Optimization of accurate estimation of single diode solar photovoltaic parameters and extraction of maximum power point under different conditions

IF 1.6 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
F. Akbar, T. Mehmood, K. Sadiq, M. F. Ullah
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引用次数: 6

Abstract

Introduction. With the snowballing requirement of renewable resources of energy, solar energy has been an area of key concern to the increasing demand for electricity. Solar photovoltaic has gotten a considerable amount of consideration from researchers in recent years. Purpose. For generating nearly realistic curves for the solar cell model it is needed to estimate unknown parameters with utmost precision. The five unknown parameters include diode-ideality factor, shunt-resistance, photon-current, diode dark saturation current, and series-resistance. Novelty. The proposed research method hybridizes flower pollination algorithm with least square method to better estimate the unknown parameters, and produce more realistic curves. Methodology. The proposed method shows many promising results that are more realistic in nature, as compared to other methods. Shunt-resistance and series-resistance are considered and diode constant is not neglected in this approach that previously has been in practice. The values of series-resistance and diode-ideality factor are found using flower pollination algorithm while shunt-resistance, diode dark saturation current and photon-current are found through least square method. Results. The combination of these techniques has achieved better results compared to other techniques. The simulation studies are carried on MATLAB/Simulink.
不同条件下单二极管太阳能光伏参数精确估计和最大功率点提取的优化
介绍随着可再生能源需求的滚雪球式增长,太阳能已成为电力需求日益增长的关键关注领域。近年来,太阳能光伏发电得到了研究人员的大量考虑。意图为了生成太阳能电池模型的几乎真实的曲线,需要以最大的精度估计未知参数。五个未知参数包括二极管理想因子、并联电阻、光子电流、二极管暗饱和电流和串联电阻。新颖性所提出的研究方法将花授粉算法与最小二乘法相结合,可以更好地估计未知参数,并生成更真实的曲线。方法论与其他方法相比,所提出的方法显示了许多有希望的结果,这些结果在本质上更现实。这种方法考虑了并联电阻和串联电阻,并且二极管常数在以前的实践中不被忽视。用花授粉算法求出串联电阻和二极管理想因子的值,用最小二乘法求出并联电阻、二极管暗饱和电流和光子电流的值。后果与其他技术相比,这些技术的结合取得了更好的结果。在MATLAB/Simulink上进行了仿真研究。
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来源期刊
Electrical Engineering & Electromechanics
Electrical Engineering & Electromechanics ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
2.40
自引率
50.00%
发文量
53
审稿时长
10 weeks
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