Simulation of two-stack two-phase Switched Reluctance (SR) drive using XCOS / Nur Shayheda Hafizan Azhar

This paper describes the designing, modeling and simulation structure for a two-stack two-phase Switched Reluctance (SR) Drive. This simulation presents the performance of the proposed SRM motor especially the torque expression that have a relationship between machine flux linkages or inductance and...

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Main Author: Azhar, Nur Syayhida Hafizan
Format: Thesis
Language:English
Published: 2013
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/84604/1/84604.pdf
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spelling my-uitm-ir.846042024-04-04T08:05:45Z Simulation of two-stack two-phase Switched Reluctance (SR) drive using XCOS / Nur Shayheda Hafizan Azhar 2013 Azhar, Nur Syayhida Hafizan TK Electrical engineering. Electronics. Nuclear engineering This paper describes the designing, modeling and simulation structure for a two-stack two-phase Switched Reluctance (SR) Drive. This simulation presents the performance of the proposed SRM motor especially the torque expression that have a relationship between machine flux linkages or inductance and the rotor position. This project also to approve that the two phase of SR motor has a high torque density, high speed and has much more flat static torque characteristic besides the occurring of torque ripple and acoustic noise. Torque ripple minimization can be possessed by controller unit system such as speed controller and current controller. Thus, PI controller is applying in the system to improve its performance. Scilab/Xcos software are used to predict and simulate the performance of the motor. 2013 Thesis https://ir.uitm.edu.my/id/eprint/84604/ https://ir.uitm.edu.my/id/eprint/84604/1/84604.pdf text en public degree Universiti Teknologi MARA (UiTM) Faculty of Electrical Engineering -, Chan Sei
institution Universiti Teknologi MARA
collection UiTM Institutional Repository
language English
advisor -, Chan Sei
topic TK Electrical engineering
Electronics
Nuclear engineering
spellingShingle TK Electrical engineering
Electronics
Nuclear engineering
Azhar, Nur Syayhida Hafizan
Simulation of two-stack two-phase Switched Reluctance (SR) drive using XCOS / Nur Shayheda Hafizan Azhar
description This paper describes the designing, modeling and simulation structure for a two-stack two-phase Switched Reluctance (SR) Drive. This simulation presents the performance of the proposed SRM motor especially the torque expression that have a relationship between machine flux linkages or inductance and the rotor position. This project also to approve that the two phase of SR motor has a high torque density, high speed and has much more flat static torque characteristic besides the occurring of torque ripple and acoustic noise. Torque ripple minimization can be possessed by controller unit system such as speed controller and current controller. Thus, PI controller is applying in the system to improve its performance. Scilab/Xcos software are used to predict and simulate the performance of the motor.
format Thesis
qualification_level Bachelor degree
author Azhar, Nur Syayhida Hafizan
author_facet Azhar, Nur Syayhida Hafizan
author_sort Azhar, Nur Syayhida Hafizan
title Simulation of two-stack two-phase Switched Reluctance (SR) drive using XCOS / Nur Shayheda Hafizan Azhar
title_short Simulation of two-stack two-phase Switched Reluctance (SR) drive using XCOS / Nur Shayheda Hafizan Azhar
title_full Simulation of two-stack two-phase Switched Reluctance (SR) drive using XCOS / Nur Shayheda Hafizan Azhar
title_fullStr Simulation of two-stack two-phase Switched Reluctance (SR) drive using XCOS / Nur Shayheda Hafizan Azhar
title_full_unstemmed Simulation of two-stack two-phase Switched Reluctance (SR) drive using XCOS / Nur Shayheda Hafizan Azhar
title_sort simulation of two-stack two-phase switched reluctance (sr) drive using xcos / nur shayheda hafizan azhar
granting_institution Universiti Teknologi MARA (UiTM)
granting_department Faculty of Electrical Engineering
publishDate 2013
url https://ir.uitm.edu.my/id/eprint/84604/1/84604.pdf
_version_ 1804889728560922624