A power transmission line AI intelligent recognition image monitoring device
By using plug-in structure for the rods and pins, the problem of difficult disassembly and assembly caused by bolt corrosion of the monitoring device is solved, realizing convenient disassembly and assembly of the monitoring box and improving the reliability and maintenance efficiency of the device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGDONG JINGCHENG INTELLIGENT EQUIPMENT GROUP CO LTD
- Filing Date
- 2025-08-18
- Publication Date
- 2026-05-26
Smart Images

Figure CN224284085U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of power transmission line monitoring technology, and in particular to an AI intelligent image recognition monitoring device for power transmission lines. Background Technology
[0002] As a key carrier of power transmission, power transmission lines are typically mounted on utility poles and directly exposed to the external environment. In many special scenarios, such as severe weather, complex terrain areas, or locations susceptible to human damage, intelligent monitoring is crucial to ensure that power transmission lines can be repaired as soon as possible when damaged by external forces, minimizing losses caused by power outages.
[0003] With the continuous improvement of intelligent AI technology, integrating AI technology into monitoring technology can effectively improve the accuracy of monitoring and enable rapid identification and early warning of abnormal conditions in power transmission lines, leading to the emergence of related intelligent monitoring devices.
[0004] Existing intelligent monitoring devices mainly consist of clamps that are securely fixed to utility poles and intelligent monitoring boxes that are fixed to the clamps. After the clamps are connected and fixed to the utility pole, the intelligent monitoring box is connected to the clamps via bolts. However, because the bolts connecting the monitoring box and the clamps are exposed to the outside for a long time, they are easily corroded by rainwater, moisture, dust, and corrosive substances in the external environment.
[0005] Once the bolts corrode, they are prone to jamming and becoming difficult to unscrew. This problem directly leads to the need to break the corroded bolts on the clamps to remove the electrical box for maintenance when the monitoring box needs to be replaced. This not only makes the disassembly and assembly process extremely difficult, but also consumes a lot of manpower and time, increases maintenance costs, and brings great inconvenience to subsequent maintenance work. It is not conducive to the timely maintenance and upgrading of the monitoring device, and affects the continuity and reliability of power transmission line monitoring. Utility Model Content
[0006] The purpose of this invention is to address the shortcomings and deficiencies of existing technologies by providing an AI-powered intelligent image monitoring device for power transmission lines.
[0007] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0008] The present invention discloses an AI intelligent recognition image monitoring device for power transmission lines, comprising a monitoring box and a clamp; a panoramic camera is fixed on the top of the monitoring box; and a motherboard is fixed inside the monitoring box.
[0009] The inner wall of the clamp is provided with a concave shape; the back of the monitoring box is fixed with a plug rod that matches the concave shape; the plug rod is inserted into the concave shape from top to bottom; the monitoring box is provided with a retractable pin assembly; the pin assembly extends into the lower part of the clamp.
[0010] Furthermore, a protective cover is fixed to the bottom surface of the clamp; the opening of the protective cover is positioned facing the monitoring box; the end of the pin assembly is inserted into the interior of the protective cover.
[0011] Furthermore, a sleeve is fixed inside the monitoring box; a through hole communicating with the sleeve is provided on the back of the monitoring box; the pin assembly is a pin shaft; the inner diameter of the sleeve is equal to the diameter of the pin shaft; a spiral groove is provided on the surface of the sleeve; a guide pin that is slidably connected to the spiral groove is fixed on the shaft extension of the pin shaft; the spiral groove extends from the top of the sleeve to the bottom of the sleeve; the spiral groove is located at one end of the bottom of the sleeve near the clamp.
[0012] Furthermore, a handle is fixed to one end of the insertion shaft inside the monitoring box; a counterweight is provided on the side wall of the handle; the counterweight and the guide pin are both located on the same side of the insertion shaft.
[0013] Furthermore, a first positioning groove and a second positioning groove are respectively provided at both ends of the spiral groove; both the first positioning groove and the second positioning groove extend along the axial direction of the sleeve.
[0014] Furthermore, the shaft of the insert is provided with a threaded hole; the guide pin is provided with an external thread that is threadedly connected to the threaded hole.
