A plant automation self-service debugging system and method for control master station acceptance

By deploying a self-service debugging system for service terminals and mobile terminals on the factory site side, the problem of inefficient debugging of collaborative applications between main sub-stations of the dispatch automation system is solved, and a self-service debugging process is realized, which improves debugging efficiency and reduces manual intervention.

CN114721335BActive Publication Date: 2025-08-12STATE GRID JIANGSU ELECTRIC POWER CO LTD RESEARCH INSTITUTE +3
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Patent Information

Application Number
CN202210197073.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-03-01
Publication Date
2025-08-12
Estimated Expiration
2042-03-01

AI Technical Summary

Technical Problem

Under the traditional debugging mode, the debugging efficiency of collaborative applications between main substations of the dispatch automation system is inefficient and labor-intensive, and it is urgently necessary to improve debugging efficiency.

Method used

It provides a factory station automated self-service debugging system for the control of main station acceptance, including service terminals and mobile terminals deployed on the factory station side, supports a variety of communication regulations and functional modules, and realizes self-service debugging process management and data interaction.

Benefits of technology

It realizes that no telephone debugging is required and self-service completion of debugging work is improved, and the debugging efficiency of collaborative applications between main sub-stations of the dispatch automation system is improved, and manual intervention is reduced.

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Abstract

The present invention discloses a self-service debugging system and method for plant automation for acceptance control of a master station. The system includes a service terminal deployed on the plant station side and at least one mobile terminal. The service terminal is used to manage the debugging process and provide the mobile terminal with data sent by the plant automation system. The mobile terminal is used to configure and execute debugging projects. The mobile terminal can realize remote control debugging function, PMU debugging function, alarm direct transmission debugging function, remote browsing debugging function, one-key sequential control debugging function, network security monitoring debugging function, remote maintenance debugging function, power debugging function, trustworthy debugging function, AGC debugging function, AVC debugging function and primary frequency modulation debugging function. The present invention realizes self-service and convenient debugging of plant automation application functions for acceptance control of a master station. It is suitable for laboratory testing and on-site debugging. The test results are reliable, which solves the problem of low efficiency of collaborative application testing between master and substations.
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Description

Technical Field

[0001] The present invention relates to a plant automation self-service debugging system and method for acceptance control of a master station, belonging to the technical field of power system automation. Background Art

[0002] With the development of new smart grid technologies, the forms of information exchange between master and substations in dispatching automation systems are increasing, and collaborative applications between them are becoming increasingly close. Collaborative applications between master and substations in dispatching automation systems must undergo commissioning and acceptance testing. Commissioning quality is fundamental to ensuring the safe and stable operation of dispatching automation systems. Traditional commissioning methods involve maintenance personnel at the plant and substations coordinating trigger information, and acceptance personnel at the control master station verifying this information via telephone with the plant and substation. This inefficient commissioning model necessitates technical means to improve the efficiency of commissioning for collaborative applications between master and substations in dispatching automation systems. Summary of the Invention

[0003] The technical problem to be solved by the present invention is to overcome the defects of the existing technology and provide a plant station automation self-service debugging system and method for the acceptance of the control master station, which solves the problems of low efficiency and large amount of manpower in the collaborative application debugging between the master and the substation of the dispatching automation system.

[0004] In order to solve the above technical problems, the technical solution adopted by the present invention is:

[0005] The present invention provides a plant station automation self-service debugging system for control master station acceptance, comprising a service terminal deployed at the plant station side and at least one mobile terminal;

[0006] The service terminal is connected to the plant automation system, and the service terminal is connected to the mobile terminal;

[0007] The service terminal is used to manage the debugging process and provide the mobile terminal with data sent by the plant automation system;

[0008] The mobile terminal is used to configure and execute the debugging project.

