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Maximization of conversion efficiency based on global normal irradiance using hybrid concentrator photovoltaic architecture

机译:使用混合聚光器光伏架构,基于全球正常辐照度,最大程度地提高转换效率

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Maximization of module conversion efficiency based on global normal irradiance (GNI) rather than direct normal irradiance (DNI) was experimentally demonstrated using a hybrid concentrator photovoltaic (CPV) architecture in which a low-cost solar cell (a bifacial crystalline silicon cell) was integrated with a high-efficiency concentrator solar cell (III V triple-junction cell) to harvest diffuse sunlight. The results of outdoor experiments showed that the low-cost cell enhanced the generated power by factors of 1.39 and 1.63 for high-DNI and midrange-DNI conditions, respectively, and that the resultant GNI-based module efficiencies were 32.7% and 25.6%, respectively. (C) 2016 The Authors. Progress in Photovoltaics: Research and Applications published by John Wiley & Sons Ltd.
机译:使用混合聚光光伏(CPV)架构,其中集成了低成本太阳能电池(双面晶体硅电池),通过实验证明了基于整体正常辐照度(GNI)而非直接正常辐照度(DNI)的模块转换效率的最大化配备高效的聚光太阳能电池(III V三结电池)以收集漫射的阳光。室外实验的结果表明,对于高DNI和中距离DNI条件,低成本电池将产生的功率分别提高了1.39和1.63倍,并且基于GNI的模块效率为32.7%和25.6%,分别。 (C)2016作者。光伏技术的进展:研究与应用,John Wiley&Sons Ltd.出版。

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