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Design and Analysis of Dual Mover Multi-Tooth Permanent Magnet Flux Switching Machine for Ropeless Elevator Applications

Authors
Zahid, AtifKhan, FaisalAhmad, NaseerSami, IrfanUllah, WasiqUllah, NasimUllah, NomanAlkhammash, Hend, I
Issue Date
Apr-2021
Publisher
MDPI
Keywords
optimization; permanent magnet motors; Finite Element Analysis; electromagnetic analysis; magnetic flux
Citation
ACTUATORS, v.10, no.4
Journal Title
ACTUATORS
Volume
10
Number
4
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/62506
DOI
10.3390/act10040081
ISSN
2076-0825
2076-0825
Abstract
A dual mover yokeless multi-tooth (DMYMT) permanent magnet flux switching motor (PM-FSM) design is presented in this article for ropeless elevator applications. The excitation sources, including a field winding and permanent magnet, are on the short mover in the proposed design structure, whereas the stator is a simple slotted iron core, thus reducing the vertical transportation system cost. The operational principle of the proposed DMYMT in PM-FSM is introduced. The proposed dual mover yokeless multi-tooth Permanent Magnet Flux Switching Motor is analyzed and compared for various performance parameters in a Finite Element Analysis package. The proposed machine has high thrust force and cost-effectiveness compared to conventional dual permanent magnet motor. Finally, this paper also develops an analytical model for the proposed structure, validated by comparing it with Finite Element Analysis simulation results. Results show good agreement between analytical prediction and Finite Element Analysis results.
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College of ICT Engineering > School of Electrical and Electronics Engineering > 1. Journal Articles

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