Inspection devices and technical upgrade inspection analysis platforms for power equipment maintenance in smart grids
By using inspection devices and technical upgrade inspection analysis platforms for power equipment maintenance in smart grids, the problem of a large number of widely distributed power equipment has been solved. This has enabled centralized management and timely inspection of power equipment, reduced labor intensity, and improved equipment condition responsiveness.
Patent Information
- Application Number
- CN202211271525.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-18
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2042-10-18
AI Technical Summary
In smart grids, there are a large number of power devices that are widely distributed. Existing inspection methods require a lot of manpower and are difficult to respond to equipment status in a timely manner, and there is a lack of scientific management methods.
The system employs inspection devices and technical upgrade inspection analysis platforms for power equipment maintenance in smart grids, including wireless transmission monitoring equipment and centralized control analysis platforms, to achieve real-time monitoring and data processing of multiple sets of power equipment and timely transmission of anomaly alerts.
It enables centralized management of multiple sets of power equipment, reduces labor intensity, promptly detects and alerts potential equipment hazards, and improves inspection efficiency and equipment status responsiveness.
Smart Images

Figure CN115765154B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of power equipment inspection technology, specifically to an inspection device and technical upgrade inspection analysis platform for power equipment maintenance in smart grids. Background Technology
[0002] In recent years, the power grid has developed rapidly, with continuous increases in investment in its construction and a surge in the number of power grid devices. With the ongoing advancement of smart grids, new challenges have arisen in power grid management. Power supply companies are managing an increasingly large scale and number of devices, and the impact of hidden defects and faults in these devices on the power grid is growing daily.
[0003] Due to the large number of power equipment, a large number of staff are needed to conduct inspections of the equipment, which is not convenient for centralized management and cannot reflect the current status of the equipment in a timely manner. Therefore, it is particularly important to choose a scientific power equipment management method. Compared with the previous inspection methods, power supply companies have established an intelligent system for technical upgrades and overhauls based on the actual needs of operation and maintenance business technical upgrades and overhauls, and finally realize full-process management of various operation and maintenance projects.
[0004] In view of this, the present invention proposes an inspection device and a technical upgrade inspection analysis platform for the maintenance of power equipment in smart grids to solve the above problems. Summary of the Invention
[0005] The purpose of this invention is to provide an inspection device and a technical upgrade inspection analysis platform for the maintenance of power equipment in smart grids, so as to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, the present invention provides the following technical solution:
[0007] Inspection devices for power equipment maintenance in smart grids include:
[0008] Connect the housing;
[0009] Monitoring equipment is used for the inspection of power equipment;
[0010] A positioning mechanism, connected to the connecting housing, is used to locate the monitoring equipment;
[0011] The monitoring equipment is a wireless transmission device.
[0012] As an improvement to the above technical solution, a gooseneck tube is fixedly connected to the connecting housing, and the monitoring device is fixedly connected to the gooseneck tube.
[0013] As an improvement to the above technical solution, the positioning mechanism includes a fixed housing, the connecting housing having a threaded outer wall, the threaded outer wall being threadedly connected to the fixed housing, and a magnetic block being provided at the bottom end of the fixed housing.
[0014] As an improvement to the above technical solution, a rubber block is fixedly connected between the magnetic block and the fixed housing.
[0015] A technical upgrade and inspection analysis platform for power equipment maintenance in smart grids includes:
[0016] The control unit is used to centrally control multiple inspection devices and process the data in a timely manner.
[0017] The analysis unit is used to collect data from power equipment under normal circumstances and compare real-time data with historical data.
[0018] The inspection unit, connected to the analysis unit, is used to monitor the power equipment and transmit data to the analysis unit in real time.
[0019] The project initiation unit, connected to the analysis unit, is used to input hazardous data of power equipment and to verify it in a timely manner.
[0020] The inspection unit and the analysis unit communicate wirelessly.
[0021] The project initiation unit will promptly notify the user if an error occurs during the verification process.
