TY - GEN
T1 - A novel compensation topology for Inductively Coupled Power Transfer
AU - Li, Chuanyu
AU - Wang, Yijie
AU - Yao, Yousu
AU - Cecati, Carlo
AU - Zhang, Xiangjun
AU - Liu, Xiaosheng
AU - Xu, Dianguo
N1 - Publisher Copyright:
© 2016 IEEE.
PY - 2016/12/21
Y1 - 2016/12/21
N2 - Compensation is a vital part in Inductively Coupled Power Transfer (ICPT) to achieve higher efficiency, power density and reliability. This article proposes two unilateral LC compensation topologies for ICPT system after thorough theoretical analysis, which achieve both zero-voltage switching and constant voltage output characteristics over a wide range of load. A 300W phase-shifted full bridge DC-DC Wireless Power Transfer device is designed and built which achieves an efficiency of 87.8% using proposed structure.
AB - Compensation is a vital part in Inductively Coupled Power Transfer (ICPT) to achieve higher efficiency, power density and reliability. This article proposes two unilateral LC compensation topologies for ICPT system after thorough theoretical analysis, which achieve both zero-voltage switching and constant voltage output characteristics over a wide range of load. A 300W phase-shifted full bridge DC-DC Wireless Power Transfer device is designed and built which achieves an efficiency of 87.8% using proposed structure.
KW - Compensation topology
KW - DC-DC power converter
KW - Inductive power transfer
KW - Phase-shifted full bridge
KW - Zero voltage switching
UR - https://www.scopus.com/pages/publications/85010031098
U2 - 10.1109/IECON.2016.7792971
DO - 10.1109/IECON.2016.7792971
M3 - 会议稿件
AN - SCOPUS:85010031098
T3 - IECON Proceedings (Industrial Electronics Conference)
SP - 4471
EP - 4475
BT - Proceedings of the IECON 2016 - 42nd Annual Conference of the Industrial Electronics Society
PB - IEEE Computer Society
T2 - 42nd Conference of the Industrial Electronics Society, IECON 2016
Y2 - 24 October 2016 through 27 October 2016
ER -