Monitoring device for environmental protection detection

The monitoring device, with its modular design and electrical connections, solves the problems of insufficient operation supervision and data traceability in existing environmental monitoring devices, and realizes a monitoring device with stability and data integrity, suitable for long-term operation and convenient operation.

CN223899261UActive Publication Date: 2026-02-10SHANDONG LONGZHIZHI ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423261409.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2026-02-10
Estimated Expiration
2034-12-26

AI Technical Summary

Technical Problem

Existing environmental monitoring devices lack supervision over the standardized operation of monitoring personnel and comprehensive post-inspection and traceability functions. They are also limited in terms of working hours, energy consumption is not optimized, video file processing and transmission are inconvenient, and integration and scalability are limited.

Method used

A monitoring device comprising a central control module, a recording module, a WiFi module, a GPS module, and a battery module was designed. It adopts a modular structure and enhances stability through electrical connections and fixing screws. It is equipped with a memory card slot, a power socket, and a wearing buckle to achieve multifunctionality and convenient operation, and supports long-term wear and wireless transmission.

Benefits of technology

It enables standardized supervision of the operation of testing personnel, improves the durability and reliability of the device, ensures the integrity and traceability of data, and supports long-term operation and stable wireless transmission.

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Abstract

The utility model relates to a monitoring device for environmental protection detection, which belongs to the technical field of detection operation monitoring devices, and comprises a front shell, a rear shell, a central control module, a shooting and recording module, a WiFi module, a GPS module and a battery module, so that the stability and the multifunctionality of the device are ensured; the front shell and the rear shell are fixedly connected, so that the structural stability is enhanced; through the monitoring APP and the data management platform, remote control, real-time monitoring, data storage, uploading and management are realized, the efficiency of environmental protection detection is improved, especially when WiFi connection is unstable, the monitor can store data and manually upload the data after WiFi connection, the data integrity is ensured, and an efficient and reliable monitoring scheme is provided for environmental protection detection.
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Description

Technical Field

[0001] This utility model belongs to the technical field of monitoring devices for testing operations, and specifically relates to a monitoring device for environmental protection testing. Background Technology

[0002] The petrochemical industry is a hazardous industry involving high temperature, high pressure, flammable and explosive gases, and toxic and harmful gases, requiring regular volatile organic compound (VOC) leak detection and LDAR (Low Discharge Assessment) testing. LDAR testing needs to be conducted every 3-6 months. LDAR testing is a manual operation, and the data is collected on-site. Quality control must be implemented according to the prescribed testing speed during the testing process. Therefore, the correctness of the testing personnel's operation directly affects the accuracy of the test data. However, invalid tests and data tampering occur every year. Therefore, testing supervision is necessary. Since LDAR testing typically involves 6-8 hours of work per day, the supervision video recordings for testing need to be recorded simultaneously, and archived and managed through a data platform for easy future auditing and traceability.

[0003] A prior art wireless gas detection device with camera function, disclosed in CN106338580A, includes a central control CPU, a camera unit, a wireless communication module, and a power supply unit. The camera unit includes a storage unit, and the wireless communication module uses radio waves. However, in terms of detection and supervision, this device lacks oversight of operator compliance and comprehensive post-inspection and traceability capabilities. Regarding its operational characteristics, it suffers from limited operating time, unoptimized energy consumption, and inconvenient video file processing and transmission. Furthermore, it exhibits low integration and limited scalability. Utility Model Content

[0004] The technical problem solved by this utility model is to overcome the defects existing in the prior art and provide a monitoring device for environmental protection detection.

[0005] The technical solution adopted in this utility model is as follows:

[0006] The monitoring device for environmental protection detection described in this utility model includes a video monitor, which comprises a front housing and a rear housing that cooperate with each other. A monitoring mechanism is installed inside the front housing and the rear housing. The monitoring mechanism includes a central control module, a recording module, a WiFi module, a GPS module, and a battery module. The GPS module is installed on the central control module, which also has a power supply slot. A storage module is installed on the recording module, which has a memory card slot. The central control module is electrically connected to the recording module, the WiFi module, and the GPS module, and the battery module is also electrically connected to the central control module, the recording module, the WiFi module, and the GPS module.

