CPLD based controller for single phase inverters

The DC-AC converter, also known as inverter, converts DC power to AC power at desired output voltage and frequency. The DC power input to the inverter is obtained from an existing power supply. Nowadays inverters use high power switching transistors either IGBT's and/or MOSFETs. In addition,...

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Main Author: Saiman, Suhaimi
Format: Thesis
Language:English
Published: 2007
Subjects:
Online Access:http://eprints.uthm.edu.my/3174/1/SUHAIMI%20BIN%20SAIMAN%20-%2024p.pdf
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id my-uthm-ep.3174
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spelling my-uthm-ep.31742021-11-02T01:59:57Z CPLD based controller for single phase inverters 2007-01 Saiman, Suhaimi TK7800-8360 Electronics The DC-AC converter, also known as inverter, converts DC power to AC power at desired output voltage and frequency. The DC power input to the inverter is obtained from an existing power supply. Nowadays inverters use high power switching transistors either IGBT's and/or MOSFETs. In addition, the voltage and frequency of the source can be adjustable. These single phase inverters and their operating principles are analyzed in detail. In this project, a full-bridge, single phase inverter that uses a digital Pulse Width Modulation (PWM) to control the power switches at 18 kHz was constructed. The concept of PWM with different strategies for inverters is described. A type of filter is used to improve the distortion in the output waveform. A design and implementation of PWM by using complex programmable logic device (CPLD) from Altera MaxPlus II is constructed and programmed. The involved software, hardware, and suitable algorithm to implement and generate the PWM are developed in details. To verify the significant of this single phase inverter, the output voltage will be tested with resistive load and inductive load. 2007-01 Thesis http://eprints.uthm.edu.my/3174/ http://eprints.uthm.edu.my/3174/1/SUHAIMI%20BIN%20SAIMAN%20-%2024p.pdf text en public mphil masters Universiti Malaya Faculty of Engineering Technology
institution Universiti Tun Hussein Onn Malaysia
collection UTHM Institutional Repository
language English
topic TK7800-8360 Electronics
spellingShingle TK7800-8360 Electronics
Saiman, Suhaimi
CPLD based controller for single phase inverters
description The DC-AC converter, also known as inverter, converts DC power to AC power at desired output voltage and frequency. The DC power input to the inverter is obtained from an existing power supply. Nowadays inverters use high power switching transistors either IGBT's and/or MOSFETs. In addition, the voltage and frequency of the source can be adjustable. These single phase inverters and their operating principles are analyzed in detail. In this project, a full-bridge, single phase inverter that uses a digital Pulse Width Modulation (PWM) to control the power switches at 18 kHz was constructed. The concept of PWM with different strategies for inverters is described. A type of filter is used to improve the distortion in the output waveform. A design and implementation of PWM by using complex programmable logic device (CPLD) from Altera MaxPlus II is constructed and programmed. The involved software, hardware, and suitable algorithm to implement and generate the PWM are developed in details. To verify the significant of this single phase inverter, the output voltage will be tested with resistive load and inductive load.
format Thesis
qualification_name Master of Philosophy (M.Phil.)
qualification_level Master's degree
author Saiman, Suhaimi
author_facet Saiman, Suhaimi
author_sort Saiman, Suhaimi
title CPLD based controller for single phase inverters
title_short CPLD based controller for single phase inverters
title_full CPLD based controller for single phase inverters
title_fullStr CPLD based controller for single phase inverters
title_full_unstemmed CPLD based controller for single phase inverters
title_sort cpld based controller for single phase inverters
granting_institution Universiti Malaya
granting_department Faculty of Engineering Technology
publishDate 2007
url http://eprints.uthm.edu.my/3174/1/SUHAIMI%20BIN%20SAIMAN%20-%2024p.pdf
_version_ 1747831020428722176