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A comprehensive review on PV configurations to maximize power under partial shading

机译:全面审查光伏配置,以在部分阴影下最大化功率

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Partial shading is the condition where PV array experiences different level of irradiances on it which results significant reduction in output power. To handle that issue, PV modules are connected in various configurations as reported in the literature. Different connection schemes of the PV modules provide alternative paths to current flow that eventually improve power attainment under partial shading. A comprehensive study of literature shows that PV modules are connected under different schemes namely simple series (SS), parallel (P), series-parallel (SP), total-cross-tied (TCT), bridge-linked (BL) and honey-comb (HC). In this paper, a comprehensive review is performed to highlight the advantages and limitations of each scheme. To validate the findings from literature review, several experiments are carried out on various configurations in MATLAB Simulink. Three different cases namely unshaded, corner shaded and centre shaded conditions are used in the experiments to analyse the output characteristics. The superiority of various configurations in distinct operating conditions is demonstrated by comparing their maximum power output, relative power loss and fill factor. Based on the results, several recommendations are made on how to handle partial shading by using different PV configurations.
机译:部分遮挡是光伏阵列受到不同水平辐照的条件,这会导致输出功率显着降低。为了解决该问题,如文献中所报道的,PV模块以各种配置连接。 PV模块的不同连接方案为电流提供了替代路径,最终改善了部分阴影下的功率。对文献的全面研究表明,光伏组件以不同的方案进行连接,即简单串联(SS),并联(P),串联-并联(SP),总交叉绑(TCT),桥联(BL)和蜜罐-梳子(HC)。在本文中,进行了全面的回顾,以突出每种方案的优点和局限性。为了验证文献综述的结果,在MATLAB Simulink中对各种配置进行了一些实验。实验中使用了三种不同的情况,即无阴影,角阴影和中心阴影条件来分析输出特性。通过比较它们的最大功率输出,相对功率损耗和填充系数,可以证明各种配置在不同工作条件下的优越性。根据结果​​,就如何使用不同的PV配置处理部分阴影提出了一些建议。

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