[0022] As an improvement to the above technical solution, the control unit includes a user management module, an information storage module, and a device input module, wherein the user management module, the device input module, and the information storage module are connected.
[0023] in,
[0024] The user management module is used to monitor personnel logging into and out of the platform;
[0025] The equipment input module is used to input and centrally manage information about power equipment.
[0026] The information storage module is used to store information on monitoring personnel and power equipment.
[0027] As an improvement to the above technical solution, the inspection unit includes a power supply module and a data transmission module. The data transmission module is connected to the power supply module and the data transmission module is connected to the analysis unit.
[0028] As an improvement to the above technical solution, the analysis unit includes a data receiving module, a data storage module, and a data comparison module. The data receiving module is connected to the data transmission module, and the data storage module is connected to the data comparison module and the data receiving module.
[0029] in:
[0030] The data storage module is used to store real-time data of power equipment;
[0031] The data receiving module is used to receive real-time monitoring data of power equipment and import the data into the data storage module;
[0032] The data comparison module is used to compare the real-time imported data with previous data and transmit the comparison information to the project initiation unit.
[0033] As an improvement to the above technical solution, the project initiation unit includes a data entry module, a verification module, a project storage module, and a prompting module. The data entry module and the verification module are connected to the project storage module, and the prompting module is connected to the verification module.
[0034] in:
[0035] The project storage module is used to store the hazard values of electrical equipment;
[0036] The data entry module is used to import the hazard values of the power equipment into the project storage module;
[0037] A verification module, connected to the data comparison module, is used to verify the information compared in the data comparison module with the dangerous value information in the project storage module.
[0038] The notification module is used to transmit signals to relevant users when the device malfunctions.
[0039] Compared with the prior art, the beneficial effects of the present invention are:
[0040] During the inspection of power equipment, the inspection unit monitors the site in a timely manner and transmits signals promptly. The analysis unit and project initiation unit process the returned information, and when dangerous values are reached, the project initiation unit provides timely alerts. In this way, multiple inspection units can centrally manage multiple sets of power equipment, achieving the integration and connection of multiple sets of power equipment online. This reduces the labor intensity during timely maintenance and alerts. Attached Figure Description
[0041] Figure 1 This is a schematic diagram of the structure of the present invention;
[0042] Figure 2 This is a schematic diagram of the structural framework of the analysis platform of the present invention.
[0043] In the diagram: 10. Positioning mechanism; 11. Fixed housing; 12. Rubber block; 13. Magnetic block; 20. Connecting housing; 21. Threaded outer wall; 30. Gooseneck tube; 40. Monitoring equipment; 50. Control unit; 51. User management module; 52. Information storage module; 53. Equipment input module; 60. Analysis unit; 61. Data receiving module; 62. Data storage module; 63. Data comparison module; 70. Project initiation unit; 71. Data input module; 72. Verification module; 73. Project storage module; 74. Prompt module; 80. Inspection unit; 81. Power supply module; 82. Data transmission module. Detailed Implementation
[0044] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0045] Example:
[0046] like Figure 1-2 As shown, this embodiment proposes an inspection device for power equipment maintenance in a smart grid, including:
[0047] Connecting housing 20;
[0048] Monitoring equipment 40 is used for the inspection of power equipment;
[0049] The positioning mechanism 10 is connected to the connecting housing 20 and is used to position the monitoring device 40;
[0050] The monitoring device 40 is a wireless transmission device.
[0051] In this embodiment, the monitoring device 40 is a heat detector, which monitors the daily heat of the power equipment to reduce labor intensity.
[0052] Specifically, a gooseneck tube 30 is fixedly connected to the connecting housing 20, and the monitoring device 40 is fixedly connected to the gooseneck tube 30 for universal adjustment, thereby enabling timely monitoring and inspection of the power equipment.
[0053] Of course, the monitoring device 40 transmits the power data wirelessly, preferably via a data network.
