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Optical performance analysis of a HCPV solar concentrator yielding highly uniform cell irradiance

机译:HCPV太阳能集中器产生高度均匀的电池辐照度的光学性能分析

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摘要

Here we analyze the optical performance of a novel solar concentrator design suitable for high-concentration photovoltaic (HCPV) modules. In the design, a pair of confocal parabolic reflectors and a Fresnel lens with matching focal length are employed to achieve high irradiance uniformity on the solar cell in an HCPV module. To evaluate the sunlight concentrating characteristics of this concentrator design, its peak concentration ratio (PCR) on the solar cell, overall optical efficiency, and acceptance angle are calculated numerically. Moreover, the dependence of these performance indices on the geometrical concentration ratio (GCR) and aspect ratio (AR) of the concentrator also is investigated, so as to identify the "optimal" concentrator geometry. It is thus demonstrated that, at a GCR of 800 × for example, the concentrator design can limit the PCR below 1200× for all ARs greater than unity. Also, test data for a sample concentrator with 800 × GCR and an optimized AR of 1.6 indicate that the enhanced cell irradiance uniformity enables an HCPV module to achieve an increased photovoltaic conversion efficiency of 28.6%.
机译:在这里,我们分析了适用于高浓度光伏(HCPV)模块的新型太阳能集中器设计的光学性能。在设计中,采用了一对共焦抛物面反射镜和一个具有匹配焦距的菲涅耳透镜,以实现HCPV模块中太阳能电池的高辐照度均匀性。为了评估该聚光器设计的日光聚光特性,通过数值计算了其在太阳能电池上的峰值聚光比(PCR),总体光效率和接受角。此外,还研究了这些性能指标对集中器的几何集中比(GCR)和长宽比(AR)的依赖性,以识别“最佳”集中器的几何形状。因此证明,例如在GCR为800×时,对于所有大于1的AR,集中器设计可以将PCR限制在1200×以下。此外,具有800×GCR和优化的AR为1.6的样品浓缩器的测试数据表明,增强的电池辐照度均匀性可使HCPV模块实现28.6%的提高的光电转换效率。

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