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A novel maximum power point tracking for photovoltaic applications under partially shaded insolation conditions

机译:在部分阴影日晒条件下用于光伏应用的新型最大功率点跟踪

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摘要

In this paper, a novel strategy of maximum power point tracking is presented for photovoltaic power generation systems based on Fibonacci search algorithm to realize simple control system to track the real maximum power point even under non-uniform or for rapidly changing insolation conditions. The Fibonacci search technique was modified in order to apply to time-variant P-V characteristics of the PV array. It is proved experimentally and through simulation results that the algorithm has good performances and very fast response even for partial shaded PV modules. The proposed technique can be applied to various types of PV power conditioners including dc-dc and dc-ac converters. It can be commonly used instead of the conventional MPPT techniques. This method requires neither the measurement of temperature and insolation level nor prior knowledge about the model of the used photovoltaic panel. The proposed method can track the global maximum power point in most cases by doing a wide-range search and more power can be extracted with partial shaded PV modules as compared to the other methods. Simulation and experimental results are presented to prove the feasibility of the proposed technique.
机译:本文提出了一种新的基于斐波那契搜索算法的光伏发电系统最大功率点跟踪策略,以实现简单的控制系统,即使在非均匀或日照变化迅速的情况下,也可以跟踪实际最大功率点。修改了斐波那契搜索技术,以便应用于光伏阵列的时变P-V特性。实验和仿真结果表明,该算法即使对于部分阴影的光伏组件也具有良好的性能和非常快的响应速度。所提出的技术可以应用于包括DC-DC和DC-AC转换器在内的各种类型的PV功率调节器。它可以代替常规的MPPT技术被普遍使用。该方法既不需要温度和日照水平的测量,也不需要有关用过的光伏面板的模型的先验知识。与其他方法相比,该方法可以在大多数情况下通过进行宽范围搜索来跟踪全局最大功率点,并且可以使用部分阴影PV模块提取更多功率。仿真和实验结果证明了该技术的可行性。

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