[0009] Furthermore, the service terminal deploys a communication protocol module, a model management module, a human-machine interface module, a report management module, an audit management module and a permission management module;

[0010] The communication protocol module is used to provide communication protocols for data interaction between the mobile terminal and the plant automation system; the communication protocol module provides DL / T 634.5104, GB / T 26865.2, DL / T 476, DL / T 860, Q / GDW 273 and DL / T 719 communication protocols;

[0011] The model management module is used to import, parse, store and edit the business application model of the plant automation system, and provide corresponding data to the mobile terminal; the business application model of the plant automation system includes SCD, RCD, telecontrol information point table, CIM / E and CIM / G files;

[0012] The human-machine interface module is used to provide a human-machine interaction interface and issue instructions to the mobile terminal;

[0013] The report management module is used to obtain the debugging results from the mobile terminal and generate a debugging report;

[0014] The audit management module is used to record and trace the debugging process of the mobile terminal;

[0015] The authority management module is used to set role permissions.

[0016] Furthermore, the mobile terminal deploys a telecontrol debugging module, a PMU debugging module, an alarm direct transmission debugging module, a remote browsing debugging module, a one-button sequential control debugging module, a network security monitoring debugging module, a remote maintenance debugging module, a power debugging module, a trustworthy debugging module, an AGC debugging module, an AVC debugging module and a primary frequency modulation debugging module;

[0017] The telecontrol debugging module is used to configure and execute telecontrol debugging projects;

[0018] The PMU debugging module is used to configure and execute power management unit debugging projects;

[0019] The alarm direct transmission debugging module is used to configure and execute the alarm direct transmission debugging project;

[0020] The remote browsing and debugging module is used to configure and execute remote browsing and debugging projects;

[0021] The one-button sequence control debugging module is used to configure and execute the one-button sequence control debugging project;

[0022] The network security monitoring and debugging module is used to configure and execute network security monitoring and debugging projects;

[0023] The remote maintenance and debugging module is used to configure and execute remote maintenance and debugging projects;

[0024] The power debugging module is used to configure and execute power debugging projects;

[0025] The trustworthy debugging module is used to configure and execute trustworthy debugging projects;

[0026] The AGC debugging module is used to configure and execute automatic power generation control debugging projects;

[0027] The AVC debugging module is used to configure and execute AVC debugging projects;

[0028] The primary frequency modulation debugging module is used to configure and execute a primary frequency modulation debugging project.

[0029] Furthermore, the telecontrol debugging module is configured with DL / T 634.5104 client communication protocol;

[0030] The remote control debugging module exchanges data with the plant automation system through the DL / T 634.5104 client communication protocol, performs telemetry, telesignaling, remote control and remote adjustment acceptance, and records the entire acceptance process.

[0031] Furthermore, the PMU debugging module is configured with the GB / T 26865.2 client communication protocol;

[0032] The PMU debugging module exchanges data with the plant automation system through the GB / T 26865.2 client communication protocol, performs synchronous phasor data acceptance, and records the entire acceptance process.

[0033] Furthermore, the alarm direct transmission debugging module is configured with DL / T 476 client communication protocol;

[0034] The alarm direct transmission debugging module exchanges data with the plant automation system through the DL / T 476 client communication protocol, accepts the alarm direct transmission text, and records the entire acceptance process.

[0035] Furthermore, the remote browsing and debugging module is configured with DL / T 476 client communication protocol;

[0036] The remote browsing and debugging module exchanges data with the plant automation system through the DL / T 476 client communication protocol, accepts the CIM. / G file, and records the entire acceptance process.

[0037] Furthermore, the one-key sequential control debugging module is configured with DL / T 634.5104 client communication protocol;

[0038] The one-button sequential control debugging module exchanges data with the plant automation system through the DL / T 634.5104 client communication protocol, accepts the operation ticket, and records the entire acceptance process.

[0039] Furthermore, the network security monitoring and debugging module is configured with DL / T 634.5104 client and server communication protocol;

[0040] The network security monitoring and debugging module exchanges data with the plant automation system through the DL / T 634.5104 client and server communication protocol, accepts network security events, and records the entire acceptance process.

