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Optimization of the Geometric Design of Silicon Solar Cells under Concentrated Sunlight

机译:聚光下硅太阳能电池几何设计的优化

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The optimization of silicon solar cells is presented. The desired performance characteristics of a solar cell include a high conversion efficiency and a large power output through optimal grid contact design with minimal power losses under concentrated sunlight. Both square and rectangular shapes of linear grid contact patterns are considered for silicon solar cells with constraints on design parameters. The optical and ohmic losses are noted in computing the conversion efficiency and power output, which influence the structure and size of the solar cell and the grid contact design. In the optimization of solar cell performance, the various power losses caused by grid contact that influence the solar cell size, geometry of the fingers, busbars, and spacing between the metal grid lines are also considered. The proposed methodology permits the design of the solar cell for optimal cell performance even when some of the parameters, such as the size of the cell or the geometry of the fingers, are prespecified.
机译:提出了硅太阳能电池的优化。太阳能电池所需的性能特征包括高转换效率和通过优化的栅极接触设计获得的大功率输出,并且在集中的阳光下具有最小的功率损耗。对于设计参数有限制的硅太阳能电池,都考虑了线性栅格接触图案的正方形和矩形形状。在计算转换效率和功率输出时会记录光损耗和欧姆损耗,这会影响太阳能电池的结构和尺寸以及电网接触设计。在优化太阳能电池性能时,还应考虑由栅极接触引起的各种功率损耗,这些功率损耗会影响太阳能电池的尺寸,指状件,母线的几何形状以及金属网格线之间的间距。即使预先指定了某些参数(例如电池的大小或手指的几何形状),所提出的方法也可以将太阳能电池设计为具有最佳的电池性能。

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