[0054] Specifically, the positioning mechanism 10 includes a fixed housing 11, the connecting housing 20 is provided with a threaded outer wall 21, the threaded outer wall 21 is threadedly connected to the fixed housing 11, and the bottom end of the fixed housing 11 is also provided with a magnetic block 13 for the monitoring device 40 to be adsorbed into the power equipment.
[0055] Specifically, a rubber block 12 is fixedly connected between the magnetic block 13 and the fixed housing 11 to prevent leakage from damaging the monitoring equipment 40.
[0056] A technical upgrade and inspection analysis platform for power equipment maintenance in smart grids includes:
[0057] The control unit 50 is used to centrally control multiple inspection devices and process the data in a timely manner.
[0058] The analysis unit 60 is used to collect data from power equipment under normal circumstances and compare real-time data with historical data.
[0059] The inspection unit 80 is connected to the analysis unit 60 and is used to monitor the power equipment and transmit the data to the analysis unit 60 in real time.
[0060] The project initiation unit 70 is connected to the analysis unit 60 and is used to input hazardous data of power equipment and to verify it in a timely manner.
[0061] The inspection unit 80 and the analysis unit 60 communicate wirelessly.
[0062] The project initiation unit 70 will promptly notify the user if an error occurs during verification.
[0063] Specifically, the control unit 50 includes a user management module 51, an information storage module 52, and a device input module 53, wherein the user management module 51, the device input module 53, and the information storage module 52 are connected.
[0064] in,
[0065] The user management module 51 is used to monitor personnel logging into and out of the platform;
[0066] The equipment input module 53 is used to input and centrally manage information about power equipment.
[0067] The information storage module 52 is used to store information on monitoring personnel and power equipment.
[0068] Specifically, the inspection unit 80 includes a power supply module 81 and a data transmission module 82. The data transmission module 82 is connected to the power supply module 81 and the data transmission module 82 is connected to the analysis unit 60.
[0069] In this embodiment, the monitoring device 40 is connected to the power supply module 81 and the data transmission module 82, and the power supply module 81 and the data transmission module 82 are housed in the connecting housing 20.
[0070] The preferred monitoring device 40 is a heat detector, used to monitor electrical equipment.
[0071] Specifically, the analysis unit 60 includes a data receiving module 61, a data storage module 62, and a data comparison module 63. The data receiving module 61 is connected to the data transmission module 82, and the data storage module 62 is connected to the data comparison module 63 and the data receiving module 61.
[0072] in:
[0073] The data storage module 62 is used to store real-time data of power equipment;
[0074] The data receiving module 61 is used to receive real-time monitoring data of power equipment and import the data into the data storage module 62;
[0075] The data comparison module 63 is used to compare the real-time imported data with previous data and transmit the comparison information to the project initiation unit 70;
[0076] In this embodiment, when the data comparison exceeds the rated value, the project initiation unit 70 will provide a timely prompt.
[0077] Specifically, the project initiation unit 70 includes a data entry module 71, a verification module 72, a project storage module 73, and a prompt module 74. The data entry module 71 and the verification module 72 are connected to the project storage module 73, and the prompt module 74 is connected to the verification module 72.
[0078] in:
[0079] The project storage module 73 is used to store the hazard values of the power equipment;
[0080] The data entry module 71 is used to import the hazard values of the power equipment into the project storage module 73;
[0081] The verification module 72 is connected to the data comparison module 63 and is used to verify the information compared in the data comparison module 63 with the dangerous value information in the project storage module 73.
[0082] The notification module 74 is used to transmit signals to relevant users when the device malfunctions.
[0083] In this embodiment, the prompt module 74 transmits the information wirelessly to the mobile terminal via a network. The mobile terminal includes, but is not limited to, laptops and mobile phones.
