Solar awning of new energy automobile

By designing a solar awning on new energy vehicles, integrating flexible thin-film solar panels and automatic control systems, the problem of inconvenient charging of new energy vehicles has been solved, charging and automatic cleaning can be achieved at any time, and the user experience has been improved.

CN223340429UActive Publication Date: 2025-09-16邓凌斌
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Patent Information

Application Number
CN202422807899.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-09-16
Estimated Expiration
2034-11-18

AI Technical Summary

Technical Problem

When the power battery of a new energy vehicle is exhausted, it needs to be charged at a fixed charging station, which increases the burden on the power grid and makes it inconvenient to charge at any time. In addition, the existing charging facilities are not easy to move, which affects the user experience.

Method used

A solar awning for new energy vehicles is designed, which integrates flexible thin-film solar panels, tubular motors, weather monitoring devices and control systems. It can provide shade and charge the vehicle simultaneously. It is also equipped with a cleaning system to prevent dust accumulation, and uses a weather monitoring device to automatically control the deployment and storage of the solar panels.

Benefits of technology

It can charge the batteries of new energy vehicles at any time while providing shade, reducing the burden on the power grid, and maintain the efficiency of solar panels through an automatic cleaning system to improve user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a solar awning of a new energy automobile, and belongs to the technical field of automobile awnings. Comprising an automobile body, a mounting frame, a tubular motor, a winding drum, a flexible film solar panel, a telescopic bent arm, a weather monitoring device, a solar controller and a controller. The flexible thin-film solar panel is arranged at the top of the automobile body, the flexible thin-film solar panel can be unfolded when the sun is available, a storage battery in the automobile body can be charged and stored at any time while sun shading is achieved, and the flexible thin-film solar panel can be rolled in the mounting frame after use. Or when the weather monitoring device detects that the weather is bad, the flexible thin-film solar panel is rolled up, the flexible thin-film solar panel can be protected, meanwhile, the cleaning plate is arranged, the surface of the flexible thin-film solar panel can be cleaned, and the situation that dust is accumulated, and work of the solar panel is affected is avoided.
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Description

Technical Field

[0001] The utility model belongs to the technical field of automobile awnings, and particularly relates to a solar awning for a new energy vehicle. Background Art

[0002] New energy vehicles are powered by onboard power supplies and do not emit harmful gases that pollute the atmosphere. With the rapid development of new energy vehicles, low-carbon, environmentally friendly electric vehicles have already captured a portion of the household car market. More and more people are choosing electric vehicles as a means of transportation. However, because electric vehicles are powered by batteries, they cannot continue driving when the stored energy is depleted, requiring recharging at dedicated charging stations.

[0003] Charging stations typically use power from the national grid, which increases the burden on the grid. Using solar energy to assist charging reduces the burden on the national grid, is environmentally friendly, and produces zero pollution. Furthermore, charging stations are fixed in position, making it difficult to move the charging piles when needed, hindering on-the-go charging. Therefore, the present invention provides a solar awning for new energy vehicles that not only provides shade but also allows for charging of new energy vehicles at any time, storing electrical energy and conserving resources. Summary of the Invention

[0004] To overcome the problems mentioned in the background art, the present invention provides a solar awning for new energy vehicles. While providing shade, the awning can also charge the battery in the vehicle body at any time, storing electrical energy, and simultaneously clean the surface of the flexible thin-film solar panel to prevent dust accumulation that could affect the panel's operation.

