A Step by Step Analytical Solution to the Single Diode Model of a Solar Cell

Azoda Hubert Koffi, Esau Abeka Armah, Koffi Ampomah-Benefo, D. Dodoo‐Arhin
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Abstract

Making use of previous results where the series resistance, Rs, and the light-generated current, IL, of a solar cell are determined through the knowledge of the open-circuit voltage, Voc, the short-circuit current, Isc, the voltage and current at the maximum power point, Vmp and Imp, respectively, a simple and analytical step-by-step approach has been developed to determine the shunt resistance, Rsh, the reverse saturation current, Is and the ideality factor, A, of a solar cell. Making use of these results and with the knowledge of the operating temperature, T, this work demonstrates that a single I-V curve is enough to fully solve the transcendental equation governing the behavior of a solar cell in the Single-Diode Model.
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太阳能电池单二极管模型的逐级解析解
利用以前的结果,通过开路电压Voc、短路电流Isc、最大功率点电压和电流Vmp和Imp分别确定太阳能电池的串联电阻Rs和光产生电流IL,我们开发了一种简单的、分析性的逐步方法来确定太阳能电池的分流电阻Rsh、反向饱和电流Is和理想因数a。利用这些结果和工作温度T的知识,这项工作表明,一个单一的I-V曲线足以完全解决在单二极管模型中控制太阳能电池行为的超越方程。
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