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Numerical determination of series and shunt resistances using the Lambert W-function

机译:使用Lambert W函数数值确定串联电阻和分流电阻

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A number of methods currently exist to determine the values of series and shunt resistance of a solar cell which are generally unpublished and necessary for modeling of photovoltaic systems. A new method is proposed to numerically locate these values using the popular Newton-Raphson technique at maximum power point from data predominantly provided by manufacturer data sheets. Equations based on the Lambert W-function and their partial derivatives are provided so that all calculations can be performed in a Matlab or similar environment. The results of this new method are presented and compared with one current method and the analytical results obtained by Charles et al. [1] for a blue and grey type solar cells which were selected based on their largely varying characteristics. Values determined with the proposed method agreed with benchmark results in all cases and with greater accuracy over the alternative method studied. Additionally, values for both series and shunt resistance were determined quickly with quadratic convergence.
机译:当前存在许多确定太阳能电池的串联电阻和分流电阻的值的方法,这些方法通常是未公开的并且对于光伏系统的建模是必需的。提出了一种新的方法,该方法使用流行的Newton-Raphson技术从制造商数据表中主要提供的数据在最大功率点上对这些值进行数值定位。提供了基于Lambert W函数及其偏导数的方程,以便可以在Matlab或类似环境中执行所有计算。提出了这种新方法的结果,并与一种现有方法进行了比较,并结合了Charles等人的分析结果。 [1]是针对蓝色和灰色类型的太阳能电池而选择的,这些太阳能电池是根据其变化很大的特性而选择的。在所有情况下,使用建议方法确定的值均与基准结果相符,并且比研究的替代方法具有更高的准确性。此外,通过二次收敛快速确定串联电阻和分流电阻的值。

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