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Comparison of holographic lens and filter systems for lateral spectrum splitting

机译:全息透​​镜和滤光片系统用于横向光谱分裂的比较

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摘要

Spectrum splitting is an approach to increasing the conversion efficiency of a photovoltaic (PV) system. Several methods can be used to perform this function which requires efficient spatial separation of different spectral bands of the incident solar radiation. In this paper several of holographic methods for implementing spectrum splitting are reviewed along with the benefits and disadvantages associated with each approach. The review indicates that a volume holographic lens has many advantages for spectrum splitting in terms of both power conversion efficiency and energy yield. A specific design for a volume holographic spectrum splitting lens is discussed for use with high bandgap InGaP and low bandgap silicon PV cells. The holographic lenses are modeled using rigorous coupled wave analysis, and the optical efficiency is evaluated using non-sequential raytracing. A proof-of-concept off-axis holographic lens is also recorded in dichromated gelatin film and the spectral diffraction efficiency of the hologram is measured with multiple laser sources across the diffracted spectral band. The experimental volume holographic lens (VHL) characteristics are compared to an ideal spectrum splitting filter in terms of power conversion efficiency and energy yield in environments with high direct normal incidence (DNI) illumination and high levels of diffuse illumination. The results show that the experimental VHL can achieve 62.5% of the ideal filter power conversion efficiency, 64.8% of the ideal filter DNI environment energy yield, and 57.7% of the ideal diffuse environment energy yield performance.
机译:频谱拆分是一种提高光伏(PV)系统转换效率的方法。可以使用几种方法来执行此功能,这需要对入射太阳辐射的不同光谱带进行有效的空间分离。在本文中,对几种用于实现频谱分割的全息方法以及每种方法的优缺点进行了综述。该评论表明,就功率转换效率和能量产量而言,体积全息透镜在光谱分裂方面具有许多优势。讨论了用于高带隙InGaP和低带隙硅PV电池的体积全息光谱分离透镜的特定设计。使用严格的耦合波分析对全息透镜建模,并使用非连续光线跟踪评估光学效率。概念验证的离轴全息透镜也记录在重铬酸盐明胶薄膜中,并且全息图的光谱衍射效率是使用整个衍射光谱带上的多个激光源测量的。在具有高直接法向入射(DNI)照明和高水平漫射照明的环境中,在功率转换效率和能量产出方面,将实验体积全息透镜(VHL)的特性与理想的光谱分离滤镜进行了比较。结果表明,实验VHL可以达到理想滤波器功率转换效率的62.5%,理想滤波器DNI环境能量输出的64.8%,理想扩散环境能量输出的57.7%。

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