Power distribution link diagram configuration method and device, equipment and storage medium

By generating a configuration panel for displaying models and power distribution link diagrams, combined with custom tools, the problem of incomplete display of power distribution link diagrams is solved, enabling efficient visualization and management of data center power distribution equipment, facilitating fault location and maintenance.

CN120909478APending Publication Date: 2025-11-07VERTIV CORP
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Patent Information

Application Number
CN202410551114.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-05-06
Publication Date
2025-11-07

AI Technical Summary

Technical Problem

Existing power distribution link visualization technology cannot fully display the relative positions of the power distribution links and equipment throughout the entire data center. The configuration work is complex, and it is a difficult task, especially for non-professionals.

Method used

A method for configuring power distribution link diagrams is provided. By receiving user operations, a display model and power distribution links are generated. The configuration panel displays the attribute information of power distribution equipment and links. Combined with the custom tools in the toolbar area, the power distribution link diagram can be quickly configured and visualized.

Benefits of technology

It improves the visualization level of power distribution link diagrams, reduces the complexity of configuration operations, makes it easier for users to view and manage the power distribution equipment and its links in the data center, and improves the efficiency of fault location and maintenance.

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Abstract

The invention provides a power distribution link diagram configuration method and device, equipment and a storage medium, and the method comprises the steps: receiving a first user operation of a user on a power distribution equipment list in a first interface, generating a display model of an object selected by the first user operation in response to the first user operation, and displaying the display model in a configuration region of the first interface. The configuration panel receives and responds to a second user operation to generate a power distribution link between the display models and displays the power distribution link, receives and responds to a third user operation performed on the target display model and / or the target power distribution link, and responds to the third user operation to generate the target display model and / or the target power distribution link; and the configuration panel is used for configuring attribute information of the power distribution equipment and / or the target power distribution link corresponding to the target display model. The method for quickly configuring the power distribution link diagram is provided, so that all power distribution equipment and power distribution links of the whole data center can be conveniently checked, the visualization level of the power distribution link diagram is improved, the operation complexity is reduced, and great convenience is brought to power distribution maintenance and management of the data center.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electric power, and in particular to a power distribution link diagram configuration method and device, equipment and a storage medium. BACKGROUND

[0002] With the development of artificial intelligence, data centers are facing a new round of growth demand. At the same time, the power distribution link of the data center has become more complex. The current important power distribution facilities usually adopt a 2N or N+1 redundant power configuration scheme, which greatly increases the complexity of the entire power distribution system, and not only puts forward new challenges to the maintenance work of the data center power distribution equipment, but also makes it more difficult to troubleshoot the power distribution link. Therefore, in order to help maintenance personnel more conveniently view and locate faults, visual power distribution link diagrams have emerged as the times require.

[0003] The visual power distribution link diagram refers to presenting all power distribution equipment in a three-dimensional diagram and connecting them with each other through lines. Such a power distribution link diagram can enable users to clearly master the connection relationship of the entire data center power distribution equipment and understand the power distribution link direction. More importantly, when the power distribution equipment or power distribution link is abnormal, the power distribution link diagram can help users quickly and accurately locate the fault position and judge the upstream and downstream equipment that may be affected, so as to facilitate quick fault repair.

[0004] However, most of the current visualization technologies can only display one or a few devices, and cannot comprehensively display the relative positions of the entire data center power distribution link and equipment. Moreover, due to the professionalism and complexity of the power distribution link diagram, the configuration work of the power distribution link diagram is a daunting task for non-professionals. SUMMARY

[0005] The present application provides a power distribution link diagram configuration method, device, equipment and storage medium, which is used to solve the technical problems of defects and complex configuration work in the prior art.

[0006] In a first aspect, the present application provides a power distribution link diagram configuration method, comprising:

[0007] Receiving a first user operation of a user on a power distribution equipment list in a first interface, generating a display model corresponding to an object selected by the first user operation in response to the first user operation, and displaying the display model in a configuration area of the first interface, the display model comprising a power distribution equipment model and / or a microsite model formed by power distribution equipment;

[0008] Receiving and responding to a second user operation to generate a power distribution link between the display models, and displaying the power distribution link;

[0009] receive and display a third user operation performed on a target display model and / or a target power distribution link, generate and display a configuration panel of the target display model and / or the target power distribution link, the configuration panel being used to configure attribute information of the target display model corresponding power distribution equipment and / or the target power distribution link in runtime.

[0010] The method for quickly configuring a power distribution link diagram is provided, so that a user can conveniently view all power distribution equipment and power distribution links thereof in an entire data center, the visualization level of the power distribution link diagram is improved, the operation complexity of configuring the power distribution link diagram is reduced, and great convenience is brought to power distribution maintenance and management of the data center.

[0011] In a possible design, the first interface further includes a toolbar area.

[0012] The toolbar area includes a custom tool for implementing configuration of the power distribution link diagram, and the custom tool includes at least one of a line drawing tool, an adjustment tool, a deletion tool, and a undo operation tool.

[0013] The toolbar area is configured on the first interface, so that the user can implement configuration operation on the power distribution link diagram by using the custom tool displayed in the toolbar area. The custom tool includes, but is not limited to, a line drawing tool, an adjustment tool, a deletion tool, a undo operation tool, and the like, and can improve flexibility and convenience of the configuration operation.

[0014] In a possible design, the power distribution link between the display models is generated in response to the second user operation, and the method includes:

[0015] In response to the second user operation performed on the power distribution equipment model, the power distribution link between the power distribution equipment models is generated according to a position relationship between power distribution equipment in the power distribution equipment model; and / or

[0016] In response to the second user operation performed on the power distribution equipment model and the microsite model, a selection pop-up box is generated and displayed, a selection operation performed on the selection pop-up box is received, and the power distribution link between the selected power distribution equipment in the microsite model and the power distribution equipment model is generated in response to the selection operation.

[0017] The power distribution link between the power distribution equipment models and / or between the power distribution equipment in the microsite model and the power distribution equipment model is generated based on the second user operation, and configuration of the power distribution link in the power distribution link diagram is completed.

[0018] In a possible design, in response to a third user operation performed on a target display model and / or a target power distribution link, a configuration panel of the target display model and / or the target power distribution link is generated and displayed, and the method includes:

[0019] In response to the third user operation on the target display model, a device configuration panel is generated and displayed for the power distribution equipment corresponding to the target display model, the target display model being the display model selected by the third user operation;

[0020] In response to the third user operation on the target power distribution link, a link configuration panel is generated and displayed for the target power distribution link, the target power distribution link being the power distribution link selected by the third user operation.

