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Numerical study on an equivalent source model for inhomogeneous magnetic field dosimetry in the low-frequency range
Shinichiro Nishizawa1, Hans-Oliver Ruoss, Friedrich M Landstorfer
1Institut fuer Hochfrequenztechnik, University of Stuttgart, D-70550 Stuttgart, Germany. s.nishizawa@ihf.uni-stuttgart.de
Abstract:
A new equivalent numerical source model is proposed for efficient dosimetric investigations in the low-frequency range. This approach allows the reproduction of complicated inhomogeneous magnetic field distributions around electronic appliances with full generality (i.e., supports three-dimensional vector fields). This paper investigates the accuracy of the equivalent source model using the geometry-based numerical reference model of a current loop to simulate the magnetic field distribution of a real electronic appliance. Good agreement between the equivalent source model and the reference is obtained with regard to the magnetic field distribution and the induced electric current density in a homogeneous human body model, respectively.