[0041] Furthermore, the remote maintenance and debugging module is configured with the DL / T 860 client communication protocol;

[0042] The remote maintenance and debugging module exchanges data with the plant automation system through the DL / T 860 client communication protocol, accepts the remote operation and maintenance records, and records the entire acceptance process.

[0043] Furthermore, the power debugging module is configured with DL / T 719 client and server communication protocol;

[0044] The power debugging module exchanges data with the plant automation system through the DL / T 719 client and server communication protocol, accepts the power data, and records the entire acceptance process.

[0045] Furthermore, the trustworthy debugging module configures the Q / GDW 273 client communication protocol;

[0046] The security debugging module exchanges data with the plant automation system through the Q / GDW 273 client communication protocol, accepts the protection information, and records the entire acceptance process.

[0047] Furthermore, the AGC debugging module is configured with the DL / T 634.5104 client communication protocol;

[0048] The AGC debugging module exchanges data with the plant automation system through the DL / T 634.5104 client communication protocol, accepts the power plant's automatic power generation control records, and records the entire acceptance process.

[0049] Furthermore, the AVC debugging module configures the DL / T 634.5104 client communication protocol;

[0050] The AVC debugging module exchanges data with the plant automation system through the DL / T 634.5104 client communication protocol, accepts the power plant automatic voltage control records, and records the entire acceptance process.

[0051] Furthermore, the primary frequency modulation debugging module is configured with DL / T 634.5104 client communication protocol;

[0052] The primary frequency regulation debugging module exchanges data with the plant automation system through the DL / T 634.5104 client communication protocol, accepts the primary frequency regulation records of the power plant, and records the entire acceptance process.

[0053] The present invention also provides a plant automation self-service debugging method for acceptance control of a master station, comprising:

[0054] Select a mobile terminal through the aforementioned service terminal, and select the commissioning items that require acceptance for the mobile terminal;

[0055] Start debugging projects one by one, exchange data with the plant automation system through the corresponding communication protocol, check and accept the data obtained from the debugging projects, and record the entire acceptance process until all selected debugging projects are completed;

[0056] Generate and export a debug report.

[0057] The beneficial effects of the present invention are:

[0058] The present invention realizes the self-service debugging of plant station automation for acceptance by the control master station, without the need for debugging by phone with the control master station, and solves the problems of low efficiency and large amount of manpower in the collaborative application debugging between the master and slaves of the dispatching automation system. BRIEF DESCRIPTION OF THE DRAWINGS

[0059] Figure 1 This is the system architecture diagram of the plant automation self-service debugging system software platform;

[0060] Figure 2 This is the system architecture diagram of the hardware platform of the plant automation self-service debugging system;

[0061] Figure 3 Flowchart of the method of the present invention. DETAILED DESCRIPTION

[0062] The present invention will be further described below in conjunction with the accompanying drawings. The following embodiments are only used to more clearly illustrate the technical solutions of the present invention and are not intended to limit the scope of protection of the present invention.

[0063] One embodiment of the present invention provides a plant automation self-service debugging system for acceptance at a control master station. This system simulates the application functions of a control master station and allows debugging to be completed at the plant station itself, eliminating the need for telephone communication with the control master station. The debugging system of this embodiment includes a hardware platform and a software platform.

[0064] See also Figure 2 , the hardware platform includes a service terminal and at least one mobile terminal.

[0065] The service terminal is a portable tester with wired and wireless communication functions, and the mobile terminal has wireless communication function.

[0066] The service terminal and the plant automation system data communication gateway are based on wired communication, and the service terminal and the mobile terminal are based on wireless communication.

[0067] As a preferred implementation, in this embodiment, the service terminal is an embedded industrial computer dedicated to electric power; and the mobile terminal is a general mobile communication terminal.

[0068] See also Figure 1 ,The software platform includes the basic platform and business ,applications. The basic platform provides the basic functions required for ,business applications.

