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Enhancement of maximum power output through reconfiguration techniques under non-uniform irradiance conditions

机译:在非均匀辐照条件下通过重新配置技术提高最大功率输出

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Partial shading is one of the major drawback which diminishes the power output of the PV array. One of the effective methodologies is reconfiguration strategies, namely shifting the location of PV modules from one place to different places so as to distribute shading effects over the array to increase maximum power output under PSCs. This paper proposed two novel puzzle arrangements followed by Ken-Ken (KK) and Skyscraper (SS) for 4 x 4 total-cross-tied (TCT) PV array and increase maximum power under PSCs. In this approach, the PV modules in the TCT array is arranged according to Ken-Ken and Skyscraper arrangements without changing the electrical connections. Further, the performance of the proposed arrangements are investigated with different existing PV array configurations by comparing the global maximum power point (GMPP), the voltage at global maximum power point (V-GMPP), mismatch losses (ML), fill-factor (FF), efficiency (eta) and possible local peaks (PLP) under different shading patterns using Matlab-Simulink. An extensive simulation study is carried out on these configurations under different shading patterns as well as temperatures. Also, a comprehensive comparison has done for various reconfiguration schemes presented in literature. The result shows that the proposed arrangements are enhancing the global maximum power as compared to the other existing configurations. (C) 2019 Elsevier Ltd. All rights reserved
机译:部分遮挡是降低PV阵列功率输出的主要缺点之一。一种有效的方法是重新配置策略,即将光伏模块的位置从一个位置转移到不同的位置,以便在阵列上分布阴影效果,以增加PSC下的最大功率输出。本文提出了两种新颖的智力拼图方案,随后是Ken-Ken(KK)和Skyscraper(SS),用于4 x 4全交叉(TCT)PV阵列,并增加了PSC下的最大功率。在这种方法中,TCT阵列中的PV模块根据Ken-Ken和Skyscraper的布置进行布置,而无需更改电气连接。此外,通过比较全局最大功率点(GMPP),全局最大功率点的电压(V-GMPP),失配损耗(ML),填充因子( FF),效率(eta)和使用Matlab-Simulink在不同阴影模式下可能出现的局部峰值(PLP)。针对这些配置在不同阴影模式和温度下进行了广泛的仿真研究。而且,已经对文献中提出的各种重新配置方案进行了全面的比较。结果表明,与其他现有配置相比,建议的配置正在增强全局最大功率。 (C)2019 Elsevier Ltd.保留所有权利

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