Substation maintenance system determination method, system, electronic device and storage medium

By constructing a power engineering information model and equipment model information database, and combining it with a holographic display and operation and maintenance monitoring system, the substation maintenance process is simulated, solving the problems of high cost, long time and low efficiency in traditional substation maintenance, and achieving efficient maintenance scheme optimization.

CN114880858BActive Publication Date: 2026-02-17GUANGDONG POWER GRID CO LTD +1
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Patent Information

Application Number
CN202210527213.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-05-16
Publication Date
2026-02-17
Estimated Expiration
2042-05-16

AI Technical Summary

Technical Problem

Traditional substation maintenance relies on on-site determination, resulting in high maintenance costs, long maintenance times, and low efficiency.

Method used

By constructing a power engineering information model and equipment model information database, and combining it with a holographic display and operation and maintenance monitoring system, the maintenance process is simulated to optimize the maintenance plan.

Benefits of technology

This enabled the simulation of the solution before maintenance, improving maintenance efficiency and reducing costs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a substation maintenance system determination method, system, electronic equipment and storage medium. The method comprises the following steps: determining the power engineering information model corresponding to the current substation according to the environment information of the environment to which the current substation belongs; determining the device model information base corresponding to the current substation according to each power device, the power device identifier and the device association information of the corresponding power device located in the environment; determining the holographic display and operation and maintenance detection system for displaying the current substation and each power device located in the current substation; and determining the maintenance system applied to the substation based on the power engineering information model, the device model information base and the holographic display and operation and maintenance detection system, so as to simulate the maintenance of the power device based on the maintenance system. Based on the above technical scheme, the problem that the existing scheme cannot simulate the maintenance scheme when the power device is maintained and repaired, thereby causing high maintenance cost, long time and poor efficiency is solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electric power, and in particular to a substation maintenance system determination method and system, an electronic device and a storage medium. BACKGROUND

[0002] With the progress of modern electric power technology, electric power equipment is used to supply electric energy to users, improving the living standards of users. However, in order to ensure the normal operation of electric power equipment, it is usually necessary to maintain and maintain the electric power equipment within a set time.

[0003] However, the traditional substation maintenance steps are usually determined by construction personnel based on the site conditions, and the maintenance work cannot be simulated before the substation maintenance, thereby causing the problems of high maintenance cost, long time and low efficiency. SUMMARY

[0004] The present application provides a substation maintenance system determination method and system, an electronic device and a storage medium to solve the problem of high maintenance cost, long time and low efficiency caused by the existing scheme when maintaining and maintaining electric power equipment.

[0005] In a first aspect, the present application provides a substation maintenance system determination method, comprising:

[0006] determining the power engineering information model corresponding to the current substation according to the environment information of the environment to which the current substation belongs;

[0007] determining the device model information library corresponding to the current substation according to each power device located in the environment, the power device identifier and the device association information of the corresponding power device; wherein the device association information includes device basic information, operation information and maintenance record information;

[0008] determining the holographic display and operation and maintenance detection system of the current substation and each power device located in the current substation;

[0009] determining the maintenance system applied to the substation based on the power engineering information model, the device model information library and the holographic display and operation and maintenance detection system, to simulate the maintenance of the electric power equipment based on the maintenance system.

[0010] In a second aspect, the present application also provides a substation maintenance system, which comprises:

[0011] a model establishment module for determining the power engineering information model corresponding to the current substation according to the environment information of the environment to which the current substation belongs;

[0012] The information base establishing module is configured to determine a device model information base corresponding to the current transformer substation according to each power device located in the environment, power device identification, and device association information of the corresponding power device, wherein the device association information includes device basic information, operation information, and maintenance record information.

[0013] The system determining module is configured to determine a holographic display and operation and maintenance detection system for displaying the current transformer substation and each power device located in the current transformer substation.

[0014] The simulation maintenance module is configured to determine a maintenance system applied to the transformer substation based on the power engineering information model, the device model information base, and the holographic display and operation and maintenance detection system, to simulate maintenance of the power device based on the maintenance system.

[0015] In a third aspect, an electronic device is provided, and the device includes:

[0016] one or more processors;

[0017] a storage device for storing one or more programs;

[0018] When the one or more programs are executed by the one or more processors, the one or more processors implement the maintenance system determination method of the transformer substation as any of the embodiments of the present application.

