Device information configuration method, device and system based on substation object model

By using a substation physical model to configure equipment information and a system, and by using a model table and simulation modules for virtual construction, the problems of high cost and high error rate in the physical construction of intelligent substations are solved, and an efficient and low-damage design process is achieved.

CN114996788BActive Publication Date: 2025-12-12CEEC JIANGSU ELECTRIC POWER DESIGN INST CO LTD
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Patent Information

Application Number
CN202210492791.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-08-02
Publication Date
2025-12-12
Estimated Expiration
2042-08-02

AI Technical Summary

Technical Problem

Existing smart substations can only be designed through physical construction, which is costly and prone to errors that can damage equipment and affect construction efficiency.

Method used

A method and system for configuring equipment information based on a substation physical model is adopted. Virtual construction is carried out using a model table and custom simulation modules. Through area division, simulation module type setting, connection status self-check, and light strip management, simulated operation and status monitoring are realized.

Benefits of technology

It reduces setup costs, minimizes equipment damage, improves design efficiency, and ensures setup accuracy through self-inspection and monitoring functions.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a device information configuration method, device and system based on a transformer substation object model, relates to the technical field of transformer substation configuration methods, and comprises a device information configuration system, a device management system and a device information configuration device.The device information configuration system is bidirectionally electrically connected with the device management system.The device information configuration device comprises a model table, a main control unit and a storage module are arranged in the model table, the device management system comprises a touch screen, a module control system, a main control unit and a storage module, and the application solves the problem that the existing intelligent transformer substation can only be built through entities when being designed, the building cost is high, and when an error occurs in building, the device is damaged, and the efficiency of intelligent transformer substation construction design is affected.
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Description

TECHNICAL FIELD

[0001] The present application relates to a device information configuration method, device and system based on a substation object model, and belongs to the technical field of substation configuration methods. BACKGROUND

[0002] An intelligent substation uses advanced, reliable, integrated, low-carbon and environmentally friendly intelligent devices, with full-station information digitization, communication platform networking and information sharing standardization as basic requirements, to automatically complete basic functions such as information collection, measurement, control, protection, metering and monitoring, and can support real-time automatic control, intelligent adjustment, online analysis and decision-making, collaborative interaction and other advanced functions of the power grid as needed. The communication network uses IEC61850 specification, which does not need to be converted, can speed up the communication speed, reduce the complexity of the system and the difficulty of maintenance, thereby improving the performance of the communication system, the precision of the intelligent components, greatly reducing the workload of operation and maintenance, improving the safety, the self-checking function of the equipment, improving the reliability of operation and reducing the workload of the operating personnel.

[0003] The existing intelligent substation on the market can only be built by entities when designing, which has high construction cost, and when the construction is wrong, it will cause damage to the equipment, affecting the efficiency of intelligent substation construction design, so the present application provides a device information configuration method, device and system based on a substation object model to solve the above problems. SUMMARY

[0004] The present application aims to overcome the deficiencies in the prior art, and provides a device information configuration method, device and system based on a substation object model to solve the problem of high construction cost of the existing intelligent substation when designing, which can only be built by entities, and when the construction is wrong, it will cause damage to the equipment, affecting the efficiency of intelligent substation construction design.

[0005] To achieve the above-mentioned purpose, the present application is realized by using the following technical solutions:

[0006] The first aspect, the present application provides a device information configuration device based on substation object model, including model table, the upper surface of the model table is provided with touch screen, one side of the model table is fixedly provided with simulation module box, the inside of the simulation module box is provided with simulation module slot, the inside of the simulation module slot is movably provided with simulation module, the outer surface of the simulation module is provided with shell, the upper portion of the shell is fixedly connected with display screen mounting block through buckle, the inside of the upper portion of the display screen mounting block is provided with module touch screen, the periphery of the upper end of the shell is provided with light bar slot, the inner wall of the light bar slot is provided with light bar, the inside of the shell is provided with pressurizing block slot, the bottom end of the inside of the pressurizing block slot is provided with pressurizing block, the inside of the pressurifying block slot is provided with support plate, the upper portion of the support plate is provided with module control unit, the middle position below the shell is provided with mobile seat, the inside of the mobile seat and the pressurizing block is slidably provided with touch pen.

[0007] Preferably, the simulation module box is fixedly provided with a partition frame at one end away from the model table, and the two opposite inner walls of the simulation module box are symmetrically provided with partition grooves, and the inside of the partition grooves and the partition frame is movably installed with a partition respectively.

[0008] Preferably, the inside of the light bar slot is provided with a protection plate, and the outer surface of the protection plate is parallel to the outer surfaces of the shell and the display screen mounting block, the middle position below the support plate is provided with a touch pen telescopic rod, the lower end of the touch pen telescopic rod is fixedly provided with a touch pen clamp, the upper end of the touch pen clamp is fixedly connected with the touch pen, the lower end of the shell is externally sleeved with a support plate, and the lower end surface of the support plate is higher than the lower end surface of the mobile seat, and one side of the module control unit is provided with a light bar control system.

[0009] Preferably, the middle position of the lower end of the shell is provided with a mobile seat limiting sleeve, the two opposite inner walls of the mobile seat limiting sleeve are provided with limiting protrusions, the upper end of the mobile seat is provided with a mobile seat limiting plate, the distance between the two mobile seats is less than the width of the mobile seat limiting plate, and the width of the mobile seat limiting plate is greater than the distance between the lower ends of the two mobile seat limiting sleeves, the inner side of the upper end of the mobile seat is symmetrically provided with a magnet block, the outer side of the lower end of the touch pen is provided with a touch pen electromagnetic block, and the touch pen electromagnetic block is arranged opposite to the magnet block, and the lower end of the mobile seat is rollingly provided with a ball.

