A new approach to MPPT hybrid incremental conductance-sliding mode control for PV grid-connected

Fethi Messaoudi, Fethi Farhani, A. Zaafouri
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Abstract

As photovoltaic energy is clean, renewable, and less noisy, it is increasingly integrated into the grid. This integration aims to overcome energy deficits and get rid of pollution from conventional sources. In this paper, a two-stage configuration of PV energy conversion to a three-phase grid has been studied. The control of this configuration can be divided into two parts, such as DC bus control and AC bus control. The DC bus is controlled by MPPT control. The AC bus is controlled by DC link voltage control, phase-looked loop control, and voltage source inverter control. The contribution in this study aims to improve the quality of energy injected via a new hybrid approach to MPPT control. The proposed control is a combination of robust sliding-mode control and incremental inductance. Unlike conventional hybridization, the proposed control estimates correct the error upon entry of the conductance incremental control. This correction provides an adaptive incremental step for increment conductance control. The proposed control is compared with three other controls under MATLAB/Simulink. Such as incremental conductance, variable step size incremental conductance, and conventional hybrid MPPT incremental inductance-sliding mode control. The simulation results show a remarkable minimization of the ripple phenomenon and the chatter phenomenon. Thus, the quality of the energy injected into the network is improved, such as by reducing the total harmonic distortion of the current and increasing efficiency.
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光伏并网 MPPT 混合增量电导-滑动模式控制新方法
由于光伏能源清洁、可再生、噪音小,因此越来越多地并入电网。这种并网的目的是克服能源短缺,摆脱传统能源带来的污染。本文研究了将光伏能源转换到三相电网的两阶段配置。该配置的控制可分为两部分,如直流母线控制和交流母线控制。直流母线由 MPPT 控制。交流母线由直流链路电压控制、相位环控制和电压源逆变器控制。本研究旨在通过 MPPT 控制的新型混合方法来提高注入能量的质量。所提出的控制是稳健滑模控制和增量电感的结合。与传统的混合控制不同,所提出的控制估计会在电导增量控制进入时修正误差。这种修正为增量电导控制提供了自适应增量阶跃。在 MATLAB/Simulink 下,将提议的控制与其他三种控制进行了比较。如增量电导控制、步长可变的增量电导控制和传统的混合 MPPT 增量电感-滑动模式控制。仿真结果表明,纹波现象和颤振现象明显降低。因此,注入电网的能量质量得到了改善,如降低了电流的总谐波畸变,提高了效率。
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