Magnetic field analysis of a hybrid excitation multi-degree-of-freedom spherical motor.

Bingsen Zeng, Jianghua Cao, Qing Chen, Guanming Zhong
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Abstract

A hybrid excitation multi-degree-of-freedom spherical motor (HE-MDOFSM) is designed, which can achieve MDOF motion by cooperatively controlling the excitation current in 12 sets of stator windings. The designed motor has the advantages of high power density and a large motion range. In addition, because the designed motor has an irregular three-dimensional (3D) structure, it is difficult to perform dynamic magnetic field calculations with existing methods. To solve this problem, we propose a modified 3D dynamic magnetic equivalent circuit (3DD-MEC). The proposed method establishes a node network according to the structural edge features of the motor core and the permanent magnet and calculates the reluctance of the connecting branch based on the differential principle. Moreover, a connection strategy of air-gap nodes in 3D space is formulated, and the magnetic saturation characteristics of the iron core are reflected by an iterative calculation of magnetic permeability. Using the 3DD-MEC method, the 3D dynamic magnetic field information of the HE-MDOFSM can be quickly and accurately calculated. Finally, the reliability of the method is verified by simulation and experiment, which provides a reference for improving the design optimization efficiency of HE-MDOFSM.

混合激励多自由度球面电机磁场分析。
设计了一种混合励磁多自由度球面电机(HE-MDOFSM),通过对12组定子绕组励磁电流的协同控制,实现了多自由度运动。所设计的电机具有功率密度高、运动范围大的优点。此外,由于所设计的电机具有不规则的三维(3D)结构,现有方法难以进行动态磁场计算。为了解决这一问题,我们提出了一种改进的三维动态磁等效电路(3DD-MEC)。该方法根据电机铁芯和永磁体的结构边缘特征建立节点网络,并基于差分原理计算连接支路的磁阻。提出了气隙节点在三维空间中的连接策略,并通过磁导率的迭代计算来反映铁芯的磁饱和特性。利用3D - mec方法,可以快速准确地计算HE-MDOFSM的三维动态磁场信息。最后,通过仿真和实验验证了该方法的可靠性,为提高HE-MDOFSM的设计优化效率提供了参考。
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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