Publication | Open Access
Multilayered media Green's functions in integral equation formulations
823
Citations
107
References
1997
Year
Numerical AnalysisElectromagnetic WaveElectrical EngineeringNumerical Method For Partial Differential EquationEngineeringMethod Of Fundamental SolutionMultilayered MediumAntennaApplied PhysicsNumerical SimulationTransmission LineCompact RepresentationComputational ElectromagneticsRectangular ShieldBoundary Element MethodIntegral Equation FormulationsElectromagnetic Compatibility
A compact representation is given of the electric- and magnetic-type dyadic Green's functions for plane-stratified, multilayered, uniaxial media based on the transmission-line network analog along the aids normal to the stratification. Furthermore, mixed-potential integral equations are derived within the framework of this transmission-line formalism for arbitrarily shaped, conducting or penetrable objects embedded in the multilayered medium. The development emphasizes laterally unbounded environments, but an extension to the case of a medium enclosed by a rectangular shield is also included.
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