Wide frequency band analysis of an antenna by finite elements

Author:

Choua Y.,Le Bihan Y.,Pichon L.

Abstract

PurposeThe aim of this paper is to calculate the impedance of a loop antenna, etched on a dielectric substrate, over a wide frequency band using finite element method (FEM).Design/methodology/approachThe electromagnetic analysis of the global structure is performed with a full wave finite element formulation. In this work, two methods for the calculation of the impedance of the antenna are presented: receiving and transmitting mode. The results obtained are compared with boundary element method (BEM).FindingsThe paper finds that from the FEM analysis an equivalent circuit of a rectenna was obtained over a wide frequency band. A good agreement was obtained with a BEM approach in the case of an air‐like substrate. A dielectric substrate was considered. Such a configuration is more difficult to deal with BEM and makes the FEM attractive.Practical implicationsThe equivalent circuit allows a global circuit simulation of the whole rectenna (antenna, rectifying diodes and load). This simulation can be achieved using spice simulator for example.Originality/valueThis paper shows the potentiality of the FEM to simulate an antenna over a broad band frequency. Two methods for the calculation of the impedance of the antenna are presented. It is addressed to R&D designers in the microwave area.

Publisher

Emerald

Subject

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

Reference6 articles.

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3. Essakhi, B., Akoun, G., Pichon, L. and Santandrea, L. (2003), “Application du code hybride à l'étude de la susceptibilité d'une structure rectenna”, paper presented at the 4th European Conference on Numerical Methods in Electromagnetism, Toulouse, France, October 28‐30.

4. Hagerty, J.A. and Popovic, Z. (2001), “An experimental and theoretical characterization of a broadband arbitrarily‐polarized rectenna array”, paper presented at IEEE MTT‐S Int. Microwave Symp. Dig., pp. 1855‐8.

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