Applying the NGF-enhanced Domain Green's Function Method to the analysis of antenna arrays and ground planes of finite sizes

© 2014 IEEE. In this work, antenna arrays will be analysed in the presence of ground planes that are both of finite extent. A hybrid approach between a partitioned MoM scheme called the Numerical Green's Function (NGF) and the Domain Green's Function Method (DGFM) is presented, viz., the N...

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Main Authors: Ludick, D., Maaskant, R., Davidson, David, Jakobus, U.
Format: Conference Paper
Published: 2014
Online Access:http://hdl.handle.net/20.500.11937/72867
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author Ludick, D.
Maaskant, R.
Davidson, David
Jakobus, U.
author_facet Ludick, D.
Maaskant, R.
Davidson, David
Jakobus, U.
author_sort Ludick, D.
building Curtin Institutional Repository
collection Online Access
description © 2014 IEEE. In this work, antenna arrays will be analysed in the presence of ground planes that are both of finite extent. A hybrid approach between a partitioned MoM scheme called the Numerical Green's Function (NGF) and the Domain Green's Function Method (DGFM) is presented, viz., the NGF-enhanced DGFM. The method allows for computationally efficient simulations, in that various array configurations can be investigated without solving again the part of the problem associated with the ground plane.
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format Conference Paper
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T10:54:19Z
publishDate 2014
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spelling curtin-20.500.11937-728672018-12-13T09:33:39Z Applying the NGF-enhanced Domain Green's Function Method to the analysis of antenna arrays and ground planes of finite sizes Ludick, D. Maaskant, R. Davidson, David Jakobus, U. © 2014 IEEE. In this work, antenna arrays will be analysed in the presence of ground planes that are both of finite extent. A hybrid approach between a partitioned MoM scheme called the Numerical Green's Function (NGF) and the Domain Green's Function Method (DGFM) is presented, viz., the NGF-enhanced DGFM. The method allows for computationally efficient simulations, in that various array configurations can be investigated without solving again the part of the problem associated with the ground plane. 2014 Conference Paper http://hdl.handle.net/20.500.11937/72867 10.1109/ICEAA.2014.6903934 restricted
spellingShingle Ludick, D.
Maaskant, R.
Davidson, David
Jakobus, U.
Applying the NGF-enhanced Domain Green's Function Method to the analysis of antenna arrays and ground planes of finite sizes
title Applying the NGF-enhanced Domain Green's Function Method to the analysis of antenna arrays and ground planes of finite sizes
title_full Applying the NGF-enhanced Domain Green's Function Method to the analysis of antenna arrays and ground planes of finite sizes
title_fullStr Applying the NGF-enhanced Domain Green's Function Method to the analysis of antenna arrays and ground planes of finite sizes
title_full_unstemmed Applying the NGF-enhanced Domain Green's Function Method to the analysis of antenna arrays and ground planes of finite sizes
title_short Applying the NGF-enhanced Domain Green's Function Method to the analysis of antenna arrays and ground planes of finite sizes
title_sort applying the ngf-enhanced domain green's function method to the analysis of antenna arrays and ground planes of finite sizes
url http://hdl.handle.net/20.500.11937/72867