Hardware development of 3 phase unity power factor ac -ac converter

Nowadays commercial buildings have lift systems which require variations of frequency. In this case, AC-AC converters are used to support the change of frequency level. The unity power factor can help to reduce the line losses. This project covered part of the hardware development of 3 phase uni...

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Main Author: Muhammad Fadzil Jamian.
Other Authors: Ali Iftekhar Maswood
Format: Final Year Project
Language:English
Published: 2013
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Online Access:http://hdl.handle.net/10356/54509
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-545092023-07-07T17:18:21Z Hardware development of 3 phase unity power factor ac -ac converter Muhammad Fadzil Jamian. Ali Iftekhar Maswood School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering::Power electronics Nowadays commercial buildings have lift systems which require variations of frequency. In this case, AC-AC converters are used to support the change of frequency level. The unity power factor can help to reduce the line losses. This project covered part of the hardware development of 3 phase unity power factor. The development of hardware will be the construction of the gate driver circuit for driving the Insulate Gate Bipolar Transistor modules. Recommendation by most manufacturers, the negative biasing needed in the voltage range of -15V to +15V to drive the IGBT module properly. Experiment conducted shows that negative biasing can be achievable. With reference to the paper “Transformer-less Switch Mode Power Supply” will be discussed for experimental purposes. The efficiency of the SMPS will be tested in the experiment to achieve the desired voltage of 12V. Improvement has been done to the Transformer-less Switched Mode Power Supply to achieve a voltage range of 0V to 12V. This will have the flexibility of supplying different power supply to dictate various loads. The project covered both hardware and software. The hardware testing of the proposed peak detector circuit was being done. However, it did not meet the objective of detecting the peak voltage of the Alternating Current (AC) signal. Therefore, the study of peak detector circuit will be conducted with reference to the paper “Precision Half Wave and Full Wave Rectifier”. The simulation is done using the Power Simulator (PSIM) to simulate the results of the rectification. This will be done in comparison of the proposed peak detector circuit. The simulations of the Precision Half Wave and Full Wave rectifier conducted shows that the desired peak voltage is not achievable due to the voltage drop across the diode. Bachelor of Engineering 2013-06-21T04:29:17Z 2013-06-21T04:29:17Z 2013 2013 Final Year Project (FYP) http://hdl.handle.net/10356/54509 en Nanyang Technological University 60 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Electrical and electronic engineering::Power electronics
spellingShingle DRNTU::Engineering::Electrical and electronic engineering::Power electronics
Muhammad Fadzil Jamian.
Hardware development of 3 phase unity power factor ac -ac converter
description Nowadays commercial buildings have lift systems which require variations of frequency. In this case, AC-AC converters are used to support the change of frequency level. The unity power factor can help to reduce the line losses. This project covered part of the hardware development of 3 phase unity power factor. The development of hardware will be the construction of the gate driver circuit for driving the Insulate Gate Bipolar Transistor modules. Recommendation by most manufacturers, the negative biasing needed in the voltage range of -15V to +15V to drive the IGBT module properly. Experiment conducted shows that negative biasing can be achievable. With reference to the paper “Transformer-less Switch Mode Power Supply” will be discussed for experimental purposes. The efficiency of the SMPS will be tested in the experiment to achieve the desired voltage of 12V. Improvement has been done to the Transformer-less Switched Mode Power Supply to achieve a voltage range of 0V to 12V. This will have the flexibility of supplying different power supply to dictate various loads. The project covered both hardware and software. The hardware testing of the proposed peak detector circuit was being done. However, it did not meet the objective of detecting the peak voltage of the Alternating Current (AC) signal. Therefore, the study of peak detector circuit will be conducted with reference to the paper “Precision Half Wave and Full Wave Rectifier”. The simulation is done using the Power Simulator (PSIM) to simulate the results of the rectification. This will be done in comparison of the proposed peak detector circuit. The simulations of the Precision Half Wave and Full Wave rectifier conducted shows that the desired peak voltage is not achievable due to the voltage drop across the diode.
author2 Ali Iftekhar Maswood
author_facet Ali Iftekhar Maswood
Muhammad Fadzil Jamian.
format Final Year Project
author Muhammad Fadzil Jamian.
author_sort Muhammad Fadzil Jamian.
title Hardware development of 3 phase unity power factor ac -ac converter
title_short Hardware development of 3 phase unity power factor ac -ac converter
title_full Hardware development of 3 phase unity power factor ac -ac converter
title_fullStr Hardware development of 3 phase unity power factor ac -ac converter
title_full_unstemmed Hardware development of 3 phase unity power factor ac -ac converter
title_sort hardware development of 3 phase unity power factor ac -ac converter
publishDate 2013
url http://hdl.handle.net/10356/54509
_version_ 1772827623032881152