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Performance evaluation of thin film silicon solar cell based on dual diffraction grating

机译:基于双衍射光栅的薄膜硅太阳能电池性能评估

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摘要

Light-trapping structures are more demanding for optimal light absorption in thin film silicon solar cells. Accordingly, new design engineering of solar cells has been emphasized and found to be effective to achieve improved performance. This paper deals with a design of thin film silicon solar cells and explores the influence of bottom grating and combination of top and bottom (dual) grating as a part of back reflector with a distributed Bragg reflector (DBR). Use of metal layer as a part of back reflector has found to be promising for minimum requirement of DBR pairs. The effect of grating and anti-reflection coating thicknesses are also investigated for absorption enhancement. With optimization, high performance has been achieved from dual grating-based solar cell with a relative enhancement in short-circuit current approximately 68% while it was approximately 55% in case of bottom grating-based solar cell. Our designing efforts show enhanced absorption of light in UV and infrared part of solar spectrum.
机译:对于薄膜硅太阳能电池中的最佳光吸收,光阱结构要求更高。因此,已经强调了太阳能电池的新设计工程并且发现其对于实现改善的性能是有效的。本文研究了薄膜硅太阳能电池的设计,并探讨了底部光栅以及顶部和底部(双)光栅的组合(作为带有分布式布拉格反射器(DBR)的背面反射器的一部分)的影响。已经发现使用金属层作为后反射器的一部分有望满足对DBR对的最低要求。还研究了光栅厚度和抗反射涂层厚度对吸收增强的影响。通过优化,基于双光栅的太阳能电池已经实现了高性能,短路电流相对提高了约68%,而基于底部光栅的太阳能电池则达到了约55%。我们的设计工作表明,太阳光谱的紫外线和红外线部分对光的吸收增强。

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