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Accurate parametrization and methodology for selection of pertinent single diode photovoltaic model with improved simulation efficiency

机译:准确的参数化和方法,用于选择相关的单二极管光伏模型,并提高了仿真效率

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摘要

An accurate model of photovoltaic (PV) panel is indispensable for simulations studies. In general, the PV circuit parameters for simulation studies are extracted from the manufacturer's data sheet under different environmental conditions. The PV characterizing equations are nonlinear and requires a more involved computation. This paper presents a fast convergent third order Newton-type method to solve such nonlinear equations and thereby, to accurately parameterize any of the possible PV circuit models. The applicability and suitability of the proposed method are demonstrated through modeling of multi and mono-crystalline PV cells. Further an algorithm to evaluate the efficacy of the available methods and the proposed method is presented. PV characteristics of the suitable circuit model at various levels of temperature and irradiation are also examined. Finally, the effectiveness of the developed method is comprehensively assessed through comparison with the most recent and available effective techniques by considering various performance indices based on current-voltage, power-voltage curves and experimental data is carried out.
机译:精确的光伏(PV)面板模型对于仿真研究是必不可少的。通常,用于仿真研究的PV电路参数是在不同环境条件下从制造商的数据表中提取的。 PV表征方程是非线性的,需要更多的计算。本文提出了一种快速收敛的三阶牛顿型方法来求解此类非线性方程,从而准确地参数化任何可能的PV电路模型。通过对多晶和单晶光伏电池建模,证明了该方法的适用性和适用性。进一步提出了一种评估可用方法和所提出方法的有效性的算法。还检查了各种温度和辐射水平下合适电路模型的PV特性。最后,通过考虑基于电流-电压,功率-电压曲线和实验数据的各种性能指标,通过与最新和可用的有效技术进行比较,全面评估了所开发方法的有效性。

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