An intelligent power grid regulation processing system and method

By using a graphical interface to demonstrate the start-up conditions and control process of power grid regulation and control scenarios, the problem of cumbersome operation and error-proneness in existing technologies is solved, thereby improving the accuracy and security of power grid regulation and control and facilitating data migration.

CN115065153BActive Publication Date: 2026-03-27NARI TECH CO LTD +2
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-05-12
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing technologies cannot intuitively demonstrate the power grid control and processing flow. When control personnel configure or modify scenarios, the operation is cumbersome and prone to errors, which affects the safe and stable operation of the power grid.

Method used

This paper provides a smart grid control and processing system and method. It uses a graphical interface to display the start conditions and control flow of the control and processing scenario, supports the addition, modification and import/export of scenario information, and simplifies database operations.

Benefits of technology

It provides an intuitive display of the control and control process, simplifies the operation for control personnel, improves the accuracy and security of power grid control, and facilitates data migration between different power grid companies.

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Abstract

The application discloses a kind of power grid intelligent regulation and control processing system and method in the technical field of power system automation regulation and control, comprising: receiving power grid operation data;Judge whether power grid operation data meets all scene starting conditions;In response to power grid operation data meets all scene starting conditions, enter regulation and control processing scene;The plug-in execution process in regulation and control processing scene is used to regulate and control processing to power grid;Plug-in execution process is shown by flow chart containing execution plug-in frame;In response to external input regulation and control processing scene viewing instruction, the scene name, type, timeout time and retry number of regulation and control processing scene are displayed;In response to external input execution plug-in frame viewing instruction, the information of execution plug-in in execution plug-in frame and matching rule are displayed.The application can realize the interface display of power grid intelligent regulation and control processing flow, so that regulation and control personnel can intuitively obtain the entering rule and business processing flow of regulation and control processing scene.
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Description

TECHNICAL FIELD

[0001] The present application relates to a power grid intelligent regulation and control processing system and method, belonging to the technical field of power system automatic regulation and control. BACKGROUND

[0002] With the in-depth construction of ultra-high voltage power grids and the access of new energy and distributed power sources, the power grid structure in China presents characteristics such as increased complexity and enhanced integration, and the intelligent power grid dispatching business is continuously expanding, and the dispatching control becomes more complex.

[0003] In order to reduce the repetitive labor of regulation and control personnel and improve the automation degree of regulation and control, in the invention disclosed in the patent with the publication number CN202110927829.6 and the name of "a power grid intelligent regulation and control processing method and device based on automatic control flow", the entire process of power grid regulation and control is completed by multiple handling operations, the next handling operation depends on the result of the previous handling operation, forming a power grid intelligent regulation and control processing method flow, wherein the construction of the regulation and control processing control flow is realized by reading the rule information and flow information in the database, and the corresponding scene number is found by the scene name, the matching rules corresponding to the scene and all plug-in information configured in the scene are found by the scene number, and the entry condition and execution result control branch of the handling operation are obtained from the data in the flow information library.

[0004] Although the above method can improve the efficiency of power grid regulation and control operation, it cannot intuitively and clearly show the regulation and control processing flow to the regulation and control personnel; and when the regulation and control personnel configures or modifies the regulation and control processing scene, they can only add or delete information in the database, which is tedious and prone to errors, thereby affecting the safe and stable operation of the power grid. SUMMARY

[0005] The purpose of the present application is to overcome the deficiencies in the prior art and provide a power grid intelligent regulation and control processing system and method, which can realize the interface display of the power grid intelligent regulation and control processing flow and enable the regulation and control personnel to intuitively obtain the entry rules and business processing flow of the regulation and control processing scene.

[0006] To achieve the above-mentioned purpose, the present application adopts the following technical solutions:

[0007] In a first aspect, the present application provides a power grid intelligent regulation and control processing method, comprising:

[0008] receiving power grid operation data;

[0009] determining whether the power grid operation data meets all scene start conditions;

[0010] in response to the power grid operation data meeting all scene start conditions, entering the regulation and control processing scene;

[0011] The power grid is regulated and processed by regulating and processing the plug-in execution flow in the scene;

[0012] The plug-in execution flow is displayed through a flowchart containing an execution plug-in block;

[0013] In response to an external input regulating processing scene viewing instruction, the scene name, type, timeout time and retry number of the regulating processing scene are displayed;

[0014] In response to an external input execution plug-in block viewing instruction, the information of the execution plug-in in the execution plug-in block and the matching rule are displayed;

[0015] In response to an external input regulating processing scene modification instruction, the scene name and / or timeout time and / or retry number of the regulating processing scene are modified;

[0016] In response to an external input scene start condition modification instruction, the executed plug-in function and / or condition expression of the scene start condition are modified;

[0017] In response to an external input execution plug-in block modification instruction, the matching rule and / or executed plug-in function in the execution plug-in block are modified;

[0018] The modified data is saved and synchronized to the database.

