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Robust Adaptive Integral Backstepping control for MPPT and UPF of PV System Connected to the Grid

机译:PV系统的MPPT和UPF连接到网格的强大自适应积分反击控制

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This work deals with the nonlinear control of a single-phase photovoltaic (PV) system connected to the grid via an adaptation circuit and LCL filter is proposed. The main aim is the achievement of three control objectives: i) regulating the DC voltage to a desired value (Vdc*) ii) supply a current with sinusoidal form, in phase with the grid voltage and presents both low harmonic distortion and robustness in front of system's perturbations (Unite Power Factor: UPF) iii) extracting the maximum power from the PV array by acting on the DC/DC converter (MPPT). The control strategy is based on the robust integral Backstepping control design to be applied to the DC_DC converter and the DC_AC inverter in order to optimize the PV energy extraction and to achieve unity power factor. In order to improve the robustness and the stability of the nonlinear control, an integral action is introduced and Lyapunov analysis is used. Representative computer simulations demonstrate the performances of the control strategy to track the maximum power point of the photovoltaic array panel and synchronization of grid current with the grid voltage under various climatic conditions.
机译:该工作处理了通过适配电路连接到网格的单相光伏(PV)系统的非线性控制,提出了LCL滤波器。主要目的是实现三个控制目标的成就:i)将DC电压调节到所需的值(VDC *)II)用栅极电压相位提供具有正弦形式的电流,并呈现低谐波失真和前面的鲁棒性系统的扰动(Unite功率因数:UPF)III)通过作用于DC / DC转换器(MPPT)来提取来自PV阵列的最大功率。控制策略基于稳健的积分反向控制设计,以应用于DC_DC转换器和DC_AC逆变器,以便优化PV能量提取和实现单位功率因数。为了提高非线性控制的稳健性和稳定性,引入了整体作用,使用Lyapunov分析。代表性的计算机模拟证明了控制策略的性能,以跟踪光伏阵列面板的最大功率点,并在各种气候条件下与电网电流的同步。

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