[0019] In a fourth aspect, a computer readable storage medium is provided, and the computer readable storage medium stores a computer program, which, when executed by a processor, implements the maintenance system determination method of the transformer substation as any of the embodiments of the present application.

[0020] The technical solution of the embodiments of the present application determines a power engineering information model corresponding to the current transformer substation according to environment information of an environment to which the current transformer substation belongs, determines a device model information base corresponding to the current transformer substation according to each power device located in the environment, power device identification, and device association information of the corresponding power device, determines a holographic display and operation and maintenance detection system for displaying the current transformer substation and each power device located in the current transformer substation, and then determines a maintenance system applied to the transformer substation based on the power engineering information model, the device model information base, and the holographic display and operation and maintenance detection system, to simulate maintenance of the power device based on the maintenance system. Thus, the embodiments of the present application simulate a maintenance scheme before maintenance of the power device, and then perform maintenance of the device based on the simulated scheme, thereby improving the efficiency of maintenance of the power device. BRIEF DESCRIPTION OF DRAWINGS

[0021] In order to more clearly illustrate the technical solutions of the example embodiments of the present application, the following briefly introduces the drawings needed in the description of the embodiments. Obviously, the drawings described are only a part of the drawings of the present application, and not all the drawings, and other drawings can be obtained by those skilled in the art without creative labor on the basis of these drawings.

[0022] Figure 1 A flowchart of a method for determining a maintenance system applied to a substation is provided for the embodiment of the present application.

[0023] Figure 2 A schematic diagram of a lean maintenance management method for substation equipment based on EIM is provided for the embodiment of the present application.

[0024] Figure 3 A structural block diagram of a maintenance system of a substation is provided for the embodiment of the present application.

[0025] Figure 4 A structural schematic diagram of an electronic device is provided for the embodiment of the present application. DETAILED DESCRIPTION

[0026] The present application will be further described in detail below in conjunction with the drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the present application, and not to limit the present application. In addition, it should be noted that, in order to facilitate the description, only the parts related to the present application are shown in the drawings, not all the structures.

[0027] Embodiment one

[0028] Figure 1 A flowchart of a method for determining a maintenance system applied to a substation is provided for the embodiment one of the present application. The present embodiment can be applied to determine the maintenance system of a substation, and further solve the problems of high maintenance cost, long time consumption and poor maintenance efficiency caused by the existing scheme when maintaining power equipment. The method can be integrated in an electronic device, which can be a PC terminal or a server, etc. Figure 1 The method for determining a maintenance system applied to a substation provided by the present embodiment specifically includes the following steps:

[0029] S110, according to the environment information of the environment to which the current substation belongs, determining the power engineering information model corresponding to the current substation.

[0030] The current substation can be a substation selected by the user in advance. The environment information can be understood as the physical information and geographical information of the electrical appliances in the substation. The power engineering information model (EIM) can be a three-dimensional holographic model established on the basis of the information data of the power equipment.

[0031] Specifically, the user can pre-select a substation that needs to be modeled on the terminal device, and obtain information data of all power equipment in the current substation, and then determine the power engineering information model corresponding to the current substation according to the collected information data of the power equipment. For example, the information data of the required power equipment can be obtained from the drawings by reading the drawing information in the construction process of the substation, and a three-dimensional model of the current substation is built by physical modeling software according to the obtained information data of the power equipment.

[0032] On the basis of the above technical solutions, the power engineering information model corresponding to the current substation is determined according to the environment information of the environment to which the current substation belongs, including: obtaining actual size information of the environment to which the current substation belongs, device land size information and position information of each power equipment in the environment, and appearance information of each power equipment; determining the power engineering information model according to the actual size information, land size information, corresponding position information and appearance information.

[0033] Among them, the actual size information can be the land size information of the substation. It can be understood that the load of different substations may be different in the process of planning and construction, so the actual size information of substations with different loads is different. The device land size information can be understood as the ground size information actually occupied by the power equipment. The position information can be the installation position information of the power equipment in the substation. The appearance information of the power equipment can be understood as the shape information of the power equipment, and different power equipment corresponds to different appearance information.

