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Research Article | Open Access

Electromagnetic waves propagation in thin heterogenous coaxial cables. Comparison between 3D and 1D models

Geoffrey Beck1( )Akram Beni Hamad2
Rennes University, IRMAR UMR 6625, INRIA centre at Rennes University (MINGuS project-team), ENS Rennes-École normale supérieure, Rennes, France
INRIA Paris, 2 Rue Simone Iff, 75012 Paris. CERMICS, Ecole des Ponts, 77455 Marne-la-Vallée, France
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Abstract

This work deals with wave propagation into a coaxial cable, which can be modelled by the 3D Maxwell equations or 1D simplified models. The usual model, called the telegrapher's model, is a 1D wave equation of the electrical voltage and current. We derived a more accurate model from the Maxwell equations that takes into account dispersive effects. These two models aim to be a good approximation of the 3D electromagnetic fields in the case where the thickness of the cable is small. We perform some numerical simulations of the 3D Maxwell equations and of the 1D simplified models in order to validate the usual model and the new one. Moreover, we show that, while the usual telegrapher model is of order one with respect to the thickness of the cable, the dispersive 1D model is of order two.

CLC number: 35A01, 35B40, 65M06, 65M12, 65M60

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AIMS Mathematics
Pages 8981-9019

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Cite this article:
Beck G, Hamad AB. Electromagnetic waves propagation in thin heterogenous coaxial cables. Comparison between 3D and 1D models. AIMS Mathematics, 2024, 9(4): 8981-9019. https://doi.org/10.3934/math.2024438

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Received: 19 June 2023
Revised: 27 October 2023
Accepted: 20 November 2023
Published: 15 April 2024
©2024 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0)