DocumentCode :
744051
Title :
Efficient Computation of 1-D Periodic Layered Mixed Potentials for the Analysis of Leaky-Wave Antennas With Vertical Elements
Author :
Valerio, Guido ; Paulotto, Simone ; Baccarelli, Paolo ; Jackson, David R. ; Wilton, Donald R. ; Johnson, William A. ; Galli, Alessandro
Author_Institution :
UPMC Univ. Paris 06, Paris, France
Volume :
63
Issue :
6
fYear :
2015
fDate :
6/1/2015 12:00:00 AM
Firstpage :
2396
Lastpage :
2411
Abstract :
An efficient mixed-potential integral equation formulation is proposed for the analysis of one-dimensional (1-D) periodic leaky-wave antennas (LWAs) based on planar stratified configurations with inclusions of arbitrarily oriented metallic or dielectric perturbations. Both the transverse and vertical components of the mixed-potential Green´s functions due to a 1-D phased array of dipoles in a layered medium are accelerated using suitable homogeneous-medium asymptotic extractions from the standard spectral series of Floquet harmonics. A novel acceleration procedure is applied for the computation of the vertical potentials whose extracted terms can be expressed as potentials from a 1-D phased array of half-line sources in a homogeneous medium. Their numerical calculation requires a suitable modification of the Ewald method, thus resulting in new modified spectral and spatial series, having Gaussian convergence even in the case of complex modes and improper harmonics. Numerical comparisons for the 1-D periodic potentials, both in the case of bounded and unbounded (e.g., leaky) harmonics, validate the efficiency and accuracy of the proposed acceleration technique. The method is illustrated and verified by determining the dispersion behavior of both bound and leaky modes for several LWA test cases.
Keywords :
Green´s function methods; dipole antennas; inclusions; leaky wave antennas; perturbation techniques; 1-D periodic layered mixed potentials; 1-D phased array; Floquet harmonics; Gaussian convergence; arbitrarily oriented metallic; dielectric perturbations; dipoles; dispersion behavior; homogeneous-medium asymptotic extractions; inclusions; leaky-wave antennas; mixed-potential Green functions; mixed-potential integral equation; one-dimensional periodic leaky-wave antennas; planar stratified configurations; Acceleration; Convergence; Dispersion; Green´s function methods; Harmonic analysis; Integral equations; Periodic structures; Acceleration methods; Ewald method; Green’s functions; Green???s functions; Periodic problems; acceleration methods; layered media; leaky waves; leaky-wave antennas; leaky-wave antennas (LWAs); mixed potentials; periodic problems;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2015.2412959
Filename :
7061470
Link To Document :
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