Title :
Exact Analysis of Frequency Splitting Phenomena of Contactless Power Transfer Systems
Author :
Wang-Qiang Niu ; Jian-Xin Chu ; Wei Gu ; Ai-Di Shen
Author_Institution :
Sci. Res. Acad., Shanghai Maritime Univ., Shanghai, China
Abstract :
Frequency splitting phenomena are investigated systematically by circuit theory in a series-tuned contactless power transfer (CPT) system. First, in a symmetrical CPT system, the splitting equation is defined and the key frequency splitting characteristics are described by the trough and the ridge equations in a complete fashion. The even and the odd splitting frequencies are exactly two roots of the ridge equation; the splitting coupling is determined theoretically when the even and odd splitting frequencies merge together. Second, in an unsymmetrical CPT system, the idea of the trough and the ridge equation is exploited to find exactly the splitting coupling. Next, the relationship between frequency bifurcation and splitting is elucidated; and a zero-phase control method is suggested to track the splitting frequency when the coupling changes in the splitting region. Finally, the theoretical results are validated by a 10-W prototype with planar spiral coils.
Keywords :
bifurcation; circuit tuning; coils; phase control; circuit theory; even splitting frequency; exact analysis; frequency bifurcation; frequency splitting equation phenomena; key frequency splitting characteristics; odd splitting frequency; planar spiral coil; power 10 W; ridge equation; series-tuned contactless power transfer system; symmetrical CPT system; trough equation; unsymmetrical CPT system; zero-phase control method; Bifurcation; Coils; Couplings; Frequency control; Mathematical model; Resonant frequency; Contactless power transfer (CPT); frequency bifurcation; frequency splitting; zero-phase control;
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
DOI :
10.1109/TCSI.2012.2221172