[0069] Specifically, the basic platform has functions such as communication protocols, model management, human-computer interface, report management, audit management and authority management.

[0070] Business applications include telecontrol debugging module, PMU (power management unit) debugging module, alarm direct transmission debugging module, remote browsing debugging module, one-key sequence control debugging module, network security monitoring debugging module, remote maintenance debugging module, power debugging module, trustworthy debugging module, AGC (automatic generation control) debugging module, AVC (automatic voltage control) debugging module and primary frequency regulation debugging module.

[0071] The software platform is deployed based on the hardware platform, the basic platform is deployed on the service terminal, and the business applications are deployed on the mobile terminal.

[0072] As a preferred implementation, in this embodiment, the communication protocol implements power communication protocols such as DL / T 634.5104, GB / T26865.2, DL / T 476, DL / T 860, Q / GDW 273, and DL / T 719.

[0073] As a preferred implementation method, in this embodiment, model management is used to import, parse, store and edit plant automation business application models. Business application models include SCD, RCD, telecontrol information point table, CIM / E, CIM / G files, etc.

[0074] As a preferred implementation, in this embodiment, the human-machine interface is used to provide a human-machine interaction interface for business application debugging, providing a unified entrance and a homogeneous operation interface.

[0075] As a preferred implementation, in this embodiment, report management is used to generate a business application debugging report and provide a unified debugging report template.

[0076] As a preferred implementation, in this embodiment, audit management is used to implement audit query, audit analysis, and audit reporting, providing traceability of operation records. Audit query refers to the traces left by debugging work, which facilitates tracing and falls under the scope of security management.

[0077] As a preferred implementation, in this embodiment, permission management is used to set roles, personnel, permissions, etc.

[0078] As a preferred implementation method, in this embodiment, the remote control debugging module is configured with the DL / T 634.5104 communication client function. By importing the remote control information point table and the remote control setting sheet, it provides a visual human-machine interface for telemetry, telesignaling, remote control, and remote adjustment acceptance, and has the DL / T 634.5104 message recording and analysis function, which records the entire acceptance process and can export the acceptance report.

[0079] As a preferred implementation, in this embodiment, the PMU debugging module is configured with the GB / T 26865.2 communication client function, provides a visual human-machine interface for synchronous phasor data acceptance, and has the GB / T 26865.2 message recording and analysis function, records the entire acceptance process and can export an acceptance report.

[0080] As a preferred implementation, in this embodiment, the alarm direct transmission debugging module is configured with the DL / T 476 communication client function, provides a visual human-machine interface for the alarm direct transmission text, and has a DL / T 476 message recording and analysis function, which records the entire acceptance process and can export an acceptance report.

[0081] As a preferred implementation, in this embodiment, the remote browsing and debugging module is configured with the DL / T 476 communication client function, provides a CIM. / G visual human-machine interface, and has a DL / T 476 message recording and analysis function, which records the entire acceptance process and can export an acceptance report.

[0082] As a preferred implementation, in this embodiment, the one-button sequential control debugging module is configured with the DL / T 634.5104 communication client function, provides a visual human-machine interface for the operation ticket, and has the DL / T 634.5104 message recording and analysis function, which records the entire acceptance process and can export the acceptance report.

[0083] As a preferred implementation, in this embodiment, the network security monitoring and debugging module is configured with DL / T634.5104 communication client and server functions, provides a visual human-machine interface for network security events, and has DL / T634.5104 message recording and analysis functions, records the entire acceptance process and can export acceptance reports.

[0084] As a preferred implementation, in this embodiment, the remote maintenance and debugging module is configured with the DL / T 860 communication client function, provides a remote operation and maintenance visual human-machine interface, and has the DL / T 860 message recording and analysis function, records the entire acceptance process and can export the acceptance report.

[0085] As a preferred implementation, in this embodiment, the power debugging module is configured with DL / T 719 communication client and server functions, provides a visual human-machine interface for power debugging, and has DL / T 719 message recording and analysis functions, records the entire acceptance process and can export an acceptance report.

