DocumentCode :
434458
Title :
Optimization of plane-wave power absorption in lossy media
Author :
Soldea, D.F. ; Razansky, D. ; Einziger, P.D. ; Mizrahi, J.
Author_Institution :
Dept. of Electr. Eng., Technion, Haifa
Volume :
1
fYear :
2003
fDate :
16-16 May 2003
Firstpage :
645
Abstract :
The phenomenon of microwave power absorption has recently become of increased scientific and public interest, particularly in the area of cellular communication. Electromagnetic power absorption in biological tissues is a well-known phenomenon. Its evaluation requires, in general, a solution of the 3D frequency-dependent wave equation in complex configurations, which may necessitate quite massive analytical and numerical efforts. Herein, we focus on a simplified 1D model corresponding to normal-incidence of plane-waves upon a lossy half-space. Our model establishes a tight estimate on the maximal (optimal) power absorption in realistic mobile phone - human head configurations. Furthermore, the absorption efficiency as well as the source impedance are obtained via an explicit closed-form expressions, leading to an explicit optimal power absorption (worst-case/best-case) criteria for highly lossy tissues
Keywords :
absorbing media; biological effects of radiation; biological tissues; cellular radio; dosimetry; electric impedance; electromagnetic compatibility; electromagnetic wave absorption; mobile handsets; 1D model; absorption efficiency; best-case criteria; biological tissues; cellular communication; closed-form expressions; complex configurations; dosimetry; electromagnetic power absorption; frequency-dependent wave equation; human head configurations; lossy half-space; lossy media; lossy tissues; maximal power absorption; microwave power absorption; mobile phones; normal-incidence plane-waves; optimal power absorption; optimization; plane-wave power absorption; realistic mobile phone; source impedance; worst-case criteria; Biological system modeling; Biological tissues; Closed-form solution; Electromagnetic wave absorption; Frequency; Humans; Impedance; Microwave communication; Mobile handsets; Partial differential equations;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electromagnetic Compatibility, 2003. EMC '03. 2003 IEEE International Symposium on
Conference_Location :
Istanbul
Print_ISBN :
0-7803-7779-6
Type :
conf
DOI :
10.1109/ICSMC2.2003.1428341
Filename :
1428341
Link To Document :
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