Electrical automation equipment detection system based on artificial intelligence

By using an AI-based electrical automation equipment detection system, which utilizes data acquisition and AI model analysis, the problem of potential faults in electrical automation equipment being difficult to detect has been solved, enabling rapid fault detection and reducing safety hazards.

CN223711744UActive Publication Date: 2025-12-23SHAANXI XINGXU KANGDA MEDICAL TECH CO LTD
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Patent Information

Application Number
CN202520226433.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2025-12-23
Estimated Expiration
2035-02-13

AI Technical Summary

Technical Problem

In the operation of existing electrical automation equipment, potential faults are not easily detected, which can easily lead to safety hazards when the potential faults occur.

Method used

Design an artificial intelligence-based electrical automation equipment detection system. Collect equipment operation data through a data acquisition unit, and use a large AI model for training and analysis to quickly detect potential faults.

Benefits of technology

It enables rapid detection of potential faults in electrical automation equipment, reducing the risk of safety hazards.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223711744U_ABST
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Abstract

The utility model relates to the field of detection systems, in particular to an electrical automation equipment detection system based on artificial intelligence, which comprises a lower shell, an upper shell, a support frame, a circuit board, a control board and a display screen, an upper shell is arranged above the lower shell, a containing bin is formed between the upper shell and the lower shell, a supporting frame is arranged at the center of the containing bin, a circuit board is arranged on the upper end face of the supporting frame, a processing unit and a memory unit are sequentially arranged in the middle section of the surface of the circuit board, and a data acquisition unit is arranged at the end, away from the display screen, of the processing unit. A screen groove and a key groove are formed in the surface of the upper shell, a display screen is arranged in the screen groove, and a control panel is arranged in the key groove; according to the utility model, the processing unit is combined with the data acquisition unit, so that during working, a worker connects the detection system with the electrical automation equipment to be detected, the data acquisition unit acquires operation data of the electrical automation equipment, and then big data analysis is carried out through a system carried by the processing unit.
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Description

TECHNICAL FIELD

[0001] The utility model relates to detection system field especially based on artificial intelligence's electrical automation equipment detection system. BACKGROUND

[0002] Electrical automation equipment has high precision, high reliability, high flexibility and easy maintenance and other technical features. They are widely used in industrial production, transportation, energy management, building automation and other fields, greatly improving production efficiency and safety, and electrical automation equipment may have potential equipment failure after operation.

[0003] The existing electrical automation equipment during operation, since most of the electrical automation equipment, potential equipment failure does not affect the normal operation of electrical automation equipment, thereby leading to these potential failure not easy to be found when the device is running, so that after a certain time, potential failure is easy to produce certain security risks when exploding.

[0004] Therefore, for the above-mentioned potential failure not easy to be found when the device is running, so that potential failure is easy to produce certain security risks when exploding, a kind of electrical automation equipment detection system based on artificial intelligence can be designed, the operation data of electrical automation equipment are collected, which is trained by AI large model based on artificial intelligence, so that after the detection equipment is connected with electrical automation equipment, AI large model filters abnormal data, so as to accurately filter out the failure of electrical automation equipment, thereby facilitating the solution to the above problems. UTILITY MODEL CONTENTS

[0005] In order to overcome the problem that the existing electrical automation equipment during operation, since most of the electrical automation equipment, potential equipment failure does not affect the normal operation of electrical automation equipment, thereby leading to these potential failure not easy to be found when the device is running, so that after a certain time, potential failure is easy to produce certain security risks when exploding.

[0006] The technical scheme of the utility model is: electrical automation equipment detection system based on artificial intelligence, including lower shell, upper shell, support frame, circuit board, control panel, display screen;The upper part of lower shell is equipped with upper shell, and the accommodating bin is arranged between upper shell and lower shell, the center of accommodating bin is equipped with support frame, the upper end surface of support frame is equipped with circuit board, the surface middle section of circuit board is equipped with processing unit of carrying system and memory unit maintaining system operation in sequence, the end of processing unit away from display screen is equipped with data acquisition unit collecting electrical automation equipment failure data, the surface of upper shell is respectively equipped with screen slot and key slot, the inside of screen slot is equipped with display screen of display system interface, the inside of key slot is equipped with control panel of control system.

[0007] Preferably, the application is combined with the memory unit, the processing unit, the display screen and the operation panel, so that when working, the workers connect the detection system with the electrical automation equipment to be detected, the data acquisition unit acquires the running data of the electrical automation equipment, then the processing unit carries out big data analysis, and the memory unit maintains the space for system operation.

