Solar fence power generation device

By designing a solar fence power generation device, a photovoltaic system consisting of columns, solar panels, and inverters was adopted, which solved the problems of single fence function and complex installation. It realized a photovoltaic fence power generation system that is easy to install and dismantle, improving operational efficiency and enhancing functionality.

CN223987054UActive Publication Date: 2026-03-10SHENZHEN TOPRAY SOLAR
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-19
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Existing fences have limited functionality, are complex and cumbersome to install and dismantle, are difficult to operate by a single person, and lack versatility.

Method used

Design a solar fence power generation device, which adopts a photovoltaic system consisting of a column, a solar panel and an inverter. The column is fixed with expansion bolts, and silicone pads and C-shaped blocks are used for support. L-shaped pressure plates are used to fasten the solar panel, which can achieve quick installation and disassembly. The device is combined with double-sided double-glass solar panels and stainless steel materials to enhance durability and power generation efficiency.

Benefits of technology

This system enables easy assembly and disassembly of a solar photovoltaic fence power generation system, improving operational efficiency, reducing engineering costs, and providing power generation capabilities. It is suitable for construction sites, courtyards, factories, and other locations, and meets low-carbon and environmental protection requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a solar fence power generation device. The solar fence power generation device comprises a stand column (2), a cell panel (1) connected with the stand column (2) in a clamped mode and an inverter connected with the cell panel (1). The stand column (2) is fixed to the ground, a groove (22) is formed in the side edge of the stand column (2), the thickness of the battery panel (1) is matched with the width of the groove (22), and the battery panel (1) can be inserted into the groove (22) from top to bottom; tempered glass is arranged on the surface of the cell panel (1), and a frame is packaged on the edge of the cell panel (1). The fence is changed into a miniature power station, and solar energy is converted into available electric energy. Therefore, not only can power supply be provided for surrounding areas, but also redundant electric energy can be stored for unexpected needs.
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Description

Technical Field

[0001] This utility model relates to the field of photovoltaic technology, specifically to a solar fence power generation device. Background Technology

[0002] Fences act as physical barriers to isolate hazardous areas, preventing people from accidentally entering high-temperature, high-pressure areas in production workshops or motor vehicle lanes in traffic locations, thus reducing the risk of accidental injury. For example, in industrial production, they can isolate fumes generated by equipment, protecting the surrounding environment; in road traffic, they can prevent vehicles from crossing boundaries or entering pedestrian areas, reducing traffic accident injuries and fatalities. Fences are often equipped with reflective strips and warning signs to alert pedestrians and drivers to dangerous areas or traffic flow at night or in inclement weather. For instance, road guardrails guide vehicles to travel in their lanes, reducing congestion and accidents caused by arbitrary lane changes.

[0003] However, fences pose a risk of tipping over and have traditionally been used as a maintenance structure in the construction industry, with a relatively limited function.

[0004] In summary, the existing technology has the following problems: the existing fence functions are limited. Utility Model Content

[0005] This utility model provides a solar fence power generation device, which solves the technical problem of how to solve the problem of the fence having only one function.

[0006] To achieve the above objectives, this utility model proposes a solar fence power generation device, comprising:

[0007] A column, a solar panel that is snapped onto the column, and an inverter that is connected to the solar panel;

[0008] The column is fixed to the ground, and a groove is provided on the side of the column. The thickness of the solar panel matches the width of the groove, and the solar panel can be inserted into the groove from top to bottom.

[0009] The surface of the battery panel is covered with tempered glass, and the edges of the battery panel are encapsulated with a frame.

[0010] Specifically, the column has a base at its bottom, and the base is fixed to the ground by expansion screws.

[0011] Specifically, there are four grooves, and a support structure for supporting the battery panel is provided at the bottom of the grooves;

[0012] The support structure is movably connected within the groove.

[0013] Specifically, the top end of the support structure contacts the bottom of the battery panel, and the bottom end of the support structure contacts the base.

[0014] Specifically, the support structure includes: a silicone pad and a pad block;

[0015] The silicone pad is disposed on the upper part of the pad block.

[0016] Specifically, the pad is C-shaped.

[0017] Specifically, the solar panel is connected to the inverter via cables; some of the cables are secured in a junction box, which is fixed to the back of the solar panel.

[0018] Specifically, it also includes a fastening structure for securing the column to the battery panel.

[0019] Specifically, the fastening structure is bolted to the column, and the fastening structure is pressed into contact with the upper end of the frame of the battery panel.

[0020] Specifically, the fastening structure includes an L-shaped pressure plate and a gasket disposed at the lower part of the L-shaped pressure plate; the gasket is pressed into contact with the top edge of the battery panel frame.

