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The Optimized-String Dynamic Photovoltaic Array

机译:优化串动态光伏阵列

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This paper presents a novel system for producing the optimum power output from photovoltaic (PV) arrays using dynamic cell reconfiguration. The proposed approach is the first in the literature that creates strings using individual substrings that have been characterized and categorized ensuring maximum power extraction for a given irradiance profile. This optimized and decentralized PV architecture can produce significantly more power than a static equivalent (by an average of 22.6%) and also outperforms the sophisticated alternative known as an irradiance equalized dynamic photovoltaic array (IEq-DPVA) by an average of 13.7% for the relevant tests carried out. This paper identifies the hardware requirements to produce such a system and it describes an algorithm that performs the optimized-string reconfiguration strategy. Finally, a simulator programmed in MATLAB is used to compare the performance of the optimized-string DPVA against an IEq-DPVA in a series of flexibility tests.
机译:本文提出了一种利用动态电池重配置从光伏(PV)阵列产生最佳功率输出的新颖系统。所提出的方法是文献中第一个使用已被特征化和分类的子字符串创建字符串的方法,以确保在给定辐照度曲线下提取最大功率。这种经过优化和分散的光伏架构可以产生比静态等效功率大得多的功率(平均功率为22.6%),并且比称为辐照均衡动态光伏阵列(IEq-DPVA)的复杂替代产品的平均功率要高出13.7%。进行了相关测试。本文确定了生产这种系统的硬件要求,并描述了执行优化字符串重新配置策略的算法。最后,在一系列灵活性测试中,使用了在MATLAB中编程的模拟器来比较优化字符串DPVA与IEq-DPVA的性能。

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