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Sensorless Control of Linear Vernier Permanent-Magnet Motor Based on Improved Mover Flux Observer

机译:基于改进的运动磁通观测器的直线游标永磁电动机无传感器控制

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摘要

Linear vernier permanent-magnet (LVPM) motors have a bright future in long stroke applications, because of their merits of high efficiency, high force capability, and low cost. However, the position sensor for the LVPM motor costs huge. In this article, a sensorless control based on an improved mover flux observer is proposed. The proposed mover flux observer combines a disturbance observer and a feedback controller. It can be easily implemented, which results in low computation burden. Due to simple tuning parameters of this observer, the mover flux observer can have strong robustness to the dc bias and the initialization errors of integrators that are main weakness of flux model. This proposed observer also does not introduce error in either the estimated mover flux amplitude or phase. Then, a phase-locked loop is used to detected position information from the mover fluxes. Finally, the LVPM motor operates by using the estimated position and speed signals. Simulation and experimental results of the LVPM motor demonstrate the accuracy and dynamic performance of the proposed sensorless operation.
机译:线性游标永久磁铁(LVPM)电动机具有高效率,高推力能力和低成本的优点,在长行程应用中具有光明的前景。但是,用于LVPM电动机的位置传感器的成本很高。在本文中,提出了一种基于改进的动子磁通观测器的无传感器控制。提出的动量通量观测器结合了干扰观测器和反馈控制器。它可以轻松实现,从而降低了计算负担。由于此观测器的调整参数简单,因此动磁通观测器对直流偏置和积分器的初始化误差(这些通量模型的主要缺点)具有很强的鲁棒性。提出的观察者也不会在估计的动子磁通幅度或相位中引入误差。然后,使用锁相环从动子磁通中检测位置信息。最后,LVPM电动机使用估计的位置和速度信号运行。 LVPM电机的仿真和实验结果证明了所提出的无传感器运行的准确性和动态性能。

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