螺旋水平和桥式联动光伏阵列配置的性能

Mohammed Osamah Subhi, Wafaa Saeed Majeed
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引用次数: 0

摘要

由于部分遮挡会影响太阳能电池板的生产率,进而对光伏系统的性能特征产生负面影响,因此研究人员致力于不同的研究,以克服这一现象,提高太阳能系统的生产率。因此,本研究旨在研究不同的技术,通过减少局部最大功率峰值的数量、功率损耗和失配损耗,提高光伏系统的输出功率、填充因子和效率。这些配置包括一种称为螺旋水平光伏阵列的新型静态重新配置技术,以及一种最近开发的称为桥式联动阵列的技术。这两种技术都使用 MATLAB/Simulink 软件进行建模,并在六种遮光模式下进行检验。这项研究的新颖之处在于,我们将上述静态重新配置技术与另一种称为阻断和旁路二极管技术的现代技术相结合,以分别防止反向电流和热点现象的影响。研究结果表明,与螺旋式水平光伏阵列配置相比,桥式联动配置在部分遮阳条件下表现最为高效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PERFORMANCE OF SCREW HORIZONTAL AND BRIDGE LINKAGE PHOTOVOLTAIC ARRAY CONFIGURATIONS
Due to partial shading effects on the productivity of solar panels which in turn negatively impacts the performance characteristics of photovoltaic systems, researchers work on different studies to overcome this phenomenon and improve solar system productivity. Therefore, this study aims to investigate different techniques to enhance the output power, fill factor, and efficiency of the PV system by reducing the number of local maximum power peaks, power losses, and mismatch losses. The configurations include a novel static reconfiguration technique, called a Screw Horizontal photovoltaic array, and a recently developed technique known as a Bridge Linkage array. Both of these are modeled using MATLAB/Simulink software and examined during six shading patterns. The novelty of this study is that we combined the above static reconfiguration technique with another modern technique called blocking and bypass diode technology to prevent the effect of reverse current and hotspot phenomena respectively. According to the results, the Bridge Linkage configuration performs the most efficiently under partial shading conditions compared to the Screw horizontal PV array configuration.
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来源期刊
CiteScore
0.70
自引率
0.00%
发文量
74
审稿时长
50 weeks
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