[0021] The configuration panel includes the device configuration panel and / or the link configuration panel.

[0022] The configuration panel is used to configure attribute information of the target display model and / or the target power distribution link based on a third user operation, so that the user can learn the attribute information of the target display model and its target power distribution link in real time, and accurately and quickly locate the fault.

[0023] In a possible design, the method further includes:

[0024] The custom configuration operation is received and responded to the display page of the device configuration panel and / or the link configuration panel, and the attribute category selected by the custom configuration operation is obtained, the attribute category being a category of the attribute information.

[0025] Through the configuration panel, the user can configure the category of the attribute information according to the user's own needs, facilitate the display of the attribute information of the configured attribute category, and enable the user to learn the state of the power distribution equipment and the power distribution link in real time and quickly locate the fault.

[0026] In a possible design, the method further includes:

[0027] A fourth user operation on a first target power distribution equipment is received, and a state progress bar is generated in response to the fourth user operation, the state progress bar being used to display the health state of the first target power distribution equipment.

[0028] Based on the fourth user operation, the health state of the power distribution equipment can be presented through the power distribution link diagram, which is convenient for predicting possible faults of the power distribution equipment and is beneficial to the management and maintenance of the power distribution equipment.

[0029] In a possible design, the method further includes:

[0030] A fifth user operation on a second target power distribution equipment and / or a first target power distribution link is received, and an attribute display panel is displayed in response to the fifth user operation, the attribute display panel being used to display the attribute information of the second target power distribution equipment and / or the first target power distribution link in operation.

[0031] The power distribution link diagram can be caused to display attribute information of the selected corresponding power distribution device and / or power distribution link at runtime through fifth user operation, so that the user can learn the attribute information in real time.

[0032] In a possible design, the method further includes:

[0033] The sixth user operation performed on a second target power distribution link is received, and upstream and downstream power distribution devices connected to the second target power distribution link are displayed in response to the sixth user operation.

[0034] The power distribution link diagram can be caused to display upstream and downstream power distribution devices of the power distribution link selected by the sixth user operation, so that when an abnormality occurs in a power distribution device or a power distribution link, the upstream and downstream devices of the power distribution link where the abnormality occurs can be quickly located, and the abnormality can be repaired.

[0035] In a possible design, the method further includes:

[0036] The seventh user operation performed on a third target power distribution link is received, and the third target power distribution link is hidden or identified by features in response to the seventh user operation.

[0037] The power distribution link diagram can be caused to display or identify the corresponding power distribution link selected by the seventh user operation through the seventh user operation, so that the user can adjust the power distribution link that can be identified as needed.

[0038] In a possible design, the method further includes:

[0039] The attribute information of the third target power distribution device and / or the fourth target power distribution link is acquired;

[0040] If it is determined according to the attribute information that the third target power distribution device and / or the fourth target power distribution link has an abnormality, a warning signal is generated, and a warning is made according to the warning signal.

[0041] The warning signal is generated based on the attribute information, and the power distribution device and / or the power distribution link having an abnormality is timely warned by the warning signal to notify the maintenance personnel, so that the warning and reporting capability of the power distribution link diagram is improved.

[0042] In a second aspect, the present application provides a power distribution link diagram configuration device, which includes:

[0043] The model generation module is configured to receive a first user operation performed by a user on a power distribution device list in a first interface, generate a display model corresponding to a selected object of the first user operation in response to the first user operation, and display the display model in a configuration area of the first interface, where the display model includes a power distribution device model and / or a microsite model formed by power distribution devices.

[0044] a link generation module, configured to receive and generate, in response to a second user operation, a power distribution link between the display models, and display the power distribution link;

[0045] a data generation module, configured to receive and generate, in response to a third user operation performed on a target display model and / or a target power distribution link, a configuration panel of the target display model and / or the target power distribution link, the configuration panel being used to configure attribute information of the target display model corresponding power distribution equipment and / or the target power distribution link in runtime.

[0046] The device for quickly configuring a power distribution link diagram is provided, so that a user can conveniently view all power distribution equipment and power distribution links thereof in an entire data center, the visualization level of the power distribution link diagram of the data center is improved, the operation complexity is reduced, and great convenience is brought to power distribution maintenance and management of the data center.

[0047] In a possible design, the first interface further includes a toolbar area;

[0048] The toolbar area includes a custom tool for implementing configuration of the power distribution link diagram, and the custom tool includes at least one of a line drawing tool, an adjustment tool, a deletion tool, and a undo operation tool.

[0049] The toolbar area is configured on the first interface, so that a user can implement configuration operation on the power distribution link diagram by using the custom tool displayed in the toolbar area. The custom tool includes, but is not limited to, a line drawing tool, an adjustment tool, a deletion tool, a undo operation tool, and the like, and can improve flexibility and convenience of the configuration operation. In a possible design, the link generation module is specifically configured to:

[0050] in response to the second user operation performed on the power distribution equipment model, generate the power distribution link between the power distribution equipment models according to a position relationship between power distribution equipment in the power distribution equipment model; and / or

[0051] in response to the second user operation performed on the power distribution equipment model and the microsite model, generate and display a selection pop-up box, and receive and generate, in response to a selection operation performed on the selection pop-up box, the power distribution link between the selected power distribution equipment in the microsite model and the power distribution equipment model.

[0052] The power distribution link between the power distribution equipment models and / or between the power distribution equipment in the microsite model and the power distribution equipment model is generated based on the second user operation, and configuration of the power distribution link in the power distribution link diagram is completed.

[0053] In a possible design, the data generation module is specifically configured to:

[0054] In response to the third user operation on the target display model, a device configuration panel is generated and displayed for the power distribution equipment corresponding to the target display model, the target display model being the display model selected by the third user operation;

[0055] In response to the third user operation on the target power distribution link, a link configuration panel is generated and displayed for the target power distribution link, the target power distribution link being the power distribution link selected by the third user operation;

[0056] The configuration panel includes the device configuration panel and / or the link configuration panel.

[0057] Based on the third user operation to complete the configuration of the configuration panel, the configuration panel is used to configure the attribute information of the target display model and / or the target power distribution link, so that the user can timely know the attribute information of the target display model and its target power distribution link in operation, and accurately and quickly locate the fault.

[0058] In a possible design, the data generation module is further configured to:

[0059] In response to the display page of the device configuration panel and / or the link configuration panel, the custom configuration operation is received and processed, the attribute category selected by the custom configuration operation is obtained, and the attribute category is the category of the attribute information.

