Single-phase matrix converter for rectifier operation controlled using PIC / Mohd Faudzan Abd Latib

Single-phase matrix converter (SPMC) is a device that contains eight stage of switching. For AC to DC converter, only certain stage is use for the process. Each switching stage has IGBT, IGBT driver and other electronic component. Pair of IGBT is called bi directional switch. 5V DC supply is needed...

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Main Author: Abd Latib, Mohd Faudzan
Format: Thesis
Language:English
Published: 2010
Online Access:https://ir.uitm.edu.my/id/eprint/84665/1/84665.pdf
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spelling my-uitm-ir.846652024-01-29T04:17:16Z Single-phase matrix converter for rectifier operation controlled using PIC / Mohd Faudzan Abd Latib 2010 Abd Latib, Mohd Faudzan Single-phase matrix converter (SPMC) is a device that contains eight stage of switching. For AC to DC converter, only certain stage is use for the process. Each switching stage has IGBT, IGBT driver and other electronic component. Pair of IGBT is called bi directional switch. 5V DC supply is needed to generate to the SPMC. An AC to DC converter is construct and supplied of 20V(rms) input voltage, 50 Hz, supplying a passive R and RL load operated with modulation index of 30% and 50% and PWM fiequency 3kHz and 6kHz. MATLAB 2008 software is use as medium to design and simulate the model of Single Phase Matrix Converter (SPMC). Digital switching and PWM are generate using Peripheral Interface Controller (PIC). The result is demonstrated at the hardware and the result is display at oscilloscope and multimeter. The MATLAB show the behaviour of the matrix converter operations and to program into the PIC is using MPLAB IDE software in C Languange. 2010 Thesis https://ir.uitm.edu.my/id/eprint/84665/ https://ir.uitm.edu.my/id/eprint/84665/1/84665.pdf text en public degree Universiti Teknologi MARA (UiTM) Faculty of Electrical Engineering Mohammad Noor, Siti Zaliha
institution Universiti Teknologi MARA
collection UiTM Institutional Repository
language English
advisor Mohammad Noor, Siti Zaliha
description Single-phase matrix converter (SPMC) is a device that contains eight stage of switching. For AC to DC converter, only certain stage is use for the process. Each switching stage has IGBT, IGBT driver and other electronic component. Pair of IGBT is called bi directional switch. 5V DC supply is needed to generate to the SPMC. An AC to DC converter is construct and supplied of 20V(rms) input voltage, 50 Hz, supplying a passive R and RL load operated with modulation index of 30% and 50% and PWM fiequency 3kHz and 6kHz. MATLAB 2008 software is use as medium to design and simulate the model of Single Phase Matrix Converter (SPMC). Digital switching and PWM are generate using Peripheral Interface Controller (PIC). The result is demonstrated at the hardware and the result is display at oscilloscope and multimeter. The MATLAB show the behaviour of the matrix converter operations and to program into the PIC is using MPLAB IDE software in C Languange.
format Thesis
qualification_level Bachelor degree
author Abd Latib, Mohd Faudzan
spellingShingle Abd Latib, Mohd Faudzan
Single-phase matrix converter for rectifier operation controlled using PIC / Mohd Faudzan Abd Latib
author_facet Abd Latib, Mohd Faudzan
author_sort Abd Latib, Mohd Faudzan
title Single-phase matrix converter for rectifier operation controlled using PIC / Mohd Faudzan Abd Latib
title_short Single-phase matrix converter for rectifier operation controlled using PIC / Mohd Faudzan Abd Latib
title_full Single-phase matrix converter for rectifier operation controlled using PIC / Mohd Faudzan Abd Latib
title_fullStr Single-phase matrix converter for rectifier operation controlled using PIC / Mohd Faudzan Abd Latib
title_full_unstemmed Single-phase matrix converter for rectifier operation controlled using PIC / Mohd Faudzan Abd Latib
title_sort single-phase matrix converter for rectifier operation controlled using pic / mohd faudzan abd latib
granting_institution Universiti Teknologi MARA (UiTM)
granting_department Faculty of Electrical Engineering
publishDate 2010
url https://ir.uitm.edu.my/id/eprint/84665/1/84665.pdf
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