[0019] Further, the scene start condition is pre-set before receiving the power grid operation data and is synchronized to the database, and the scene start condition is displayed in the form of a list.

[0020] Further, the execution plug-in is pre-set before receiving the power grid operation data and is synchronized to the database, and the execution plug-in is displayed in the form of a flow.

[0021] Further, the regulating processing scene is pre-set or imported before receiving the power grid operation data and is displayed in the form of a tree list, and the regulating processing scene is synchronized to the database when imported, and the regulating processing scene can be exported in a file format.

[0022] In a second aspect, the present application provides an intelligent power grid regulation and processing system, comprising:

[0023] A data receiving module is used for receiving power grid operation data;

[0024] A data judging module is used for judging whether the power grid operation data meets all the scene start conditions;

[0025] A regulation and determination module is used for entering the regulating processing scene in response to the power grid operation data meeting all the scene start conditions;

[0026] The regulation processing module is configured to regulate and process the power grid by regulating and processing the plug-in execution flow in the regulation processing scene.

[0027] The flow display module is configured to display the plug-in execution flow through a flowchart containing an execution plug-in block.

[0028] The display module is configured to display the scene name, type, timeout time and retry number of the regulation processing scene in response to an external input regulation processing scene viewing instruction, and display the information of the execution plug-in in the execution plug-in block and the matching rule in response to an external input execution plug-in block viewing instruction.

[0029] The modification module is configured to modify the scene name and / or timeout time and / or retry number of the regulation processing scene in response to an external input regulation processing scene modification instruction, modify the executed plug-in function and / or conditional expression of the scene start condition in response to an external input scene start condition modification instruction, and modify the matching rule and / or executed plug-in function in the execution plug-in block in response to an external input execution plug-in block modification instruction, and save the modified data and synchronize it to the database.

[0030] In a third aspect, the present application provides an intelligent power grid regulation processing device, comprising a processor and a storage medium.

[0031] The storage medium is configured to store instructions.

[0032] The processor is configured to operate according to the instructions to perform the steps of the method according to any one of the above aspects.

[0033] In a fourth aspect, the present application provides a computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the steps of the method according to any one of the above aspects.

[0034] Compared with the prior art, the present application has the following beneficial effects:

[0035] (1) The present application displays the regulation processing scene, its start condition and control flow through a graphical interface, which facilitates the regulation personnel to clearly and intuitively view the intelligent regulation processing automatic control flow information.

[0036] (2) The interface tool provided by the present application can provide the addition and modification functions of the regulation processing scene, can be synchronized with the database directly through interface operation, is simple to use, has low threshold and is not prone to errors, avoids direct operation on a large amount of data, thereby improving the correctness of the intelligent regulation of the power grid, and is helpful for the safe and stable operation of the power grid.

[0037] (3) The interface tool provided by the present application can provide the functions of importing and exporting configurations, which facilitates the data migration between different power grid companies. BRIEF DESCRIPTION OF DRAWINGS

[0038] Figure 1 is a flow chart of the power grid intelligent regulation processing method provided by the embodiment one of the present application. DETAILED DESCRIPTION

[0039] The present application will be further described below in conjunction with the drawings. The following embodiments are only used to more clearly illustrate the technical solutions of the present application, and cannot be used to limit the protection scope of the present application.

