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Parameters Estimation of Solar PV Modules Based on Single-Diode Model

机译:基于单二极管模型的太阳能光伏模块参数估计

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Solar photovoltaic (PV) systems directly convert sun light into electricity. The accurate modelling of solar PV modules is essential when designing PV systems, and it requires the correct estimation of a number of parameters, such as: diode ideality factor, series and shunt resistances. These values are not included in the manufacturer's datasheet, and they must be estimated by the modeller to predict the performance of the solar PV module. The aim of this paper is modelling and simulation of solar PV module by estimating parameters of nonlinear I-V curve of solar PV module using a single-diode model. The parameters estimation is carried out by numerical technique using Newton-Raphson method by adjusting the I-V curve at three points which are provided by all commercial datasheets: short circuit current, maximum power, and open circuit voltage. The established model allows to predict the performance of the solar PV module at different environmental factors. The accuracy of the model is validated by testing KYOCERA KC125GT solar PV module at field. Results of the analysis presented in this paper show that the established model presents favorable efficiency.
机译:太阳能光伏(PV)系统直接将阳光转换为电力。在设计光伏系统时,太阳能光伏模块的精确建模是必不可少的,并且需要正确估计许多参数,例如:二极管理想因子,系列和分流电阻。这些值不包含在制造商的数据表中,并且必须由Modeller估算,以预测太阳能光伏模块的性能。本文的目的是通过使用单二极管模型估计太阳能光伏模块的非线性I-V曲线的参数来建模和仿真太阳能光伏模块。参数估计通过使用Newton-Raphson方法通过使用所有商业数据表提供的三个点调整I-V曲线的数值技术来执行:短路电流,最大功率和开路电压。建立的模型允许预测太阳能光伏模块在不同的环境因素处的性能。通过在现场测试Kyocera KC125GT Solar PV模块来验证模型的准确性。本文提出的分析结果表明,建立的模型呈现良好效率。

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