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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >Effects of Magnetic Pole Design on Orientation Torque for a Spherical Motor
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Effects of Magnetic Pole Design on Orientation Torque for a Spherical Motor

机译:磁极设计对球形电动机定向转矩的影响

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摘要

This paper investigates the effect of pole layouts of permanent magnets (PMs) and electromagnets (EMs) on inclination torque of a multidegrees of freedom (DOFs) spherical motor (SM). Unlike conventional electromagnetic actuators capable of controlling a single DOF motion in spinning, the SM offers a unique ability to control orientation of a spinning rotor. Although the motor offers such attractive feature, it is essential to generate torque to maintain at a desired orientation. However, it is challenging to design the motor enhancing the orientation torque due to a limited number and space for PMs and EMs involved in orientation motion unlike spinning. This paper presented a new design of the SM maximizing inclination torque by evaluating the number of PMs and materials of structure such as iron and aluminum. Then, the torque of the proposed designs has been compared by results from a numerical finite-element method technique as well as an experiment. Finally, dynamics and control simulations are demonstrated to ensure the effective enhancement of the proposed SM.
机译:本文研究了永磁体(PMs)和电磁体(EMs)的极布局对多自由度(DOFs)球形电动机(SM)的倾斜转矩的影响。与能够控制旋转中的单个自由度运动的常规电磁致动器不同,SM提供了独特的功能来控制旋转转子的方向。尽管电动机提供了这种吸引人的功能,但必须产生转矩以保持在所需的方向。然而,与旋转不同,由于定向运动中所涉及的PM和EM的数量和空间有限,因此设计电动机来提高定向扭矩是一项挑战。本文通过评估PM的数量和结构材料(例如铁和铝),提出了一种新的最大化倾斜扭矩的SM设计。然后,通过数值有限元方法技术和实验结果比较了所提出设计的扭矩。最后,演示了动力学和控制仿真,以确保有效提高所提出的SM。

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