Adjustable new energy solar power generation device

By introducing the coordinated adjustment of electric telescopic rods, hydraulic blocks and reflector components into the photovoltaic power generation device, the problem of reducing the light area of the photovoltaic panel is solved, efficient power generation of the photovoltaic panel is achieved, and impurities are removed through automatic cleaning components, improving power generation efficiency.

CN120342303APending Publication Date: 2025-07-18ZHONGSHAN CHUANGHUA NEW ENERGY TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510817627.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-18
Publication Date
2025-07-18

AI Technical Summary

Technical Problem

When existing photovoltaic power generation devices are in use, the flip of the reflector leads to a reduction in the area of the photovoltaic panels receiving light, resulting in waste of resources and affecting the power generation efficiency.

Method used

By designing an adjustable new energy solar power generation device, the combination of electric telescopic rods, hydraulic blocks, gears and mirror components can realize the angle adjustment of the photovoltaic panels and mirrors, increase the light area of the photovoltaic panels, and remove impurities on the transparent guard plates through automatic cleaning components to ensure direct sunlight.

Benefits of technology

It improves the light area and power generation efficiency of photovoltaic panels, reduces resource waste, and improves the power generation performance of equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an adjustable new energy solar power generation device, and relates to the technical field of wind power generation. The adjustable new energy solar power generation device comprises a first fixing frame, and the bottom of the first fixing frame is fixedly connected with a bottom plate; the top of the bottom plate is fixedly connected with a first hydraulic block, the top of the rear side of the bottom plate is fixedly connected with a second hydraulic block, the top of the first hydraulic block is movably connected with a first push block, the top of the second hydraulic block is movably connected with a second push block, the first hydraulic block is fixedly connected with a third hydraulic block through a first hose, and the second hydraulic block is fixedly connected with the third hydraulic block through a second hose. The bottom of the third hydraulic block is movably connected with a first rack, the bottom of the protection plate frame is rotationally connected with the upper reflective mirror through a first rotating shaft, and first gears are fixedly connected to the two sides of the first rotating shaft and engaged with the first rack. When the adjustable new energy solar power generation device is used, oblique sunlight is gathered to the photovoltaic panel through overturning of the upper reflective mirror, and the power generation efficiency of the device is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of solar photovoltaic power generation, and specifically provides an adjustable new energy solar power generation device. Background Art

[0002] Photovoltaic power generation is based on the principle of the photovoltaic effect, using solar cells to directly convert solar energy into electrical energy. Whether used independently or grid-connected, a photovoltaic power generation system mainly consists of three major components: solar panels, a controller, and an inverter. They are mainly composed of electronic components and do not involve mechanical parts. Therefore, photovoltaic power generation equipment is extremely refined, reliable, has a long lifespan, and is easy to install and maintain. Photovoltaic power generation technology can be used from spacecraft to household power supplies, from megawatt-level power stations to toys. Photovoltaic power sources can be everywhere.

[0003] The Chinese patent CN110120779A authorized and announced on August 13, 2019, discloses an adjustable new energy solar power generation device, which includes a base and a power generation base installed above it. A movable flip cover is arranged above the base. A hydraulic pump is installed inside the base, and two parallel side support columns and two parallel vertical columns are welded to the top of the base. A buckle is arranged at the top of each of the two side support columns. In the above application document, when the device is in use, the reflector under the flip cover rotates, and the light is refracted along a Z-shaped line onto the photovoltaic panel, reducing the area of light received by the photovoltaic panel and causing a certain amount of resource waste. Summary of the Invention

