Study on Increasing the Solar Cell Efficiency by Using Glass Balls

A. Naji, Khalid Abdul Hussein Hafedh, Kreem Idan Fadheel
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Abstract

Solar cells lose high percent of their capacity as a result of insufficient solar radiation, due to changing of the solar angle of projection during the day. Solar energy coming from sunlight is converted by a cell panel into electrical energy called Photo Voltage (PV). These cells are made by trade of various semiconductor materials using P-N dipole technology. Thus this research aims to increase the cell efficiency by a novel method which is based on collecting rays in the convex focus and dispersed in the concave lens, to make the rays always perpendicular on cells. To achieve this purpose, glass balls with a diameter of 10 mm were used and arranged on the cell area. This work found an obvious increasing in the cell efficiency, where it is possible to have an increasing in generating voltage by an estimated 7.53%, and the current 1.086% by this novel method.
利用玻璃球提高太阳能电池效率的研究
由于太阳辐射不足,太阳能电池在白天由于太阳投射角度的变化而损失了高百分比的容量。来自阳光的太阳能通过电池面板转换成电能,称为光电电压(PV)。这些电池是通过使用P-N偶极子技术交换各种半导体材料制成的。因此,本研究旨在通过一种新的方法来提高电池效率,该方法是基于在凸焦点中收集光线并在凹透镜中分散,使光线始终垂直于电池。为了达到这一目的,使用直径为10毫米的玻璃球并将其布置在细胞区域上。这项工作发现了电池效率的明显提高,其中产生电压可能增加7.53%,电流可能增加1.086%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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