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A fully automatic photovoltaic power generation support based on fishery and light complementarity

A photovoltaic power generation, fully automatic technology, applied in the direction of photovoltaic power generation, the support structure of photovoltaic modules, photovoltaic modules, etc., can solve the problem of not considering the adjustment of the support position, etc., and achieve the effects of reasonable structural design, energy saving, and increased power generation

Active Publication Date: 2019-07-16
KUNMING UNIV OF SCI & TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

There are also many patents on the solar-light complementary photovoltaic power generation support. However, most of the current patents only focus on the design of the support, and do not consider the problem that the support can drive the photovoltaic panel to adjust its orientation and ensure that it can absorb more light energy.

Method used

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  • A fully automatic photovoltaic power generation support based on fishery and light complementarity
  • A fully automatic photovoltaic power generation support based on fishery and light complementarity
  • A fully automatic photovoltaic power generation support based on fishery and light complementarity

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0021] Embodiment 1: as Figure 1~2 As shown, this fully automatic photovoltaic power generation support based on fishery and light complementarity includes floating device 1, base 2, bearing I3, bearing II23, air compressor 4, cylinder I5, piston rod I6, cylinder II18, piston rod II19, gear I7 , gear Ⅱ26, controller 8, servo motor 9, chain 10, fixed rod Ⅰ11, fixed rod Ⅱ21, fixed frame Ⅲ24, fixed frame Ⅳ25, solar panel 12, light control switch 13, fixed frame Ⅰ14, transmission shaft Ⅰ15, transmission Shaft Ⅱ20, fixed frame Ⅱ16, bearing seat Ⅰ17, bearing seat Ⅱ22;

[0022] The floating device 1 is fixed on the water surface through a stabilizer, the base 2 is fixed on the floating device 1, the cylinder I5 and the cylinder II18 are fixed on the base 2, the piston rod I6 and the piston of the cylinder I5 and II18 are One end of the rod II19 is respectively connected with one end of the fixed rod I11 and the fixed rod II21, and the other ends of the fixed rod I11 and the fixed r...

Embodiment 2

[0026] Embodiment 2: The structure of this embodiment is the same as that of Embodiment 1. The difference is that the servo motor 9, the air compressor 4, the controller 8, and the light control switch 13 are connected with the solar panel 12 by wires, and the solar panel 12 powered by.

[0027] The working principle of this embodiment: first, when the four corners of the fixed frame II 16 can receive light, the light control switches 13 at the four corners are all in the disconnected state, the circuit is disconnected, the controller 8 cannot receive the signal, and the servo motor 9 and the air compressor 4 do not work; when any corner of the fixed frame II 16 does not receive light, the light control switch 13 of this corner is in a closed state, and since the circuit is a parallel circuit, the controller 8 receives the signal, and the controller 8 controls Servo motor 9 and air compressor 4 work, servo motor 9 controls transmission shaft II20 to rotate, transmission shaft ...

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Abstract

The invention relates to a fishing light complement-based full-automatic photovoltaic power generation support, and belongs to the field of fishing light complement photovoltaic power generation. Thefishing light complement-based full-automatic photovoltaic power generation support comprises a floating device, a base, a bearing I, a bearing II, an air compressor, an air cylinder I, a piston rod I, an air cylinder II, a piston rod II, a gear I, a gear II, a controller, a servo motor, a chain, a fixed rod I, a fixed rod II, a fixed III, a fixed IV, a solar cell panel, a light-control switch, afixed rack I, a transmission shaft I, a transmission shaft II, a fixed rack II, a bearing seat I and a bearing seat II. By gear and chain transmission, the planar moving of the solar cell panel is controlled, the air cylinder telescopic rod moves, the cell panel is controlled to move upwards and downwards, the working of the air cylinders and the servo motor is controlled by the light-control switch and the controller, the direction of the solar cell panel is automatically adjusted, multi-directional light energy absorption is achieved, and the power generation quantity is improved.

Description

technical field [0001] The invention relates to a fully automatic photovoltaic power generation bracket based on fishery-light complementarity, which belongs to the field of fishery-light complementary photovoltaic power generation. Background technique [0002] With the development of the economy, the utilization of new energy, especially the utilization of solar energy is becoming more and more well known, and the use effect is better. Among them, photovoltaic power generation projects have the advantages of short construction period, safety and reliability, no noise, low pollution, on-site power generation, no geographical restrictions on solar resources, wide distribution and renewable advantages. Fishing-photovoltaic complementary photovoltaic power generation refers to the simultaneous construction of photovoltaic power generation projects on the water surface of aquaculture areas. Through a reasonable layout, a photovoltaic power generation system is established abov...

Claims

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Application Information

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IPC IPC(8): H02S20/30G05D3/12
CPCG05D3/12H02S20/30Y02E10/50
Inventor 罗小林陈佩霞
Owner KUNMING UNIV OF SCI & TECH