DocumentCode :
2516629
Title :
Analytical calculation of the specific absorption rate from cellular phone in some realistic situations
Author :
Rajhi, Adnen ; Gharsallah, Ali ; Gharbi, Abdelhafidh
Author_Institution :
Technol. & Comput. Sci. Higher Educ. Sch., 7th November Univ., Tunisia
fYear :
2010
fDate :
12-16 April 2010
Firstpage :
1641
Lastpage :
1644
Abstract :
In this paper, we treated analytically the cellular phone antenna radiation parameters in the presence of a human body and the electromagnetic absorption concept by a human body in different realistic talking situations (in free space, in conductive environment, indoor, outdoor) is also investigated. Numerical investigations have been carried out to analyse the EM field coupling problem from cellular phone antenna to a spherical modelled head in different realistic scenarios by using the concept of the coupled integral equations; in which the electric field induced inside the model and the current distribution of the linear antenna can be expressed with coupled integral equations using dyadic Green´s function. Some radiation parameters (radiation patterns, input impedance,....) has been evaluated, and also some investigations on the electromagnetic absorption, which is defined by the local specific absorption rate (SAR) distribution, has been calculated in each scenario for a spherical homogeneous head modelled irradiated by a dipole antenna. Results from different conductive media using the same antenna are compared showing that the SAR parameter is not related only to the radiating device but it depends mainly on the external environment. The resonance frequency of the input impedance is affected when the operator is placed near perfect conductor and will change considerably when the human head is surrounded by perfect conductors and the SAR distribution gives different absorption patterns therefore hazards health problems will be enhanced in such situations.
Keywords :
Green´s function methods; antenna radiation patterns; cellular radio; dipole antennas; electric field effects; electromagnetic wave absorption; integral equations; EM field coupling problem; SAR distribution; cellular phone antenna radiation parameter; dipole antenna; dyadic Green´s function; electric field; electromagnetic absorption; input impedance; integral equation; linear antenna; radiation pattern; resonance frequency; specific absorption rate distribution; Cellular phones; Conductors; Dipole antennas; Electromagnetic analysis; Electromagnetic radiation; Electromagnetic wave absorption; Humans; Impedance; Integral equations; Specific absorption rate;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electromagnetic Compatibility (APEMC), 2010 Asia-Pacific Symposium on
Conference_Location :
Beijing
Print_ISBN :
978-1-4244-5621-5
Type :
conf
DOI :
10.1109/APEMC.2010.5475833
Filename :
5475833
Link To Document :
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