首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >An in-depth analysis of the silicon solar cell key parameters' optimal magnitudes using PC1D simulations
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An in-depth analysis of the silicon solar cell key parameters' optimal magnitudes using PC1D simulations

机译:使用PC1D仿真对硅太阳能电池关键参数的最佳幅度的深入分析

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摘要

In this study, the optimal magnitudes of silicon solar cell key parameters were calculated and verified using the PC1D simulation program. By varying the parameters such as emitter thickness, base thickness, emitter dopant density and base dopant density, the corresponding I-V curves were generated. According to open circuit voltage (V-oc) and short circuit current (I) in I-V curves, the optimum magnitudes of these parameters were determined. The results were validated by investigating the factors related to the carrier transmission mechanism including diffusion length, minority carrier lifetime, photogeneration and conductivity in a cell. Hence, the paper demonstrates the best magnitudes for emitter thickness, base thickness, emitter dopant density and base dopant density are 0.1 mu m, 100 mu m, 10(20) cm(-3) and 5 x 10(16) cm(-3) respectively. Furthermore, the optimized parameters obtained from simulations show good agreement with corresponding values of one commercial crystalline solar cell. The study proves that PC1D can provide reliable reference values for solar cell design process. (C) 2018 Elsevier GmbH. All rights reserved.
机译:在该研究中,使用PC1D仿真程序计算和验证硅太阳能电池关键参数的最佳大小。通过改变诸如发射极厚度,基础厚度,发射极掺杂剂密度和基础掺杂剂密度的参数,产生了相应的I-V曲线。根据I-V曲线的开路电压(V-OC)和短路电流(I),确定这些参数的最佳幅度。通过研究与载体传递机制有关的因素来验证结果,包括扩散长度,少数载体寿命,光源和电池中的电导率。因此,本文证明了发射极厚度,基础厚度,发射极掺杂剂密度和基础掺杂剂密度的最佳幅度为0.1μm,100μm,10(20)cm(-3)和5×10(16)cm( - 3)分别。此外,从仿真获得的优化参数显示出与一个商业结晶太阳能电池的相应值良好的一致性。该研究证明,PC1D可以为太阳能电池设计过程提供可靠的参考值。 (c)2018年Elsevier GmbH。版权所有。

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