Stefancich Marco, Zayan Ahmed, Chiesa Matteo, Rampino Stefano, Roncati Dario, Kimerling Lionel, Michel Jurgen
Laboratory For Energy and Nano Sciences, Masdar Institute of Science and Technology, Abu Dhabi, United Arab Emirates.
Opt Express. 2012 Apr 9;20(8):9004-18. doi: 10.1364/OE.20.009004.
Shockley Read Hall equation poses a limit to the maximum conversion efficiency of broadband solar radiation attainable by means of a single bandgap converter. A possible approach to overcome such a limit is to convert different parts of the broadband spectrum using different single junction converters. We consider here a different modus operandi where a single low-cost optimized plastic prismatic structure performs simultaneously the tasks of concentrating the solar light and, based on the dispersive behavior of the employed material, spatially splitting it into its spectral component. We discuss its approach, optical simulations, fabrication issues and preliminary experimental results demonstrating its feasibility for cost effective high efficiency Concentrated Photovoltaic Systems (CPV) systems.
肖克利-里德-霍尔方程对通过单带隙转换器实现的宽带太阳辐射的最大转换效率构成了限制。克服这一限制的一种可能方法是使用不同的单结转换器来转换宽带光谱的不同部分。我们在此考虑一种不同的操作方式,即一个低成本的优化塑料棱柱结构同时执行聚光太阳光的任务,并基于所用材料的色散行为将其在空间上分解为光谱成分。我们讨论了其方法、光学模拟、制造问题以及初步实验结果,这些结果证明了其对于具有成本效益的高效聚光光伏(CPV)系统的可行性。