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Novel End-Winding Hybrid Flux Machine

Shi, Bowen; Huang, Xiaoyan; Li, Jing; Zhang, He; Zhao, Han; Zhang, Xiaochen; Zhang, Fengyu; Gerada, Chris

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Authors

Bowen Shi

Xiaoyan Huang

Jing Li

He Zhang

Han Zhao

Xiaochen Zhang



Abstract

This paper presents a novel motor topology, called the End-Winding Flux Machine (EWM), which explores the potential function of end-windings in rotating electric machines. By introducing an axial-radial flux stator into the end-windings, a hybrid flux machine known as the End-Winding Hybrid Flux Machine (EHFM) is created, establishing an additional radial-axial flux circuit alongside the conventional radial-flux machine. The machine characteristics of the EHFM are validated through analytical calculations and transient 3-D finite-element method (FEM). Experimental investigations are conducted on a prototype EHFM, and the tested data is compared with FEM results. The EHFM exhibits enhanced torque performance compared to the benchmark motor within the same input current and armature winding specifications. These findings demonstrate the effectiveness of the proposed design and its potential for improving end-wingding utilization and torque performance in electric machines.

Citation

Shi, B., Huang, X., Li, J., Zhang, H., Zhao, H., Zhang, X., Zhang, F., & Gerada, C. (2023). Novel End-Winding Hybrid Flux Machine. IEEE Access, 11, 133781-133791. https://doi.org/10.1109/access.2023.3336675

Journal Article Type Article
Acceptance Date Nov 15, 2023
Online Publication Date Nov 24, 2023
Publication Date 2023
Deposit Date May 7, 2024
Publicly Available Date May 7, 2024
Journal IEEE Access
Electronic ISSN 2169-3536
Publisher Institute of Electrical and Electronics Engineers
Peer Reviewed Peer Reviewed
Volume 11
Pages 133781-133791
DOI https://doi.org/10.1109/access.2023.3336675
Keywords General Engineering; General Materials Science; General Computer Science; Electrical and Electronic Engineering
Public URL https://nottingham-repository.worktribe.com/output/27874230
Publisher URL https://ieeexplore.ieee.org/document/10328743

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