[0034] Specifically, the actual size information corresponding to the substation can be obtained from the planning drawings of the substation, that is, the land area information of the substation, and the device land size and position information of each power facility in the substation and the appearance information of the power equipment are obtained, and then a three-dimensional model of the substation is built based on the physical modeling software according to the obtained information. It should be noted that since the equipment in the substation needs to be continuously updated and maintained, the position information of the power equipment in the substation will change with the update and maintenance, so after the installation position of the equipment changes, the three-dimensional model needs to be reconstructed based on the new position information.

[0035] S120, according to each power equipment located in the environment, the power equipment identifier and the device association information of the corresponding power equipment, determine the device model information library corresponding to the current substation.

[0036] The device association information includes device basic information, operation information and maintenance record information. The power device identifier can be understood as ID information of the power device. It can be understood that different power devices can be produced by different manufacturers. The power device usually has ID information corresponding to the power device. Since the ID information is usually not repeated, the information corresponding to the power device can be recorded based on the ID information. The device model information library can be understood as a library for storing three-dimensional models of all power devices in the substation and corresponding device information.

[0037] Specifically, according to the device identification information and the device association information of each power device in the substation, the device model information library corresponding to the current substation is generated. For example, the device information corresponding to the device can be retrieved from the server based on the device identification information, and the obtained device information is stored in the device model information library with the device identification information as the index.

[0038] On the basis of the above technical solution, the device model information library corresponding to the current substation is determined according to the power devices located in the environment, the power device identifiers and the device association information of the corresponding power devices, including: for each power device, determining the device association information corresponding to the current power device according to the account information, the maintenance record information and the operation information of the current power device; for the device association information of each power device and the corresponding device identifier, determining the storage data in the device model information library.

[0039] The account information can be basic information of the power device, for example, the account information can include ID information of the power device, device name, manufacturer of the device and other basic information. The maintenance record information can be understood as operation and maintenance information of the device. It can be understood that the power device will have multiple maintenance and maintenance in its life cycle, and the specific operation and maintenance information needs to be recorded every time the power device is maintained and maintained, thereby forming the maintenance record information corresponding to the power device. The operation information can be normal working time information of the device. The storage data can be understood as the account information, maintenance record information, operation information and the like of all power devices in the current substation.

[0040] Specifically, by obtaining the device identification information of the power device, the device information corresponding to the device is queried from the server based on the device identification information. After obtaining the account information, the maintenance record information, the operation information and the corresponding device association information of the device, the corresponding model information library can be generated according to the collected information. For example, after the information corresponding to the device is queried according to the ID information of the device, the ID information of the device can be used as index information, and the information corresponding to the power device is stored in the device model information library based on the index information.

[0041] The technical scheme provided by the embodiment collects device information of power equipment in a transformer substation, stores the collected information with device ID as an index to generate a corresponding device model information library, and enables a user to search based on the device ID when calling corresponding device information, thereby improving the efficiency of searching for device information.

[0042] In S130, a holographic display and operation and maintenance detection system of the current transformer substation and each power equipment in the current transformer substation is determined.

[0043] The holographic display and operation and maintenance detection system can be a system for holographic display and operation and maintenance detection of power equipment in the transformer substation.

[0044] Specifically, after generating the power engineering information model of the current transformer substation and the corresponding model device information library, the corresponding holographic display and operation and maintenance detection system is generated based on the power engineering information model and the model device information library, and the equipment in the transformer substation can be holographically displayed and the operation and maintenance process can be detected through the holographic display and operation and maintenance detection system.

[0045] On the basis of the above technical scheme, the holographic display and operation and maintenance detection system of the current transformer substation and each power equipment in the current transformer substation is determined, including determining the standard maintenance specification corresponding to each power equipment, and determining the simulation deduction method based on the standard maintenance specification; and determining the electronic document handover specification corresponding to each power equipment, to determine the simulation operation document of the corresponding power equipment based on the corresponding simulation deduction method; determining the holographic display and operation and maintenance detection system based on the simulation deduction method of each electronic device and the corresponding electronic document handover specification.

[0046] The standard maintenance specification can be the job instruction book corresponding to the power equipment. It can be understood that different power equipment has different functions and different operation steps, and therefore each has its corresponding job instruction book for indicating the correct operation steps when a user maintains and operates the equipment. The simulation deduction method can be understood as a simulation step determined based on the standard maintenance specification. The electronic document handover specification can be used to indicate how to hand over the information corresponding to the electronic equipment. The simulation operation document can be understood as the finally determined operation step for maintaining the electronic equipment.

