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Rotor Design Optimization for a Reaction Sphere Actuator

机译:反应球作动器的转子设计优化

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This paper presents the rotor design optimization for a reaction sphere (RS) actuator. The RS is a permanent-magnet synchronous spherical actuator whose rotor is magnetically levitated and can be accelerated about any desired axis. The RS is composed of an 8-pole permanent-magnet (PM) spherical rotor and of a 20-coil stator. Due to the highly complex geometry of the spherical rotor, consisting of eight bulk PM poles with truncated spherical shape adjusted on the back-iron structure with truncated octahedral shape, a pure analytical approach for the optimization problem is not practicable. Therefore, given a set of specifications, the optimization of design parameters is performed using finite-element simulations to minimize the rotor magnetic flux density distortion with respect to the fundamental harmonic. The resulting optimized rotor is fully compliant with design specifications. Finally, experimental measurements on the manufactured rotor are reported showing a strong correspondence with the specified flux density values.
机译:本文介绍了反应球(RS)执行器的转子设计优化。 RS是一种永磁同步球形致动器,其转子磁悬浮并且可以绕任何所需的轴加速。 RS由一个8极永磁(PM)球形转子和一个20线圈定子组成。由于球形转子的几何形状非常复杂,由八个截头球形的块状永磁体磁极组成,这些永磁体在具有八角形截头形的后铁结构上进行了调整,因此不存在用于优化问题的纯分析方法。因此,在给定一组规范的情况下,使用有限元模拟对设计参数进行优化,以最大程度地减小相对于基波谐波的转子磁通密度畸变。最终优化的转子完全符合设计规范。最后,报告了在制造的转子上的实验测量结果,表明与指定的磁通密度值具有很强的对应性。

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