Power transmission line monitoring device with improved stability

CN224814729UActive Publication Date: 2026-09-29SUZHOU BOYUAN POWER TECH CO LTD
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Patent Information

Application Number
CN202522516124.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-27
Publication Date
2026-09-29
Estimated Expiration
2035-11-27

AI Technical Summary

Technical Problem

[0005]本申请的目的是提供一种提高稳定性的输电线路监控设备,以改善输电线路监控设备支撑固定不足和防护能力欠缺的问题

Benefits of technology

本申请通过半箍件、长支杆、短支杆及弧块的组合实现与电线杆的紧密固定,斜加强杆件形成的三角形结构及斜支杆的斜向支撑,构建了多维度的稳固支撑体系,有效抵御风力等外界荷载对设备的影响,减少晃动或位移。

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Abstract

The application discloses a power transmission line monitoring device with improved stability, and relates to the technical field of power transmission line monitoring, which comprises a pole body, the side of the pole body is provided with an inclined protection plate, the lower side of the inclined protection plate is provided with a support plate, the lower surface of the support plate is provided with a monitoring assembly, the upper surface of the support plate is fixedly provided with a control module, the upper end of the monitoring assembly penetrates through the support plate and is electrically connected with the control module, the outer surface of the pole body is provided with two half hoop members on one side, the power transmission line monitoring device with improved stability is closely fixed with the pole through the half hoop members, the long supporting rod, the short supporting rod and the arc block, the triangular structure of the inclined reinforcing rod and the inclined support of the inclined supporting rod are used to build a multi-dimensional stable system, resist external load and reduce shaking displacement, the inclined protection plate can shield rainwater, dust and the like, the control module and the monitoring assembly are protected, the service life of the device is prolonged, and faults are reduced.
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Description

Technical Field

[0001] This application relates to the field of power transmission line monitoring technology, and in particular to a power transmission line monitoring device that improves stability. Background Technology

[0002] Transmission line monitoring is a key means to ensure the safe and stable operation of the power system. The core is to grasp the line's operating status in real time and promptly detect and deal with potential faults. A common method is visual monitoring, which uses high-definition cameras and infrared thermal imagers on poles to achieve real-time video monitoring and temperature anomaly detection of the line, and to intuitively capture fault points.

[0003] However, existing technologies still have the following problems: Existing power transmission line monitoring equipment mostly relies on a single hoop or simple support pole for fixation, without arc block reinforcement or diagonal reinforcement structure between the support poles. It is difficult to resist external loads such as wind force, and is prone to swaying and displacement. There is even a risk of falling objects due to loose fasteners.

[0004] In response to the aforementioned technologies, the inventors propose a power transmission line monitoring device that improves stability to solve the above problems. Utility Model Content

[0005] The purpose of this application is to provide a transmission line monitoring device that improves stability, thereby addressing the problems of insufficient support and inadequate protection capabilities in transmission line monitoring devices.

[0006] The transmission line monitoring equipment for improving stability provided in this application adopts the following technical solution: A power transmission line monitoring device for improving stability includes a power pole body, a slanted protective plate on one side of the power pole body, a support plate on the lower side of the slanted protective plate, a monitoring component on the lower surface of the support plate, a control module fixedly mounted on the upper surface of the support plate, and the upper end of the monitoring component penetrating the support plate and electrically connected to the control module.

[0007] By adopting the above technical solution, the monitoring components and control module are electrically connected to realize data transmission. At the same time, the inclined protection plate can provide preliminary protection, and the support plate provides a stable mounting carrier for both.

[0008] Optionally, two semi-hoops are provided on one side of the outer surface of the utility pole body, and a long support rod and a short support rod are respectively provided on one side of the two semi-hoops. An arc block is fixed on the inner side of the long support rod and the short support rod, and the arc block and the inner side of the semi-hoops are in movable contact with the utility pole body.

[0009] By adopting the above technical solutions, the semi-hoop and the arc block enhance the fit with the pole body, and the long and short support poles provide support for the subsequent structure, thereby improving the overall installation stability.

