On the Application of the Incomplete QR Algorithm to the Analysis of Microstrip Antennas

In this paper, we provide some insight into the usage of fast, iterative, method-of-moments (MoM) solution of integral equations (IE) describing antennas and other metallic structures immersed in a planar multilayered environment. Based on the form of multilayered media Green's functions, we ex...

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Main Authors: P. Gluchowski, A. A. Kucharski
Format: Article
Language:English
Published: Spolecnost pro radioelektronicke inzenyrstvi 2016-04-01
Series:Radioengineering
Subjects:
Online Access:http://www.radioeng.cz/fulltexts/2016/16_01_0034_0039.pdf
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spelling doaj-aa9072290151474b9bcaaa1bdf83a0d72020-11-24T22:25:29ZengSpolecnost pro radioelektronicke inzenyrstviRadioengineering1210-25122016-04-012513439On the Application of the Incomplete QR Algorithm to the Analysis of Microstrip AntennasP. GluchowskiA. A. KucharskiIn this paper, we provide some insight into the usage of fast, iterative, method-of-moments (MoM) solution of integral equations (IE) describing antennas and other metallic structures immersed in a planar multilayered environment. Based on the form of multilayered media Green's functions, we extract free-space terms, associated with direct rays within the analyzed structure, reducing the number of significant interactions required to describe the rest of MoM matrix. Next, we show that it is possible to construct a hybrid algorithm, where the fast multipole method (FMM) is used to the free-space matrix part, while the reduced rank incomplete QR (iQR) decomposition is applied to the remaining portion of the MoM matrix. This HM-iQR (hybrid multipole - incomplete QR) method is applied to a relatively large (in terms o f the number of unknowns) problem of plane wave scattering by a finite array of rectangular microstrip patches printed on a grounded dielectric slab. Computation results from the new algorithm are compared to literature data and to the results of the pure low rank IE-QR method.http://www.radioeng.cz/fulltexts/2016/16_01_0034_0039.pdfMethod-of-momentsfast multipole methodlow rank IE-QR algorithmintegral equations
collection DOAJ
language English
format Article
sources DOAJ
author P. Gluchowski
A. A. Kucharski
spellingShingle P. Gluchowski
A. A. Kucharski
On the Application of the Incomplete QR Algorithm to the Analysis of Microstrip Antennas
Radioengineering
Method-of-moments
fast multipole method
low rank IE-QR algorithm
integral equations
author_facet P. Gluchowski
A. A. Kucharski
author_sort P. Gluchowski
title On the Application of the Incomplete QR Algorithm to the Analysis of Microstrip Antennas
title_short On the Application of the Incomplete QR Algorithm to the Analysis of Microstrip Antennas
title_full On the Application of the Incomplete QR Algorithm to the Analysis of Microstrip Antennas
title_fullStr On the Application of the Incomplete QR Algorithm to the Analysis of Microstrip Antennas
title_full_unstemmed On the Application of the Incomplete QR Algorithm to the Analysis of Microstrip Antennas
title_sort on the application of the incomplete qr algorithm to the analysis of microstrip antennas
publisher Spolecnost pro radioelektronicke inzenyrstvi
series Radioengineering
issn 1210-2512
publishDate 2016-04-01
description In this paper, we provide some insight into the usage of fast, iterative, method-of-moments (MoM) solution of integral equations (IE) describing antennas and other metallic structures immersed in a planar multilayered environment. Based on the form of multilayered media Green's functions, we extract free-space terms, associated with direct rays within the analyzed structure, reducing the number of significant interactions required to describe the rest of MoM matrix. Next, we show that it is possible to construct a hybrid algorithm, where the fast multipole method (FMM) is used to the free-space matrix part, while the reduced rank incomplete QR (iQR) decomposition is applied to the remaining portion of the MoM matrix. This HM-iQR (hybrid multipole - incomplete QR) method is applied to a relatively large (in terms o f the number of unknowns) problem of plane wave scattering by a finite array of rectangular microstrip patches printed on a grounded dielectric slab. Computation results from the new algorithm are compared to literature data and to the results of the pure low rank IE-QR method.
topic Method-of-moments
fast multipole method
low rank IE-QR algorithm
integral equations
url http://www.radioeng.cz/fulltexts/2016/16_01_0034_0039.pdf
work_keys_str_mv AT pgluchowski ontheapplicationoftheincompleteqralgorithmtotheanalysisofmicrostripantennas
AT aakucharski ontheapplicationoftheincompleteqralgorithmtotheanalysisofmicrostripantennas
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