DocumentCode :
2256502
Title :
AC voltage sensorless control of battery charger system in electric vehicle applications
Author :
Cong-Long Nguyen ; Hong-Hee Lee
Author_Institution :
Sch. of Electr. Eng., Univ. of Ulsan, Ulsan, South Korea
fYear :
2012
fDate :
12-14 Dec. 2012
Firstpage :
515
Lastpage :
520
Abstract :
This paper presents an effective control scheme for an electric vehicle battery charger where a symmetrical bridgeless power factor-corrected converter and a buck converter are cascaded. Both converters have been popular in industries because of their high efficiency, low cost, and compact size, hence combining these two converters makes the overall battery charging system strongly efficient. Moreover, this charger topology can operate under universal input voltage condition and attain a desired battery voltage and charging current without any ripple. In order to reduce the system cost, an estimating ac input voltage technique is introduced, which especially does not require the converter component information and therefore it is robust to the circuit parameters variation. Additionally, by adopting a duty ratio feed-forward path in current control loop, a unity input power factor and zero input current harmonic are achieved. The feasibility and practical value of the proposed approach are verified by simulation and experimental results.
Keywords :
battery chargers; battery powered vehicles; electric current control; feedforward; power factor correction; voltage control; AC voltage sensorless control scheme; ac input voltage technique; battery charger system; buck converter; charger topology; charging current; circuit parameter variation; converter component information; current control loop; duty ratio feedforward path; electric vehicle applications; electric vehicle battery charger; symmetrical bridgeless power factor-corrected converter; unity input power factor; universal input voltage condition; zero input current harmonic; Electric vehicles (EV); battery charger; buck converter; duty ratio feedforward; power factor (PF); symmetrical bridgeless PFC converter; total harmonic distortion (THD);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
IPEC, 2012 Conference on Power & Energy
Conference_Location :
Ho Chi Minh City
Type :
conf
DOI :
10.1109/ASSCC.2012.6523321
Filename :
6523321
Link To Document :
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