[0047] Specifically, the simulation deduction method corresponding to the power equipment is determined according to the standard maintenance specification corresponding to the power equipment, and the corresponding electronic document handover specification is determined based on the information obtained from the model database of the power equipment, and then the holographic display and operation detection system is determined according to the electronic document handover specification and the simulation deduction method. It needs to be explained that the standard maintenance specification can be pre-stored in the electronic equipment model database, or it can be retrieved from the server based on the ID information of the electronic equipment. After establishing the model information library of the electronic equipment, the corresponding electronic document handover specification can be obtained by manual discussion, so that the third party can obtain the information of the required electronic equipment from the electronic equipment model information library based on the electronic document handover specification.

[0048] On the basis of the above technical scheme, the electronic document handover specification includes the disassembly tool associated with the current power equipment and the components used.

[0049] Among them, the disassembly tool can be a tool used for operating the power equipment.

[0050] Specifically, according to the power equipment information stored in the power equipment information library, the tools required for the maintenance and repair of the power equipment can be determined, and the tools required are stored in the electronic document handover specification.

[0051] On the basis of the above technical scheme, the holographic display and operation detection system is also used for holographic display of device information and simulation of repair tasks of each power equipment.

[0052] Specifically, the device information in the current substation can be displayed by the holographic display and operation detection system, and the repair operation process of the power equipment in the current substation can also be simulated based on the holographic display and operation detection system. For example, the user can select the power equipment that needs to be repaired in the current substation and the corresponding repair operation type on the operation panel of the terminal device, such as transformer accessory disassembly operation, transformer oil filling and oil discharging operation, open-type isolation switch and grounding switch repair, and then the holographic display and operation detection system can simulate the repair process according to the user's selection.

[0053] S140, based on the power engineering information model, the device model information library and the holographic display and operation detection system, determine the repair system applied to the substation, to simulate the repair of the power equipment based on the repair system.

[0054] Among them, the repair system of the substation can be a system for repairing the power equipment in the substation.

[0055] Specifically, the maintenance system applied to the current substation is determined according to the power engineering information model, the device model information base, and the holographic display and operation and maintenance detection system, and then the maintenance scheme of the power device is simulated based on the maintenance system. For example, when the transformer removal operation needs to be performed on the device in the substation, the data in the current substation can be called based on the power engineering information model, the device model information base, and the holographic display and operation and maintenance detection system, and the working process when the transformer is removed is simulated.

[0056] The technical scheme provided by the embodiment determines the maintenance system applied to the substation based on the power engineering information model, the device model information base, and the holographic display and operation and maintenance detection system, and then the user can directly maintain the power device in the substation based on the maintenance system, thereby improving the maintenance efficiency of the power device.

[0057] The technical scheme of the embodiment determines the power engineering information model corresponding to the current substation according to the environment information of the environment to which the current substation belongs, and determines the device model information base corresponding to the current substation according to each power device, power device identifier, and device association information of the corresponding power device located in the environment. The holographic display and operation and maintenance detection system for displaying the current substation and each power device located in the current substation is determined, and then the maintenance system applied to the substation is determined based on the power engineering information model, the device model information base, and the holographic display and operation and maintenance detection system. The maintenance of the power device is simulated based on the maintenance system, the simulation of the maintenance scheme before the maintenance of the power device is realized, and then the device is maintained based on the simulated scheme, thereby improving the efficiency of maintaining the power device.

[0058] Embodiment Two

[0059] Figure 2 The schematic diagram of the EIM-based substation device lean maintenance management method provided by the embodiment two of the present application is further optimized based on the above-mentioned example. The specific implementation of the embodiment can be referred to the technical scheme of the embodiment. The same or corresponding technical terms as the above-mentioned embodiments are not repeated here.

[0060] As shown in the method, the specific steps are as follows: Figure 2

[0061] ​Building a three-dimensional EIM model of the substation (i.e., constructing the corresponding power engineering information model of the current substation): by collecting information of electrical equipment in the substation, such as environmental information of the equipment in the substation, specifically, physical information and geographic information of the electrical equipment in the substation, wherein the physical information can be actual size information, position information, appearance information, etc. of the electrical equipment, and then performing EIM modeling according to the actual size and accurate positioning of the electrical equipment and facilities in the substation, meeting the requirements of the component-level digital mirror model of the substation, realizing content including accurate modeling of the appearance and components of electrical equipment, modeling of concealed engineering appearance, dynamic synchronization of movable personnel and facilities, wherein the concealed engineering can be understood as referring to the physical object that is covered and invisible from the outside during the construction period after burying building materials or components in the object. For example, house foundation, steel bars, water and electricity components, equipment foundation, etc.

