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Five-parameter model of photovoltaic cell based on STC data and dimensionless

机译:基于STC数据和无量纲的光伏电池五参数模型

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This paper offers a novel approach of the “singlediode” equivalent circuit model estimation, which is based on analysis of the characteristics of the solar panel supplied by the manufacturer. The method combines solution of a system of algebraic equations with optimization algorithm for extracting the seven photovoltaic module parameters of the single diode lumped circuit model. These parameters are the photocurrent, the reverse bias saturation current, the ideality factor, the series resistance, the shunt resistance, the bandgap energy, and the temperature coefficient of the photo-generating current. A minimal set of experimental data is required for parameter extraction. In many cases, the required parameters can be extracted directly from the manufacturer's data. The number of solar panels of different types of manufacturers were analyzed. All the models have been obtained from the manufacturer's data only. The precision of simulation results is about 0.1%–0.5% for STC.
机译:本文提供了一种新颖的“单极”等效电路模型估计方法,该方法基于对制造商提供的太阳能电池板特性的分析。该方法将代数方程组的解与优化算法相结合,用于提取单二极管集总电路模型的七个光伏模块参数。这些参数是光电流,反向偏置饱和电流,理想因子,串联电阻,并联电阻,带隙能量和光生电流的温度系数。参数提取需要最少的实验数据集。在许多情况下,可以直接从制造商的数据中提取所需的参数。分析了不同类型制造商的太阳能电池板数量。所有模型仅从制造商的数据中获得。对于STC,仿真结果的精度约为0.1%–0.5%。

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