[0004] In view of the deficiencies of the prior art, the present invention provides an adjustable new energy solar power generation device, which solves the problems raised in the above background art. To achieve the above objectives, the present invention is realized through the following technical solutions: An adjustable new energy solar power generation device includes: Fixing bracket 1, the top of the fixing bracket 1 is rotatably connected to the fixing bracket 2 through the rotating shaft 1, the bottom of the fixing bracket 1 is fixedly connected to the bottom plate, the bottom of the fixing bracket 2 is movably connected to the telescopic rod, the top of the fixing bracket 2 is fixedly connected to the guard plate frame, and a transparent guard plate installation groove is opened in the middle of the guard plate frame; the top of the front side of the bottom plate is fixedly connected to the hydraulic block 1, the top of the rear side of the bottom plate is fixedly connected to the hydraulic block 2, the top of the hydraulic block 1 is movably connected to the push block 1, the top of the hydraulic block 2 is movably connected to the push block 2, the side of the hydraulic block 1 is fixedly connected to one end of the hose 1, the side of the hydraulic block 2 is fixedly connected to one end of the hose 2, the other end of the hose 1 is fixedly connected to the front hydraulic block 3, the other end of the hose 2 is fixedly connected to the rear hydraulic block 3, the bottom of the hydraulic block 3 is movably connected to the rack 1, the bottom of the guard plate frame is rotatably connected to the upper reflecting mirror through the rotating shaft 1, and two gears 1 are fixedly connected to both sides of the rotating shaft 1, and the gear 1 meshes with the rack 1. Through the setting of the upper reflecting mirror and the transparent guard plate installation groove, the sunlight irradiated on the top of the guard plate frame is refracted by the upper reflecting mirror to the photovoltaic panel, thereby increasing the irradiation area when the photovoltaic panel is irradiated by the inclined sunlight and improving the power generation efficiency of the device.

[0005] Preferably, an electric telescopic rod 1 is fixedly connected to the top of the bottom plate, an electric telescopic rod 2 is fixedly connected to the top of the bottom plate, an electric telescopic rod 3 is fixedly connected to the top of the bottom plate, an electric telescopic rod 4 is fixedly connected to the top of the bottom plate, the electric telescopic rod 1, the electric telescopic rod 2, the electric telescopic rod 3, and the electric telescopic rod 4 are circumferentially distributed about the center of the bottom plate, and the top of the electric telescopic rod 1 is movably connected to the photovoltaic panel.

[0006] Preferably, the hydraulic block 1 and the hydraulic block 2 are symmetrically distributed about the midline of the bottom plate, the number of the hydraulic blocks 3 is four, every two hydraulic blocks 3 are a group, and each group of hydraulic blocks 3 is symmetrically distributed about the midline of the guard plate frame. The number of the racks 1 is four, every two racks 1 are a group, and the number of the gears 1 is four, every two gears 1 are a group.

[0007] Preferably, the upper reflecting mirror is rotatably connected to the lower reflecting mirror deflection assembly through the rotating groove opened at the bottom thereof, and an automatic cleaning assembly is movably connected to the top of the guard plate frame.

[0008] Preferably, the lower mirror deflection assembly includes a lower mirror, a rope reel, a connecting rope, a second rack, a second gear, a sliding groove, and a spring. The upper mirror is rotatably connected to the lower mirror through a rotating groove opened at the bottom thereof. A second rotating shaft penetrates and is fixedly connected to the inside of the lower mirror. Second gears are fixedly connected to both sides of the second rotating shaft. Rope reels are fixedly connected to both sides of the first rotating shaft. The connecting rope is fixedly connected to the bottom of the rope reel. The second rack is fixedly connected to the bottom of the connecting rope. The second rack meshes with the second gear. Sliding grooves are opened on both side surfaces of the upper mirror. The second rack is slidably connected to the sliding groove through a slider fixedly connected to the bottom thereof. A spring is fixedly connected between the bottom of the sliding groove and the bottom of the slider. Through the setting of the lower mirror deflection assembly, the oblique sunlight on both sides of the guard plate frame can be directly reflected onto the photovoltaic panel by adjusting the angle of the lower mirror, increasing the area of sunlight received by the photovoltaic panel, improving the light concentration ability of the device, and enhancing the power generation efficiency of the device.

[0009] Preferably, the number of the lower mirrors is two, and the two lower mirrors are symmetrically distributed about the midline of the guard plate frame. The number of the rope reels is four, and every two rope reels form a group. The number of the connecting ropes is four, and every two connecting ropes form a group. The number of the second racks is four, and every two second racks form a group. The number of the second gears is four, and every two second gears form a group.

[0010] Preferably, the rope reel is coaxial with the first rotating shaft.

