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Decoupling method of radial forces in a dual rotor-type magnetic suspension motor

机译:双转子式磁悬浮电动机中径向力的解耦方法

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This paper presents a new decoupling method of the radial forces in a dual rotor-type magnetic suspension motor. The dual rotor-type magnetic suspension motor has been proposed by the author, and the motor structure and the principle of the suspension force generation have been introduced. However, it is possible that the mutual interference between the radial suspension forces in two perpendicular axes occurs, which causes the unstable levitation of the rotor. In this paper, the new decoupling method of the radial suspension forces is proposed to stably levitate the rotor. It is confirmed by the simulation using Finite Element Method (FEM) that the suspension forces are successfully decoupled between the perpendicular axes. The proposed decoupling method is found effective to decrease the vibration of the suspension force and stably support the rotor without mechanical contact.
机译:本文提出了一种新的双转子式磁悬浮电机径向力解耦方法。作者提出了一种双转子式磁悬浮电动机,并介绍了电动机的结构和产生悬浮力的原理。但是,有可能在两个垂直轴上发生径向悬架力之间的相互干扰,这会导致转子的不稳定悬浮。为了稳定地悬浮转子,本文提出了一种新的径向悬架力解耦方法。通过使用有限元方法(FEM)进行的仿真确认,悬架力已成功在垂直轴之间解耦。发现提出的去耦方法有效地减小了悬浮力的振动并稳定地支撑了转子而没有机械接触。

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