[0040] Embodiment one:

[0041] A power grid intelligent regulation processing method, comprising:

[0042] Starting an interface tool;

[0043] Right-clicking the blank on the left side of the interface to add a regulation scene;

[0044] Clicking the scene on the left side of the interface to view the scene information;

[0045] Clicking the "start condition" tab to view the entering condition matching the scene;

[0046] Right-clicking the blank on the "start condition" tab to add an entering condition;

[0047] Clicking the existing entering condition on the "start condition" tab to perform a modification or deletion operation;

[0048] Clicking the "business process" tab to view the flow chart;

[0049] Right-clicking the blank on the "business process" tab to add a first execution plug-in box;

[0050] Right-clicking a single module in the flow chart on the "business process" tab to view the single-step execution plug-in information or add a next execution plug-in box;

[0051] Clicking the "plug-in management" tab to view all plug-in information in the plug-in library;

[0052] Clicking the "export configuration" in the lower left corner of the interface to export the existing scene configuration in a file format;

[0053] Clicking the "import configuration" in the lower left corner of the interface to import the configuration information in a file format into the interface tool and synchronize to the database;

[0054] Exiting the tool after completing all operations.

[0055] The scene start condition is displayed in the form of a list, and the number of conditions is not limited. When the power grid operation data meets all the start conditions, the regulation processing scene can be entered.

[0056] The scene starting condition name can be customized according to actual functions. The execution plug-in and condition expression of the scene starting condition can be set through an interface. In the embodiment of the present application, it is required to process a certain type of alarm after receiving a specific client instruction. The implementation steps are as follows:

[0057] Step one: right-click the blank part of the "starting condition" tab and select "add rule", fill the rule name as "match client instruction", select the execution plug-in as "get client instruction", and fill the matching condition as "== 29".

[0058] Step two: right-click the blank part of the "starting condition" tab and select "add rule", fill the rule name as "filter alarm type", select the execution plug-in as "get alarm type", and fill the matching condition as "== 52".

[0059] In the embodiment of the present application, the corresponding scene can be selected to view the entering conditions of the scene in a list form, without the need to search in the database through the scene number. When the alarm type processed by the scene needs to be modified, the scene entering condition can be directly modified through the interface tool, and saved to be synchronized to the database, which is simple and intuitive.

[0060] Each execution plug-in block in the flow chart represents a disposal operation, that is, a related plug-in needs to be called; and the arrow in the flow chart represents the execution direction.

[0061] Through the interface tool of the present application, the name of each disposal operation can be set. When viewed by the control personnel, the operation content executed by each step of the control processing flow can be directly known through the name, and the branch flow direction of the control processing flow can be comprehensively and intuitively understood. Right-clicking a certain execution plug-in block in the flow chart can display the plug-in information executed by the disposal operation, and the matching rule entering the disposal operation branch.

[0062] When the control processing flow needs to be modified, it can be directly modified in the interface tool. For example, in the example of the present application, the "view plant station situation map" option needs to be removed, and the "send short message notification" is changed to "dial intelligent phone alarm". The steps are as follows:

[0063] Step one: right-click the "view plant station situation map" block and the "send short message notification" execution plug-in block respectively, and select "delete flow";

[0064] Step two: right-click the "try to close" block, select "add next flow", add a new disposal operation, set the name as "dial intelligent phone alarm", and set the execution plug-in as "dial intelligent phone".

[0065] The above operation can be directly synchronized to the database.

[0066] In the embodiment, the scene information configured on the server can be exported as a file, and then imported in the form of a file on another server through the interface tool of the application, so as to realize the rapid migration of the regulation and control processing scene. The steps are as follows:

[0067] Step one: click "export configuration" in the lower left corner of the interface tool;

[0068] Step two: select the scene to be exported, and click "OK";

[0069] Step three, select the configuration file path of the export.

[0070] In summary, the power grid intelligent regulation and control processing method provided by the application can realize the interface display of the power grid intelligent regulation and control processing flow, so that the regulation and control personnel can intuitively obtain the starting conditions and business processing flow of the regulation and control processing scene, modify the regulation and control processing scene information through the tool interface, and import and export the common regulation and control scene through the tool.