[0011] Preferably, the automatic cleaning assembly includes a third hose, a fourth hydraulic block, a third rack, a third gear, a third rotating shaft, a first fixing block, a reciprocating lead screw, a slider, and a second fixing block. One end of the third hose is fixedly connected to the top of the second hose, and the other end of the third hose is fixedly connected to the fourth hydraulic block. The third rack is movably connected to the inside of the fourth hydraulic block. The bottom of the fourth hydraulic block is fixedly connected to the top of the guard plate frame through a support rod. A first fixing block is fixedly connected to the top of the rear side of the guard plate frame, and a second fixing block is fixedly connected to the top of the front side of the guard plate frame. A reciprocating lead screw is rotatably connected between the first fixing block and the second fixing block through a third rotating shaft. Two sliding blocks are slidably connected to the outer side of the reciprocating lead screw. A rotary brush is rotatably connected between each pair of sliding blocks through a third rotating shaft. Through the setting of the automatic cleaning assembly, the excrement generated by flying birds on the surface of the transparent guard plate is removed, the area of sunlight directly irradiating on the photovoltaic panel is increased, and the power generation efficiency of the device is improved.

[0012] Preferably, the number of the third hoses is two, and the two third hoses are symmetrically distributed about the midline of the guard plate frame. The number of the fourth hydraulic blocks is two, and the two fourth hydraulic blocks are symmetrically distributed about the midline of the guard plate frame. The number of the third racks is two, the number of the third gears is two, and the number of the reciprocating lead screws is two.

[0013] Preferably, the interior of the third hose communicates with the interior of the fourth hydraulic block, and the interior of the third hose communicates with the interior of the second hose.

[0014] The present invention provides an adjustable new energy solar power generation device, which has the following beneficial effects: (1) For the adjustable new energy solar power generation device, adjust the first electric telescopic rod, the second electric telescopic rod, the third electric telescopic rod, and the fourth electric telescopic rod to deflect the angle of the photovoltaic panel. In cooperation with the first hydraulic block, the second hydraulic block, the first push block, the second push block, the first hose, the second hose, the third hydraulic block, the first rack, the first gear, and the first rotating shaft, the upper reflector follows the photovoltaic panel to deflect the angle, improving the power generation efficiency of the device.

[0015] (2) For the adjustable new energy solar power generation device, when the upper reflector deflects the angle, in cooperation with the rope reel, the connecting rope, the second rack, the second gear, the sliding groove, and the spring, the lower reflector follows the upper reflector to deflect the angle in the opposite direction, preventing the waste of the remaining obliquely incident sunlight and improving the power generation efficiency of the device.

[0016] (3) For the adjustable new energy solar power generation device, when the upper reflector deflects the angle, in cooperation with the third hose, the fourth hydraulic block, the third rack, the third gear, the third rotating shaft, the reciprocating lead screw, and the sliding block, the rolling brush reciprocates on the surface of the transparent guard plate, removing the excrement of flying birds on the surface of the transparent guard plate, so as not to affect the direct sunlight on the photovoltaic panel. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a three-dimensional structure diagram of the overall appearance of the present invention; Figure 2 is a three-dimensional structure diagram of the overall sectional view of the present invention; Figure 3 is of the present invention Figure 2 the enlarged structure diagram at A in Figure 4 is a three-dimensional structure diagram of some components of the present invention; Figure 5 is a structure diagram of the lower reflector deflection assembly of the present invention; Figure 6 is of the present invention Figure 5 the enlarged structure diagram at B in Figure 7 is a structure diagram of the automatic cleaning assembly of the present invention; Figure 8 For the present invention Figure 7 is a schematic enlarged view of the structure at position C in the present invention.

[0018] In the figure: 100, the first fixing frame; 200, the second fixing frame; 300, the telescopic rod; 400, the first electric telescopic rod; 500, the second electric telescopic rod; 600, the third electric telescopic rod; 700, the fourth electric telescopic rod; 800, the transparent guard plate mounting groove; 900, the guard plate frame 1001, the first hydraulic block; 1002, the first push block; 1003, the second hydraulic block; 1004, the second push block; 1005, the first hose; 1006, the second hose; 1007, the third hydraulic block; 1008, the first rack; 1009, the first gear; 1010, the first rotating shaft; 1011, the upper reflector 1100, the lower reflector deflection assembly; 1101, the lower reflector; 1102, the rope reel; 1103, the connecting rope; 1104, the second rack; 1105, the second gear; 1106, the sliding groove; 1107, the spring 1200, the automatic cleaning assembly; 1201, the third hose; 1202, the fourth hydraulic block; 1203, the third rack; 1204, the third gear; 1205, the third rotating shaft; 1206, the first fixing block; 1207, the reciprocating lead screw; 1208, the sliding block; 1209, the second fixing block; 1210, the rotary brush. Specific embodiments

[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments.

