Plant station end communication automation equipment operation monitoring device

By installing a detachable bracket and monitoring components on top of the communication automation equipment, the problems of long installation distance and blind spots of the monitoring device are solved, achieving a comprehensive monitoring effect without blind spots and improving the monitoring coverage and applicability.

CN223868963UActive Publication Date: 2026-02-03刘子维
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Patent Information

Application Number
CN202422787039.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2026-02-03
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

Existing monitoring devices are installed at a distance from communication automation equipment, resulting in reduced monitoring effectiveness and the potential for blind spots.

Method used

Design a bracket that can be detachably installed on top of communication automation equipment. The bracket has an annular mounting groove and a drive assembly. The mounting bracket is slidable and equipped with a camera, an infrared temperature sensor and an alarm to achieve all-round monitoring.

Benefits of technology

It enables comprehensive, blind-spot-free monitoring of communication automation equipment, improving monitoring coverage and accuracy, with a wider range of applications and no restrictions on installation site.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a plant station end communication automation equipment operation monitoring device, and belongs to the technical field of communication equipment operation monitoring. The plant station end communication automation equipment operation monitoring device comprises a device body, the device body comprises a support detachably arranged at the top of communication automation equipment, an annular installation groove is formed in the support, an installation frame is slidably arranged in the installation groove, and a monitoring assembly used for monitoring the communication automation equipment is arranged on the bottom wall of the installation frame. And a driving assembly is arranged at the mounting frame and is used for driving the mounting frame to circularly move along the mounting groove. According to the communication automation equipment monitoring device, the support is detachably installed at the top of the communication automation equipment, so that the monitoring assembly can monitor the communication automation equipment in an all-around and dead-corner-free mode, the coverage rate and accuracy of monitoring are better improved, meanwhile, limitation of an installation site is avoided, and the application range and practicability of the device are improved.
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Description

Technical Field

[0001] This utility model relates to the field of communication automation equipment operation monitoring technology, specifically, to a plant-level communication automation equipment operation monitoring device. Background Technology

[0002] In recent years, many regions have successively invested in the construction and renovation of a large number of substations, including some substations that were already in operation. The number of substations now in operation has increased dramatically compared to the past, resulting in a multiple increase in the number of communication automation equipment installed in the corresponding substations.

[0003] In existing technologies, most monitoring devices are cameras, temperature probes, and other monitoring equipment. However, these monitoring devices are mostly mounted on walls or columns with brackets, which results in the monitoring devices being far from the communication automation equipment. Furthermore, they can only detect the corresponding parts of the communication automation equipment, which reduces the monitoring effect and easily creates blind spots. Utility Model Content

[0004] This utility model provides a plant-side communication automation equipment operation monitoring device, which can overcome some or all of the defects of the prior art.

[0005] According to the present invention, a plant-side communication automation equipment operation monitoring device includes a device body, the device body including a bracket detachably mounted on the top of the communication automation equipment, an annular mounting groove formed inside the bracket, a mounting frame slidably mounted in the mounting groove, a monitoring component for monitoring the communication automation equipment at the bottom wall of the mounting frame, and a drive component at the mounting frame for driving the mounting frame to move cyclically along the mounting groove.

[0006] Preferably, the top wall of the bracket has an opening that is coaxially and annularly arranged with the mounting groove. The inner wall of the opening has a connecting part that slopes downward toward the opening. The bottom wall of the connecting part has a vertically downward fixing foot. The fixing foot is used to fit against the side wall of the communication automation equipment. The fixing foot has a mounting hole, and the mounting hole is provided with a bolt for connecting the fixing foot and the side wall of the communication automation equipment.

[0007] By using a through-hole that is coaxially and annularly set with the mounting slot, the weight of the bracket is reduced, and the bracket is prevented from interfering with the heat dissipation of the communication automation equipment.

[0008] The bracket, secured by a tight connection of fixed feet and bolts, is able to be stably positioned on top of the communication automation equipment, ensuring that the monitoring components remain stable during monitoring and will not shift or fall off due to equipment vibration or external interference.

[0009] Preferably, a reinforcing portion is formed between the inner wall corresponding to the opening and the connecting portion and the top wall of the connecting portion, and the reinforcing portion extends downward from the inner wall corresponding to the opening and the connecting portion to the connecting portion.

[0010] The above structure enables the connecting part, the reinforcing part, and the bracket to form a triangular support, thereby enhancing the strength of the bracket in the connection area between the opening and the connecting part.

