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Robust Nonlinear Control of a PV system for MPPT under Variable Atmospheric Conditions

机译:在可变大气条件下MPPT的PV系统鲁棒非线性控制

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In the present paper, we report a robust and efficient controller based on terminal sliding mode controller (TSMC) for maximum power tracking (MPPT) of photovoltaic (PV) system. The studied PV system consists of a PV module, a DC-DC converter, MPPT control circuit and load. First, the power slope method based on PV power characteristic curve is used for maximum power point voltage seeking. The proposed TSMC is designed in order to make the PV system performs at the desired reference maximum power voltage (MPV), by regulating the control duty cycle. Despite the atmospheric conditions variations, the designed approach assures a robust and fast tracking response convergence in finite with a very low tracking error. In order to demonstrate the designed controller effectiveness and robustness, a comparative study, includes the proposed approach and the conventional sliding mode control (SMC), is presented through various simulations.
机译:在本文中,我们报告了一种基于终端滑动模式控制器(TSMC)的稳健而有效的控制器,用于光伏(PV)系统的最大功率跟踪(MPPT)。研究的PV系统由PV模块,DC-DC转换器,MPPT控制电路和负载组成。首先,基于PV功率特性曲线的功率斜率方法用于最大功率点电压探索。所提出的TSMC设计为使PV系统通过调节控制占空比来以所需的参考最大电源电压(MPV)执行。尽管有大气条件变化,所设计的方法确保了有限的有限速度和快速跟踪响应收敛,具有非常低的跟踪误差。为了展示设计的控制器有效性和鲁棒性,通过各种模拟呈现了比较研究,包括所提出的方法和传统的滑模控制(SMC)。

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