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A chattering-free terminal sliding mode control of direct-drive PMSG for wind generation system

机译:用于风发电系统直接驱动PMSG的无横断端子滑模控制

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In order to enhance the stability, the control scheme for the wind power generation should have strong robustness. Sliding mode control is powerful to reject disturbance and has good robustness. However, sliding mode control is a fast switching control essentially. While accelerating the speed to reach the sliding surface, it will result in large chattering which can induce high-frequency oscillation of the output of wind power generation system. This paper proposes a novel chattering-free terminal sliding mode control based on the vector control technology, and applies it to control direct driven permanent magnet synchronous generator(PMSG). Speed and dq-axis current regulator are designed to ensure the rotor speed and current to reach the given values in finite time, respectively. The method proposed can estimate the chattering and enhance the system dynamic and static performance. Compared with PI control, the simulation results verify that the speed and current can track the given value more rapidly. Moreover, it has strong robustness to disturbance.
机译:为了提高稳定性,风力发电的控制方案应具有强大的鲁棒性。滑动模式控制功能强大拒绝干扰,具有良好的稳健性。但是,滑模控制是基本上快速的开关控制。在加速到达滑动表面的速度的同时,它将导致大的抖动,这可以引起风力发电系统输出的高频振荡。本文提出了一种基于载体控制技术的新型无抖动终端滑动模式控制,并将其应用于直接驱动的永磁同步发电机(PMSG)。速度和DQ轴电流调节器旨在确保转子速度和电流分别在有限时间内到达给定值。所提出的方法可以估计抖动并增强系统动态和静态性能。与PI控制相比,仿真结果验证了速度和电流可以更快地跟踪给定值。此外,它具有强大的稳健性来干扰。

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