DocumentCode :
64615
Title :
Contour-FFT Based Spectral Domain MBF Analysis of Large Printed Antenna Arrays
Author :
Jha, Shambhu Nath ; Craeye, Christophe
Author_Institution :
ICTEAM Inst., Univ. catholique de Louvain, Louvain-La-Neuve, Belgium
Volume :
62
Issue :
11
fYear :
2014
fDate :
Nov. 2014
Firstpage :
5752
Lastpage :
5764
Abstract :
A fast spectral-domain method is proposed to evaluate the reaction terms between the macro basis functions in regular and non-regular arrays made of identical printed antennas. The presented technique first exploits the filtering capabilities of the macro basis functions in the spectral domain. The method is then strongly accelerated with the help of a newly formulated fast Fourier transform (FFT)-based technique, which is applicable to a contour integration in the complex plane. We name the method as contour-FFT (C-FFT). Besides an effective homogeneous medium term treated with multipoles, a computational complexity of order Nlog2N is achieved for the tabulation of substrate-related reaction terms for any possible relative positions. The complexity of the proposed method is independent from the complexity of the elements. Numerical results obtained with the proposed method are compared with those from a pre-validated reference solution based on the traditional macro basis functions technique; an excellent agreement is observed.
Keywords :
antenna arrays; fast Fourier transforms; microstrip antennas; C-FFT; contour-FFT; fast Fourier transform-based technique; fast spectral-domain method; macro basis functions; printed antenna arrays; spectral domain MBF analysis; Antenna arrays; Complexity theory; Fourier transforms; Green´s function methods; Method of moments; Spectral analysis; Contour deformation; Green´s function; contour-fast Fourier transform (FFT); large irregular arrays; macro basis function (MBF); method of moments (MoM); printed antenna; spectral domain method;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2014.2357434
Filename :
6895266
Link To Document :
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