[0020] Example 1, please refer to Figures 1-4 , an adjustable new energy solar power generation device, comprising: Fixing frame 1 - 100, the top of the fixing frame 1 - 100 is rotationally connected to the fixing frame 2 - 200 through a first rotating shaft. The fixing frame 2 - 200 is provided so that the guard plate frame 900 can be flipped to directly above the photovoltaic panel, thereby achieving the function of protecting the photovoltaic panel. The bottom of the fixing frame 1 - 100 is fixedly connected to the bottom plate. The top of the bottom plate is fixedly connected to a first electric telescopic rod 400, the top of the bottom plate is fixedly connected to a second electric telescopic rod 500, the top of the bottom plate is fixedly connected to a third electric telescopic rod 600, and the top of the bottom plate is fixedly connected to a fourth electric telescopic rod 700. The first electric telescopic rod 400, the second electric telescopic rod 500, the third electric telescopic rod 600, and the fourth electric telescopic rod 700 are circumferentially distributed about the center of the bottom plate. The top of the first electric telescopic rod 400 is movably connected to the photovoltaic panel. The bottom of the fixing frame 2 - 200 is movably connected to a telescopic rod 300. The telescopic rod 300 is provided to provide support when the fixing frame 2 - 200 drives the guard plate frame 900 to flip. The top of the fixing frame 2 - 200 is fixedly connected to the guard plate frame 900. A transparent guard plate installation groove 800 is formed in the middle of the guard plate frame 900. The transparent guard plate installation groove 800 is provided so that a transparent guard plate can be installed at the center of the top of the guard plate frame 900, thereby achieving the purpose of protecting the photovoltaic panel without affecting the photovoltaic panel's sunlight reception;At the top of the front side of the bottom plate, a first hydraulic block 1001 is fixedly connected. At the top of the rear side of the bottom plate, a second hydraulic block 1003 is fixedly connected. At the top of the first hydraulic block 1001, a first push block 1002 is movably connected. At the top of the second hydraulic block 1003, a second push block 1004 is movably connected. On the side of the first hydraulic block 1001, one end of a first hose 1005 is fixedly connected. On the side of the second hydraulic block 1003, one end of a second hose 1006 is fixedly connected. The other end of the first hose 1005 is fixedly connected to a third hydraulic block 1007 on the front side. The other end of the second hose 1006 is fixedly connected to a third hydraulic block 1007 on the rear side. By providing the first hose 1005, the pressure inside the first hydraulic block 1001 is transmitted to the inside of the third hydraulic block 1007 on the front side. By providing the second hose 1006, the pressure inside the second hydraulic block 1003 is transmitted to the inside of the third hydraulic block 1007 on the rear side. At the bottom of the third hydraulic block 1007, a first rack 1008 is movably connected. At the bottom of the guard plate frame 900, the upper reflector 1011 is rotatably connected to the first rotating shaft 1010. The upper reflector 1011 is rotatably connected to the lower reflector deflection assembly 1100 through a rotating groove opened at its bottom. At the top of the guard plate frame 900, an automatic cleaning assembly 1200 is movably connected. On both sides of the first rotating shaft 1010, a first gear 1009 is fixedly connected. The first gear 1009 meshes with the first rack 1008. The first hydraulic block 1001 and the second hydraulic block 1003 are symmetrically distributed about the midline of the bottom plate. The number of the third hydraulic blocks 1007 is four. Every two third hydraulic blocks 1007 form a group, and each group of the third hydraulic blocks 1007 is symmetrically distributed about the midline of the guard plate frame 900. The number of the first racks 1008 is four. Every two first racks 1008 form a group. The number of the first gears 1009 is four. Every two first gears 1009 form a group. Through the arrangement of the upper reflector 1011 and the transparent guard plate installation groove 800, the sunlight irradiated on the top of the guard plate frame 900 is refracted by the upper reflector 1011 onto the photovoltaic panel, thereby increasing the irradiation area when the photovoltaic panel is irradiated by the inclined sunlight and improving the power generation efficiency of the device.;

