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Photovoltaic power generation application scenarios

Writer: admin Time:2023-08-09  Browse:239℃

Photovoltaic power generation is a technology that converts light energy into electrical energy through the photovoltaic effect at the semiconductor interface. The photovoltaic power generation device mainly consists of three parts: solar cells, controllers, and inverters, and the photovoltaic components are composed of electronic components. The solar cells are connected in series and can form a large area of solar cell modules under the protection of photovoltaic accessories such as aluminum frames, glass, and adhesive films. In addition, photovoltaic inverters and power control components that can convert the direct current generated by photovoltaic modules into adjustable alternating current form a photovoltaic power generation device.

Generally, photovoltaic power generation is used, and the following four scenarios are more common

Industrial factory building

The electricity consumption of large production factories is expensive, which invisibly increases production costs. The roof area of a factory building is usually open and flat, with ample space for building photovoltaic equipment. In addition, under the condition of strong electricity load, the electricity converted by the roof photovoltaic system is easy to digest on site, offsetting some of the electricity consumption for the factory, which precisely reduces the burden of costs and electricity bills.

Commercial buildings

Under normal circumstances, commercial facilities have high daytime consumption and lower nighttime consumption, which is in line with the characteristics of solar photovoltaic power generation. In addition, commercial office buildings are basically cement buildings, which have similarities with photovoltaic installation, and have high requirements for aesthetics.

Municipal buildings

In order to better regulate management, the public buildings of urban governments will be relatively unified. Centralized and connected buildings are very friendly to distributed photovoltaic systems, and users’ installation willingness is more active, and their usage behavior is also relatively reliable.

Agricultural buildings

Rural towns are located at the lower level of public electricity, with remote locations and construction obstacles that all affect the villagers’ electricity experience. However, if photovoltaic systems can be reasonably utilized, such as roofs, gardens, agricultural sheds, ponds, and self residential areas that can be slightly utilized, adding distributed photovoltaic systems can improve electricity quality and provide electricity security for the future.

Not limited to the above application scenarios, photovoltaic power generation can also be co built with other building locations, such as photovoltaic car sheds, photovoltaic roofs, photovoltaic sunshades, etc., thus forming a variety of photovoltaic building product categories

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