[0021] The beneficial technical effects of the above-mentioned technical solution are as follows: This utility model's solar fence power generation device is a special power generation system that combines solar photovoltaic power generation technology with courtyard fence design. The device is typically made of materials such as aluminum alloy, carbon steel, and stainless steel, possessing durability and rust resistance. Carbon steel products, in particular, undergo hot-dip galvanizing treatment, ensuring they remain rust-free for up to 20 years in outdoor environments. However, existing fixing methods primarily rely on bolts and rivets, resulting in complex and cumbersome installation and disassembly processes, requiring multiple people to work together, leading to low efficiency and inconvenience for single-person operation. Therefore, it is necessary to propose a solar photovoltaic fence power generation system that is easy to assemble and disassemble and can be quickly installed. Such a system can be widely used in construction sites, courtyards, factories, and other locations, enabling rapid installation and disassembly, allowing for independent operation by a single person, improving efficiency, and reducing the amount of work. In summary, addressing existing challenges and needs, designing an easy-to-install and easy-to-disassemble system suitable for solar photovoltaic fences is crucial. Such a product will meet low-carbon and environmental protection requirements, have a wide range of applications, improve operational efficiency, and reduce project costs. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the structure of a solar fence power generation device according to an embodiment of the present utility model;

[0023] Figure 2 This is a front structural diagram of a solar fence power generation device according to an embodiment of the present utility model;

[0024] Figure 3 This is a side view of a solar fence power generation device according to an embodiment of the present utility model;

[0025] Figure 4 This is a schematic diagram of the explosive installation of a column of a solar fence power generation device according to an embodiment of the present utility model;

[0026] Figure 5 This is a top view of a solar fence power generation device according to an embodiment of the present utility model;

[0027] Figure 6 This is an exploded installation diagram of a solar fence power generation device according to an embodiment of the present utility model;

[0028] Explanation of icon numbers:

[0029] 1. Solar panel; 2. Column; 3. Junction box; 4. Pull strap; 21. Base; 22. Groove; 23. Expansion screw; 11. L-shaped pressure plate; 12. Pad. Detailed Implementation

[0030] 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.

[0031] This utility model embodiment provides a solar fence power generation device, such as... Figure 1 As shown, the system includes: a support column 2, a solar panel 1 snapped onto the support column 2, and an inverter connected to the solar panel 1; the solar panel 1 is connected to the inverter via cables; some cables are secured in a junction box 3, which is fixed to the back of the solar panel 1 with rivets. Additionally, the inverter is also connected to an electrical control box. The internal circuitry of the solar panel is connected via cables, and the junction box 3 protects the photovoltaic cables.

[0032] like Figure 3 As shown, the column 2 is fixed to the ground, and the bottom of the column 2 has a base 21, as shown. Figure 4 As shown, the base 21 is fixed to the ground by expansion screws 23. A groove 22 is provided on the side of the column 2, and the thickness of the solar panel 1 matches the width of the groove 22, as shown. Figure 5As shown, the solar panel 1 can be inserted into the groove 22 from top to bottom; there are four grooves 22, and a support structure for supporting the solar panel 1 is provided at the bottom of the groove 22; the support structure is movably connected to the groove 22. The top end of the support structure contacts the bottom of the solar panel 1, and the bottom end of the support structure contacts the base 21. The support structure includes a silicone pad and a pad block 12; the silicone pad is located on the upper part of the pad block 12, and the pad block 12 is C-shaped. Two C-shaped pad blocks are placed in the grooves on the side of the fence body to provide support and stability. Two rubber pads are placed on top of the C-shaped pad blocks to provide cushioning and shock absorption, protecting the fence body and other components. The solar panel is inserted into the groove on the side of the fence body from top to bottom to ensure a tight connection and stable installation between the solar panel and the fence body.

[0033] like Figure 2 As shown, solar panel 1 is a double-sided, double-glass solar panel. The surface of solar panel 1 is covered with tempered glass, and a frame is encapsulated at the edges. The double-sided solar cells are laminated and encapsulated using EVA, TPE, and double-layer coated tempered glass, and then the solar panel is fixed and edge-encapsulated using an aluminum frame.

[0034] The solar fence power generation device also includes a fastening structure for securing the posts 2 to the solar panels 1. The fastening structure is bolted to the posts 2 and presses against the upper edge of the solar panel 1's frame. The fastening structure includes an L-shaped pressure plate 11 and a gasket located below the L-shaped pressure plate; the gasket presses against the top edge of the solar panel 1's frame. The photovoltaic panel (solar panel 1) is inserted from top to bottom into a groove on the side of the fence body to ensure a tight connection and secure installation between the photovoltaic panel and the fence body. Two rubber pads are placed on the two top corners of the photovoltaic panel to provide additional cushioning and protection. The two L-shaped pressure plates are then pressed onto the two top corners of the photovoltaic panel and tightened with screws to ensure the fixation and stability of the photovoltaic panel, while also ensuring the integrity and safety of the entire photovoltaic fence system.

