Bimode Fosters Equivalent Circuit of Arbitrary Planar Periodic Structures and Its Application to Design Polarization Controller Devices
Abstract
A Fosters equivalent circuit for 2-D Planar Periodic Structures (PPSs) that exhibit an arbitrary geometry is presented for first time in this paper. The proposed 4-port network shows an invariant circuit topology to the PPS geometry and is completely comprised of invariant-frequency lumped elements. The circuit is the simplest in terms of number of elements within the bi-mode bandwidth for a certain geometry, and its topology makes it possible both a standardized process to obtain the equivalent circuit of an arbitrary geometry and the use of the circuit theory to design a multitude of devices. To perform a validation, the equivalent circuit of two different PPSs (a rotated dipole and a defected slotted ring) have been obtained and analyzed in single and multi-layer configurations. The circuit is also used as a tool to develop Elliptical to Linear (or Circular) Polarization converters. One of the designs presented at 20 GHz (in transmission) converts an incident elliptical polarization of Axial Ratio 5 and tilted 20 deg into a purely linear vertical polarization of XP<-30 dB, with near-zero reflections and insertion loss better than 0.1 dB. The designed device is also manufactured and tested, and the measurements are in good agreement with simulations.
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Cite
@article{arxiv.2402.03503,
title = {Bimode Fosters Equivalent Circuit of Arbitrary Planar Periodic Structures and Its Application to Design Polarization Controller Devices},
author = {Gerardo Perez-Palomino and Juan E Page},
journal= {arXiv preprint arXiv:2402.03503},
year = {2024}
}