DocumentCode
2625602
Title
A new configuration of magnetic coupled power transfer using parallel line feeder
Author
Higashino, Takeshi ; Ziji, Ma ; Okada, Masayuki ; Tatsuta, Yasuaki ; Goto, Yasunori ; Tsuruda, Yoshinori ; Tanaka, Ryo
Author_Institution
Grad. Sch. of Inf. Sci., Nara Inst. of Sci. & Technol., Ikoma, Japan
fYear
2013
fDate
15-16 May 2013
Firstpage
171
Lastpage
174
Abstract
This paper newly proposes a configuration of magnetic coupling in wireless power transform using parallel line power feeder. Previous researches mentioned that coil design and optimization of circuit parameters are necessary for strong magnetic coupled resonance. Then, these constraints prevent expansion of coverage area of wireless power transfer to electric portable devices, and electric vehicles. In order to make breakthrough against these limitations, this paper introduces parallel line as a feeder. The frequency of the electromagnetic wave is selected at 13.56 [MHz] in high frequency (HF) band, which is suitable for strong magnetic coupled resonance. Fundamental characteristics are evaluated by using equivalent circuits which are referred to the previous works. Theoretical analysis asserts that impedance transform is necessary in a power source and load circuits. Computer simulation evaluates a mutual inductance between primary and secondary coils, and optimum value of load resistance is clarified. Finally, input impedance and S-parameter are evaluated when power source circuit and feeder circuit are magnetic coupled resonance, these results imply that enhancement of power transfer efficiency is a further study.
Keywords
S-parameters; coils; equivalent circuits; impedance convertors; inductive power transmission; magnetic resonance; S-parameter; circuit parameter optimization; coil design; computer simulation; electric portable devices; electric vehicles; electromagnetic wave frequency; equivalent circuits; feeder circuit; frequency 13.56 MHz; high-frequency band; impedance transform; load circuits; load resistance; magnetic-coupled power transfer; magnetic-coupled resonance; mutual inductance; parallel line power feeder; power source; power source circuit; power transfer efficiency; primary coil; secondary coil; wireless power transfer; wireless power transform; Coils; Equivalent circuits; Impedance; Inductance; Magnetic circuits; Resistance; Wireless communication;
fLanguage
English
Publisher
ieee
Conference_Titel
Wireless Power Transfer (WPT), 2013 IEEE
Conference_Location
Perugia
Print_ISBN
978--14673-5008-2
Type
conf
DOI
10.1109/WPT.2013.6556910
Filename
6556910
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