A photovoltaic power generation system based on big data
A photovoltaic power generation system and big data technology, applied in photovoltaic power generation, photovoltaic modules, solar thermal power generation, etc., can solve the problems of low flexibility of angle adjustment of solar photovoltaic panels
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specific Embodiment approach 1
[0033] Combine below Figure 1-12 To illustrate this embodiment, the present invention relates to a photovoltaic power generation system, more specifically a photovoltaic power generation system based on big data, including a photovoltaic support 1, a photovoltaic mobile base 2, a lifting support mechanism 3, a mobile swivel base 4, a drive Mechanism 5 and photovoltaic panel support 6, the lifting support mechanism 3 in the present invention can control the lifting of the solar photovoltaic panel, the mobile swivel seat 4 can move left and right on the photovoltaic mobile seat 2 to adjust the left and right positions of the solar photovoltaic panel, and move the swivel seat 4 Can also take the axis of supporting cylinder II4-7 as the axis to rotate, adjust the orientation of the solar photovoltaic panel, move the motor I4-5 on the swivel seat 4 to change the angle of the solar photovoltaic panel; when the solar photovoltaic panel is not used for a long time, it can Fasten the ...
specific Embodiment approach 2
[0036] Combine below Figure 1-12 To illustrate this embodiment, the photovoltaic support 1 includes a rear seat plate 1-1, an electric telescopic rod seat 1-2, an electric telescopic rod I1-3, a slide hole 1-4, and a side seat plate 1-5, and the rear seat plate 1 The left and right ends of -1 are fixedly connected with side seat plates 1-5, and both side seat plates 1-5 are provided with sliding holes 1-4, and the left and right ends of the rear seat plate 1-1 are all fixedly connected with electric The telescopic rod base 1-2, the front ends of the two electric telescopic rod bases 1-2 are all fixedly connected with the electric telescopic rod I1-3. The two electric telescopic rods I1-3 can be extended or shortened simultaneously, and the rear seat board 1-1 can be fixed at a certain position.
specific Embodiment approach 3
[0038] Combine below Figure 1-12 To illustrate this embodiment, the photovoltaic mobile seat 2 includes a supporting plate 2-1, a cylindrical slide bar 2-2, a T-shaped chute seat 2-3, a T-shaped chute 2-4, a horizontal chute seat 2-5, Horizontal chute 2-6, supporting pin 2-7 and sliding block 2-8, the left and right ends of supporting plate 2-1 lower end are all fixedly connected with supporting pin 2-7, and the lower ends of two supporting pins 2-7 are all fixedly connected with sliding Block 2-8, two sliding blocks 2-8 are slidably connected to two sliding holes 1-4 respectively, and the front ends of two electric telescopic rods I1-3 are fixedly connected to two sliding blocks 2-8 respectively, T-shaped The upper end of chute seat 2-3 is provided with T-shaped chute 2-4, and the lower end of T-shaped chute seat 2-3 is fixedly connected with horizontal chute seat 2-5, and horizontal chute seat 2-5 is provided with horizontal chute seat 2-5. Chute 2-6, the left and right en...
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