Design and Implementation of a DSP based programmable power supply
碩士 === 明志科技大學 === 機電工程研究所 === 99 === This thesis presents a DSP based programmible power supply, which can generate three phase sine wave, direct current, basic function waveforms, and other user-defined function waveforms. This machine uses an intelligent power module (IPM) as switching device and...
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ndltd-TW-099MIT006570512016-04-22T04:24:04Z http://ndltd.ncl.edu.tw/handle/23035124051684551706 Design and Implementation of a DSP based programmable power supply 以DSP為基礎之可程式化電源供應器之設計與製作 Zhong-Yang Wu 吳忠揚 碩士 明志科技大學 機電工程研究所 99 This thesis presents a DSP based programmible power supply, which can generate three phase sine wave, direct current, basic function waveforms, and other user-defined function waveforms. This machine uses an intelligent power module (IPM) as switching device and utilizes pulse width modulation (PWM) approach to control the switching operations of the IPM. The designed power supply adopts Microchip dsPIC30F4011 and PIC16F877A as control core, and uses Controller Area network (CAN) as communication interface. The user-defined waveform data are downloaded from personal computer with RS232 and LabVIEW. The output frequency range of the realized variable voltage variable frequency power supply is 6.5 to 110Hz. This programmible power supply not only can operate alone, but also can operate on Connected Grid. It can coordinate with the CAN communication to achieve distributed control and monitoring. Yueh-Ru Yang 楊岳儒 2011 學位論文 ; thesis 87 zh-TW |
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碩士 === 明志科技大學 === 機電工程研究所 === 99 === This thesis presents a DSP based programmible power supply, which can generate three phase sine wave, direct current, basic function waveforms, and other user-defined function waveforms. This machine uses an intelligent power module (IPM) as switching device and utilizes pulse width modulation (PWM) approach to control the switching operations of the IPM. The designed power supply adopts Microchip dsPIC30F4011 and PIC16F877A as control core, and uses Controller Area network (CAN) as communication interface. The user-defined waveform data are downloaded from personal computer with RS232 and LabVIEW. The output frequency range of the realized variable voltage variable frequency power supply is 6.5 to 110Hz. This programmible power supply not only can operate alone, but also can operate on Connected Grid. It can coordinate with the CAN communication to achieve distributed control and monitoring.
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author2 |
Yueh-Ru Yang |
author_facet |
Yueh-Ru Yang Zhong-Yang Wu 吳忠揚 |
author |
Zhong-Yang Wu 吳忠揚 |
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Zhong-Yang Wu 吳忠揚 Design and Implementation of a DSP based programmable power supply |
author_sort |
Zhong-Yang Wu |
title |
Design and Implementation of a DSP based programmable power supply |
title_short |
Design and Implementation of a DSP based programmable power supply |
title_full |
Design and Implementation of a DSP based programmable power supply |
title_fullStr |
Design and Implementation of a DSP based programmable power supply |
title_full_unstemmed |
Design and Implementation of a DSP based programmable power supply |
title_sort |
design and implementation of a dsp based programmable power supply |
publishDate |
2011 |
url |
http://ndltd.ncl.edu.tw/handle/23035124051684551706 |
work_keys_str_mv |
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