[0021] During use, when the device starts to work, rotate the second fixing frame 200 to make the guard plate frame 900 cover directly above the photovoltaic panel. When the sunlight is inclined, start the first electric telescopic rod 400, the second electric telescopic rod 500, the third electric telescopic rod 600, and the fourth electric telescopic rod 700 to change the angle of the photovoltaic panel. At this time, the first push block 1002 at the bottom of the photovoltaic panel moves downward, compressing the first hydraulic block 1001. The pressure inside the first hydraulic block 1001 is transmitted through the second hose 1006 to the two third hydraulic blocks 1007 on the front side, compressing the two third hydraulic blocks 1007 on the front side. The two first racks 1008 on the front side move downward, causing the two first gears 1009 on the front side to rotate, rotating the upper reflector 1011 on the front side, and reflecting the inclined sunlight onto the photovoltaic panel, thereby improving the power generation efficiency of the device.

[0022] Example 2, please refer toFigures 1-6 , on the basis of the first embodiment, the lower mirror deflection assembly 1100 includes a lower mirror 1101, a rope reel 1102, a connecting rope 1103, a second rack 1104, a second gear 1105, a sliding groove 1106, and a spring 1107. The upper mirror 1011 is rotatably connected to the lower mirror 1101 through a rotating groove opened at the bottom thereof. The lower mirror 1101 is provided to further reflect the sunlight at an inclined angle onto the photovoltaic panel through the lower mirror 1101, so as to gather the sunlight at different angles and increase the power generation efficiency of the device. The number of the lower mirrors 1101 is two, and the two lower mirrors 1101 are symmetrically distributed about the midline of the guard plate frame 900. The number of the rope reels 1102 is four, with every two rope reels 1102 as a group. The number of the connecting ropes 1103 is four, with every two connecting ropes 1103 as a group. The number of the second racks 1104 is four, with every two second racks 1104 as a group. The number of the second gears 1105 is four, with every two second gears 1105 as a group. A second rotating shaft penetrates through and is fixedly connected to the inside of the lower mirror 1101, and the second gears 1105 are fixedly connected to both sides of the second rotating shaft. The rope reels 1102 are fixedly connected to both sides of the first rotating shaft 1010. The connecting ropes 1103 are fixedly connected to the bottoms of the rope reels 1102. The rope reels 1102 are provided to enable the up and down movement of the second rack 1104 to be controlled by the length of the connecting rope 1103. The rope reels 1102 are coaxial with the first rotating shaft 1010. The connecting ropes 1103 are fixedly connected to the bottoms of the second racks 1104. The second racks 1104 are engaged with the second gears 1105. Sliding grooves 1106 are opened on both side surfaces of the upper mirror 1011. The second racks 1104 are slidably connected to the sliding grooves 1106 through sliders fixedly connected to the bottoms thereof. A spring 1107 is fixedly connected between the bottom of the sliding groove 1106 and the bottom of the slider. The spring 1107 is provided to keep the connecting rope 1103 in a taut state under the action of being stretched, so that the up and down movement of the second rack 1104 can be controlled by the connecting rope 1103. Through the setting of the lower mirror deflection assembly 1100, the oblique sunlight on both sides of the guard plate frame 900 can be directly reflected onto the photovoltaic panel by the lower mirror 1101 through angle adjustment, increasing the sunlight receiving area of the photovoltaic panel, enhancing the light gathering ability of the device, and improving the power generation efficiency of the device.

[0023] In use, based on the first embodiment, when the upper rearview mirror 1011 rotates, the first rotating shaft 1010 also rotates following the upper rearview mirror 1011, causing the rope winder 1102 to rotate. As a result, the connecting rope 1103 is wound into the rope winder 1102, causing the second rack 1104 to move upward along the direction of the sliding groove 1106, stretching the spring 1107, and causing the second gear 1105 to rotate. Consequently, the lower rearview mirror 1101 rotates, enabling the oblique sunlight on both sides of the guard plate frame 900 to be directly reflected onto the photovoltaic panel by adjusting the angle through the lower rearview mirror 1101. This increases the sunlight-receiving area of the photovoltaic panel, enhances the light-concentrating ability of the device, and improves the power generation efficiency of the device.

