Design and analysis of digital V2 controlled DC-DC converter with improved steady state operation
120 p.
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2014
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sg-ntu-dr.10356-580982023-07-04T16:04:39Z Design and analysis of digital V2 controlled DC-DC converter with improved steady state operation Wei, Han Tan Meng Tong School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering::Power electronics 120 p. This thesis presents a digital V2 controlled switching mode DC-DC converter implementation. A switching mode DC-DC converter is a power supply device that changes the DC voltage level by switching ON and OFF of the power switches. The DC-DC converter is usually controlled by a feedback loop with voltage or current feedback. V control is a feedback control method with two voltage feedback loops, which provides fast transient response and stable operation. Master of Engineering 2014-04-07T12:14:25Z 2014-04-07T12:14:25Z 2011 2011 Thesis http://hdl.handle.net/10356/58098 Nanyang Technological University application/pdf |
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DRNTU::Engineering::Electrical and electronic engineering::Power electronics Wei, Han Design and analysis of digital V2 controlled DC-DC converter with improved steady state operation |
description |
120 p. |
author2 |
Tan Meng Tong |
author_facet |
Tan Meng Tong Wei, Han |
format |
Theses and Dissertations |
author |
Wei, Han |
author_sort |
Wei, Han |
title |
Design and analysis of digital V2 controlled DC-DC converter with improved steady state operation |
title_short |
Design and analysis of digital V2 controlled DC-DC converter with improved steady state operation |
title_full |
Design and analysis of digital V2 controlled DC-DC converter with improved steady state operation |
title_fullStr |
Design and analysis of digital V2 controlled DC-DC converter with improved steady state operation |
title_full_unstemmed |
Design and analysis of digital V2 controlled DC-DC converter with improved steady state operation |
title_sort |
design and analysis of digital v2 controlled dc-dc converter with improved steady state operation |
publishDate |
2014 |
url |
http://hdl.handle.net/10356/58098 |
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1772825719787749376 |