[0035] This utility model discloses a solar-powered fence system, a unique power generation system combining solar photovoltaic power generation technology and fence design. The device is typically made of materials such as aluminum alloy, carbon steel, and stainless steel, offering durability and rust resistance. Carbon steel products, in particular, undergo hot-dip galvanizing, ensuring they remain rust-free for up to 20 years outdoors. However, existing fixing methods primarily rely on bolts and rivets, resulting in complex and cumbersome installation and disassembly processes, requiring multiple people, leading to low efficiency and inconvenience for single-person operation. Therefore, it is necessary to propose a solar photovoltaic fence system that is easy to assemble and disassemble, and can be quickly installed. Such a system can be widely used in construction sites, courtyards, factories, and other locations, enabling rapid installation and disassembly, allowing for independent single-person operation, improving efficiency, and reducing workload. In conclusion, addressing existing challenges and needs, designing an easy-to-install and easy-to-disassemble system suitable for solar photovoltaic fences is crucial. Such a product will meet low-carbon and environmental protection requirements, have a wide range of applications, improve operational efficiency, and reduce project costs.

[0036] Example:

[0037] This utility model embodiment provides a solar fence power generation device (a solar fence power generation system), such as Figure 2As shown, the system comprises fence posts, bifacial double-glass solar panels, and a miniature inverter. The bifacial double-glass solar panels mainly consist of high-efficiency bifacial cells, EVA, TPE black backing film, coated tempered glass, an encapsulated aluminum frame, aluminum corner brackets, a junction box, and photovoltaic cables. The bifacial cells are laminated and encapsulated using EVA, TPE, and double-layer coated tempered glass. The aluminum frame secures and edges the solar panels, while aluminum corner brackets reinforce and connect the supporting structure. The junction box connects and protects the internal circuitry of the solar panels, and the photovoltaic cables connect the solar panels to the system. The fence itself consists of fence posts for support and fixation, C-shaped pads for filling and securing the fence, rubber pads for shock absorption and fixation, L-shaped pressure plates for reinforcement, cable protection covers for protecting the internal cables, and screw kits. The fence, bifacial double-glass solar panels, and miniature inverter together form a small power generation system for user power generation. The application of photovoltaic (PV) technology in fencing not only provides essential security features but also contributes to energy conservation and environmental protection, thus supporting sustainable development. In traditional fencing construction, the fence itself offers little value beyond security. However, the introduction of PV technology imbues fencing with new functions and value. Primarily, PV technology transforms the fence into a power generation device. By installing PV modules on the fence, it can become a miniature power station, converting solar energy into usable electricity. This application not only provides power to the surrounding area but also allows for the storage of excess energy for future needs.

[0038] To achieve the above objectives, such as Figure 6 As shown, a solar-powered fence system is provided, comprising the following components: a solar panel, two fence posts, two C-shaped pads, and two L-shaped pressure plates. First, the two fence posts are pre-fixed to the ground using expansion bolts to ensure fence stability. Then, two C-shaped pads are placed in grooves on the sides of the fence body for support. Next, a solar panel is inserted from top to bottom into the groove on the side of the fence body, ensuring a tight connection between the panel and the fence body. Then, two L-shaped pressure plates are placed on the top two corners of the solar panel and secured with screws to ensure panel stability. To prevent damage from impacts during installation, silicone pads can be attached to the four corners of the panel for cushioning. Furthermore, to address the issue of exposed solar panel cables affecting aesthetics, [further details are needed]. Figure 1As shown, a cable protection cover can be added to the back of the solar panel to conceal the cables and improve the overall aesthetics. Through this design, the new integrated solar fence power generation system can achieve stable installation and power generation, and solves the problems of collision damage and messy cables, improving the system's reliability and aesthetics.

[0039] The specific implementation process involves installing and fixing two main fence components to the ground using expansion bolts, adjusting the spacing between them to ensure fence stability and overall structural balance. Cable protection covers are then secured to the solar panels with rivets, ensuring effective cable protection and preventing external environmental impact. Two C-shaped pads are placed in the grooves on the sides of the fence components to provide support and stability. Two rubber pads are placed on top of the C-shaped pads for cushioning and shock absorption, protecting the fence components and other components. The solar panel is inserted from top to bottom into the groove on the side of the fence component, ensuring a tight connection and secure installation. Two rubber pads are placed on the top two corners of the solar panel for additional cushioning and protection. Two L-shaped pressure plates are then placed on the top two corners of the solar panel and tightened with screws to ensure the solar panel's fixation and stability, while also guaranteeing the integrity and safety of the entire solar fence system. Following these steps allows for the effective installation and assembly of the solar fence, ensuring system stability and functionality. This solar fence power generation system is designed with a high-power series structure, therefore, the solar fence power generation system has broad application prospects.

