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Geometric properties of the single-diode photovoltaic model and a new very simple method for parameters extraction

机译:单二极管光伏模型的几何特性和一种非常简单的参数提取新方法

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One of the most important models to predict the electrical behavior of a photovoltaic (PV) module is the so-called single-diode model. This model is derived from the electrical equivalent circuit formed by a current source in parallel with one diode, a shunt resistor and a series resistor. The model equation depends on five-parameters, if these parameters are obtained, it has been tested that this model fits accurately the real behavior of the PV module under a minimum of illumination. Nevertheless, the extraction of the parameters is quite difficult since none of the variables in the model equation can be expressed in explicit form. This fact also implies the difficulty of knowing the real properties of the current as an implicit function of the voltage in this model. Knowing these properties deeply will involve a more suitable use of the model and better understanding of the behavior of the photovoltaic module. The first goal of this paper is the rigorous mathematical study of the model. In particular, it is demonstrated that the model equation actually defines the current as an implicit function of the voltage which is indefinitely differentiable along the real line. We will provide the most significant geometric properties of the current function by means of the study of the first and the second derivatives functions which are also implicitly given. The second goal of the paper is, given real data of voltage and current measured from a PV module, to show how the parameters of the model equation can be extracted in a very simple way, giving rise to an estimated curve which fits accurately the real one. The proposed new analytical method is as good, for instance, as the well-known analytical five point method but significantly simpler.
机译:预测光伏(PV)模块电行为的最重要模型之一是所谓的单二极管模型。该模型源自电流等效电路,该电流等效电路由与一个二极管,并联电阻器和串联电阻器并联的电流源形成。模型方程取决于五个参数,如果获得了这些参数,则已经测试过,该模型可以精确地拟合在最小照明条件下光伏组件的实际性能。然而,由于模型方程中的任何变量都不能以显式形式表示,因此参数的提取非常困难。这个事实也暗示了在该模型中很难知道电流的真实特性作为电压的隐函数。深入了解这些特性将涉及更合适地使用模型并更好地理解光伏模块的行为。本文的首要目标是对该模型进行严格的数学研究。特别地,证明了模型方程实际上将电流定义为电压的隐函数,该电压沿实线是无限可微的。通过研究也隐式给出的一阶和二阶导数函数,我们将提供当前函数的最重要的几何特性。本文的第二个目标是,给定从PV模块测得的电压和电流的真实数据,以显示如何以非常简单的方式提取模型方程的参数,从而产生一条与真实实测值完全吻合的估计曲线。一。例如,所提出的新分析方法与众所周知的分析五点方法一样好,但简单得多。

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