Experimental test of the performances of a photovoltaic modules model

V. Boscaino, G. Cipriani, V. Di Dio, R. Miceli, G. Capponi
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引用次数: 1

Abstract

In this paper, a measurement-based modeling technique for PV panels oriented to power electronics design is proposed. The proposed modelling approach aims at an accurate modeling of the whole PV curve and not only around a few remarkable points. The proposed approach is based on an experimental characterization of the module under test. In fact, the incompleteness of manufacturers' data and the knowledge of physical parameters are the main source of inaccuracy in existing modelling approaches. The proposed approach is applied to a four lumped parameters model of a Conergy E215P solar module. Tests are performed under natural light. The parameter identification procedure is described in detail. Simulation and experimental results are compared to test the accuracy of the proposed model. As it will be shown by the comparison between simulation and experimental results, the worst-case model current error within the current source region is equal to 1.19% and the worst-case voltage error is equal to 2.9% within the voltage source region.
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光伏组件模型性能的实验测试
本文提出了一种面向电力电子设计的基于测量的光伏板建模技术。所提出的建模方法旨在对整个PV曲线进行精确建模,而不仅仅是围绕几个值得注意的点。所提出的方法是基于被测模块的实验表征。事实上,制造商数据的不完整性和物理参数的知识是现有建模方法不准确的主要来源。将该方法应用于Conergy E215P太阳能组件的四集总参数模型。测试在自然光下进行。详细描述了参数辨识过程。仿真结果与实验结果进行了比较,验证了所提模型的准确性。通过仿真与实验结果的对比可以看出,电流源区域内的最坏情况模型电流误差为1.19%,电压源区域内的最坏情况电压误差为2.9%。
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