Integrated Photovoltaic Power Generation and Energy Storage Device for Source-Grid-Load-Storage

By designing a source-grid-load-storage integrated photovoltaic energy storage device including a fixed abutment on the top of the mountain and an adjustable photovoltaic energy storage module, the existing equipment has poor fixation effect, limited photovoltaic power generation range and area, low power generation efficiency and insufficient ability to resist natural disasters, and achieve a more efficient and stable photovoltaic energy storage effect.

CN114221605BActive Publication Date: 2025-06-10ZHUJI CITY XINSHENG NEW ENERGY TECH
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Patent Information

Application Number
CN202111551326.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-12-17
Publication Date
2025-06-10
Estimated Expiration
2041-12-17

AI Technical Summary

Technical Problem

The existing integrated source grid load storage photovoltaic energy storage equipment has poor fixing effect on the mountain, limited scope and area of ​​photovoltaic energy storage, low power generation efficiency, and is prone to damage in natural disasters, making its service life difficult to guarantee.

Method used

A source-grid-load-storage integrated photovoltaic power generation and storage device including a fixed abutment on the top of the mountain and an adjustable photovoltaic power generation and storage module is designed. The device uses slope fixing parts to fix the mountain slope fixing frame to the mountain, and uses adjustable photovoltaic power generation and storage components to generate photovoltaic power, and is protected by a sliding expansion protection part in natural disasters.

Benefits of technology

It improves the stability and power generation efficiency of photovoltaic power generation energy storage devices, expands the range and area of ​​photovoltaic power generation energy storage, enhances the equipment's ability to resist natural disasters, and extends its service life.

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Abstract

The present invention belongs to the technical field of integrated source-network-load-storage photovoltaic technology, and particularly relates to a photovoltaic power generation and energy storage device for integrated source-network-load-storage. The present invention includes a fixed base on the top of a mountain, and a plurality of fixed laying frames on the mountain slope are arranged on the fixed base on the top of the mountain. The fixed laying frames on the mountain slope are connected to the fixed base on the top of the mountain through connecting pieces. When in use, the adjustable photovoltaic power generation and energy storage components can be adjusted in angle to face the light source as much as possible. The adjustable photovoltaic power generation and energy storage components are evenly distributed on the mountain slope, with a wide range and a large area, and can make better use of resources for power generation. When natural disasters such as hail and gravel impact occur, the sliding expansion protection part can be unfolded, and the adjustable photovoltaic power generation and energy storage components are protected by the sliding expansion protection part, improving the service life of the adjustable photovoltaic power generation and energy storage components, and having strong practicability.
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Description

Technical Field

[0001] The present invention belongs to the technical field of integrated source-grid-load-storage photovoltaic technology, and relates to a photovoltaic power generation and energy storage device for integrated source-grid-load-storage. Background Art

[0002] The construction of integrated source-grid-load-storage projects - photovoltaic power generation and energy storage devices is one of the important new energy development infrastructures in the country. In vast mountain slopes, a large amount of photovoltaic energy is wasted. During the use of existing integrated source-grid-load-storage photovoltaic power generation and energy storage devices, the fixing effect with the mountain body is relatively average, and the photovoltaic power generation and energy storage range and area are relatively poor. The overall power generation efficiency is relatively average. When natural disasters occur, the photovoltaic power generation equipment is also easily damaged, and the service life is difficult to guarantee.

