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Optical study of diffraction grating/Fresnel lens combinations applied to a spectral-splitting solar concentrator for space applications

机译:衍射光栅/菲涅耳透镜组合在空间应用中用于分光太阳能聚光器的光学研究

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This paper presents a new design of a planar solar concentrator with spectral splitting of light for space applications. This concentrator spectrally splits the incident light into mainly two parts. Each part is then focused onto specific spatially separated photovoltaic cells allowing for independent control of respective cells' output power. These advantages of both spectral splitting and light focusing are combined here because of a specific diffraction grating superimposed on a Fresnel lens. The theoretical principle of the optical design is presented with optimization of each element and improvement steps including optimization of grating period evolution along the lens and testing of two kinds of gratings (a blazed and a lamellar one). First numerical results are presented highlighting the possibility to design a concentrator at about 10x or more for each cell with an output power larger than that of a classical concentrator focusing on a GaAs single junction cell and less than 10% of losses for tracking errors up to +/- 0.8 degrees. Some experimental results are also presented. (C) 2015 Optical Society of America
机译:本文介绍了一种平面太阳能聚光器的新设计,该聚光器具有用于空间应用的光光谱分裂功能。该聚光器在光谱上将入射光主要分为两部分。然后将每个部分聚焦到特定的空间分隔的光伏电池上,从而可以独立控制各个电池的输出功率。由于在菲涅耳透镜上叠加了特定的衍射光栅,因此光谱分离和光聚焦的这些优点在此结合了起来。提出了光学设计的理论原理,其中包括优化每个元素和改进步骤,包括优化沿透镜的光栅周期演化以及测试两种光栅(闪耀和层状光栅)。提出的第一批数值结果突显了为每个单元设计集中器的可能性,该集中器的输出功率大于传统集中器(集中于GaAs单结单元)的功率,而功率损失低于跟踪误差的10%(最大) +/- 0.8度。还提供了一些实验结果。 (C)2015年美国眼镜学会

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