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Development and testing of low spatial frequency holographic concentrator elements for collection of solar energy

机译:低空间频率全息聚光器元件的开发和测试

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The aim of this research is to use holographically recorded diffractive optical elements (DOEs) recorded in photopolymer in order to effectively collect and concentrate solar radiation. The potential for recording high diffraction efficiency DOEs with a large angular and wavelength range of operation in acrylamide based photopolymer and the optimum recording conditions have been presented in our previous work (Akbari et al., 2014b, 2014a). Theoretical modelling and experimental test are presented which demonstrate that low spatial frequency components, around 300 line pairs/1nm, have an appropriate spectral bandwidth, high efficiency and very limited polarization dependence. Pairs of concentrating off-axis lenses are fabricated in photopolymer and arranged to concentrate light on a c-Si cell. The optical recording process is described and discussed. The results from electrical characterization confirm that with the (two) spherical DOEs (each of area 113 mm(2)) in place, the output current of c-Si solar cells is approximately doubled for the solar cells with area of 12 mm(2). (C) 2017 Published by Elsevier Ltd.
机译:这项研究的目的是使用记录在光聚合物中的全息记录衍射光学元件(DOE),以有效地收集和集中太阳辐射。在我们以前的工作中已经提出了在丙烯酰胺基光敏聚合物中记录具有大的操作角度和波长范围的高衍射效率DOE的潜力以及最佳记录条件(Akbari等人,2014b,2014a)。进行了理论建模和实验测试,结果表明,低空间频率分量(大约300条线对/ 1nm)具有适当的频谱带宽,高效率和非常有限的偏振依赖性。成对的偏心离轴透镜由光敏聚合物制成,并布置成将光聚集在c-Si电池上。描述和讨论了光学记录过程。电学表征的结果证实,在适当的位置(两个)球形DOE(每个面积113 mm(2)),对于面积为12 mm(2)的太阳能电池,c-Si太阳能电池的输出电流大约增加了一倍)。 (C)2017由Elsevier Ltd.发布

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