[0003] In order to overcome the deficiencies of the prior art, people have continuously explored and proposed various solutions. For example, a Chinese patent discloses a multifunctional integrated distributed power supply [Application No.: 202020163788.9], in which a grid power supply, an energy storage module, a photovoltaic power generation module, a wind power generation module, a haze reduction module, and an aviation indicator module are all communicatively connected to a control module. The photovoltaic power generation module and the wind power generation module are both connected to the energy storage module and the grid power supply, and the energy storage module is connected to the grid power supply; the haze reduction module and the aviation indicator module are both electrically connected to the grid power supply, the energy storage module, the photovoltaic power generation module, and the wind power generation module, and the control module is used to switch the grid power supply, the energy storage module, the photovoltaic power generation module, or the wind power generation module to supply power to the haze reduction module and the aviation indicator module, so as to achieve the purpose of being able to use wind energy and solar energy for lighting, electricity storage, and power supply, effectively improving energy utilization efficiency, extending the service life of the battery, reducing power loss, boosting the voltage at the end of the power supply load to improve the power supply quality, and saving grid investment. However, during the use of this solution, it is not suitable for mountain photovoltaic power generation, the fixing effect with the mountain body is relatively average, and the photovoltaic power generation and energy storage range and area are relatively poor. The overall power generation efficiency is relatively average. When natural disasters occur, the photovoltaic power generation equipment is also easily damaged, and there is a defect that the service life is difficult to guarantee. Summary of the Invention

[0004] The purpose of the present invention is to provide a photovoltaic power generation and energy storage device for integrated source-grid-load-storage in view of the above problems.

[0005] To achieve the above object, the present invention adopts the following technical solutions:

[0006] A source-grid-load-storage integrated photovoltaic power generation and energy storage device, including a fixed base on the top of the mountain. There are several fixed laying frames on the mountain slope on the fixed base on the top of the mountain. The fixed laying frames on the mountain slope are connected to the fixed base on the top of the mountain through connecting pieces. An adjustable photovoltaic power generation and energy storage component that can rotate is provided on the fixed laying frames on the mountain slope. A slope fixing part is provided at the bottom of the fixed base on the top of the mountain. A sliding expansion protection part that can move linearly back and forth is provided in the fixed base on the top of the mountain. The position of the sliding expansion protection part corresponds to that of the adjustable photovoltaic power generation and energy storage component. A supporting part is provided below the fixed laying frames on the mountain slope. The position of the supporting part corresponds to that of the sliding expansion protection part.

[0007] In the above-mentioned source-grid-load-storage integrated photovoltaic power generation and energy storage device, the adjustable photovoltaic power generation and energy storage component includes several connecting shaft seats arranged on the fixed laying frames on the mountain slope. A rotatable photovoltaic energy storage panel is provided on the connecting shaft seats. The photovoltaic energy storage panel is connected to the connecting shaft seat through a rotating shaft.

[0008] In the above-mentioned source-grid-load-storage integrated photovoltaic power generation and energy storage device, a connecting extension plate is provided on the photovoltaic energy storage panel. Several panel adjustment driving parts are provided in the fixed laying frames on the mountain slope. The panel adjustment driving parts are connected to the connecting extension plate.

[0009] In the above-mentioned source-grid-load-storage integrated photovoltaic power generation and energy storage device, the panel adjustment driving parts include several first linear drivers arranged in the fixed laying frames on the mountain slope. The power shaft of the first linear driver is connected to the connecting extension plate. A rotating cavity is formed between the photovoltaic energy storage panel and the connecting extension plate. The position of the rotating cavity corresponds to that of the connecting shaft seat.

[0010] In the above-mentioned source-grid-load-storage integrated photovoltaic power generation and energy storage device, the slope fixing part includes several slope fixing insertion rods arranged at the bottom of the fixed laying frames on the mountain slope. The several slope fixing insertion rods are arranged in parallel. A mountain top fixing part is provided at the bottom of the fixed base on the top of the mountain. The position of the mountain top fixing part corresponds to that of the slope fixing insertion rods.

[0011] In the above-mentioned source-grid-load-storage integrated photovoltaic power generation and energy storage device, the mountain top fixing part includes several top fixing insertion rods arranged at the bottom of the fixed base on the top of the mountain. An anti-disengagement block for entering the soil is provided on the top fixing insertion rods.

