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Controlling Rotor Vibrations of a Two-Pole Induction Machine With Unipolar Actuator

机译:用单极执行器控制两极感应电机的转子振动

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A three-phase two-pole induction machine has been fitted with coils wound around the machine shaft inside the end shields of the machine. The coils induce unipolar flux in to the machine when supplied with a controllable voltage supply. These windings act as a unipolar actuator that can be used to produce radial force on the rotor. The machine does have a short-circuited extra four-pole stator-winding to reduce unbalanced magnetic pull (UMP) due to the interaction of the two- and four-pole flux components. In two-pole machines, unipolar flux and slot harmonics cause the whirling orbit of an eccentric rotor to pulsate with double slip frequency. The unipolar actuator will mitigate this pulsation when voltage is supplied to the unipolar coils at slip frequency and at correct phase. Current needed to remove pulsation is higher than what is needed to counter the measured unipolar flux. Effects of zero frequency unipolar flux are studied. Theory and measurements are presented.
机译:三相两极感应电机在电机的端盖内装有缠绕在电机轴上的线圈。当向线圈提供可控电压源时,它们会在机器中感应出单极通量。这些绕组充当单极致动器,可用于在转子上产生径向力。电机确实具有短路的额外四极定子绕组,以减少由于两极和四极磁通分量的相互作用而引起的不平衡磁拉(UMP)。在两极电机中,单极磁通和缝隙谐波会导致偏心转子的回旋轨道以双转差频率脉动。当以转差频率和正确的相位向单极线圈供电时,单极执行器将减轻这种脉动。消除脉动所需的电流高于抵消测得的单极通量所需的电流。研究了零频率单极通量的影响。提出了理论和测量。

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