采用解析与数值相结合的方法确定了光伏电池模型的四个参数

R. Majdoul, E. Abdelmounim, M. Aboulfatah, A. Touati, A. Moutabir, A. Abouloifa
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引用次数: 26

摘要

本工作的主要贡献是提出了一种高效准确的方法来识别和确定光伏组件等效电路元件的值,仅使用精确的解析方程和四个制造商的数据参考,即开路电压(VOC),短路电流(ISC)和最大功率点的电流和电压(IM, VM)。所有使用的方程都是通过透明的分析程序得到的。为了避免在提取串联电阻参数时进行任何数学简化或其他物理假设,提出了一种快速准确的迭代数值方法。为了确定四个或五个PV参数模型,许多作者提出了几个程序,这些程序需要整个实验I-V曲线或基于许多估计,假设和简化来解决非线性I-V方程。这些技术导致PV参数模型具有最小的误差。我们将这种组合方法应用于光伏组件的四参数单二极管模型的提取。通过将模型仿真结果与产品制造商提供的数据进行对比,在Matlab/Simulink环境下对该方法的有效性进行了评估和验证。它设想这项工作对于需要精确、快速和准确的方法来模拟各种环境条件下的光伏组件的光伏电力电子设计人员非常有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combined analytical and numerical approach to determine the four parameters of the photovoltaic cells models
The main contribution of this work is to propose an efficient and accurate method for identifying and determining the values of equivalent circuit elements of photovoltaic module using only exact analytical equations and four manufacture's data reference, i.e., the open-circuit voltage (VOC), the short-circuit current (ISC) and the current and the voltage at the maximum power point (IM, VM). All used equations were obtained with a transparent analytical procedure. To avoid using any mathematical simplifications or other physical assumptions when extracting RS (series resistance) parameter, a fast and accurate iterative numerical method is proposed. For determine a four or five PV parameters model, many authors proposed several procedures that require the entire experimental I-V curves or based on many estimations, assumptions and simplifications for solving non-linear I-V equations. These techniques lead to a PV parameters model with a minimum error. We apply this combined method in order to extract the four-parameter Single-Diode models of photovoltaic modules. The effectiveness of this approach is evaluated and validated by Matlab/Simulink environment, through comparison of simulation results of the model to the data provided by product's manufacturer. It envisaged that this work is very useful for PV power electronics designers who require exact, fast and accurate approach for modeling emulating their photovoltaic modules under various environmental conditions.
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