[0062] Establishing an EIM model information base of electrical equipment (i.e., establishing a device model information base corresponding to the current substation): by collecting the electrical equipment identification of the electrical equipment and the associated information of the electrical equipment, which can include basic information, operation information, and maintenance record information, etc., specifically, by obtaining detailed account information, operation and maintenance information, geometric information, etc. of the electrical equipment, and forming an electrical equipment database according to the obtained information, and then proposing a "substation equipment information transfer specification based on EIM model", further standardizing the information such as equipment component granularity, size, disassembly process, etc. and the transfer form of equipment information, so that the third-party user can obtain the required information from the information base according to the corresponding information transfer specification, thereby connecting the information base and the three-dimensional EIM model, realizing data synchronization and scenario interaction.

[0063] Developing an EIM-based substation equipment lean maintenance system (i.e., determining the corresponding full-system display and operation detection system of the current substation): by establishing a three-dimensional EIM model of the substation and a corresponding electrical equipment model information base, a corresponding substation equipment lean maintenance system is constructed, i.e., based on the power engineering information model, the equipment model information base, and the holographic display and operation detection system, a maintenance system applied to the substation is determined, and the user can simulate the maintenance of the electrical equipment based on the maintenance system, thereby realizing holographic display of equipment information, construction scheme auxiliary review deduction and error correction, and full-process fine simulation of maintenance work (transformer accessory removal work, transformer oil filling and oil discharge work, open-type disconnector and grounding switch maintenance).

[0064] It should be noted that the EIM (power engineering information model) is based on various information data of power equipment, a three-dimensional holographic model is established through digital information simulation, has eight characteristics of completeness, correlation, consistency, visualization, coordination, simulation, optimization and output, realizes information sharing, processing and display. The traditional maintenance of power transformation equipment is extremely dependent on the technical level of the implementer, and is limited by the limitations of the equipment file transfer content, so that the equipment maintenance construction scheme is difficult to realize the comprehensive optimization of power-off range, accessory specification, construction process, etc. The current digital modeling of the substation is only at the appearance level and cannot support lean maintenance management. Due to the large number of parts of the power transformation equipment and the complex structure, the current EIM technology is still in the exploratory stage in the equipment operation and maintenance stage.

[0065] The technical scheme provided by the application collects the information of electrical equipment in the substation, builds a three-dimensional EIM model of the substation based on the collected information, establishes an EIM model information library of power equipment according to the equipment information of the power equipment, and develops an EIM-based substation equipment lean maintenance system based on the three-dimensional EIM model of the substation and the EIM model information library of the power equipment, thereby realizing functions such as holographic display of equipment information, construction scheme auxiliary review deduction and error correction, fine simulation of the whole process of maintenance operation, visual transfer of equipment information, effectively supporting visual lean management of the whole process of substation equipment maintenance and accurate transfer of equipment information, and improving the efficiency of power equipment maintenance.

[0066] Embodiment three

[0067] Figure 3 A structure block diagram of a maintenance system of a substation is provided for the third embodiment of the application. The system comprises a model establishing module 310, an information library establishing module 320, a system determining module 330, and a simulation maintenance module 340.

[0068] The model establishing module 310 is configured to determine a power engineering information model corresponding to the current substation according to environmental information of an environment to which the current substation belongs.

[0069] The information library establishing module 320 is configured to determine a device model information library corresponding to the current substation according to each power device located in the environment, a power device identifier, and device correlation information of the corresponding power device. The device correlation information includes device basic information, operation information, and maintenance record information.

[0070] The system determining module 330 is configured to determine a holographic display and operation and maintenance detection system for displaying the current substation and each power device located in the current substation.

[0071] The simulation maintenance module 340 is configured to determine a maintenance system applied to the substation based on the power engineering information model, the device model information base, and the holographic display and operation detection system, so as to simulate the maintenance of the power device based on the maintenance system.

[0072] On the basis of the above technical solution, the model establishing module is specifically configured to: acquire actual size information of an environment to which the current substation belongs, device footprint size information and position information of each power device in the environment, and appearance information of each power device; and determine the power engineering information model according to the actual size information, the footprint size information, the corresponding position information, and the appearance information.

