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Variable structure control for Permanent Magnet Synchronous Generator based wind energy conversion system operating under different grid conditions

机译:在不同电网条件下运行的基于永磁同步发电机的风能转换系统的变结构控制

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This paper presents a nonlinear power control strategy for a grid connected Variable Speed Wind Energy Generation System (VS-WEGS) based on a Permanent Magnet Synchronous Generator (PMSG). The proposed system includes a wind turbine (WT) and a PMSG connected to the grid by back-to-back voltage source converter (VSC). The generator side converter is employed to control the speed of the generator with MPPT, and the grid side regulator controls the reactive power flow, the dc link voltage and the power factor during wind variations. The efficacy of the VS-WEGS can be greatly improved by using an appropriate control. So, this work explores a sliding mode control strategy to maximize the energy production of a VS-WEGS. The conditions for the existence of the sliding mode are found by applying Lyapunov stability theory. The performance of the system has been demonstrated under varying wind conditions and under a grid voltage dip. The simulation results show the effectiveness of the proposed sliding mode control.
机译:本文提出了一种基于永磁同步发电机(PMSG)的并网变速风力发电系统(VS-WEGS)的非线性功率控制策略。所提出的系统包括风力涡轮机(WT)和通过背靠背电压源转换器(VSC)连接到电网的PMSG。发电机侧变流器用于通过MPPT控制发电机的速度,而电网侧调节器则控制无功功率流,直流母线电压和风力变化期间的功率因数。通过使用适当的控件,可以大大提高VS-WEGS的功效。因此,这项工作探索了一种滑模控制策略,以最大化VS-WEGS的能量产生。应用李雅普诺夫稳定性理论找到了存在滑模的条件。该系统的性能已在变化的风力条件下和电网电压骤降下得到了证明。仿真结果表明了所提出的滑模控制的有效性。

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