A Fast Frequency Sweep – Green’s Function Based Analysis of Substrate Integrated Waveguide

In this paper, a fast frequency sweep technique is applied to the analysis of Substrate Integrated Waveguides performed with a Green’s function technique. The well-known Asymptotic Waveform Evaluation technique is used to extract the Padè approximation of the frequency response of Substrate Integrat...

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Main Authors: E. Abaei, G. Amendola, E. Arnieri, S. Costanzo, E. Mehrshahi
Format: Article
Language:English
Published: Spolecnost pro radioelektronicke inzenyrstvi 2012-12-01
Series:Radioengineering
Subjects:
Online Access:http://www.radioeng.cz/fulltexts/2012/12_04_1025_1030.pdf
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author E. Abaei
G. Amendola
E. Arnieri
S. Costanzo
E. Mehrshahi
author_facet E. Abaei
G. Amendola
E. Arnieri
S. Costanzo
E. Mehrshahi
author_sort E. Abaei
collection DOAJ
description In this paper, a fast frequency sweep technique is applied to the analysis of Substrate Integrated Waveguides performed with a Green’s function technique. The well-known Asymptotic Waveform Evaluation technique is used to extract the Padè approximation of the frequency response of Substrate Integrated Waveguides devices. The analysis is extended to a large frequency range by adopting the Complex Frequency Hopping algorithm. It is shown that, with this technique, CPU time can be reduced of almost one order of magnitude with respect to a point by point computation.
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spelling doaj.art-6c5ed908e1c146be8e66e315267b5aea2022-12-22T02:40:16ZengSpolecnost pro radioelektronicke inzenyrstviRadioengineering1210-25122012-12-0121410251030A Fast Frequency Sweep – Green’s Function Based Analysis of Substrate Integrated WaveguideE. AbaeiG. AmendolaE. ArnieriS. CostanzoE. MehrshahiIn this paper, a fast frequency sweep technique is applied to the analysis of Substrate Integrated Waveguides performed with a Green’s function technique. The well-known Asymptotic Waveform Evaluation technique is used to extract the Padè approximation of the frequency response of Substrate Integrated Waveguides devices. The analysis is extended to a large frequency range by adopting the Complex Frequency Hopping algorithm. It is shown that, with this technique, CPU time can be reduced of almost one order of magnitude with respect to a point by point computation.www.radioeng.cz/fulltexts/2012/12_04_1025_1030.pdfGreen's function methodsSubstrate integrated waveguideSIWAsymptotic Waveform EvaluationAWEComplex Frequency HoppingCFH
spellingShingle E. Abaei
G. Amendola
E. Arnieri
S. Costanzo
E. Mehrshahi
A Fast Frequency Sweep – Green’s Function Based Analysis of Substrate Integrated Waveguide
Radioengineering
Green's function methods
Substrate integrated waveguide
SIW
Asymptotic Waveform Evaluation
AWE
Complex Frequency Hopping
CFH
title A Fast Frequency Sweep – Green’s Function Based Analysis of Substrate Integrated Waveguide
title_full A Fast Frequency Sweep – Green’s Function Based Analysis of Substrate Integrated Waveguide
title_fullStr A Fast Frequency Sweep – Green’s Function Based Analysis of Substrate Integrated Waveguide
title_full_unstemmed A Fast Frequency Sweep – Green’s Function Based Analysis of Substrate Integrated Waveguide
title_short A Fast Frequency Sweep – Green’s Function Based Analysis of Substrate Integrated Waveguide
title_sort fast frequency sweep green s function based analysis of substrate integrated waveguide
topic Green's function methods
Substrate integrated waveguide
SIW
Asymptotic Waveform Evaluation
AWE
Complex Frequency Hopping
CFH
url http://www.radioeng.cz/fulltexts/2012/12_04_1025_1030.pdf
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