A solar powered monitoring device
Patent Information
- Application Number
- CN202521573254.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-28
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-07-28
AI Technical Summary
[0004]现有的太阳能供电的监控装置长期暴露在户外,在强风的反复吹袭下,装置安装支架可能会出现松动,导致太阳能板或监控头倾斜、位移,影响发电和拍摄效果、而暴雨、暴雪可能导致装置内部进水,损坏电子元件,降低设备的使用寿命,增加维修成本和频次
本实用新型通过安装杆设置凹槽,使安装杆套接在路灯杆上,安装杆外侧壁连接安装块,安装块和连接块连接,使安装杆和路灯杆组装,使用U型块与安装块、连接块连接,便于加固安装块和连接块连接,U型块上下内侧壁均连接橡胶减震垫,便于起到减震效果,同时固定架两侧分别和监控头连接,监控头用于对高速上监控使用,U型块连接嵌合块,嵌合块设置有两个,两个嵌合块分别和嵌合槽a、嵌合槽b嵌合连接,进一步增加连接处的稳定性,安装壳外围连接防护罩,防护罩便于减少雨水进入装置内,便于减少装置电子元件损坏,便捷提高装置的使用寿命,降低维修成本和频次,便捷提高太阳能供电的监控装置实用性。
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Figure CN224718463U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of solar energy monitoring technology, and in particular to a solar-powered monitoring device. Background Technology
[0002] The solar-powered monitoring devices used on highways are traffic management equipment designed specifically for highway scenarios, integrating clean energy and intelligent monitoring technology. They primarily utilize solar energy, achieving green power supply through high-efficiency solar panels and energy storage batteries. They are also equipped with high-definition cameras and intelligent analysis systems, enabling continuous monitoring of road conditions.
[0003] Chinese Patent CN220669230U discloses a solar-powered monitoring device, including a base, a street light pole fixed to the base, a monitoring structure on the street light pole, and an angle adjustment structure at the top of the street light pole. The angle adjustment structure includes a fixed platform fixed to the top of the street light pole, an arched plate fixed to the top surface of the fixed platform, a rotating column inserted into the top of the arched plate, a rotating platform fixed to the top of the rotating column, and a solar panel mounted above the rotating platform. This invention, through the angle adjustment structure, allows a rotating motor to drive the rotating platform to rotate, causing the solar panel to rotate horizontally. This, in turn, drives the motor to rotate the rotating rod, I-beam rod, and connecting rod accordingly, thereby causing the solar panel to rotate at a certain angle around the fixed rod as an axis. This facilitates the solar panel's rotation to follow the sun, significantly improving the power supply efficiency of the solar panel.
[0004] Existing solar-powered monitoring devices are exposed to the outdoors for extended periods. Under repeated exposure to strong winds, the mounting brackets may loosen, causing the solar panels or monitoring heads to tilt or shift, affecting power generation and image capture. Meanwhile, heavy rain and snow may cause water to enter the device, damaging electronic components, reducing the equipment's lifespan, and increasing maintenance costs and frequency. Utility Model Content
[0005] To address the problems existing in the background technology, a solar-powered monitoring device is proposed.
[0006] This utility model proposes a solar-powered monitoring device, comprising: a street light pole, a mounting assembly, a bracket, a solar panel, a lighting lamp, a fixing ring, a U-shaped block, a fixing frame, and a monitoring head; The mounting components are attached to the streetlight pole; The mounting components include a mounting rod, a mounting block, a fitting groove a, a mounting housing, and a protective cover; A groove is provided at the bottom of the mounting pole, and the groove fits onto the street light pole. The outer wall of the mounting pole is connected to the mounting block, which is provided with a fitting groove a. The mounting shell is connected to the mounting pole, and a protective cover is connected to the outside of the mounting shell. The mounting shell is connected to a bracket, the bracket is connected to a solar panel, and a lighting lamp is connected to the outer wall of the mounting shell. A fixing ring is connected to the outer periphery of the street light pole; a connecting block is connected to the outer wall of the fixing ring, and the connecting block is provided with a fitting groove b. The U-shaped block is connected to the mounting block and the connecting block; Rubber shock-absorbing pads are connected to the upper and lower inner walls of the U-shaped block, and two interlocking blocks are connected to one side of the inner wall. The U-shaped block is connected to a fixed frame on one side, and monitoring heads are connected to both sides of the fixed frame.