[0073] On the basis of the above technical solution, the model establishing module is specifically configured to: for each power device, determine device association information corresponding to the current power device according to account information, maintenance record information, and operation information of the current power device; and determine storage data in the device model information base according to the device association information of each power device and the corresponding device identifier.

[0074] On the basis of the above technical solution, the system determining module is specifically configured to: determine a standard maintenance specification corresponding to each power device, and determine a simulation deduction method based on the standard maintenance specification; and determine an electronic document handover specification corresponding to each power device, so as to determine a simulated operation document of the corresponding power device based on the corresponding simulation deduction method; and determine the holographic display and operation detection system based on the simulation deduction method of each electronic device and the corresponding electronic document handover specification.

[0075] On the basis of the above technical solution, the electronic document handover specification includes dismounting tools and components used by the current power device.

[0076] On the basis of the above technical solution, the holographic display and operation detection system is further configured to perform holographic display of device information and simulation of a maintenance task of each power device.

[0077] The technical scheme of the embodiment of the present application determines the power engineering information model corresponding to the current transformer substation according to the environment information of the environment to which the current transformer substation belongs, and determines the device model information base corresponding to the current transformer substation according to each power device, power device identification, and device association information of the corresponding power device located in the environment, determines the holographic display and operation and maintenance detection system for displaying the current transformer substation and each power device located in the current transformer substation, and then determines the maintenance system applied to the transformer substation based on the power engineering information model, the device model information base, and the holographic display and operation and maintenance detection system, to simulate the maintenance of the power device based on the maintenance system, simulate the maintenance scheme before the maintenance of the power device, and then maintain the device based on the simulated scheme, thereby improving the efficiency of maintaining the power device.

[0078] The network attack determination system provided in the embodiment of the present application can execute the maintenance system determination method applied to the transformer substation provided in any embodiment of the present application, has the function modules and beneficial effects corresponding to the execution method.

[0079] It should be noted that each unit and module included in the above device is only divided according to the function logic, but is not limited to the above division, as long as the corresponding function can be realized; in addition, the specific name of each functional unit is only for convenient mutual distinction, and does not limit the protection scope of the embodiment of the present application.

[0080] Embodiment four

[0081] Figure 4 A structural schematic diagram of an electronic device provided in the fourth embodiment of the present application. Figure 4 A block diagram of an exemplary electronic device 40 suitable for use in implementing embodiments of the present application is shown. Figure 4 The electronic device 40 shown is merely an example and should not be taken as limiting the functionality or use of embodiments of the present application.

[0082] As shown in Figure 4 The electronic device 40 is in the form of a general computing device. Components of the electronic device 40 can include, but are not limited to, one or more processors or processing units 401, system memory 402, and a bus 403 that connects the various system components, including the system memory 402 and the processing unit 401.

[0083] Bus 403 represents one or more of several types of bus structures, including a memory bus or memory controller, a peripheral bus, a graphics acceleration bus, a processor or local bus using any of a variety of bus architectures. By way of example, these architectures include Industry Standard Architecture (ISA) bus, Micro Channel Architecture (MCA) bus, Enhanced ISA (EISA) bus, Video Electronics Standards Association (VESA) local bus, and Peripheral Component Interconnect (PCI) bus.

[0084] Electronic device 40 typically includes a variety of computer system readable media. These media can be any available media that is accessible by electronic device 40 and includes both volatile and nonvolatile media, removable and non-removable media.

[0085] The system memory 402 can include computer system readable media in the form of volatile memory, such as random access memory (RAM) 404 and / or cache memory 405. Electronic device 40 can further include other removable / non-removable, volatile / non-volatile computer system storage media. By way of example only, storage system 406 can be provided for reading from and writing to a non-removable, non-volatile magnetic media (not shown and typically called a "hard drive"). Figure 4 Although not specifically shown, the electronic device 40 can further include other removable / non-removable, volatile / non-volatile computer system storage media including, but not limited to, magnetic tape, optical disk storage and the like. These storage media provide storage capability for computer programs, databases, and other computer executable instructions for the electronic device 40. For example, a removable floppy disk can be used for Figure 4 removable and non-removable computer system storage media including, but not limited to, a magnetic floppy disk, a magnetic hard disk drive, or optical disk storage. The drives and their associated computer system storage media discussed above and illustrated in FIG. 4, provide storage of computer instructions, data structures, program modules and other data for the electronic device 40. In many embodiments, the computer system storage media 406 can include a number of program modules that are stored in the

