基于微型全光谱模拟器的光伏板实时仿真

S. Ritika, A. Yadav, G. Narayanan
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引用次数: 5

摘要

光伏板的实时仿真可用于光伏应用中电力电子变换器拓扑结构和控制的研究。本文介绍了一个用于教育目的的微型全光谱模拟器(mini-FSS)对光伏板的实时模拟。在实时仿真器上,利用牛顿-拉夫森法求解了光伏板的数学模型。这可以在给定的辐照和温度下提供任意负载电阻下PV面板的输出电压和电流,消耗小于50μs。通过反复求解不同电阻值下的模型,得到市售光伏面板(即KT200C)在不同温度和辐照值下的IV和PV特性。实时仿真结果与理论计算结果相吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-time simulation of photovoltaic panel on miniature full spectrum simulator
Real-time simulation of photovoltaic (PV) panel can be used for research on power electronic converter topologies and control for PV applications. This paper presents real-time simulation of PV panel using a miniature full spectrum simulator (mini-FSS), developed for educational purposes. A mathematical model of the PV panel is solved using Newton Raphson method on the real-time simulator. This can provide the output voltage and current of the PV panel for any load resistance at a given irradiation and temperature, consuming less than 50μs. By repeatedly solving the model for different values of resistances, the IV and PV characteristics of a commercially available PV panel (i.e. KT200C) are obtained for different values of temperature and irradiation. The real-time simulation results are validated with theoretical results based on calculations.
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