[0007] Preferably, the mounting block and the connecting block are connected and detachably connected, and rubber shock-absorbing pads are respectively connected to the surfaces of the mounting block and the connecting block.
[0008] Preferably, the two interlocking blocks are connected to interlocking groove a and interlocking groove b respectively, and the connection is detachable.
[0009] Preferably, the mounting components also include a support frame, heat dissipation holes, a rotary motor, and a guide rail groove; The support frame is connected to the outer wall of the mounting rod, the heat dissipation holes are set on the mounting rod, the rotary motor is connected inside the mounting housing, the drive end of the rotary motor is connected to the bracket, and the guide rail groove is connected to the mounting housing; the heat dissipation holes penetrate through the bottom of the mounting housing.
[0010] Preferably, the support frame is connected to the control box, the guide rail groove is connected to the guide block, and the guide block is connected to the bottom of the support frame.
[0011] Preferably, a fixing ring is connected below the mounting rod, and the fixing ring is provided with through holes, with each through hole corresponding to a heat dissipation hole.
[0012] Compared with the prior art, the present invention has the following beneficial technical effects: This utility model uses a mounting rod with a groove to fit onto a street light pole. A mounting block is connected to the outer wall of the mounting rod, and the mounting block and connecting block are connected to assemble the mounting rod and street light pole. A U-shaped block is used to connect the mounting block and connecting block for reinforcement. Rubber shock-absorbing pads are connected to the upper and lower inner walls of the U-shaped block for vibration damping. Simultaneously, the two sides of the fixing frame are connected to a monitoring head for highway monitoring. Two interlocking blocks are connected to the U-shaped block, each engaging with interlocking grooves a and b respectively, further increasing the stability of the connection. A protective cover is connected to the outer perimeter of the mounting shell to reduce rainwater ingress, minimizing damage to electronic components, extending the device's lifespan, reducing maintenance costs and frequency, and significantly improving the practicality of the solar-powered monitoring device. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the installation component structure in this utility model; Figure 3 This is a schematic diagram of the mounting shell connection in this utility model; Figure 4 This is a schematic diagram of the connection of the rotary motor in this utility model; Figure 5 This is a schematic diagram of the fixing ring structure in this utility model; Figure 6 This is a schematic diagram of the reinforcement component structure in this utility model.
[0014] Reference numerals: 1. Streetlight pole; 2. Mounting assembly; 201. Mounting rod; 202. Mounting block; 203. Fitting groove a; 204. Support frame; 205. Heat dissipation hole; 206. Mounting shell; 207. Rotary motor; 208. Guide rail groove; 209. Protective cover; 3. Bracket; 4. Solar panel; 5. Lighting lamp; 6. Fixing ring; 601. Connecting block; 602. Fitting groove b; 7. U-shaped block; 701. Rubber shock-absorbing pad; 702. Fitting block; 8. Fixing frame; 9. Monitoring head. Detailed Implementation
[0015] The specific embodiments of this disclosure will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are for illustration and explanation only and are not intended to limit this disclosure.
[0016] Example 1 like Figure 1 - Figure 6As shown, this utility model proposes a solar-powered monitoring device, comprising: a street light pole 1, a mounting assembly 2, a bracket 3, a solar panel 4, a lighting lamp 5, a fixing ring 6, a U-shaped block 7, a fixing frame 8, and a monitoring head 9; the mounting assembly 2 is connected to the street light pole 1; the mounting assembly 2 includes a mounting rod 201, a mounting block 202, a fitting groove a203, a mounting shell 206, and a protective cover 209; a groove is provided at the bottom of the mounting rod 201, the groove is fitted onto the street light pole 1, the outer wall of the mounting rod 201 is connected to the mounting block 202, the mounting block 202 is provided with a fitting groove a203, and the mounting shell 206 is connected to the mounting rod 201. On the mounting pole 201, a protective cover 209 is connected to the outer perimeter of the mounting shell 206; a bracket 3 is connected to the mounting shell 206, and a solar panel 4 is connected to the bracket 3. A lighting lamp 5 is connected to the outer wall of the mounting shell 206; a fixing ring 6 is connected to the outer perimeter of the street light pole 1; a connecting block 601 is connected to the outer wall of the fixing ring 6, and the connecting block 601 is provided with a fitting groove b602; a U-shaped block 7 is connected to the mounting block 202 and the connecting block 601; rubber shock-absorbing pads 701 are connected to the upper and lower inner walls of the U-shaped block 7, and two fitting blocks 702 are connected to one side of the inner wall; a fixing frame 8 is connected to one side of the U-shaped block 7, and monitoring heads 9 are connected to both sides of the fixing frame 8. The connection of the mounting component 2, the fixing ring 6, and the U-shaped block 7 facilitates the increase of the stability of the device support connection and improves the practicality of the solar-powered monitoring device.
