Fault indicating device for networking line of overhead line system

By using solar panels and a light sensor system in the network line fault indicator, the problem of short battery life is solved, enabling continuous power supply and stable operation, simplifying the installation process, and improving the reliability and efficiency of the fault indicator.

CN223727940UActive Publication Date: 2025-12-26HEFEI HIGH SPEED RAILWAY INFRASTRUCTURE SECTION OF CHINA RAILWAY SHANGHAI BUREAU GRP CO LTD
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Patent Information

Application Number
CN202520434456.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2025-12-26
Estimated Expiration
2035-03-13

AI Technical Summary

Technical Problem

Existing network line fault indication devices rely on battery power, which has a short lifespan and needs to be replaced regularly. This can cause them to malfunction at critical moments, affecting fault location and repair.

Method used

Employing a solar panel and light sensor system, the angle of the solar panel is adjusted in real time to maximize energy collection and store electrical energy in batteries, providing a stable power supply and eliminating the need for battery replacement; the installation process is simplified through a bolt and retaining ring structure, improving connection stability.

Benefits of technology

It ensures continuous power supply to the fault indication device, guarantees normal operation, reduces equipment failures caused by insufficient power, simplifies the installation process, and improves work efficiency and reliability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a fault indicating device for an online line of an overhead line system, which relates to the technical field of power equipment and comprises a telegraph pole, a connecting ring is fixedly sleeved on the outer surface wall of the telegraph pole, and two supports are fixedly mounted on the outer surface wall of the connecting ring. According to the utility model, the four light sensors detect the strongest direction of sunlight in real time, and cooperate with the controller to start the driving motor to adjust the angle of the solar panel, so that the angle of the solar panel always faces the irradiation of the sun, and the solar panel can be always kept in an optimal solar radiation area; and secondly, solar energy is converted into electric energy to be stored in the battery so as to provide power supply for the cable line fault indication device, regular replacement of a traditional battery is avoided, power supply is stable enough, and normal operation of the device can be ensured.
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Description

TECHNICAL FIELD

[0001] The utility model relates to power equipment technical field especially relates to a catenary overhead line fault indication device. BACKGROUND

[0002] With the rapid development of internet technology, network has deeply penetrated into various fields of social life, whether enterprise office, smart home or industrial automation control scene, all highly depend on stable, efficient network line connection. In complex network architecture, network line is complex, covering optical fiber, twisted pair and other transmission media, and the distribution range is extensive, from indoor wiring system to outdoor long distance communication line.

[0003] However, network line is easily disturbed by various factors during operation and appears fault, the existing fault indication device generally uses battery to power the fault indication device during use, the battery as power supply, its life is relatively short, and the battery has limited power, needs to be replaced regularly, and the battery is exhausted at the critical moment, which will cause the fault indication device to work abnormally, thereby delaying the positioning and repair of the fault. UTILITY MODEL CONTENT

[0004] The utility model aims at solving the above-mentioned device in use, because the existing fault indication device uses battery and needs to be replaced frequently, and the device cannot be used if not replaced in time, the problem of affecting the repair of fault, and proposes a catenary overhead line fault indication device.

[0005] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme: a catenary overhead line fault indication device, including the electric pole, the outer wall of the electric pole is fixedly provided with a connecting ring, the outer wall of the connecting ring is fixedly installed with two supports, the top of the electric pole is provided with a circular groove, the inner wall of the circular groove is provided with a driving motor, the output end of the driving motor is fixedly installed with a base, the top of the base is fixedly installed with a solar panel, the outer wall of the base is fixedly installed with four light sensors, the top of one of two supports is fixedly installed with a battery, the top of one of two supports is fixedly installed with a controller.

[0006] Preferably, the outer wall of one of two supports is provided with a cable body, and the bottom of the cable body is provided with a fault indicator body.

[0007] Preferably, the top of the fault indicator body is provided with a square groove, and the inner wall of the square groove is fixedly installed with a rubber pad.

[0008] Preferably, the outer wall of the fault indicator body is fixedly installed with a connecting frame one on one side, and the inner wall of the connecting frame one is movably inserted with a connecting rod.

[0009] Preferably, the outer wall of the connecting rod is fixedly sleeved with a fixing ring, and the outer wall of the fixing ring is provided with a threaded hole one.

[0010] Preferably, the outer wall of the connecting rod is fixedly sleeved with a fixing ring, and the outer wall of the fixing ring is provided with a threaded hole one.

[0011] Preferably, the outer wall of the connecting rod is fixedly sleeved with a fixing ring, and the outer wall of the fixing ring is provided with a threaded hole one.

[0012] Compared with the prior art, the utility model has the advantages and positive effects that,

[0013] 1. In the utility model, four light sensors are used to detect the direction of the strongest sunlight in real time, and a controller is used to start a driving motor to adjust the angle of the solar panel, so that the angle of the solar panel always faces the sunlight, and the solar panel can always be kept in the best solar radiation area, thereby maximizing the energy collection efficiency of the solar panel. Secondly, the solar energy is converted into electric energy and stored in the battery to provide power supply for the cable line fault indicator device, avoiding the regular replacement of traditional batteries, and the power supply is stable enough to ensure the normal operation of the device.

