Analysis and design of a fully soft-switched buck-boost converter for ultra-capacitor and battery combined interface circuit

A fully soft switched bidirectional converter to interface an ultra capacitor (UC) and a battery is proposed. The proposed converter acts as a Buck ZCT to charge the UC and acts as a Boost ZVT to discharge the UC. The ZVT and ZCT techniques guarantees soft switching condition for all power switches....

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Main Authors: Noghlbary, Amin Mirzaei, Farzanehfard, Hosein, Adib, Ehsan, Jusoh, Awang, Salam, Zainal
Format: Article
Published: Institution of Engineers Australia 2010
Subjects:
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author Noghlbary, Amin Mirzaei
Farzanehfard, Hosein
Adib, Ehsan
Jusoh, Awang
Salam, Zainal
author_facet Noghlbary, Amin Mirzaei
Farzanehfard, Hosein
Adib, Ehsan
Jusoh, Awang
Salam, Zainal
author_sort Noghlbary, Amin Mirzaei
collection ePrints
description A fully soft switched bidirectional converter to interface an ultra capacitor (UC) and a battery is proposed. The proposed converter acts as a Buck ZCT to charge the UC and acts as a Boost ZVT to discharge the UC. The ZVT and ZCT techniques guarantees soft switching condition for all power switches. The proposed converter has high efficiency (above 95%), requires fewer components and has small footprint. The analysis of the switching technique is validated by simulation. In addition, a 100W experimental converter is constructed. The results from simulation and experiment are in good agreement with each other.
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spelling utm.eprints-228542018-03-13T18:07:43Z http://eprints.utm.my/22854/ Analysis and design of a fully soft-switched buck-boost converter for ultra-capacitor and battery combined interface circuit Noghlbary, Amin Mirzaei Farzanehfard, Hosein Adib, Ehsan Jusoh, Awang Salam, Zainal TK Electrical engineering. Electronics Nuclear engineering A fully soft switched bidirectional converter to interface an ultra capacitor (UC) and a battery is proposed. The proposed converter acts as a Buck ZCT to charge the UC and acts as a Boost ZVT to discharge the UC. The ZVT and ZCT techniques guarantees soft switching condition for all power switches. The proposed converter has high efficiency (above 95%), requires fewer components and has small footprint. The analysis of the switching technique is validated by simulation. In addition, a 100W experimental converter is constructed. The results from simulation and experiment are in good agreement with each other. Institution of Engineers Australia 2010 Article PeerReviewed Noghlbary, Amin Mirzaei and Farzanehfard, Hosein and Adib, Ehsan and Jusoh, Awang and Salam, Zainal (2010) Analysis and design of a fully soft-switched buck-boost converter for ultra-capacitor and battery combined interface circuit. Australian Journal of Electrical & Electronics Engineering, 7 (2). 183 - 193. ISSN 1448-837X http://search.informit.com.au/documentSummary;dn=095420427427263;res=IELENG
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Noghlbary, Amin Mirzaei
Farzanehfard, Hosein
Adib, Ehsan
Jusoh, Awang
Salam, Zainal
Analysis and design of a fully soft-switched buck-boost converter for ultra-capacitor and battery combined interface circuit
title Analysis and design of a fully soft-switched buck-boost converter for ultra-capacitor and battery combined interface circuit
title_full Analysis and design of a fully soft-switched buck-boost converter for ultra-capacitor and battery combined interface circuit
title_fullStr Analysis and design of a fully soft-switched buck-boost converter for ultra-capacitor and battery combined interface circuit
title_full_unstemmed Analysis and design of a fully soft-switched buck-boost converter for ultra-capacitor and battery combined interface circuit
title_short Analysis and design of a fully soft-switched buck-boost converter for ultra-capacitor and battery combined interface circuit
title_sort analysis and design of a fully soft switched buck boost converter for ultra capacitor and battery combined interface circuit
topic TK Electrical engineering. Electronics Nuclear engineering
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