[0010] In a second aspect, the present application provides a device information configuration system based on a transformer substation object model, comprising a device information configuration system, a device management system and a device information configuration device, the device information configuration system is electrically connected with the device management system, the device information configuration device comprises a model table, the inside of the model table is provided with a main control unit and a storage module, the device management system comprises a touch screen, a module control system, the main control unit and the storage module, the output end of the main control unit is electrically connected with the input end of the touch screen, the main control unit is bidirectionally electrically connected with the storage module, the output end of the main control unit is electrically connected with the input end of the module control system, the module control system comprises a module touch screen, a light bar, a touch pen telescopic rod, a touch pen electromagnetic block, an electromagnet switch, a module control unit and a light bar control system, the output end of the module control unit is respectively electrically connected with the input end of the light bar control system, the touch pen telescopic rod, the touch pen electromagnetic block and the electromagnet switch, the module control unit is bidirectionally electrically connected with the module touch screen, and the output end of the light bar control system is electrically connected with the input end of the light bar.

[0011] Preferably, the device information configuration system comprises a modeling system, a connection state self-checking system, an audit condition setting system, an operation state audit system and a maintenance system, the modeling system comprises a region division system, a model adding system and a model setting system;

[0012] The modeling system realizes the initial simulation setup and setting of the transformer substation.

[0013] The connection state self-checking system self-checks the connection state of the setup model system.

[0014] The audit condition setting system sets the conditions needing to be audited in the simulation operation state.

[0015] The operation state audit system displays and follows up the transmission and problems in the simulation operation state.

[0016] The region division system facilitates the division of the simulation transformer substation into a station control layer, a bay layer and a process layer.

[0017] The model adding system sets the types of the simulation modules placed on the touch screen and obtains the moving parameters.

[0018] The model setting system manages the socket connection, light bar and display of the simulation modules.

[0019] Preferably, the region division system comprises a line identification module, a region type selection system and a region type adjustment system, the model adding system comprises a model identification system, a type setting system and a model displacement identification system, and the model setting system comprises a model socket management system, a light bar management system and a model display system.

[0020] The dash line identification module is used for identifying the dash line action on the touch screen.

[0021] The region type selection system selects different region types after dividing the regions.

[0022] The region type adjustment system adjusts the determined region types.

[0023] The model identification system realizes the identification of the simulation module by the touch screen.

[0024] The model type setting system selects and sets the type of the simulation module.

[0025] The model displacement identification system acquires the displacement of the simulation module.

[0026] The model socket management system manages the connection state of the socket of the simulation module.

[0027] The light bar management system sets the display color of the light bar on the simulation module.

[0028] The model display system controls the content displayed on the module touch screen through the type and interface state of the simulation module.

[0029] Preferably, the connection state self-checking system includes an unconnected module identification system, a connection method judgment system, and a connection comprehensiveness judgment system, the audit condition setting system includes a condition adding system, a condition modifying system, a condition auditing system, and a condition storage system, and the running state auditing system includes a transmission speed monitoring system, a running data monitoring system, a running problem display system, and a running problem follow-up system.

[0030] The unconnected module identification system is used for detecting whether the simulation module is connected to the Ethernet or the optical fiber.

[0031] The connection method judgment system judges whether the correct connection method is set according to the type of the simulation module.

[0032] The connection comprehensiveness judgment system monitors the comprehensiveness of the connection of each simulation module.

[0033] The condition adding system is used for adding the conditions that need to be audited in the simulation running state.

[0034] The condition modifying system is used for modifying the conditions that need to be audited in the simulation running state.

[0035] The condition auditing system is used for auditing the rationality of the added audit conditions.

[0036] The condition storage system stores the added and modified audit conditions.

[0037] The transmission speed monitoring system monitors the transmission speed in the simulation running state;

[0038] The operation data monitoring system acquires data in the simulation running state;

[0039] The operation problem display system displays the audit conditions triggered in the simulation running state;

[0040] The operation problem follow-up system follows up and records the solution state of the triggered audit conditions.

[0041] Preferably, the maintenance system includes a fire-fighting system, a flood prevention system, a video monitoring system, a lighting system, and an environmental system, the fire-fighting system includes a smoke alarm system, a thermal fire sensing system, and a fire alarm system; the fire-fighting response system includes a deluge valve information acquisition system, a main transformer fire alarm information acquisition system, and a valve control system, the video monitoring system includes a face recognition system, a monitor maintenance system, and a monitoring picture recognition system, the lighting system includes a human body infrared sensing system, a solar charging system, and a lighting management system, and the environmental system includes an access control management system, a window breakage acquisition system, a temperature and humidity sensing system, an UPS monitoring system, a cabinet monitoring system, and a communication management system;

[0042] The fire-fighting system monitors and alarms the fire in the substation in real time;

[0043] The fire-fighting response system acquires the state of the deluge valve and the main transformer fire alarm, and controls the valve through the valve control system to facilitate efficient water fire-fighting operation;

[0044] The video monitoring system monitors the state of the equipment and personnel in the substation through video;

[0045] The lighting system manages the opening, energy conversion, and maintenance of the lighting equipment in the substation;

[0046] The environmental system dynamically monitors the state of the equipment and the environmental parameters in the substation;

[0047] The smoke alarm system effectively monitors whether there is a fire in the substation through the monitoring of smoke;

[0048] The thermal fire sensing system monitors whether there is a fire in the substation through the change of heat in the thermal sensing;

[0049] The fire alarm system quickly and timely alarms when the smoke alarm system or the thermal fire sensing system finds a fire;

[0050] The deluge valve information acquisition system acquires the state of the main transformer water fire-fighting deluge valve at regular intervals to facilitate timely acquisition of the deluge valve equipment condition;

[0051] The main transformer fire information acquisition system acquires main transformer fire information, and timely processing is performed when a main transformer fire occurs.

