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Simple, fast and accurate two-diode model for photovoltaic modules

机译:用于光伏模块的简单,快速,准确的二二极管模型

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摘要

This paper proposes an improved modeling approach for the two-diode model of photovoltaic (PV) module. The main contribution of this work is the simplification of the current equation, in which only four parameters are required, compared to six or more in the previously developed two-diode models. Furthermore the values of the series and parallel resistances are computed using a simple and fast iterative method. To validate the accuracy of the proposed model, six PV modules of different types (multi-crystalline, mono-crystalline and thin-film) from various manufacturers are tested. The performance of the model is evaluated against the popular single diode models. It is found that the proposed model is superior when subjected to irradiance and temperature variations. In particular the model matches very accurately for all important points of the IV curves, i.e. the peak power, short-circuit current and open circuit voltage. The modeling method is useful for PV power converter designers and circuit simulator developers who require simple, fast yet accurate model for the PV module.
机译:本文针对光伏(PV)模块的二二极管模型提出了一种改进的建模方法。这项工作的主要贡献是简化了当前方程式,与先前开发的两二极管模型中的六个或更多参数相比,仅需要四个参数。此外,使用简单,快速的迭代方法可以计算出串联电阻和并联电阻的值。为了验证所提出模型的准确性,测试了来自不同制造商的六个不同类型(多晶硅,单晶和薄膜)的光伏模块。该模型的性能是根据流行的单二极管模型进行评估的。发现所提出的模型在经受辐照度和温度变化时是优越的。特别是,模型对于IV曲线的所有重要点(即峰值功率,短路电流和开路电压)非常精确地匹配。该建模方法对于需要简单,快速而准确的PV模块模型的PV功率转换器设计人员和电路模拟器开发人员很有用。

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