[0017] To further explain, the mounting block 202 and the connecting block 601 are connected and detachably connected. Rubber shock-absorbing pads 701 are connected to the surfaces of both the mounting block 202 and the connecting block 601. Two fitting blocks 702 are connected and detachably connected to fitting grooves a203 and b602, respectively. The mounting block 202, connecting block 601, and U-shaped block 7 are all provided with pre-drilled threaded holes. A flange bolt is used, with one threaded end passing through the pre-drilled threaded hole and fitted with a nut, facilitating the connection of the mounting block 202, connecting block 601, and U-shaped block 7. The operation is simple and convenient. Silicone sealant must be applied to the bolt connections to prevent rainwater from seeping into the threaded holes and causing corrosion.
[0018] Example 2 like Figure 1 - Figure 4 As shown, this utility model proposes a solar-powered monitoring device. Based on the above embodiments, this embodiment also details the specific components of the installation component 2 and their cooperation method.
[0019] Further explanation: the mounting assembly 2 also includes a support frame 204, heat dissipation holes 205, a rotary motor 207, and a guide rail groove 208; the support frame 204 is connected to the outer wall of the mounting rod 201, the heat dissipation holes 205 are provided on the mounting rod 201, the rotary motor 207 is connected inside the mounting housing 206, the drive end of the rotary motor 207 is connected to the bracket 3, and the guide rail groove 208 is connected to the mounting housing 206; the heat dissipation holes 205 penetrate through the bottom of the mounting housing 206; the support frame 204 is connected to the control box, the guide rail groove 208 is connected to the guide block, and the guide block is connected below the bracket 3; a fixing ring 6 is connected below the mounting rod 201, and the fixing ring 6 is provided with through holes, which correspond one-to-one with the heat dissipation holes 205. The upper end of the heat dissipation hole 205 penetrates into the bottom of the mounting shell 206, and the lower end is opposite to the through hole, which facilitates heat dissipation for the rotary motor 207. The rotary motor 207 is a waterproof motor, which increases its practicality. The control box is electrically connected to the device. The solar panel 4, as the core power supply component, converts sunlight into electrical energy through photoelectric conversion technology. After being processed by the control box, this electrical energy is stably transmitted to the lighting lamp 5 and the monitoring head 9, realizing green power supply. The control box and the whole device form a tight electrical connection network, which not only undertakes the responsibility of power distribution and regulation, but also coordinates the intelligent management of the monitoring head 9 and the lighting lamp 5. The monitoring head 9 takes advantage of the high position of the street lamp pole 1 and uses high-definition camera technology to capture the dynamic images of the highway in real time, providing visualized data for traffic management. The lighting lamp 5 is automatically turned on at night or in bad weather. Through scientific lighting design, it provides sufficient lighting for the road and effectively improves driving safety. Since the street lamp pole 1, the monitoring head 9, the solar panel 4 and the control box all use mature existing technologies, the specific working principle of each component will not be described in detail here.
