Railway line power supply monitoring system

By installing a combination system of thermal imaging cameras and solar panels on railway lines, the status of power supply equipment can be monitored and analyzed in real time, solving the stability and safety problems of the power supply system of high-speed railway lines and realizing unattended real-time monitoring and warning functions.

CN223744433UActive Publication Date: 2025-12-30SHANGHAI HIGH-SPEED RAILWAY INFRASTRUCTURE SECTION OF CHINA RAILWAY SHANGHAI BUREAU GRP CO LTD +1
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Patent Information

Application Number
CN202520217280.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-11
Publication Date
2025-12-30
Estimated Expiration
2035-02-11

AI Technical Summary

Technical Problem

In existing technologies, it is difficult to effectively monitor the stability and safety of power supply systems for high-speed railway lines, especially under high-frequency operation. There is a lack of effective means to monitor the real-time status and environment of power supply equipment, which affects the safety of high-speed railway operation.

Method used

The system uses thermal imaging cameras to monitor the electrical equipment on railway line towers in real time. Combined with the platform's warning module, it analyzes the images and issues warnings. Data is recorded through a storage module, and information is wirelessly transmitted using a network transmission module. Powered by solar panels, it enables unattended real-time monitoring.

Benefits of technology

It enables real-time monitoring and anomaly warning of railway line power supply equipment, ensuring equipment safety, reducing human intervention, and improving the stability and security of the power supply system.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a railway line power supply monitoring system, and belongs to the field of railway line monitoring. The monitoring system comprises a thermal imaging camera which is fixed on a pole tower of a railway line through a camera shooting fixing device so as to acquire an image of on-site pole tower electrical equipment in real time; the platform warning module is used for analyzing the image acquired by the thermal imaging camera and giving a warning when the image is abnormal; the storage module is used for storing the images and warning information of the on-site tower electrical equipment acquired by the thermal imaging camera; the network transmission module is wirelessly connected with the thermal imaging camera, the storage module and the platform warning module so as to transmit information acquired by the thermal imaging camera to the storage module and the platform warning module; and the solar cell panel is connected with the thermal imaging camera so as to supply power to the thermal imaging camera. The monitoring system can monitor the railway line in real time.
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Description

TECHNICAL FIELD

[0001] The utility model relates to railway line monitoring field, concretely relates to a railway line power supply monitoring system. BACKGROUND

[0002] High -speed rail line iron is the whole high -speed rail power supply system a core component, and the safety of the equipment operation is related to the operation safety of high -speed rail, and is also the weak part of high -speed rail power supply system. In addition, along with the increase of high -speed rail operation frequency, even the saturation of operation frequency, the on -line power supply system bears huge pressure, and its stable operation is directly related to the safety of high -speed rail operation, and is an important component of railway operation safety.

[0003] Therefore, it is urgent to strengthen the line power supply safety guarantee measure, need to strengthen the monitoring of the environment around the power supply tower, need to strengthen the monitoring of the operation state of the power supply cable head, realize the real -time online monitoring of the offline power supply line and the surrounding environment, monitor. Ensure the safe operation of electrical equipment, electrical equipment field operation environment guarantee, no additional person, thing etc. Invade. Therefore, a railway line power supply monitoring system is needed. UTILITY MODEL CONTENT

[0004] The purpose of the embodiment of the utility model is to provide a railway line power supply monitoring system, which can monitor the railway line in real time.

[0005] In order to realize the above-mentioned purpose, the utility model embodiment provides a railway line power supply monitoring system, the monitoring system includes:

[0006] Thermal imaging camera, is fixed on the tower of railway line through camera fixing device, to acquire the image of on -the -spot tower electrical equipment in real time;

[0007] Platform warning module is used for analyzing the image obtained by the thermal imaging camera and issuing a warning when abnormal;

[0008] Storage module is used for storing the image and warning information of on -the -spot tower electrical equipment obtained by the thermal imaging camera;

[0009] Network transmission module is wirelessly connected with the thermal imaging camera, storage module and platform warning module, to transmit the information obtained by the thermal imaging camera to the storage module and platform warning module;

[0010] Solar panel is connected with the thermal imaging camera, to power the thermal imaging camera.

[0011] Optionally, the camera fixing device includes:

[0012] First support table is arranged at the bottom of the thermal imaging camera to support the thermal imaging camera.

[0013] a first support plate arranged at one end of the first support table to support the first support table;

[0014] a second support plate arranged at one side of the first support plate away from the first support table to support the first support plate;

[0015] a fixing sleeve sleeved outside the L-shaped support frame and connected with the second support plate through bolts to fix the second support plate to the L-shaped support frame.

