Daily fill factor variation as a diagnostic probe of multijunction concentrator systems during outdoor operation

W. McMahon, K. Emery, D. Friedman, L. Ottoson, M. Young, J. Ward, C. Kramer, A. Duda, S. Kurtz
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引用次数: 1

Abstract

Optimizing a concentrator system which uses multijunction solar cells is challenging because: (a) the conditions are variable, so the solar cells rarely operate under optimal conditions and (b) the conditions are not controlled, so any design problems are difficult to characterize. Any change in the spectral content of direct-beam sunlight as it passes through the concentrator optics is of particular interest, as it can reduce the performance of multijunction cells and is difficult to characterize. Here we show how the fill factor can be used to detect and diagnose this sort of a "spectral skewing" by the concentrator optics during outdoor operation. The work presented here is for GaInP2/GaAs tandem cells, but the conclusions are equally valid for GaInP2/GaAs/Ge triple-junction cells.
多结集中器系统在室外运行时的日填充系数变化诊断探头
优化使用多结太阳能电池的聚光系统是具有挑战性的,因为:(a)条件是可变的,因此太阳能电池很少在最佳条件下工作;(b)条件不受控制,因此任何设计问题都难以表征。当直射光束的太阳光通过聚光器时,其光谱含量的任何变化都是特别值得关注的,因为它会降低多结电池的性能,并且难以表征。在这里,我们展示了如何填充因子可以用来检测和诊断这种“光谱偏斜”的聚光器光学在室外操作期间。本文提出的工作是针对GaInP2/GaAs串联电池,但结论同样适用于GaInP2/GaAs/Ge三结电池。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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