[0007] The front housing has several connection holes I inside, and the rear housing has several connection holes II inside. The connection holes I and II are positioned correspondingly, and fixing screws are installed in the connection holes I and II to fix the front housing and the rear housing together.

[0008] The top of the front housing has a memory card slot, one side of the front housing has a power socket, and the other side has a power button and a shutter button. The power button and shutter button are electrically connected to the central control module. The memory card slot corresponds to the memory card slot, and the power socket corresponds to the power slot. Dustproof rubber plugs are installed inside the memory card slot and the power socket.

[0009] The interior of the rear housing is provided with several positioning posts, positioning buckles, fixing posts and slots, while the exterior of the rear housing is provided with wearing buckles.

[0010] Positioning posts are located around the WiFi module, and positioning clips are located on the top and bottom sides of the WiFi module. The positioning posts and positioning clips work together to securely fasten the WiFi module.

[0011] The central control module is equipped with mounting holes, which correspond to the positions of the mounting posts. Fixing screws are installed in the mounting holes and mounting posts to secure the central control module.

[0012] The front housing has a camera hole I, and the central control module has a camera hole II. The positions of camera hole I and camera hole II are corresponding. The camera on the recording module passes through the interior of camera hole I and camera hole II. A power-on indicator light and a recording indicator light are respectively provided on both sides of camera hole I.

[0013] This utility model has the following beneficial effects:

[0014] 1. The combination of the front and rear housings and the integration of the internal monitoring mechanism realize the modularity and compactness of the monitoring device, making it easy to carry and install; the electrical connection of the central control module, recording module, WiFi module, GPS module and battery module ensures the stable operation and multifunctionality of the monitoring device.

[0015] 2. The front and rear housings are fixedly connected by connection holes I and II and fixing screws, which enhances the structural stability of the device and ensures its durability and reliability during the monitoring process.

[0016] 3. The memory card slot on the top of the front casing, the power socket on one side, and the power and shutter buttons make operation more convenient. At the same time, the addition of a dustproof rubber plug improves the durability of the device.

[0017] 4. The positioning pins, positioning buckles, fixing pins and slots (20) inside the rear housing and the wearing buckles on the outside improve the wearing comfort and stability of the monitoring device, making it suitable for long-term wear.

[0018] 5. The combined use of positioning posts and positioning clips effectively secures the WiFi module, preventing it from shifting during monitoring and ensuring the stability of wireless transmission.

[0019] 6. The central control module is fixed in the device by fixing holes and fixing columns, which ensures the stability of the central control module and is conducive to the coordinated operation of the entire monitoring system. Attached Figure Description

[0020] Figure 1 This is a front view of the video surveillance unit.

[0021] Figure 2 This is a schematic diagram of the back of the video surveillance unit;

[0022] Figure 3 A frontal view of the monitoring facility;

[0023] Figure 4 This is a schematic diagram of the back of the monitoring facility;

[0024] Figure 5 This is a schematic diagram of the front housing;

[0025] Figure 6 This is a schematic diagram of the rear housing;

[0026] Figure 7 This is a block diagram of the electrical connections for the monitoring agency.

