Design on switching sequence for control circuit by using Altera Max+Plus II
The purpose of this research work is to design digital switching sequence for control circuit. A digital system comes with more benefit than analog which is programmable, faster, precise and flexible. These proposed digital switching sequences are application for single-phase and three-phase inve...
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my.uthm.eprints.32312021-11-02T02:10:49Z http://eprints.uthm.edu.my/3231/ Design on switching sequence for control circuit by using Altera Max+Plus II Aziz, Roziah TK7800-8360 Electronics The purpose of this research work is to design digital switching sequence for control circuit. A digital system comes with more benefit than analog which is programmable, faster, precise and flexible. These proposed digital switching sequences are application for single-phase and three-phase inverters. By controlling analog circuits digitally, system cost and power consumption can be drastically reduced. The switching sequences are designed using Altera Max+Plus II and downloaded to University Program (UP1) development board unit which consists of two types of Complex Programming Logic Devices (CPLD). In this research work, MAX7000 has been chosen to download the proposed switching sequence that has been designed. To prove the validity of the switching sequences chosen for single-phase and three-phase inverter, MATLAB/ Simulink is used as the simulation software. At the end of this research work, the digital switching sequences for single-phase and three-phase inverter have successfully been designed. 2007-11 Thesis NonPeerReviewed text en http://eprints.uthm.edu.my/3231/2/ROZIAH%20BINTI%20AZIZ%20-%20declaration.pdf text en http://eprints.uthm.edu.my/3231/1/ROZIAH%20BINTI%20AZIZ%20-%2024p.pdf text en http://eprints.uthm.edu.my/3231/3/ROZIAH%20BINTI%20AZIZ%20-%20fulltext.pdf Aziz, Roziah (2007) Design on switching sequence for control circuit by using Altera Max+Plus II. Masters thesis, Universiti Tun Hussein Onn Malaysia. |
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TK7800-8360 Electronics Aziz, Roziah Design on switching sequence for control circuit by using Altera Max+Plus II |
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The purpose of this research work is to design digital switching sequence for
control circuit. A digital system comes with more benefit than analog which is
programmable, faster, precise and flexible. These proposed digital switching sequences
are application for single-phase and three-phase inverters. By controlling analog circuits
digitally, system cost and power consumption can be drastically reduced. The switching
sequences are designed using Altera Max+Plus II and downloaded to University
Program (UP1) development board unit which consists of two types of Complex
Programming Logic Devices (CPLD). In this research work, MAX7000 has been chosen
to download the proposed switching sequence that has been designed. To prove the
validity of the switching sequences chosen for single-phase and three-phase inverter,
MATLAB/ Simulink is used as the simulation software. At the end of this research
work, the digital switching sequences for single-phase and three-phase inverter have
successfully been designed. |
format |
Thesis |
author |
Aziz, Roziah |
author_facet |
Aziz, Roziah |
author_sort |
Aziz, Roziah |
title |
Design on switching sequence for control circuit by using Altera Max+Plus II |
title_short |
Design on switching sequence for control circuit by using Altera Max+Plus II |
title_full |
Design on switching sequence for control circuit by using Altera Max+Plus II |
title_fullStr |
Design on switching sequence for control circuit by using Altera Max+Plus II |
title_full_unstemmed |
Design on switching sequence for control circuit by using Altera Max+Plus II |
title_sort |
design on switching sequence for control circuit by using altera max+plus ii |
publishDate |
2007 |
url |
http://eprints.uthm.edu.my/3231/2/ROZIAH%20BINTI%20AZIZ%20-%20declaration.pdf http://eprints.uthm.edu.my/3231/1/ROZIAH%20BINTI%20AZIZ%20-%2024p.pdf http://eprints.uthm.edu.my/3231/3/ROZIAH%20BINTI%20AZIZ%20-%20fulltext.pdf http://eprints.uthm.edu.my/3231/ |
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1738581098995122176 |