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Bearingless Segment Motor With Five Stator Elements—Design and Optimization

机译:具有五个定子元件的无轴承扇形电动机—设计与优化

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摘要

Bearingless motors and active magnetic bearings work completely contactless and wearless. With these properties, hermetically sealed and lubricant-free rotating systems for various applications can be designed. It is possible to stabilize three degrees of freedom by reluctance forces when a permanent-magnet excited rotor disc is used. Hence, only the remaining three degrees of freedom are actively controlled. A subtype of this constructional design called bearingless slice motor is the bearingless segment motor. This paper comprises the design process of a bearingless segment motor with five equal stator elements and concentrated windings. Finite-element simulations are applied to maximize the bearing forces and the motor torque per ampere and minimize the reluctance forces. However, the mathematical model of the system is nonlinear, therefore, an appropriate nonlinear control scheme has to be applied to put the system into operation. The introduction of a prototype, together with first measurements, completes the paper.
机译:无轴承电机和有源电磁轴承完全无接触且无磨损地工作。凭借这些特性,可以设计出适用于各种应用的气密密封且无润滑剂的旋转系统。当使用永磁励磁转子盘时,可以通过磁阻来稳定三个自由度。因此,仅剩余的三个自由度被主动控制。这种结构设计的子类型称为无轴承片式电动机是无轴承扇形电动机。本文包括具有五个相等的定子元件和集中绕组的无轴承扇形电动机的设计过程。应用有限元模拟来最大化轴承力和每安培的电动机扭矩,并最小化磁阻力。但是,系统的数学模型是非线性的,因此,必须应用适当的非线性控制方案才能使系统运行。原型的引入以及首次测量完成了本文。

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