[0086] As a preferred implementation, in this embodiment, the security debugging module is configured with the Q / GDW 273 communication client function, provides a visual human-machine interface for protection information management, and has the Q / GDW 273 message recording and analysis function, which records the entire acceptance process and can export the acceptance report.

[0087] As a preferred implementation, in this embodiment, the AGC debugging module is configured with a DL / T 634.5104 communication client, which provides a visual human-machine interface for power plant AGC debugging by importing a telecontrol point table and a telecontrol setting sheet, and has a DL / T634.5104 message recording and analysis function, which records the entire acceptance process and can export an acceptance report.

[0088] As a preferred implementation, in this embodiment, the AVC debugging module is configured with a DL / T 634.5104 communication client, and provides an AVC debugging visual human-machine interface by importing a telecontrol point table and a telecontrol setting sheet. It also has a DL / T634.5104 message recording and analysis function, which records the entire acceptance process and can export an acceptance report.

[0089] As a preferred implementation method, in this embodiment, the primary frequency regulation debugging module is configured with a DL / T 634.5104 communication client, and provides a visual human-machine interface for the primary frequency regulation of the power plant by importing the telecontrol point table and the telecontrol setting sheet. It also has a DL / T 634.5104 message recording and analysis function, which records the entire acceptance process and can export an acceptance report.

[0090] The second embodiment of the present invention provides a plant automation self-service debugging method for control master station acceptance, see Figure 3 , including the following steps:

[0091] 1) The plant automation self-service commissioning system first completes basic project configuration, such as new project construction, importing SCD, RCD, telecontrol information point table and telecontrol setting sheet and other documents, as well as communication and channel configuration;

[0092] 2) The service terminal of the plant automation self-service debugging system is connected to the data communication gateway of the plant automation system to be debugged through a network cable. The service terminal and the mobile terminal communicate wirelessly to ensure normal communication in all links;

[0093] 3) Select the business application function module human-machine interface on the mobile terminal of the plant automation self-service debugging system and click to start debugging;

[0094] 4) Carry out debugging on the plant automation system side according to the selected debugging project, record the test details according to the debugging situation and generate a debugging report;

[0095] 5) Start debugging the items one by one until all the selected debugging items are completed.

[0096] 6) Export the debugging report.

[0097] Those skilled in the art will appreciate that the embodiments of the present application may be provided as methods, systems, or computer program products. Therefore, the present application may take the form of an entirely hardware embodiment, an entirely software embodiment, or an embodiment combining software and hardware. Furthermore, the present application may take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to magnetic disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.

[0098] The present application is described with reference to the flowcharts and / or block diagrams of the methods, devices (systems), and computer program products according to the embodiments of the present application. It should be understood that each process and / or block in the flowchart and / or block diagram, as well as the combination of processes and / or blocks in the flowchart and / or block diagram, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing device generate instructions for implementing the processes in the flowchart and / or block diagram. Figure 1 a process or multiple processes and / or boxes Figure 1 A device that provides the functions specified in a block or multiple blocks.

[0099] These computer program instructions may also be stored in a computer readable memory that can direct a computer or other programmable data processing device to work in a specific manner, so that the instructions stored in the computer readable memory produce an article of manufacture comprising an instruction device, which implements the process Figure 1 a process or multiple processes and / or boxes Figure 1 The function specified in one or more boxes.

[0100] These computer program instructions can also be loaded onto a computer or other programmable data processing device so that a series of operational steps are executed on the computer or other programmable device to produce a computer-implemented process, thereby providing the instructions executed on the computer or other programmable device for implementing the process. Figure 1 a process or multiple processes and / or boxes Figure 1 A step that specifies a function in one or more boxes.