[0060] Through the configuration panel, the user can configure the category of the attribute information according to the own demand, facilitate the display of the attribute information of the configured attribute type, and enable the user to timely know the state of the power distribution equipment and the power distribution link and quickly locate the fault.

[0061] In a possible design, the apparatus further includes a first display module, and the first display module is configured to:

[0062] The fourth user operation on the first target power distribution equipment is received, and a state progress bar is generated in response to the fourth user operation, the state progress bar displaying the health state of the first target power distribution equipment.

[0063] Based on the fourth user operation, the health state of the power distribution equipment can be presented through the power distribution link diagram, which is convenient for predicting the possible fault of the power distribution equipment and is beneficial to the management and maintenance of the power distribution equipment.

[0064] In a possible design, the apparatus further includes a second display module, and the second display module is configured to:

[0065] receiving a fifth user operation on the second target power distribution device and / or the first target power distribution link, and displaying an attribute display panel in response to the fifth user operation, the attribute display panel being used to display the attribute information of the second target power distribution device and / or the first target power distribution link when each of them is running.

[0066] The fifth user operation enables the power distribution link diagram to display the attribute information of the selected corresponding power distribution device and / or power distribution link when running, and facilitates the user to obtain the attribute information in real time.

[0067] In a possible design, the apparatus further includes a third display module, and the third display module is configured to:

[0068] receiving a sixth user operation on the second target power distribution link, and displaying the upstream power distribution device and the downstream power distribution device connected to the second target power distribution link in response to the sixth user operation.

[0069] The sixth user operation enables the power distribution link diagram to display the upstream and downstream power distribution devices of the power distribution link selected by the sixth user operation, and when an abnormality occurs in a power distribution device or a power distribution link, the upstream and downstream devices of the power distribution link where the abnormality occurs can be quickly located, thereby facilitating abnormality repair.

[0070] In a possible design, the apparatus further includes a fourth display module, and the fourth display module is configured to:

[0071] receiving a seventh user operation on the third target power distribution link, and hiding or characterizing the third target power distribution link in response to the fourth user operation.

[0072] The seventh user operation enables the power distribution link diagram to display or characterize the corresponding power distribution link selected by the seventh user operation, thereby facilitating the user to adjust the power distribution link that can be characterized as needed.

[0073] In a possible design, the apparatus further includes a warning module, and the warning module is configured to:

[0074] obtaining the attribute information of the third target power distribution device and / or the fourth target power distribution link;

[0075] if it is determined according to the attribute information that the third target power distribution device and / or the fourth target power distribution link has an abnormality, generating a warning signal, and warning according to the warning signal.

[0076] The warning signal is generated based on the attribute information, and the power distribution device and / or the power distribution link having an abnormality is warned in time by the warning signal to notify the maintenance personnel, thereby improving the warning and reporting capability of the power distribution link diagram.

[0077] In a third aspect, the present application provides an electronic device, comprising a processor and a memory connected to the processor in communication;

[0078] The memory stores computer-executable instructions.

[0079] The processor executes the computer-executable instructions stored in the memory to implement any one of the possible power distribution link diagram configuration methods provided in the first aspect.

[0080] In a fourth aspect, the present application provides a computer-readable storage medium, which stores computer-executable instructions, and the computer-executable instructions are executed by a processor to implement any one of the possible power distribution link diagram configuration methods provided in the first aspect.

[0081] In a fifth aspect, the present application provides a computer program product, which comprises computer-executable instructions, and the computer-executable instructions are executed by a processor to implement any one of the possible power distribution link diagram configuration methods provided in the first aspect.

[0082] The present application provides a power distribution link diagram configuration method, device, equipment and storage medium. First, a first user operation of a user on a power distribution equipment list in a first interface is received. A display model of an object selected by the first user operation is generated in response to the first user operation, and the display model is displayed in a configuration area of the first interface. The display model comprises a power distribution equipment model and / or a microsite model formed by power distribution equipment. Then, a power distribution link between the display models is generated and displayed in response to a second user operation. A configuration panel of a target display model and / or a target power distribution link is generated and displayed in response to a third user operation on the target display model and / or the target power distribution link. The configuration panel is used to configure attribute information of a power distribution equipment corresponding to the target display model and / or the target power distribution link in a running state. A method for quickly configuring a power distribution link diagram is provided, so that a user can easily view all power distribution equipment and power distribution links in a data center, the visualization level of the power distribution link diagram can be improved, the operation complexity of configuring the link diagram can be reduced, and great convenience is brought to the power distribution maintenance and management of the data center. BRIEF DESCRIPTION OF DRAWINGS

[0083] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description are some embodiments of the present application, and those skilled in the art can also obtain other drawings according to these drawings without creative labor.

[0084] Figure 1 An application scenario schematic diagram is provided for the embodiments of the present application.

[0085] Figure 2 A schematic flowchart illustrating a power distribution link diagram configuration method provided in an embodiment of this application;

[0086] Figure 3 and Figure 4 A schematic diagram of the configuration power distribution equipment model and micro-site model provided in the embodiments of this application;

[0087] Figure 5 A schematic diagram illustrating the configuration of a power distribution link provided in an embodiment of this application;

[0088] Figure 6 A schematic diagram of a selection pop-up provided in an embodiment of this application;

[0089] Figure 7 A schematic diagram of another configuration of the power distribution link provided in an embodiment of this application;

[0090] Figure 8 and Figure 9 A schematic diagram of the configuration panel provided in an embodiment of this application;

[0091] Figure 10 A schematic diagram of the toolbar area provided in the embodiments of this application;

[0092] Figure 11 A schematic diagram illustrating the status progress bar of power distribution equipment provided in an embodiment of this application;

[0093] Figure 12 A schematic diagram of the attribute display panel provided in an embodiment of this application;

[0094] Figure 13 A schematic diagram illustrating the upstream and downstream power distribution equipment of a power distribution link is provided for an embodiment of this application;

[0095] Figure 14 and Figure 15 A schematic diagram illustrating the display and hiding of power distribution links provided in an embodiment of this application;

[0096] Figure 16 This is a schematic diagram of a power distribution link diagram configuration device provided in an embodiment of this application;

[0097] Figure 17 This is a schematic diagram of the structure of an electronic device provided in an embodiment of this application. Detailed Implementation

[0098] The exemplary embodiments will be described in detail herein with reference to the attached drawings. The description of the exemplary embodiments is intended to apply to all alternative embodiments, as would be understood by persons skilled in the art. To the extent that they do not particularize to the application, the following exemplary embodiments are not intended to be limiting of the scope of the application, but rather the scope of the application is to be measured by the claims and their equivalents. The following exemplary embodiments are presented in terms of exemplary implementations, which should not be construed as limiting the scope of the application. Rather, these exemplary implementations are presented for purposes of exemplification and to convey the principles of the application to others skilled in the art.

