Holographic interferomatery for modelling rate change of shoreline from AIRSAR data

This work is introducing a new approach for modeling shoreline change rate from AIRSAR Cvv-band. The hologram algorithm has been applied to simulate the wave spectra propagation pattern. In addition, Doppler frequency and azimuth cut off models are used to model longshore current movement of sedimen...

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Main Authors: Marghany, Maged, Hashim, Mazlan, Cracknell, Arthur P.
Other Authors: Gavrilova, M. L.
Format: Book Section
Language:English
Published: IEEE 2007
Subjects:
Online Access:http://eprints.utm.my/11692/1/Holographic%20interferomatery%20for%20modelling%20rate%20change%20of%20shoreline%20from%20AIRSAR%20data_2007.pdf
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author Marghany, Maged
Hashim, Mazlan
Cracknell, Arthur P.
author2 Gavrilova, M. L.
author_facet Gavrilova, M. L.
Marghany, Maged
Hashim, Mazlan
Cracknell, Arthur P.
author_sort Marghany, Maged
collection ePrints
description This work is introducing a new approach for modeling shoreline change rate from AIRSAR Cvv-band. The hologram algorithm has been applied to simulate the wave spectra propagation pattern. In addition, Doppler frequency and azimuth cut off models are used to model longshore current movement of sediment transport volume. The and rate change of results show that the phase information of AIRSAR hologram image can be used to simulate the wave refraction pattern. Furthermore, the Shoreline change rate is less than -0.5m/day which indicates an erosion event with accuracy error of +/- 0.05m/day.
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spelling utm.eprints-116922017-07-27T04:17:47Z http://eprints.utm.my/11692/ Holographic interferomatery for modelling rate change of shoreline from AIRSAR data Marghany, Maged Hashim, Mazlan Cracknell, Arthur P. TK Electrical engineering. Electronics Nuclear engineering This work is introducing a new approach for modeling shoreline change rate from AIRSAR Cvv-band. The hologram algorithm has been applied to simulate the wave spectra propagation pattern. In addition, Doppler frequency and azimuth cut off models are used to model longshore current movement of sediment transport volume. The and rate change of results show that the phase information of AIRSAR hologram image can be used to simulate the wave refraction pattern. Furthermore, the Shoreline change rate is less than -0.5m/day which indicates an erosion event with accuracy error of +/- 0.05m/day. IEEE Gavrilova, M. L. Gervasi, O. 2007 Book Section PeerReviewed application/pdf en http://eprints.utm.my/11692/1/Holographic%20interferomatery%20for%20modelling%20rate%20change%20of%20shoreline%20from%20AIRSAR%20data_2007.pdf Marghany, Maged and Hashim, Mazlan and Cracknell, Arthur P. (2007) Holographic interferomatery for modelling rate change of shoreline from AIRSAR data. In: Proceedings of the Fifth International Conference on Computational Science and Applications. IEEE, New York, USA, pp. 346-349. ISBN 978-0-7695-2945-5 doi:10.1109/ICCSA.2007.89 http://dx.doi.org/10.1109/ICCSA.2007.89
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Marghany, Maged
Hashim, Mazlan
Cracknell, Arthur P.
Holographic interferomatery for modelling rate change of shoreline from AIRSAR data
title Holographic interferomatery for modelling rate change of shoreline from AIRSAR data
title_full Holographic interferomatery for modelling rate change of shoreline from AIRSAR data
title_fullStr Holographic interferomatery for modelling rate change of shoreline from AIRSAR data
title_full_unstemmed Holographic interferomatery for modelling rate change of shoreline from AIRSAR data
title_short Holographic interferomatery for modelling rate change of shoreline from AIRSAR data
title_sort holographic interferomatery for modelling rate change of shoreline from airsar data
topic TK Electrical engineering. Electronics Nuclear engineering
url http://eprints.utm.my/11692/1/Holographic%20interferomatery%20for%20modelling%20rate%20change%20of%20shoreline%20from%20AIRSAR%20data_2007.pdf
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AT hashimmazlan holographicinterferomateryformodellingratechangeofshorelinefromairsardata
AT cracknellarthurp holographicinterferomateryformodellingratechangeofshorelinefromairsardata