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Concentrating and spectrum splitting optical device in high efficiency CPV module with five bandgaps

机译:五效CPV模块中的集中和光谱分裂光学装置,五个带隙

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There is a need for a high efficiency low cost solar energy conversion system. Currently, most concentrating photovoltaic (CPV) systems concentrate the solar spectrum onto triple junction cells to strive for high conversion efficiencies and low cost. Other approaches to high efficiency use spectrum splitting. Triple junction systems are limited in efficiency and spectrum splitting systems are usually too costly for mass production. The objective is to design a spectrum splitting solar concentrator, using reverse ray tracing methods, to overcome the efficiency and cost limitations of current systems by using a single low cost optical device to concentrate and split the solar spectrum onto a large number of target photovoltaic (PV) cells. Dispersive properties of standard optical materials, such as glass or plastic, are utilized to achieve the desired spectral separation. Reverse ray tracing is used to simultaneously optimize the shape of the top and bottom interfaces of the solar concentrator to achieve the desired split spectrum at the target PV cells. Additional strategies to increase system efficiency and minimize optical losses, including draft surface shading and corner rounding losses, are explored. A CPV module, including the spectrum splitting solar concentrator and five PV cells of different bandgaps, is proposed. This spectrum splitting CPV system has a calculated aggregate cell conversion efficiency that exceeds 45%, has the potential to be mass produced, and meets the need for a high efficiency low cost solar energy conversion system.
机译:有需要一种高效率低成本太阳能转换系统。目前,大多数聚光光伏(CPV)系统集中太阳光谱到三结电池,争取高转换效率和低成本。其他的方法来高效率地使用频谱分割。三结系统效率和频谱分割系统限于通常太昂贵的量产。其目的是通过使用单一的低成本光学装置的浓缩物来设计光谱分离太阳能集中器,使用反向射线跟踪方法,以克服现有系统的效率和成本的限制和太阳光谱分离到大量目标光伏( PV)电池。的标准光学材料色散性质,例如玻璃或塑料,被利用以实现期望的光谱分离。反向射线跟踪用于将顶部的同时优化的形状和太阳能集中器的底部接口来实现在目标PV电池所需的分割光谱。其它策略,以增加系统的效率和最小化光损耗,包括表面草案阴影和圆角损失,进行了探索。甲CPV模块,包括光谱分离太阳能集中器和不同带隙的5 PV电池,提出了。此光谱分离CPV系统具有超过45%计算的聚合电池的转换效率,必须被大量生产的潜力,并符合对高效率低成本的太阳能转换系统的需要。

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