[0084] In this case, during the inspection of power equipment, the inspection unit 80 monitors the site in a timely manner and transmits signals promptly. The analysis unit 60 and the project initiation unit 70 process the transmitted information. When dangerous values are reached, the project initiation unit 70 provides timely alerts. In this way, multiple inspection units 80 can centrally manage multiple sets of power equipment, achieving the integration and connection of multiple sets of power equipment online. This reduces the labor intensity during timely maintenance and alerts.
[0085] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An inspection and analysis platform for power equipment maintenance, characterized in that: Including inspection devices; The inspection device includes: Connecting housing (20); Monitoring equipment (40) is used for the inspection of power equipment; The positioning mechanism (10) is connected to the connecting housing (20) and is used to position the monitoring device (40); The monitoring device (40) is a wireless transmission device; The positioning mechanism (10) includes a fixed housing (11), the connecting housing (20) is provided with a threaded outer wall (21), the threaded outer wall (21) is threadedly connected to the fixed housing (11), and a magnetic block (13) is also provided at the bottom end of the fixed housing (11). Also includes: The control unit (50) is used to centrally control multiple inspection devices and process data in a timely manner. The analysis unit (60) is used to collect data from power equipment under normal circumstances and compare real-time data with previous data. The inspection unit (80) is connected to the analysis unit (60) and is used to monitor the power equipment and transmit the data to the analysis unit (60) in real time. The project initiation unit (70) is connected to the analysis unit (60) and is used to input hazardous data of power equipment and to verify it in a timely manner; The inspection unit (80) and the analysis unit (60) communicate wirelessly. The project initiation unit (70) will promptly notify the applicant if the verification fails.
2. The inspection and analysis platform for power equipment maintenance according to claim 1, characterized in that: A gooseneck tube (30) is fixedly connected to the connecting housing (20), and the monitoring device (40) is fixedly connected to the gooseneck tube (30).
3. The inspection and analysis platform for power equipment maintenance according to claim 1, characterized in that: A rubber block (12) is fixedly connected between the magnetic block (13) and the fixed housing (11).
4. The inspection and analysis platform for power equipment maintenance according to claim 1, characterized in that: The control unit (50) includes a user management module (51), an information storage module (52), and a device input module (53), wherein the user management module (51), the device input module (53), and the information storage module (52) are connected. in, The user management module (51) is used to monitor personnel logging into and out of the platform; The equipment input module (53) is used to input and centrally manage information about power equipment. The information storage module (52) is used to store information on monitoring personnel and power equipment.
5. The inspection and analysis platform for power equipment maintenance according to claim 1, characterized in that: The inspection unit (80) includes a power supply module (81) and a data transmission module (82). The data transmission module (82) is connected to the power supply module (81) and the data transmission module (82) is connected to the analysis unit (60).
6. The inspection and analysis platform for power equipment maintenance according to claim 5, characterized in that: The analysis unit (60) includes a data receiving module (61), a data storage module (62), and a data comparison module (63). The data receiving module (61) is connected to the data transmission module (82), and the data storage module (62) is connected to the data comparison module (63) and the data receiving module (61). in: The data receiving module (61) is used to receive real-time monitoring data of power equipment and import the data into the data storage module (62); The data storage module (62) is used to store real-time data of power equipment; The data comparison module (63) is used to compare the real-time imported data with previous data and transmit the comparison information to the project initiation unit (70).
7. The inspection and analysis platform for power equipment maintenance according to claim 6, characterized in that: The project initiation unit (70) includes a data entry module (71), a verification module (72), a project storage module (73), and a prompt module (74). The data entry module (71) and the verification module (72) are connected to the project storage module (73), and the prompt module (74) is connected to the verification module (72). in: The data entry module (71) is used to import the hazard values of the power equipment into the project storage module (73); The project storage module (73) is used to store the hazard values of the power equipment; The verification module (72) is connected to the data comparison module (63) and is used to verify the information compared in the data comparison module (63) with the dangerous value information in the project storage module (73); The notification module (74) is used to transmit signals to relevant users when the device is in an abnormal state.
Citation Information
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