Mobile photovoltaic power generation device

By designing photovoltaic power generation devices that are easy to adjust and move, the existing photovoltaic power generation systems are solved to solve the need for field operations and mobile living, and efficient solar power generation is achieved.

CN222852221UActive Publication Date: 2025-05-09HENAN HUADIAN JINTU ELECTRIC POWER DESIGN CO LTD
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Patent Information

Application Number
CN202421496284.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-27
Publication Date
2025-05-09
Estimated Expiration
2034-06-27

AI Technical Summary

Technical Problem

The existing solar photovoltaic power generation systems are large and fixed, and cannot move due to the large and fixed equipment, which is insufficient to adapt to the needs of field operations or mobile residence.

Method used

A mobile photovoltaic power generation device is designed, using manual telescopic support brackets, angle adjustment fixed blocks, adjustment motors, universal pulleys and other structures to realize the height and angle adjustment of photovoltaic modules and the convenient movement of equipment.

Benefits of technology

It realizes efficient power generation of photovoltaic modules, can easily change the installation pitch angle and azimuth angle, and is suitable for field operations and mobile residences. It has the characteristics of simple structure and convenient operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of photovoltaic power generation, in particular to a movable photovoltaic power generation device, which comprises an angle adjusting fixed block, an angle moving adjuster, a height adjusting fixed block, an adjusting motor, a height moving adjusting rod, a first adjusting moving block, an angle adjusting connecting plate, a second adjusting moving block and a second rotating clamping block. Under the action of an adjusting motor, a first adjusting moving block can move up and down along a height moving adjusting rod on a height adjusting fixed block, so that an angle adjusting connecting plate connected with the first adjusting moving block can move up and down; and thus, a second adjusting moving block connected with the other end of the angle adjusting connecting plate is driven to move left and right along the angle moving adjustment, so that the photovoltaic module positioned above the manual telescopic supporting bracket can just conveniently change the mounting pitch angle and azimuth angle, and both the photovoltaic module and the manual telescopic supporting bracket can exert relatively high power generation efficiency.
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Description

Technical Field

[0001] The utility model relates to the field of photovoltaic power generation, in particular to a mobile photovoltaic power generation device. Background Art

[0002] With the rapid consumption of fossil energy and the resulting increasingly severe energy crisis and environmental pollution, countries around the world have been actively looking for and developing new, clean, renewable energy in recent years. Solar energy is inexhaustible, clean and safe, and is an ideal renewable energy source. Solar photovoltaic power generation is of great significance for alleviating the energy crisis and reducing environmental pollution, and has broad application prospects.

[0003] Existing solar power generation systems are all large-scale equipment, including controllers, inverters, batteries and panels. They convert solar light energy into direct current in the panels, and then convert the direct current into alternating current, which can be connected to the power grid or used directly for lighting. However, since the equipment is relatively large, it is basically fixed in a certain place and cannot be moved, which is very inconvenient, especially for field operations or mobile residents.

[0004] Therefore, it has broad market prospects to produce a mobile photovoltaic power generation device which has a simple structure, is easy to move, and uses mobile solar energy to generate electricity, which is suitable for field operations and mobile living. Summary of the invention

[0005] In view of the deficiencies in the prior art, the utility model provides a mobile photovoltaic power generation device which has a simple structure, is easy to move, and utilizes mobile solar energy to generate electricity, which is suitable for field operations and mobile living, and is used to overcome the defects in the prior art.

[0006] The technical solution adopted by the utility model is as follows: a mobile photovoltaic power generation device, including a mobile support base, on the top surface of the mobile support base is provided a manual telescopic support bracket, above the manual telescopic support bracket is provided a photovoltaic module, on one side of the bottom surface of the photovoltaic module is provided a rotating block, on the other side of the bottom surface of the photovoltaic module is provided an angle adjustment fixing block, the angle adjustment fixing block adopts an inverted "U"-shaped block structure, between the notches of the angle adjustment fixing block is connected an angle moving adjustment rod, on the outer wall of the angle moving adjustment rod is sleeved a second adjustment moving block, on both sides of the bottom surface of the second adjustment moving block are provided second rotating clamping blocks, on the top surface of the manual telescopic support bracket is provided a support rod, on the top surface of the support rod is provided a support rod top seat, on both sides of the top surface of the support rod top seat are provided first rotating clamping blocks, outside the first rotating clamping blocks are provided first rotating connection bolts, the rotating block is sleeved between the two first rotating clamping blocks through the first rotating connection bolts, on the outer side of the side wall of the manual telescopic support bracket is provided a height adjustment fixing block, the height adjustment fixing block adopts a "U"-shaped block structure placed sideways, between the notches of the height adjustment fixing block is connected a height moving adjustment rod, at both ends of the side wall of the notch of the height adjustment fixing block are provided fixed collar rings, the height adjustment fixing block is sleeved on the outer wall of the bottom end of the manual telescopic support bracket through the two fixed collar rings, on the side wall of the height adjustment fixing block is provided a moving block through hole, inside the moving block through hole is sleeved a first adjustment moving block, one end of the first adjustment moving block is connected with the height moving adjustment rod, outside the height adjustment fixing block is provided an angle adjustment connecting plate, outside the bottom end of the angle adjustment connecting plate is provided a second rotating connection bolt, the bottom end of the angle adjustment connecting plate is connected with the other end of the first adjustment moving block through the second rotating connection bolt, outside the top end of the angle adjustment connecting plate is provided a third rotating connection bolt, the top end of the angle adjustment connecting plate is sleeved between the two second rotating clamping blocks through the third rotating connection bolt, on the outer side of the bottom surface of the mobile support base are provided universal wheels, on the universal wheels are sleeved wheel brackets, the universal wheels are connected with the bottom surface of the mobile support base through the wheel brackets.