[0011] Preferably, a mounting cavity is formed at the top wall of the mounting slot, the mounting frame includes a mounting plate that mates with the mounting cavity, an extension is formed at the bottom wall of the mounting plate that penetrates the mounting slot, and a mounting portion for mounting the monitoring component is formed at the bottom wall of the extension.

[0012] An annular space is formed inside the bracket through the mounting cavity to accommodate and support the mounting frame, allowing the mounting frame to move smoothly within the mounting cavity and mounting slot, thereby enabling the monitoring components to monitor the communication automation equipment in all directions.

[0013] Preferably, a ring-shaped toothed segment is formed on the side wall of the mounting cavity, a gear that meshes with the toothed segment is rotatably provided on the top wall of the mounting plate, and a motor for driving the gear to rotate is provided at the mounting part.

[0014] The above structure allows the mounting bracket and monitoring components to move cyclically along the mounting slot, thereby enabling comprehensive monitoring of the communication automation equipment.

[0015] Preferably, the monitoring components include a camera, an infrared temperature sensor, and an alarm.

[0016] By combining an infrared temperature sensor and an alarm, temperature can be easily detected. At the same time, a camera facilitates visual monitoring and detection, improving the accuracy of the detection. When the temperature is too high, the alarm will alert the staff, thus improving the practicality of the system.

[0017] The beneficial effects of this utility model are as follows:

[0018] By setting the bracket to be detachably installed on top of the communication automation equipment, the monitoring component can achieve all-round, blind-spot-free monitoring of the communication automation equipment, thus improving the monitoring coverage and accuracy. At the same time, there are no restrictions on the installation site, which improves the applicability and practicality of the device. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the installation structure of the plant-level communication automation equipment operation monitoring device.

[0020] Figure 2 This is a schematic diagram of the overall structure of the plant-level communication automation equipment operation monitoring device.

[0021] Figure 3This is a schematic diagram of the cross-sectional structure of the support structure for the operation monitoring device of the plant-level communication automation equipment.

[0022] Figure 4 This is a schematic diagram of the overall side view cross-sectional structure of the plant-side communication automation equipment operation monitoring device. Detailed Implementation

[0023] To further understand the content of this utility model, a detailed description of the utility model is provided in conjunction with the embodiments. It should be understood that the embodiments are merely illustrative and not limiting of the utility model.

[0024] Example 1

[0025] Please see Figure 1 and Figure 4 This embodiment provides a plant-side communication automation equipment operation monitoring device, which includes a device body 100. The device body 100 includes a bracket 110 detachably mounted on the top of the communication automation equipment. An annular mounting groove 220 is formed inside the bracket 110. A mounting frame 410 is slidably mounted in the mounting groove 220. A monitoring component 460 for monitoring the communication automation equipment is provided at the bottom wall of the mounting frame 410. A driving component is provided at the mounting frame 410 for driving the mounting frame 410 to move cyclically along the mounting groove 220.

[0026] The present invention discloses a plant-side communication automation equipment operation monitoring device. By setting the bracket 110 to be detachably installed on the top of the communication automation equipment, the monitoring component 460 can realize all-round, blind-spot-free monitoring of the communication automation equipment, thus improving the monitoring coverage and accuracy.

[0027] Understandably, by making the bracket 110 detachably mounted on top of the communication automation equipment, there are no restrictions on the installation site, which improves the applicability and practicality of the device.

[0028] Seen in Figure 2 In this embodiment, a through-hole 210 is formed on the top wall of the bracket 110, which is coaxially and annularly arranged with the mounting groove 220. A connecting part 230 is formed on the inner wall of the through-hole 210, which is inclined downward in the direction of the through-hole 210. A vertically downward fixing foot 250 is formed on the bottom wall of the connecting part 230. The fixing foot 250 is used to fit against the side wall of the communication automation equipment. A mounting hole 260 is formed at the fixing foot 250. A bolt for connecting the fixing foot 250 and the side wall of the communication automation equipment is provided in the mounting hole 260.

[0029] By setting the through-hole 210 coaxially and annularly with the mounting slot 220, the weight of the bracket 110 is reduced, and the bracket 110 is prevented from interfering with the heat dissipation of the communication automation equipment.

[0030] Through the tight connection of the fixing feet 250 and bolts, the bracket 110 can be stably positioned on top of the communication automation equipment, ensuring that the monitoring component 460 remains stable during the monitoring process and will not shift or fall off due to equipment vibration or external interference.

[0031] Seen in Figure 2 In this embodiment, a reinforcing portion 240 is formed between the inner wall of the opening 210 and the connecting portion 230 and the top wall of the connecting portion 230. The reinforcing portion 240 extends downward from the inner wall of the opening 210 and the connecting portion 230 to the connecting portion 230.

