DocumentCode
3150278
Title
Soft-transition automotive inverters with integrated battery charging function
Author
Zarate, O.R. ; Wetzel, H. ; Lindemann, Andreas
Author_Institution
K-EFAS/E Electr. Drives, Volkswagen AG, Wolfsburg, Germany
fYear
2012
fDate
15-18 Oct. 2012
Firstpage
1
Lastpage
8
Abstract
A reduction of the charging time of traction batteries in electric vehicles is a decisive factor for a widespread adoption of this technology. Being constrained by the volume of on-board battery chargers, a direct increase of the charging power would not be a satisfactory option. Thus, innovative solutions have to be sought to break through this limitation. One such solution consists on making use of components present in the powertrain to implement the battery charging function. In this manner, a straightforward approach would be to operate the propulsion drive inverter as a three-phase rectifier. In this case, however, the power density of the system would be restricted by the volume of the input filter inductors. In this publication, a different approach is examined that promises a further increase in power density as well as an improvement of the efficiency of the powertrain. The concept is based on the idea of integrating the battery charger into the resonant auxiliary circuits of a soft switching inverter. Consequently, a reduction in space requirements for the battery charger can be coupled with an improvement in efficiency of the propulsion inverter that ultimately can lead to an enhacement of the overall power density of the system. By means of a practical case study, design aspects of the proposed concept are discussed and its characteristics are investigated.
Keywords
automotive engineering; battery chargers; battery powered vehicles; electric drives; power transmission (mechanical); resonant power convertors; secondary cells; switching convertors; traction; zero current switching; zero voltage switching; charging time reduction; electric vehicle; input filter inductor; integrated battery charging function; on-board battery charger; power density; powertrain; propulsion drive inverter; resonant auxiliary circuit; soft switching inverter; soft-transition automotive inverter; three-phase rectifier; traction battery; Batteries; Capacitors; Inductance; Inductors; Inverters; RLC circuits; Transistors;
fLanguage
English
Publisher
ieee
Conference_Titel
Electric Drives Production Conference (EDPC), 2012 2nd International
Conference_Location
Nuremberg
Print_ISBN
978-1-4673-3007-7
Type
conf
DOI
10.1109/EDPC.2012.6425141
Filename
6425141
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