Title :
Integrated bidirectional isolated soft-switched battery charger for vehicle-to-grid technology using 4-Switch 3Φ-rectifier
Author :
Ebrahimi, Saeed ; Taghavi, Mehdi ; Tahami, Farzad ; Oraee, H.
Author_Institution :
Dept. of Electr. Eng., Sharif Univ. of Technol., Tehran, Iran
Abstract :
Battery and plug-in hybrid vehicles equipped with bidirectional battery chargers are capable of supplying power to the electric grid according to power system demand. This technology is called “vehicle to grid” or V2G. A bidirectional on-board charger can be used to improve the charge availability. An on-board charger should have small size and light weight. On the other hand, the charger must minimize power quality impact, draw current at high power factor to maximize power from an outlet. In this paper, a new three-phase integrated bidirectional isolated soft-switched battery charger is proposed which is appropriate for vehicle to grid technology. The charger utilizes a 4-switch 3Φ-rectifier as the front-end AC/DC converter and a phase-shift controlled dual bridge series resonant as the rear-end DC/DC converter. The performance of the proposed charger is investigated by simulation results.
Keywords :
battery powered vehicles; hybrid electric vehicles; power supply quality; rectifiers; zero current switching; zero voltage switching; 4-Switch 3Φ-rectifier; bidirectional on-board charger; front-end AC-DC converter; phase-shift controlled dual bridge series resonant; power quality impact; rear-end DC-DC converter; three-phase integrated bidirectional isolated soft-switched battery charger; vehicle-to-grid technology; Batteries; DC-DC power converters; Inverters; Mathematical model; Rectifiers; Vehicles; Voltage control; 4-Switch 3Φ-Rectifier; Bidirectional power converters; Dual Bridge Series Resonant Converter; PFC rectifier; Vehicle to grid;
Conference_Titel :
Industrial Electronics Society, IECON 2013 - 39th Annual Conference of the IEEE
Conference_Location :
Vienna
DOI :
10.1109/IECON.2013.6699254