Optimizing the magnetic core structure of a multi-stack Switched Reluctance (SR) motor using finite-element modeling: article / Nurul Nadia Zoid

This proposal described the application of Finite Element Magnetic Method (FEMM) on analysis of optimizing the magnetic core structure of a multi-stack switched reluctance motor (SRM). The motor stack is modeled in Finite Element Magnetic Method (FEMM) package and the performance parameter computed...

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Main Author: Zoid, Nurul Nadia
Format: Article
Language:English
Published: 2013
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/7235/1/7235.pdf
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author Zoid, Nurul Nadia
author_facet Zoid, Nurul Nadia
author_sort Zoid, Nurul Nadia
collection UITM
description This proposal described the application of Finite Element Magnetic Method (FEMM) on analysis of optimizing the magnetic core structure of a multi-stack switched reluctance motor (SRM). The motor stack is modeled in Finite Element Magnetic Method (FEMM) package and the performance parameter computed such as inductance, resistance, flux linkage, voltage drop and etc. The pole widths of the stator is varied in steps to search for the optimum rotor pole width for a given stator pole width. After that flux linkage over current and rotor position versus torque index are plotted. The process is repeated for other stator pole widths until both optimum stator and rotor pole widths are obtained.
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spelling oai:ir.uitm.edu.my:72352024-07-28T05:18:59Z https://ir.uitm.edu.my/id/eprint/7235/ Optimizing the magnetic core structure of a multi-stack Switched Reluctance (SR) motor using finite-element modeling: article / Nurul Nadia Zoid Zoid, Nurul Nadia Finite element method This proposal described the application of Finite Element Magnetic Method (FEMM) on analysis of optimizing the magnetic core structure of a multi-stack switched reluctance motor (SRM). The motor stack is modeled in Finite Element Magnetic Method (FEMM) package and the performance parameter computed such as inductance, resistance, flux linkage, voltage drop and etc. The pole widths of the stator is varied in steps to search for the optimum rotor pole width for a given stator pole width. After that flux linkage over current and rotor position versus torque index are plotted. The process is repeated for other stator pole widths until both optimum stator and rotor pole widths are obtained. 2013 Article NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/7235/1/7235.pdf Optimizing the magnetic core structure of a multi-stack Switched Reluctance (SR) motor using finite-element modeling: article / Nurul Nadia Zoid. (2013) pp. 1-5.
spellingShingle Finite element method
Zoid, Nurul Nadia
Optimizing the magnetic core structure of a multi-stack Switched Reluctance (SR) motor using finite-element modeling: article / Nurul Nadia Zoid
title Optimizing the magnetic core structure of a multi-stack Switched Reluctance (SR) motor using finite-element modeling: article / Nurul Nadia Zoid
title_full Optimizing the magnetic core structure of a multi-stack Switched Reluctance (SR) motor using finite-element modeling: article / Nurul Nadia Zoid
title_fullStr Optimizing the magnetic core structure of a multi-stack Switched Reluctance (SR) motor using finite-element modeling: article / Nurul Nadia Zoid
title_full_unstemmed Optimizing the magnetic core structure of a multi-stack Switched Reluctance (SR) motor using finite-element modeling: article / Nurul Nadia Zoid
title_short Optimizing the magnetic core structure of a multi-stack Switched Reluctance (SR) motor using finite-element modeling: article / Nurul Nadia Zoid
title_sort optimizing the magnetic core structure of a multi stack switched reluctance sr motor using finite element modeling article nurul nadia zoid
topic Finite element method
url https://ir.uitm.edu.my/id/eprint/7235/1/7235.pdf
work_keys_str_mv AT zoidnurulnadia optimizingthemagneticcorestructureofamultistackswitchedreluctancesrmotorusingfiniteelementmodelingarticlenurulnadiazoid