Intelligent monitoring system for construction site
By introducing components such as bases, telescopic poles, and support poles into the intelligent monitoring system at the construction site, combined with the support structure of tripods and legs, the problem of device instability was solved, achieving stable fixation and flexible adjustment of the device, and improving the adaptability and flexibility of monitoring.
Patent Information
- Application Number
- CN202520667711.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-04-10
AI Technical Summary
Existing intelligent monitoring systems for construction sites are prone to instability during use, which may lead to displacement or tipping, affecting the operation of the equipment.
The design incorporates components such as a base, telescopic rod, support rod, camera, control board, and photovoltaic panel. Through the combination of a tripod and legs, along with sliding and telescopic structures, the device can be stably fixed and its height and angle can be adjusted.
It effectively prevents the device from tipping over during use, improves the stability of the device, facilitates the adjustment of the camera's height and angle, and enhances the flexibility and adaptability of monitoring.
Smart Images

Figure CN223782566U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of construction site monitoring technology, and in particular to an intelligent monitoring system for construction sites. Background Technology
[0002] A construction site is a site where construction activities such as building construction, civil engineering, equipment installation, and pipeline laying are carried out for industrial and civil projects. It refers to the approved construction area and the place where people carry out safe production, civilized work, and construction. It includes all areas on land, at sea, and in the air where construction work can be carried out. Monitoring construction sites requires an intelligent monitoring system. An intelligent monitoring system for construction sites is a new model that uses modern information technology to comprehensively monitor and manage construction sites, aiming to improve construction safety, efficiency, and reduce costs.
[0003] To address this, Chinese patent application CN214675453U discloses an intelligent security monitoring device for construction sites. The device includes a placement plate, a first motor at its bottom, a threaded sleeve at the output end of the first motor, a threaded rod inside the threaded sleeve, a connecting ring at the top of the threaded rod, a connecting plate at the top of the connecting ring, and a motor housing on the surface of the connecting plate. This allows the threaded rod to move the motor housing up and down via the connecting plate, adjusting the height of the monitoring device. Simultaneously, a second motor inside the motor housing operates, causing a first support plate to rotate via a rotating shaft. This first support plate then rotates the monitoring camera, adjusting the monitoring direction. This multi-faceted adjustment significantly increases the flexibility and range of the monitoring system, reducing unnecessary complications.
[0004] The aforementioned intelligent security monitoring device for construction sites aims to greatly increase the flexibility and range of monitoring, thereby reducing unnecessary troubles. However, during use, the monitoring system is not placed stably enough and may shift or tilt, affecting the use of the device. Utility Model Content
[0005] The purpose of this invention is to provide an intelligent monitoring system for construction sites, which addresses the shortcomings of existing intelligent monitoring systems for construction sites that struggle to support the devices.
[0006] To solve the above-mentioned technical problems, this utility model provides the following technical solution: an intelligent monitoring system for construction sites, including a base;
[0007] A telescopic rod is installed at the top of the base, a support rod is installed at the top of the telescopic rod, and a camera is installed at the top of the support rod.
[0008] A control board is installed on one side of the telescopic rod, and a battery is installed inside the control board. A wire is installed at the bottom of the control board, and a photovoltaic panel is installed on one side of the wire.
[0009] A support structure is installed on the outer side of the telescopic rod. The support structure includes a connecting ring installed on the outer side of the telescopic rod and a rotating shaft installed on the outer side of the connecting ring.
[0010] In use, the high-definition camera can first capture and monitor images, the control board can control and manage the camera, perform AI analysis on the images captured by the camera, send the AI analysis data to a remote data terminal, and control and manage the photovoltaic modules. The photovoltaic panels can generate electricity through solar energy and store the generated electricity inside the battery.
[0011] Furthermore, a slider is provided at the bottom end of the support rod, and a sliding groove is provided inside the telescopic rod. The support rod and the telescopic rod form a sliding structure, and the support rod can slide inside the telescopic rod.
[0012] Furthermore, a telescopic structure is installed at the top of the telescopic rod, and the telescopic structure includes a telescopic block installed at the top of the telescopic rod, a rubber pad installed at the top of the telescopic block, and a mounting screw installed on one side of the telescopic block. The height of the camera can be adjusted by sliding the support rod.
[0013] Furthermore, the outer side wall of the mounting screw is uniformly provided with external threads, and the inner side wall of the telescopic block is uniformly provided with internal threads that cooperate with the external threads. The mounting screw and the telescopic block are connected by threads, and the support rod can be fixed by the mounting screw.
[0014] Furthermore, a tripod is installed at the bottom of the rotating shaft, and a support leg is installed at the bottom of the tripod. A first screw is installed on one side of the support leg, a support frame is installed on one side of the tripod, and a second screw is installed on one side of the tripod. The tripod and the support leg can support the device.
[0015] Furthermore, the first screw and the support leg form a threaded connection, the first screw is arranged at equal intervals, and the first screw can fix the support leg.
[0016] Furthermore, the second screw and the tripod are connected by a thread, and the second screw is arranged in a ring shape, which can fix the support frame.
