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A comparison of 3rd generation solar cell efficiencies using thermodynamic transfer functions: Which method is best?

机译:使用热力学传递函数比较第三代太阳能电池效率:哪种方法最好?

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Exceeding the Shockley-Queisser efficiency limit for a single junction solar cell has been theorized using various means. Specifically, up- and down-conversion, carrier multiplication and intermediate band transitions have been posited as methods of improving the efficiency. Here, we compare these methods using a thermodynamic approach with a newly devised pseudo-linear system model. This method allows a schematic interpretation of the internal processes of efficiency enhancement techniques. In particular, we demonstrate that down-conversion is thermodynamically preferable to carrier multiplication, and that splitting the sun's spectrum before impinging upon the solar cell is preferable to attempting to do this within the solar cell itself.
机译:已经使用各种手段对超出单结太阳能电池的Shockley-Queisser效率极限进行了理论分析。具体地,已经提出了上转换和下转换,载波乘法和中间带转换作为提高效率的方法。在这里,我们将使用热力学方法的这些方法与新设计的伪线性系统模型进行比较。这种方法可以对效率增强技术的内部过程进行示意性解释。尤其是,我们证明了下转换在热力学上比载流子乘法更可取,并且在撞击太阳能电池之前先将太阳的光谱分开比在太阳能电池本身中尝试这样做更可取。

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