[0012] In the above-mentioned source-grid-load-storage integrated photovoltaic power generation and energy storage device, the sliding expansion protection part includes several panel protection exhibition board frames arranged in the fixed base on the top of the mountain. A second linear driver is provided in the fixed base on the top of the mountain. The power shaft of the second linear driver is connected to the panel protection exhibition board frame.

[0013] In the above-mentioned integrated power generation, power grid, load and energy storage photovoltaic power generation and energy storage device, the supporting part includes a laying frame supporting base table arranged below the fixed laying frame on the mountain slope, and the laying frame supporting base table is in abutting cooperation with the fixed laying frame on the mountain slope.

[0014] In the above-mentioned integrated power generation, power grid, load and energy storage photovoltaic power generation and energy storage device, a third linear driver is arranged in the laying frame supporting base table. A plate frame supporting table rod is arranged on the power shaft of the third linear driver. A positioning block is arranged at the top of the plate frame supporting table rod. A positioning groove is arranged at the bottom of the panel protection exhibition plate frame. The positioning block is in clamping cooperation with the positioning groove.

[0015] In the above-mentioned integrated power generation, power grid, load and energy storage photovoltaic power generation and energy storage device, the connecting piece includes a plurality of frame connecting rods arranged between the fixed laying frame on the mountain slope and the fixed base on the mountain top. One end of the frame connecting rod is connected to the fixed laying frame on the mountain slope, and the other end is connected to the fixed base on the mountain top.

[0016] Compared with the existing technology, the advantages of the present invention are as follows:

[0017] 1. When the present invention is in use, the fixed laying frame on the mountain slope is fixed to the mountain slope through the slope fixing piece, avoiding the fixed laying frame on the mountain slope from slipping off the slope during use, and having good stability. The adjustable photovoltaic power generation and energy storage component is used for photovoltaic power generation and energy storage. During the photovoltaic power generation process, the adjustable photovoltaic power generation and energy storage component can be adjusted in angle to face the light source as much as possible. The adjustable photovoltaic power generation and energy storage components are evenly distributed on the mountain slope, with a wide range and a large area, and can make better use of resources for power generation. When encountering natural disasters such as hail and gravel impact, the sliding expansion protection part can be unfolded, and the sliding expansion protection part plays a protective role for the adjustable photovoltaic power generation and energy storage component, improving the service life of the adjustable photovoltaic power generation and energy storage component, and having strong practicability.

[0018] 2. After the panel protection exhibition plate frame is unfolded in the present invention, the third linear driver is started. The power shaft of the third linear driver drives the plate frame supporting table rod to rise, so that the positioning block is in clamping cooperation with the positioning groove. The plate frame supporting table rod plays a role in supporting and fixing the panel protection exhibition plate frame, avoiding the panel protection exhibition plate frame from being in a suspended state, and having good overall structural strength.

[0019] Other advantages, objectives and features of the present invention will be partially reflected by the following description, and partially will also be understood by those skilled in the art through the research and practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a structural schematic diagram of the present invention.

[0021] Figure 2 It is a schematic structural diagram of a fixed laying frame on a mountain slope.

[0022] In the figure: the fixed base platform 1 at the top of the mountain, the fixed laying frame 2 on the mountain slope, the connecting piece 3, the adjustable photovoltaic power generation and energy storage component 4, the slope fixing piece 5, the sliding expansion protection part 6, the supporting part 7, the connecting shaft seat 8, the photovoltaic energy storage panel 9, the connecting extension plate 10, the panel adjustment driving part 11, the first linear driver 12, the slope fixing insertion rod 13, the fixed piece 14 at the top of the mountain, the top fixing insertion rod 15, the soil-entering anti-disengagement block 16, the panel protection exhibition board frame 17, the second linear driver 18, the laying frame supporting bottom platform 19, the third linear driver 20, the board frame supporting platform rod 21, the positioning block 22, the positioning groove 23, and the frame body connecting rod 24. Specific implementation mode

[0023] The present invention will be further described below with reference to the accompanying drawings.