[0052] The valve control system controls the deluge valve to open for fire fighting operation when a fire occurs by acquiring the deluge valve state and the main transformer fire information.

[0053] The face recognition system judges the personnel entering the substation by face recognition to prevent personnel other than the staff from entering the substation to cause a security risk.

[0054] The monitor maintenance system monitors the definition and operating temperature of the monitor and controls the monitoring direction.

[0055] The monitoring picture recognition system recognizes the picture acquired by the monitor, recognizes the change of the picture and the corresponding situation.

[0056] The human body infrared sensing system detects whether personnel enter the lighting range by human body infrared, so as to reduce unnecessary lighting costs.

[0057] The solar charging system converts energy by solar conversion to charge the lighting system.

[0058] The lighting management system manages the lighting equipment, and timely informs the staff to process when the lighting lamp is damaged.

[0059] The access control management system manages the access control equipment, and controls the access control to release the personnel after the personnel pass through the face recognition system.

[0060] The electronic fence system acquires whether there is an invasion of destroying or climbing the electronic fence in the substation.

[0061] The temperature and humidity sensing system monitors the temperature and humidity change in the substation in real time.

[0062] The UPS monitoring system monitors the UPS state in the substation.

[0063] The cabinet monitoring system detects the operating state and data transmission speed of the cabinet.

[0064] The communication management system realizes the management of transmission data, and detects each transmission equipment.

[0065] In a third aspect, the present application provides a device information configuration device based on a substation object model and a configuration method of the device information configuration device based on the substation object model, including the following steps:

[0066] Step one: first draw a line on the touch screen, the line recognition module identifies the line action, thereby realizing the division of the region, the region type selection system selects the specific device layer of the region, the region type adjustment system modifies the specific device layer of the region, at this time, the simulation module is taken out from the simulation module box and placed on the touch screen, the model recognition system realizes the recognition of the simulation module through the contact between the stylus and the touch screen, the type setting system realizes the setting of the type of the simulation module, the touch screen is clicked to select, and the lamp bar displays the corresponding lamp bar color according to the type, and the lamp bar management system can be used to set the lamp bar color of each type of device;

[0067] Step two: when the simulation module needs to be moved, the electromagnet switch needs to be pressed, at this time, the electromagnet switch realizes the energization of the electromagnet block of the stylus, thereby attracting the moving seat downward, so that the ball contacts the touch screen, at this time, the simulation module is moved, the model displacement recognition system recognizes the displacement of the stylus, when the simulation module is set, the model socket management system can be used to set the connection method and connection mode of the simulation module, and the type and connection state of the simulation module are displayed through the module touch screen;

[0068] Step three: whether the simulation module is not connected is monitored through the unconnected module recognition system, the connection method of the corresponding type of simulation module is audited through the connection method judgment system, and the comprehensiveness of the connection of the simulation module is monitored through the connection comprehensiveness judgment system;

[0069] Step four: the audit conditions are added and modified through the audit condition setting system before simulation test, the rationality of the audit conditions is judged through the condition audit system, and finally the audit conditions are stored;

[0070] Step five: simulation operation is carried out, the transmission speed and data are monitored through the transmission speed monitoring system and the running data monitoring system, the triggered audit problems are displayed and followed up, and subsequent adjustment is facilitated.

[0071] Compared with the prior art, the beneficial effects achieved by the present application are:

[0072] The application sets a model table and a matching setting, and can customize a kind of simulation module, the simulation module can be set as any required device of the substation, first, the partition setting of the working layer of the set substation can be realized through the area division system, the model is set through the model adding system, the kind of simulation module is selected, and the position movement of the simulation module is sensed, the connection of the simulation module is set and adjusted through the model socket management system, the kind and interface state of the simulation module are displayed, the color of various kinds of lamp strips can be displayed through the lamp strip management system, the corresponding color is displayed through the lamp strip control system, whether the simulation module is not connected is monitored through the unconnected module identification system, the connection method of the corresponding kind of simulation module is audited through the connection method judgment system, the comprehensiveness of the connection of the simulation module is monitored through the connection comprehensiveness judgment system, whether the simulation module is not connected is monitored through the unconnected module identification system, the connection method of the corresponding kind of simulation module is audited through the connection method judgment system, the comprehensiveness of the connection of the simulation module is monitored through the connection comprehensiveness judgment system, the simulation operation is carried out, the transmission speed and data are monitored through the transmission speed monitoring system and the operation data monitoring system, the audited problems are displayed and followed up, and subsequent adjustment is facilitated, when the simulation module needs to be moved, the power supply of the electromagnetic block of the stylus is turned on through the electromagnetic switch, so that the moving seat provided with the magnet block is attracted to move downward, the ball is contacted with the touch screen, the damage to the surface of the touch screen during the movement of the simulation module is reduced, when the simulation module is moved to the required position, the stylus is moved upward through the telescopic rod of the stylus, so that the moving seat limiting plate is limited by the limiting convex block, the supporting plate is contacted with the touch screen, the electromagnetic switch is released at this time, and the stylus is reset, the problem that the existing intelligent substation can only be built through entities during design, the building cost is high, and the equipment is damaged when the building error occurs, thereby affecting the efficiency of the intelligent substation construction design is solved. BRIEF DESCRIPTION OF DRAWINGS

[0073] Figure 1 It is a top view of the device information configuration device based on the substation object model in the application;

[0074] Figure 2 It is a structure schematic view of the simulation module in the application;

[0075] Figure 3 It is a A area local enlarged view of the application; Figure 2

[0076] Figure 4 It is a principle schematic view of the device information configuration system based on the substation object model in the application;

[0077] Figure 5 It is a principle schematic view of the maintenance system in the application.

