Title of article :
Human exposure assessment in the near field of GSM base-station antennas using a hybrid finite element/method of moments technique
Author/Authors :
D.B.، Davidson, نويسنده , , F.J.C.، Meyer, نويسنده , , U.، Jakobus, نويسنده , , M.A.، Stuchly, نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Pages :
-223
From page :
224
To page :
0
Abstract :
A hybrid finite-element method (FEM)/method of moments (MoM) technique is employed for specific absorption rate (SAR) calculations in a human phantom in the near field of a typical group special mobile (GSM) base-station antenna. The MoM is used to model the metallic surfaces and wires of the base-station antenna, and the FEM is used to model the heterogeneous human phantom. The advantages of each of these frequency domain techniques are, thus, exploited, leading to a highly efficient and robust numerical method for addressing this type of bioelectromagnetic problem. The basic mathematical formulation of the hybrid technique is presented. This is followed by a discussion of important implementation details-in particular, the linear algebra routines for sparse, complex FEM matrices combined with dense MoM matrices. The implementation is validated by comparing results to MoM (surface equivalence principle implementation) and finite-difference time-domain (FDTD) solutions of human exposure problems. A comparison of the computational efficiency of the different techniques is presented. The FEM/MoM implementation is then used for whole-body and critical-organ SAR calculations in a phantom at different positions in the near field of a base-station antenna. This problem cannot, in general, be solved using the MoM or FDTD due to computational limitations. This paper shows that the specific hybrid FEM/MoM implementation is an efficient numerical tool for accurate assessment of human exposure in the near field of base-station antennas.
Keywords :
Fredholm determinants , semi-separable kernels , Jost functions , Transmission coefficients , Floquet discriminants , Days formula
Journal title :
IEEE Transactions on Biomedical Engineering
Serial Year :
2003
Journal title :
IEEE Transactions on Biomedical Engineering
Record number :
80402
Link To Document :
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