[0071] Embodiment two:

[0072] A power grid intelligent regulation and control processing system can realize the power grid intelligent regulation and control processing method of embodiment one, comprising:

[0073] The data receiving module is used for receiving power grid operation data;

[0074] The data judging module is used for judging whether the power grid operation data meets all scene starting conditions;

[0075] The regulation and control determining module is used for entering the regulation and control processing scene when the power grid operation data meets all scene starting conditions;

[0076] The regulation and control processing module is used for regulating and controlling the power grid through the plug-in execution flow in the regulation and control processing scene;

[0077] The flow display module is used for displaying the plug-in execution flow through the flowchart containing the execution plug-in box;

[0078] The display module is used for displaying the scene name, type, timeout time and retry number of the regulation and control processing scene when an external input regulation and control processing scene viewing instruction is inputted, and displaying the information of the execution plug-in and the matching rule in the execution plug-in box when an external input execution plug-in box viewing instruction is inputted;

[0079] The modification module is configured to modify the scene name and / or the timeout time and / or the retry times of the regulation and control processing scene in response to an external input regulation and control processing scene modification instruction, modify the executed plug-in function and / or the condition expression of the scene start condition in response to an external input scene start condition modification instruction, modify the matching rule and / or the executed plug-in function in the execution plug-in box in response to an external input execution plug-in box modification instruction, and save the modified data and synchronize the modified data to the database.

[0080] Embodiment three

[0081] The embodiment of the application further provides an intelligent regulation and control processing device for power grid, which can implement the method for intelligent regulation and control processing of power grid, and comprises a processor and a storage medium.

[0082] The storage medium is configured to store instructions.

[0083] The processor is configured to operate according to the instructions to perform the steps of the following method:

[0084] Receive power grid operation data.

[0085] Determine whether the power grid operation data meets all the scene start conditions.

[0086] In response to the power grid operation data meeting all the scene start conditions, enter the regulation and control processing scene.

[0087] Regulate and control the power grid through the plug-in execution flow in the regulation and control processing scene.

[0088] Display the plug-in execution flow through a flowchart comprising the execution plug-in box.

[0089] In response to an external input regulation and control processing scene viewing instruction, display the scene name, type, timeout time and retry times of the regulation and control processing scene.

[0090] In response to an external input execution plug-in box viewing instruction, display the information of the execution plug-in and the matching rule in the execution plug-in box.

[0091] In response to an external input regulation and control processing scene modification instruction, modify the scene name and / or the timeout time and / or the retry times of the regulation and control processing scene.

[0092] In response to an external input scene start condition modification instruction, modify the executed plug-in function and / or the condition expression of the scene start condition.

[0093] In response to an external input execution plug-in box modification instruction, modify the matching rule and / or the executed plug-in function in the execution plug-in box.

[0094] Save the modified data and synchronize the modified data to the database.

[0095] Embodiment four:

[0096] The embodiment of the application further provides a computer readable storage medium, which can realize the power grid intelligent regulation processing method in the embodiment one, and has a computer program stored thereon, and the program is executed by a processor to realize the steps of the method.

[0097] receiving power grid operation data;

[0098] judging whether the power grid operation data meets all scenario starting conditions;

[0099] in response to the power grid operation data meeting all scenario starting conditions, entering a regulation processing scenario;

[0100] regulating and processing the power grid through a plug-in execution flow in the regulation processing scenario;

[0101] displaying the plug-in execution flow through a flow chart containing an execution plug-in box;

[0102] in response to an external input regulation processing scenario viewing instruction, displaying a scenario name, a type, a timeout time and a retry number of the regulation processing scenario;

[0103] in response to an external input execution plug-in box viewing instruction, displaying information of an execution plug-in in the execution plug-in box and a matching rule;

[0104] in response to an external input regulation processing scenario modification instruction, modifying the scenario name and / or the timeout time and / or the retry number of the regulation processing scenario;

[0105] in response to an external input scenario starting condition modification instruction, modifying an executed plug-in function and / or a condition expression of the scenario starting condition;

[0106] in response to an external input execution plug-in box modification instruction, modifying a matching rule and / or an executed plug-in function in the execution plug-in box;

[0107] saving the modified data and synchronizing the modified data to a database.

[0108] Those skilled in the art should understand that the embodiments of the application can be provided as a method, a system or a computer program product. Therefore, the application can adopt a completely hardware embodiment, a completely software embodiment or an embodiment combining software and hardware aspects. Moreover, the application can adopt a computer program product in the form of one or more computer usable storage media (including but not limited to disk memory, CD-ROM, optical memory, etc.) containing computer usable program codes.

[0109] The computer program instructions can also be loaded onto a computer or other programmable data processing apparatus to cause a series of operational steps to be performed on the computer or other programmable apparatus to produce a computer-implemented process such that the instructions which execute on the computer or other programmable apparatus provide steps for implementing the functions specified in the flowchart block or blocks. Figure 1 one or more flow or blocks. Figure 1 one or more flow or blocks.