[0086] A number of program modules can be stored in the drives and their associated computer system storage media, including an operating system 410, one or more application programs 412, other program modules 414, and program data 416, examples of which can include an implementation of a network environment. Other program modules that can be used in the

[0087] The electronic device 40 can also communicate with one or more external devices 409, such as a keyboard or a pointing device, displays 410, etc.; other devices such as a storage device or an external effects device (not shown); and / or to one or more devices that enable a user to interact with the electronic device 40 and / or any devices (e.g., a network card, a modem, etc.) that enable the electronic device 40 to communicate with one or more other computing devices. Such communication can occur via Input / Output (I / O) interface(s) 411. Still yet, such communication can occur electronically over a network 413 such as a local area network (LAN) and / or a wide area network (WAN) such as the Internet. As an example, the network 413 can be enabled by a network adapter 412 that can be constructed in Figure 4 Other hardware and / or software modules that can be used in conjunction with the electronic device 40, such as microcode, device drivers, redundant processing units, external disk drive arrays, RAID systems, tape drives, and data archival storage systems, etc. are not shown in FIG. 4, but can be readily incorporated.

[0088] The processing unit 401 performs various functions applications and data processing by running programs stored in the system memory 402, such as implementing the method for determining a maintenance system applied to a substation according to embodiments of the present application.

[0089] Embodiment five

[0090] Embodiment five of the present application also provides a storage medium containing computer executable instructions for performing a method for determining a maintenance system applied to a substation when executed by a computer processor. The method comprises:

[0091] According to environmental information of an environment to which a current substation belongs, determining power engineering information model corresponding to the current substation;

[0092] According to each power device located in the environment, power device identification, and device association information of the corresponding power device, determining a device model information library corresponding to the current substation; wherein the device association information includes device basic information, operation information, and maintenance record information;

[0093] Determining a holographic display and operation and maintenance detection system for displaying the current substation and each power device located in the current substation;

[0094] Based on the power engineering information model, the device model information library, and the holographic display and operation and maintenance detection system, determining a maintenance system applied to a substation to simulate maintenance of a power device based on the maintenance system.

[0095] The computer storage medium of the embodiments of the present application can adopt any combination of one or more computer readable media. The computer readable medium can be a computer readable signal medium or a computer readable storage medium. The computer readable storage medium may, for example, but is not limited to, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, device or apparatus, or any combination thereof. More specific examples (non-exhaustive list) of the computer readable storage medium include an electrical connection having one or more wires, a portable computer diskette, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber, a portable compact disc read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the above. In this document, the computer readable storage medium can be any tangible medium that contains or stores a program that can be used by or in connection with an instruction execution system, apparatus or device.

[0096] The computer readable signal medium can include a data signal propagated in baseband or propagated as a carrier wave in a propagated data signal, in which the computer readable program code is contained. Such propagated data signal can take many forms, including but not limited to electro-magnetic, optical or any suitable combination thereof. The computer readable signal medium can also be any computer readable medium that is not a computer readable storage medium and that can communicate, propagate or transport program for use by or in connection with an instruction execution system, apparatus or device.

[0097] The program code contained on the computer readable medium can be transmitted using any suitable medium, including but not limited to wireless, wire line, optical fiber cable, RF, etc., or any suitable combination thereof.

[0098] The computer program code for carrying out operations of the embodiments of the present application can be written in one or more programming languages or combinations of languages including an object oriented programming language such as Java, Smalltalk, C++ or the like and conventional procedural programming languages such as "C" or similar programming languages. The program code can execute entirely on the user's computer, partly on the user's computer, as a stand-alone software package, partly on the user's computer and partly on a remote computer or entirely on the remote computer or server. In the latter scenario, the remote computer can be connected to the user's computer through any type of network, including a local area network (LAN) or a wide area network (WAN), or the connection can be made to an external computer (for example, through the Internet using an Internet Service Provider).

