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Design of a Rotary-Linear Motor With Unipolar SPM and Voice Coil Structure

Authors
Xing, FuzhenKwon, Byung-Il
Issue Date
Aug-2020
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Keywords
Force; Magnetic fields; Induction motors; Stators; Magnetic flux; Reluctance motors; Air gaps; Rotary-linear motor; two-degree-of-freedom motion; voice coil motor (VCM)
Citation
IEEE ACCESS, v.8, pp.150291 - 150300
Indexed
SCIE
SCOPUS
Journal Title
IEEE ACCESS
Volume
8
Start Page
150291
End Page
150300
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/1890
DOI
10.1109/ACCESS.2020.3016646
ISSN
2169-3536
Abstract
In this article, a rotary-linear motor that achieves rotary and linear motions with a simple one-air-gap structure, low rotary ripple, and smooth linear force is proposed. The proposed motor combines a five-phase unipolar surface-mounted permanent-magnet (USPM) and a voice coil structure to simplify the motor structure, which motor can be named as rotary-linear surface-mounted permanent-magnet voice coil motor (RL-SVCM). And because of the characteristics of the rotary five-phase armature circuit and linear voice coil circuit, the proposed motor can provide low rotary ripple and smooth linear force. For designing the motor, the magnetic equivalent circuit (MEC) method is used to study the relationship between the linear force performance and motor structure parameters, and the effect of the flux bridges on the linear force and rotary torque. Due to uncertain variables in MEC, the FEM method is used to analyze the precise output result of rotary torque and linear force, and non-interaction between rotary and linear motions.
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