Impact of External Electric Field on the Performance Parameters of PV Solar Cells under High Light Concentration

Soro Boubacar, Tchouadep Guy Serge, Sourabie Idrissa, K. E. Tchedre, Son Souleymane, Zerbo Issa, Zoungrana Martial
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Abstract

The performance of a photovoltaic solar cell depends on a number of external and internal factors. It then appears imperative that investigations be carried out to identify the factors favourable or unfavourable to the proper operation of the photovoltaic cell. It is in this context that we study the influence of an external variable electric field on the electric parameters of a photovoltaic solar cell under light concentration of 50 suns. After the presentation of the model of a photovoltaic solar cell used in our study and formulated the assumptions, we have established the expressions of electric parameters as function of the external electric field E0. Then, by using numerical simulation with MATCAD software, we plotted the curves of electric parameters versus the external electric field. From analysis of the curves, it appears that the short-circuit photocurrent density, electric power, fill factor and conversion efficiency increases with the increase in the intensity of the external electric field. On the other hand, it appears a drop in open circuit photovoltage and series resistance with the increase in the intensity of the external electric field.
外部电场对高聚光条件下光伏太阳能电池性能参数的影响
光伏太阳能电池的性能取决于许多外部和内部因素。因此,当务之急是进行研究,找出对光伏电池正常工作有利或不利的因素。正是在这种情况下,我们研究了外部可变电场在 50 太阳光浓度下对光伏太阳能电池电参数的影响。在介绍了研究中使用的光伏太阳能电池模型并提出假设后,我们建立了电参数与外部电场 E0 的函数关系表达式。然后,通过使用 MATCAD 软件进行数值模拟,我们绘制了电参数随外电场变化的曲线。从曲线分析来看,短路光电流密度、电功率、填充因子和转换效率随着外电场强度的增加而增加。另一方面,开路光电压和串联电阻随着外电场强度的增加而下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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