A full-wave hybrid method for the analysis of multilayered SIW-based antennas

M Casaletti, G Valerio, J Seljan… - IEEE transactions on …, 2013 - ieeexplore.ieee.org
IEEE transactions on antennas and propagation, 2013ieeexplore.ieee.org
We propose a fast and accurate full-wave code capable of analyzing electrically large
substrate integrated waveguides consisting of stacked parallel-plate waveguides hosting
dielectric or metallic posts and coupling and/or radiating slots. Boundary conditions enforced
on posts yield scattering amplitudes, while slots are modeled by equivalent magnetic
currents, solved by a method of moments. Substantial accelerations are proposed to exploit
various symmetries of the structures and to select the optimal number of modes according to …
We propose a fast and accurate full-wave code capable of analyzing electrically large substrate integrated waveguides consisting of stacked parallel-plate waveguides hosting dielectric or metallic posts and coupling and/or radiating slots. Boundary conditions enforced on posts yield scattering amplitudes, while slots are modeled by equivalent magnetic currents, solved by a method of moments. Substantial accelerations are proposed to exploit various symmetries of the structures and to select the optimal number of modes according to the relevant geometrical and physical parameters. The formulation is validated by full-wave simulations with a commercial software and measurement results.
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