Enhancing the Jacobi method with the CBFM for array antenna analysis

© 2017 IEEE. The analysis of sparse, disjoint finite antenna array structures is considered in this work. The Method-of-Moments (MoM) based CBFM-enhanced Jacobi technique is presented, and offers an improvement over the standard iterative Jacobi method in terms of convergence and accuracy. By applyi...

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Main Authors: Ludick, D., Botha, M., Davidson, David, Maaskant, R.
Format: Conference Paper
Published: 2017
Online Access:http://hdl.handle.net/20.500.11937/70933
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author Ludick, D.
Botha, M.
Davidson, David
Maaskant, R.
author_facet Ludick, D.
Botha, M.
Davidson, David
Maaskant, R.
author_sort Ludick, D.
building Curtin Institutional Repository
collection Online Access
description © 2017 IEEE. The analysis of sparse, disjoint finite antenna array structures is considered in this work. The Method-of-Moments (MoM) based CBFM-enhanced Jacobi technique is presented, and offers an improvement over the standard iterative Jacobi method in terms of convergence and accuracy. By applying the Characteristic Basis Function Method (CBFM) during each iteration the effect of mutual coupling between the array elements can be accounted for more accurately than in the standard Jacobi method. The convergence rate of the method is found to be better than that of the Jacobi technique.
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format Conference Paper
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T10:46:04Z
publishDate 2017
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spelling curtin-20.500.11937-709332018-12-13T09:34:11Z Enhancing the Jacobi method with the CBFM for array antenna analysis Ludick, D. Botha, M. Davidson, David Maaskant, R. © 2017 IEEE. The analysis of sparse, disjoint finite antenna array structures is considered in this work. The Method-of-Moments (MoM) based CBFM-enhanced Jacobi technique is presented, and offers an improvement over the standard iterative Jacobi method in terms of convergence and accuracy. By applying the Characteristic Basis Function Method (CBFM) during each iteration the effect of mutual coupling between the array elements can be accounted for more accurately than in the standard Jacobi method. The convergence rate of the method is found to be better than that of the Jacobi technique. 2017 Conference Paper http://hdl.handle.net/20.500.11937/70933 10.1109/APUSNCURSINRSM.2017.8072406 restricted
spellingShingle Ludick, D.
Botha, M.
Davidson, David
Maaskant, R.
Enhancing the Jacobi method with the CBFM for array antenna analysis
title Enhancing the Jacobi method with the CBFM for array antenna analysis
title_full Enhancing the Jacobi method with the CBFM for array antenna analysis
title_fullStr Enhancing the Jacobi method with the CBFM for array antenna analysis
title_full_unstemmed Enhancing the Jacobi method with the CBFM for array antenna analysis
title_short Enhancing the Jacobi method with the CBFM for array antenna analysis
title_sort enhancing the jacobi method with the cbfm for array antenna analysis
url http://hdl.handle.net/20.500.11937/70933