[0007] The mobile support base adopts a cylindrical block structure, the manual telescopic support bracket is arranged in the middle of the top surface of the mobile support base, and on the side wall of the manual telescopic support bracket is provided a height adjustment screw block.

[0008] On the top surface of the height adjustment fixing block is provided an adjustment motor, and the output end of the adjustment motor is connected with the top end of the height moving adjustment rod.

[0009] The angle adjustment connecting plate is connected with the second adjustment moving block through the cooperation between the third rotating connection bolt and the second rotating clamping block.

[0010] The number of the universal wheels is four, the number of the wheel brackets is consistent with the number of the universal wheels, and the included angle between two adjacent universal wheels and the center point of the bottom surface of the mobile support base is 90 degrees.

[0011] The beneficial effects of the utility model are as follows: firstly, the utility model can manually adjust the height of the manual telescopic support bracket through the manual telescopic support bracket and the height adjustment screw block on the manual telescopic support bracket, and can manually adjust the height of the manual telescopic support bracket through the angle adjustment fixed block, angle movement adjustment, height adjustment fixed block, adjustment motor, height movement adjustment rod, first adjustment moving block, angle adjustment connecting plate, second adjustment moving block, and second rotating block, under the action of the adjustment motor, the first adjustment moving block can be moved up and down along the height movement adjustment rod on the height adjustment fixed block, and the angle adjustment connecting plate connected to the first adjustment moving block can be moved up and down under the driving force, and the second adjustment moving block connected to the other end of the angle adjustment connecting plate can be driven to move left and right along the angle movement adjustment under the driven principle, so that the photovoltaic component located above the manual telescopic support bracket can just be conveniently changed in the installation pitch angle and azimuth angle, and can play a higher power generation efficiency, and the utility model can move its equipment through the universal pulley, so that it can better play a higher power generation efficiency of its photovoltaic component, and has simple structure, convenient operation and ingenious design. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 It is a schematic diagram of the overall three-dimensional structure of the utility model.

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

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

[0015] In the figure: 1-mobile support base, 2-manual telescopic support bracket, 3-photovoltaic module, 4-support rod, 5-support rod top seat, 6-first rotating block, 7-rotating block, 8-angle adjustment fixed block, 9-angle movable adjustment rod, 10-height adjustment fixed block, 11-fixed collar, 12-adjustment motor, 13-height movable adjustment rod, 14-first adjustment movable block, 15-angle adjustment connecting plate, 16-second adjustment movable block, 17-second rotating block, 18-first rotating connecting bolt, 19-second rotating connecting bolt, 20-third rotating connecting bolt, 21-pulley bracket, 22-universal pulley. DETAILED DESCRIPTION

[0016] In the description of the present application, it should be understood that the terms "upper", "lower", "top", "bottom", "inside", "outside", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present application. The terms "first", "second", "third", etc. mentioned in the present application are used to distinguish the objects being described and do not have any order or technical meaning. The terms "connection" mentioned in the present application, unless otherwise specified, include direct and indirect connections.

