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Control strategy of grid-connected photovoltaic generation system based on GMPPT method

机译:基于GMPPT方法的光伏并网发电系统的控制策略

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摘要

There are multiple local maximum power points when photovoltaic (PV) array runs under partial shading condition (PSC). However, the traditional maximum power point tracking (MPPT) algorithm might be easily trapped in local maximum power points (MPPs) and cannot find the global maximum power point (GMPP). To solve such problem, a global maximum power point tracking method (GMPPT) is improved, combined with traditional MPPT method and particle swarm optimization (PSO) algorithm. Under different operating conditions of PV cells, different tracking algorithms are used. When the environment changes, the improved PSO algorithm is adopted to realize the global optimal search, and the variable step incremental conductance (INC) method is adopted to achieve MPPT in optimal local location. Based on the simulation model of the PV grid system built in Matlab/Simulink, comparative analysis of the tracking effect of MPPT by the proposed control algorithm and the traditional MPPT method under the uniform solar condition and PSC, validate the correctness, feasibility and effectiveness of the proposed control strategy.
机译:当光伏(PV)阵列在部分阴影条件(PSC)下运行时,存在多个局部最大功率点。但是,传统的最大功率点跟踪(MPPT)算法可能很容易陷入局部最大功率点(MPP)中,而找不到全局最大功率点(GMPP)。为了解决这个问题,结合了传统的MPPT方法和粒子群优化算法(PSO),对全局最大功率点跟踪方法(GMPPT)进行了改进。在光伏电池的不同工作条件下,使用了不同的跟踪算法。当环境变化时,采用改进的PSO算法实现全局最优搜索,采用变步长增量电导(INC)方法实现最优局部MPPT。基于Matlab / Simulink中建立的光伏网格系统的仿真模型,比较了本文提出的控制算法和传统MPPT方法在均匀日照和PSC条件下对MPPT的跟踪效果,验证了该方法的正确性,可行性和有效性。建议的控制策略。

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