[0014] 2. In the utility model, the bolt one passes through the inside of the connecting frame one and the threaded hole one at the same time, and the nut is rotated on the outer wall of the bolt one, so that the fixing ring is connected with the connecting frame one. Secondly, rotate the bolt two to hold the cable line body at the bottom, connect and fix the fault indicator body and the cable line body, so that the installation process is faster and more convenient, the time and labor cost required for installation are reduced, and the work efficiency is improved. At the same time, the rubber pad is located between the cable line body and the fault indicator body, which can increase the friction force, prevent the displacement of the fault indicator body, and also prevent the damage of the cable line caused by friction, wear or scratch in the long-term use process. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 A front view structure perspective view of a contact net line fault indicator device is provided for the utility model;

[0016] Figure 2 A front view structure perspective view of a contact net line fault indicator device is provided for the utility model;

[0017] Figure 3 A front view structure perspective view of a contact net line fault indicator device is provided for the utility model;

[0018] Figure 4 This invention provides a three-dimensional exploded view of the main structure of a fault indication device for a contact network line.

[0019] Legend:

[0020] 1. Utility pole; 2. Connecting ring; 3. Bracket; 4. Circular groove; 5. Drive motor; 6. Base; 7. Solar panel; 8. Light sensor; 9. Battery; 10. Controller; 11. Cable body; 12. Fault indicator body; 13. Square groove; 14. Rubber pad; 15. Connecting bracket one; 16. Connecting rod; 17. Fixing ring; 18. Threaded hole one; 19. Connecting bracket two; 20. Bolt one; 21. Nut; 22. Threaded hole two; 23. Bolt two. Detailed Implementation

[0021] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described below with reference to the accompanying drawings and embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0022] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed in the following specification.

[0023] Example 1, as Figures 1-3 As shown, this utility model provides a fault indication device for overhead contact line, including a utility pole 1. A connecting ring 2 is fixedly sleeved on the outer wall of the utility pole 1. Two brackets 3 are fixedly installed on the outer wall of the connecting ring 2. A circular groove 4 is opened at the top of the utility pole 1. A drive motor 5 is set on the inner wall of the circular groove 4. A base 6 is fixedly installed at the output end of the drive motor 5. A solar panel 7 is fixedly installed on the top of the base 6. Four light sensors 8 are fixedly installed on the outer wall of the base 6. A battery 9 is fixedly installed on the top of one of the two brackets 3. A controller 10 is fixedly installed on the top of one of the two brackets 3.

[0024] The overall effect of Embodiment 1 is as follows: First, the light sensor 8 is located around the base 6 and can monitor the light intensity of the surrounding environment in real time. The light sensor 8 in the direction of the strongest sunlight transmits the signal to the controller 10, and then the controller 10 controls the drive motor 5 to run, thereby driving the base 6 to run. Finally, the angle of the solar panel 7 can be adjusted so that the solar panel 7 always faces the direction of the strongest sunlight. Second, the solar energy is converted into electrical energy and stored in the battery 9 to continuously power the device, avoiding the need for staff to replace the battery 9 regularly, making the device more sustainable.

[0025] Embodiment 2, as Figures 1-4 As shown in the figure, the outer wall of one of the two supports 3 is provided with a cable body 11, the bottom of the cable body 11 is provided with a fault indicator body 12, the top of the fault indicator body 12 is provided with a square groove 13, the inner wall of the square groove 13 is fixedly installed with a rubber pad 14, the outer wall of the fault indicator body 12 is fixedly installed with a connecting frame one 15, the inner wall of the connecting frame one 15 is movably inserted with a connecting rod 16, the outer wall of the connecting rod 16 is fixedly sleeved with a fixing ring 17, the outer wall of the fixing ring 17 is provided with a threaded hole one 18, the outer wall of the fault indicator body 12 is fixedly installed with a connecting frame two 19, the inner wall of the connecting frame two 19 is threadedly connected with a bolt one 20, and the outer wall of the bolt one 20 is threadedly connected with the inner wall of the threaded hole one 18, the outer wall of the bolt one 20 is threadedly connected with a nut 21, the top of the fixing ring 17 is provided with a threaded hole two 22, and the inner wall of the threaded hole two 22 is threadedly connected with a bolt two 23.