[0024] As Figure 1 、 Figure 2 shown, a source-network-load-storage integrated photovoltaic power generation and energy storage device includes a fixed base platform 1 at the top of the mountain. It is characterized in that a plurality of fixed laying frames 2 on the mountain slope are provided on the fixed base platform 1 at the top of the mountain. The fixed laying frames 2 on the mountain slope are connected to the fixed base platform 1 at the top of the mountain through a connecting piece 3. A rotatable adjustable photovoltaic power generation and energy storage component 4 is provided on the fixed laying frame 2 on the mountain slope. A slope fixing piece 5 is provided at the bottom of the fixed base platform 1 at the top of the mountain. A sliding expansion protection part 6 that can move linearly back and forth is provided inside the fixed base platform 1 at the top of the mountain. The position of the sliding expansion protection part 6 corresponds to that of the adjustable photovoltaic power generation and energy storage component 4. A supporting part 7 is provided below the fixed laying frame 2 on the mountain slope. The position of the supporting part 7 corresponds to that of the sliding expansion protection part 6.

[0025] In this embodiment, before use, the fixed base platform 1 at the top of the mountain is laid and fixed at a small mountaintop after construction leveling, and the fixed laying frame 2 on the mountain slope is laid on the slope. The fixed laying frame 2 on the mountain slope is fixed to the mountain slope through the slope fixing member 5 to prevent the fixed laying frame 2 on the mountain slope from slipping off the slope during use, and the stability is good. Photovoltaic power generation and energy storage are carried out through the adjustable photovoltaic power generation and energy storage component 4. During the photovoltaic power generation process, the adjustable photovoltaic power generation and energy storage component 4 can be adjusted in angle to face the light source as much as possible. The adjustable photovoltaic power generation and energy storage components 4 are evenly distributed on the mountain slope, with a wide range and a large area, and can make better use of resources for power generation. When natural disasters such as hail and gravel impact occur, the sliding expansion protection part 6 can be unfolded, and the sliding expansion protection part 6 plays a protective role for the adjustable photovoltaic power generation and energy storage component 4, improving the service life of the adjustable photovoltaic power generation and energy storage component 4, and the practicability is strong.

[0026] Combined with Figure 1 、 Figure 2 As shown, the adjustable photovoltaic power generation and energy storage component 4 includes a plurality of connecting shaft seats 8 arranged on the fixed laying frame 2 on the mountain slope. A rotatable photovoltaic energy storage panel 9 is provided on the connecting shaft seat 8, and the photovoltaic energy storage panel 9 is connected to the connecting shaft seat 8 through a rotating shaft.

[0027] Specifically, the connecting shaft seat 8 is used to connect and fix the photovoltaic energy storage panel 9. During use, photovoltaic power generation and energy storage are carried out through the photovoltaic energy storage panel 9. During the photovoltaic power generation process, the photovoltaic energy storage panel 9 can be adjusted in angle to face the light source as much as possible. The photovoltaic energy storage panels 9 are evenly distributed on the mountain slope, with a wide range and a large area, and can make better use of resources for power generation.

[0028] Combined with Figure 1 、 Figure 2 As shown, a connecting extension plate 10 is provided on the photovoltaic energy storage panel 9, and a plurality of panel adjustment driving members 11 are provided in the fixed laying frame 2 on the mountain slope. The panel adjustment driving member 11 is connected to the connecting extension plate 10.

[0029] In this embodiment, when the photovoltaic energy storage panel 9 is in the initial position, the connecting extension plate 10 is in abutting cooperation with the connecting shaft seat 8 or the fixed laying frame 2 on the mountain slope, playing a role of fixed abutment. When the angle of the photovoltaic energy storage panel 9 needs to be adjusted, the panel adjustment driving member 11 can be started, and the automation degree is relatively high.

