DocumentCode
1936067
Title
Charge-based ZVS soft switching analysis of a single-stage dual active bridge AC-DC converter
Author
Everts, Jordi ; Krismer, F. ; Van den Keybus, Jeroen ; Driesen, Johan ; Kolar, Johann Walter
Author_Institution
Dept. of Electr. Eng., Katholieke Univ. Leuven (KU Leuven), Leuven, Belgium
fYear
2013
fDate
15-19 Sept. 2013
Firstpage
4820
Lastpage
4829
Abstract
A semi-analytical modulation scheme to operate a single-phase, single-stage dual active bridge (DAB) AC-DC converter under full-operating-range zero voltage switching (ZVS) is proposed. The converter topology consists of a DAB DC-DC converter, receiving a rectified AC line voltage via a synchronous rectifier. ZVS modulation strategies previously proposed in literature are either based on current-based (CB) or energy-based (EB) ZVS analyses. The combined phase-shift, duty-cycle, and switching frequency modulation proposed in this paper relies on a novel, current-dependent charge-based (CDCB) ZVS analysis, taking into account the commutation charge of the (parasitic) switch capacitances as well as the time dependency of the commutation currents. Thereby, commutation inductance is shown to be an essential element in achieving full-operating-range ZVS. Experimental results obtained from a 3.7 kW bidirectional electric vehicle battery charger which interfaces a 400 V DC-bus with the 230 Vac, 50 Hz utility grid are given to validate the analysis and practical feasibility of the proposed strategy.
Keywords
AC-DC power convertors; switching convertors; zero voltage switching; CB ZVS analysis; CDCB; DAB AC-DC converter; DAB DC-DC converter; DC-bus; EB ZVS analysis; ZVS modulation strategy; bidirectional electric vehicle battery charger; charge-based ZVS soft switching analysis; combined phase-shift duty-cycle; commutation charge; commutation currents; commutation inductance; converter topology; current-based ZVS analysis; current-dependent charge-based ZVS analysis; energy-based ZVS analysis; frequency 50 Hz; full-operating-range zero voltage switching; power 3.7 kW; rectified AC line voltage; semianalytical modulation scheme; single-stage dual active bridge AC-DC converter; switch capacitances; switching frequency modulation; synchronous rectifier; time dependency; utility grid; voltage 230 V; voltage 400 V; Bridge circuits; Capacitance; Electromagnetic compatibility; Hafnium; Modulation; Switches; Zero voltage switching; AC-DC power conversion; battery charger; dual active bridge; modulation schemes; zero voltage switching;
fLanguage
English
Publisher
ieee
Conference_Titel
Energy Conversion Congress and Exposition (ECCE), 2013 IEEE
Conference_Location
Denver, CO
Type
conf
DOI
10.1109/ECCE.2013.6647349
Filename
6647349
Link To Document