[0027] The components are as follows: 1. Front housing; 2. Rear housing; 3. Central control module; 4. Recording module; 5. WiFi module; 6. GPS module; 7. Battery module; 8. Power slot; 9. Storage module; 10. Memory card slot; 11. Connection hole I; 12. Connection hole II; 13. Memory card slot; 14. Power socket; 15. Power button; 16. Recording button; 17. Positioning post; 18. Positioning buckle; 19. Fixing post; 20. Card slot; 21. Wearing buckle; 22. Fixing hole; 23. Camera hole I; 24. Camera hole II; 25. Power indicator light; 26. Recording indicator light. Detailed Implementation

[0028] like Figures 1 to 7As shown, the monitoring device for environmental protection detection described in this utility model includes a video monitor, which includes a front housing 1 and a rear housing 2 that cooperate with each other; a monitoring mechanism is installed inside the front housing 1 and the rear housing 2; the monitoring mechanism includes a central control module 3, a recording module 4, a WiFi module 5, a GPS module 6 and a battery module 7, the GPS module 6 is installed on the central control module 3, the central control module 3 is also provided with a power slot 8, the recording module 4 is installed with a storage module 9, the storage module 9 is provided with a memory card slot 10; the central control module 3 is electrically connected to the recording module 4, the WiFi module 5 and the GPS module 6, and the battery module 7 is electrically connected to the central control module 3, the recording module 4, the WiFi module 5 and the GPS module 6.

[0029] The front housing 1 has several connecting holes I11 inside, and the rear housing 2 has several connecting holes II 12 inside. The connecting holes I11 and II 12 are positioned correspondingly. Fixing screws are installed in the connecting holes I11 and II 12 to fix the front housing 1 and the rear housing 2.

[0030] The top of the front housing 1 is provided with a memory card slot 13, one side of the front housing 1 is provided with a power socket 14, and the other side is provided with a power button 15 and a shooting button 16. The power button 15 and the shooting button 16 are both electrically connected to the central control module 3. The memory card slot 13 corresponds to the memory card slot 10, and the power socket 14 corresponds to the power slot 8. Dustproof rubber plugs are provided inside the memory card slot 13 and the power socket 14.

[0031] The interior of the rear housing 2 is provided with several positioning posts 17, positioning buckles 18, fixing posts 19 and slots 20, and the exterior of the rear housing 2 is provided with wearing buckles 21.

[0032] Positioning posts 17 are located around the WiFi module 5, and positioning buckles 18 are located on the upper and lower sides of the WiFi module 5. The positioning posts 17 and positioning buckles 18 cooperate to fix and secure the WiFi module 5.

[0033] The central control module 3 is provided with a fixing hole 22, which corresponds to the position of the fixing post 19. Fixing screws are installed in the fixing hole 22 and the fixing post 19 to fix the central control module 3.

[0034] The front housing 1 is provided with a camera hole I 23, and the central control module is provided with a camera hole II 24. The positions of camera hole I 23 and camera hole II 24 are corresponding. The camera on the recording module 4 passes through the interior of camera hole I 23 and camera hole II 24. A power-on indicator light 25 and a recording indicator light 26 are respectively provided on both sides of camera hole I 23.

[0035] Specifically, first, the central control module 3 is installed inside the front housing 1, and the battery module 7 is connected via the power slot 8. Next, the recording module 4 is installed inside the front housing 1, and the storage module 9 is installed via the memory card slot 10. Then, the WiFi module 5 and GPS module 6 are installed on the front housing 1 and the central control module 3 respectively, and connected to the central control module 3 via electrical connections. The front housing 1 and the rear housing 2 are fixedly connected via fixing screws in connecting holes I11 and II12. Finally, the memory card slot 13, power jack 14, power button 15, and shooting button 16 are installed, ensuring they are electrically connected to the central control module 3, and dustproof rubber plugs are installed inside the memory card slot 13 and power jack 14.

[0036] Specifically, after assembly, functional tests are conducted, including power supply, camera recording, WiFi connection, and GPS positioning tests, to ensure that all functions of the monitoring device are working properly. During the testing process, the device's operating status is monitored through the power-on indicator light 25 and the recording indicator light 26 on the central control module 3.

[0037] Specifically, the inspectors first install a monitoring app on the handheld device of the LDAR inspection equipment and scan the QR code on the video monitor to connect it to the factory's WiFi network. Through the monitoring app, the inspectors adjust the video monitor's shooting angle, automatically calibrate time and location information, and set the inspection task name.

