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Reflection hologram solar spectrum-splitting filters

机译:反射全息图太阳能光谱分裂过滤器

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In this paper we investigate the use of holographic filters in solar spectrum splitting applications. Photovoltaic (PV) systems utilizing spectrum splitting have higher theoretical conversion efficiency than single bandgap cell modules. Dichroic band-rejection filters have been used for spectrum splitting applications with some success however these filters are limited to spectral control at fixed reflection angles. Reflection holographic filters are fabricated by recording interference pattern of two coherent beams at arbitrary construction angles. This feature can be used to control the angles over which spectral selectivity is obtained. In addition focusing wavefronts can also be used to increase functionality in the filter. Holograms fabricated in dichromated gelatin (DCG) have the benefit of light weight, low scattering and absorption losses. In addition, reflection holograms recorded in the Lippmann configuration have been shown to produce strong chirping as a result of wet processing. Chirping broadens the filter rejection bandwidth both spectrally and angularly. It can be tuned to achieve spectral bandwidth suitable for spectrum splitting applications. We explore different DCG film fabrication and processing parameters to improve the optical performance of the filter. The diffraction efficiency bandwidth and scattering losses are optimized by changing the exposure energy, isopropanol dehydration bath temperature and hardening bath duration. A holographic spectrum-splitting PV module is proposed with Gallium Arsenide (GaAs) and silicon (Si) PV cells with efficiency of 25.1% and 19.7% respectively. The calculated conversion efficiency with a prototype hologram is 27.94% which is 93.94% compared to the ideal spectrum-splitting efficiency of 29.74%.
机译:在本文中,我们研究了全息滤波器在太阳能光谱分裂应用中的使用。利用光谱分离的光伏(PV)系统具有比单个带隙电池模块更高的理论转换效率。二向色带抑制滤光器已经用于频谱分离应用,其成功但这些滤波器限于固定反射角的光谱控制。反射全息过滤器通过在任意施工角度以两个相干梁的干涉图案记录而制造。该特征可用于控制获得频谱选择性的角度。此外,对焦波前也可用于增加过滤器中的功能。在二色特异性明胶(DCG)中制造的全息图具有重量轻,散射和吸收损失的益处。此外,已显示在Lippmann配置中记录的反射全息图已显示出由于湿法处理而产生强烈的啁啾。啁啾深度和角度地扩大过滤器抑制带宽。可以调整它以实现适用于频谱分裂应用的光谱带宽。我们探索不同的DCG薄膜制造和处理参数,以提高滤波器的光学性能。通过改变曝光能量,异丙醇脱水浴温和硬化浴持续时间来优化衍射效率带宽和散射损失。用砷化镓(GaAs)和硅(Si)PV电池提出全息光谱分离PV模块,效率分别为25.1%和19.7%。与原型全息图的计算的转换效率为27.94%,而27.94%,与理想的光谱分裂效率为29.74%。

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