[0016] Optionally, one side of the first support plate away from the first support table is provided with a circular groove, and the camera fixing device comprises:

[0017] a circular clamping column arranged in the circular groove;

[0018] a square support table arranged at one end of the circular clamping column away from the circular groove, and the second support plate is arranged on the square support table;

[0019] the periphery of the circular groove is provided with an annular groove, the camera fixing device comprises a pair of clamping blocks arranged on both sides of the square support table to limit the rotation of the square support table, and the bottom of the clamping block can move along the annular groove, and the clamping block can be fixed on the first support plate through bolts.

[0020] Optionally, the fixing sleeve is provided with a threaded hole, the threaded hole is a through hole, and the camera fixing device comprises a first bolt, the first bolt can be screwed into the threaded hole to press the fixing sleeve tightly on the L-shaped support frame.

[0021] Optionally, the number of threaded holes is multiple, and the number of first bolts is multiple.

[0022] Optionally, the camera fixing device comprises a connecting plate arranged at one end of the first support table in contact with the first support plate, and fixed on the first support plate through bolts.

[0023] Optionally, both sides of the first support table are provided with an extension plate, the extension plate is provided with a connecting groove, and both sides of the bottom of the thermal imaging camera are provided with a fixing plate, and the bolts can pass through the fixing plate and the connecting groove to fix the fixing plate on the extension plate.

[0024] Optionally, the number of bolts is two, and each bolt is arranged at both ends of the fixing plate on each side.

[0025] Optionally, the four corners of the first support plate are rounded.

[0026] Through the technical scheme, the railway line power supply monitoring system provided by the utility model acquires the image of the on-site tower electrical equipment in real time through the thermal imaging camera. The thermal imaging camera can be fixed on the tower of the railway line through the camera fixing device. The platform warning module can be used for analyzing the image acquired by the thermal imaging camera and can send a warning when the railway line is abnormal. The storage module can be used for storing the image of the on-site tower electrical equipment acquired by the thermal imaging camera and the warning information. The network transmission module can be wirelessly connected with the thermal imaging camera, the storage module and the platform warning module, so that the information acquired by the thermal imaging camera can be transmitted to the storage module and the platform warning module. The solar panel can be connected with the thermal imaging camera, so as to supply power for the thermal imaging camera. The monitoring system can monitor the railway line in real time.

[0027] Other features and advantages of the embodiments of the utility model will be described in detail in the following specific implementation part. BRIEF DESCRIPTION OF DRAWINGS

[0028] The drawings are used to provide further understanding of the embodiments of the utility model and constitute a part of the specification, and are used to explain the embodiments of the utility model together with the following specific implementation, but do not constitute the limitation of the embodiments of the utility model. In the drawings:

[0029] Figure 1 It is a system connection diagram of a railway line power supply monitoring system according to an embodiment of the utility model,

[0030] Figure 2 It is a front three-dimensional view of the camera fixing device of a railway line power supply monitoring system according to an embodiment of the utility model,

[0031] Figure 3 It is a side three-dimensional view of the camera fixing device of a railway line power supply monitoring system according to an embodiment of the utility model,

[0032] Figure 4 It is a three-dimensional view of the first support plate of a railway line power supply monitoring system according to an embodiment of the utility model,

[0033] Figure 5 It is a three-dimensional view of the circular clamping column of a railway line power supply monitoring system according to an embodiment of the utility model,

[0034] Figure 6 It is a live-action picture according to an embodiment of the utility model.

[0035] EXPLANATION OF REFERENCE NUMERALS

[0036] 1. Thermal imaging camera 2. Platform warning module 2

[0037] 3. Storage module 4. Network transmission module

[0038] 5. Solar panel 6. First support table

[0039] 7. First support plate 8. Second support plate

[0040] 9. L-shaped support frame 10. Circular groove

[0041] 11. Circular clamping column 12. Square support table

[0042] 13. Annular groove 14. Clamping block

[0043] 15. First bolt 16. Connecting plate

[0044] 17. Extension plate 18. Connecting groove

[0045] 19. Fixed plate 20. Fixed sleeve DETAILED DESCRIPTION

[0046] The specific embodiments of the utility model examples are described in detail below in combination with the drawings. It should be understood that the specific embodiments described herein are only used to illustrate and explain the utility model examples, and are not used to limit the utility model examples.

