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Design of 2- and 3-terminal GaInP/GaAs concentrator cells for maximum yearly energy output

机译:2端子和3端子GaInP / GaAs集中器的设计可实现最大的年度能量输出

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Two important factors in achieving maximum power output in a multi-junction concentrator solar cell are selecting optimal sub-cell band gaps and absorber layer thicknesses. This optimization is spectrum-dependent and does not guarantee maximum yearly energy delivery, as the distribution of spectral energy varies throughout the day and year. A simple, detailed-balance model may be used in this optimization, though detailed numerical models are ideal as the specifics of the cell structure can be incorporated. In this paper, a particular GaInP/GaAs tandem structure is optimized using ADEPT to show that maximum yearly energy delivery is achieved by optimizing under a mid-November spectrum.
机译:在多结聚光太阳能电池中实现最大功率输出的两个重要因素是选择最佳子电池带隙和吸收层厚度。此优化取决于频谱,并且不保证最大的年度能量传递,因为频谱能量的分布在一天和一年中都在变化。尽管可以使用详细的数值模型,因为可以合并单元格结构的详细信息,但理想的方法是可以使用简单的详细平衡模型进行此优化。在本文中,使用ADEPT对特定的GaInP / GaAs串联结构进行了优化,以表明通过在11月中旬的光谱范围内进行优化,可以实现最大的年度能量输送。

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