Silicon Solar Cell Space Charge Region and Capacitance Behavior under Electric Field

B. Zouma, F. I. Barro, Prince Abdoul Aziz Honadia
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引用次数: 1

Abstract

This paper investigates theoretically the behavior of the space charge region of a silicon solar cell and its associated capacitance under the effect of an external electric field. The purpose of this work is to show that under illumination the solar cell’s space charge region width varies with both operating point and the external induced electric field and how the solar cell capacitance varies with the space charge region width. Based on a 1D modelling of the quasi-neutral p-base, the space charge region width is determined and the associated capacitance is calculated taking into account the external electric field and the junction dynamic velocity. Based on the above calculations and simulations conducted with Mathcad, we confirmed the linear dependence of the inverse capacitance with space charge region width for thin space charge region and we exhibit an exponential dependence for large space charge region.
电场作用下硅太阳能电池空间电荷区及电容行为
本文从理论上研究了在外加电场作用下硅太阳能电池空间电荷区及其相关电容的行为。本研究的目的在于揭示在光照条件下,太阳能电池的空间电荷区宽度随工作点和外加感应电场的变化规律,以及太阳能电池的电容随空间电荷区宽度的变化规律。基于准中性p基的一维模型,确定了空间电荷区宽度,并计算了考虑外电场和结动态速度的相关电容。基于上述计算和Mathcad模拟,我们证实了反电容与空间电荷区宽度在薄空间电荷区呈线性相关,而在大空间电荷区呈指数相关。
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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