[0030] The described panel adjustment driving member 11 includes a plurality of first linear drivers 12 disposed within the mountain slope fixed laying frame 2. The power shaft of the first linear driver 12 is connected to the connecting extension plate 10. A rotating cavity is formed between the photovoltaic energy storage panel 9 and the connecting extension plate 10, and the position of the rotating cavity corresponds to that of the connecting shaft seat 8.

[0031] In this embodiment, when it is necessary to adjust the angle of the photovoltaic energy storage panel 9, the first linear driver 12 is started. The power shaft of the first linear driver 12 drives the connecting extension plate 10 and the photovoltaic energy storage panel 9 to rotate. The degree of automation is relatively high. The rotating cavity can ensure that the photovoltaic energy storage panel 9 will not interfere with other parts during the rotation process. At the same time, an elastic pad is laid between the photovoltaic energy storage panel 9 and the mountain slope fixed laying frame 2, which plays a role in supporting and protecting the photovoltaic energy storage panel 9. Those skilled in the art should understand that the first linear driver 12 can adopt a linear motor, which is connected to the power supply to form a closed-loop circuit and does not require an external power supply.

[0032] Combined Figure 2 As shown, the slope fixing member 5 includes a plurality of slope fixing insertion rods 13 disposed at the bottom of the mountain slope fixed laying frame 2. The plurality of slope fixing insertion rods 13 are arranged in parallel. A mountain top fixing base 14 is provided at the bottom of the mountain top fixing base 1, and the position of the mountain top fixing base 14 corresponds to that of the slope fixing insertion rod 13.

[0033] In this embodiment, during the installation process, the slope fixing insertion rods 13 are inserted into the mountain slope to fix the mountain slope fixed laying frame 2, preventing the mountain slope fixed laying frame 2 from sliding down from the slope during use, and the stability is relatively good. The mountain top fixing member 14 fixes the mountain top fixing base 1, forming multiple fixations, further ensuring the stability and firmness.

[0034] The mountain top fixing member 14 includes a plurality of top fixing insertion rods 15 disposed at the bottom of the mountain top fixing base 1, and an anti - detachment block 16 for entering the soil is provided on the top fixing insertion rods 15.

[0035] In this embodiment, during the installation process, the top fixing insertion rods 15 are inserted into the mountain top to fix the mountain top fixing base 1. The anti - detachment block 16 for entering the soil can prevent the top fixing insertion rods 15 from detaching from the mountain, and the overall fixing effect is relatively good.

[0036] The sliding - type extended protection part 6 includes a plurality of panel protection display board frames 17 disposed within the mountain top fixing base 1. A second linear driver 18 is provided within the mountain top fixing base 1, and the power shaft of the second linear driver 18 is connected to the panel protection display board frame 17.

[0037] In this embodiment, when natural disasters such as hail and gravel impact occur, the second linear driver 18 can be activated. The power shaft of the second linear driver 18 drives the panel protection exhibition board frame 17 to move outward, and the panel protection exhibition board frame 17 plays a role in protecting the photovoltaic energy storage panel 9, improving the service life and safety of the photovoltaic energy storage panel 9. Those skilled in the art should understand that the second linear driver 18 can adopt an oil cylinder.

[0038] Combined with Figure 1 As shown, the supporting part 7 includes a laying frame supporting base 19 arranged below the mountain slope fixed laying frame 2, and the laying frame supporting base 19 is in abutting cooperation with the mountain slope fixed laying frame 2.

[0039] In this embodiment, the laying frame supporting base 19 is fixed to the mountain body. The laying frame supporting base 19 plays a role in supporting and fixing the mountain slope fixed laying frame 2, improving the stability of the bottom of the mountain slope fixed laying frame 2 and forming multiple fixations.

[0040] Combined with Figure 1 、 Figure 2 As shown, a third linear driver 20 is arranged in the laying frame supporting base 19. A board frame supporting platform rod 21 is arranged on the power shaft of the third linear driver 20. A positioning block 22 is arranged at the top of the board frame supporting platform rod 21. A positioning groove 23 is arranged at the bottom of the panel protection exhibition board frame 17, and the positioning block 22 is in clamping cooperation with the positioning groove 23.