[0099] Note that the above merely describes preferred embodiments of the present application and the principles of the technology applied. Those skilled in the art will understand that the present application is not limited to the specific embodiments described herein, and that various obvious changes, modifications and substitutions can be made without departing from the scope of the present application. Therefore, although the present application has been described in detail through the above embodiments, the present application is not limited to the above embodiments, and can include more other equivalent embodiments without departing from the concept of the present application, and the scope of the present application is determined by the scope of the claims.

Claims

1. A method for determining a maintenance system to be applied to a substation, characterized by, The method comprises the following steps: According to the environmental information of the environment to which the current transformer substation belongs, the power engineering information model corresponding to the current transformer substation is determined, wherein the power engineering information model is a three-dimensional holographic model established on the basis of information data of power equipment; According to each power equipment, power equipment identification and device association information of the corresponding power equipment located in the environment, the device model information library corresponding to the current transformer substation is determined; wherein the device association information includes device basic information, operation information and maintenance record information; The electronic document handover specification corresponding to each power equipment is determined, and the simulation operation document of the corresponding power equipment is determined based on the corresponding simulation deduction method; wherein the electronic document handover specification includes the disassembly tool associated with the current power equipment and the parts used; The holographic display and operation detection system for displaying the current transformer substation and each power equipment in the current transformer substation is determined; Based on the power engineering information model, the device model information library and the holographic display and operation detection system, the maintenance system applied to the transformer substation is determined to simulate the maintenance of the power equipment based on the maintenance system.

2. The method of claim 1, wherein, According to the environmental information of the environment to which the current transformer substation belongs, the power engineering information model corresponding to the current transformer substation is determined, comprising: Obtaining the actual size information of the environment to which the current transformer substation belongs, the device land size information and position information of each power equipment in the environment, and the appearance information of each power equipment; According to the actual size information, the land size information, the corresponding position information and the appearance information, the power engineering information model is determined.

3. The method of claim 1, wherein, According to the environmental information of the environment to which the current transformer substation belongs, the power engineering information model corresponding to the current transformer substation is determined, comprising: For each power equipment, according to the account information, maintenance record information and operation information of the current power equipment, the device association information corresponding to the current power equipment is determined; For the device association information of each power equipment and the corresponding device identification, the storage data in the device model information library is determined; Wherein, the storage data includes at least one of the account information, the maintenance record information and the operation information of all power equipment in the current transformer substation.

4. The method of claim 1, wherein, The holographic display and operation detection system for displaying the current transformer substation and each power equipment in the current transformer substation is determined, comprising: Determine the standard maintenance specification corresponding to each power equipment, and determine the simulation deduction method based on the standard maintenance specification; and Based on the simulation deduction method of each electronic device and the corresponding electronic document handover specification, the holographic display and operation detection system is determined.

5. The method of claim 1, wherein, The holographic display and operation detection system is also used for holographic display of device information and simulation of maintenance tasks of each power equipment.

6. A maintenance system for a substation, controlled by the method of determining a maintenance system for a substation according to any one of claims 1 to 5, characterized in that, The method comprises the following steps: A model establishing module is configured to determine, according to the environmental information of the environment to which the current transformer substation belongs, the power engineering information model corresponding to the current transformer substation. The information base establishing module is configured to determine a device model information base corresponding to the current transformer substation according to each power device located in the environment, power device identification, and device association information of the corresponding power device, wherein the device association information includes device basic information, operation information, and maintenance record information. The system determining module is configured to determine a holographic display and operation and maintenance system for displaying the current transformer substation and each power device located in the current transformer substation. The simulation maintenance module is configured to determine a maintenance system applied to the transformer substation based on the power engineering information model, the device model information base, and the holographic display and operation and maintenance system, so as to simulate maintenance of the power device based on the maintenance system.

7. The substation maintenance system of claim 6, wherein The model establishing module is specifically configured to: obtain actual size information of an environment to which the current transformer substation belongs, device land size information and position information of each power device in the environment, and appearance information of each power device; determine the power engineering information model according to the actual size information, the land size information, the corresponding position information, and the appearance information.

8. An electronic device, comprising: The device includes: one or more processors; a storage device configured to store one or more programs, when the one or more programs are executed by the one or more processors, the one or more processors implement the method for determining a maintenance system applied to a transformer substation as claimed in any one of claims 1-5.

9. A computer-readable storage medium having stored thereon a computer program, characterized in that The program is executed by the processor to implement the method for determining a maintenance system applied to a transformer substation as claimed in any one of claims 1-5.

Citation Information

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