[0017] like Figure 1 , 2As shown in FIGS. 3, a mobile photovoltaic power generation device includes a mobile support base 1. On the top surface of the mobile support base 1, a manual telescopic support bracket 2 is provided. Above the manual telescopic support bracket 2, a photovoltaic module 3 is provided. On one side of the bottom surface of the photovoltaic module 3, a rotating block 7 is provided. On the other side of the bottom surface of the photovoltaic module 3, an angle adjustment fixing block 8 is provided. The angle adjustment fixing block 8 adopts an inverted "U"-shaped block structure. Between the notches of the angle adjustment fixing block 8, an angle movement adjustment rod 9 is connected. A second adjustment moving block 16 is sleeved on the outer wall of the angle movement adjustment rod 9. On both sides of the bottom surface of the second adjustment moving block 16, second rotating clamping blocks 17 are provided. On the top surface of the manual telescopic support bracket 2, there is a support rod 4. On the top surface of the support rod 4, a support rod top seat 5 is provided. On both sides of the top surface of the support rod top seat 5, first rotating clamping blocks 6 are provided. Outside the first rotating clamping blocks 6, first rotating connection bolts 18 are provided. The rotating block 7 is sleeved between the two first rotating clamping blocks 6 through the first rotating connection bolts 18. Outside the side wall of the manual telescopic support bracket 2, a height adjustment fixing block 10 is provided. The height adjustment fixing block 10 adopts a "U"-shaped block structure placed sideways. Between the notches of the height adjustment fixing block 10, a height movement adjustment rod 13 is connected. At both ends of the side wall of the notch of the height adjustment fixing block 10, fixed collar rings 11 are provided. The height adjustment fixing block 10 is sleeved on the outer wall of the bottom end of the manual telescopic support bracket 2 through the two fixed collar rings 11. On the side wall of the height adjustment fixing block 10, a moving block through hole is opened. Inside the moving block through hole, a first adjustment moving block 14 is sleeved. One end of the first adjustment moving block 14 is connected to the height movement adjustment rod 13. Outside the height adjustment fixing block 10, an angle adjustment connecting plate 15 is provided. Outside the bottom end of the angle adjustment connecting plate 15, a second rotating connection bolt 19 is provided. The bottom end of the angle adjustment connecting plate 15 is connected to the other end of the first adjustment moving block 14 through the second rotating connection bolt 19. Outside the top end of the angle adjustment connecting plate 15, a third rotating connection bolt 20 is provided. The top end of the angle adjustment connecting plate 15 is sleeved between the two second rotating clamping blocks 17 through the third rotating connection bolts 20. Outside the bottom surface of the mobile support base 1, universal wheels 22 are provided. On the universal wheels 22, a pulley bracket 21 is sleeved. The universal wheels 22 are connected to the bottom surface of the mobile support base 1 through the pulley bracket 21; the mobile support base 1 adopts a cylindrical block structure. The manual telescopic support bracket 2 is arranged in the middle of the top surface of the mobile support base 1. On the side wall of the manual telescopic support bracket 2, a height adjustment screw block is provided; on the top surface of the height adjustment fixing block 10, an adjustment motor 12 is provided. The output end of the adjustment motor 12 is connected to the top end of the height movement adjustment rod 13; at both ends of the height adjustment fixing block 10, rotation through holes are opened. Inside the rotation through holes, rotation bearings are provided. The two ends of the height movement adjustment rod 13 are respectively sleeved inside the two rotation bearings. The structure of the angle adjustment fixing block 8 is the same as that of the height adjustment fixing block 10. The two ends of the angle movement adjustment rod 9 are respectively sleeved inside the two rotation bearings;The angle adjustment connecting plate 15 is connected to the second adjustment moving block 16 through the cooperation between the third rotating connecting bolt 20 and the second rotating clamping block 17; the number of the universal pulleys 22 is four, the number of the pulley brackets 21 matches the number of the universal pulleys 22, and the angle between the two adjacent universal pulleys 22 and the center point of the bottom surface of the movable support base 1 is 90 degrees. By setting the manual telescopic support bracket 2 and the height adjustment screw on the manual telescopic support bracket 2, the height of the manual telescopic support bracket 2 can be manually adjusted, and the angle adjustment fixed block 8, angle movement adjustment 9, height adjustment fixed block 10, adjustment motor 12, height movement adjustment rod 13, first adjustment moving block 14, angle adjustment connecting plate 15, second adjustment moving block 16, The second rotating block 17 can, under the action of the adjusting motor 12, make the first adjusting movable block 14 move up and down along the height movable adjusting rod 13 on the height adjusting fixed block 10, and under the driving force, make the angle adjusting connecting plate 15 connected to the first adjusting movable block 14 move up and down, and under the driven principle, the second adjusting movable block 16 connected to the other end of the angle adjusting connecting plate 15 is also driven to move left and right along the angle movable adjusting 9, so that the photovoltaic assembly 3 located above the manual telescopic support bracket 2 can just be conveniently changed to install the pitch angle and azimuth angle, and can play a higher power generation efficiency. Through the universal pulley 22, the equipment can be moved, so that the photovoltaic assembly 3 can better play a higher power generation efficiency. ;

