Speed performance of single phase induction motor using variable frequency IGBT and MOSFET inverter / Nur Sharifah Firzada Sukirman

This paper presents speed performance of single phase induction motor using variable frequency IGBT and MOSFET inverter. The speed is varied from 35Hz to 65Hz by adjusting PWM inverter. The PWM inverter is controlled to produce a desired sinusoidal voltage at a particular frequency, which is filtere...

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Main Author: Sukirman, Nur Sharifah Firzada
Format: Thesis
Language:English
Published: 2011
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/79502/1/79502.PDF
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spelling my-uitm-ir.795022024-08-19T16:40:53Z Speed performance of single phase induction motor using variable frequency IGBT and MOSFET inverter / Nur Sharifah Firzada Sukirman 2011 Sukirman, Nur Sharifah Firzada Q Science (General) This paper presents speed performance of single phase induction motor using variable frequency IGBT and MOSFET inverter. The speed is varied from 35Hz to 65Hz by adjusting PWM inverter. The PWM inverter is controlled to produce a desired sinusoidal voltage at a particular frequency, which is filtered by a series inductance and a shunt capacitor. The simulation results are presented using Matlab/Simulink R2010a. The results show that the IGBT inverter is slightly difference compared to the MOSFET inverter in terms of the single phase induction motor rotor speed performance. The total harmonic distortion, THD spectrum for the input current of MOSFET is much better than the input current IGBT using different value of inductance and capacitor as the passive filter. 2011 Thesis https://ir.uitm.edu.my/id/eprint/79502/ https://ir.uitm.edu.my/id/eprint/79502/1/79502.PDF text en public degree Universiti Teknologi MARA (UiTM) Faculty of Electrical Engineering
institution Universiti Teknologi MARA
collection UiTM Institutional Repository
language English
topic Q Science (General)
spellingShingle Q Science (General)
Sukirman, Nur Sharifah Firzada
Speed performance of single phase induction motor using variable frequency IGBT and MOSFET inverter / Nur Sharifah Firzada Sukirman
description This paper presents speed performance of single phase induction motor using variable frequency IGBT and MOSFET inverter. The speed is varied from 35Hz to 65Hz by adjusting PWM inverter. The PWM inverter is controlled to produce a desired sinusoidal voltage at a particular frequency, which is filtered by a series inductance and a shunt capacitor. The simulation results are presented using Matlab/Simulink R2010a. The results show that the IGBT inverter is slightly difference compared to the MOSFET inverter in terms of the single phase induction motor rotor speed performance. The total harmonic distortion, THD spectrum for the input current of MOSFET is much better than the input current IGBT using different value of inductance and capacitor as the passive filter.
format Thesis
qualification_level Bachelor degree
author Sukirman, Nur Sharifah Firzada
author_facet Sukirman, Nur Sharifah Firzada
author_sort Sukirman, Nur Sharifah Firzada
title Speed performance of single phase induction motor using variable frequency IGBT and MOSFET inverter / Nur Sharifah Firzada Sukirman
title_short Speed performance of single phase induction motor using variable frequency IGBT and MOSFET inverter / Nur Sharifah Firzada Sukirman
title_full Speed performance of single phase induction motor using variable frequency IGBT and MOSFET inverter / Nur Sharifah Firzada Sukirman
title_fullStr Speed performance of single phase induction motor using variable frequency IGBT and MOSFET inverter / Nur Sharifah Firzada Sukirman
title_full_unstemmed Speed performance of single phase induction motor using variable frequency IGBT and MOSFET inverter / Nur Sharifah Firzada Sukirman
title_sort speed performance of single phase induction motor using variable frequency igbt and mosfet inverter / nur sharifah firzada sukirman
granting_institution Universiti Teknologi MARA (UiTM)
granting_department Faculty of Electrical Engineering
publishDate 2011
url https://ir.uitm.edu.my/id/eprint/79502/1/79502.PDF
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