On the Sudoku-based Arrangement in Reconfiguring a Large-scale Photovoltaic Array

N. D. Tuyen, Le Viet Thinh, Vu Xuan Son Huu
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Abstract

Partial shading conditions (PSCs) is the most common phenomenon among photovoltaic (PV) modules of a PV array, causing significant power losses in the PV array as well as reducing lifespan of the PV array. Rearranging the interconnection of PV modules of a PV array can equalize the irradiance in each row of PV modules, which improves the output power of the PV array. This paper proposes a simple and effective method to reconfigure the interconnection of a large-scale PV array. The power-voltage (P-V) characteristic of a PV array is drawn under four typical shading patterns, short narrow, short wide, long narrow, and long wide. The effectiveness of the rearrangement method is verified by an investigation conducted on a polycrystalline PV panel. Since the power loss is minimized in a range from 3.80 % to 10.59 % in four considering cases, proposed method could be a promising solution in reducing the effects of PSCs on the PV arrays.
大型光伏阵列重构中基于数独的排列方法研究
部分遮阳条件(PSCs)是光伏阵列中光伏(PV)模块中最常见的现象,它会导致光伏阵列的严重功率损失,并降低光伏阵列的使用寿命。重新排列光伏阵列中光伏组件的互连,可以使每排光伏组件的辐照度均衡,从而提高光伏阵列的输出功率。本文提出了一种简单有效的大规模光伏阵列互连重新配置方法。在短窄、短宽、长窄和长宽四种典型遮光模式下,绘制了光伏阵列的功率电压(P-V)特性。通过对多晶光伏板的研究,验证了重排方法的有效性。由于在四种考虑情况下,功率损耗在3.80%至10.59%的范围内最小,因此所提出的方法可能是减少PSCs对光伏阵列影响的有希望的解决方案。
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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