Permanent Magnet Flux-Switching Machine, Optimal Design and Performance Analysis

In this paper an analytical sizing-design procedure for a typical permanent magnet flux-switching machine (PMFSM) with 12 stator and respectively 10 rotor poles is presented. An optimal design, based on Hooke-Jeeves method with the objective functions of maximum torque density, is performed. The res...

Full description

Bibliographic Details
Main Authors: Liviu Emilian Somesan, Emil Padurariu, Ioan Adrian Viorel
Format: Article
Language:English
Published: VSB-Technical University of Ostrava 2013-01-01
Series:Advances in Electrical and Electronic Engineering
Subjects:
Online Access:http://advances.utc.sk/index.php/AEEE/article/view/741
_version_ 1797827052128174080
author Liviu Emilian Somesan
Emil Padurariu
Ioan Adrian Viorel
author_facet Liviu Emilian Somesan
Emil Padurariu
Ioan Adrian Viorel
author_sort Liviu Emilian Somesan
collection DOAJ
description In this paper an analytical sizing-design procedure for a typical permanent magnet flux-switching machine (PMFSM) with 12 stator and respectively 10 rotor poles is presented. An optimal design, based on Hooke-Jeeves method with the objective functions of maximum torque density, is performed. The results were validated via two dimensions finite element analysis (2D-FEA) applied on the optimized structure. The influence of the permanent magnet (PM) dimensions and type, respectively of the rotor poles' shape on the machine performance were also studied via 2D-FEA.
first_indexed 2024-04-09T12:42:05Z
format Article
id doaj.art-a487e8cfd8f04e54870d0742a504ac8a
institution Directory Open Access Journal
issn 1336-1376
1804-3119
language English
last_indexed 2024-04-09T12:42:05Z
publishDate 2013-01-01
publisher VSB-Technical University of Ostrava
record_format Article
series Advances in Electrical and Electronic Engineering
spelling doaj.art-a487e8cfd8f04e54870d0742a504ac8a2023-05-14T20:50:08ZengVSB-Technical University of OstravaAdvances in Electrical and Electronic Engineering1336-13761804-31192013-01-01112465310.15598/aeee.v11i2.741574Permanent Magnet Flux-Switching Machine, Optimal Design and Performance AnalysisLiviu Emilian Somesan0Emil Padurariu1Ioan Adrian Viorel2Technical University of Cluj-Napoca, RomaniaTechnical University of Cluj-Napoca, RomaniaTechnical University of Cluj-Napoca, RomaniaIn this paper an analytical sizing-design procedure for a typical permanent magnet flux-switching machine (PMFSM) with 12 stator and respectively 10 rotor poles is presented. An optimal design, based on Hooke-Jeeves method with the objective functions of maximum torque density, is performed. The results were validated via two dimensions finite element analysis (2D-FEA) applied on the optimized structure. The influence of the permanent magnet (PM) dimensions and type, respectively of the rotor poles' shape on the machine performance were also studied via 2D-FEA.http://advances.utc.sk/index.php/AEEE/article/view/741optimal designperformance analysispmfsm.
spellingShingle Liviu Emilian Somesan
Emil Padurariu
Ioan Adrian Viorel
Permanent Magnet Flux-Switching Machine, Optimal Design and Performance Analysis
Advances in Electrical and Electronic Engineering
optimal design
performance analysis
pmfsm.
title Permanent Magnet Flux-Switching Machine, Optimal Design and Performance Analysis
title_full Permanent Magnet Flux-Switching Machine, Optimal Design and Performance Analysis
title_fullStr Permanent Magnet Flux-Switching Machine, Optimal Design and Performance Analysis
title_full_unstemmed Permanent Magnet Flux-Switching Machine, Optimal Design and Performance Analysis
title_short Permanent Magnet Flux-Switching Machine, Optimal Design and Performance Analysis
title_sort permanent magnet flux switching machine optimal design and performance analysis
topic optimal design
performance analysis
pmfsm.
url http://advances.utc.sk/index.php/AEEE/article/view/741
work_keys_str_mv AT liviuemiliansomesan permanentmagnetfluxswitchingmachineoptimaldesignandperformanceanalysis
AT emilpadurariu permanentmagnetfluxswitchingmachineoptimaldesignandperformanceanalysis
AT ioanadrianviorel permanentmagnetfluxswitchingmachineoptimaldesignandperformanceanalysis