[0078] ​In the figure: 1, model table; 2, touch screen; 3, simulation module box; 4, partition frame; 5, simulation module slot; 6, simulation module; 7, partition slot; 8, partition; 9, shell; 10, display screen mounting block; 11, support plate; 12, moving seat; 13, module touch screen; 14, light bar slot; 15, light bar; 16, protective plate; 17, pressure block slot; 18, support plate; 19, touch pen telescopic rod; 20, touch pen clamp; 21, touch pen; 22, pressure block; 23, ball; 24, moving seat limiting sleeve; 25, limiting protrusion; 26, moving seat limiting plate; 27, touch pen electromagnetic block; 28, magnet block; 29, electromagnet switch; 30, module control unit; 31, light bar control system; 32, module control system; 33, main control unit; 34, storage module; 35, equipment management system; 36, equipment information configuration system; 37, modeling system; 38, area division system; 39, model adding system; 40, model setting system; 41, connection state self-checking system; 42, review condition setting system; 43, running state review system; 44, scribing identification module; 45, area type selection system; 46, area type adjustment system; 47, model identification system; 48, type setting system; 49, model displacement identification system; 50, model socket management system; 51, light bar management system; 52, model display system; 53, unconnected module identification system; 54, connection method judgment system; 55, connection comprehensiveness judgment system; 56, condition adding system; 57, condition modification system; 58, condition review system; 59, condition storage system; 60, transmission speed monitoring system; 61, running data monitoring system; 62, running problem display system; 63, running problem follow-up system; 64, maintenance system; 65, fire fighting system; 66, fire fighting response system; 67, video monitoring system; 68, lighting system; 69, dynamic ring system; 70, smoke alarm system; 71, heat-sensitive fire sensing system; 72, fire alarm system; 73, deluge valve information acquisition system; 74, main transformer fire alarm information acquisition system; 75, valve control system; 76, face recognition system; 77, monitor maintenance system; 78, monitoring picture identification system; 79, human body infrared sensing system; 80, solar charging system; 81, lighting management system; 82, access control management system; 83, electronic fence system; 84, temperature and humidity sensing system; 85, UPS monitoring system; 86, cabinet monitoring system; 87, communication management system. DETAILED DESCRIPTION

[0079] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, not all.

[0080] Embodiment 1, please refer to Figures 1-5The embodiment provides a device information configuration device based on a transformer substation object model, which comprises a model table 1, the upper surface of the model table 1 is provided with a touch screen 2, one side of the model table 1 is fixedly provided with a simulation module box 3, the inside of the simulation module box 3 is provided with a simulation module slot 5, the inside of the simulation module slot 5 is movably provided with a simulation module 6, the outer surface of the simulation module 6 is provided with an outer shell 9, the upper side of the outer shell 9 is fixedly connected with a display screen mounting block 10 through buckling, the inside of the upper side of the display screen mounting block 10 is provided with a module touch screen 13, the periphery of the upper end of the outer shell 9 is provided with a light bar slot 14, the inner wall of the light bar slot 14 is provided with a light bar 15, the inside of the outer shell 9 is provided with a pressurizing block slot 17, the bottom end of the inside of the pressurizing block slot 17 is provided with a pressurizing block 22, the inside of the pressurizing block slot 17 is provided with a supporting plate 18, the upper side of the supporting plate 18 is provided with a module control unit 30, the middle position of the lower side of the outer shell 9 is provided with a moving seat 12, the inside of the moving seat 12 and the pressurizing block 22 is slidably provided with a touch pen 21.

[0081] Please refer to Figure 1 , one end of the simulation module box 3 away from one side of the model table 1 is fixedly provided with a partition frame 4, the two opposite inner walls of the simulation module box 3 are symmetrically provided with partition slots 7, and the inside of the partition slots 7 and the partition frame 4 is movably provided with a partition 8 respectively.

[0082] Please refer to Figure 2 , the inside of the light bar slot 14 is provided with a protection plate 16, the outer surface of the protection plate 16 is parallel to the outer surfaces of the outer shell 9 and the display screen mounting block 10, the middle position of the lower side of the supporting plate 18 is provided with a touch pen telescopic rod 19, the lower side of the touch pen telescopic rod 19 is fixedly provided with a touch pen clamp 20, the upper end of the touch pen clamp 20 is fixedly connected with the touch pen 21, the lower end of the outer shell 9 is externally sleeved with a supporting plate 11, the lower end surface of the supporting plate 11 is higher than the lower end surface of the moving seat 12, and one side of the module control unit 30 is provided with a light bar control system 31.

[0083] Please refer to Figure 2 and Figure 3 , the middle position of the lower end of the outer shell 9 is provided with a moving seat limiting sleeve 24, the two opposite inner walls of the moving seat limiting sleeve 24 are provided with limiting protrusions 25, the upper end of the moving seat 12 is provided with a moving seat limiting plate 26, the distance between the two moving seats 12 is less than the width of the moving seat limiting plate 26, the width of the moving seat limiting plate 26 is greater than the distance between the lower ends of the two moving seat limiting sleeves 24, the inner side of the upper end of the moving seat 12 is symmetrically provided with magnet blocks 28, the outer side of the lower end of the touch pen 21 is provided with a touch pen electromagnetic block 27, the touch pen electromagnetic block 27 is arranged opposite to the magnet blocks 28, and the lower end of the moving seat 12 is rollingly provided with a ball 23.