[0005] To achieve the above-mentioned purpose, the present invention is realized through the following technical solutions: a solar awning for a new energy vehicle comprises a mounting frame 2, a tubular motor 3, a reel 4, a flexible thin-film solar panel 5, a telescopic arm 6, a weather monitoring device 7, a solar controller 8, and a controller 9. The mounting frame 2 is mounted on the top of the vehicle body, and two tubular motors 3 are mounted on the side panels of the mounting frame 2. The tubular motor 3 comprises a reel arranged in the two mounting frames 2 and connected to the output end of the tubular motor 3. The reel 4 is mounted on the reel of the tubular motor 3. Two partitions 10 are provided between the front and rear side panels of the mounting frame 2. Two telescopic arms 6 are installed on the partition 10, and the telescopic ends of the two telescopic arms 6 are connected to the beam 11. One end of the flexible thin-film solar panel 5 is installed on the reel 4, and the other end is installed on the beam 11. The weather monitoring device 7 is installed on the top of the installation frame 2, and the solar controller 8 is installed at the bottom of the installation frame 2. The flexible thin-film solar panel 5 is connected to the solar controller 8, and the solar controller 8 is connected to the voltage stabilizer, the transformer, and the battery in the car body in sequence. The controller 9 is connected to the battery in the car body, and the tubular motor 3 is connected to the controller 9.

[0006] Furthermore, a cleaning plate 12 is provided between the front and rear side plates of the installation frame 2 , a cleaning sponge is provided at the bottom of the cleaning plate 12 , and the cleaning sponge is located above the flexible thin-film solar panel 5 .

[0007] Furthermore, a dust groove 16 is provided on the crossbeam 11 .

[0008] Furthermore, the weather monitoring device 7 includes a rain sensor 13, a wind speed sensor 14, and a light sensor 15. The rain sensor 13, the wind speed sensor 14, and the light sensor 15 are all installed on the top of the installation frame 2, and the rain sensor 13, the wind speed sensor 14, and the light sensor 15 are all connected to the controller 9.

[0009] Furthermore, the solar awning of the new energy vehicle includes a remote controller 17 , and the remote controller 17 is connected to the controller 9 .

[0010] Beneficial effects of the utility model:

[0011] The utility model provides a flexible thin-film solar panel on the roof of the car, which can move with the car body. The flexible thin-film solar panel can be unfolded when the sun is shining, and can charge the battery in the car body at any time to store electric energy while providing shade. The flexible thin-film solar panel can be rolled up into the installation frame after use, or the flexible thin-film solar panel can be rolled up when the weather monitoring device detects bad weather, so as to protect the flexible thin-film solar energy. A cleaning plate is also provided to clean the surface of the flexible thin-film solar panel to avoid dust accumulation that affects the operation of the solar panel. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 It is a schematic structural diagram of the utility model.

[0013] Figure 2 It is a schematic structural diagram of the utility model.

[0014] Figure 3 It is a schematic structural diagram of the utility model.

[0015] Figure 4 It is a schematic diagram of the utility model process.

[0016] Reference numerals: vehicle body 1, mounting frame 2, tubular motor 3, reel 4, flexible thin-film solar panel 5, telescopic arm 6, weather monitoring device 7, solar controller 8, controller 9, partition 10, crossbeam 11, cleaning plate 12, rain sensor 13, wind speed sensor 14, light sensor 15, dust trough 16, remote control 17. DETAILED DESCRIPTION

[0017] In order to make the purpose, technical solutions and beneficial effects of the present invention clearer, the preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings to facilitate understanding by technicians.