[0099] The terms "first", "second", "third", "fourth" and the like in the description and in the claims, if any, of the present application are used for distinguishing between similar elements and not necessarily for describing a particular sequential or chronological order. It is to be understood that the use of these terms herein is to be construed as interchangeable in order to distinguish over example embodiments of the present application from other example embodiments of the present application. Furthermore, these terms can be used interchangeably in the description of the application with "first", "second", "third", "fourth" and the like to mean "one", "two", "three", "four" and the like unless otherwise specifically stated herein. Still further, the terms "including", "containing", "comprising", "having" and the like are meant to be interpreted as specifying the presence of stated features or components rather than precluding the presence or addition of one or more other features, components, steps or steps.

[0100] Visualizing power distribution link diagram refers to presenting all power distribution devices in a three-dimensional diagram and connecting them with each other by lines. Such a power distribution link diagram can enable a user to clearly understand the connection relationship of the entire data center power distribution devices and know the power distribution link direction. More importantly, when the power distribution device or power distribution link is abnormal, the power distribution link diagram can help the user quickly and accurately locate the fault position and judge the upstream and downstream devices that may be affected, facilitating quick repair of the fault. However, most of the current visualization technology can only display one or a few devices, and cannot fully display the relative positions of the entire data center power distribution link and devices. Moreover, due to the professionalism and complexity of the power distribution link diagram, the configuration work of the power distribution link diagram is a difficult task for non-professionals.

[0101] To address the aforementioned problems in the prior art, this application provides a power distribution link diagram configuration method, apparatus, device, and storage medium. The inventive concept of the power distribution link diagram configuration method provided in this application is as follows: First, it receives and responds to a first user operation performed on a power distribution device on a first interface, generates a display model corresponding to the object selected by the first operation, and displays the display model in the configuration area of ​​the first interface. Then, based on a second user operation, it generates and displays the power distribution links between the display models. Next, based on a third user operation, it generates a configuration panel for the display model and / or power distribution links selected by the third user operation. The configuration panel is used to configure the runtime attribute information of the power distribution device and / or the selected power distribution links corresponding to the selected display model, thus completing the visualization of the power distribution link diagram. This allows users to view the power distribution device and power distribution links of each site in the data center within the visualization interface, facilitating power distribution maintenance and management of the data center. Furthermore, it reduces the complexity of configuration operations and improves the practicality of power distribution link diagram configuration.

[0102] The following describes exemplary application scenarios of the embodiments of this application.

[0103] Figure 1 This is a schematic diagram of an application scenario provided by an embodiment of this application. Based on user operations, a power distribution link diagram can be quickly generated for a data center 200, so that the power distribution equipment and power distribution links of each site of the data center 200 can be visualized in the configuration area of ​​the first interface. This makes it easy for users to view all the power distribution equipment and their power distribution links in the entire data center, improves the visualization level of the power distribution link diagram, reduces the complexity of configuring the link diagram, and brings great convenience to the power distribution maintenance and management of the data center.

[0104] In some embodiments, the electronic device 100 may be, for example, a computer, server, smartphone, tablet computer, smart wearable device, etc. This application embodiment does not limit the type of electronic device 100. Figure 1 The electronic device 100 in the example is a computer.

[0105] It should be noted that the above application scenarios are merely illustrative, and the power distribution link diagram configuration method, apparatus, equipment, and storage medium provided in the embodiments of this application include, but are not limited to, the above application scenarios.

[0106] Figure 2 This is a flowchart illustrating a power distribution link diagram configuration method provided in an embodiment of this application. Figure 2 As shown in the embodiments of this application, the power distribution link diagram configuration method includes:

[0107] S101: receive a first user operation of a user on a power distribution equipment list in a first interface, generate a display model corresponding to an object selected by the first user operation in response to the first user operation, and display the display model in a configuration area of the first interface.

[0108] The display model includes a power distribution equipment model and / or a microsite model formed by power distribution equipment.

[0109] The first interface is an interface for presenting the display model displayed by the electronic device to the user, and the first interface is preconfigured with a power distribution equipment list. The configuration area is an interface where the power distribution link diagram is configured. The electronic device receives a first user operation of a user on a power distribution equipment list in a first interface, generates a display model corresponding to an object selected by the first user operation in response to the first user operation, and displays the display model in a configuration area of the first interface. The object selected by the first user operation can be a power distribution equipment and / or a microsite formed by a power distribution equipment. Accordingly, the generated display model includes a model corresponding to the power distribution equipment selected by the first user operation, i.e., a power distribution equipment model, and / or a model corresponding to the microsite formed by the power distribution equipment selected by the first user operation, i.e., a microsite model. In actual working conditions, the specific content of the display model is determined by the object selected by the first user operation.

[0110] In some embodiments, the first user operation of the user can be performed with reference to a drawing of the data center, for example, selecting a corresponding power distribution equipment and / or a microsite formed by a power distribution equipment from the power distribution equipment of each site of the data center.

[0111] It should be noted that the site is a data center management solution, which is a high-level room manager of the data center. It can help the data center to more efficiently manage and distribute power to the power distribution equipment. At the same time, it also maximizes the use efficiency of space by optimizing the layout of the power distribution equipment, ensuring that the power distribution equipment can work well and not occupy too much space. The power distribution equipment of the site can form a microsite, or can be distributed outside the microsite. The power distribution equipment forming the microsite can be configured in advance, and the microsite can be understood as a sub-site in the site.

[0112] In a possible design, the possible implementation of step S101 includes:

[0113] For example, the electronic device is preconfigured with a power distribution equipment list such as shown in the power distribution equipment list in Figure 3 and Figure 4 The power distribution equipment list classifies the power distribution equipment and / or microsite under each site in a classified manner, for example Figure 3RDU_10.146102.15 in the power distribution equipment list shown is the name of a site, and the drop-down menu of the site is preset with the power distribution equipment under the site, wherein the site without a home site refers to a site without a category name defined. The user selects the power distribution equipment and / or micro site formed by the power distribution equipment currently to be configured in the power distribution equipment list, the electronic device receives the first user operation, and then generates the model of the selected power distribution equipment and / or micro site corresponding to the first user operation in response to the first user operation, that is, the display model, and outputs the display model to the configuration area of the first interface.