[0084] Embodiment 2, please refer to Figure 4The embodiment provides a device information configuration system based on a transformer substation object model, which comprises a device information configuration system 36, a device management system 35 and a device information configuration device. The device information configuration system 36 is bidirectionally electrically connected with the device management system 35. The device information configuration device comprises a model table 1. The model table 1 is internally provided with a main control unit 33 and a storage module 34. The device management system 35 comprises a touch screen 2, a module control system 32, the main control unit 33 and the storage module 34. The output end of the main control unit 33 is electrically connected with the input end of the touch screen 2. The main control unit 33 is bidirectionally electrically connected with the storage module 34. The output end of the main control unit 33 is electrically connected with the input end of the module control system 32. The module control system 32 comprises a module touch screen 13, a light bar 15, a touch pen telescopic rod 19, a touch pen electromagnetic block 27, an electromagnet switch 29, a module control unit 30 and a light bar control system 31. The output end of the module control unit 30 is respectively electrically connected with the input end of the light bar control system 31, the touch pen telescopic rod 19, the touch pen electromagnetic block 27 and the electromagnet switch 29. The module control unit 30 is bidirectionally electrically connected with the module touch screen 13. The output end of the light bar control system 31 is electrically connected with the input end of the light bar 15.

[0085] Please refer to Figure 4 The device information configuration system 36 comprises a modeling system 37, a connection state self-checking system 41, an audit condition setting system 42, an operation state audit system 43 and a maintenance system 64. The modeling system 37 comprises a region division system 38, a model adding system 39 and a model setting system 40.

[0086] The modeling system 37 realizes the initial simulation setup and setting of the transformer substation.

[0087] The connection state self-checking system 41 performs self-checking on the connection state of the setup model system.

[0088] The audit condition setting system 42 sets the conditions that need to be audited in the simulation operation state.

[0089] The operation state audit system 43 displays and follows up the transmission and problems in the simulation operation state.

[0090] The region division system 38 facilitates the division of the simulation transformer substation into the station control layer, the interval layer and the process layer.

[0091] The model adding system 39 sets the types of the simulation modules 6 placed on the touch screen 2 and acquires the moving parameters.

[0092] The model setting system 40 manages the socket connection, the light bar and the display of the simulation modules 6.

[0093] Please refer to Figure 4, the region division system 38 includes a line identification module 44, a region type selection system 45 and a region type adjustment system 46, the model adding system 39 includes a model identification system 47, a type setting system 48 and a model displacement identification system 49, the model setting system 40 includes a model socket management system 50, a light bar management system 51 and a model display system 52;

[0094] The line identification module 44 is used to identify the line drawing action on the touch screen 2.

[0095] The region type selection system 45 selects different region types after dividing the region.

[0096] The region type adjustment system 46 adjusts the determined region type.

[0097] The model identification system 47 realizes the identification of the simulation module 6 by the touch screen 2.

[0098] The type setting system 48 selects and sets the type of the simulation module 6.

[0099] The model displacement identification system 49 obtains the displacement of the simulation module 6.

[0100] The model socket management system 50 manages the connection state of the socket of the simulation module 6.

[0101] The light bar management system 51 sets the display color of the light bar 15 on the simulation module 6.

[0102] The model display system 52 controls the content displayed by the module touch screen 13 through the type and interface state of the simulation module 6.

[0103] Please refer to Figure 4 The connection state self-checking system 41 includes an unconnected module identification system 53, a connection method judgment system 54 and a connection comprehensiveness judgment system 55, the review condition setting system 42 includes a condition adding system 56, a condition modifying system 57, a condition review system 58 and a condition storage system 59, and the running state review system 43 includes a transmission speed monitoring system 60, a running data monitoring system 61, a running problem display system 62 and a running problem follow-up system 63.

[0104] The unconnected module identification system 53 is used to detect whether the simulation module 6 is connected to the Ethernet or the optical fiber.

[0105] The connection method judgment system 54 judges whether the correct connection method is set according to the type of the simulation module 6.

[0106] The connection comprehensiveness judgment system 55 monitors the comprehensiveness of the connection of each simulation module 6.

[0107] The condition adding system 56 is used to add the conditions that need to be audited in the simulation running state;

[0108] The condition modifying system 57 is used to modify the conditions that need to be audited in the simulation running state;

[0109] The condition auditing system 58 is used to audit the rationality of the added conditions;

[0110] The condition storage system 59 stores the added and modified conditions;

[0111] The transmission speed monitoring system 60 monitors the transmission speed in the simulation running state;

[0112] The running data monitoring system 61 obtains the data in the simulation running state;

[0113] The running problem display system 62 displays the triggered conditions in the simulation running state;

[0114] The running problem follow-up system 63 follows up and records the solution state of the triggered conditions.

[0115] Please refer to Figure 4 and Figure 5 , the maintenance system 64 includes a fire-fighting system 65, a fire-fighting response system 66, a video monitoring system 67, a lighting system 68, and an environmental system 69. The fire-fighting system 65 includes a smoke alarm system 70, a heat-sensitive fire sensing system 71, and a fire alarm system 72. The fire-fighting response system 66 includes a deluge valve information acquisition system 73, a main transformer fire alarm information acquisition system 74, and a valve control system 75. The video monitoring system 67 includes a face recognition system 76, a monitor maintenance system 77, and a monitoring picture recognition system 78. The lighting system 68 includes a human body infrared sensing system 79, a solar charging system 80, and a lighting management system 81. The environmental system 69 includes an access control management system 82, an electronic fence system 83, a temperature and humidity sensing system 84, an UPS monitoring system 85, a cabinet monitoring system 86, and a communication management system 87.

[0116] The fire-fighting system 65 monitors and alarms the fire in the substation in real time.

[0117] The fire-fighting response system 66 acquires the state of the deluge valve and the main transformer fire alarm, and controls the valve through the valve control system 75 to facilitate efficient water fire-fighting operation.

[0118] The video monitoring system 67 monitors the video of the equipment state and personnel state in the substation.

[0119] The lighting system 68 manages the opening, energy conversion, and maintenance of the lighting equipment in the substation.

