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Performance evaluation of a vehicle traction drive based on a Permanent Magnet synchronous motor equipped with a mechanical flux weakening device

机译:基于配备有机械磁通减弱装置的永磁同步电动机的车辆牵引驱动器的性能评估

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In permanent-magnet motors used for vehicle traction application a well-known problem is the need to weaken the flux at high speeds. This is generally done by injecting a suitable demagnetizing current along the d axis. An alternative method has been recently proposed by the authors based on an Interior-Permanent-Magnet (IPM) synchronous motor equipped with a mechanical device which activates at high speeds by centrifugal force causing a significant reduction in the permanent magnet flux with no need for injecting d-axis stator currents. The performance of a road vehicle traction drive employing this machine under a maximum-torque-per-ampere control is investigated in this paper assuming a typical driving cycle. It is shown that remarkable benefits can be achieved in terms of energy saving, overload capability enhancement and speed range extension potential.
机译:在用于车辆牵引应用的永磁电动机中,众所周知的问题是需要在高速下弱化通量。这通常是通过沿d轴注入合适的消磁电流来完成的。作者最近基于内部永磁同步(IPM)同步电动机提出了另一种方法,该电动机配有机械装置,该机械装置通过离心力高速激活,从而导致永磁通量显着降低,而无需注入d轴定子电流。本文假设典型的驾驶循环,研究了在最大每安培转矩控制下使用该机器的道路车辆牵引驱动器的性能。结果表明,在节能,提高过载能力和扩展速度范围方面可以实现显着的收益。

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