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An accurate method for parameters determination of current voltage characteristics of photovoltaic modules

机译:光伏模块电流电压特性参数的准确方法

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The solar power conversion capacity and the output performance of photovoltaic devices, depend mainly on the electrical characteristics of the cell, the module or the array. Therefore, knowing precisely the current versus voltage characteristics remains essential to perform the productivity as well as the solar efficiency of these devices. Researchers presented several methods, but the precise determination of the PV cell parameters remains a challenge. In this paper, we describe with rigorous way an analytical and simple method giving directly the expression of the photocurrent, the diode reverse saturation current, the shunt resistance, the series resistance and the ideality factor for a one exponential model. The three points usually used, at short circuit current, the maximum power and at open circuit, give four equations for the determination of unknown parameters. The fifth equation is at the point corresponding to half of the short circuit current. These equations are reduced to two nonlinear equations with two unknown parameters easily solved by the MathCAD software. The test of a polycrystalline Pv module is performed in a laboratory, the numerical values obtained give the best results compared to some previous methods and show a minimal error. A study about temperature effect on the all parameters was also made and shows a good conformity with the theoretical models, which proof the accuracy of the method.
机译:光伏器件的太阳能转换容量和输出性能主要取决于电池,模块或阵列的电气特性。因此,精确了解电流与电压特性仍然是必不可少的,以执行这些设备的生产率以及太阳能效率。研究人员提出了几种方法,但PV细胞参数的精确测定仍然是一个挑战。在本文中,我们用严格的方式描述了一种分析和简单的方法,直接给出光电流,二极管反向饱和电流,分流电阻,串联电阻和理想性因子的表达。通常使用的三个点,在短路电流,最大功率和开路处,提供四个方程,用于确定未知参数。第五等式位于对应于短路电流的一半的点。这些等式减少到两个非线性方程,其中Mathcad软件容易解决两个未知参数。多晶PV模块的测试在实验室中进行,与某些先前的方法相比,获得的数值提供了最佳结果,并显示最小误差。还制造了关于所有参数的温度效应的研究,并显示了与理论模型的良好符合性,证明了该方法的准确性。

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