[0120] The dynamic ring system 69 dynamically monitors the state of equipment and environmental parameters in the substation;

[0121] The smoke alarm system 70 effectively monitors whether there is a fire in the substation through monitoring of smoke;

[0122] The thermal fire sensing system 71 monitors whether there is a fire in the substation through changes in heat in thermal sensing;

[0123] The fire alarm system 72 quickly and timely alarms when the smoke alarm system 70 or the thermal fire sensing system 71 detects a fire;

[0124] The deluge valve information acquisition system 73 acquires the state of the main transformer water fire deluge valve at regular intervals, facilitating timely acquisition of deluge valve equipment conditions;

[0125] The main transformer fire alarm information acquisition system 74 acquires main transformer fire information and timely handles when a main transformer fire occurs;

[0126] The valve control system 75 controls the deluge valve to open for fire fighting when a fire occurs through the acquired deluge valve state and main transformer fire alarm information;

[0127] The face recognition system 76 judges personnel entering the substation through face recognition to prevent personnel other than workers from entering the substation and causing safety hazards;

[0128] The monitor maintenance system 77 monitors the clarity and operating temperature of the monitor and controls the monitoring direction;

[0129] The monitoring picture recognition system 78 recognizes the picture acquired by the monitor, recognizes changes in the picture and corresponding conditions;

[0130] The human body infrared sensing system 79 detects whether personnel enter the lighting range through human body infrared, facilitating reduction of unnecessary lighting costs;

[0131] The solar charging system 80 converts energy through solar conversion to charge the lighting system;

[0132] The lighting management system 81 manages lighting equipment and timely notifies workers to handle when lighting lamps are damaged;

[0133] The access control management system 82 manages the access control equipment and controls the access control to release personnel after they pass through the face recognition system 76;

[0134] The electronic fence system 83 acquires whether there is an intrusion of personnel damaging or climbing the electronic fence in the substation;

[0135] The temperature and humidity sensing system 84 monitors the temperature and humidity changes in the substation in real time.

[0136] The UPS monitoring system 85 monitors the status of the UPS in the substation.

[0137] The cabinet monitoring system 86 detects the running state and data transmission speed of the cabinet.

[0138] The communication management system 87 manages the transmission data and detects each transmission device.

[0139] Embodiment 3 provides a device information configuration device based on a substation object model and a configuration method of the device information configuration device based on the substation object model, which comprises the following steps:

[0140] Step one: first draw a line on the touch screen 2, the line recognition module 44 recognizes the line drawing action, thereby realizing the division of the area, selecting the specific device layer of the area through the area type selection system 45, and modifying the specific device layer of the area through the area type adjustment system 46. At this time, the simulation module 6 is taken out from the simulation module box 3 and placed on the touch screen 2. The model recognition system 47 realizes the recognition of the simulation module 6 by contacting the touch screen 2 with the touch pen 21. The type setting system 48 realizes the setting of the type of the simulation module 6. The selection is made by clicking the module touch screen 13. The light bar 15 displays the corresponding color of the light bar 15 according to the type, and the color of the light bar 15 of each type of device can be set through the light bar management system 51.

[0141] Step two: when the simulation module 6 needs to be moved, the electromagnet switch 29 needs to be pressed. At this time, the electromagnet switch 29 realizes the energization of the electromagnet block 27 of the touch pen, thereby attracting the moving seat 12 downward, so that the ball 23 is in contact with the touch screen 2. At this time, the simulation module 6 is moved. The model displacement recognition system 49 recognizes the displacement of the touch pen 21. When the simulation module 6 is set, the connection method and connection mode of the simulation module 6 can be set through the model socket management system 50. The type and connection state of the simulation module 6 are displayed through the module touch screen 13.

[0142] Step three: whether the simulation module 6 is not connected is monitored through the unconnected module recognition system 53. The connection method of the corresponding type of simulation module 6 is audited through the connection method judgment system 54. The comprehensiveness of the connection of the simulation module 6 is monitored through the connection comprehensiveness judgment system 55.

[0143] Step four: add, modify the audit conditions through the audit condition setting system 42 before simulation test, judge the rationality of the audit conditions through the condition audit system 58, and finally store the audit conditions;

[0144] Step five: perform simulation operation, the transmission speed monitoring system 60 and the operation data monitoring system 61 monitor the transmission speed and data, display and follow up the triggered audit problems, and facilitate subsequent adjustment.

[0145] The model table 1 and the self-defined type simulation module 6 matched with the model table 1 are arranged, the simulation module 6 can be set as any required equipment of a substation, first, the partition setting of the working layer of the set substation can be realized through the area division system 38, the model is perceived and set through the model adding system 39, the type of the simulation module 6 is selected, the position movement of the simulation module 6 is perceived, the connection of the simulation module 6 is set and adjusted through the model socket management system 50, the type and interface state of the simulation module 6 are displayed, the colors of various types of light bars 15 can be displayed through the light bar 15 management system, the light bar 15 control system controls the light bar 15 to display the corresponding color, whether the simulation module 6 is not connected is monitored through the unconnected module identification system 53, the connection method of the simulation module 6 of the corresponding type is audited through the connection method judgment system 54, the comprehensiveness of the connection of the simulation module 6 is monitored through the connection comprehensiveness judgment system 55, whether the simulation module 6 is not connected is monitored through the unconnected module identification system 53, the connection method of the simulation module 6 of the corresponding type is audited through the connection method judgment system 54, the comprehensiveness of the connection of the simulation module 6 is monitored through the connection comprehensiveness judgment system 55, the simulation operation is performed, the transmission speed and data are monitored through the transmission speed monitoring system 60 and the operation data monitoring system 61, the triggered audit problems are displayed and followed up, and subsequent adjustment is facilitated, when the simulation module 6 needs to be moved, the power supply of the electromagnetic block of the stylus 21 is turned on through the electromagnetic switch 29, so that the moving seat 12 provided with the magnet block 28 is attracted to move downward, the ball 23 is in contact with the touch screen 2, the damage to the surface of the touch screen 2 during the movement of the simulation module 6 is reduced, when the moving seat 12 is moved to the required position, the stylus 21 telescopic rod 19 drives the stylus 21 to move upward, so that the moving seat 12 limiting plate is limited by the limiting protrusion 25, the supporting plate 18 is in contact with the touch screen 2, at this time, the electromagnetic switch 29 is released, the stylus 21 is reset, and the problem that the existing intelligent substation can only be built by entity during design, the building cost is high, and when the building is wrong, the equipment is damaged, and the efficiency of intelligent substation construction design is affected is solved.