[0110] These computer program instructions can also be stored in a computer readable memory that can direct a computer or other programmable data processing apparatus to function in a particular manner, such that the instructions stored in the computer readable memory produce an article of manufacture including instructions which implement the function specified in the flowchart block or blocks. Figure 1 one or more flow or blocks. Figure 1 one or more flow or blocks.

[0111] The computer program instructions can also be loaded onto a computer or other programmable data processing apparatus to cause a series of operational steps to be performed on the computer or other programmable apparatus to produce a computer-implemented process such that the instructions which execute on the computer or other programmable apparatus provide steps for implementing the functions specified in the flowchart block or blocks. Figure 1 one or more flow or blocks. Figure 1 one or more flow or blocks.

[0112] The above only is the preferred embodiment of the present application, it should be pointed out that, for those skilled in the technical field, without departing from the technical principles of the present application, can also make a number of improvements and variations, these improvements and variations should also be considered as the protection scope of the present application.

Claims

1. A smart power grid control and processing method, characterized in that, include: Receive power grid operation data; Determine whether the power grid operation data meets the activation conditions for all scenarios; When the power grid operation data meets all the scenario activation conditions, the system enters the control and processing scenario. The power grid is regulated and processed by controlling the execution flow of plug-ins in the control and processing scenario; The plugin execution process is displayed through a flowchart that includes a window for executing the plugin; When responding to an external input command to view the control and processing scenario, the scenario name, type, timeout, and number of retries are displayed. When responding to an external input command to view the plugin box, display the information of the plugin to be executed and the matching rules in the plugin box; When responding to an external input instruction to modify the control processing scenario, modify the scenario name and / or timeout time and / or number of retries of the control processing scenario; When responding to an external input command to modify the scenario start conditions, the plugin function and / or conditional expression that modify the scenario start conditions are executed. When responding to an external input to modify the plugin box, modify the matching rules and / or the executed plugin function in the plugin box; Save the modified data and then synchronize it to the database; The scenario activation conditions are preset before receiving power grid operation data and synchronized to the database, and the scenario activation conditions are displayed in the form of a list. The execution plugin is pre-set before receiving power grid operation data and synchronized to the database, and the execution plugin is displayed in the form of a process; The control and processing scenarios are pre-set or imported before receiving power grid operation data and are displayed in a tree list. When the control and processing scenarios are imported, they are synchronized to the database and can be exported in file format.

2. A smart power grid control and processing system, characterized in that, include: Data receiving module: used to receive power grid operation data; Data judgment module: used to determine whether the power grid operation data meets the start-up conditions for all scenarios; Control determination module: Used to enter the control processing scenario when the power grid operation data meets all scenario activation conditions; Regulation and processing module: Used to regulate and process the power grid through the execution process of plug-ins in the regulation and processing scenario; Process Display Module: Used to display the plugin execution process through a flowchart containing the plugin execution box; Display module: When responding to an external input command to view the control and processing scenario, it displays the scenario name, type, timeout, and number of retries for the control and processing scenario; when responding to an external input command to view the execution plugin box, it displays the information of the execution plugin in the execution plugin box and the matching rules. Modification module: Used to modify the scenario name and / or timeout time and / or number of retries in response to external input modification instructions for the control and processing scenario; When responding to an external input command to modify the scenario start condition, modify the executed plugin function and / or conditional expression of the scenario start condition; when responding to an external input command to modify the execution plugin box, modify the matching rules and / or the executed plugin function in the execution plugin box; save the modified data and synchronize it to the database. The scenario activation conditions are preset before receiving power grid operation data and synchronized to the database, and the scenario activation conditions are displayed in the form of a list. The execution plugin is pre-set before receiving power grid operation data and synchronized to the database, and the execution plugin is displayed in the form of a process; The control and processing scenarios are pre-set or imported before receiving power grid operation data and are displayed in a tree list. When the control and processing scenarios are imported, they are synchronized to the database and can be exported in file format.

3. A smart power grid control and processing device, characterized in that, Including processor and storage media; The storage medium is used to store instructions; The processor is configured to operate according to the instructions to perform the steps of the method according to claim 1.

4. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the program is executed by the processor, it implements the steps of the method of claim 1.

Citation Information

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