[0008] Preferably, the data acquisition unit comprises a data acquisition module, a sensing module, an analog-to-digital converter and a signal processing chip, the end of the data acquisition unit away from the processing unit is provided with a communication unit, and the memory unit comprises eight groups of memory particles, and the end of the memory unit away from the display screen is provided with a data buffer unit.

[0009] Preferably, the surface of the operation panel is uniformly provided with a plurality of operation buttons, the operation panel and the circuit board are provided with an operation cable, and the operation panel and the circuit board are electrically connected through the operation cable.

[0010] Preferably, the screen slot and the display screen are provided with a sealing ring, the outer end of the screen slot is surrounded by four groups of lamp holes, the inside of the four groups of lamp holes is provided with a fault indicator, and the display screen and the circuit board are provided with a display cable.

[0011] Preferably, the display screen and the circuit board are electrically connected through the display cable, the fault indicator and the circuit board are provided with a connecting wire rod, and the fault indicator and the circuit board are electrically connected through the connecting wire rod.

[0012] Preferably, the bottom corners of the containing bin are provided with support columns, the support frame and the support columns are connected through screws, the lower end of the support frame is provided with a battery pack corresponding to the circuit board, and the battery pack and the circuit board are electrically connected.

[0013] Preferably, the front end of the circuit board is provided with a data connector, one side of the data connector is provided with a signal communication lamp, the rear end of the circuit board is provided with a charging module, and the front end and the rear end of the upper shell and the lower shell are provided with the data connector and the charging module.

[0014] The utility model discloses an advantageous effect: in view of the current electrical automation equipment potential fault not easy to be discovered in equipment operation, the application is combined through control board, display screen, processing unit, data acquisition unit and memory unit, so that when working, the staff connects the detection system with the electrical automation equipment that needs to be detected, and the display screen shows the detection system interface that carries, and the staff presses the control button of control board and controls the detection system, and the data acquisition unit carries out the acquisition of the operation data of electrical automation equipment, and the sensing module in data acquisition unit senses and measures various physical quantities of electrical automation equipment, and converts into measurable electric signal, and data acquisition module carries out the acquisition of electric signal, and signal processing chip carries out the processing such as denoising, feature extraction to electric signal, and through AD converter, data signal is sent to the detection system of processing unit and carries, and through data cache unit, the backup of data is carried out, and through the wireless signal connection data terminal of communication unit, the AI big model of detection system based on artificial intelligence carries out a large amount of data matching and training, so that the potential fault of electrical automation equipment can be detected rapidly through the training of artificial intelligence. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 The overall structure explosion schematic view of the detection system of the utility model is shown;

[0016] Figure 2 The overall structure assembly schematic view of the detection system of the utility model is shown;

[0017] Figure 3 The lower shell and support frame structure schematic view of the detection system of the utility model is shown;

[0018] Figure 4 The upper shell structure schematic view of the detection system of the utility model is shown;

[0019] Figure 5 The display screen and control board structure schematic view of the detection system of the utility model is shown;

[0020] Figure 6 The memory unit and data acquisition unit structure schematic view of the detection system of the utility model is shown.

[0021] Explanation of reference signs: 1, lower shell; 2, upper shell; 3, containing bin; 4, support frame; 5, circuit board; 6, control board; 601, control button; 602, control wire; 7, display screen; 701, display wire; 8, support column; 9, battery pack; 10, key slot; 11, screen slot; 12, sealing ring; 13, lamp hole; 14, processing unit; 15, data acquisition unit; 1501, sensing module; 1502, data acquisition module; 1503, analog-to-digital converter; 1504, signal processing chip; 16, communication unit; 17, memory unit; 1701, memory grain; 18, fault indicator; 19, connecting line rod; 20, data connector; 21, charging module; 22, data caching unit. DETAILED DESCRIPTION

[0022] The utility model is further explained below in combination with the drawings and examples.

[0023] Please refer to Figures 1-6 The utility model provides an example: electrical automation equipment detection system based on artificial intelligence, including lower shell 1, upper shell 2, support frame 4, circuit board 5, control board 6, display screen 7, the upper of lower shell 1 is equipped with upper shell 2, and the containing bin 3 is seted up between upper shell 2 and lower shell 1, and the center of containing bin 3 is equipped with support frame 4, and the upper end surface of support frame 4 is equipped with circuit board 5, and the surface middle section of circuit board 5 is equipped with the processing unit 14 of carrying system and the memory unit 17 of maintaining system operation in proper order, and the one end of processing unit 14 away from display screen 7 is equipped with data acquisition unit 15 of collecting electrical automation equipment fault data, and the surface of upper shell 2 is equipped with screen slot 11 and key slot 10 respectively, and the inside of screen slot 11 is equipped with display screen 7 of display system interface, and the inside of key slot 10 is equipped with control board 6 of control system.