[0146] The above merely describes the preferred embodiments of the present application, and it should be pointed out that, for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present application, and these improvements and modifications should also be considered as the protection scope of the present application.

Claims

1. Device information configuration apparatus based on a substation object model, comprising a model table (1), characterized in that, The upper surface of the model table (1) is provided with a touch screen (2), one side of the model table (1) is fixedly provided with a simulation module box (3), the inside of the simulation module box (3) is provided with a simulation module slot (5), the inside of the simulation module slot (5) is movably provided with a simulation module (6), the outer surface of the simulation module (6) is provided with a shell (9), the upper part of the shell (9) is fixedly connected with a display screen mounting block (10) through buckling, the inside of the upper part of the display screen mounting block (10) is provided with a module touch screen (13), the periphery of the upper end of the shell (9) is provided with a light bar groove (14), the inner wall of the light bar groove (14) is provided with a light bar (15), the inside of the shell (9) is provided with a pressurizing block groove (17), the bottom end of the inside of the pressurizing block groove (17) is provided with a pressurizing block (22), the inside of the pressurizing block groove (17) is provided with a supporting plate (18), the upper part of the supporting plate (18) is provided with a module control unit (30), the middle position of the lower part of the shell (9) is provided with a moving seat (12), the inside of the moving seat (12) and the pressurizing block (22) is slidably provided with a touch pen (21). 2.The device information configuration apparatus based on a substation object model according to claim 1, characterized in that: The end of the simulation module box (3) away from the model table (1) is fixedly provided with a partition frame (4), the two opposite inner walls of the simulation module box (3) are symmetrically provided with a partition slot (7), and the inside of the partition slot (7) and the partition frame (4) is movably provided with a partition (8). 3.The substation object model based device information configuration apparatus according to claim 1, wherein: The inside of the light bar groove (14) is provided with a protection plate (16), and the outer surface of the protection plate (16) is parallel to the outer surfaces of the shell (9) and the display screen mounting block (10), the middle position of the lower part of the supporting plate (18) is provided with a touch pen telescopic rod (19), the lower part of the touch pen telescopic rod (19) is fixedly provided with a touch pen clamp (20), the upper end of the touch pen clamp (20) is fixedly connected with the touch pen (21), the lower end of the shell (9) is externally sleeved with a supporting plate (11), and the lower end surface of the supporting plate (11) is higher than the lower end surface of the moving seat (12), one side of the module control unit (30) is provided with a light bar control system (31). 4.The substation object model based device information configuration apparatus according to claim 1, wherein: The middle position of the lower end of the shell (9) is provided with a moving seat limiting sleeve (24), the two opposite inner walls of the moving seat limiting sleeve (24) are provided with a limiting protruding block (25), the upper end of the moving seat (12) is provided with a moving seat limiting plate (26), the distance between the two moving seats (12) is less than the width of the moving seat limiting plate (26), and the width of the moving seat limiting plate (26) is greater than the distance between the lower ends of the two moving seat limiting sleeves (24), the inner side of the upper end of the moving seat (12) is symmetrically provided with a magnet block (28), the outer part of the lower end of the touch pen (21) is provided with a touch pen electromagnetic block (27), and the touch pen electromagnetic block (27) is oppositely arranged with the magnet block (28), and the lower end of the moving seat (12) is rollingly provided with a ball (23).