[0101] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and not to limit it. Although the present invention has been described in detail with reference to the above embodiments, ordinary technicians in the field should understand that the specific implementation methods of the present invention can still be modified or replaced by equivalents. Any modification or equivalent replacement that does not depart from the spirit and scope of the present invention should be covered by the scope of protection of the claims of the present invention.

Claims

1. A plant automation self-service debugging system for control master station acceptance, characterized by: It includes a service terminal and at least one mobile terminal deployed at the plant side; The service terminal is connected to the plant automation system, and the service terminal is connected to the mobile terminal; The service terminal is used to manage the debugging process and provide the mobile terminal with data sent by the plant automation system; The mobile terminal is used to configure and execute the debugging project; The service terminal deploys a communication protocol module, a model management module, a human-machine interface module, a report management module, an audit management module and a rights management module; The communication protocol module is used to provide communication protocols for data interaction between the mobile terminal and the plant automation system; the communication protocol module provides DL / T 634.5104, GB / T 26865.2, DL / T 476, DL / T 860, Q / GDW 273 and DL / T719 communication protocols; The model management module is used to import, analyze, store and edit the business application model of the plant automation system; and provide corresponding data to the mobile terminal; The plant automation system business application model includes SCD, RCD, telecontrol information point table, CIM / E and CIM / G files; The human-machine interface module is used to provide a human-machine interaction interface and issue instructions to the mobile terminal; The report management module is used to obtain the debugging results from the mobile terminal and generate a debugging report; The audit management module is used to record and trace the debugging process of the mobile terminal; The authority management module is used to set role authority; The mobile terminal is deployed with a telecontrol debugging module, a PMU debugging module, an alarm direct transmission debugging module, a remote browsing debugging module, a one-button sequential control debugging module, a network security monitoring debugging module, a remote maintenance debugging module, a power debugging module, a trustworthy debugging module, an AGC debugging module, an AVC debugging module and a primary frequency modulation debugging module; The telecontrol debugging module is used to configure telecontrol debugging parameters, exchange data with the plant automation system, and execute telecontrol debugging projects; The PMU debugging module is used to configure the power management unit debugging parameters, and to interact with the plant automation system to perform power management unit debugging projects; The alarm direct transmission debugging module is used to configure alarm direct transmission debugging parameters, and to interact with the plant automation system to perform alarm direct transmission debugging projects; The remote browsing and debugging module is used to configure remote browsing and debugging parameters, and to interact with the plant automation system to perform remote browsing and debugging projects; The one-button sequential control debugging module is used to configure one-button sequential control debugging parameters, and to interact with the plant automation system to execute one-button sequential control debugging projects; The network security monitoring and debugging module is used to configure network security monitoring and debugging parameters, and to interact with the plant automation system to execute network security monitoring and debugging projects; The remote maintenance and debugging module is used to configure remote maintenance and debugging parameters, and to interact with the plant automation system to execute remote maintenance and debugging projects; The power debugging module is used to configure power debugging parameters, interact with the plant automation system, and execute power debugging projects; The trustworthy debugging module is used to configure trustworthy debugging parameters, interact with the plant automation system, and execute trustworthy debugging projects; The AGC debugging module is used to configure automatic power generation control debugging parameters, and to interact with the plant automation system to execute automatic power generation control debugging projects; The AVC debugging module is used to configure AVC debugging parameters, interact with the plant automation system, and execute AVC debugging projects; The primary frequency modulation debugging module is used to configure the primary frequency modulation debugging parameters, and to interact with the plant automation system to perform the primary frequency modulation debugging project.

2. The plant automation self-service debugging system for control master station acceptance according to claim 1 is characterized in that: The remote control debugging module is configured with DL / T 634.5104 client communication protocol; The remote control debugging module exchanges data with the plant automation system through the DL / T 634.5104 client communication protocol, performs telemetry, telesignaling, remote control and remote adjustment acceptance, and records the entire acceptance process.