[0024] Please refer to Figures 1-4In the embodiment, the bottom corners of the containing bin 3 are provided with support columns 8, the support frame 4 is connected with the support columns 8 through screws, the lower end of the support frame 4 is provided with a battery pack 9 corresponding to the circuit board 5, the battery pack 9 is electrically connected with the circuit board 5, the support columns 8 are combined with the support frame 4, so that when installing, the staff installs the support frame 4 on the support columns 8 through screws, and supports the battery pack 9 and the circuit board 5 through the support frame 4, the battery pack 9 provides power support for the detection system, the front end of the circuit board 5 is provided with a data connector 20, one side of the data connector 20 is provided with a signal communication lamp, the rear end of the circuit board 5 is provided with a charging module 21, the front end and the rear end of the upper shell 2 and the lower shell 1 are provided with corresponding data connectors 20 and charging modules 21, the data connector 20 and the charging module 21 are combined, so that when in use, the staff supplies power to the battery pack 9 through the charging module 21, and transmits data through the data connector 20, and at the same time, the signal communication lamp displays the communication of the transmission signal.

[0025] Please refer to Figures 2-5 In the embodiment, the screen slot 11 and the display screen 7 are provided with a sealing ring 12, the outer end of the screen slot 11 is surrounded by four groups of lamp holes 13, the inside of the four groups of lamp holes 13 is provided with a fault indicator lamp 18, the display screen 7 and the circuit board 5 are provided with a display wire 701, the screen slot 11 and the display screen 7 are sealed by the sealing ring 12, so that the display screen 7 is fixed in the screen slot 11, the display screen 7 displays the detection system interface, the display screen 7 and the circuit board 5 are electrically connected through the display wire 701, the fault indicator lamp 18 and the circuit board 5 are provided with a connecting wire rod 19, the fault indicator lamp 18 and the circuit board 5 are electrically connected through the connecting wire rod 19, when detecting the fault of the electrical automation equipment, the four groups of fault indicator lamps 18 flicker, so as to prompt the different degrees of electrical automation equipment failure, and display the fault of the electrical automation equipment through the four groups of fault indicator lamps 18.

[0026] Please refer to Figures 3-6In the embodiment, the data acquisition unit 15 comprises a data acquisition module 1502, a sensing module 1501, an analog-to-digital converter 1503, and a signal processing chip 1504. The data acquisition unit 15 is provided with the communication unit 16 at one end away from the processing unit 14. The memory unit 17 comprises eight groups of memory particles 1701. The memory unit 17 is provided with the data caching unit 22 at one end away from the display screen 7. The combination of the data acquisition unit 15, the communication unit 16, and the data caching unit 22 enables the sensing module 1501 in the data acquisition unit 15 to perceive and measure various physical quantities of the electrical automation equipment and convert them into measurable electrical signals when detecting. The data acquisition module 1502 collects the electrical signals. The signal processing chip 1504 processes the electrical signals, such as denoising and feature extraction. The analog-to-digital converter 1503 converts the electrical signals into data signals and transmits them to the detection system carried by the processing unit 14. The data caching unit 22 backs up the data. The communication unit 16 connects the data terminal through wireless signals. The detection system based on the AI large model of artificial intelligence performs a large amount of data matching and training, so that potential faults of the electrical automation equipment can be rapidly detected through the training of artificial intelligence. The surface of the control panel 6 is uniformly provided with a plurality of control buttons 601. The control panel 6 and the circuit board 5 are provided with a control cable 602 therebetween. The control panel 6 and the circuit board 5 are electrically connected through the control cable 602. The combination of the control panel 6 and the control buttons 601 enables the staff to press the control buttons 601 of the control panel 6 to control the detection system when detecting.

[0027] When working, the staff supplies power to the battery pack 9 through the charging module 21 and transmits data to the electrical automation equipment through the data connector 20. At the same time, the signal communication lamp displays the communication of the transmission signal.

[0028] When detecting, the sensing module 1501 in the data acquisition unit 15 perceives and measures various physical quantities of the electrical automation equipment and converts them into measurable electrical signals. The data acquisition module 1502 collects the electrical signals. The signal processing chip 1504 processes the electrical signals, such as denoising and feature extraction. The analog-to-digital converter 1503 converts the electrical signals into data signals and transmits them to the detection system carried by the processing unit 14. The data caching unit 22 backs up the data.

[0029] The communication unit 16 connects the data terminal through wireless signals. The detection system based on the AI large model of artificial intelligence performs a large amount of data matching and training, so that potential faults of the electrical automation equipment can be rapidly detected through the training of artificial intelligence.