5. A device information configuration system based on a substation object model, comprising a device information configuration system (36), a device management system (35) and a device information configuration device, characterized by: The device information configuration system (36) is bidirectionally electrically connected with the device management system (35), the device information configuration device comprises a model table (1), the inside of the model table (1) is provided with a main control unit (33) and a storage module (34), the device management system (35) comprises a touch screen (2), a module control system (32), the main control unit (33) and the storage module (34), the output of the main control unit (33) is electrically connected with the input of the touch screen (2), the main control unit (33) is bidirectionally electrically connected with the storage module (34), the output of the main control unit (33) is electrically connected with the input of the module control system (32), the module control system (32) comprises a module touch screen (13), a light bar (15), a touch pen telescopic rod (19), a touch pen electromagnetic block (27), an electromagnet switch (29), a module control unit (30) and a light bar control system (31), the output of the module control unit (30) is respectively electrically connected with the input of the light bar control system (31), the touch pen telescopic rod (19), the touch pen electromagnetic block (27) and the electromagnet switch (29), the module control unit (30) is bidirectionally electrically connected with the module touch screen (13), and the output of the light bar control system (31) is electrically connected with the input of the light bar (15). 6.The substation object model based device information configuration system of claim 5, wherein: The device information configuration system (36) comprises a modeling system (37), a connection state self-checking system (41), an audit condition setting system (42), an operation state audit system (43) and a maintenance system (64), the modeling system (37) comprises a region division system (38), a model adding system (39) and a model setting system (40); The modeling system (37) realizes the initial simulation erection and setting of the transformer substation. The connection state self-checking system (41) performs self-checking on the connection state of the erected model system. The audit condition setting system (42) sets the conditions needing to be audited in the simulation operation state. The operation state audit system (43) displays and follows up the transmission and problems in the simulation operation state. The region division system (38) facilitates the division of the simulation transformer substation into the station control layer, the interval layer and the process layer. The model adding system (39) sets the types of the simulation modules (6) placed on the touch screen (2) and obtains the moving parameters. The model setting system (40) manages the socket connection, light bar and display of the simulation modules (6). 7.The substation object model based device information configuration system of claim 6, wherein: The region division system (38) comprises a line identification module (44), a region type selection system (45) and a region type adjustment system (46), the model adding system (39) comprises a model identification system (47), a type setting system (48) and a model displacement identification system (49), and the model setting system (40) comprises a model socket management system (50), a light bar management system (51) and a model display system (52); The line identification module (44) is used for identifying the line drawing action on the touch screen (2). The region type selection system (45) selects different region types after dividing the regions; The region type adjustment system (46) adjusts the determined region types; The model identification system (47) realizes the identification of the simulation module (6) by the touch screen (2); The type setting system (48) selects and sets the type of the simulation module (6); The model displacement identification system (49) acquires the displacement of the simulation module (6); The model socket management system (50) manages the connection state of the socket of the simulation module (6); The light bar management system (51) sets the display color of the light bar (15) on the simulation module (6); The model display system (52) controls the content displayed on the module touch screen (13) through the type and interface state of the simulation module (6). 8.The substation object model based device information configuration system of claim 6, wherein: The connection state self-checking system (41) includes an unconnected module identification system (53), a connection method judgment system (54), and a connection comprehensiveness judgment system (55), the audit condition setting system (42) includes a condition adding system (56), a condition modifying system (57), a condition auditing system (58), and a condition storage system (59), the running state auditing system (43) includes a transmission speed monitoring system (60), a running data monitoring system (61), a running problem display system (62), and a running problem follow-up system (63); The unconnected module identification system (53) is used to detect whether the simulation module (6) is connected to the Ethernet or the optical fiber; The connection method judgment system (54) judges whether the correct connection method is set according to the type of the simulation module (6); The connection comprehensiveness judgment system (55) monitors the comprehensiveness of the connection of each simulation module (6); The condition adding system (56) is used to add the conditions to be audited in the simulation running state; The condition modifying system (57) is used to modify the conditions to be audited in the simulation running state; The condition auditing system (58) is used to audit the rationality of the added audit conditions; The condition storage system (59) stores the added and modified audit conditions; The transmission speed monitoring system (60) monitors the transmission speed in the simulation running state; The running data monitoring system (61) acquires the data in the simulation running state; The running problem display system (62) displays the audit conditions triggered in the simulation running state; The running problem follow-up system (63) follows up and records the solution state of the triggered audit conditions. 9.The substation object model based device information configuration system of claim 6, wherein: The maintenance system (64) includes a fire fighting system (65), a fire fighting response system (66), a video monitoring system (67), a lighting system (68) and an environmental system (69), the fire fighting system (65) includes a smoke alarm system (70), a heat sensitive fire sensing system (71) and a fire alarm system (72); the fire fighting response system (66) includes a deluge valve information acquisition system (73), a main transformer fire alarm information acquisition system (74) and a valve control system (75), the video monitoring system (67) includes a face recognition system (76), a monitor maintenance system (77) and a monitoring picture recognition system (78), the lighting system (68) includes a human body infrared sensing system (79), a solar charging system (80) and a lighting management system (81), and the environmental system (69) includes an access control management system (82), an electronic fence system (83), a temperature and humidity sensing system (84), an UPS monitoring system (85), a cabinet monitoring system (86) and a communication management system (87); The fire fighting system (65) monitors and alarms the fire in the substation in real time; The fire fighting response system (66) acquires the state of the deluge valve and the main transformer fire alarm, and controls the valve through the valve control system (75) to facilitate efficient water fire fighting operation; The video monitoring system (67) monitors the state of the equipment and personnel in the substation through video; The lighting system (68) manages the opening, energy conversion and maintenance of the lighting equipment in the substation; The environmental system (69) dynamically monitors the state of the equipment and environmental parameters in the substation; The smoke alarm system (70) effectively monitors whether there is a fire in the substation through the monitoring of smoke; The heat sensitive fire sensing system (71) monitors whether there is a fire in the substation through the change of heat in the heat sensitive sensing; The fire alarm system (72) quickly and timely alarms when the smoke alarm system (70) or the heat sensitive fire sensing system (71) finds a fire; The deluge valve information acquisition system (73) acquires the state of the main transformer water fire fighting deluge valve at regular intervals to facilitate timely acquisition of the deluge valve equipment condition; The main transformer fire alarm information acquisition system (74) acquires the main transformer fire information and timely handles when a main transformer fire occurs; The valve control system (75) controls the deluge valve to open for fire fighting operation when a fire occurs through the acquired deluge valve state and main transformer fire alarm information; The face recognition system (76) judges the personnel entering the substation through face recognition to prevent personnel other than the staff from entering the substation to cause safety hazards; The monitor maintenance system (77) monitors the clarity and operating temperature of the monitor and controls the monitoring direction; The monitoring picture recognition system (78) recognizes the picture acquired by the monitor to identify the change of the picture and the corresponding situation; The human body infrared sensing system (79) detects whether there is personnel entering the lighting range through human body infrared to facilitate reduction of unnecessary lighting cost; The solar charging system (80) converts energy by solar conversion to charge the lighting system; The lighting management system (81) manages the lighting devices and notifies the staff in time when the lighting lamp is damaged for processing; The access control management system (82) manages the access control device and releases the personnel after the personnel pass through the face recognition system (76) and the access control is opened; The electronic fence system (83) obtains whether there is invasion of the electronic fence in the substation; The temperature and humidity sensing system (84) monitors the temperature and humidity change in the substation in real time; The UPS monitoring system (85) monitors the UPS state in the substation; The cabinet monitoring system (86) detects the running state and data transmission speed of the cabinet; The communication management system (87) realizes the management of the transmission data and detects each transmission device.

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