An Intelligent Irradiance Equalization Approach based on Fuzzy Logic for Small Reconfigurable PV Architecture

L. Bouselham, A. Rabhi, B. Hajji, A. Mellit, C. E. Fouas
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Abstract

When the panels in a photovoltaic generator (PVG) are subjected to Partial Shading (PS), some bypass diodes may turn on, and consequently multiple peaks in the Power -Voltage (P-V) characteristic are produced which reduces the output power. For an optimal GPV power extraction, one of emerging PS mitigation techniques is to reconfigure the PVG by altering the electrical connections between panels according to prevailing conditions. This paper presents a reconfigurable PV architecture based on irradiance equalization row approach for a PVG connected on Total cross tied (TCT) scheme. The proposed technique uses fuzzy logic as an optimization tool to obtain uniform shade dispersion throughout the PVG, either keeping the same number of panels in each row or forming rows with different number of PV panels. To evaluate the effectiveness of proposed fuzzy logic controller (FLC), extensive simulations with different shade patterns are carried out on Matlab/Simulink. Thorough analysis with the help of characteristics curves and the results obtained for the full PV chain conversion are performed. Results of simulation show that the proposed reconfiguration method exhibit superior results as compared to fixed TCT interconnection and enhanced irradiance equalization (IEq) method in terms of efficiency, power loss and response time.
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基于模糊逻辑的小型可重构光伏系统辐照度智能均衡方法
当光伏发电机(PVG)的面板受到部分遮光(PS)时,一些旁路二极管可能会打开,从而产生功率-电压(P-V)特性的多个峰值,从而降低输出功率。为了获得最佳的GPV电力提取,新兴的PS缓解技术之一是根据当前条件通过改变面板之间的电气连接来重新配置PVG。本文提出了一种基于辐照度均衡行方法的可重构PV结构,该结构适用于全交叉连接(TCT)方案。所提出的技术使用模糊逻辑作为优化工具,在整个PVG中获得均匀的阴影分散,要么保持每排面板数量相同,要么由不同数量的PV面板组成。为了评估所提出的模糊逻辑控制器(FLC)的有效性,在Matlab/Simulink上进行了不同阴影模式的大量仿真。利用特性曲线对全PV链转换进行了深入的分析和结果分析。仿真结果表明,与固定TCT互连和增强辐照度均衡(IEq)方法相比,所提出的重构方法在效率、功耗和响应时间等方面都有较好的效果。
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