[0047] Figure 1is a system connection diagram of a railway line power supply monitoring system according to an embodiment of the utility model. In the utility model, the monitoring system can include: a thermal imaging camera 1, a platform warning module 2, a storage module 3, a network transmission module 4 and a solar panel 5. The thermal imaging camera 1 can acquire the image of the field tower electrical equipment in real time. The thermal imaging camera 1 can be fixed on the tower of the railway line through the camera fixing device. The platform warning module 2 can be used to analyze the image acquired by the thermal imaging camera 1 and can issue a warning when an abnormality occurs on the railway line. The storage module 3 can be used to store the image of the field tower electrical equipment acquired by the thermal imaging camera 1 and warning information. The network transmission module 4 can be wirelessly connected with the thermal imaging camera 1, the storage module 3 and the platform warning module 2, so that the information acquired by the thermal imaging camera 1 can be transmitted to the storage module 3 and the platform warning module 2. The thermal imaging camera 1 can uninterruptedly monitor the field tower electrical equipment, monitor the equipment temperature and whether smoke is emitted in real time, and once temperature abnormally rises or the equipment emits smoke, the equipment alarm will be triggered immediately, and the video and alarm information are stored in the storage module 3, the storage module 3 can be accessed through the platform, and real-time preview, alarm playback viewing and other operations can be performed. The solar panel 5 can be connected with the thermal imaging camera 1, so as to supply power for the thermal imaging camera 1. The field diagram of the thermal imaging camera 1 and the solar panel 5 can be as shown in Figure 6 The monitoring system can monitor the railway line in real time.

[0048] In an embodiment of the utility model, as shown in Figure 2 and Figure 3 The camera fixing device can include: a first support table 6, a first support plate 7, a second support plate 8 and a fixing sleeve 20. The first support table 6 can be arranged at the bottom of the thermal imaging camera 1, so as to support the thermal imaging camera 1. The first support plate 7 can be arranged at one end of the first support table 6, so as to support the first support table 6. The second support plate 8 can be arranged on the side of the first support plate 7 away from the first support table 6, so as to support the first support plate 7. The fixing sleeve 20 can be sleeved on the outside of the L-shaped support frame 9. The L-shaped support frame 9 can be a section of the tower on the railway line, and the shape of the fixing sleeve 20 can be adapted to the shape of the L-shaped support frame 9, so that when the fixing sleeve 20 is sleeved on the outside of the L-shaped support frame 9 and then connected with the second support plate 8 through bolts, the second support plate 8 can be fixed to the L-shaped support frame 9, so as to make the thermal imaging camera 1 also be fixed on the tower.

[0049] In an embodiment of the utility model, as shown in Figure 4 and Figure 5As shown, one side of the first support plate 7 away from the first support table 6 can be provided with a circular groove 10. The camera fixing device can include a circular clamping column 11 and a square support table 12. The circular clamping column 11 can be arranged in the circular groove 10. The square support table 12 can be arranged at one end of the circular clamping column 11 away from the circular groove 10. The second support plate 8 can be arranged on the square support table 12, so that the second support plate 8 can rotate arbitrarily with the circular clamping column 11. The periphery of the circular groove 10 can be provided with an annular groove 13. The camera fixing device can include a pair of clamping blocks 14. The pair of clamping blocks 14 can be arranged on both sides of the square support table 12, so as to limit the rotation of the square support table 12. The bottom of the clamping block 14 can move along the annular groove 13, and the clamping block 14 can be fixed on the first support plate 7 by bolts. By providing the circular clamping column 11 and the circular groove 10, when the L-shaped support frame 9 is not in a horizontal state but in an inclined state, the circular clamping column 11 can be rotated, so that the second support plate 8 on the circular clamping column 11 can be rotated at any angle, thereby the angle of the second support plate 8 can be adapted to the L-shaped support frame 9, and then the fixing sleeve 20 can be fixed to the L-shaped support frame 9 without the need for additional components to be fixed to the L-shaped support frame 9. When the square support table 12 rotates, the clamping block can also be rotated, and then when the square support table 12 needs to be fixed, the clamping block can be fixed by bolts, thereby the square support table 12 can be indirectly fixed.

[0050] In an embodiment of the present application, as shown in Figure 3 The fixing sleeve 20 can be provided with a threaded hole, which can be a through hole. The camera fixing device can include a first bolt 15. The first bolt 15 can be screwed into the threaded hole, so that the fixing sleeve 20 can be pressed tightly on the L-shaped support frame 9, so that the camera fixing device cannot be shaken arbitrarily.

[0051] In an embodiment of the present application, the number of threaded holes can be multiple, and correspondingly, the number of first bolts 15 can also be multiple, so that the fixing sleeve 20 can be pressed more tightly on the L-shaped support frame 9.

[0052] In an embodiment of the present application, as shown in Figure 2 Both sides of the first support table 6 can be provided with an extension plate 17. The extension plate 17 can be provided with a connecting groove 18. Both sides of the bottom of the thermal imaging camera 1 can be provided with a fixing plate 19. The bolt can pass through the fixing plate 19 and the connecting groove 18, so that the fixing plate 19 can be fixed on the extension plate 17. Because of the connecting groove 18, when the thermal imaging camera 1 is installed, the position of the thermal imaging camera on the first support table 6 can be adjusted as needed, and then fixed by bolts.