[0010] Optionally, the long support rod and the short support rod are symmetrically fixed to the corresponding half hoop by long bolts, and the outer sides of the half hoop, the long support rod and the short support rod are all fixed with threaded sleeves for use with the long bolts.

[0011] By adopting the above technical solution, the threaded sleeve and long bolts achieve a firm connection between the semi-hoop and the support rod, preventing loosening and ensuring the reliability of the structural connection.

[0012] Optionally, the long support rod and the short support rod are connected by a diagonal reinforcing member through bolts.

[0013] By adopting the above technical solution, the diagonal reinforcing members form a triangular support with the long and short support members, which enhances the lateral load resistance and reduces swaying.

[0014] Optionally, a diagonal support rod is fixedly provided on one side of the upper half-hoop, and the diagonal support rod is fixedly connected to the diagonal protection plate.

[0015] By adopting the above technical solution, the diagonal support rod provides diagonal support for the diagonal protection plate, further reinforcing the diagonal protection plate and improving its resistance to external forces.

[0016] Optionally, the upper surface of the support plate is symmetrically fixed with vertical connecting plates, and the upper part of one side of the inclined protection plate is symmetrically fixed with an upper connecting plate. The upper connecting plate and the corresponding vertical connecting plate are fixedly connected by bolts. Both the upper connecting plate and the vertical connecting plate have through bolt slots on one side.

[0017] By adopting the above technical solution, the vertical connecting plate and the upper connecting plate are fixed to the support plate and the inclined protection plate with bolts. The bolt movable groove can be finely adjusted to install the position to adapt to different scenarios.

[0018] Optionally, an upper locking block is symmetrically fixed on one side of the support plate, and a lower locking block is symmetrically fixed on the lower part of one side of the inclined protective plate, with the upper surface of the lower locking block movably fitting against the corresponding upper locking block.

[0019] By adopting the above technical solution, the upper and lower locking blocks fit together and limit the movement, and the auxiliary reinforcement plate is connected to the inclined protection plate to prevent relative displacement.

[0020] Optionally, the inner side of the long support rod is in movable contact with the vertical connecting plate.

[0021] By adopting the above technical solution, the inner side of the long support rod contacts the vertical connecting plate, providing lateral support for the vertical connecting plate and enhancing the installation stability of the support plate.

[0022] In summary, this application includes at least one of the following beneficial technical effects: This application achieves tight fixation with the utility pole through a combination of semi-hoops, long support rods, short support rods, and arc blocks. The triangular structure formed by the diagonal reinforcing rods and the diagonal support of the diagonal rods construct a multi-dimensional stable support system, which effectively resists the impact of external loads such as wind on the equipment and reduces swaying or displacement. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the overall structure of this application.

[0024] Figure 2 This is an exploded view of the relevant structures of the long and short support rods in this application.

[0025] Figure 3 This is an exploded view of the relevant structure of the inclined protective plate in this application.

[0026] In the diagram, 1. Pole body; 11. Half hoop; 12. Long support pole; 13. Short support pole; 14. Long bolt; 15. Arc block; 16. Threaded sleeve; 17. Diagonal reinforcing member; 18. Diagonal support pole; 2. Diagonal protective plate; 3. Support plate; 31. Upper connecting plate; 32. Vertical connecting plate; 33. Bolt movable groove; 34. Upper locking block; 35. Lower locking block; 36. Control module; 37. Monitoring component. Detailed Implementation

[0027] The following is in conjunction with the appendix Figure 1 -Appendix Figure 3 This application will be described in further detail below. Example

[0028] A power transmission line monitoring device to improve stability, referring to... Figure 1-3 The system includes a utility pole body 1, a sloping protective plate 2 on one side of the utility pole body 1, and a support plate 3 on the lower side of the sloping protective plate 2. A monitoring component 37 is provided on the lower surface of the support plate 3, and a control module 36 is fixedly provided on the upper surface of the support plate 3. The upper end of the monitoring component 37 passes through the support plate 3 and is electrically connected to the control module 36. The monitoring component 37 on the lower surface of the support plate 3 is electrically connected to the control module 36 on the upper surface of the support plate 3 through the structure of the upper end passing through the support plate 3. The control module 36 is responsible for receiving and processing the power transmission line data collected by the monitoring component 37. At the same time, the sloping protective plate 2 provides shielding and protection for the control module 36 and the monitoring component 37, preventing direct corrosion from the external environment and ensuring the stability of equipment operation.

