Design and analysis of DC to DC converter employing bipolar PWM technique for photovoltaic system / Sabri Wahid

This paper presents a design and simulation of DC to DC converter that is connected from solar electric system. The main focus of this project is to construct a DC to DC converter which is one of the main parts in solar photovoltaic (PV). The input usually is obtained by PV array and therefore the d...

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Main Author: Wahid, Sabri
Format: Thesis
Language:English
Published: 2011
Online Access:https://ir.uitm.edu.my/id/eprint/85285/1/85285.pdf
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spelling my-uitm-ir.852852024-02-14T04:25:53Z Design and analysis of DC to DC converter employing bipolar PWM technique for photovoltaic system / Sabri Wahid 2011 Wahid, Sabri This paper presents a design and simulation of DC to DC converter that is connected from solar electric system. The main focus of this project is to construct a DC to DC converter which is one of the main parts in solar photovoltaic (PV). The input usually is obtained by PV array and therefore the design and simulation in this paper covers the voltage and current that flow through DC to DC converter. This project is to ensure that the output voltage will be step-up from 12 VDC to 24 VDC. The modes of operation for the converter are controlled by corresponding Pulse Width Modulation (PWM) applied to the gate of IGBT. In designing process, the switching frequency, is set at 1 kHz and variable duty cycle, D by employing bipolar PWM technique. The simulations of the converter using PSIM are presented to verify the circuit operation. The laboratory model of the converter are developed and tested. The experimental result is presented. 2011 Thesis https://ir.uitm.edu.my/id/eprint/85285/ https://ir.uitm.edu.my/id/eprint/85285/1/85285.pdf text en public degree Universiti Teknologi MARA (UiTM) Faculty of Electrical Engineering
institution Universiti Teknologi MARA
collection UiTM Institutional Repository
language English
description This paper presents a design and simulation of DC to DC converter that is connected from solar electric system. The main focus of this project is to construct a DC to DC converter which is one of the main parts in solar photovoltaic (PV). The input usually is obtained by PV array and therefore the design and simulation in this paper covers the voltage and current that flow through DC to DC converter. This project is to ensure that the output voltage will be step-up from 12 VDC to 24 VDC. The modes of operation for the converter are controlled by corresponding Pulse Width Modulation (PWM) applied to the gate of IGBT. In designing process, the switching frequency, is set at 1 kHz and variable duty cycle, D by employing bipolar PWM technique. The simulations of the converter using PSIM are presented to verify the circuit operation. The laboratory model of the converter are developed and tested. The experimental result is presented.
format Thesis
qualification_level Bachelor degree
author Wahid, Sabri
spellingShingle Wahid, Sabri
Design and analysis of DC to DC converter employing bipolar PWM technique for photovoltaic system / Sabri Wahid
author_facet Wahid, Sabri
author_sort Wahid, Sabri
title Design and analysis of DC to DC converter employing bipolar PWM technique for photovoltaic system / Sabri Wahid
title_short Design and analysis of DC to DC converter employing bipolar PWM technique for photovoltaic system / Sabri Wahid
title_full Design and analysis of DC to DC converter employing bipolar PWM technique for photovoltaic system / Sabri Wahid
title_fullStr Design and analysis of DC to DC converter employing bipolar PWM technique for photovoltaic system / Sabri Wahid
title_full_unstemmed Design and analysis of DC to DC converter employing bipolar PWM technique for photovoltaic system / Sabri Wahid
title_sort design and analysis of dc to dc converter employing bipolar pwm technique for photovoltaic system / sabri wahid
granting_institution Universiti Teknologi MARA (UiTM)
granting_department Faculty of Electrical Engineering
publishDate 2011
url https://ir.uitm.edu.my/id/eprint/85285/1/85285.pdf
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