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We have developed a computationally efficient finite-difference time-domain (FDTD) model of a whole human body based on accurate 2-pole Debye dispersion dielectric tissue properties. Comprehensive FDTD analyses of the interaction between a whole human body and ultrawideband (UWB) radiation are carried out by including the proposed frequency dependent tissue models. The 2-pole Debye models have been...
In order to assess the compliance of ingested wireless device (IWD) within safety guidelines, the specific absorption rate (SAR) and near fields of IWD in two realistic human body models whose dielectric values are increased from the original by plusmn10 and plusmn20% are studied using the finite-difference time-domain (FDTD) method. The radiation characteristics of the IWD in the human body models...
The paper deals with the human exposure assessment to extremely low frequency (ELF) electric field due to overhead power lines. The formulation is based on a realistic human body representation taking into account different conductivities for various tissues inside the body. In particular, the influence on conductivity variation to the induced current densities and electric fields is investigated...
People are concerned about the dangers that can be possibly produced by electromagnetic (EM) radiation of devices in our daily life. This concern stipulated a lot of research aimed at finding these hazards. This study is aimed to analyze electrical parameters of various parts of man, which determine the level of hazards. By using curve-fitting methods with the collected experimental data of various...
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