[0020] The working principle of this utility model is as follows: When assembling and installing the solar-powered monitoring device, it is first initially fixed by fitting the mounting rod 201 onto the street light pole 1 through the groove. The groove design must match the outer diameter of the street light pole 1. The mounting rod 201 drives the mounting block 202, which connects to the connecting block 601. The connecting block 601 is set on the street light pole 1 through the fixing ring 6. The mounting block 202 and the connecting block 601 are connected so that the corresponding reserved threaded holes correspond one-to-one. Then, the U-shaped block 7 is operated to connect with the mounting block 202 and the connecting block 601. The reserved threaded holes on the U-shaped block 7 must completely coincide with the holes of the mounting block 202 and the connecting block 601 to form a three-layer threaded connection structure. Flange bolts and nuts are used to penetrate the three layers of reserved threaded holes. The flange face of the flange bolt can increase the contact area, reduce local pressure, and prevent the surface of the mounting block 202 from being deformed due to excessive extrusion. High-strength bolts and nuts are used to increase the stability of the connection. At the same time, the U-shaped block 7 connects... The device drives two interlocking blocks 702, which are inserted into interlocking slots a203 and b602 to further increase the stability of the connection, improve the stability of the monitoring device, and enhance its use in high-speed monitoring. Furthermore, the device introduces remote network control technology to achieve precise control of the rotating motor 207. Maintenance personnel can remotely issue commands through a dedicated management platform or mobile device to control the start, stop, and direction of the rotating motor 207. When the rotating motor 207 receives the start signal, its drive end immediately begins to rotate, stably transmitting power to the connected bracket 3. As a key component connecting the motor and the solar panel 4, the bracket 3 can be rotated and adjusted under the driving force of the rotating motor 207. The solar panel 4 is adjusted to the position with the optimal angle to the sunlight. Through adjustment, the solar panel 4 can absorb light energy to the maximum extent, improve the photoelectric conversion efficiency, and provide a solid guarantee for the stable power supply of subsequent lighting lamps 5, monitoring heads 9, and other equipment.
[0021] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited thereto. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the spirit of the present invention.
Claims
1. A solar-powered monitoring device, characterized in that, include: Streetlight pole (1); Install component (2) and connect it to the street light pole (1); The mounting assembly (2) includes a mounting rod (201), a mounting block (202), a fitting groove a (203), a mounting shell (206), and a protective cover (209); The mounting rod (201) has a groove at the bottom, which is fitted onto the street light pole (1). The outer wall of the mounting rod (201) is connected to the mounting block (202). The mounting block (202) is provided with a fitting groove a (203). The mounting shell (206) is connected to the mounting rod (201). The outer periphery of the mounting shell (206) is connected to the protective cover (209). The mounting shell (206) is connected to the bracket (3), the bracket (3) is connected to the solar panel (4), and the outer wall of the mounting shell (206) is connected to the lighting lamp (5). A fixing ring (6) is connected to the outside of the street light pole (1); a connecting block (601) is connected to the outer wall of the fixing ring (6), and the connecting block (601) is provided with a fitting groove b (602); And a U-shaped block (7), which is connected to the mounting block (202) and the connecting block (601); The upper and lower inner walls of the U-shaped block (7) are respectively connected to rubber shock-absorbing pads (701), and two interlocking blocks (702) are connected to one side of the inner wall. The U-shaped block (7) is connected to a fixed frame (8) on one side, and the fixed frame (8) is connected to a monitoring head (9) on both sides.
2. The solar-powered monitoring device according to claim 1, characterized in that, The mounting block (202) and the connecting block (601) are connected and detachably connected, and the rubber shock-absorbing pads (701) are respectively connected to the surfaces of the mounting block (202) and the connecting block (601).
3. The solar-powered monitoring device according to claim 1, characterized in that, The two interlocking blocks (702) are connected to interlocking groove a (203) and interlocking groove b (602) respectively, and are detachably connected.
4. The solar-powered monitoring device according to claim 3, characterized in that, The mounting assembly (2) also includes a support frame (204), heat dissipation holes (205), a rotary motor (207), and a guide rail groove (208). The support frame (204) is connected to the outer wall of the mounting rod (201), the heat dissipation hole (205) is set on the mounting rod (201), the rotary motor (207) is connected inside the mounting shell (206), the drive end of the rotary motor (207) is connected to the bracket (3), and the guide rail groove (208) is connected to the mounting shell (206); the heat dissipation hole (205) penetrates the bottom of the mounting shell (206).
5. A solar-powered monitoring device according to claim 4, characterized in that, The support frame (204) is connected to the control box, the guide rail groove (208) is connected to the guide block, and the guide block is connected to the bottom of the bracket (3).
6. A solar-powered monitoring device according to claim 5, characterized in that, The mounting rod (201) is connected to a fixing ring (6) below. The fixing ring (6) is provided with a through hole, and the through hole and the heat dissipation hole (205) correspond one to one.
Citation Information
Patent Citations
Monitoring device powered by solar energy
CN220669230U