[0017] Furthermore, a disassembly and assembly structure is installed on one side of the control board. The disassembly and assembly structure includes a clamp installed on one side of the control board, a connecting plate installed on one side of the clamp, and a fixing screw passing through one end of the connecting plate. A nut is installed on one end of the fixing screw, so that the control board can be fixed through the disassembly and assembly structure.
[0018] Furthermore, the nut and the fixing screw form a threaded connection, and the inner diameter of the nut is larger than the outer diameter of the fixing screw. The nut and the fixing screw work together to fix the clamp.
[0019] The advantages of the intelligent monitoring system for construction sites provided by this utility model are: during use, the telescopic rod and support rod can be supported by a tripod and outriggers to prevent the device from tipping over; the control board can be installed and fixed by a disassembly and assembly structure; and the length of the device can be adjusted by a telescopic structure.
[0020] A connecting ring is installed on the outside of the telescopic pole and fixed to it. The pivot on the connecting ring can rotate, which in turn rotates the tripod and legs to adjust their angles. The tripod and legs form a sliding structure, allowing the legs to be slid to adjust their length. When fixing is needed, the legs can be secured by tightening the first screw. At the same time, the tripod can be fixed and supported by a support frame, which can be fixed to the tripod by a second screw, making the tripod more stable. This achieves the purpose of providing convenient support for the device using an intelligent monitoring system on the construction site.
[0021] By installing a telescopic block at the top of the telescopic pole, the support rod can slide into the telescopic block and the telescopic pole. The support rod can extend and retract inside the telescopic pole, adjusting the height of the camera to adapt to different situations. The rubber pad enhances the seal between the support rod and the telescopic block. When the support rod needs to be fixed, the mounting screws can be tightened to secure it. This achieves the goal of easily adjusting the camera height in the intelligent monitoring system for construction sites. Attached Figure Description
[0022] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;
[0023] Figure 2 This is a frontal cross-sectional view of the present invention.
[0024] Figure 3 This is a three-dimensional structural diagram of the support structure of this utility model;
[0025] Figure 4 This is a three-dimensional structural diagram of the telescopic structure of this utility model;
[0026] Figure 5 This is a three-dimensional structural diagram of the disassembly and assembly structure of this utility model.
[0027] The following are the annotations in the diagram: 1. Support rod; 2. Telescopic rod; 3. Support structure; 301. Tripod; 302. Support leg; 303. Support frame; 304. First screw; 305. Second screw; 306. Shaft; 307. Connecting ring; 4. Base; 5. Assembly / disassembly structure; 501. Clamp; 502. Connecting plate; 503. Fixing screw; 504. Nut; 6. Battery; 7. Control board; 8. Photovoltaic panel; 9. Wire; 10. Camera; 11. Telescopic structure; 1101. Telescopic block; 1102. Mounting screw; 1103. Rubber pad. Detailed Implementation
[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0029] Please see Figures 1-5 One embodiment of this utility model is an intelligent monitoring system for construction sites, including a base 4.
[0030] A telescopic rod 2 is installed at the top of the base 4, and a telescopic structure 11 is installed at the top of the telescopic rod 2. The telescopic structure 11 includes a telescopic block 1101 installed at the top of the telescopic rod 2, a rubber pad 1103 installed at the top of the telescopic block 1101, and a mounting screw 1102 installed on one side of the telescopic block 1101. External threads are evenly provided on the outer side wall of the mounting screw 1102, and internal threads that cooperate with the external threads are evenly provided on the inner side wall of the telescopic block 1101. The mounting screw 1102 and the telescopic block 1101 are connected by threads.
[0031] See attached document Figure 1-2 and attached Figure 4 As shown, the support rod 1 can slide into the telescopic block 1101 and the telescopic rod 2. The support rod 1 can extend and retract inside the telescopic rod 2. The extension and retraction of the support rod 1 can adjust the height of the camera 10, allowing the camera 10 to adapt to different situations. The rubber pad 1103 can enhance the sealing between the support rod 1 and the telescopic block 1101. When it is necessary to fix the support rod 1, the mounting screw 1102 can be tightened to fix the support rod 1.
[0032] The top of the telescopic rod 2 is equipped with a support rod 1, the bottom of the support rod 1 is equipped with a slider, and the inside of the telescopic rod 2 is equipped with a sliding groove. The support rod 1 and the telescopic rod 2 constitute a sliding structure.
[0033] A camera 10 is installed at the top of the support rod 1. A control board 7 is installed on one side of the telescopic rod 2. A disassembly structure 5 is installed on one side of the control board 7. The disassembly structure 5 includes a clamp 501 installed on one side of the control board 7 and a connecting plate 502 installed on one side of the clamp 501. A fixing screw 503 passes through one end of the connecting plate 502. A nut 504 is installed on one end of the fixing screw 503. The nut 504 and the fixing screw 503 form a threaded connection. The inner diameter of the nut 504 is larger than the outer diameter of the fixing screw 503.
