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Improved hybrid algorithms-based MPPT algorithm for PV system operating under severe weather conditions

机译:基于混合算法的MPPT算法在恶劣天气条件下运行的光伏系统

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摘要

This study aims to provide a comparison between several maximum power point tracking (MPPT) algorithms for PV system under severe weather conditions. Two MPPT hybrid algorithms are proposed, namely (a) hybrid combination of fuzzy logic controller (FLC) and the incremental conductance (IC) and (b) MPPT controller integrates FLC and perturb and observe (P&O) method. The two developed hybrid algorithms combined the strength of both P&O, IC with FLC in single framework. MATLAB/Simulink is used to investigate the response of both algorithms. Several weather conditions are simulated: (i) uniform irradiation, (ii) sudden changing, and (iii) partial shading. Under partial shading on PV panel, multi-peaks appear in power-voltage characteristics of the panel. Simulation results showed that ability of FLC to track MPP degrade significantly when testing at weather conditions far from those used for training. Finally, the proposed hybrid algorithms successfully eliminate the previous limitations associated with FLC, IC, and P&O algorithms individually with efficiency exceeds 97%.
机译:本研究旨在提供在恶劣天气条件下PV系统的几个最大功率点跟踪(MPPT)算法之间的比较。提出了两个MPPT混合算法,即(a)模糊逻辑控制器(FLC)的混合组合和增量电导(IC)和(B)MPPT控制器集成FLC和扰动和观察(P&O)方法。两种开发的混合算法将P&O,IC的强度与单一框架中的FLC相结合。 MATLAB / SIMULINK用于调查两种算法的响应。模拟了几种天气条件:(i)均匀辐照,(ii)突然变化,和(iii)部分遮阳。在PV面板上的局部遮阳下,多峰值出现在面板的电源电压特性中。仿真结果表明,在远离用于训练的天气条件下测试时FLC跟踪MPP的能力显着降低。最后,提出的混合算法成功地消除了与FLC,IC和P&O算法相关的先前限制,效率超过97%。

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