Design and optimization of a high power density machine for flooded industrial pump

This paper presents the design optimization procedure of a high power-density, permanent magnet synchronous machine for industrial pump applications. The designed machine drives an electric, oil flooded pump. In order to achieve higher torque-density, a fractional slot machine (8 poles, 9 slots) wit...

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Main Authors: Al-Timimy, A., Degano, Michele, Giangrande, Paolo, Lo Calzo, Giovanni, Xu, Zeyun, Galea, Michael, Gerada, C., Zhang, He, Xia, Liqm
Format: Conference or Workshop Item
Published: 2016
Subjects:
Online Access:https://eprints.nottingham.ac.uk/35013/
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author Al-Timimy, A.
Degano, Michele
Giangrande, Paolo
Lo Calzo, Giovanni
Xu, Zeyun
Galea, Michael
Gerada, C.
Zhang, He
Xia, Liqm
author_facet Al-Timimy, A.
Degano, Michele
Giangrande, Paolo
Lo Calzo, Giovanni
Xu, Zeyun
Galea, Michael
Gerada, C.
Zhang, He
Xia, Liqm
author_sort Al-Timimy, A.
building Nottingham Research Data Repository
collection Online Access
description This paper presents the design optimization procedure of a high power-density, permanent magnet synchronous machine for industrial pump applications. The designed machine drives an electric, oil flooded pump. In order to achieve higher torque-density, a fractional slot machine (8 poles, 9 slots) with double layer (concentrated) winding has been selected after a preliminary trade-off study, which considered several slot/pole combinations and winding configurations. The developed machine provides low torque ripple and short end windings, which contribute to lower axial length and higher efficiency. The electromagnetic performances have been evaluated by using finite element method and the lamination geometry has been optimized through a genetic. The final results are presented highlighting the achieved design targets.
first_indexed 2025-11-14T19:24:51Z
format Conference or Workshop Item
id nottingham-35013
institution University of Nottingham Malaysia Campus
institution_category Local University
last_indexed 2025-11-14T19:24:51Z
publishDate 2016
recordtype eprints
repository_type Digital Repository
spelling nottingham-350132020-05-04T18:13:18Z https://eprints.nottingham.ac.uk/35013/ Design and optimization of a high power density machine for flooded industrial pump Al-Timimy, A. Degano, Michele Giangrande, Paolo Lo Calzo, Giovanni Xu, Zeyun Galea, Michael Gerada, C. Zhang, He Xia, Liqm This paper presents the design optimization procedure of a high power-density, permanent magnet synchronous machine for industrial pump applications. The designed machine drives an electric, oil flooded pump. In order to achieve higher torque-density, a fractional slot machine (8 poles, 9 slots) with double layer (concentrated) winding has been selected after a preliminary trade-off study, which considered several slot/pole combinations and winding configurations. The developed machine provides low torque ripple and short end windings, which contribute to lower axial length and higher efficiency. The electromagnetic performances have been evaluated by using finite element method and the lamination geometry has been optimized through a genetic. The final results are presented highlighting the achieved design targets. 2016-09-06 Conference or Workshop Item PeerReviewed Al-Timimy, A., Degano, Michele, Giangrande, Paolo, Lo Calzo, Giovanni, Xu, Zeyun, Galea, Michael, Gerada, C., Zhang, He and Xia, Liqm (2016) Design and optimization of a high power density machine for flooded industrial pump. In: 22nd International Conference on Electrical Machines (ICEM 2016), 4-7 Sept 2016, Lausanne, Switzerland. PMSM High power density machine Finite element method Genetic Algorithm (GA) optimization
spellingShingle PMSM
High power density machine
Finite element method
Genetic Algorithm (GA) optimization
Al-Timimy, A.
Degano, Michele
Giangrande, Paolo
Lo Calzo, Giovanni
Xu, Zeyun
Galea, Michael
Gerada, C.
Zhang, He
Xia, Liqm
Design and optimization of a high power density machine for flooded industrial pump
title Design and optimization of a high power density machine for flooded industrial pump
title_full Design and optimization of a high power density machine for flooded industrial pump
title_fullStr Design and optimization of a high power density machine for flooded industrial pump
title_full_unstemmed Design and optimization of a high power density machine for flooded industrial pump
title_short Design and optimization of a high power density machine for flooded industrial pump
title_sort design and optimization of a high power density machine for flooded industrial pump
topic PMSM
High power density machine
Finite element method
Genetic Algorithm (GA) optimization
url https://eprints.nottingham.ac.uk/35013/