[0053] In one embodiment of the present application, the number of bolts can be two, which are arranged at the two ends of the fixing plate on each side, so that the thermal imaging camera 1 can be better fixed on the first support table 6.

[0054] In one embodiment of the present application, the four corners of the first support plate 7 can be rounded to avoid scratching the workers during installation.

[0055] Through the above technical scheme, the railway line power supply monitoring system provided by the present application acquires the images of the on-site tower electrical equipment in real time through the thermal imaging camera. The thermal imaging camera can be fixed on the tower of the railway line through the camera fixing device. The platform warning module can be used to analyze the images acquired by the thermal imaging camera and can issue a warning when an abnormality occurs on the railway line. The storage module can be used to store the images and warning information of the on-site tower electrical equipment acquired by the thermal imaging camera. The network transmission module can be wirelessly connected with the thermal imaging camera, the storage module and the platform warning module, so that the information acquired by the thermal imaging camera can be transmitted to the storage module and the platform warning module. The solar panel can be connected with the thermal imaging camera, so as to supply power for the thermal imaging camera. The monitoring system can monitor the railway line in real time.

[0056] It should be further understood that the terms "comprise", "comprising", or any other variant thereof are intended to cover non-exclusive inclusion, so that processes, methods, articles or devices that include a series of elements include not only those elements, but also other elements not explicitly listed, or other elements inherent to such processes, methods, articles or devices. Without more limitations, the element defined by the statement "comprising a" does not exclude the presence of additional identical elements in the process, method, article or device that includes the element.

[0057] The above is only an embodiment of the present application and is not intended to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application shall be included in the scope of claims of the present application.

Claims

1. A railway line power supply monitoring system, characterized in that, The monitoring system comprises: a thermal imaging camera (1) fixed on a pole tower of a railway line through a camera fixing device to acquire images of electrical equipment of the pole tower in real time; a platform warning module (2) for analyzing the images acquired by the thermal imaging camera (1) and issuing a warning when an anomaly occurs; a storage module (3) for storing the images of the electrical equipment of the pole tower acquired by the thermal imaging camera (1) and the warning information; a network transmission module (4) wirelessly connected to the thermal imaging camera (1), the storage module (3) and the platform warning module (2) to transmit the information acquired by the thermal imaging camera (1) to the storage module (3) and the platform warning module (2); and a solar panel (5) connected to the thermal imaging camera (1) to supply power for the thermal imaging camera (1).

2. The monitoring system of claim 1, wherein, The camera fixing device comprises: a first support table (6) arranged at the bottom of the thermal imaging camera (1) to support the thermal imaging camera (1); a first support plate (7) arranged at one end of the first support table (6) to support the first support table (6); a second support plate (8) arranged on the side of the first support plate (7) away from the first support table (6) to support the first support plate (7); a fixing sleeve (20) sleeved on the outside of the L-shaped support frame (9) and connected to the second support plate (8) through bolts, so as to fix the second support plate (8) to the L-shaped support frame (9).

3. The monitoring system of claim 2, wherein, The side of the first support plate (7) away from the first support table (6) is provided with a circular groove (10), and the camera fixing device comprises: a circular clamping column (11) arranged in the circular groove (10); a square support table (12) arranged at the end of the circular clamping column (11) away from the circular groove (10), and the second support plate (8) is arranged on the square support table (12); the periphery of the circular groove (10) is provided with an annular groove (13), and the camera fixing device comprises a pair of clamping blocks (14) arranged on both sides of the square support table (12) to limit the rotation of the square support table (12), and the bottom of the clamping block (14) can move along the annular groove (13), and the clamping block (14) can be fixed on the first support plate (7) through bolts.

4. The monitoring system of claim 2, wherein, The fixing sleeve (20) is provided with a threaded hole, the threaded hole is a through hole, and the camera fixing device comprises a first bolt (15) which can be screwed into the threaded hole to press the fixing sleeve (20) tightly on the L-shaped support frame (9).

5. The monitoring system of claim 4, wherein, The number of threaded holes is multiple, and the number of first bolts (15) is multiple.

6. The monitoring system of claim 2, wherein, The camera fixing device comprises a connecting plate (16) arranged at the end of the first support table (6) in contact with the first support plate (7) and fixed on the first support plate (7) through bolts.

7. The monitoring system of claim 2, wherein, Both sides of the first support table (6) are provided with extension plates (17), the extension plates (17) are provided with connecting grooves (18), the bottom of the thermal imaging camera (1) is provided with fixed plates (19), and bolts can pass through the fixed plates (19) and the connecting grooves (18) to fix the fixed plates (19) on the extension plates (17).

8. The monitoring system of claim 7, wherein, The number of the bolts is two, which are arranged at the two ends of the fixed plate (19) on each side.

9. The monitoring system of claim 1, wherein, The four corners of the first support plate (7) are rounded.