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Start of a synchronous motor using rotor field polarity inversion and rotor back-emf sensing

机译:使用转子场极性反转和转子回电动势传感器开始同步电动机的开始

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Synchronous motors are hard to line start due to torque pulsations at zero rotor speed and low starting torque when started using induced current in a damper squirrel cage. By inverting the rotor pole polarity at appropriate times it is possible to, in principle, achieve uniform torque, albeit pulsating with twice the line frequency at zero initial rotor speed. This has been demonstrated in an earlier work. In this paper we demonstrate that high torque starting using the back-emf in the field winding as triggering signal for the rotor polarity inversion is possible. We further discuss the origin of the rotational energy and active and reactive power pulsations. Finally, we show that it is possible to operate a synchronous motors at continuous asynchronous speed by inverting the polarity of the rotor current and adjusting the field current accordingly, although down rated.
机译:由于在使用阻尼灰鼠笼中的诱导电流开始时,同步电动机由于零转子速度的扭矩脉动和低启动扭矩而难以排列。通过在适当的时间反转转子极性极性,原则上可以实现均匀的扭矩,尽管在零初始转子速度下脉动两倍。这在早期的工作中已经证明。在本文中,我们证明了使用现场绕组中的后部EMF开始的高扭矩作为转子极性反转的触发信号是可能的。我们进一步讨论了旋转能量和主动和无功脉动的起源。最后,我们表明,通过反转转子电流的极性并相应地调节场电流,可以通过连续异步速度操作同步电动机。

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