首页> 外文会议>Conference on next generation technologies for solar energy conversion VIII >Volume holographic lens spectrum-splitting photovoltaic system for high energy yield with direct and diffuse solar illumination
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Volume holographic lens spectrum-splitting photovoltaic system for high energy yield with direct and diffuse solar illumination

机译:体积全息透镜光谱分裂光伏系统,具有直接和漫射太阳能照明的高能量产量

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摘要

In this paper a prototype spectrum-splitting photovoltaic system based on volume holographic lenses (VHL) is designed, fabricated and tested. In spectrum-splitting systems, incident sunlight is divided in spectral bands for optimal conversion by a set of single-junction PV cells that are laterally separated. The VHL spectrum-splitting system in this paper has a form factor similar to conventional silicon PV modules but with higher efficiencies (>30%). Unlike many other spectrum-splitting systems that have been proposed in the past, the system in this work converts both direct and diffuse sunlight while using inexpensive 1-axis tracking systems. The VHL system uses holographic lenses that focus light at a transition wavelength to the boundary between two PV cells. Longer wavelength light is dispersed to the narrow bandgap cell and shorter wavelength light to the wide bandgap cell. A prototype system is designed with silicon and GaAs PV cells. The holographic lenses are fabricated in Covestro Bayfol HX photopolymer by 'stitching' together lens segments through sequential masked exposures. The PV cells and holographic lenses were characterized and the data was used in a raytrace simulation and predicts an improvement in total power output of 15.2% compared to a non-spectrum-splitting reference. A laboratory measurement yielded an improvement in power output of 8.5%.
机译:本文设计了一种基于体积全息镜片(VHL)的原型光谱分裂光伏系统,制造和测试。在光谱分裂系统中,在光谱带中划分入射光灯,以通过横向分离的一组单结PV电池进行最佳转换。本文中的VHL光谱分裂系统具有类似于常规硅PV模块的形状因素,但效率较高(> 30%)。与过去已经提出的许多其他频谱分裂系统不同,该工作中的系统在使用廉价的1轴跟踪系统的同时转换直接和漫射阳光。 VHL系统使用全息透镜,所述全息镜头将光在转换波长下聚焦到两个PV电池之间的边界。将较长的波长光分散到窄的带隙单元和较短的波长光到宽带隙单元。原型系统采用硅和GaAs PV电池设计。通过顺序掩蔽曝光,通过“缝合”透镜段,在CoVestro Bayfol HX光聚合物中制造全息镜片。特征在于光伏电池和全息透镜,与光栅模拟中使用数据,并预测与非光谱分裂参考相比的总功率输出的提高。实验室测量产生的功率输出为8.5%。

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