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Impact of Front Side Pyramid Size on the Light Trapping Performance of Wafer Based Silicon Solar Cells and Modules

机译:正面金字塔尺寸对基于晶片的硅太阳能电池和组件的光阱性能的影响

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Smaller pyramid sizes for Silicon solar cell front side textures attract more and more interest. At the same time a very good optical performance of the front side texture is crucial to achieve high PV module efficiencies. In this paper an optical study of the impact of periodically arranged front side pyramids on the useful absorption in a Silicon solar cell is presented. Also a way to account for random pyramids is described. Results for solar cells facing semi-infinite EVA/glass are compared to the modeling results of a full solar module stack with the help of the OPTOS formalism. We found that the impact of different pyramids differs depending on the quality of the planar rear side reflector. It is shown that the impact of the module case is crucial and that it has to be accounted for when predicting the optimal pyramid sizes that are relevant for cell and module manufacturers. We also demonstrate that the use of simple parameters such as a single pass light path enhancement factor for the structured surface can lead to wrong conclusions, and a full modeling is required to predict the real module performance. The results indicate that the overall optical performance of a solar module does almost not vary for pyramid sizes above 600 nm.
机译:硅太阳能电池正面纹理的较小棱锥尺寸吸引了越来越多的兴趣。同时,正面纹理的良好光学性能对于实现高PV模块效率至关重要。在本文中,对周期性排列的正面金字塔对硅太阳能电池中有用吸收的影响进行了光学研究。还描述了一种解决随机金字塔的方法。借助OPTOS形式,将面向半无限EVA /玻璃的太阳能电池的结果与完整太阳能模块堆栈的建模结果进行了比较。我们发现,根据平面后侧反射镜的质量,不同金字塔的影响会有所不同。结果表明,模块情况的影响至关重要,在预测与电池和模块制造商相关的最佳金字塔尺寸时必须考虑到这一点。我们还证明,对结构化表面使用简单的参数(例如单程光路增强因子)可能会导致错误的结论,并且需要完整的建模才能预测实际的模块性能。结果表明,对于金字塔尺寸大于600 nm的太阳能模块,其总体光学性能几乎没有变化。

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