Power factor correction using a boost quasi-resonant converter
<p>A steady-state analysis of a quasi-resonant zero current boost converter is performed in its application to a single-phase power factor correction circuit. The known closed-form expressions are used to design the boost converter and the multiloop control circuit. The operating characteristi...
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ndltd-VTETD-oai-vtechworks.lib.vt.edu-10919-419012021-05-08T05:27:00Z Power factor correction using a boost quasi-resonant converter George, Mark S. Electrical Engineering Lee, Fred C. Chen, Dan Y. Vorperian, Vatche LD5655.V855 1990.G467 Electric current converters -- Research <p>A steady-state analysis of a quasi-resonant zero current boost converter is performed in its application to a single-phase power factor correction circuit. The known closed-form expressions are used to design the boost converter and the multiloop control circuit. The operating characteristics are simulated by using PSPICE and are experimentally verified. Considerations for a practical design are based upon hardware operating at a maximum of 1 megahertz, with a 115 VRMS input, 200 VDC and 100 watt output.</p> Master of Science 2014-03-14T21:32:48Z 2014-03-14T21:32:48Z 1990-05-05 2009-04-07 2009-04-07 2009-04-07 Thesis Text etd-04072009-040357 http://hdl.handle.net/10919/41901 http://scholar.lib.vt.edu/theses/available/etd-04072009-040357/ en OCLC# 22291063 LD5655.V855_1990.G467.pdf In Copyright http://rightsstatements.org/vocab/InC/1.0/ v, 95 leaves BTD application/pdf application/pdf Virginia Tech |
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LD5655.V855 1990.G467 Electric current converters -- Research |
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LD5655.V855 1990.G467 Electric current converters -- Research George, Mark S. Power factor correction using a boost quasi-resonant converter |
description |
<p>A steady-state analysis of a quasi-resonant zero
current boost converter is performed in its application to a
single-phase power factor correction circuit. The known
closed-form expressions are used to design the boost
converter and the multiloop control circuit. The operating
characteristics are simulated by using PSPICE and are
experimentally verified. Considerations for a practical
design are based upon hardware operating at a maximum of 1
megahertz, with a 115 VRMS input, 200 VDC and 100 watt output.</p> === Master of Science |
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Electrical Engineering |
author_facet |
Electrical Engineering George, Mark S. |
author |
George, Mark S. |
author_sort |
George, Mark S. |
title |
Power factor correction using a boost quasi-resonant converter |
title_short |
Power factor correction using a boost quasi-resonant converter |
title_full |
Power factor correction using a boost quasi-resonant converter |
title_fullStr |
Power factor correction using a boost quasi-resonant converter |
title_full_unstemmed |
Power factor correction using a boost quasi-resonant converter |
title_sort |
power factor correction using a boost quasi-resonant converter |
publisher |
Virginia Tech |
publishDate |
2014 |
url |
http://hdl.handle.net/10919/41901 http://scholar.lib.vt.edu/theses/available/etd-04072009-040357/ |
work_keys_str_mv |
AT georgemarks powerfactorcorrectionusingaboostquasiresonantconverter |
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