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Water surface floating intelligent photovoltaic power station group remote management using unmanned aerial vehicle

A photovoltaic power station, remote control management technology, applied in the direction of photovoltaic power station, photovoltaic power generation, photovoltaic modules, etc., can solve the problems that it is impossible to take out a large area of ​​land, and it is not suitable for the production efficiency of the intelligent photovoltaic power station group floating on the water surface, so as to improve the economy Benefits and social benefits, low cost, and the effect of ensuring safe production

Inactive Publication Date: 2015-12-23
WUXI TONGCHUN NEW ENERGY TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In order to achieve sustainable development of human society, we must vigorously develop clean energy to cope with climate change. Photovoltaic power generation is a clean energy source. The process of photovoltaic power generation does not emit carbon dioxide into the air. The increase in carbon dioxide concentration is one of the main causes of climate change. In the past two decades, China and many countries in the world have vigorously developed photovoltaic power generation. Since the construction of photovoltaic power stations requires a sunny area that can receive sunlight radiation, the land area on the earth must be used to grow food crops, cash crops and trees. It is possible to use a large area of ​​land to build photovoltaic power stations, and photovoltaic power station groups will appear on the water surface of the earth's surface. The existing technology is not suitable for improving the production efficiency of floating smart photovoltaic power station groups

Method used

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  • Water surface floating intelligent photovoltaic power station group remote management using unmanned aerial vehicle

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Embodiment 1

[0029] Intelligent communication equipment is installed on multiple floating photovoltaic power stations floating on the water surface to form a group of floating photovoltaic power stations on the water surface. Install polysilicon solar cells, conductive wires, controllers, temperature sensors, information transmission lines, and light intensity sensors on the surface of each floating photovoltaic power station. The current generated by sunlight irradiating polysilicon solar cells is input to the power ship through conductive wires and controllers. The power storage compartment of the power ship, the temperature change information on the surface of the polycrystalline silicon solar cell sensed by the temperature sensor is input into the information cabin of the power ship through the information transmission line, and the light intensity change information on the surface of the polycrystalline silicon solar cell sensed by the light intensity sensor is input into the power ship...

Embodiment 2

[0031] Intelligent communication equipment is installed on multiple floating photovoltaic power stations floating on the water surface to form a group of floating photovoltaic power stations on the water surface. Amorphous silicon solar cells, conductive wires, controllers, temperature sensors, information transmission lines, and light intensity sensors are installed on the surface of each floating photovoltaic power station. The current generated by sunlight irradiating amorphous silicon solar cells passes through conductive wires and controls The temperature change information on the surface of the amorphous silicon solar cell sensed by the temperature sensor is input into the information cabin of the power ship through the information transmission line, and the light intensity on the surface of the amorphous silicon solar cell sensed by the light intensity sensor is The change information is input into the information cabin of the power ship through the information transmiss...

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Abstract

The invention relates to water surface floating intelligent photovoltaic power station group remote management using an unmanned aerial vehicle, and belongs to the technical field of new energy application. Intelligent communication equipment is installed on multiple water surface floating photovoltaic power stations to form a water surface floating photovoltaic power station group. The surface of each water surface floating photovoltaic power station is equipped with a solar cell, a conductive line, a controller, a temperature sensor, an information transmission line, and a light intensity sensor. Current generated when sunlight is irradiated on the solar cells is input into electricity cabins of powered ships through the conductive lines and the controllers. Temperature change information on the surfaces of the solar cells sensed by the temperature sensors is input into information cabins of the powered ships through the information transmission lines. Light intensity change information on the surfaces of the solar cells sensed by the light intensity sensors is input into the information cabins of the powered ships through the information transmission lines. Communication equipment inside the information cabins of the powered ships receives remote management of an unmanned aerial vehicle in the air through wireless communication in order to guide the water surface floating photovoltaic power stations, avoid collision between the water surface floating photovoltaic power stations and generate higher current.

Description

technical field [0001] The invention relates to the remote control management of a group of intelligent photovoltaic power stations floating on the water surface by a drone, and belongs to the technical field of new energy applications. Background technique [0002] Since industrialization, human society has burned a large amount of coal and oil in production activities and emitted a large amount of carbon dioxide into the air, which has caused climate change on the earth's surface and directly affected human life. One manifestation of climate change is rising temperatures. The latest report from the US National Oceanic and Atmospheric Administration shows that the first six months of 2015 were the hottest months in more than 130 years, of which February, March, May and June were all The hottest month in the same period since 1880. In June 2015, the global average temperature was 1.26 degrees Celsius higher than the average temperature in June of each year in the 20th centur...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02S10/00H02S40/30
CPCY02E10/50
Inventor 林华
Owner WUXI TONGCHUN NEW ENERGY TECH