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Sensorless position control and initial position estimation of an interior permanent magnet motor

机译:内置式永磁电动机的无传感器位置控制和初始位置估计

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This paper describes a torque, speed or position control method at the stand still and low speed in the interior permanent magnet (IPM) motor drive system without any rotational transducer. While IPM motors originally have magnetic saliency, it varies according to the load conditions and the control performance can be easily degraded. In this paper the saliency or impedance difference is used as the conventional methods and, nevertheless, in order to amplify the difference containing the information of the rotor angle and to maintain a reasonable performance under any load condition, a high frequency injection scheme is proposed. A speed and position estimation scheme based on the characteristics of the high frequency impedance is proposed. The scheme extracts the high frequency impedance components related to the rotor position. An initial angle estimation scheme for the starting from an arbitrary rotor position is also proposed. It can distinguish the north magnetic pole position from the south one in several tens of milliseconds. The proposed scheme enables position control of a transducerless or position-sensorless IPM motor. The experimental results clarify the satisfactory operation of the proposed position control algorithm under any load condition.
机译:本文介绍了在不使用任何旋转传感器的情况下,内部永磁体(IPM)电动机驱动系统中静止和低速时的转矩,速度或位置控制方法。 IPM电机最初具有磁凸率,但它会根据负载条件而变化,并且控制性能很容易降低。在本文中,显着性或阻抗差异被用作常规方法,但是,为了放大包含转子角度信息的差异并在任何负载条件下保持合理的性能,提出了一种高频注入方案。提出了一种基于高频阻抗特性的速度和位置估计方案。该方案提取与转子位置有关的高频阻抗分量。还提出了用于从任意转子位置开始的初始角度估计方案。它可以在几十毫秒内将北磁极位置与南磁极位置区分开。所提出的方案能够实现无传感器或无位置传感器的IPM电动机的位置控制。实验结果证明了所提出的位置控制算法在任何负载条件下均能令人满意地运行。

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