[0015] With the above structure, the beneficial effects of this utility model are as follows: after the pin assembly is inserted into the lower part of the clamp, it prevents the monitoring box from being pulled upward, thus positioning the monitoring box and the clamp; when it is necessary to remove the monitoring box as a whole, it is only necessary to pull the pin assembly to the position that is misaligned with the clamp, and the plug can be pulled out from the concave shape, thus completing the installation and removal of the monitoring box from the clamp; in this structure, the monitoring box is fixed on the clamp using a plug-in structure, which is convenient for installation and removal and easy for maintenance. Attached Figure Description
[0016] Figure 1 This is a first-view perspective perspective view of this utility model;
[0017] Figure 2 This is a second-view perspective perspective view of this utility model;
[0018] Figure 3 This is a structural diagram of the monitoring box;
[0019] Figure 4 This is a structural diagram of the clamp;
[0020] Figure 5 This is a structural diagram of the insert shaft;
[0021] Figure 6 This is a structural diagram of the sleeve;
[0022] Explanation of reference numerals in the attached figures:
[0023] 1. Monitoring box; 101. Through hole; 2. Panoramic camera; 3. Hoop; 301. Concave type;
[0024] 302. Reinforcing rib; 303. Protective cover; 4. Insert rod; 5. Insert shaft; 501. Handle;
[0025] 50101, counterweight; 502, threaded hole; 503, guide pin; 6, sleeve; 601, spiral groove;
[0026] 602, First positioning slot; 603, Second positioning slot; 7, Main board. Detailed Implementation
[0027] The present invention will be further described below with reference to the accompanying drawings.
[0028] like Figures 1 to 6 As shown, the AI intelligent recognition image monitoring device for power transmission lines of this utility model includes a monitoring box 1 and a clamp 3; a panoramic camera 2 is fixed to the top of the monitoring box 1; a motherboard 7 is fixed inside the monitoring box 1; the panoramic camera 2 and the motherboard 7 are not fundamentally different from the prior art, so they will not be described in detail; the panoramic camera 2 can be set at the bottom or side surface of the monitoring box 1; the panoramic camera 2 is connected to the motherboard 7; the motherboard 7 is connected to the circuit; the panoramic camera 2 is used to acquire images of the power transmission line and transmit them to the server through the motherboard 7; the clamp 3 is tightly fixed to the power pole.
[0029] A concave shape 301 is provided on the inner side wall of the clamp 3; a plug rod 4 matching the concave shape 301 is fixed on the back of the monitoring box 1; the plug rod 4 is inserted into the concave shape 301 from top to bottom; a retractable pin assembly is provided inside the monitoring box 1; the pin assembly extends into the lower part of the clamp 3; reinforcing ribs 302 are provided on the outer surface of the clamp 3 at the concave shape 301 position;
[0030] The insertion rod 4 is shaped like a "7". One end of the insertion rod 4 is fixed to the back of the monitoring box 1, and the other end is parallel to the back of the monitoring box 1. Moreover, the gap formed between the monitoring box 1 and the insertion rod 4 is equal to the thickness of the clamp 3, so that the insertion rod 4 will not wobble from side to side after being inserted into the concave 301.
[0031] After the pin assembly is inserted below the clamp 3, it prevents the monitoring box 1 from being pulled upward, thus positioning the monitoring box 1 and the clamp 3. When it is necessary to remove the monitoring box 1 as a whole, simply pull the pin assembly to a position that is misaligned with the clamp 3, and the plug rod 4 can be pulled out from the concave 301, completing the installation and removal of the monitoring box 1 from the clamp 3. In this structure, the monitoring box 1 is fixed to the clamp 3 using a plug-in structure, which is convenient for installation and removal and easy for maintenance.
[0032] In a preferred embodiment of this utility model, a protective cover 303 is fixed on the bottom surface of the clamp 3; the opening of the protective cover 303 is positioned facing the monitoring box 1; the end of the pin assembly is inserted into the interior of the protective cover 303; the protective cover 303 is used to protect the pin assembly and prevent the end of the pin assembly extending outside the monitoring box 1 from rusting.
[0033] In a preferred embodiment of this utility model, a sleeve 6 is fixed inside the monitoring box 1; a through hole 101 communicating with the sleeve 6 is provided on the back of the monitoring box 1; the pin assembly is a pin shaft 5; the inner diameter of the sleeve 6 is equal to the diameter of the pin shaft 5; a spiral groove 601 is provided on the surface of the sleeve 6; a guide pin 503 that is slidably connected to the spiral groove 601 is fixed on the shaft extension of the pin shaft 5; the spiral groove 601 extends from the top of the sleeve 6 to the bottom of the sleeve 6; one end of the spiral groove 601 is located near the clamp 3 at the bottom of the sleeve 6.
[0034] The sleeve 6 is horizontally positioned, so one end of the spiral groove 601 is at the top of the sleeve 6 and the other end of the spiral groove 601 is at the bottom of the sleeve 6; the spiral groove 601 is a groove formed on the surface of the sleeve 6 in a spiral upward manner.
[0035] When the insert shaft 5 rotates inside the sleeve 6, the guide pin 503 moves along the trajectory of the spiral groove 601. When the guide pin 503 slides to the top of the spiral groove 601, the insert shaft 5 is completely retracted into the sleeve 6 and misaligned with the clamp 3. The insert rod 4 can then be removed from the concave section 301 to detach the monitoring box 1 from the clamp 3. When the guide pin 503 moves along the trajectory of the spiral groove 601 and rotates to the bottom of the spiral groove 601, the end of the guide pin 503 extends out of the sleeve 6 and inserts into the bottom of the clamp 3, locking the monitoring box 1 and the clamp 3. The guide pin 503 is in the locking position at the bottom of the spiral groove 601. Due to its own weight, the guide pin 503 will not rotate upwards, ensuring that the guide pin 503 will not automatically retract into the sleeve 6, thus ensuring the stability of the connection.