[0029] Two semi-hoops 11 are provided on one side of the outer surface of the utility pole body 1, and a long support rod 12 and a short support rod 13 are respectively provided on one side of the two semi-hoops 11. An arc block 15 is fixed on the inner side of the long support rod 12 and the short support rod 13, and the arc block 15 and the inner side of the semi-hoop 11 are in movable contact with the utility pole body 1. The long support rod 12 and the short support rod 13 are symmetrically fixed to the corresponding semi-hoops 11 by long bolts 14. The semi-hoops 11, the long support rod 12 and the short support rod The outer side of each of the poles 13 is fixed with a threaded sleeve 16 for use with the long bolt 14. First, the two half-hoops 11 are used to fit against the outer surface of the pole body 1. The long bolt 14 passes through the threaded sleeve 16 on the outer side of the half-hoops 11, the long support rod 12 and the short support rod 13, respectively, and fixes the long support rod 12 and the short support rod 13 to one side of the corresponding half-hoops 11. At this time, the arc block 15 on the inner side of the long support rod 12 and the short support rod 13 is in close contact with the pole body 1, which enhances the connection fit.

[0030] A vertical connecting plate 32 is symmetrically fixed on the upper surface of the support plate 3. An upper connecting plate 31 is symmetrically fixed on the upper part of one side of the inclined protection plate 2, and the upper connecting plate 31 and the corresponding vertical connecting plate 32 are fixedly connected by bolts. A through bolt groove 33 is opened on one side of both the upper connecting plate 31 and the vertical connecting plate 32. An upper locking block 34 is symmetrically fixed on one side of the support plate 3, and a lower locking block 35 is symmetrically fixed on the lower part of one side of the inclined protection plate 2, and the upper surface of the lower locking block 35 is movable with the corresponding upper locking block 34. The support plate 3 is aligned with the upper connecting plate 31 on one side of the inclined protection plate 2 via symmetrically arranged vertical connecting plates 32 on its upper surface. The bolts pass through the bolt movable grooves 33 on the upper connecting plate 31 and the vertical connecting plate 32 to achieve a fixed connection between the two. The bolt movable grooves 33 can be adapted to fine adjustments of the installation position. At the same time, the upper locking block 34 on one side of the support plate 3 and the lower locking block 35 on the lower side of the inclined protection plate 2 are movably attached to each other to form upper and lower limit supports, further strengthening the connection stability between the support plate 3 and the inclined protection plate 2.

[0031] A diagonal reinforcing member 17 is bolted between the long support rod 12 and the short support rod 13. A diagonal support rod 18 is fixedly installed on one side of the upper half-hoop 11 and is fixedly connected to the diagonal protective plate 2. The inner side of the long support rod 12 is in contact with the vertical connecting plate 32. Then, the diagonal reinforcing member 17 is fixed between the long support rod 12 and the short support rod 13 by bolting to form a triangular support structure, which improves the lateral support stability. At the same time, the diagonal support rod 18 on one side of the upper half-hoop 11 is fixedly connected to the diagonal protective plate 2 to provide diagonal support force for the diagonal protective plate 2.