[0026] The effect of the whole embodiment 2 is that when the device is normally used, the fault indicator body 12 is sleeved on the outer wall of the cable body 11 through the fixing ring 17, then the bolt one 20 is inserted through the inside of the connecting frame two 19 and the threaded hole one 18, and the nut 21 is rotated on the outer wall of the bolt one 20, so that the fixing ring 17 is connected and fixed with the connecting frame one 15, and then the bolt two 23 is rotated, so that the bottom of the bolt two 23 is in contact with the cable body 11, so that the bolt two 23 can form clamping with the cable body 11, and at the same time, the rubber pad 14 at the top of the fault indicator body 12 and the bottom of the cable body 11 can prevent damage of the cable body 11 caused by friction, wear or scratch in the long-term use process, so that the connection between the fault indicator body 12 and the cable body 11 is more stable, and the disassembly and assembly are more convenient.

[0027] Among them, the driving motor 5, the solar panel 7, the light sensor 8, the battery 9, the controller 10 and the fault indicator body 12 are all prior art, and their components and use principles are all public technology, which will not be explained here.

[0028] Working principle: first in the normal use of the device, the fixed ring 17 can be through the connecting rod 16 under the action of the inner wall of the connecting frame one 15 rotation, first open the fixed ring 17, the fixed ring 17 is set in the outer wall of the cable line body 11, the rubber pad 14 is located between the cable line body 11 and the fault indicator body 12, can increase the friction between the two, make the fault indicator body 12 on the cable line body 11 more stable, second fixed ring 17 the other end is located between the connecting frame two 19, second bolt one 20 is inserted into the inner wall of the connecting frame two 19, while passing through the inside of the threaded hole one 18, then rotate the nut 21, make the fixed ring 17 and the connecting frame two 19 connection more fixed, second bolt two 23 is rotated in the threaded hole two 22, at this time, rotate the bolt two 23 in the position of the threaded hole two 22, make the bottom of the bolt two 23 and the cable line body 11 contact, make the bolt two 23 and the cable line body 11 form clamping effect, make the installation of the fault indicator body 12 more convenient and fast, second drive motor 5 and base 6 fixed connection, four light sensors 8 are located around the base 6, through the four light sensors 8 can real-time detection of the position of the sun light, second signal transmission to the controller 10, then by the controller 10 to drive motor 5 sends a signal, finally drive motor 5 operation drive base 6 rotation, to adjust the angle of the solar panel 7, so that it can follow the sun light automatic adjustment, again the solar energy is converted into electrical energy stored in the battery 9, to the fault indicator body 12 power supply, through the improvement of energy collection efficiency, provides more stable power supply for the cable line fault indication device, this helps to reduce the equipment failure and false alarm caused by power shortage, so as to improve the reliability of the whole system.

[0029] The above is only the preferred embodiment of the present application, not other forms of the present application, any skilled in the art of technical personnel may use the above disclosed technology content to change or modification of equivalent changes equivalent embodiment applied to other fields, but any simple modification, equivalent changes and modification of the above embodiment, which does not deviate from the technical scheme of the present application, according to the technical essence of the present application, still belongs to the protection scope of the present application technical scheme.

Claims

1. An overhead catenary line fault indication device, characterized by: Including the electric pole (1), the outer wall of the electric pole (1) is fixedly sleeved with a connecting ring (2), the outer wall of the connecting ring (2) is fixedly installed with two supports (3), the top of the electric pole (1) is provided with a circular groove (4), the inner wall of the circular groove (4) is provided with a drive motor (5), the output end of the drive motor (5) is fixedly installed with a base (6), the top of the base (6) is fixedly installed with a solar panel (7), the outer wall of the base (6) is fixedly installed with four light sensors (8), the top of one of the two supports (3) is fixedly installed with a battery (9), and the top of one of the two supports (3) is fixedly installed with a controller (10).

2. A catenary overhead line fault indication device according to claim 1, characterised in that: One side of the outer wall of one of the two supports (3) is provided with a cable body (11), and the bottom of the cable body (11) is provided with a fault indicator body (12).

3. A catenary overhead line fault indication device according to claim 2, characterised in that: The top of the fault indicator body (12) is provided with a square groove (13), and the inner wall of the square groove (13) is fixedly installed with a rubber pad (14).

4. A catenary overhead line fault indication device according to claim 3, characterised in that: The outer wall of the fault indicator body (12) is fixedly installed with a connecting frame one (15), and the inner wall of the connecting frame one (15) is movably inserted with a connecting rod (16).

5. A catenary overhead line fault indication device according to claim 4, characterised in that: The outer wall of the connecting rod (16) is fixedly sleeved with a fixing ring (17), and the outer wall of the fixing ring (17) is provided with a threaded hole one (18).

6. A catenary overhead line fault indication device according to claim 5, characterised in that: The outer wall of the fault indicator body (12) is fixedly installed with a connecting frame two (19), and the inner wall of the connecting frame two (19) is threadedly connected with a bolt one (20), and the outer wall of the bolt one (20) is threadedly connected with the inner wall of the threaded hole one (18).

7. A catenary overhead line fault indication device according to claim 6, characterised in that: The outer wall of the bolt one (20) is threadedly connected with a nut (21), the top of the fixing ring (17) is provided with a threaded hole two (22), and the inner wall of the threaded hole two (22) is threadedly connected with a bolt two (23).