ACTIVE TILT COMPENSATION METHODS FOR BEARINGLESS DISC MOTORS

B. Klammer, H. Mitterhofer, W. Gruber
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引用次数: 1

Abstract

Disturbance and resonance effects may cause tilt vibrations in bearingless disc motors. Typically, these vibrations are only very poorly dampened by passive stabilization torques. In this paper, two strategies to actively suppress tilt vibrations are proposed: additional tilt damping by flux modulation and by radial rotor position deflection. Tilt oscillations can be reduced by modulating the magnetic air-gap flux with a d-axis current as a function of the tilt angle and its first derivative. Another option is to move the rotor towards a position offering increased tilt stiffness, depending on the tilt oscillation amplitude and speed. In order to analyse the effect, mathematical models of the two methods considering parameters of a bearingless flux-switching disc motor prototype are set up and analyzed numerically.
无轴承盘式电机的主动倾斜补偿方法
干扰和共振效应可能导致无轴承盘式电机的倾斜振动。通常,这些振动只能通过被动稳定扭矩得到很差的抑制。本文提出了两种主动抑制倾斜振动的策略:磁链调制附加倾斜阻尼和转子径向位置偏转。倾斜振荡可以通过用d轴电流作为倾斜角及其一阶导数的函数来调制磁气隙磁通来减小。另一种选择是将转子移动到提供增加倾斜刚度的位置,这取决于倾斜振荡的幅度和速度。为了分析这两种方法的效果,建立了考虑无轴承磁通开关盘式电机样机参数的数学模型,并进行了数值分析。
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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