高效三轴太阳能跟踪系统的设计与实现

Md. Rifad Haider, A. Shufian, Md. Nazmul Alam, M. Hossain, Riadul Islam, Md. Anwarul Azim
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引用次数: 8

摘要

现代社会出现了不同的可再生资源,这些资源在人类的时间尺度上自然存在,如阳光、风、潮汐、海浪和地热资源。其中一个例子就是太阳能。最大限度地捕获太阳光线并将其转化为电能仍然是一项挑战。当太阳能电池板垂直于太阳光线时,它能接收到最大的阳光,但是,阳光的方向随着时间的变化而有规律地变化。固定的太阳能电池板对天空有固定的方向,不跟随太阳转动。因此,附加的太阳能电池板无法产生足够的电力。大多数商用太阳能电池的最佳效率在10-20%之间。这个百分比表明需要进行很大的改进。该先进系统考虑了三轴自由太阳跟踪系统的原型模型的设计和构建,该系统可以自动跟踪不同方向的阳光。提出了一种带有多轴太阳能跟踪控制器的太阳能板支架的制作和安装方法。当阳光垂直落在太阳能电池板上时,通过将太阳能电池板指向太阳并沿着其穿过天空的路径最大限度地捕获光线。这样,最大发电量就保证了高效率。效率可提高25%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Implementation of Three-Axis Solar Tracking System with High Efficiency
The modern eras have seen different sources of renewable resources, which are naturally finding on a human timescale, such as sunlight, wind, tides, waves, and geothermal heat sources. One such example is solar power. The challenge remains to maximize the capture of the rays from the sun for conversion into electricity. A solar panel receives the maximum sunlight when it is perpendicular to the sun's rays but, the sunlight direction changes regularly with changing time. A fixed solar panel has a fixed orientation to the sky and does not turn to follow the sun. So, the attached solar panel is not able to generate adequate power. The best efficiency of the majority of commercially available solar cells ranges between 10-20%. This percentage shows that there is a high improvement needed. This advanced system deliberates the design and construction of a prototype model for a solar tracking system that has three-axis freedom, which can follow the sunlight in different directions automatically. The proposed method presents the fabrication and installation of a solar panel mount with a multiple-axis solar tracking controller. When sunlight falls perpendicularly onto the solar panels to maximize the capture of the rays by pointing the solar panels towards the sun & following its path across the sky. This way, the maximum electricity generation is ensuring high efficiency. The efficiency can be increased by 25%.
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