[0030] When detecting the electrical automation equipment failure, the four groups of fault indicator lights 18 flash, prompting different degrees of electrical automation equipment failure, and displaying the electrical automation equipment failure through the four groups of fault indicator lights 18.

[0031] Through the above steps, the present application is combined by the control panel 6, the display screen 7, the processing unit 14, the data acquisition unit 15 and the memory unit 17, so that when working, the worker connects the detection system with the electrical automation equipment to be detected, the display screen 7 displays the detection system interface, the worker presses the control button 601 of the control panel 6 to control the detection system, the data acquisition unit 15 acquires the running data of the electrical automation equipment, the sensing module 1501 in the data acquisition unit 15 senses and measures various physical quantities of the electrical automation equipment, and converts them into measurable electrical signals, the data acquisition module 1502 acquires the electrical signals, the signal processing chip 1504 processes the electrical signals such as denoising and feature extraction, and converts them into data signals through the analog-to-digital converter 1503 to deliver to the detection system carried by the processing unit 14, and backs up the data through the data cache unit 22, connects the data terminal through the wireless signal of the communication unit 16, and the detection system based on the AI large model of artificial intelligence carries out a large amount of data matching and training, so that the potential failure of the electrical automation equipment can be quickly detected through the training of artificial intelligence.

Claims

1. An electrical automation equipment detection system based on artificial intelligence, comprising a lower shell (1); characterized in that: It also includes the upper shell (2), support frame (4), circuit board (5), control board (6), display screen (7), processing unit (14) and memory unit (17); the upper shell (2) is arranged above the lower shell (1), and the accommodating cavity (3) is arranged between the upper shell (2) and the lower shell (1). The center of the accommodating cavity (3) is provided with a support frame (4), and the upper end surface of the support frame (4) is provided with a circuit board (5). The surface of the circuit board (5) is sequentially provided with a processing unit (14) carrying a system and a memory unit (17) maintaining system operation. The end of the processing unit (14) away from the display screen (7) is provided with a data acquisition unit (15) for acquiring electrical automation equipment fault data. The surface of the upper shell (2) is respectively provided with a screen slot (11) and a key slot (10). The inside of the screen slot (11) is provided with a display screen (7) for displaying a system interface. The inside of the key slot (10) is provided with a control board (6) for controlling a system.

2. The artificial intelligence-based electrical automation device detection system of claim 1, wherein: The data acquisition unit (15) includes a data acquisition module (1502), a sensing module (1501), an analog-to-digital converter (1503) and a signal processing chip (1504). The data acquisition unit (15) is provided with a communication unit (16) at an end away from the processing unit (14). The memory unit (17) includes eight memory particles (1701). The memory unit (17) is provided with a data buffer unit (22) at an end away from the display screen (7).

3. The artificial intelligence-based electrical automation device detection system of claim 1, wherein: The surface of the control board (6) is uniformly provided with a plurality of control buttons (601). The control board (6) and the circuit board (5) are provided with a control cable (602) therebetween. The control board (6) and the circuit board (5) are electrically connected through the control cable (602).

4. The artificial intelligence-based electrical automation device detection system of claim 1, wherein: The screen slot (11) and the display screen (7) are provided with a sealing ring (12) therebetween. The outer end of the screen slot (11) is surrounded by four groups of lamp holes (13). The inside of the four groups of lamp holes (13) is provided with a fault indicator lamp (18). The display screen (7) and the circuit board (5) are provided with a display cable (701) therebetween.

5. The artificial intelligence-based electrical automation device detection system of claim 1, wherein: The display screen (7) and the circuit board (5) are electrically connected through the display cable (701). The fault indicator lamp (18) and the circuit board (5) are provided with a connecting wire rod (19) therebetween. The fault indicator lamp (18) and the circuit board (5) are electrically connected through the connecting wire rod (19).

6. The artificial intelligence-based electrical automation device detection system of claim 1, wherein: The bottom corners of the accommodating cavity (3) are provided with support columns (8). The support frame (4) and the support columns (8) are connected through screws. The lower end of the support frame (4) is provided with a battery pack (9) corresponding to the circuit board (5). The battery pack (9) and the circuit board (5) are electrically connected.

7. The artificial intelligence-based electrical automation device detection system of claim 1, wherein: The front end of the circuit board (5) is provided with a data connector (20). One side of the data connector (20) is provided with a signal communication lamp. The rear end of the circuit board (5) is provided with a charging module (21). The front end and the rear end of the upper shell (2) and the lower shell (1) are provided with corresponding data connectors (20) and charging modules (21).