[0114] Optionally, the first user operation can include but is not limited to various operations such as dragging, clicking, double-clicking, etc. from the power distribution equipment list to select the corresponding power distribution equipment and / or micro site. For example, Figure 3 and Figure 4 respectively show the power distribution equipment model 101 and the micro site model 102 generated by the dragging operation.

[0115] S102: receiving and responding to the second user operation to generate the power distribution link between the display models and displaying the power distribution link.

[0116] After the display model is generated, the display model is stored, and further based on the second user operation performed by the user, a connection line between the power distribution equipment models and / or between the power distribution equipment in the micro site model is generated, the configuration of the power distribution link is completed, and the generated power distribution link is output and displayed. It can be understood that the second user operation is used to select the corresponding power distribution equipment model and / or micro site model which needs to be configured with the power distribution link.

[0117] In a possible design, the possible implementation of step S102 includes:

[0118] The user can perform the second user operation on the power distribution equipment model which needs to be configured with the power distribution link based on the circuit diagram paper of the data center, so as to select the corresponding power distribution equipment model which needs to be configured with the power distribution link through the second user operation, the electronic device receives the second user operation, and then generates the connection line between the selected power distribution equipment models in response to the second user operation, that is, generates and displays the power distribution link between the selected power distribution equipment models as shown in Figure 5 .

[0119] If the power distribution link between the power distribution equipment model and the micro site model also needs to be generated, or only the power distribution link between the power distribution equipment model and the micro site model needs to be generated, similarly, the user can select the power distribution equipment model and the micro site model which needs to be configured with the power distribution link through the second user operation based on the circuit diagram paper in the data, the electronic device receives the second user operation, and in response to the second user operation, can first generate and display the power distribution link between the power distribution equipment model and the micro site model as shown inFigure 6 The user selects the microsite model in the selection pop-up box 104, and then performs a selection operation on the selection pop-up box to select the power distribution equipment in the microsite model that needs to be configured with a power distribution link. The electronic device receives the selection operation performed by the user on the selection pop-up box to obtain the power distribution equipment in the microsite model, and then automatically connects the power distribution equipment model selected based on the second user operation and the power distribution equipment selected in the microsite model, to generate a power distribution link 105 between the selected power distribution equipment model and the selected power distribution equipment in the microsite model as shown by the white line. Figure 7 The configuration of the power distribution link between the power distribution equipment model and the microsite model is completed.

[0120] In some embodiments, the second user operation can include, but is not limited to, any one of a single click, a double click, and a selection operation.

[0121] S103: Receiving and responding to a third user operation on the target display model and / or the target power distribution link, generating and displaying a configuration panel of the target display model and / or the target power distribution link.

[0122] The configuration panel is used to configure the attribute information of the power distribution equipment corresponding to the target display model and / or the target power distribution link at runtime.

[0123] After the configuration of the power distribution link is completed, the power distribution link is stored, and further, the display model and / or the power distribution link that needs to be bound with attribute information can be selected by a third user operation according to actual conditions. The attribute information includes alarm data and attribute data of the power distribution equipment and / or the power distribution link in the display model at runtime, etc.

[0124] For example, the electronic device receives a third user operation, and in response to the third user operation, generates and displays a corresponding configuration panel for the display model and / or the power distribution link selected by the third user operation, and then binds the attribute information of the display model and / or the target power distribution link selected by the third user operation through the configuration panel. The target display model is the display model selected by the third user operation, and the target power distribution link is the power distribution link selected by the third user operation.

[0125] Specifically, the third user operation of the user can be performed on a corresponding display model, indicating that the corresponding display model needs to be generated with a configuration panel and have attribute information bound thereto through the configuration panel. The electronic device, in response to the third user operation performed on the corresponding display model, generates and displays a device configuration panel 106 as shown by the dashed box in FIG. Figure 8

[0126] ​Third-party user operations can also be performed on the corresponding power distribution link, indicating a need to generate a configuration panel for that link in order to bind attribute information. The electronic device responds to the third-party user operation on that link by generating and displaying, as shown in the image. Figure 9 The link configuration panel 107 is shown in the dashed box.

[0127] In some embodiments, the configuration panel may include a device configuration panel and / or a link configuration panel.

[0128] S104: Receive and respond to a custom configuration operation performed on the display page of the device configuration panel and / or link configuration panel, and obtain the attribute category selected in the custom configuration operation.

[0129] Among them, the attribute category is the category of attribute information.

[0130] Users can perform custom configuration operations on the respective display pages of the device configuration panel and / or link configuration panel. The electronic device receives the custom configuration operation and then responds to the custom configuration operation to obtain the category of attribute information to be bound by the user through the custom configuration operation, that is, the attribute category.

[0131] For example, refer to Figure 8 As shown, the configuration panel corresponding to the display model, i.e. the device configuration panel, allows configuration of various attribute categories such as device fault status, display signals, and downstream devices. For example, users can check the corresponding content. The check operation is a user-defined configuration operation. The electronic device receives and responds to the user's check operation, obtains the corresponding attribute category selected by the check operation, and completes the configuration of the attribute category of the power distribution equipment corresponding to the current display model. The checked attribute category is the category of attribute information bound to the display model selected by the third user operation.

[0132] And / or, for example Figure 9 As shown, the configuration panel of the power distribution link, also known as the link configuration panel, can configure various attribute categories such as custom attributes and abnormal alarms. For example, the user can check the corresponding attribute category of the current power distribution link. The check operation is the user's custom configuration operation. The electronic device receives and responds to the user's check operation, obtains the corresponding attribute category selected by the check operation, and completes the configuration of the attribute category of the current power distribution link. The checked attribute category is the category of attribute information bound to the power distribution link selected by the third user.

[0133] At this point, through the above steps, after the configuration of the display model and the power distribution link is completed, the configuration of the selected corresponding display model and / or power distribution link configuration panel is further completed, and the configuration of the site power distribution link diagram is completed, so that the power distribution link diagram can be visualized in the configuration area of the first interface.

[0134] In some embodiments, the display model can also be a two-dimensional display, which facilitates the configuration operation of dragging, rotating and displaying data of the corresponding power distribution equipment and / or power distribution link.

