DocumentCode :
267326
Title :
Lower electric stress ZCS-PWM superbuck converter for electric vehicle DC charging spot
Author :
Kong Xiaoxiao ; Qin Ling ; Wang Yafang ; Zhang Jiaqi ; Hu Mao ; Xie Shaojun
Author_Institution :
Sch. of Electr. Eng., Nantong Univ., Nantong, China
fYear :
2014
fDate :
5-8 Nov. 2014
Firstpage :
754
Lastpage :
760
Abstract :
To promote the wide acceptance of electric vehicles (EVs), the charging facilities should satisfy with some basic requirements, such as high efficiency, low harmonic pollution, long lifetime, low cost, and ease of bulk construction. Therefore, a novel EV charging facility - dc charging spot and a lower stress zero current switch-pulse width modulation (ZCS-PWM) Superbuck converter suitable for output stage of the former are proposed in this paper. The proposed converter features ZCS of all power switches at entire input voltage and load range, lower voltage stress benefiting from passive clamping circuit. Furthermore, this converter has no additional current stress in the main switch in comparison to hard-switching converter counterpart. In the paper, operation principles, constraint to achieve the ZCS soft communication and electric stress of all power switches have been analyzed in detail. Then, the state-space averaging approach is used to estimate steady-state character of the ZCS-PWM Superbuck converter in continuous current mode (CCM). Finally, a charger prototype rated l.8 kW, operating at 80kHz is constructed for a 320V/50Ah Lithium-iron-phosphate propulsion battery. The validity of the proposed novel EV charging facility and the ZCS technique are verified by the experimental results.
Keywords :
PWM power convertors; battery chargers; battery powered vehicles; lithium compounds; switching convertors; zero current switching; CCM; EV charging facility; ZCS soft communication; continuous current mode; electric vehicle DC charging spot; frequency 80 kHz; hard-switching converter counterpart; harmonic pollution; lithium-iron-phosphate propulsion battery; low-electric stress ZCS-PWM superbuck converter; low-stress zero-current switch-pulse width modulation superbuck converter; operation principles; passive clamping circuit; power 1.8 kW; power switches; state-space averaging approach; steady-state character estimation; voltage 320 V; Batteries; Capacitors; Inductors; Junctions; Stress; Switches; Zero current switching; EV; Superbuck; ZCS-PWM; dc charging spot; lower electric stress;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronics and Application Conference and Exposition (PEAC), 2014 International
Conference_Location :
Shanghai
Type :
conf
DOI :
10.1109/PEAC.2014.7037952
Filename :
7037952
Link To Document :
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