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Slip Recovery and Prevention in Pseudo Direct Drive Permanent-Magnet Machines

机译:伪直接驱动永磁电机的滑差恢复和预防

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摘要

A Pseudo Direct Drive (PDD) is a permanent magnet machine with an integrated magnetic gear. It has two magnetically coupled rotors. When subjected to a load torque higher than the pull-out torque, slip between the two rotors may occur. Although this may not cause any damage to the PDD or the load, it could, if left uncontrolled, result in undesirable consequences such as loss of power transfer, excessive speed on the high-speed rotor (HSR), incorrect commutation signal, and/or loss of load speed/position control. This paper proposes a technique for a PDD equipped with a position/speed sensor on each rotor to control the slip caused by external overload torques and to enable a swift recovery when they are removed. However, when the PDD is equipped with only one sensor on the HSR, it is impossible to determine the position/speed of the low-speed rotor using an observer after slip occurs, which precludes a swift and controlled recovery. Therefore, a novel technique which prevents the slip between the two rotors under overload conditions is also proposed. Both techniques have been successfully implemented and demonstrated on a prototype PDD drive.
机译:伪直接驱动器(PDD)是具有集成磁性齿轮的永磁电机。它具有两个磁耦合的转子。当承受高于拉出扭矩的负载扭矩时,两个转子之间可能会打滑。尽管这可能不会损坏PDD或负载,但是如果不加以控制,则可能导致不良后果,例如功率传输中断,高速转子(HSR)速度过高,换向信号不正确和/或失去负载速度/位置控制。本文提出了一种用于PDD的技术,该PDD在每个转子上均配备了位置/速度传感器,以控制由外部过载转矩引起的打滑,并在将其卸下时迅速恢复。然而,当PDD在HSR上仅配备一个传感器时,不可能在发生滑动后使用观察者来确定低速转子的位置/速度,这排除了迅速且受控的恢复。因此,还提出了一种防止在过载条件下两个转子之间打滑的新颖技术。两种技术均已成功实施,并已在原型PDD驱动器上进行了演示。

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