Performances optimization from solar radiation to photovoltaic cell

M. Azzouzi, B. Mohammedi, Dan Popescu, M. Bouchahdane
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引用次数: 2

Abstract

Photovoltaic cells are inherent part of any photovoltaic system. As the need for more efficient clean source of renewable energy becomes paramount, computational modeling of solar radiation by clear sky and of silicon photovoltaic cell is done, in which the electric model of the solar cell is a two diodes circuit. This modeling must depend at the same time on the weather characteristics of the site where the system is installed and the physical parameters of the corresponding solar cell. It is essential to know the responses of the solar cell model in function of the radiation change caused by the movement of the sun, the latitude and then the incidence of the site. We established calculation programs using Matlab/Simulink environment which allows us to optimize the solar radiation when the results were been compared to these experimental of the NREL (National Renewable Energy Laboratory), we used the obtained radiation to trace the characteristics and to predict the development of the electrical power delivered by the silicon photovoltaic cell in the various meteorological and physical conditions. The prediction of the numerical models is satisfactory, the results obtained are plotted and they are in good conformity with that of literature.
从太阳辐射到光伏电池的性能优化
光伏电池是任何光伏系统的固有组成部分。随着对更高效的清洁可再生能源的需求日益迫切,对晴空太阳辐射和硅光伏电池进行了计算建模,其中太阳能电池的电模型是一个双二极管电路。这种建模必须同时依赖于系统安装地点的天气特征和相应太阳能电池的物理参数。了解太阳运动引起的辐射变化对太阳电池模型的响应是至关重要的,然后是纬度,然后是场地的入射。利用Matlab/Simulink环境建立了计算程序,通过与NREL(国家可再生能源实验室)的实验结果进行对比,对太阳辐射进行优化,利用得到的辐射跟踪特性,预测硅光伏电池在各种气象和物理条件下的电能发展。数值模型的预测结果令人满意,所得结果与文献结果吻合较好。
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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