[0135] As can be seen from the above embodiment description, the power distribution link diagram configuration method provided by the embodiments of the present application first receives the first user operation of the user on the power distribution equipment list in the first interface, generates the display model of the object selected by the first user operation in response to the first user operation, and displays the display model in the configuration area of the first interface. The display model includes a power distribution equipment model and / or a micro-site model formed by a power distribution equipment. Then, the power distribution link between the display models is generated and displayed in response to the second user operation, and the configuration panel of the target display model and / or the target power distribution link is generated and displayed in response to the third user operation on the target display model and / or the target power distribution link. The configuration panel is used to configure the attribute information of the target display model corresponding power distribution equipment and / or the target power distribution link in runtime. A method for quickly configuring a power distribution link diagram is provided, which makes it convenient for the user to view all power distribution equipment and its power distribution link in the entire data center, improves the visualization level of the power distribution link diagram, reduces the operation complexity of the link diagram configuration, and brings great convenience for the power distribution maintenance and management of the data center.

[0136] In a possible design, the first interface can further include a toolbar area. The toolbar area includes custom tools that can implement configuration on the power distribution link diagram.

[0137] In some embodiments, the custom tools can include, but are not limited to, at least one of a line drawing tool, an adjustment tool, a deletion tool, and a undo operation tool.

[0138] For example Figure 10The toolbar area shown from left to right can have the following custom tools: a line drawing tool, enabling the line drawing tool can enter a line drawing mode, and on the power distribution link diagram, the connection between power distribution equipment models and between power distribution equipment models and microsite models can be performed; a reverse line tool, for example, enabling the reverse line tool can reverse the connection of the selected power distribution link; an adjust to central perspective tool, when the configuration area is rotated, the adjust to central perspective tool can be enabled to make the perspective of the electronic device return to the top of the configuration area; a zoom out perspective tool, enabling the zoom out perspective tool can zoom out the power distribution link diagram by a preset ratio; a zoom in perspective tool, enabling the zoom in perspective tool can zoom in the power distribution link diagram by a preset ratio; a delete tool can perform a delete operation on the power distribution equipment models, microsite models, power distribution links and other units in the power distribution link diagram; a undo tool can undo the previous addition, configuration, deletion, movement, rotation and other operations performed on the power distribution link diagram; a cancel undo tool is used to cancel the undo operation; and a rotation tool is used to rotate the selected power distribution equipment model, microsite model and entire power distribution link diagram by a preset angle.

[0139] In some embodiments, the adjustment tool can be, for example Figure 10 any one or more of the reverse line tool, the adjust to central perspective tool, the zoom out perspective tool, the zoom in perspective tool, and the rotation tool shown in Figure 10 the undo tool, the cancel undo tool, and the like.

[0140] The toolbar area provided in the first interface can enable the user to timely adjust the power distribution link diagram according to the actual situation and facilitate viewing, to provide a more intuitive and flexible perspective for the power distribution link diagram.

[0141] In a possible design, the power distribution link diagram configuration method provided by the embodiments of the present application further includes a possible implementation manner of generating a display interface.

[0142] For example, the display interface can display the health status of the power distribution equipment as shown in Figure 11 Specifically, the user can perform a fourth user operation on some power distribution equipment, the fourth user operation being used to select the power distribution equipment whose health status needs to be displayed, and the power distribution equipment selected by the user through the fourth user operation can be collectively referred to as a first target power distribution equipment. The electronic device receives the fourth user operation performed on the first target power distribution equipment, and then generates a state progress bar of the first target power distribution equipment in response to the fourth user operation, the state progress bar being used to display the health status of the first target power distribution equipment. The health status displayed by the state progress bar can be the load rate of the first target power distribution equipment, and through the health status, the possible failure of the first target power distribution equipment can be predicted. In some embodiments, the fourth user operation can be various operations such as single-click, selection, swipe, and the like, for which the embodiments of the present application are not limited.

[0143] For another example, the display interface can further display an attribute display panel of the power distribution device and / or the power distribution link as shown in Figure 12 Specifically, the user can perform a fifth user operation on some power distribution devices and / or power distribution links, the fifth user operation being used for selecting the power distribution devices and / or the power distribution links for which the attribute display panel needs to be displayed, the power distribution devices selected by the user in the fifth user operation can be collectively referred to as second target power distribution devices, the power distribution links selected by the user in the fifth user operation can be collectively referred to as first target power distribution links, the electronic device receives the fifth user operation performed on the second target power distribution devices and / or the first target power distribution links, and then displays the attribute display panel corresponding to each of the second target power distribution devices and / or the first target power distribution links in response to the fifth user operation, the attribute display panel being as shown in Figure 12 Specifically, the attribute display panel is used for displaying the attribute information of each of the second target power distribution devices and / or the first target power distribution links in operation, the attribute information being configured through the configuration panel as shown in Figure 8 and / or Figure 9 In some embodiments, the fifth user operation can be various operations such as single clicking, selecting, swiping, etc., and the embodiments of the present application are not limited in this regard.

[0144] For another example, the display interface can further display the upstream and downstream power distribution devices of the power distribution link as shown in Figure 13 and the downstream power distribution devices as shown in Figure 13 109 and 1010 in the dashed box, Figure 13 The number of the upstream and downstream power distribution devices shown in Specifically, the user can perform a sixth user operation on some power distribution links, the sixth user operation being used for selecting the power distribution links for which the upstream and downstream power distribution devices need to be displayed, the power distribution links selected by the user in the sixth user operation can be collectively referred to as second target power distribution links, the electronic device receives the sixth user operation performed on the second target power distribution links, and then displays the upstream and downstream power distribution devices connected to the second target power distribution links in response to the sixth user operation, which can be displayed in a highlighted manner in actual working conditions, so that the user can intuitively view the upstream and downstream power distribution devices. The sixth user operation can be various operations such as single clicking, selecting, swiping, etc., and the embodiments of the present application are not limited in this regard.

[0145] For another example, the display interface can further display or feature mark the power distribution link. Specifically, the user can perform a seventh user operation on some power distribution links that need to be hidden or feature marked, the seventh user operation being used for selecting the power distribution links that need to be feature marked or hidden, the power distribution links selected by the user in the seventh user operation can be collectively referred to as third target power distribution links, the electronic device receives the seventh user operation performed on the third target power distribution links, and then feature marks or hides the third target power distribution links in response to the seventh user operation, the feature marking can be displayed by means such as highlighting, feature color marking, etc. For example, in combination with Figure 14 andFigure 15 As shown, Figure 15 Hidden in the Figure 14 Some power distribution links.