[0032] The above structure enables the connecting part 230, the reinforcing part 240 and the bracket 110 to form a triangular support, thereby enhancing the strength of the bracket 110 in the connection area between the opening 210 and the connecting part 230.

[0033] Seen in Figure 4 In this embodiment, a mounting cavity 310 is formed on the top wall of the mounting groove 220, and the mounting bracket 410 includes a mounting plate 430 that cooperates with the mounting cavity 310. An extension portion penetrating the mounting groove 220 is formed on the bottom wall of the mounting plate 430, and a mounting portion 450 for mounting the monitoring component 460 is formed on the bottom wall of the extension portion.

[0034] An annular space is formed inside the bracket 110 through the mounting cavity 310 to accommodate and support the mounting frame 410, so that the mounting frame 410 can move smoothly within the mounting cavity 310 and the mounting groove 20, thereby enabling the monitoring component 460 to monitor the communication automation equipment in all directions.

[0035] Seen in Figure 3 and Figure 4 In this embodiment, a ring-shaped toothed segment 320 is formed on the side wall of the mounting cavity 310, and a gear 420 that meshes with the toothed segment 320 is rotatably provided on the top wall of the mounting plate 430. A motor 440 for driving the gear 420 to rotate is provided at the mounting part 450.

[0036] The above structure allows the mounting bracket 410 and the monitoring component 460 to move cyclically along the mounting slot 220, thereby enabling comprehensive monitoring of the communication automation equipment.

[0037] Seen in Figure 1 In this embodiment, the monitoring component 460 includes a camera, an infrared temperature sensor, and an alarm.

[0038] By combining an infrared temperature sensor and an alarm, temperature can be easily detected. At the same time, a camera facilitates visual monitoring and detection, improving the accuracy of the detection. When the temperature is too high, the alarm will alert the staff, thus improving the practicality of the system.

[0039] It is readily understood that those skilled in the art can combine, split, or reorganize the embodiments provided in this application to obtain other embodiments, all of which do not exceed the protection scope of this application.

[0040] The present invention and its embodiments have been described above illustratively. This description is not restrictive, and the embodiments shown are only part of the embodiments of the present invention. The actual structure is not limited to this. Therefore, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the inventive spirit of the present invention, such designs should fall within the protection scope of the present invention.

Claims

1. A plant-level communication automation equipment operation monitoring device, characterized in that, The device includes a main body (100), which includes a bracket (110) detachably mounted on top of the communication automation equipment. The bracket (110) has an annular mounting groove (220) inside. A mounting frame (410) is slidably mounted within the mounting groove (220). A monitoring component (460) for monitoring the communication automation equipment is located on the bottom wall of the mounting frame (410). A drive component is located on the mounting frame (410) to drive the mounting frame (410) to move cyclically along the mounting groove (220). 110) A through-hole (210) is formed on the top wall, which is coaxially and annularly arranged with the mounting groove (220). A connecting part (230) is formed on the inner wall of the through-hole (210) and inclined downward in the direction of the through-hole (210). A vertically downward fixing foot (250) is formed on the bottom wall of the connecting part (230). The fixing foot (250) is used to fit against the side wall of the communication automation equipment. A mounting hole (260) is formed at the fixing foot (250). A bolt for connecting the fixing foot (250) and the side wall of the communication automation equipment is provided in the mounting hole (260).

2. The plant-side communication automation equipment operation monitoring device according to claim 1, characterized in that: A reinforcing part (240) is formed between the inner wall of the opening (210) and the connecting part (230) and the top wall of the connecting part (230). The reinforcing part (240) extends downward from the inner wall of the opening (210) and the connecting part (230) to the connecting part (230).

3. The plant-side communication automation equipment operation monitoring device according to claim 1, characterized in that: The mounting slot (220) has a mounting cavity (310) formed on the top wall. The mounting bracket (410) includes a mounting plate (430) that mates with the mounting cavity (310). An extension through the mounting slot (220) is formed on the bottom wall of the mounting plate (430). A mounting portion (450) for mounting the monitoring component (460) is formed on the bottom wall of the extension.

4. The plant-side communication automation equipment operation monitoring device according to claim 3, characterized in that: The mounting cavity (310) has a ring-shaped toothed segment (320) on its side wall, and the mounting plate (430) has a gear (420) rotatably meshing with the toothed segment (320) on its top wall. The mounting part (450) has a motor (440) for driving the gear (420) to rotate.

5. The plant-side communication automation equipment operation monitoring device according to claim 1, characterized in that: The monitoring components (460) include a camera, an infrared temperature sensor, and an alarm.