不匹配的站 点及站点所对应的能耗标识。
18. 如权利要求 16所述的站点能耗呈现方法, 其特征在于, 还包括; 生成一呈现于所述显示界面上的节能控件,所述节能控件用以选择站点的 节能控制参数,当所述节能控件所选择的节能控制参数被配置到被突出显示的 站点后,所述的通过显示界面显示位于不同地理位置上的站点及站点对应的能 耗标识, 所述能耗标识用以指示站点的能耗等级包括: 通过显示界面显示位于 不同地理位置上的站点及配置了所述的节能控制参数的站点对应的能耗标识, 所述能耗标识用以指示站点的能耗等级。
19. 如权利要求 18所述的站点能耗呈现方法, 其特征在于,
所述能耗值选择控件、地域类型选择菜单、节能模式选择菜单以及所述站 点及能耗标识在所述显示界面上的位置互不干涉。
20. 一种站点能耗管理***,其特征在于, 包括:
信息获取模块, 用以获取站点的位置信息及站点对应的能耗值; 图形化界面生成模块, 用以根据所获取的站点的位置信息及对应的能耗 值,将所述的站点以及与所述站点所对应的能耗值图形化并呈现在一显示界面 上;
控件生成模块,用以生成一图形化且呈现于所述的显示界面上的能耗值选 择控件 , 所述能耗值选择控件用以选择至少一个目标能耗值或目标能耗值区 间; 以及
站点过滤模块,获取通过所述能耗值选择控件所选择的至少一个目标能耗 值或目标能耗值区间,根据所述目标能耗值选择控件所选择的目标能耗值或目 标能耗值区间来突出显示符合预定显示规则的图形化的站点及所述图形化的 站点对应的图形化的能耗值。
21. 如权利要求 20所述的站点能耗管理***,其特征在于, 所述的图形化 界面生成模块包括:
站点布局生成单元,用以根据所获取的站点的位置信息生成可视化的站点 分布图;
能耗图形化单元,用以将所获取的站点对应的能耗值图形化并呈现于所述 的可视化的站点分布图中, 其中, 所述的图形化的站点能耗值与对应的站点在 所述站点分布图中的几何位置相互关联。
22. 如权利要求 21所述的站点能耗管理***,其特征在于, 所述的图形化 界面生成模块还包括:
能耗分级赋形单元,用以根据所述与所述站点的对应的能耗值对所述站点 的能耗进行分级, 并将不同能耗等级的站点赋予不同的可视化的元素。
23. 如权利要求 20至 22任意一项所述的站点能耗管理***,其特征在于, 所述的站点过滤模块,具体用以将站点的能耗值与所选择的目标能耗值或者目 标能耗值区间做比较,突出显示能耗值大于所述目标能耗值的所述图形化的站 点及所述图形化的站点对应的图形化的能耗值。
24. 如权利要求 23所述的站点能耗管理***,其特征在于, 还包括: 图形显示弱化模块,用以在所述站点过滤模块将站点的能耗值与所选择的 目标能耗值或者目标能耗值区间做比较,突出显示能耗值大于所述目标能耗值 的站点同时或之后 ,弱化不符合所述预定显示规则的图形化的站点及对应的图 形化的能耗值。
25. 如权利要求 20至 22任意一项所述的站点能耗管理***,其特征在于, 所述的控件生成模块, 具体用以, 生成一图形化且呈现于所述的显示界面上的 能耗值选择控件, 将所述的能耗值选择控件与所述站点对应的能耗值相关联, 其中所述能耗值选择控件可选择的最大的目标能耗值不小于耗能最大的所述 站点的能耗值,其中所述能耗值选择控件可选择的最小的目标能耗值不大于耗 能最小的所述站点的能耗值。
26. 如权利要求 25所述的站点能耗管理***,其特征在于, 所述的控件生 成模块所实现的生成一图形化且呈现于所述的显示界面上的能耗值选择控件, 具体包括: 生成一图形化的以能耗值为刻度的标尺, 以及生成至少一可沿所述 的图形化的标尺移动以选择目标能耗值或目标能耗值区间的图形化的游标。
