Backscattering Analysis of Cylinder Shaped Scatterer in Vegetation Medium: Comparison Between Theories

This paper analyses the backscattering cross sectionof acylinder both using traditional method modeland a new numerical solution model, namely Relaxed Hierarchical Equivalent Source Algorithm (RHESA). The purpose of this study is to investigate the prospect of incorporating numerical s...

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Main Authors: Syabeela Syahali, Ewe Hong Tat, Gobi Vetharatnam, Li-Jun Jiang, Hamsalekha A Kumaresan
Format: Article
Language:English
Published: MMU Press 2020-06-01
Series:Journal of Engineering Technology and Applied Physics
Subjects:
Online Access:https://journals.mmupress.com/index.php/jetap/article/view/49/300
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author Syabeela Syahali
Ewe Hong Tat
Gobi Vetharatnam
Li-Jun Jiang
Hamsalekha A Kumaresan
author_facet Syabeela Syahali
Ewe Hong Tat
Gobi Vetharatnam
Li-Jun Jiang
Hamsalekha A Kumaresan
author_sort Syabeela Syahali
collection DOAJ
description This paper analyses the backscattering cross sectionof acylinder both using traditional method modeland a new numerical solution model, namely Relaxed Hierarchical Equivalent Source Algorithm (RHESA). The purpose of this study is to investigate the prospect of incorporating numerical solution model into volume scattering calculation, to be applied into microwave remote sensing in vegetation area. Results show a good match, suggesting that RHESA may be suitable to be used to model the more complex nature of vegetation medium.
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spelling doaj.art-750124e7ce0d4877a87ac8ff987659362023-03-22T13:54:20ZengMMU PressJournal of Engineering Technology and Applied Physics2682-83832020-06-0121151810.33093/jetap.2020.2.1.3Backscattering Analysis of Cylinder Shaped Scatterer in Vegetation Medium: Comparison Between TheoriesSyabeela Syahali0Ewe Hong Tat1Gobi Vetharatnam2Li-Jun Jiang3Hamsalekha A Kumaresan4Faculty of Engineering and Technology, Multimedia UniversityLKCFES, Universiti Tunku Abdul RahmanLKCFES, Universiti Tunku Abdul RahmanDEEE, The University of Hong KongLKCFES, Universiti Tunku Abdul RahmanThis paper analyses the backscattering cross sectionof acylinder both using traditional method modeland a new numerical solution model, namely Relaxed Hierarchical Equivalent Source Algorithm (RHESA). The purpose of this study is to investigate the prospect of incorporating numerical solution model into volume scattering calculation, to be applied into microwave remote sensing in vegetation area. Results show a good match, suggesting that RHESA may be suitable to be used to model the more complex nature of vegetation medium.https://journals.mmupress.com/index.php/jetap/article/view/49/300microwave remote sensingrelaxed heirarchical equivalent source algorithm (rhesa)volume scattering
spellingShingle Syabeela Syahali
Ewe Hong Tat
Gobi Vetharatnam
Li-Jun Jiang
Hamsalekha A Kumaresan
Backscattering Analysis of Cylinder Shaped Scatterer in Vegetation Medium: Comparison Between Theories
Journal of Engineering Technology and Applied Physics
microwave remote sensing
relaxed heirarchical equivalent source algorithm (rhesa)
volume scattering
title Backscattering Analysis of Cylinder Shaped Scatterer in Vegetation Medium: Comparison Between Theories
title_full Backscattering Analysis of Cylinder Shaped Scatterer in Vegetation Medium: Comparison Between Theories
title_fullStr Backscattering Analysis of Cylinder Shaped Scatterer in Vegetation Medium: Comparison Between Theories
title_full_unstemmed Backscattering Analysis of Cylinder Shaped Scatterer in Vegetation Medium: Comparison Between Theories
title_short Backscattering Analysis of Cylinder Shaped Scatterer in Vegetation Medium: Comparison Between Theories
title_sort backscattering analysis of cylinder shaped scatterer in vegetation medium comparison between theories
topic microwave remote sensing
relaxed heirarchical equivalent source algorithm (rhesa)
volume scattering
url https://journals.mmupress.com/index.php/jetap/article/view/49/300
work_keys_str_mv AT syabeelasyahali backscatteringanalysisofcylindershapedscattererinvegetationmediumcomparisonbetweentheories
AT ewehongtat backscatteringanalysisofcylindershapedscattererinvegetationmediumcomparisonbetweentheories
AT gobivetharatnam backscatteringanalysisofcylindershapedscattererinvegetationmediumcomparisonbetweentheories
AT lijunjiang backscatteringanalysisofcylindershapedscattererinvegetationmediumcomparisonbetweentheories
AT hamsalekhaakumaresan backscatteringanalysisofcylindershapedscattererinvegetationmediumcomparisonbetweentheories