[0024] Example three, please refer to Figures 1-8 , based on the first and second embodiments, the automatic cleaning assembly 1200 includes a third hose 1201, a fourth hydraulic block 1202, a third rack 1203, a third gear 1204, a third rotating shaft 1205, a first fixing block 1206, a reciprocating lead screw 1207, a sliding block 1208, and a second fixing block 1209. One end of the third hose 1201 is fixedly connected to the top of the second hose 1006, and the other end of the third hose 1201 is fixedly connected to the fourth hydraulic block 1202. The third hose 1201 is provided to communicate the inside of the second hose 1006 with the inside of the fourth hydraulic block 1202. The third rack 1203 is movably connected to the inner side of the fourth hydraulic block 1202, and the bottom of the fourth hydraulic block 1202 is fixedly connected to the top of the guard plate frame 900 through a support rod. The first fixing block 1206 is fixedly connected to the top of the rear side of the guard plate frame 900, and the second fixing block 1209 is fixedly connected to the top of the front side of the guard plate frame 900. A reciprocating lead screw 1207 is rotatably connected between the first fixing block 1206 and the second fixing block 1209 through the third rotating shaft 1205. Two sliding blocks 1208 are slidably connected to the outer side of the reciprocating lead screw 1207. A rotary brush 1210 is rotatably connected between each pair of sliding blocks 1208 through a third rotating shaft. The rotary brush 1210 is provided to remove the excrement produced by flying birds and the dust on the surface of the transparent guard plate, so as not to affect the sunlight-receiving area of the photovoltaic panel. The inside of the third hose 1201 communicates with the inside of the fourth hydraulic block 1202, and the inside of the third hose 1201 communicates with the inside of the second hose 1006. The number of the third hoses 1201 is two, and the two third hoses 1201 are symmetrically distributed about the midline of the guard plate frame 900. The number of the fourth hydraulic blocks 1202 is two, and the two fourth hydraulic blocks 1202 are symmetrically distributed about the midline of the guard plate frame 900. The number of the third racks 1203 is two, the number of the third gears 1204 is two, and the number of the reciprocating lead screws 1207 is two. Through the setting of the automatic cleaning assembly 1200, the excrement produced by flying birds on the surface of the transparent guard plate is removed, increasing the area of sunlight directly irradiating on the photovoltaic panel and improving the power generation efficiency of the device.

[0025] In use, based on the first and second embodiments, when the second hydraulic block 1003 is compressed, the pressure inside the second hydraulic block 1003 is transmitted through the second hose 1006 and the third hose 1201 to the inside of the fourth hydraulic block 1202, causing the fourth hydraulic block 1202 to be compressed, the third rack 1203 to move outwards, the third gear 1204 to rotate, the third rotating shaft 1205 to rotate, the two reciprocating lead screws 1207 to rotate, the sliding block 1208 to reciprocate along the direction of the reciprocating lead screw 1207, and the rotary brush 1210 to reciprocally brush the surface of the transparent guard plate, thereby removing the excrement produced by flying birds on the surface of the transparent guard plate, increasing the area of direct sunlight on the photovoltaic panel, and improving the power generation efficiency of the device.

[0026] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, making equivalent substitutions or changes, should be covered by the protection scope of the present invention.

Claims

1. An adjustable new energy solar power generation device, characterized in that, Including: A first fixing frame, the top of the first fixing frame is rotatably connected to a second fixing frame through a first rotating shaft, the bottom of the first fixing frame is fixedly connected to a bottom plate, the bottom of the second fixing frame is movably connected to a telescopic rod, the top of the second fixing frame is fixedly connected to a guard plate frame, and a transparent guard plate mounting groove is formed in the middle of the guard plate frame; On the front side top of the bottom plate, a first hydraulic block is fixedly connected, on the rear side top of the bottom plate, a second hydraulic block is fixedly connected, on the top of the first hydraulic block, a first pushing block is movably connected, on the top of the second hydraulic block, a second pushing block is movably connected, on the side of the first hydraulic block, one end of a first hose is fixedly connected, on the side of the second hydraulic block, one end of a second hose is fixedly connected, the other end of the first hose is fixedly connected to a third hydraulic block at the front side, the other end of the second hose is fixedly connected to a third hydraulic block at the rear side, on the bottom of the third hydraulic block, a first rack is movably connected, the bottom of the guard plate frame is rotatably connected to an upper reflecting mirror through a first rotating shaft, on both sides of the first rotating shaft, a first gear is fixedly connected, and the first gear meshes with the first rack.