[0041] In this embodiment, after the panel protection exhibition board frame 17 is unfolded, the third linear driver 20 is activated. The power shaft of the third linear driver 20 drives the board frame supporting platform rod 21 to rise, so that the positioning block 22 is in clamping cooperation with the positioning groove 23. The board frame supporting platform rod 21 plays a role in supporting and fixing the panel protection exhibition board frame 17, avoiding the panel protection exhibition board frame 17 being in a suspended state, and the overall structural strength is better.

[0042] Combined with Figure 1 As shown, the connecting member 3 includes a plurality of frame connecting rods 24 arranged between the mountain slope fixed laying frame 2 and the mountain top fixed base 1. One end of the frame connecting rod 24 is connected to the mountain slope fixed laying frame 2, and the other end is connected to the mountain top fixed base 1.

[0043] In this embodiment, the mountain slope fixed laying frame 2 and the mountain top fixed base 1 are fixed by the frame connecting rods 24, and the overall structural connectivity is better.

[0044] The working principle of the present invention is:

[0045] Before use, lay and fix the fixed base platform 1 at the top of the mountain on the leveled mountaintop after construction, and lay the fixed laying frame 2 for the mountain slope on the slope. Fix the fixed laying frame 2 for the mountain slope to the mountain slope through the slope fixing piece 5 to prevent the fixed laying frame 2 for the mountain slope from slipping off the slope during use, with good stability. Perform photovoltaic power generation and energy storage through the adjustable photovoltaic power generation and energy storage component 4. During the photovoltaic power generation process, the adjustable photovoltaic power generation and energy storage component 4 can be adjusted in angle to face the light source as much as possible. The adjustable photovoltaic power generation and energy storage components 4 are evenly distributed on the mountain slope, with a wide range and large area, and can make better use of resources for power generation. When natural disasters such as hail and gravel impact occur, the sliding expansion protection part 6 can be unfolded to protect the adjustable photovoltaic power generation and energy storage component 4, improving the service life of the adjustable photovoltaic power generation and energy storage component 4, with strong practicability.

[0046] The connecting shaft seat 8 is used to connect and fix the photovoltaic energy storage panel 9. During use, photovoltaic power generation and energy storage are carried out through the photovoltaic energy storage panel 9. During the photovoltaic power generation process, the photovoltaic energy storage panel 9 can be adjusted in angle to face the light source as much as possible. The photovoltaic energy storage panels 9 are evenly distributed on the mountain slope, with a wide range and large area, and can make better use of resources for power generation.

[0047] When the photovoltaic energy storage panel 9 is in the initial position, the connecting extension plate 10 abuts and cooperates with the connecting shaft seat 8 or the fixed laying frame 2 for the mountain slope to play a role of fixed abutment. When it is necessary to adjust the angle of the photovoltaic energy storage panel 9, just start the panel adjustment driving part 11, with a high degree of automation.

[0048] When it is necessary to adjust the angle of the photovoltaic energy storage panel 9, start the first linear driver 12. Drive the connecting extension plate 10 and the photovoltaic energy storage panel 9 to rotate through the power shaft of the first linear driver 12, with a high degree of automation. The rotating cavity can ensure that the photovoltaic energy storage panel 9 will not interfere with other parts during rotation. At the same time, an elastic pad is laid between the photovoltaic energy storage panel 9 and the fixed laying frame 2 for the mountain slope to support and protect the photovoltaic energy storage panel 9. Those skilled in the art should understand that the first linear driver 12 can adopt a linear motor, which is connected to the power supply to form a closed-loop circuit and does not require an external power supply.

[0049] During the installation process, insert the slope fixing rod 13 into the mountain slope to fix the fixed laying frame 2 for the mountain slope and prevent the fixed laying frame 2 for the mountain slope from slipping off the slope during use, with good stability. The mountain top fixing piece 14 fixes the fixed base platform 1 at the top of the mountain to form multiple fixings, further ensuring stability and firmness.

