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Maximum Power Peak Detection of Partially Shaded PV Panel by Using Intelligent Monkey King Evolution Algorithm

机译:基于智能猴王进化算法的部分遮光光伏电池板最大功率峰值检测

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摘要

This work deals with the development of an intelligent monkey king evolution (IMKE) algorithm for maximum power peak (MPP) detection under partially shaded condition in a solar photovoltaic (SPV) array. In IMKE algorithm, an additional intelligent decision taking ability is embedded with the monkey king evolution (MKE) algorithm, which magnifies all the options to closely observe the exact peak position. The MKE algorithm is good in terms of exploration and exploitation. However, the additional intelligent decision taking ability avoids the stagnation on local maxima and helps to quickly track the true global maximum position. The performance evaluation of IMKE algorithm is performed on ten types of power-voltage patterns of partially shaded SPV array, through MATLAB simulation, as well as through experimentation. Moreover, the effectiveness of all the results is verified through comparison with state-of-the-art methods. The satisfactory steady-state and dynamic performances of the IMKE algorithm on partially shaded SPV array show the superiority over the state-of-the-art maximum power point tracking methods.
机译:这项工作涉及智能猴子王进化(IMKE)算法的发展,该算法可在太阳能光伏(SPV)阵列的部分阴影条件下检测最大功率峰值(MPP)。在IMKE算法中,猴王进化(MKE)算法嵌入了一种附加的智能决策能力,该算法放大了所有选项以紧密观察准确的峰位置。在勘探和开发方面,MKE算法是好的。但是,附加的智能决策能力避免了局部最大值的停滞,并有助于快速跟踪真实的全局最大位置。通过MATLAB仿真和实验,对部分阴影的SPV阵列的十种电源电压模式进行了IMKE算法的性能评估。此外,通过与最新技术方法进行比较,可以验证所有结果的有效性。 IMKE算法在部分阴影SPV阵列上具有令人满意的稳态和动态性能,显示出优于最新的最大功率点跟踪方法的优越性。

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