Visualization of earth deformation in 2D

The rapidly growing field of remote sensing is beginning to supply massive quantities of high-resolution imagery of the Earth and other planets. In the earth sciences, parallel supercomputers have always played a prominent role in the visualization of this imagery, and in other image processing appl...

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Main Authors: Ismail, Nor Anita Fairos, Kamarudin, Sheikh Nasir, Mohd. Rahim, Mohd. Sharfy, Liu, J. G., Mason, P.
Format: Article
Published: 2013
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Online Access:http://eprints.utm.my/id/eprint/40903/
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spelling my.utm.409032017-08-20T01:38:51Z http://eprints.utm.my/id/eprint/40903/ Visualization of earth deformation in 2D Ismail, Nor Anita Fairos Kamarudin, Sheikh Nasir Mohd. Rahim, Mohd. Sharfy Liu, J. G. Mason, P. G Geography. Anthropology. Recreation The rapidly growing field of remote sensing is beginning to supply massive quantities of high-resolution imagery of the Earth and other planets. In the earth sciences, parallel supercomputers have always played a prominent role in the visualization of this imagery, and in other image processing applications designed to enhance and display the obtained information. Imageodesy is a technique for detection and measurement of feature shifts between two images based on local feature fitting algorithms such as Normalize Cross-Correlation (Crippen, 1992) and phase correlation. This technique allows the vast archives of optical imagery, collected by satellite systems such as SPOT and Landsat, to be used not only to detect but also to measure the subtle terrain displacements associated with earthquakes, glacial motion and volcanic processes, all to within sub-resolution accuracy and precision is also a major factor. 2013 Article PeerReviewed Ismail, Nor Anita Fairos and Kamarudin, Sheikh Nasir and Mohd. Rahim, Mohd. Sharfy and Liu, J. G. and Mason, P. (2013) Visualization of earth deformation in 2D. International Journal of Soft Computing and Software Engineering [JSCSE], 3 (6). pp. 1-18. ISSN 2251-7545
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic G Geography. Anthropology. Recreation
spellingShingle G Geography. Anthropology. Recreation
Ismail, Nor Anita Fairos
Kamarudin, Sheikh Nasir
Mohd. Rahim, Mohd. Sharfy
Liu, J. G.
Mason, P.
Visualization of earth deformation in 2D
description The rapidly growing field of remote sensing is beginning to supply massive quantities of high-resolution imagery of the Earth and other planets. In the earth sciences, parallel supercomputers have always played a prominent role in the visualization of this imagery, and in other image processing applications designed to enhance and display the obtained information. Imageodesy is a technique for detection and measurement of feature shifts between two images based on local feature fitting algorithms such as Normalize Cross-Correlation (Crippen, 1992) and phase correlation. This technique allows the vast archives of optical imagery, collected by satellite systems such as SPOT and Landsat, to be used not only to detect but also to measure the subtle terrain displacements associated with earthquakes, glacial motion and volcanic processes, all to within sub-resolution accuracy and precision is also a major factor.
format Article
author Ismail, Nor Anita Fairos
Kamarudin, Sheikh Nasir
Mohd. Rahim, Mohd. Sharfy
Liu, J. G.
Mason, P.
author_facet Ismail, Nor Anita Fairos
Kamarudin, Sheikh Nasir
Mohd. Rahim, Mohd. Sharfy
Liu, J. G.
Mason, P.
author_sort Ismail, Nor Anita Fairos
title Visualization of earth deformation in 2D
title_short Visualization of earth deformation in 2D
title_full Visualization of earth deformation in 2D
title_fullStr Visualization of earth deformation in 2D
title_full_unstemmed Visualization of earth deformation in 2D
title_sort visualization of earth deformation in 2d
publishDate 2013
url http://eprints.utm.my/id/eprint/40903/
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score 13.160551