[0146] Further, the display interface can also notify the power distribution equipment and / or the power distribution link of possible abnormalities or failures through early warning signals. For example, the electronic device can obtain attribute information of each power distribution equipment and / or each power distribution link in the power distribution link diagram in real time, i.e., the third target power distribution equipment and / or the fourth target power distribution link. For example, according to the attribute information, such as the fault state, abnormal alarm, and the like, it can be judged whether the current power distribution equipment and / or the power distribution link has an abnormality or a failure. For example, specific parameters included in the alarm data are compared with preset parameters. If the corresponding threshold is exceeded, it indicates that the current power distribution equipment and / or the power distribution link has an abnormality or a failure. Then, an early warning signal is generated, and early warning is performed according to the early warning signal. For example, the early warning signal is a flashing signal. The power distribution equipment and / or the power distribution link with an abnormality or a failure in the power distribution link diagram will flash, which plays a role in early warning and facilitates notification of maintenance personnel.

[0147] In some embodiments, the display interface can be a three-dimensional interface, which facilitates display of corresponding content.

[0148] As can be seen from the description of the above embodiments, the power distribution link diagram configuration method provided by the embodiments of the present application can also generate a display interface for the power distribution link diagram. Through the display interface, the power distribution link diagram can be viewed in multiple dimensions, the state of the power distribution equipment and the power distribution link in the power distribution link diagram can be more intuitively understood, possible failures or abnormalities can be accurately and quickly located, and timely early warning can be performed, which facilitates power distribution maintenance and management in the data center.

[0149] Figure 16 A structural schematic diagram of a power distribution link diagram configuration device provided by the embodiments of the present application is shown in Figure 16 As shown, the power distribution link diagram configuration device 400 provided by the embodiments of the present application comprises:

[0150] The model generation module 401 is configured to receive a first user operation performed by a user on a power distribution equipment list in a first interface, generate a display model corresponding to a selected object of the first user operation in response to the first user operation, and display the display model in a configuration area of the first interface. The display model comprises a power distribution equipment model and / or a microsite model formed by the power distribution equipment.

[0151] The link generation module 402 is configured to receive and generate a power distribution link between the display models in response to a second user operation, and display the power distribution link.

[0152] The data generation module 403 is configured to receive and respond to a third user operation on the target display model and / or the target power distribution link, generate and display a configuration panel of the target display model and / or the target power distribution link, and the configuration panel is used to configure attribute information of the target display model corresponding power distribution equipment and / or the target power distribution link in runtime.

[0153] In a possible design, the first interface further includes a toolbar area.

[0154] The toolbar area includes a custom tool for implementing configuration on the power distribution link diagram, and the custom tool includes at least one of a line drawing tool, an adjustment tool, a deletion tool, and a undo operation tool.

[0155] In a possible design, the link generation module 402 is specifically configured to:

[0156] generate, in response to a second user operation on the power distribution equipment model, a power distribution link between the power distribution equipment models according to a positional relationship between the power distribution equipment in the power distribution equipment model; and / or

[0157] generate and display a selection pop-up box in response to a second user operation on the power distribution equipment model and the microsite model, receive and respond to a selection operation on the selection pop-up box to generate a power distribution link between the selected power distribution equipment in the microsite model and the power distribution equipment model.

[0158] In a possible design, the data generation module 403 is specifically configured to:

[0159] generate and display, in response to a third user operation on the target display model, a device configuration panel for the target display model corresponding power distribution equipment, the target display model being a display model selected by the third user operation;

[0160] generate and display, in response to a third user operation on the target power distribution link, a link configuration panel for the target power distribution link, the target power distribution link being a power distribution link selected by the third user operation;

[0161] The configuration panel includes the device configuration panel and / or the link configuration panel.

[0162] In a possible design, the data generation module 403 is further configured to:

[0163] receive and respond to a custom configuration operation on a display page of the device configuration panel and / or the link configuration panel, and obtain an attribute category selected by the custom configuration operation, the attribute category being a category of the attribute information.

[0164] In a possible design, the power distribution link diagram configuration apparatus 400 provided by the embodiment of the present application further includes a first display module, which is configured to:

[0165] receiving a fourth user operation on the first target power distribution device, and generating a state progress bar in response to the fourth user operation, the state progress bar being used to show the health state of the first target power distribution device.

[0166] In a possible design, the power distribution link diagram configuration apparatus 400 provided by an embodiment of the present application further includes a second display module, which is configured to:

[0167] receiving a fifth user operation on the second target power distribution device and / or the first target power distribution link, and displaying an attribute display panel in response to the fifth user operation, the attribute display panel being used to display attribute information of the second target power distribution device and / or the first target power distribution link respectively in operation.

[0168] In a possible design, the power distribution link diagram configuration apparatus 400 provided by an embodiment of the present application further includes a third display module, which is configured to:

[0169] receiving a sixth user operation on the second target power distribution link, and displaying an upstream power distribution device and a downstream power distribution device connected to the second target power distribution link in response to the sixth user operation.

[0170] In a possible design, the power distribution link diagram configuration apparatus 400 provided by an embodiment of the present application further includes a fourth display module, which is configured to:

[0171] receiving a seventh user operation on the third target power distribution link, and hiding or characterizing the third target power distribution link in response to the fourth user operation.

[0172] In a possible design, the power distribution link diagram configuration apparatus 400 provided by an embodiment of the present application further includes a pre-warning module, which is configured to:

[0173] obtaining attribute information of the third target power distribution device and / or the fourth target power distribution link;

[0174] if it is determined according to the attribute information that the third target power distribution device and / or the fourth target power distribution link is abnormal, generating a pre-warning signal, and pre-warning according to the pre-warning signal.

[0175] The power distribution link diagram configuration apparatus provided by the embodiment of the present application can perform the corresponding steps of the power distribution link diagram configuration method in the method embodiment, and the implementation principles and technical effects are similar, which will not be described here again.

[0176] Figure 17 A structural schematic diagram of an electronic device provided by an embodiment of the present application is shown in FIG. 5. Figure 17 As shown in FIG. 5, the electronic device 500 can include a processor 501 and a memory 502 connected with the processor 501.

[0177] The memory 502 is configured to store a program. Specifically, the program can include program code including computer-executable instructions.

[0178] The memory 502 can include a high-speed RAM memory, and can further include a non-volatile memory such as at least one disk memory.

[0179] The processor 501 is configured to execute the computer-executable instructions stored in the memory 502 to implement the power distribution link diagram configuration method.

[0180] The processor 501 can be a central processing unit (CPU), or an application specific integrated circuit (ASIC), or one or more integrated circuits configured to implement the embodiments of the present application.

