DocumentCode
3179454
Title
A Clustering Based Automated Glacier Segmentation Scheme Using Digital Elevation Model
Author
Gilani, Syed Zulqarnain ; Rao, Naveed Iqbal
Author_Institution
Electr. Eng. Dept, Nat. Univ. of Sci. & Technol., Pakistan
fYear
2009
fDate
1-3 Dec. 2009
Firstpage
277
Lastpage
284
Abstract
We present an automated scheme for segmentation of high mountain glaciers using fast adaptive medoid shift (FAMS) algorithm and digital elevation model (DEM). FAMS is a non-parametric clustering technique that has been optimized and made data driven from its original Medoid Shift algorithm. 6 Band TM sensor satellite images are fed to FAMS as input along with height, slope and gradient information extracted from a DEM. Clean glacier and debris covered glacier are treated separately. Each glacier having its own regional minima and debris is delineated individually. A unique slope-gradient model is used to separate the debris covered portion from its surrounding and extension rocks as well as to exclude the lateral moraine. The proposed model is independent of the DN values of satellite image bands and therefore is able to perform well even in areas where debris covered glaciers exactly resemble the surrounding rocks. Experiments have been carried out on KaraKoram and Hindukush mountain ranges of Asia and validated against supervised manual segmentation results as well as Google EarthTM imagery. Results have shown our fully automated method to be time efficient, robust and accurate.
Keywords
digital elevation models; geophysical image processing; gradient methods; image segmentation; pattern clustering; Google EarthTM imagery; TM sensor satellite images; clustering based automated glacier segmentation scheme; digital elevation model; fast adaptive medoid shift algorithm; gradient information extraction; high mountain glaciers; nonparametric clustering technique; remote sensing; slope-gradient model; Clustering algorithms; Digital elevation models; Image processing; Image segmentation; Image sensors; Reflection; Remote monitoring; Remote sensing; Robustness; Satellites; Debris covered glaciers; Fast Adaptive Medoid Shift; Glacier Segmentation; Remote sensing;
fLanguage
English
Publisher
ieee
Conference_Titel
Digital Image Computing: Techniques and Applications, 2009. DICTA '09.
Conference_Location
Melbourne, VIC
Print_ISBN
978-1-4244-5297-2
Electronic_ISBN
978-0-7695-3866-2
Type
conf
DOI
10.1109/DICTA.2009.53
Filename
5384961
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