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Achromatic Fresnel Lens with Improved Efficiency for PV Systems

机译:消色差菲涅尔透镜,提高了光伏系统的效率

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摘要

This work is aimed to design and evaluate different achromatic Fresnel lens solutions capable of operating as concentrators aimed at photovoltaic cells systems. Throughout this study, the theoretical parametric design of the achromatic lens will be shown together with a series of simulations to verify the performance of each lens topology. The results will be compared with a standard Fresnel lens to ascertain the validity and effectiveness of the obtained design. Finally, a novel kind of hybrid lens is proposed, which combines the advantages of each type of lens (standard and Fresnel) according to the optimal operating region of each design. Efficiency and concentration ratios of each particular lens are shown, regarding lens dimension, light’s incidence angle, or wavelength. Through this innovative achromatic design concentration ratios above 1000 suns, which hardly reach standard Fresnel lenses. Furthermore chromatic dispersion is minimized and the efficiency rate is over 85% of efficiency for a wide spectral range (from 350 nm to 1100 nm).
机译:这项工作旨在设计和评估不同的消色差菲涅耳透镜解决方案,这些解决方案可以用作针对光伏电池系统的聚光器。在整个研究过程中,将显示消色差透镜的理论参数设计以及一系列模拟,以验证每种透镜拓扑的性能。将结果与标准菲涅耳透镜进行比较,以确定所获得设计的有效性和有效性。最后,提出了一种新型的混合透镜,根据每种设计的最佳工作区域,结合了每种类型的透镜(标准透镜和菲涅尔透镜)的优点。显示了每个特定透镜的效率和集中度,涉及透镜尺寸,光的入射角或波长。通过这种创新的消色差设计,聚光比超过1000太阳,几乎达不到标准菲涅尔透镜。此外,在宽光谱范围(350 nm至1100 nm)范围内,色散最小化,效率达到效率的85%以上。

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