首页> 外文会议>World Conference on Photovoltaic Energy Conversion;European Photovoltaic Solar Energy Conference;Photovoltaic Science and Engineering Conference;IEEE Photovoltaic Specialist Conference >Shockley-Queisser Triangle: An Elegant Analytical Tool for Predicting the Thermodynamic Efficiency Limits of Multi-junction Tandem and Bifacial Cells with Arbitrary Concentration and Series Resistance
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Shockley-Queisser Triangle: An Elegant Analytical Tool for Predicting the Thermodynamic Efficiency Limits of Multi-junction Tandem and Bifacial Cells with Arbitrary Concentration and Series Resistance

机译:Shockley-Queisser三角:一种用于任意浓度和串联电阻预测多结级联和双面电池热力学效率极限的优雅分析工具

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As monofacial, single junction solar cells approach their fundamental limits, there has been significant interest in tandem solar cells in the presence of concentrated sunlight or tandem bifacial solar cells with back-reflected albedo. The bandgap sequence and thermodynamic efficiency limits of these complex cell configurations generally require complicated numerical calculation. The analysis of specialized cases are scattered throughout the literature. In this paper, we show that a powerful graphical approach called the normalized “Shockley-Queisser Triangle (i.e. i
机译:随着单面单结太阳能电池接近其基本极限,在存在集中阳光或具有背反射反照率的串联双面太阳能电池的情况下,对于串联太阳能电池引起了极大的兴趣。这些复杂单元结构的带隙序列和热力学效率极限通常需要复杂的数值计算。专门案例的分析分散在整个文献中。在本文中,我们展示了一种强大的图形方法,称为标准化的“ Shockley-Queisser三角(即

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