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Analysis of tandem solar cell efficiencies under AM1.5G spectrum using a rapid flux calculation method

机译:使用快速通量计算方法分析AM1.5G光谱下的串联太阳能电池效率

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We report the use of a rapid flux calculation method using incomplete Riemann zeta functions as a replacement for the Bose-Einstein integral in detailed balance calculations to study the efficiency of tandem solar cell stacks under the terrestrial AM1.5G spectrum and under maximum concentration. The maximum limiting efficiency for unconstrained and constrained tandem stacks of up to eight solar cells, under the AM1.5G spectrum and maximum concentration, are presented. The results found agree well with previously published results with one exception highlighting the precautions necessary when calculating for devices under the AM1.5G spectrum. The band gap sensitivities of two tandem solar cell stack arrangements of current interest were also assessed. In the case of a three solar cell tandem stack the results show a large design space and illustrate that the constrained case is more sensitive to band gap variations. Finally, the effect of a non-optimum uppermost band gap in a series constrainedfive solar cell tandem stack was investigated. The results indicate that a significant re-design is only required when the uppermost band gap is greater than the optimum value with a relatively small effect on the limiting efficiency. It is concluded that this rapid flux calculation method is a powerful tool for the analysis of tandem solar cells and is particularly useful for the design of devices where optimum band gaps may not be available. Copyright (C) 2007 John Wiley & Sons, Ltd.
机译:我们在详细的平衡计算中报告了使用不完整的黎曼zeta函数代替Bose-Einstein积分的快速通量计算方法的研究,以研究在地面AM1.5G光谱和最大浓度下的串联太阳能电池堆的效率。给出了在AM1.5G光谱和最大浓度下,最多八个太阳能电池的无约束和约束串联电池组的最大极限效率。发现的结果与先前发表的结果非常吻合,唯一的例外是突出了在AM1.5G频谱下计算器件时必须采取的预防措施。还评估了当前关注的两个串联太阳能电池堆布置的带隙敏感性。在三个太阳能电池串联堆叠的情况下,结果显示出较大的设计空间,并说明受约束的情况对带隙变化更敏感。最后,研究了在串联约束的五个太阳能电池串联堆叠中非最佳的最高带隙的影响。结果表明,仅当最高带隙大于最佳值时才需要进行重大重新设计,而对极限效率的影响相对较小。结论是,这种快速的通量计算方法是分析串联太阳能电池的有力工具,对于无法获得最佳带隙的器件设计特别有用。版权所有(C)2007 John Wiley&Sons,Ltd.

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