[0036] In a preferred embodiment of this utility model, a handle 501 is fixed to one end of the insertion shaft 5 inside the monitoring box 1; a counterweight 50101 is provided on the side wall of the handle 501; the counterweight 50101 and the guide pin 503 are both located on the same side of the insertion shaft 5; the handle 501 is used to rotate the insertion shaft 5; and by placing the counterweight 50101 and the guide pin 503 on the same side of the insertion shaft 5, the difficulty of rotating the guide pin 503 in the opposite direction upward is further increased.
[0037] In a preferred embodiment of the present invention, a first positioning groove 602 and a second positioning groove 603 are respectively provided at both ends of the spiral groove 601; the first positioning groove 602 and the second positioning groove 603 both extend along the axial direction of the sleeve 6.
[0038] The first positioning groove 602 and the second positioning groove 603 are used to position the guide pin 503 at both ends of the spiral groove 601.
[0039] The first positioning groove 602 is located at the bottom of the spiral groove 601, while the second positioning groove 603 is located at the top of the spiral groove 601. After the insert shaft 5 is retracted into the sleeve 6, the guide pin 503 is pulled into the second positioning groove 603 to prevent the insert shaft 5 from sliding along the trajectory of the spiral groove 601 due to its own weight after the insert shaft 5 is released by hand, making it more convenient to disassemble and assemble the monitoring box 1.
[0040] In a preferred embodiment of this utility model, the shaft body of the insert 5 is provided with a threaded hole 502; the guide pin 503 is provided with an external thread that is threaded to the threaded hole 502; when assembling the guide pin 503 and the insert 5, the insert 5 is first inserted into the inside of the sleeve 6, and then the end of the guide pin 503 with the external thread passes through the spiral groove 601 into the inner cavity of the sleeve 6 and connects with the threaded hole 502, which facilitates the assembly of the insert 5 and the sleeve 6.
[0041] The above description is only a preferred embodiment of the present utility model. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the claims of the present utility model patent application are included in the scope of the present utility model patent application.
Claims
1. A power transmission line AI intelligent recognition image monitoring device, comprising a monitoring box (1) and a clamp (3); a panoramic camera (2) is fixed on the top of the monitoring box (1); a motherboard (7) is fixed inside the monitoring box (1); characterized in that The inner wall of the clamp (3) is provided with a concave shape (301); the back of the monitoring box (1) is fixed with a plug rod (4) that matches the concave shape (301); the plug rod (4) is inserted into the concave shape (301) from top to bottom; the monitoring box (1) is provided with a retractable pin assembly; the pin assembly extends into the lower part of the clamp (3). 2.The power transmission line AI intelligent identification image monitoring device according to claim 1, characterized in that: A protective cover (303) is fixed on the bottom surface of the clamp (3); the opening of the protective cover (303) is set facing the monitoring box (1); the end of the pin assembly is inserted into the interior of the protective cover (303). 3.The power transmission line AI intelligent identification image monitoring device according to claim 1, characterized in that: The monitoring box (1) has a sleeve (6) fixed inside; the back of the monitoring box (1) is provided with a through hole (101) that communicates with the sleeve (6); the pin assembly is a pin shaft (5); the inner diameter of the sleeve (6) is equal to the diameter of the pin shaft (5); a spiral groove (601) is provided on the surface of the sleeve (6); a guide pin (503) that is slidably connected to the spiral groove (601) is fixed on the shaft extension of the pin shaft (5); the spiral groove (601) extends from the top of the sleeve (6) to the bottom of the sleeve (6); the spiral groove (601) is located at one end of the bottom of the sleeve (6) near the clamp (3).
4. The power transmission line AI intelligent identification image monitoring device according to claim 3, characterized in that: The insert shaft (5) has a handle (501) fixed at one end inside the monitoring box (1); a counterweight (50101) is provided on the side wall of the handle (501); the counterweight (50101) and the guide pin (503) are both located on the same side of the insert shaft (5).
5. The AI intelligent recognition image monitoring device for power transmission lines according to claim 3, characterized in that: The spiral groove (601) is provided with a first positioning groove (602) and a second positioning groove (603) at both ends; the first positioning groove (602) and the second positioning groove (603) both extend along the axial direction of the sleeve (6).
6. The AI intelligent recognition image monitoring device for power transmission lines according to claim 3, characterized in that: The insert shaft (5) has a threaded hole (502) on its shaft body; the guide pin (503) has an external thread that is threaded to the threaded hole (502).