[0050] During the installation process, the top-fixing inserting rod 15 is inserted into the top of the mountain body to fix the fixing base 1 at the top of the mountain body. The soil-entering anti-disengagement block 16 can prevent the top-fixing inserting rod 15 from detaching from the mountain body, and the overall fixing effect is good.

[0051] When natural disasters such as hail and gravel impact occur, the second linear driver 18 can be activated. The power shaft of the second linear driver 18 drives the panel protection display board frame 17 to move outwards, and the panel protection display board frame 17 plays a role in protecting the photovoltaic energy storage panel 9, improving the service life and safety of the photovoltaic energy storage panel 9. Those skilled in the art should understand that the second linear driver 18 can adopt an oil cylinder.

[0052] The laying frame supporting base 19 supports and fixes the mountain slope fixing laying frame 2, improving the stability of the bottom of the mountain slope fixing laying frame 2, forming multiple fixations. After the panel protection display board frame 17 is unfolded, the third linear driver 20 is activated. The power shaft of the third linear driver 20 drives the board frame supporting platform rod 21 to rise, so that the positioning block 22 is engaged and matched with the positioning groove 23, and the board frame supporting platform rod 21 plays a role in supporting and fixing the panel protection display board frame 17, preventing the panel protection display board frame 17 from being in a suspended state, and the overall structural strength is good.

[0053] The mountain slope fixing laying frame 2 and the mountain top fixing base 1 are fixed by the frame connecting rod 24, and the overall structural connectivity is good.

[0054] The specific embodiments described herein are merely illustrative of the spirit of the present invention. Those skilled in the art of the present invention can make various modifications or supplements to the described specific embodiments or use similar methods for substitution, but will not deviate from the spirit of the present invention.

[0055] Although terms such as the mountain top fixing base 1, the mountain slope fixing laying frame 2, the connecting piece 3, the adjustable photovoltaic power generation energy storage component 4, the slope fixing piece 5, the sliding expansion protection part 6, the supporting part 7, the connecting shaft seat 8, the photovoltaic energy storage panel 9, the connecting extension plate 10, the panel adjustment driving part 11, the first linear driver 12, the slope fixing inserting rod 13, the mountain top fixing piece 14, the top-fixing inserting rod 15, the soil-entering anti-disengagement block 16, the panel protection display board frame 17, the second linear driver 18, the laying frame supporting base 19, the third linear driver 20, the board frame supporting platform rod 21, the positioning block 22, the positioning groove 23, and the frame connecting rod 24 are used more in this article, the possibility of using other terms is not excluded. Using these terms is only to more conveniently describe and explain the essence of the present invention, and interpreting them as any additional limitation is contrary to the spirit of the present invention.

Claims

1. A source-grid-load-storage integrated photovoltaic power generation and energy storage device, including a fixed base (1) on the top of the mountain Characterized in that A number of fixed laying frames (2) on the mountain slope are provided on the fixed base (1) on the top of the mountain. The fixed laying frames (2) on the mountain slope are connected to the fixed base (1) on the top of the mountain through connectors (3). An adjustable photovoltaic power generation and energy storage component (4) that can rotate is provided on the fixed laying frame (2) on the mountain slope. A slope fixing part (5) is provided at the bottom of the fixed base (1) on the top of the mountain. A sliding expansion protection part (6) that can move linearly back and forth is provided in the fixed base (1) on the top of the mountain. The position of the sliding expansion protection part (6) corresponds to that of the adjustable photovoltaic power generation and energy storage component (4). A supporting part (7) is provided below the fixed laying frame (2) on the mountain slope. The position of the supporting part (7) corresponds to that of the sliding expansion protection part (6); The sliding expansion protection part (6) includes a number of panel protection display frames (17) provided in the fixed base (1) on the top of the mountain. A second linear driver (18) is provided in the fixed base (1) on the top of the mountain. The power shaft of the second linear driver (18) is connected to the panel protection display frame (17); The supporting part (7) includes a laying frame supporting bottom platform (19) provided below the fixed laying frame (2) on the mountain slope. The laying frame supporting bottom platform (19) is in abutting cooperation with the fixed laying frame (2) on the mountain slope; A third linear driver (20) is provided in the laying frame supporting bottom platform (19). A plate frame supporting platform rod (21) is provided on the power shaft of the third linear driver (20). A positioning block (22) is provided at the top of the plate frame supporting platform rod (21). A positioning groove (23) is provided at the bottom of the panel protection display frame (17). The positioning block (22) is in clamping cooperation with the positioning groove (23).

