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Comparative Analysis of Different Single-Diode PV Modeling Methods

机译:各种单二极管光伏建模方法的比较分析

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Modeling of photovoltaic (PV) systems is essential for the designers of solar generation plants to do a yield analysis that accurately predicts the expected power output under changing environmental conditions. This paper presents a comparative analysis of PV module modeling methods based on the single-diode model with series and shunt resistances. Parameter estimation techniques within a modeling method are used to estimate the five unknown parameters in the single diode model. Two sets of estimated parameters were used to plot the characteristics of two PV modules, i.e., SQ80 and KC200GT, for the different sets of modeling equations, which are classified into models 1 to 5 in this study. Each model is based on the different combinations of diode saturation current and photogenerated current plotted under varying irradiance and temperature. Modeling was done using MATLAB/Simulink software, and the results from each model were first verified for correctness against the results produced by their respective authors. Then, a comparison was made among the different models (models 1 to 5) with respect to experimentally measured and datasheet curves. The resultant plots were used to draw conclusions on which combination of parameter estimation technique and modeling method best emulates the manufacturer specified characteristics.
机译:光伏(PV)系统的建模对于太阳能发电厂的设计人员进行收益分析以准确预测在变化的环境条件下的预期功率输出至关重要。本文介绍了基于具有串联电阻和并联电阻的单二极管模型的光伏组件建模方法的比较分析。建模方法中的参数估计技术用于估计单个二极管模型中的五个未知参数。对于两组不同的建模方程式,使用两组估计参数绘制两个PV模块的特性(即SQ80和KC200GT),在本研究中将其分类为模型1-5。每个模型都基于在变化的辐照度和温度下绘制的二极管饱和电流和光生电流的不同组合。使用MATLAB / Simulink软件进行建模,首先验证每个模型的结果相对于其各自作者产生的结果的正确性。然后,就实验测量数据表和数据表曲线对不同模型(模型1至5)进行了比较。结果图用于得出结论,在该结论上,参数估计技术和建模方法的组合可以最好地模拟制造商指定的特性。

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