Title :
From filter to mid-range wireless power transfer system
Author :
Sheng Sun ; Danting Xu ; Liu, Qin S. ; Fujiang Lin
Author_Institution :
Univ. of Hong Kong, Hong Kong, China
Abstract :
In this paper, a wireless power transfer (WPT) system based on two spiral magnetic-coupled resonators is studied and realized on the printed circuit board (PCB). For the mid-range energy transfer, the microwave filter design theory can be employed to explain the basic principle of magnetic induction in WPT system. Based on the filtering transfer function, the power transfer efficiency is defined by Scattering matrix. In particular, the transfer distance between two resonators can be easily optimized according to the filtering specifications. As an example, Chebyshev function is selected to synthesize the two-pole transmission peaks, which is so-called frequency splitting in power community. Then, the transfer distances can be determined from the required external Q-factor and coupling coefficient. Finally, a PCB-based WPT system fed by two loops is designed, implemented, and verified experimentally.
Keywords :
Chebyshev filters; Q-factor; S-matrix theory; inductive power transmission; microwave filters; microwave power transmission; microwave resonators; printed circuits; transfer functions; Chebyshev function; PCB; Q-factor; WPT system; coupling coefficient; filtering transfer function; frequency splitting; magnetic induction; microwave filter design; midrange energy transfer; power community; power transfer efficiency; printed circuit board; scattering matrix; spiral magnetic-coupled resonators; two-pole transmission peaks; wireless power transfer; Band pass filters; Couplings; Filtering theory; Magnetic separation; Microwave filters; Resonator filters; Spirals; Microwave filters; Scattering matrix; transfer distances; transfer efficiency; wireless power transfer (WPT);
Conference_Titel :
Radio-Frequency Integration Technology (RFIT), 2012 IEEE International Symposium on
Conference_Location :
Singapore
Print_ISBN :
978-1-4673-2303-1
DOI :
10.1109/RFIT.2012.6401635