27. 如权利要求 25所述的站点能耗管理***,其特征在于, 还包括: 地域类型获取模块, 用以获取一设定的地域类型;
对应地,所述的站点过滤模块用以将所述符合预定显示规则的图形化的站 点的位置信息与所获取的地域类型进行匹配,将与所获取的地域类型匹配的图 形化的站点及所述图形化的站点所对应的图形化的能耗值突出显示。
28. 如权利要求 27所述的站点能耗管理***,其特征在于, 所述的图形显 示弱化模块还用以将符合预定显示规则的图形化的站点中的与所获取的地域 类型不匹配的的图形化的站点及站点所对应的图形化的能耗值弱化显示。
29. 如权利要求 27所述的站点能耗管理***,其特征在于, 所述的地域类 型获取模块包括:
地理位置信息分类单元, 用以将所述的站点的地理位置信息进行分类; 以 及
菜单生成单元,用以根据所述地理位置信息分类生成一呈现于所述显示界 面上的地域类型选择菜单,所述地域类型选择菜单用于选择某一或多个地域类 型。
30. 如权利要求 27所述的站点能耗管理***,其特征在于, 还包括: 节能控制模块, 用以生成一呈现于所述显示界面上的节能控件,通过该节 能控件来选择站点的节能控制参数,将所选择的节能控制参数配置到被突出显 示的站点 ,3†应地,
所述信息获取模块,用以获取站点的位置信息及配置了所述控制参数后的 站点对应的能耗值;
所述图形化界面生成模块,用以据所获取的站点的位置信息及配置了所述 控制参数后的站点对应的能耗值 ,将所述的站点以及与所述配置了所述控制参 数后的站点所对应的能耗值图形化并呈现在一显示界面上。
31.—种站点能耗呈现装置, 其特征在于, 包括:
站点及能耗显示模块,用以通过显示界面显示位于不同地理位置上的站点 及站点对应的能耗标识, 所述能耗标识用以指示站点的能耗等级; 控件生成模块,用以在所述显示有站点及站点的能耗标识的显示界面上生 成一能耗值选择控件,所述能耗值选择控件用以选择能耗等级或者能耗等级区 间; 以及
站点过滤模块,用以根据能耗值选择控件所选择的能耗等级或者能耗等级
32. 如权利要求 31所述的站点呈现装置,其特征在于, 还包括: 应的能耗标识。
33. 如权利要求 31所述的站点呈现装置,其特征在于, 还包括:
能耗赋形模块, 用以在所述的站点对应于多个不同的能耗等级时,将所述 属于不同能耗等级的站点的能耗标识赋予不同的可视化的元素。
34. 如权利要求 31至 33任意一项所述的站点呈现装置,其特征在于,还包 括:
地域类型获取模块,用以生成一呈现于所述的显示界面上的地域类型选择 菜单, 所述站点的地域类型及所述的地域类型选择菜单中的地域类型相关联; 对应地, 所述站点过滤模块, 用以当所述地域类型选择菜单中的某一或者 多个地域类型被选中时,突出显示与所述被选中的地域类型相匹配并符合所述 预定显示规则的站点以及站点所对应的能耗标识。
35. 如权利要求 31至 33任意一项所述的站点呈现装置,其特征在于,所述 的地域类型不匹配的站点及站点所对应的能耗标识。
36. 如权利要求 35所述的站点呈现装置,其特征在于, 还包括: 节能控制模块, 用以生成一呈现于所述显示界面上的节能控件, 所述节能 控件用以选择站点的节能控制参数,当所述节能控件所选择的节能控制参数被 配置到被突出显示的站点后;
对应地, 所述站点及能耗显示模块,用以通过显示界面显示位于不同地理 位置上的站点及配置了所述的节能控制参数的站点对应的能耗标识,所述能耗 标识用以指示站点的能耗等级。
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