DocumentCode
1334215
Title
Glacier surface motion computation from digital image sequences
Author
Evans, Adrian N.
Author_Institution
Dept. of Electron. & Electr. Eng., Bath Univ., UK
Volume
38
Issue
2
fYear
2000
fDate
3/1/2000 12:00:00 AM
Firstpage
1064
Lastpage
1072
Abstract
A technique for computing the field of short-term glacier surface motion on a local scale is presented. Time-lapsed image negatives, digitized to a high resolution, provide the raw data for the three-stage technique. First, cross-correlation is used to establish a number of candidate displacement vectors for a series of regularly spaced templates. A relaxation-labeling routine is then applied to select the most appropriate candidate vectors, according to the local flow. Novel aspects of the relaxation algorithm include a new, efficient form of the support function and the absence of a null-match category. A new development is the application of a post filter to the resultant flow field, providing suitable displacement vectors for templates that were originally unmatched and correcting vectors that are still inconsistent with the local flow. Results from an image sequence from New Zealand´s Mount Cook National Park show the superiority of the technique over the maximum cross-correlation method and demonstrate the effectiveness of the post filter in improving correlation-relaxation labeling
Keywords
geophysical signal processing; glaciology; hydrological techniques; image motion analysis; image sequences; remote sensing; correlation-relaxation labelling; cross-correlation; digital image sequence; displacement vector; glacier; glaciology; hydrology; image motion; image processing; image sequence; local flow; local scale; measurement technique; null-match category; remote sensing; short-term movement; surface motion; three-stage technique; time-lapse; Digital images; Distance measurement; Filters; Ice; Image resolution; Image sequences; Labeling; Motion estimation; Remote sensing; Satellites;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/36.841985
Filename
841985
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