[0032] The implementation principle of this application embodiment is as follows: First, two semi-hoops 11 are used to fit against the outer surface of the pole body 1. Long bolts 14 are passed through the threaded sleeves 16 on the outside of the semi-hoops 11, the long support rod 12, and the short support rod 13, respectively fixing the long support rod 12 and the short support rod 13 to one side of the corresponding semi-hoops 11. At this time, the arc blocks 15 on the inner side of the long support rod 12 and the short support rod 13 are in close contact with the pole body 1, enhancing the connection fit. Subsequently, the inclined reinforcing rod 17 is fixed between the long support rod 12 and the short support rod 13 through bolts to form a triangular support structure, improving the lateral support stability. At the same time, the inclined support rod 18 on one side of the upper semi-hoop 11 is fixedly connected to the inclined protection plate 2, providing inclined support force for the inclined protection plate 2. The support plate 3 is aligned with the upper connecting plate 31 on one side of the inclined protection plate 2 via symmetrically arranged vertical connecting plates 32 on its upper surface. The two are fixedly connected by bolts passing through the bolt movable grooves 33 on the upper connecting plate 31 and the vertical connecting plate 32. The bolt movable grooves 33 can be adapted to fine adjustments of the installation position. At the same time, the upper locking block 34 on one side of the support plate 3 and the lower locking block 35 on the lower side of the inclined protection plate 2 are movably fitted on their upper surfaces to form upper and lower limit supports, further strengthening the connection stability between the support plate 3 and the inclined protection plate 2. The monitoring component 37 on the lower surface of the support plate 3 is electrically connected to the control module 36 on the upper surface of the support plate 3 through the structure that penetrates the support plate 3 at the upper end. The control module 36 is responsible for receiving and processing the transmission line data collected by the monitoring component 37. At the same time, the inclined protection plate 2 provides shielding and protection for the control module 36 and the monitoring component 37, preventing direct corrosion from the external environment and ensuring the stability of equipment operation.

[0033] The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Identical components are represented by the same reference numerals. Therefore, all equivalent changes made to the structure, shape, and principle of this application should be covered within the scope of protection of this application.

Claims

1. A power transmission line monitoring device for improving stability, comprising a power pole body (1), characterized in that: The pole body (1) has a slanted protection plate (2) on one side, and a support plate (3) is provided on the lower side of the slanted protection plate (2). A monitoring component (37) is provided on the lower surface of the support plate (3), and a control module (36) is fixedly provided on the upper surface of the support plate (3). The upper end of the monitoring component (37) passes through the support plate (3) and is electrically connected to the control module (36).

2. The transmission line monitoring equipment for improving stability according to claim 1, characterized in that: Two semi-hoops (11) are provided on one side of the outer surface of the pole body (1), and a long support rod (12) and a short support rod (13) are provided on one side of the two semi-hoops (11). An arc block (15) is fixedly provided on the inner side of the long support rod (12) and the short support rod (13), and the arc block (15) and the inner side of the semi-hoops (11) are in contact with the pole body (1).

3. The transmission line monitoring equipment for improving stability according to claim 2, characterized in that: The long support rod (12) and the short support rod (13) are symmetrically fixed to the corresponding half hoop (11) by long bolts (14). The outer sides of the half hoop (11), the long support rod (12) and the short support rod (13) are all fixed with threaded sleeves (16) that are used in conjunction with the long bolts (14).

4. The transmission line monitoring equipment for improving stability according to claim 2, characterized in that: The long support rod (12) and the short support rod (13) are connected by bolts with a diagonal reinforcing member (17).

5. The transmission line monitoring equipment for improving stability according to claim 2, characterized in that: An inclined support rod (18) is fixedly provided on one side of the upper half hoop (11), and the inclined support rod (18) is fixedly connected to the inclined protection plate (2).

6. The transmission line monitoring equipment for improving stability according to claim 2, characterized in that: The upper surface of the support plate (3) is symmetrically fixed with vertical connecting plates (32), and the upper part of one side of the inclined protective plate (2) is symmetrically fixed with an upper connecting plate (31). The upper connecting plate (31) and the corresponding vertical connecting plate (32) are fixedly connected by bolts. The upper connecting plate (31) and the vertical connecting plate (32) are both provided with through bolt movable grooves (33) on one side.

7. The transmission line monitoring equipment for improving stability according to claim 1, characterized in that: The upper locking block (34) is symmetrically fixed on one side of the support plate (3), and the lower locking block (35) is symmetrically fixed on the lower part of one side of the inclined protective plate (2), and the upper surface of the lower locking block (35) is movably fitted with the corresponding upper locking block (34).

8. The transmission line monitoring equipment for improving stability according to claim 6, characterized in that: The inner side of the long support rod (12) is in contact with the vertical connecting plate (32).