[0038] Specifically, inspectors wearing video monitoring devices began detecting volatile organic compound (VOC) leaks within the factory. The video monitoring devices recorded the entire process in real time and uploaded video and location information to a monitoring app and data management platform via WiFi module 5. The data management platform then compiled the location information in real time, creating a tracking map of the inspectors' movements and displaying the live recording of the entire inspection process on the platform.

[0039] Specifically, during the detection process, if the video surveillance device temporarily loses its WiFi connection, it will continue to store video and location information. Once it reconnects to WiFi, the monitoring app will automatically or manually upload the stored data to the data management platform.

[0040] Specifically, the data management platform provides unified archiving for all surveillance videos, personnel information, task information, and movement trajectories, ensuring data integrity and traceability. Through the monitoring app, inspectors can also delete unnecessary data from the monitor's memory card when necessary to save storage space.

Claims

1. A monitoring device for environmental protection detection, comprising a video monitoring unit, characterized in that, The video monitoring device includes a front housing (1) and a rear housing (2) that cooperate with each other; a monitoring mechanism is installed inside the front housing (1) and the rear housing (2); the monitoring mechanism includes a central control module (3), a recording module (4), a WiFi module (5), a GPS module (6) and a battery module (7), the GPS module (6) is installed on the central control module (3), the central control module (3) is also provided with a power slot (8), the recording module (4) is provided with a storage module (9), the storage module (9) is provided with a memory card slot (10); the central control module (3) is electrically connected to the recording module (4), the WiFi module (5) and the GPS module (6), and the battery module (7) is electrically connected to the central control module (3), the recording module (4), the WiFi module (5) and the GPS module (6).

2. The monitoring device for environmental protection detection according to claim 1, characterized in that, The front housing (1) has several connecting holes I (11) inside, and the rear housing (2) has several connecting holes II (12) inside. The connecting holes I (11) and II (12) are positioned opposite each other. Fixing screws are installed in the connecting holes I (11) and II (12) to fix the front housing (1) and the rear housing (2) together.

3. The monitoring device for environmental protection detection according to claim 1, characterized in that, The front housing (1) has a memory card slot (13) on its top. The front housing (1) has a power socket (14) on one side and a power button (15) and a shooting button (16) on the other side. The power button (15) and the shooting button (16) are electrically connected to the central control module (3). The memory card slot (13) corresponds to the memory card slot (10), and the power socket (14) corresponds to the power slot (8). The memory card slot (13) and the power socket (14) are equipped with dustproof rubber plugs.

4. The monitoring device for environmental protection detection according to claim 1, characterized in that, The interior of the rear housing (2) is provided with several positioning posts (17), positioning buckles (18), fixing posts (19) and slots (20), and the exterior of the rear housing (2) is provided with wearing buckles (21).

5. The monitoring device for environmental protection detection according to claim 4, characterized in that, The positioning posts (17) are located around the WiFi module (5), and the positioning buckles (18) are located on the upper and lower sides of the WiFi module (5). The positioning posts (17) and the positioning buckles (18) cooperate to fix and secure the WiFi module (5).

6. The monitoring device for environmental protection detection according to claim 4, characterized in that, The central control module (3) is provided with a fixing hole (22), which corresponds to the position of the fixing post (19). Fixing screws are installed in the fixing hole (22) and the fixing post (19) to fix the central control module (3).

7. The monitoring device for environmental protection detection according to claim 1, characterized in that, The front housing (1) is provided with a camera hole I (23), and the central control module (3) is provided with a camera hole II (24). The positions of the camera hole I (23) and the camera hole II (24) are corresponding. The camera on the recording module (4) passes through the interior of the camera hole I (23) and the camera hole II (24). The two sides of the camera hole I (23) are respectively provided with a power-on indicator light (25) and a recording indicator light (26).

Citation Information

Patent Citations

  • Wireless gas detection device having image pickup function

    CN106338580A