INFLUENCE OF CONTROL CURRENT WAVEFORM ON ROTOR NUTATION OF THREE-DEGREES-OF-FREEDOM ELECTRIC MACHINE

I. Petukhov, K. Akinin, V. Kireyev, V. Lavrinenko
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Abstract

The design of the electric machine with three degrees of freedom of the rotor with an external magnetic core, containing permanent magnets, and an internal magnetic core is considered. The both magnetic cores are rotating. The stator windings (control winding and two-phase rotation winding) are located in the air gap between the magnetic cores. The windings are powered by alternating current of corresponding phase. The positive property of rotor gyrostabilization in such structure is shown. At the same time, the negative fact consists in the nutation under the conditions of forced change in the orientation of rotation axis. There are no magnetic losses in the structure due to synchronous rotation of both external and internal magnetic cores. The immobility of the center of mass is assumed. There are no losses that give a non-conservative mechanical system. The mathematical model of the mechanic system and magnetic field is developed to compute the electromagnetic torques acting on the rotor. The expressions for electromagnetic torque components are obtained to use them in the Comsol Multiphysics interface. The effect of the sinusoidal and pulse currents in the control winding on the nutation swing is studied. The optimality of the control winding supplied by undisturbed sinusoidal current or the pulse current having square-wave length of about one-third of the period is revealed. References 15, figures 6, table 1.
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控制电流波形对三自由度电机转子转角的影响
本文考虑了具有三个自由度的电机设计,即转子具有包含永久磁铁的外部磁芯和内部磁芯。两个磁芯都在旋转。定子绕组(控制绕组和两相旋转绕组)位于磁芯之间的气隙中。绕组由相应相位的交流电驱动。这种结构具有转子陀螺稳定的积极特性。与此同时,其负面特性是在强迫改变旋转轴方向的条件下会产生偏心。由于外部和内部磁芯同步旋转,该结构中没有磁损耗。假定质心不动。没有任何损耗会导致机械系统不守恒。建立机械系统和磁场的数学模型是为了计算作用在转子上的电磁转矩。电磁转矩分量的表达式可在 Comsol Multiphysics 界面中使用。研究了控制绕组中的正弦电流和脉冲电流对转子摆动的影响。揭示了控制绕组由不受干扰的正弦电流或方波长度约为周期三分之一的脉冲电流提供的最优性。参考文献 15,图 6,表 1。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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