2. The adjustable new energy solar power generation device according to claim 1, characterized in that: On the top of the bottom plate, a first electric telescopic rod is fixedly connected, on the top of the bottom plate, a second electric telescopic rod is fixedly connected, on the top of the bottom plate, a third electric telescopic rod is fixedly connected, on the top of the bottom plate, a fourth electric telescopic rod is fixedly connected, the first electric telescopic rod, the second electric telescopic rod, the third electric telescopic rod, and the fourth electric telescopic rod are circumferentially distributed about the center of the bottom plate, and on the top of the first electric telescopic rod, a photovoltaic panel is movably connected.

3. An adjustable new energy solar power generation device according to claim 1, characterized in that: The first hydraulic block and the second hydraulic block are symmetrically distributed about the midline of the bottom plate, the number of the third hydraulic blocks is four, every two of the third hydraulic blocks are in a group, and each group of the third hydraulic blocks is symmetrically distributed about the midline of the guard plate frame, the number of the first racks is four, every two of the first racks are in a group, and the number of the first gears is four, every two of the first gears are in a group.

4. An adjustable new energy solar power generation device according to claim 1, characterized in that: The upper reflecting mirror is rotatably connected to the lower reflecting mirror deflection assembly through a rotating groove formed at its bottom, and an automatic cleaning assembly is movably connected to the top of the guard plate frame.

5. An adjustable new energy solar power generation device according to claim 4, characterized in that: The lower reflecting mirror deflection assembly includes a lower reflecting mirror, a rope winder, a connecting rope, a second rack, a second gear, a sliding groove, and a spring. The upper reflecting mirror is rotatably connected to the lower reflecting mirror through a rotating groove formed at its bottom. A second rotating shaft is penetrated and fixedly connected inside the lower reflecting mirror. On both sides of the second rotating shaft, a second gear is fixedly connected. On both sides of the first rotating shaft, the rope winder is fixedly connected. The bottom of the rope winder is fixedly connected to the connecting rope. The bottom of the connecting rope is fixedly connected to the second rack. The second rack meshes with the second gear. Sliding grooves are formed on both side surfaces of the upper reflecting mirror. The second rack is slidably connected to the sliding groove through a slider fixedly connected to its bottom. A spring is fixedly connected between the bottom of the sliding groove and the bottom of the slider.

6. An adjustable new energy solar power generation device according to claim 5, characterized in that: The number of the lower rearview mirrors is two, and the two lower rearview mirrors are symmetrically distributed about the midline of the guard plate frame. The number of the rope winders is four, and every two rope winders form a group. The number of the connecting ropes is four, and every two connecting ropes form a group. The number of the second racks is four, and every two second racks form a group. The number of the second gears is four, and every two second gears form a group.

7. An adjustable new energy solar power generation device according to claim 5, characterized in that: The rope winder is coaxial with the rotating shaft.

8. An adjustable new energy solar power generation device according to claim 5, characterized in that: The automatic cleaning assembly includes a third hose, a fourth hydraulic block, a third rack, a third gear, a third rotating shaft, a first fixing block, a reciprocating lead screw, a sliding block, and a second fixing block. One end of the third hose is fixedly connected to the top of the second hose, and the other end of the third hose is fixedly connected to the fourth hydraulic block. The third rack is movably connected to the inside of the fourth hydraulic block. The bottom of the fourth hydraulic block is fixedly connected to the top of the guard plate frame through a support rod. The first fixing block is fixedly connected to the top of the rear side of the guard plate frame, and the second fixing block is fixedly connected to the top of the front side of the guard plate frame. A reciprocating lead screw is rotatably connected between the first fixing block and the second fixing block through the third rotating shaft. Two sliding blocks are slidably connected to the outside of the reciprocating lead screw. A rotary brush is rotatably connected between every two sliding blocks through a third rotating shaft.

9. An adjustable new energy solar power generation device according to claim 8, characterized in that: The number of the third hoses is two, and the two third hoses are symmetrically distributed about the midline of the guard plate frame. The number of the fourth hydraulic blocks is two, and the two fourth hydraulic blocks are symmetrically distributed about the midline of the guard plate frame. The number of the third racks is two, the number of the third gears is two, and the number of the reciprocating lead screws is two.

10. An adjustable new energy solar power generation device according to claim 8, characterized in that: The inside of the third hose is communicated with the inside of the fourth hydraulic block, and the inside of the third hose is communicated with the inside of the second hose.

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