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Sliding Mode Control of PMSG Wind Turbine Based on Enhanced Exponential Reaching Law

机译:基于增强指数趋近律的PMSG风力发电机滑模控制

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This paper proposes a sliding-mode control (SMC)-based scheme for the variable-speed direct-driven wind energy conversion systems (WECS) equipped with a permanent magnet synchronous generator connected to the grid. In this paper, diode rectifier, boost converter, neutral point clamped inverter, and L filter are used as the interface between the wind turbine and grid. This topology has abundant features such as simplicity for low- and medium-power wind turbine applications. It is also less costly than back-to-back two-level converters in medium-power applications. The SMC approach demonstrates great performance in complicated nonlinear systems control such as WECS. The proposed control strategy modifies reaching law (RL) of the sliding mode technique to reduce chattering issue and to improve total harmonic distortion property compared to conventional RL SMC. The effectiveness of the proposed control strategy is explored by simulation study on a 4-kW wind turbine, and then verified by experimental tests for a 2-kW setup.
机译:本文提出了一种基于滑模控制(SMC)的方案,用于配备有与电网相连的永磁同步发电机的变速直接驱动风能转换系统(WECS)。在本文中,二极管整流器,升压转换器,中性点钳位逆变器和L滤波器用作风力涡轮机与电网之间的接口。该拓扑具有丰富的功能,例如对于低功率和中功率风力涡轮机应用的简便性。与中功率应用中的背靠背两电平转换器相比,它的成本也更低。 SMC方法在复杂的非线性系统控制(例如WECS)中表现出出色的性能。与传统的RL SMC相比,提出的控制策略修改了滑模技术的到达定律(RL),以减少颤动问题并改善总谐波失真特性。通过对4千瓦风力涡轮机的仿真研究来探索所提出的控制策略的有效性,然后通过2千瓦设置的实验测试进行验证。

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