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Optimized TSMC Control Based MPPT for PV System under Variable Atmospheric Conditions Using PSO Algorithm

机译:PSO算法在可变大气条件下PV系统的优化TSMC控制基于MPPT

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In the present paper, we report a robust and efficient terminal sliding mode controller based particle swarm optimization (PSOTSMC) for maximum power point tracking (MPPT) of photovoltaic (PV) system under variable atmospheric conditions. The PSO-TSMC controller combines the features of both terminal sliding mode control (TSMC) and particle swarm optimization (PSO) method. The proposed approach is designed based TSMC controller as robust nonlinear controller in order to make the PV system performs at the desired reference maximum power voltage (MPV) despite the atmospheric conditions variation, by regulating the control duty cycle. Moreover, the proposed approach applied TSMC controller with their optimal parameter by using PSO method. Furthermore, a comparative study, including the proposed PSO-TSMC controller, the standard TSMC and the conventional sliding mode control (SMC), is investigated under variable atmospheric conditions. Hence, simulation results reveal that the proposed approach assures more robustness against atmospheric conditions variation with best tracking performance and fast tracking response convergence in finite time compared to the other controllers (i.e. TSMC and SMC).
机译:在本文中,我们在可变大气条件下报道了一种基于稳健和高效的终端滑动模式控制器基于基于终端滑模控制器的基于粒子群的粒子群,用于最大功率点跟踪(MPPT),可变大气条件下的光伏(PV)系统。 PSO-TSMC控制器组合了终端滑模控制(TSMC)和粒子群优化(PSO)方法的特征。所提出的方法是基于基于TSMC控制器设计的TSMC控制器,作为鲁棒的非线性控制器,以使PV系统在所需的参考最大功率电压(MPV)下,尽管通过调节控制占空比,但是通过调节控制占空比。此外,所提出的方法通过使用PSO方法将TSMC控制器应用于最佳参数。此外,在可变的大气条件下研究了一种比较研究,包括所提出的PSO-TSMC控制器,标准TSMC控制器,标准TSMC和传统的滑模控制(SMC)。因此,模拟结果表明,与其他控制器(即TSMC和SMC)相比,所提出的方法可确保对大气条件的变化以及有限时间内的最佳跟踪性能和快速跟踪响应会聚。

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