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A novel evaluation index for the photovoltaic maximum power point tracker techniques

机译:光伏最大功率点跟踪器技术的新型评估指标

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The partially shaded photovoltaic (PSPV) condition reduces the generated power and contributes in hot spot problem. PSPV generates one global peak (GP) and many local peaks (LP) in power versus voltage curve. In recent years, numerous research papers have been focused on highly efficient maximum power point tracking (MPPT) techniques to track the GP and alleviate the partial shading effects. This paper provides a comparative and comprehensive review of the 17 most famous and efficient MPPT techniques. These famous and efficient MPPT techniques are divided into three groups; conventional, soft computing (Artificial Intelligence and Bio-Inspired) and hybrid MPPT techniques. Technical and economical comparisons of these 17 MPPT techniques based on 17 evaluation parameters are then achieved. The findings obtained have not yet been discovered yet before where this is the first time the 17 most famous and efficient MPPT techniques are ranked using a novel evaluation index with a total evaluation from 40 points based on the 8 most important key issues. These issues are tracking speed, convergence speed, complexity, hardware implementation, initial parameters required, performance without PS, performance with PS, and efficiency. Finally, merits, demerits, technical and economical comparisons of all MPPT techniques are also introduced, discussed, and assessed.
机译:部分阴影光伏(PSPV)条件会降低产生的功率并导致热点问题。 PSPV在功率与电压的关系曲线中产生一个全局峰(GP)和许多局部峰(LP)。近年来,许多研究论文集中在高效的最大功率点跟踪(MPPT)技术上,以跟踪GP并减轻局部阴影效应。本文对17种最著名和最有效的MPPT技术进行了比较全面的综述。这些著名而有效的MPPT技术分为三类:传统的软计算(人工智能和生物启发技术)和混合MPPT技术。然后,基于17个评估参数,对这17种MPPT技术进行了技术和经济比较。尚未发现获得的发现,这是第一次使用新颖的评估指标对17种最著名和最有效的MPPT技术进行排名,并基于8个最重要的关键问题对40个点进行了总评估。这些问题包括跟踪速度,收敛速度,复杂性,硬件实现,所需的初始参数,不带PS的性能,带PS的性能以及效率。最后,还将介绍,讨论和评估所有MPPT技术的优缺点,技术和经济比较。

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