[0040] This utility model has the following beneficial effects:

[0041] First, compared to conventional fences, this solar fence power generation system uses double-sided double-glass solar panels with an integrated lamination process. It uses high-strength double-layer textured glass lamination to protect the double-sided solar cells, making the components more robust and the cells less prone to movement and damage, thus improving upon the shortcomings of the original solar panels and cells that were not robust.

[0042] Secondly, compared to the original single-sided solar power products, this solar fence power generation system uses the latest high-efficiency bifacial solar cells with a photoelectric conversion efficiency of more than 23%, providing high-efficiency photovoltaic conversion and improving the shortcomings of the original crystalline silicon solar cells with low single-sided power generation efficiency.

[0043] Third, this solar fence power generation system adopts a uniquely designed integrated structure of fence photovoltaic panels, including fence, double-sided double-glass solar panels, and small micro inverters. The fence power generation system is easy to assemble, disassemble and carry, bringing convenience and flexibility to users and improving the shortcomings of the original fence that could not generate electricity.

[0044] Fourth, the accessories of this solar fence power generation system are made of 304 stainless steel, ensuring a service life of up to 20 years without rusting, which increases the reliability and durability of the product.

[0045] Fifth, this solar fence power generation system adopts a special installation structure, which makes the installation and dismantling process faster and easier for users to use.

[0046] Sixth, the main body of this solar fence power generation system has extremely high rust resistance. Through hot-dip galvanizing, the carbon steel surface can maintain a stable state of no rust for 20 years.

[0047] Seventh, this solar fence power generation system can be hung on a fence or placed on the ground, increasing flexibility and application scenarios.

[0048] Eighth, this solar fence power generation system has strong weather resistance and can effectively resist acid and alkali corrosion, ensuring long-term stable operation of the product.

[0049] Ninth, this solar fence power generation system is designed with thickened special materials, making it sturdy and stable, and able to effectively resist extreme weather conditions such as typhoons and blizzards.

[0050] Tenth, this solar fence power generation system is all black, taking into account both portability and visual appeal, and has a stylish and beautiful design.

[0051] The above are merely illustrative embodiments of this utility model and are not intended to limit the scope of this utility model. Since the various components of this utility model can be combined with each other without conflict, any equivalent changes and modifications made by those skilled in the art without departing from the concept and principles of this utility model should fall within the protection scope of this utility model.

Claims

1. A solar fence power generation apparatus, characterized by, Include: The post (2), the battery panel (1) is connected with the post (2) and the inverter connected with the battery panel (1); The post (2) is fixed with the ground, the side of the post (2) is provided with a groove (22), the thickness of the battery panel (1) matches the width of the groove (22), the battery panel (1) can be inserted into the groove (22) from top to bottom; The surface of the battery panel (1) is provided with tempered glass, and the edge of the battery panel (1) is encapsulated with frame.

2. A solar fence power generation device according to claim 1, wherein, The bottom of the post (2) has a base (21), and the base (21) is fixed with the ground by expansion screw (23).

3. A solar fence power generation device according to claim 2, wherein, The groove (22) is provided with four, the bottom of the groove (22) is provided with a support structure for supporting the battery panel (1); The support structure is movably connected in the groove (22).

4. A solar fence power generation device according to claim 3, wherein, The top end of the support structure is in contact with the bottom of the battery panel (1), and the bottom end of the support structure is in contact with the base (21).

5. A solar fence power generation device according to claim 4, wherein, The support structure includes: silica gel pad and pad block; The silica gel pad is arranged on the upper part of the pad block.

6. A solar fence power generation device according to claim 5, wherein, The pad block is C type.

7. A solar fence power plant according to claim 1, wherein, The battery panel (1) is connected with the inverter through cable; part of the cable is buckled in the junction box (3), and the junction box (3) is fixed on the back of the battery panel (1).

8. A solar fence power generation device according to claim 3, wherein, It also includes a fastening structure for fastening the post (2) and the battery panel (1).

9. A solar fence power generation device according to claim 8, wherein, The fastening structure is bolted with the post (2), and the fastening structure is in close contact with the upper end of the frame of the battery panel (1).

10. A solar fence power generation device according to claim 9, wherein, The fastening structure includes L type pressing plate and gasket arranged on the lower part of the L type pressing plate; the gasket is in close contact with the top end of the frame of the battery panel (1).