[0034] See attached document Figure 1-2 and attached Figure 5 As shown, the high-definition camera 10 can perform shooting and monitoring. The control board 7 can control and manage the camera 10, perform AI analysis on the images captured by the camera 10, send the AI analysis data to a remote data terminal, and control and manage the photovoltaic modules. The photovoltaic panel 8 can generate electricity through solar energy and store the generated electricity inside the battery 6 to provide part of the power for the device. The control board 7 is installed on the telescopic rod 2 through the clamp 501. Tightening the fixing screw 503 and nut 504 will connect the connecting plate 502 of the two clamps 501 and move the control board 7 to the telescopic rod 2.
[0035] The control board 7 has a battery 6 installed inside, a wire 9 installed at the bottom of the control board 7, and a photovoltaic panel 8 installed on one side of the wire 9.
[0036] A support structure 3 is installed on the outside of the telescopic rod 2. The support structure 3 includes a connecting ring 307 installed on the outside of the telescopic rod 2, a rotating shaft 306 installed on the outside of the connecting ring 307, a tripod 301 installed at the bottom of the rotating shaft 306, and a support leg 302 installed at the bottom of the tripod 301. A first screw 304 is installed on one side of the support leg 302. The first screw 304 and the support leg 302 form a threaded connection. The first screws 304 are arranged at equal intervals.
[0037] A support frame 303 is installed on one side of the tripod 301, and a second screw 305 is installed on one side of the tripod 301. The second screw 305 and the tripod 301 form a threaded connection, and the second screw 305 is distributed in a ring.
[0038] See attached document Figure 1-3As shown, the connecting ring 307 is fixed on the telescopic rod 2. The rotating shaft 306 on the connecting ring 307 can rotate. The rotation of the rotating shaft 306 will drive the tripod 301 and the support leg 302 to rotate, thereby adjusting the angle of the tripod 301 and the support leg 302. The support leg 302 and the tripod 301 form a sliding structure, and the length of the tripod 301 and the support leg 302 can be adjusted by sliding the support leg 302. When it is necessary to fix it, the support leg 302 can be fixed by tightening the first screw 304. At the same time, the tripod 301 can be fixed and supported by the support frame 303. The support frame 303 can be fixed to the tripod 301 by the second screw 305, making the tripod 301 more stable.
[0039] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A construction site intelligent monitoring system, including a base (4); Its features are: A telescopic rod (2) is installed at the top of the base (4), a support rod (1) is installed at the top of the telescopic rod (2), and a camera (10) is installed at the top of the support rod (1). A control board (7) is installed on one side of the telescopic rod (2), and a storage battery (6) is installed inside the control board (7). A wire (9) is installed at the bottom of the control board (7), and a photovoltaic panel (8) is installed on one side of the wire (9). A support structure (3) is installed on the outside of the telescopic rod (2). The support structure (3) includes a connecting ring (307) installed on the outside of the telescopic rod (2) and a rotating shaft (306) installed on the outside of the connecting ring (307).
2. The intelligent monitoring system for construction sites according to claim 1, characterized in that: The bottom end of the support rod (1) is provided with a slider, and the inside of the telescopic rod (2) is provided with a sliding groove. The support rod (1) and the telescopic rod (2) constitute a sliding structure.
3. The intelligent monitoring system for construction sites according to claim 1, characterized in that: The telescopic rod (2) is equipped with a telescopic structure (11) at its top end, and the telescopic structure (11) includes a telescopic block (1101) installed at the top end of the telescopic rod (2), a rubber pad (1103) installed at the top end of the telescopic block (1101), and an installation screw (1102) installed on one side of the telescopic block (1101).
4. The intelligent monitoring system for construction sites according to claim 3, characterized in that: The mounting screw (1102) has external threads evenly distributed on its outer side wall, and the telescopic block (1101) has internal threads evenly distributed on its inner side wall that cooperate with the external threads. The mounting screw (1102) and the telescopic block (1101) are connected by threads.
5. The intelligent monitoring system for construction sites according to claim 1, characterized in that: A tripod (301) is mounted on the bottom end of the pivot (306), and a support leg (302) is mounted on the bottom end of the tripod (301). A first screw (304) is mounted on one side of the support leg (302), a support frame (303) is mounted on one side of the tripod (301), and a second screw (305) is mounted on one side of the tripod (301).
6. The intelligent monitoring system for construction sites according to claim 5, characterized in that: The first screw (304) and the support leg (302) form a threaded connection, and the first screw (304) is arranged at equal intervals.
7. The intelligent monitoring system for construction sites according to claim 5, characterized in that: The second screw (305) and the tripod (301) form a threaded connection, and the second screw (305) is distributed in a ring.
8. The intelligent monitoring system for construction sites according to claim 1, characterized in that: A disassembly structure (5) is installed on one side of the control board (7). The disassembly structure (5) includes a clamp (501) installed on one side of the control board (7), a connecting plate (502) installed on one side of the clamp (501), and a fixing screw (503) passing through one end of the connecting plate (502). A nut (504) is installed on one end of the fixing screw (503).
9. A construction site intelligent monitoring system according to claim 8, characterized in that: The nut (504) and the fixing screw (503) form a threaded connection, and the inner diameter of the nut (504) is larger than the outer diameter of the fixing screw (503).
Citation Information
Patent Citations
Intelligent security monitoring device for construction site
CN214675453U