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Cell thickness optimization of dual junction InGaP/GaAs solar cell against temperature variation

机译:双结Ingap / GaAs太阳能电池对温度变化的电池厚度优化

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A numerical modelling of highly efficient InGaP/GaAs dual-junction solar cell using advanced TCAD tool Silvaco ATLAS gives a theoretical conversion efficiency up to 31.08% at 1 sun under AM1.5 illumination. Within a temperature range from 0 to 150°C, the critical performance parameter such as Jsc, Voc and Photogeneration rates of this optimised cell were extracted. It is found that with the increase in the cell temperature, the sub cells quantum efficiencies increase slightly and due to the energy gap narrowing effect with increase in cell temperature, the red-shift phenomena of absorption limit for all sub cells are observed. It was also found that with increased in temperature, Voc decreases which are due to the increase in reverse saturation current, thereby leading to the decrease in the overall FF and efficiency of the solar cell. This work therefore calculates the optimum thickness of the modelled solar cell so that maximum efficiency is gained even if the temperature is elevated.
机译:使用先进的TCAD工具Silvaco Atlas的高效InGaP / GaAs双结太阳能电池的数值模型在AM1.5照明下,在1阳光下,理论转换效率高达31.08%。在0至150℃的温度范围内,提取诸如JSC,VOC和光源率的临界性能参数。结果发现,随着细胞温度的增加,亚细胞量子效率略微增加并且由于细胞温度的增加,由于细胞温度的增加,观察到所有子细胞的吸收极限的红移现象。还发现,随着温度的增加,VOC减少,这是由于反向饱和电流的增加,从而导致太阳能电池的总体FF和效率降低。因此,这项工作计算了所建模的太阳能电池的最佳厚度,从而即使温度升高,也可以获得最大效率。

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