Performance analysis of a 310Wp photovoltaic module based on single and double diode model

M. Q. Duong, H. Nguyen, S. Leva, M. Mussetta, G. Sava, S. Costinas
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引用次数: 14

Abstract

This paper presents a complete simulator developed in Matlab™ for a photovoltaic (PV) module. The most important contributions of the paper is the use of single and double diode model to simulate a PV module. In the paper are also implemented numerical methods to provide more characteristic parameters that are not provided by the manufacturers such as Rs, Rp, Ipv, I01 and I02. The numerical methods are suitably implemented to face the nonlinear nature of I-V and P-V curves that are characteristics to PV output. The accuracy of the simulator using single and double diode models is verified by applying the data-sheet from manufacturers. Furthermore, the double-diode model simulation results performed in Matlab™ are analyzed in comparison with the experimental data of a real 310 Wp photovoltaic module unit. The paper also highlights the effects of different shunt and series resistances and how it operates in different temperature conditions and irradiation levels.
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基于单二极管和双二极管模型的310Wp光伏组件性能分析
本文介绍了一个用Matlab™开发的完整的光伏(PV)模块模拟器。本文最重要的贡献是使用单二极管和双二极管模型来模拟光伏组件。本文还采用数值方法提供了Rs、Rp、Ipv、I01、I02等厂家没有提供的更多特征参数。数值方法适合于面对作为PV输出特征的I-V和P-V曲线的非线性特性。通过应用厂商提供的数据表,验证了采用单二极管和双二极管模型的模拟器的精度。在Matlab™中对双二极管模型的仿真结果进行了分析,并与实际310wp光伏组件单元的实验数据进行了对比。本文还强调了不同并联和串联电阻的影响,以及它如何在不同的温度条件和辐照水平下工作。
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