[0018] like Figure 1-4The utility model discloses a solar awning for a new energy vehicle, the solar awning for a new energy vehicle comprises a mounting frame 2, a tubular motor 3, a reel 4, a flexible thin-film solar panel 5, a telescopic arm 6, a weather monitoring device 7, a solar controller 8, and a controller 9. The mounting frame 2 is mounted on the top of the vehicle body 1, and two tubular motors 3 are mounted on the side panels of the mounting frame 2. The tubular motor 3 comprises a reel arranged in the two mounting frames 2 and connected to the output end of the tubular motor 3. The reel 4 is mounted on the reel of the tubular motor 3. Two partitions 10 are provided between the front and rear side panels of the mounting frame 2. Two telescopic arms 6 are mounted on the partitions 10. The telescopic ends of the two telescopic arms 6 are connected to a crossbeam 11. One end of the flexible thin-film solar panel 5 is mounted on the reel 4, and the other end is mounted on the crossbeam 11. The weather monitoring device 7 is mounted on the top of the mounting frame 2, and the solar controller 8 is mounted on the bottom of the mounting frame 2. The flexible thin-film solar panel 5 is connected to the solar controller 8. The solar controller 8 is sequentially connected to a voltage stabilizer and a transformer The controller 9 is connected to the battery in the car body 1, and the tubular motor 3 is connected to the controller 9; a flexible thin-film solar panel is provided on the top of the car body, that is, the front and rear ends of the car are both provided with flexible thin-film solar panels, and the length of the flexible thin-film solar panel at the front end is greater than the length of the flexible thin-film solar panel at the rear end, so as to ensure that the entire car can be covered. When there is sunshine, the flexible thin-film solar panel can be unfolded, that is, the tubular motor is started by the controller, and the rotation of the tubular motor drives the reel to release the flexible thin-film solar panel, which is extended outward under the drive of the telescopic arm. While shading, the battery in the car body can be charged at any time to store electrical energy. After use, the flexible thin-film solar panel can be rolled up into the installation frame, or when the weather monitoring device detects bad weather, the flexible thin-film solar panel can be rolled up. When rolling up, the tubular motor is started, and the rotation of the tubular motor drives the reel to roll up the flexible thin-film solar panel, and at the same time, the telescopic arm is retracted and reset, which can protect the flexible thin-film solar panel. At the same time, a cleaning plate is provided to clean the surface of the flexible thin-film solar panel to prevent dust accumulation that affects the operation of the solar panel.

[0019] A cleaning plate 12 is provided between the front and rear side plates of the mounting frame 2, and a cleaning sponge is provided at the bottom of the cleaning plate 12, and the cleaning sponge is located above the flexible thin-film solar panel 5; the cleaning sponge on the cleaning plate is provided above the flexible thin-film solar panel, and when the flexible thin-film solar panel is rolled up after use, the cleaning sponge can remove dust from the surface of the flexible thin-film solar panel to avoid dust accumulation and affect the operation of the solar panel.

[0020] The crossbeam 11 is provided with a dust groove 16; when the cleaning sponge removes dust from the surface of the flexible thin-film solar panel, the dust is eventually accumulated in the dust groove to prevent the dust from falling directly onto the vehicle. The user only needs to clean the dust in the dust groove.

[0021] The weather monitoring device 7 includes a rain sensor 13, a wind speed sensor 14, and a light sensor 15. The rain sensor 13, the wind speed sensor 14, and the light sensor 15 are all installed on the top of the mounting frame 2. The rain sensor 13, the wind speed sensor 14, and the light sensor 15 are all connected to the controller 9; the rain sensor can monitor and distinguish the types of rain, snow, and hail and the intensity of rainfall, the wind speed sensor can continuously measure wind speed and wind volume, and the light sensor can monitor light intensity. When encountering bad weather during use, such as heavy rain, snow, hail, or too high wind speed that may damage the flexible thin-film solar panel, the rain sensor and the wind speed sensor can send information to the controller, which controls the tubular motor to retract the flexible thin-film solar panel to avoid damage. When the light sensor detects that the light is very strong, it can transmit information to the controller. When the flexible thin-film solar panel is not unfolded, the tubular motor can be controlled by the controller to automatically unfold the flexible thin-film solar panel to provide shade while charging the car's battery.

[0022] The solar awning of the new energy vehicle includes a remote controller 17, which is connected to the controller 9. The user can control the unfolding and retraction of the flexible thin-film solar panel through the remote controller, which is convenient and fast.

