首页> 外文会议>European Photovoltaic Solar Energy Conference and Exhibition >COMPARATIVE ANALYSIS OF NONUNIFORM ILLUMINATION AND CHROMATIC ABERRATION IN TRIPLE AND QUADRUPLE JUNCTION SOLAR CELLS UNDER CONCENTRATION USING SPICE
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COMPARATIVE ANALYSIS OF NONUNIFORM ILLUMINATION AND CHROMATIC ABERRATION IN TRIPLE AND QUADRUPLE JUNCTION SOLAR CELLS UNDER CONCENTRATION USING SPICE

机译:用香料浓度浓度下三倍连接太阳能电池中的非均匀照明和色差的对比分析

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The optics of a concentrating photovoltaic (CPV) system typically provides nonuniform illumination on the subcells, affecting current profiles and consequently system efficiency. Using a two-dimensional, distributed resistance model, we estimate the impact of nonuniform illumination and chromatic aberration for an inverted metamorphic, triple junction solar cell (3J IMM) and a lattice-matched, four junction solar cell (4J LM). Both the multijunction cells have an optimized efficiency of 42.4% at 1000 suns under uniform illumination. The performance of the 3J IMM and the 4J LM is analysed at different peak-to-average irradiance ratios (PAR). The 3J IMM shows a higher sensitivity to nonuniform illumination and a loss in efficiency of 5.4% absolute at a PAR = 5.3 while the losses in a 4J LM account for 3.7% absolute efficiency reduction. To model the effects of concentrating optics, an optical train with an idealized Fresnel lens and a secondary truncated pyramid homogenizer is simulated using commercial ray tracing software using the AM1.5D spectrum. Losses due to concentrating optics, nonuniform irradiance profiles and chromatic aberrations are determined for both cells at various primary to secondary working distances. At a working distance optimal for the 4J LM, the neglect of chromatic aberration is found to overstate the CPV system efficiency by 1.4% absolute and at the optimal working distance for 3J IMM, neglecting chromatic aberration overstates the system efficiency by 2%.
机译:浓缩光伏(CPV)系统的光学器件通常在子单元上提供不均匀的照明,影响电流曲线并因此影响系统效率。使用二维分布式电阻模型,估计非均匀照明和色差对倒置变质,三重结太阳能电池(3J IMM)和晶格匹配的四个结太阳能电池(4J LM)的影响。在均匀照明下,多结细胞在1000阳光下的优化效率为42.4%。在不同的峰平均辐照度比(PAR)下分析3J IMM和4J LM的性能。 3J IMM表明对非均匀照明的敏感性较高,效率损失为5.4%在PAR = 5.3,而4J LM中的损失占绝对效率的绝对效率为3.7%。为了模拟浓缩光学器件的效果,使用AM1.5D光谱使用商业射线跟踪软件模拟具有理想化菲涅耳透镜和次级截短的金字塔均质器的光学系。由于浓缩光学,非均匀辐照度谱和色差而导致的损失用于各种初级到次级工作距离的细胞。在工作距离对于4J LM的最佳工作距离中,发现忽略了色差的绝对效率1.4%绝对,并且在3J IMM的最佳工作距离下,忽略了色差夸大了系统效率2%。

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