Presentation 2010-12-10
Preliminary Study of Dosimetry for Wireless Power Transfer System Using a Magnetic Resonance : The Distribution of Electromagnetic Field and Induced Current Density
SangWook PARK, Kanako WAKE, Soichi WATANABE,
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Abstract(in English) In this paper, we have conducted dosimetry for wireless power transfer system using a magnetic resonance. The distribution of electromagnetic fields around the system is calculated by HFSS which is the commercial simulation tool for 3D full-wave electromagnetic field simulation based on the finite element method. We also estimated induced current density in the head of Japanese adult numerical model exposed to the electromagnetic fields generated from the system using impedance method. The system has the distribution of strong magnetic fields not only at the transmitting coil but also at the receiving coil because of using a magnetic resonate phenomenon. As we expected, the value of induced current density in the numerical model depends on the distribution of electromagnetic fields around the system.
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Keyword(in English) Wireless Power Transfer / Magnetic Resonance / Impedance Method / Japanese Adult Numerical Model
Paper # EMCJ2010-87
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Committee EMCJ
Conference Date 2010/12/3(1days)
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Registration To Electromagnetic Compatibility (EMCJ)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Preliminary Study of Dosimetry for Wireless Power Transfer System Using a Magnetic Resonance : The Distribution of Electromagnetic Field and Induced Current Density
Sub Title (in English)
Keyword(1) Wireless Power Transfer
Keyword(2) Magnetic Resonance
Keyword(3) Impedance Method
Keyword(4) Japanese Adult Numerical Model
1st Author's Name SangWook PARK
1st Author's Affiliation National Institute of Information and Communications Technology()
2nd Author's Name Kanako WAKE
2nd Author's Affiliation National Institute of Information and Communications Technology
3rd Author's Name Soichi WATANABE
3rd Author's Affiliation National Institute of Information and Communications Technology
Date 2010-12-10
Paper # EMCJ2010-87
Volume (vol) vol.110
Number (no) 332
Page pp.pp.-
#Pages 4
Date of Issue