[0018] The method of using this product is as follows: Figure 1 , 2 As shown in Figure 3, by setting the universal pulley 22, the equipment can be moved, so that the photovoltaic assembly 3 can better exert a higher power generation efficiency. By setting the manual telescopic support bracket 2 and the height adjustment screw block on the manual telescopic support bracket 2, the height of the manual telescopic support bracket 2 can be manually adjusted. By setting the angle adjustment fixed block 8, the angle movement adjustment 9, the height adjustment fixed block 10, the adjustment motor 12, the height movement adjustment rod 13, the first adjustment movement block 14, the angle adjustment connecting plate 15, the second adjustment movement block 16, and the second rotating block 17, the height of the manual telescopic support bracket 2 can be manually adjusted. Under the action of the energy-saving motor 12, the first adjustment moving block 14 moves up and down along the height adjustment rod 13 on the height adjustment fixed block 10, and driven by the force, the angle adjustment connecting plate 15 connected to the first adjustment moving block 14 moves up and down, and under the driven principle, the second adjustment moving block 16 connected to the other end of the angle adjustment connecting plate 15 is also driven to move left and right along the angle adjustment 9, so that the photovoltaic component 3 located above the manual telescopic support bracket 2 can conveniently change the installation pitch angle and azimuth angle, and can exert a higher power generation efficiency.

[0019] The utility model has a simple structure, is easy to move, and utilizes mobile solar energy to generate electricity, which is suitable for field operations and mobile living. The utility model has a broad market prospect.

Claims

1. A mobile photovoltaic power generation device, comprising a mobile support base (1), characterized in that: On the top surface of the described movable support base (1), there is a manually telescopic support bracket (2). Above the manually telescopic support bracket (2), there is a photovoltaic module (3). On one side of the bottom surface of the photovoltaic module (3), there is a rotating block (7). On the other side of the bottom surface of the photovoltaic module (3), there is an angle adjustment fixing block (8). The angle adjustment fixing block (8) adopts an inverted "U"-shaped block structure. Between the notches of the angle adjustment fixing block (8), there is an angle movement adjustment rod (9). A second adjustment moving block (16) is sleeved on the outer wall of the angle movement adjustment rod (9). On both sides of the bottom surface of the second adjustment moving block (16), there are second rotating clamping blocks (17). On the top surface of the described manually telescopic support bracket (2), there is a support rod (4). On the top surface of the support rod (4), there is a support rod top seat (5). On both sides of the top surface of the support rod top seat (5), there are first rotating clamping blocks (6). Outside the first rotating clamping blocks (6), there are first rotating connection bolts (18). The rotating block (7) is sleeved between the two first rotating clamping blocks (6) through the first rotating connection bolts (18). Outside the side wall of the manually telescopic support bracket (2), there is a height adjustment fixing block (10). The height adjustment fixing block (10) adopts a laterally placed "U"-shaped block structure. Between the notches of the height adjustment fixing block (10), there is a height movement adjustment rod (13). At both ends of the side wall of the notch of the height adjustment fixing block (10), there are fixed collar rings (11). The height adjustment fixing block (10) is sleeved on the outer wall of the bottom end of the manually telescopic support bracket (2) through the two fixed collar rings (11). On the side wall of the height adjustment fixing block (10), there is a moving block through hole. Inside the moving block through hole, there is a first adjustment moving block (14). One end of the first adjustment moving block (14) is connected to the height movement adjustment rod (13). Outside the height adjustment fixing block (10), there is an angle adjustment connecting plate (15). Outside the bottom end of the angle adjustment connecting plate (15), there is a second rotating connection bolt (19). The bottom end of the angle adjustment connecting plate (15) is connected to the other end of the first adjustment moving block (14) through the second rotating connection bolt (19). Outside the top end of the angle adjustment connecting plate (15), there is a third rotating connection bolt (20). The top end of the angle adjustment connecting plate (15) is sleeved between the two second rotating clamping blocks (17) through the third rotating connection bolt (20). Outside the bottom surface of the described movable support base (1), there are universal wheels (22). A pulley bracket (21) is sleeved on the universal wheels (22). The universal wheels (22) are connected to the bottom surface of the movable support base (1) through the pulley bracket (21).

2. The mobile photovoltaic power generation device according to claim 1, characterized in that: The described movable support base (1) adopts a cylindrical block structure. The manually telescopic support bracket (2) is arranged in the middle of the top surface of the movable support base (1). On the side wall of the manually telescopic support bracket (2), there is a height adjustment screw block.

3. The mobile photovoltaic power generation device according to claim 1, characterized in that: On the top surface of the described height adjustment fixing block (10), there is an adjustment motor (12). The output end of the adjustment motor (12) is connected to the top end of the height movement adjustment rod (13).

4. The mobile photovoltaic power generation device according to claim 1, characterized in that: The angle adjustment connecting plate (15) is connected to the second adjustment moving block (16) through the cooperation between the third rotating connecting bolt (20) and the second rotating clamping block (17).

5. The mobile photovoltaic power generation device according to claim 1, characterized in that: The number of the universal pulleys (22) is four, the number of the pulley brackets (21) matches the number of the universal pulleys (22), and the angle between two adjacent universal pulleys (22) and the center point of the bottom surface of the movable support base (1) is 90 degrees.