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Universal Restart Strategy for High-Inertia Scalar-Controlled PMSM Drives

机译:高惯量标量控制PMSM驱动器的通用重启策略

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摘要

In many industrial settings, momentary power disruptions commonly occur, resulting in tripping of large electric machines, which then have to be brought to zero speed before the machine can be restarted. This can result in frequent interruptions in an industrial process, which can have negative effects on productivity. A more practical approach would restart the machine back to the original speed as soon as power is restored, not having to wait for the machine to be at a standstill. This concept is known as flying restart. In this paper, we propose an approach to implement the flying restart for permanent magnet synchronous machines (PMSM) by using an identification algorithm that determines the speed and position of the machine back-electromotive force so that the correct voltage vector can be applied, thus minimizing the inrush current during the restart. The novelty of the proposed method is that its implementation only requires nameplate machine parameters and needs no machine-specific tuning, making the approach suitable for implementation with both vector- and scalar-controlled PMSM.
机译:在许多工业环境中,通常会发生瞬时功率中断,从而导致大型电机跳闸,然后必须将其调至零速才能重启电机。这可能会导致工业过程中的频繁中断,这可能会对生产率产生负面影响。恢复电源后,一种更实用的方法是将机器重新恢复到原始速度,而不必等待机器停止运行。此概念称为快速重启。在本文中,我们提出了一种通过使用识别算法来实现永磁同步电机(PMSM)的快速重启的方法,该算法确定电机反电动势的速度和位置,从而可以应用正确的电压矢量,从而重新启动时将浪涌电流降至最低。所提出方法的新颖性在于它的实现只需要铭牌机器参数,而无需特定于机器的调整,这使得该方法既适合矢量控制也可以用于标量控制的PMSM。

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