Presentation 2011-07-21
FDTD Derivation of Effective Resistance for Grounded Human
Kazuya YANASE, Akimasa HIRATA,
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Abstract(in English) According to the international guidelines, whole-body average specific absorption rate (WBSAR) is used as a metric for human protection. It is well known that WBSAR largely depends on the frequency of the incident wave. The frequency at which the WBSASR becomes maximal is called "resonance frequency". Our group discussed an estimation method of WBSAR for grounded humans at their respective resonance frequency in term of ankle current and effective resistance. This method is based on an analogy between a quarter-wavelength monopole antenna and human. Thus, it is essential to investigate the effective resistance for anatomically-based human models. In the present study, we calculated effective resistance for humans grounded on the perfect conductor, and then clarified its variability for different models. The main reason for the variability was attributed to the body shape and model anatomy.
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Keyword(in English) whole-body averaged specific absorption rate (SAR) / resonance frequency / effective resistance of human body / FDTD method
Paper # MW2011-49,OPE2011-36,EST2011-35,MWP2011-17
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Committee MW
Conference Date 2011/7/14(1days)
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Language ENG
Title (in Japanese) (See Japanese page)
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Title (in English) FDTD Derivation of Effective Resistance for Grounded Human
Sub Title (in English)
Keyword(1) whole-body averaged specific absorption rate (SAR)
Keyword(2) resonance frequency
Keyword(3) effective resistance of human body
Keyword(4) FDTD method
1st Author's Name Kazuya YANASE
1st Author's Affiliation Nagoya Institute of Technology()
2nd Author's Name Akimasa HIRATA
2nd Author's Affiliation Nagoya Institute of Technology
Date 2011-07-21
Paper # MW2011-49,OPE2011-36,EST2011-35,MWP2011-17
Volume (vol) vol.111
Number (no) 147
Page pp.pp.-
#Pages 5
Date of Issue