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Near Time-Optimal Position Control of an Actuator with Permanent Magnet Synchronous Motor

机译:永磁同步电动机执行器的接近时间最优位置控制

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The paper presents design of a near time-optimal position control of an actuator exploiting permanent magnet synchronous motor. The principles of time-optimal control and vector control are combined to form a novel control algorithm for achieving a nearly time-optimal position control of the actuator. Control chattering and oscillations about the phase-plane origin for original time-optimal control law are eliminated by the modification of the control algorithm. The control law is derived for electrical torque of the actuator, therefore torque component of the stator current is determined to comply with proposed near time-optimal control law. Presented simulation results show good correspondence with theoretical predictions.
机译:本文提出了一种利用永磁同步电动机的执行器的接近时间最优位置控制的设计。时间最优控制和矢量控制的原理相结合,形成了一种新颖的控制算法,用于实现执行器的接近时间最优的位置控制。通过修改控制算法,可以消除原始时间最优控制律的关于相位平面原点的控制颤动和振荡。针对致动器的电转矩导出了控制定律,因此确定定子电流的转矩分量以符合建议的接近时间最优的控制定律。提出的仿真结果表明与理论预测具有良好的一致性。

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