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Experimental Analysis of Photovoltaic Modeling for Partially Shading Conditions

机译:部分遮蔽条件下光伏建模的实验分析

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Predicting the behavior of I-V and P-V curves for photovoltaic (PV) generation is possible through mathematical models for photovoltaic cells. However, current models are made for uniform conditions, making it difficult to analyze in case of non-uniform conditions such as partially shading conditions (PSC). At this point, the present work applied the Villalva's model in non-uniform conditions, transformed by the curve superposition technique for different scenarios, and later, reproduces the scenarios experimentally. The experimental scenarios used a photovoltaic system with certain black objects were positioned on the PV modules. In this way, it was possible to compare the transformed mathematical model for non-uniform conditions with real curves of a photovoltaic system. As results, the I-V and P-V curves generated by the model were closer to the experimental tests and the values of absolute and root mean square errors were acceptable. Thus, it has been proven experimentally that with the transformation by the curve superposition technique the photovoltaic modeling can be used for PV studies under PSC.
机译:通过光伏电池的数学模型,可以预测I-V和P-V曲线对光伏(PV)生成的行为。但是,当前模型是针对统一条件制作的,因此在非统一条件下(例如部分阴影条件(PSC))很难进行分析。在这一点上,目前的工作是在非均匀条件下应用Villalva模型,通过曲线叠加技术将其转换为不同的场景,随后,通过实验再现了这些场景。实验场景使用光伏系统,其中某些黑色物体位于光伏模块上。以此方式,可以将用于非均匀条件的变换后的数学模型与光伏系统的真实曲线进行比较。结果,该模型生成的I-V和P-V曲线更接近实验测试,绝对和均方根误差的值都可以接受。因此,已通过实验证明,通过曲线叠加技术进行转换,光伏建模可用于PSC下的PV研究。

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