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Bearingless Five-Axis Rotor Levitation with Two Pole Pair Separated Conical Motors

机译:带有两个杆对分离锥电机的无轴承五轴转子升定

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In some high performance applications, such as high speed rotating machinery, systems where access for maintenance is limited, or operating environments with extreme temperatures and pressures, motors without mechanical bearings would be preferred. This paper presents the theory, simulation, and lab results of a new type of fully magnetically levitated bearingless motor. The motors are wound without internally connecting the pole pairs, and force is controlled by varying rotor reference frame d-axis current to each pole pair. This in turn raises or lowers the flux caused by the permanent magnets, creating a flux imbalance on the periphery of the rotor [1], which in turn creates a net force on the rotor. The conical shape of the motor allows forces to be created in both radial and axial directions, allowing these motors full 5-axis levitation.
机译:在一些高性能的应用中,如高速旋转机械,可以在没有机械轴承的温度和压力的情况下进行限制的高速旋转机械,或者具有极端温度和压力的操作环境。本文介绍了一种新型全磁悬浮无轴承电机的理论,仿真和实验室结果。电动机在没有内部连接杆对的情况下缠绕,并且通过改变转子参考框架D轴电流来控制力的力。这反过来升高或降低由永磁体引起的磁通量,在转子的周边上产生磁通不平衡[1],这又在转子上产生净力。电动机的圆锥形允许在径向和轴向方向上产生力,允许这些电动机满5轴悬浮。

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