[0023] Working process:

[0024] The working principle of the present invention is as follows: a flexible thin-film solar panel 5 is provided on the top of the automobile body 1, that is, the front and rear ends of the automobile are both provided with flexible thin-film solar panels 5, and the length of the flexible thin-film solar panel 5 at the front end is greater than the length of the flexible thin-film solar panel 5 at the rear end, so as to ensure that the entire automobile can be covered. When there is sunlight, the flexible thin-film solar panel 5 can be unfolded, that is, the tubular motor 3 is started by the controller 9, and the tubular motor 3 rotates to drive the reel 4 to release the flexible thin-film solar panel 5, which is extended outward under the drive of the telescopic flex arm 6. While providing sun protection, the battery in the automobile body 1 can be charged at any time to store electrical energy. After use, the flexible thin-film solar panel 5 can be rolled up into the installation frame 2, or the flexible thin-film solar panel 5 can be rolled up when the weather monitoring device 7 detects bad weather. When rolling up, the tubular motor 3 is started, and the tubular motor 3 rotates to drive the reel 4 to roll up the flexible thin-film solar panel 5, and at the same time, the telescopic flex arm 6 is retracted and reset. When rolling up, the cleaning sponge can remove dust on the surface of the flexible thin-film solar panel 5, so that the dust accumulates in the dust groove 16, thereby preventing dust from accumulating on the flexible thin-film solar panel 5.

[0025] Finally, it should be noted that the above preferred embodiments are only used to illustrate the technical solutions of the present invention and are not limiting. Although the present invention has been described in detail through the above preferred embodiments, those skilled in the art should understand that various changes can be made in form and details without departing from the scope defined by the claims of the present invention.

Claims

1. A solar awning for a new energy vehicle, characterized by: The solar awning of the new energy vehicle comprises a mounting frame (2), a tubular motor (3), a reel (4), a flexible thin-film solar panel (5), a telescopic arm (6), a weather monitoring device (7), a solar controller (8), and a controller (9). The mounting frame (2) is mounted on the top of the vehicle body. Two tubular motors (3) are mounted on the side panels of the mounting frame (2). The tubular motor (3) comprises a reel arranged in the two mounting frames (2) and connected to the output end of the tubular motor (3). The reel (4) is mounted on the reel of the tubular motor (3). Two partitions (10) are provided between the front and rear side panels of the mounting frame (2). The partitions (10) are mounted with Two telescopic arms (6), the telescopic ends of the two telescopic arms (6) are connected to a crossbeam (11), one end of the flexible thin-film solar panel (5) is mounted on the reel (4), and the other end is mounted on the crossbeam (11), the weather monitoring device (7) is mounted on the top of the mounting frame (2), the solar controller (8) is mounted on the bottom of the mounting frame (2), the flexible thin-film solar panel (5) is connected to the solar controller (8), the solar controller (8) is sequentially connected to a voltage stabilizer, a transformer, and a battery in a vehicle body, the controller (9) is connected to the battery in the vehicle body, and the tubular motor (3) is connected to the controller (9).

2. The solar awning for a new energy vehicle according to claim 1, characterized in that: A cleaning plate (12) is provided between the front and rear side plates of the installation frame (2), a cleaning sponge is provided at the bottom of the cleaning plate (12), and the cleaning sponge is located above the flexible thin-film solar panel (5).

3. The solar awning for a new energy vehicle according to claim 2, characterized in that: A dust groove (16) is provided on the crossbeam (11).

4. A solar awning for a new energy vehicle according to any one of claims 1 to 3, characterized in that: The weather monitoring device (7) includes a rain sensor (13), a wind speed sensor (14), and a light sensor (15). The rain sensor (13), the wind speed sensor (14), and the light sensor (15) are all installed on the top of the installation frame (2). The rain sensor (13), the wind speed sensor (14), and the light sensor (15) are all connected to the controller (9).

5. A solar awning for a new energy vehicle according to any one of claims 1 to 3, characterized in that: The solar awning for the new energy vehicle comprises a remote controller (17), and the remote controller (17) is connected to the controller (9).