Title :
Design and analysis of the LCL resonant convertor in inductive Power Transfer system
Author :
Jikun Zhou ; Fugang Wu ; Rong Zhang ; Xin Dai
Author_Institution :
Inst. of Syst. Eng., Mianyang, China
Abstract :
In inductive Power Transfer (IPT) application, minimum supply VA rating and convertor conduction loss are two important design purposes. The LCL resonant convertor can achieve both of these objects when designed appropriately. In this paper, the LCL resonant tank is changed into two LC resonant networks, then the unity power factor compensation parameter which can minimum supply VA rating and current amplify compensation parameter which can minimum the conduction loss are designed in two independent steps. Furthermore, the bifurcation phenomena (multiple primary zero phase angle frequency) of the system is analyzed, and the necessary parameter criteria for achieving quasi-sinusoidal convertor current is obtained. Finally, the system´s power transfer capability and efficiency calculation method are presented. Simulation and experiment results have verified the theoretical prospection.
Keywords :
LC circuits; bifurcation; compensation; inductive power transmission; power factor; resonant power convertors; IPT; LCL resonant convertor; LCL resonant tank network; bifurcation phenomena; convertor conduction loss; current amplify compensation parameter; inductive power transfer system; minimum supply VA rating; multiple primary zero phase angle frequency; power transfer capability system; quasisinusoidal convertor current; unity power factor compensation parameter; Bifurcation; Converters; Impedance; Inductors; Reactive power; Resistance; Resonant frequency; Compensation; Inductive power transfe; LCL resonant convertor; bifurcation;
Conference_Titel :
Electronics and Application Conference and Exposition (PEAC), 2014 International
Conference_Location :
Shanghai
DOI :
10.1109/PEAC.2014.7038045