Particle swarm optimization for the design of square loop frequency selective surfaces considering a model of dielectric effective permittivity

Author:

Rodriguez Barrera Mario A.,Carpes Jr Walter Pereira

Abstract

Purpose The purpose of this paper is to present the results of a particle swarm optimization (PSO) method applied in the design of a square-loop frequency selective surface (FSS) via the equivalent circuit model (ECM), considering the dielectric effective permittivity as a variable in the optimization problem. Design/methodology/approach In the optimization process considered, besides the FSS square loop geometric parameters, the thickness and relative permittivity of dielectric material used as support are included as variables in the search space, using for this a model of dielectric effective permittivity introduced by the authors in a previous work. Findings Square loops were designed and the obtained results were compared with designs reported in literature for applications in wireless local area network and long-term evolution 4G systems. The low computational cost is remarkable as well as the acceptable accuracy obtained with the proposed approach. The PSO method results were implemented with the ECM and compared with those obtained via Ansys – high frequency structure simulator commercial software simulations. Originality/value The lack of a model of dielectric effective permittivity for the ECM causes a restricted search space in the stochastic FSS design process limited to only geometric parameters, as it is reported in the available literature. The proposed approach simplifies and makes more flexible the design process, and allows guiding the FSS design to unit cell surface and/or dielectric thickness of small dimensions.

Publisher

Emerald

Subject

Applied Mathematics,Electrical and Electronic Engineering,Computational Theory and Mathematics,Computer Science Applications

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1. Bayesian Optimisation of a Frequency Selective Surface Using a Regularised Objective Function;2022 16th European Conference on Antennas and Propagation (EuCAP);2022-03-27

2. Design of miniaturized FSS using equivalent circuit model and multi-objective particle swarm optimization;Journal of Physics D: Applied Physics;2021-07-19

3. A controllable-accuracy stochastic time-domain technique for randomly varying microwave applications;COMPEL - The international journal for computation and mathematics in electrical and electronic engineering;2018-09-10

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5. Bandwidth for the Equivalent Circuit Model in Square-Loop Frequency Selective Surfaces;IEEE Transactions on Antennas and Propagation;2017-11

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