光伏板标准模型与简化模型的比较

M. R. Rashel, A. Albino, Angela Veiga, M. T. Ahmed, M. Tlemçani, Teresa Gonçalves
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引用次数: 2

摘要

肖克利二极管方程是单二极管模型方程的基础,它被广泛地用于表征光伏电池的输出和性能。在标准方程中,它包括不同类型参数的串联电阻Rs和分流电阻Rsh。以前所做的最大仿真和建模工作,涉及到单二极管光伏电池使用了这个方程。然而,还有另一种形式的标准方程没有包括串联电阻(Rs)和分流电阻(Rsh),因为分流电阻比负载电阻大得多,负载电阻比串联电阻大得多。对于这种现象,在光伏电池内发生非常小的功率损耗。本文主要研究了两种形式的肖克利二极管基本方程的比较。该分析描述了对光伏电池的深刻理解,以及对光伏电池中的串联电阻(Rs)和并联电阻(Rsh)行为的理解。为了对光伏系统进行实时估计,需要更快的计算速度。没有串联电阻和并联电阻的方程适用于实时环境。分析了串联电阻(Rs)和并联电阻(Rsh)的误差函数,表明整个系统不受这两个参数的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of Photovoltaic panel's standard and simplified models
Shockley diode equation is basic for single diode model equation, which is overly used for characterizing the photovoltaic cell output and behavior. In the standard equation, it includes series resistance (Rs) and shunt resistance (Rsh) with different types of parameters. Maximum simulation and modeling work done previously, related to single diode photovoltaic cell used this equation. However, there is another form of the standard equation which has not included Series Resistance (Rs) and Shunt Resistance (Rsh) yet, as the Shunt Resistance is much bigger than the load resistance and the load resistance is much bigger than the Series Resistance. For this phenomena, very small power loss occurs within a photovoltaic cell. This research focuses on the comparison of two forms of basic Shockley diode equation. This analysis describes a deep understanding of the photovoltaic cell, as well as gives understanding about Series Resistance (Rs) and Shunt Resistance (Rsh) behavior in the Photovoltaic cell. For making estimation of a real time photovoltaic system, faster calculation is needed. The equation without Series Resistance and Shunt Resistance is appropriate for the real time environment. Error function for both Series resistance (Rs) and Shunt resistances (Rsh) have been analyzed which shows that the total system is not affected by this two parameters' behavior.
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