Maximization of The Output Power from Photovoltaic Array Under Partial Shading Conditions

Karan S Faldu, P. Kulkarni
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引用次数: 5

Abstract

In accordance with the Partial Shading Conditions (PSCs), the Photovoltaic(PV) array receives non-uniform insolation. This results a weighty drop in power output and creates the multiple maximum points in P-V curve. To solve this problem, PV modules in array are interconnected in various configurations. These configurations increase the output power of PV array by provide an alternative path to the direction of current. In this paper a Symmetrical Array (SA) puzzle pattern configuration is presented to increase the array output power under PSC. The main objective of this work is to compare the performance of SA configuration with the Bridge-Link (BL), Series-Parallel (SP), Total-Cross-Tied (TCT) and Honey-Comb (HC) configurations under various shading conditions. For comparison purpose the maximum power output, power loss due to mismatch and fill factor constraints are considered. The parameters of the WAAREE ENERGIES WS-260 solar PV module are taken to analyze the performance of 4×4 PV array configuration. The results are generated using MATLAB/Simulink. Finally, it is concluded that SA configuration has maximum power output, lower power loss with mismatch and higher fill factor compared to other configurations under PSCs.
部分遮阳条件下光伏阵列输出功率最大化研究
根据部分遮阳条件(PSCs),光伏(PV)阵列接受不均匀的日照。这导致功率输出的严重下降,并在P-V曲线中产生多个最大值。为了解决这个问题,阵列中的光伏组件以不同的配置相互连接。这些配置通过提供电流方向的替代路径来增加PV阵列的输出功率。本文提出了一种对称阵列(SA)拼图模式配置,以提高PSC下阵列的输出功率。这项工作的主要目的是比较SA配置与桥连接(BL),串并联(SP),全交叉连接(TCT)和蜂窝(HC)配置在各种遮光条件下的性能。为了进行比较,考虑了最大功率输出、失配功率损失和填充因子约束。以WAAREE ENERGIES WS-260太阳能光伏组件为参数,分析4×4光伏阵列配置的性能。结果是通过MATLAB/Simulink生成的。最后得出结论,与其他配置相比,SA配置具有最大的输出功率,更低的失配功率损耗和更高的填充因子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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