2. The source-grid-load-storage integrated photovoltaic power generation and energy storage device according to claim 1, Characterized in that The adjustable photovoltaic power generation and energy storage component (4) includes a number of connecting shaft seats (8) provided on the fixed laying frame (2) on the mountain slope. A rotatable photovoltaic energy storage panel (9) is provided on the connecting shaft seats (8). The photovoltaic energy storage panel (9) is connected to the connecting shaft seat (8) through a rotating shaft.

3. The source-grid-load-storage integrated photovoltaic power generation and energy storage device according to claim 2, Characterized in that A connecting extension plate (10) is provided on the photovoltaic energy storage panel (9). A number of panel adjustment driving parts (11) are provided in the fixed laying frame (2) on the mountain slope. The panel adjustment driving parts (11) are connected to the connecting extension plate (10).

4. The source-grid-load-storage integrated photovoltaic power generation and energy storage device according to claim 3, Characterized in that The described panel adjustment driving member (11) includes a plurality of first linear drivers (12) disposed in the mountain slope fixed laying frame (2). The power shaft of the first linear driver (12) is connected to the connecting extension plate (10). A rotating cavity is formed between the photovoltaic energy storage panel (9) and the connecting extension plate (10), and the position of the rotating cavity corresponds to that of the connecting shaft seat (8).

5. The integrated power generation and energy storage device of the source-grid-load-storage photovoltaic according to claim 4, characterized in that, the slope fixing member (5) includes a plurality of slope fixing insertion rods (13) disposed at the bottom of the mountain slope fixed laying frame (2). The plurality of slope fixing insertion rods (13) are arranged in parallel. A mountain top fixing base (14) is provided at the bottom of the mountain top fixing base (1). The position of the mountain top fixing member (14) corresponds to that of the slope fixing insertion rod (13).

6. The integrated power generation and energy storage device of the source-grid-load-storage photovoltaic according to claim 5, characterized in that, the mountain top fixing member (14) includes a plurality of top fixing insertion rods (15) disposed at the bottom of the mountain top fixing base (1). An anti-detachment block (16) for entering the soil is provided on the top fixing insertion rod (15). Meanwhile, an elastic pad is laid between the photovoltaic energy storage panel (9) and the mountain slope fixed laying frame (2).

7. The integrated power generation and energy storage device of the source-grid-load-storage photovoltaic according to claim 6, characterized in that, the connecting member (3) includes a plurality of frame connecting rods (24) disposed between the mountain slope fixed laying frame (2) and the mountain top fixing base (1). One end of the frame connecting rod (24) is connected to the mountain slope fixed laying frame (2), and the other end is connected to the mountain top fixing base (1).

Citation Information

Patent Citations

  • Multifunctional integrated distributed power supply

    CN211456710U

  • Solar photovoltaic power generation tube convenient to disassemble and assemble

    CN215186577U

  • Source-grid-load-storage integrated photovoltaic power generation and energy storage device

    CN216751609U

  • Installation structure and installation method of solar power generation panels

    JP5769328B1

  • Solar power plant using inclined plane of road duting engineering workss

    KR1020120100254A