[0181] Optionally, the memory 502 can be independent or integrated with the processor 501. When the memory 502 is independent of the processor 501, the electronic device 500 can further include:

[0182] The bus 503 is configured to connect the processor 501 and the memory 502. The bus can be an industry standard architecture (ISA) bus, a peripheral component (PCI) bus, or an extended industry standard architecture (EISA) bus, etc. The bus can be divided into an address bus, a data bus, a control bus, etc., but does not mean that there is only one bus or one type of bus.

[0183] Optionally, in a specific implementation, if the memory 502 and the processor 501 are integrated on a chip, the memory 502 and the processor 501 can communicate through an internal interface.

[0184] The application further provides a computer readable storage medium, which can include a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, and various media capable of storing program codes. Specifically, the computer readable storage medium stores computer execution instructions, and the computer execution instructions are used for the method in the above embodiments.

[0185] The application further provides a computer program product, which includes computer execution instructions, and the computer instructions are executed by a processor to realize the method in the above embodiments.

[0186] Other embodiments of the application will be apparent to those skilled in the art from consideration of the specification and practice of the application disclosed herein. It is intended that the application cover any and all variations of the application that come within the scope of the general concept of the application and that the claims be construed to cover any such variations. The specification and examples are illustrative only and not restrictive of the true scope and spirit of the application.

[0187] It should be understood that the application is not limited to the precise construction that has been described above and shown in the accompanying drawings, and that various modifications and changes can be made by those skilled in the art without departing from the scope of the application. The scope of the application is limited only by the appended claims.

Claims

1. A power distribution link map configuration method, characterized by, The method comprises: receiving a first user operation on a list of power distribution equipment in a first interface, generating a display model corresponding to an object selected by the first user operation in response to the first user operation, and displaying the display model in a configuration area of the first interface, the display model comprising a power distribution equipment model and / or a microsite model composed of power distribution equipment; receiving and responding to a second user operation to generate a power distribution link between the display models, and displaying the power distribution link; receiving and responding to a third user operation on a target display model and / or a target power distribution link, generating and displaying a configuration panel of the target display model and / or the target power distribution link, the configuration panel being used to configure attribute information of the target display model corresponding power distribution equipment and / or the target power distribution link in runtime.

2. The power distribution link map configuration method of claim 1, wherein, The first interface further comprises a toolbar area; The toolbar area comprises a custom tool for implementing configuration on the power distribution link diagram, the custom tool comprising at least one of a line drawing tool, an adjustment tool, a deletion tool, and a undo operation tool.

3. The power distribution link map configuration method of claim 2, wherein, The method further comprises: in response to the second user operation on the power distribution equipment model, generating the power distribution link between the power distribution equipment models according to a positional relationship between the power distribution equipment in the power distribution equipment model; and / or in response to the second user operation on the power distribution equipment model and the microsite model, generating and displaying a selection pop-up box, receiving and responding to a selection operation on the selection pop-up box to generate the power distribution link between the selected power distribution equipment in the microsite model and the power distribution equipment model.

4. The power distribution link map configuration method of claim 3, wherein, The method further comprises: in response to the third user operation on the target display model, generating and displaying a device configuration panel for the target display model corresponding power distribution equipment, the target display model being a display model selected by the third user operation; in response to the third user operation on the target power distribution link, generating and displaying a link configuration panel for the target power distribution link, the target power distribution link being a power distribution link selected by the third user operation; wherein the configuration panel comprises the device configuration panel and / or the link configuration panel.

5. The power distribution link map configuration method of claim 4, wherein, The method further comprises: receiving and responding to a custom configuration operation on a display page of the device configuration panel and / or the link configuration panel, obtaining an attribute category selected by the custom configuration operation, the attribute category being a category of the attribute information.

6. The power distribution link map configuration method of claim 1, wherein, The method further comprises: receiving a fourth user operation on a first target power distribution equipment, generating a state progress bar in response to the fourth user operation, the state progress bar being used to display a health state of the first target power distribution equipment.

7. The power distribution link map configuration method of claim 1, wherein, The method further comprises: Receiving a fifth user operation on the second target power distribution device and / or the first target power distribution link, and displaying an attribute display panel in response to the fifth user operation, the attribute display panel being used to display the attribute information of the second target power distribution device and / or the first target power distribution link respectively in operation.

8. The power distribution link map configuration method of claim 1, wherein, Further comprising: Receiving a sixth user operation on the second target power distribution link, and displaying the upstream power distribution device and the downstream power distribution device connected to the second target power distribution link in response to the sixth user operation.

9. The power distribution link map configuration method of claim 1, wherein, Further comprising: Receiving a seventh user operation on the third target power distribution link, and hiding or characterizing the third target power distribution link in response to the seventh user operation.

10. The power distribution link map configuration method of claim 5, wherein, Further comprising: Obtaining the attribute information of the third target power distribution device and / or the fourth target power distribution link; If it is determined according to the attribute information that the third target power distribution device and / or the fourth target power distribution link has an abnormality, generating a warning signal, and warning according to the warning signal.

11. A power distribution link map configuration apparatus, characterized by, Comprising: A model generation module, configured to receive a first user operation of a user on a power distribution device list in a first interface, and generate a display model corresponding to a selected object of the first user operation in response to the first user operation, and display the display model in a configuration area of the first interface, the display model comprising a power distribution device model and / or a microsite model constituted by power distribution devices; A link generation module, configured to receive and generate a power distribution link between the display models in response to a second user operation, and display the power distribution link; A data generation module, configured to receive and generate a configuration panel of a target display model and / or a target power distribution link in response to a third user operation on the target display model and / or the target power distribution link, and display the configuration panel, the configuration panel being used to configure attribute information of a power distribution device corresponding to the target display model and / or the target power distribution link in operation.

12. An electronic device, comprising: Comprising: A processor, and a memory connected to the processor in communication; The memory stores computer execution instructions; The processor executes the computer execution instructions stored in the memory, so as to implement the power distribution link diagram configuration method according to any one of claims 1 to 10.

13. A computer-readable storage medium, characterized in that, The computer readable storage medium stores computer execution instructions, and the computer execution instructions are executed by the processor, so as to implement the power distribution link diagram configuration method according to any one of claims 1 to 10.

14. A computer program product, comprising computer execution instructions, and the computer execution instructions are executed by the processor, so as to implement the power distribution link diagram configuration method according to any one of claims 1 to 10.

Citation Information

Cited By

  • Method, apparatus, device and storage medium for configuring power distribution link diagram

    EP4648258A1