A conducting domain surface boundary applied to hybrid FEM-FDTD Electromagnetic Models
A modified boundary surface between the two domains in the hybrid FEM-FDTD technique is presented. This permits a heterogeneous surface to be imposed, allowing selected parts to be represented as being conducting or non-conducting. This enables a reduced surface size to be used in ca...
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The Science and Information (SAI) Organization Limited
2012
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my.uthm.eprints.80162022-11-13T07:25:50Z http://eprints.uthm.edu.my/8016/ A conducting domain surface boundary applied to hybrid FEM-FDTD Electromagnetic Models Alias, R. Abd-Alhameed, R. A. Excell, P. S. T Technology (General) A modified boundary surface between the two domains in the hybrid FEM-FDTD technique is presented. This permits a heterogeneous surface to be imposed, allowing selected parts to be represented as being conducting or non-conducting. This enables a reduced surface size to be used in cases where an antenna is above a conducting plane, as well as facilitating a range of other practical scenarios. Examples presented show stable results and good agreement with published data. The Science and Information (SAI) Organization Limited 2012 Article PeerReviewed text en http://eprints.uthm.edu.my/8016/1/J4298_7bc7f7bc066a1a33145bddd330baf0be.pdf Alias, R. and Abd-Alhameed, R. A. and Excell, P. S. (2012) A conducting domain surface boundary applied to hybrid FEM-FDTD Electromagnetic Models. International Journal of Advanced Computer Science and Applications, 2 (10). pp. 382-384. ISSN 2156-5570 |
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T Technology (General) Alias, R. Abd-Alhameed, R. A. Excell, P. S. A conducting domain surface boundary applied to hybrid FEM-FDTD Electromagnetic Models |
description |
A modified boundary surface
between the two domains in the hybrid
FEM-FDTD technique is presented. This
permits a heterogeneous surface to be
imposed, allowing selected parts to be
represented as being conducting or
non-conducting. This enables a reduced
surface size to be used in cases where an
antenna is above a conducting plane, as well
as facilitating a range of other practical
scenarios. Examples presented show stable
results and good agreement with published
data. |
format |
Article |
author |
Alias, R. Abd-Alhameed, R. A. Excell, P. S. |
author_facet |
Alias, R. Abd-Alhameed, R. A. Excell, P. S. |
author_sort |
Alias, R. |
title |
A conducting domain surface boundary applied to hybrid FEM-FDTD Electromagnetic Models |
title_short |
A conducting domain surface boundary applied to hybrid FEM-FDTD Electromagnetic Models |
title_full |
A conducting domain surface boundary applied to hybrid FEM-FDTD Electromagnetic Models |
title_fullStr |
A conducting domain surface boundary applied to hybrid FEM-FDTD Electromagnetic Models |
title_full_unstemmed |
A conducting domain surface boundary applied to hybrid FEM-FDTD Electromagnetic Models |
title_sort |
conducting domain surface boundary applied to hybrid fem-fdtd electromagnetic models |
publisher |
The Science and Information (SAI) Organization Limited |
publishDate |
2012 |
url |
http://eprints.uthm.edu.my/8016/1/J4298_7bc7f7bc066a1a33145bddd330baf0be.pdf http://eprints.uthm.edu.my/8016/ |
_version_ |
1751538646634201088 |
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13.211869 |