3. The plant automation self-service debugging system for control master station acceptance according to claim 1 is characterized in that: The PMU debugging module is configured with the GB / T 26865.2 client communication protocol; The PMU debugging module exchanges data with the plant automation system through the GB / T 26865.2 client communication protocol, performs synchronous phasor data acceptance, and records the entire acceptance process.

4. The plant automation self-service debugging system for control master station acceptance according to claim 1 is characterized in that: The alarm direct transmission debugging module is configured with DL / T 476 client communication protocol; The alarm direct transmission debugging module exchanges data with the plant automation system through the DL / T 476 client communication protocol, accepts the alarm direct transmission text, and records the entire acceptance process.

5. The plant automation self-service debugging system for control master station acceptance according to claim 1 is characterized in that: The remote browsing and debugging module is configured with DL / T 476 client communication protocol; The remote browsing and debugging module exchanges data with the plant automation system through the DL / T 476 client communication protocol, accepts the CIM. / G file, and records the entire acceptance process.

6. The plant automation self-service debugging system for control master station acceptance according to claim 1 is characterized in that: The one-button sequential control debugging module is configured with DL / T 634.5104 client communication protocol; The one-button sequential control debugging module exchanges data with the plant automation system through the DL / T 634.5104 client communication protocol, accepts the operation ticket, and records the entire acceptance process.

7. The plant automation self-service debugging system for control master station acceptance according to claim 1 is characterized in that: The network security monitoring and debugging module is configured with DL / T 634.5104 client and server communication protocol; The network security monitoring and debugging module exchanges data with the plant automation system through the DL / T 634.5104 client and server communication protocol, accepts network security events, and records the entire acceptance process.

8. The plant automation self-service debugging system for control master station acceptance according to claim 1 is characterized in that: The remote maintenance and debugging module is configured with DL / T 860 client communication protocol; The remote maintenance and debugging module exchanges data with the plant automation system through the DL / T 860 client communication protocol, accepts the remote operation and maintenance records, and records the entire acceptance process.

9. The plant automation self-service debugging system for control master station acceptance according to claim 1 is characterized in that: The power debugging module is configured with DL / T 719 client and server communication protocol; The power debugging module exchanges data with the plant automation system through the DL / T 719 client and server communication protocol, accepts the power data, and records the entire acceptance process.

10. The plant automation self-service debugging system for control master station acceptance according to claim 1 is characterized in that: The trustworthy debugging module configures the Q / GDW 273 client communication protocol; The security debugging module exchanges data with the plant automation system through the Q / GDW 273 client communication protocol, accepts the protection information, and records the entire acceptance process.

11. The plant automation self-service debugging system for control master station acceptance according to claim 1 is characterized in that: The AGC debugging module is configured with the DL / T 634.5104 client communication protocol; The AGC debugging module exchanges data with the plant automation system through the DL / T 634.5104 client communication protocol, accepts the power plant's automatic power generation control records, and records the entire acceptance process.

12. The plant automation self-service debugging system for control master station acceptance according to claim 1 is characterized in that: The AVC debugging module configures the DL / T 634.5104 client communication protocol; The AVC debugging module exchanges data with the plant automation system through the DL / T 634.5104 client communication protocol, accepts the power plant automatic voltage control records, and records the entire acceptance process.

13. The plant automation self-service debugging system for control master station acceptance according to claim 1 is characterized in that: The primary frequency modulation debugging module is configured with DL / T 634.5104 client communication protocol; The primary frequency regulation debugging module exchanges data with the plant automation system through the DL / T 634.5104 client communication protocol, accepts the primary frequency regulation records of the power plant, and records the entire acceptance process.

14. A plant automation self-service debugging method for acceptance control of a master station, characterized in that: include: selecting a mobile terminal and selecting a debugging project requiring acceptance for the mobile terminal through the service terminal according to any one of claims 1 to 13; Start debugging projects one by one, exchange data with the plant automation system through the corresponding communication protocol, check and accept the data obtained from the debugging projects, and record the entire acceptance process until all selected debugging projects are completed; Generate and export a debug report.

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