DocumentCode :
780242
Title :
Determination of Bathymetric and Current Maps by the Method DiSC Based on the Analysis of Nautical X-Band Radar Image Sequences of the Sea Surface (November 2007)
Author :
Senet, Christian M. ; Seemann, Joerg ; Flampouris, Stylianos ; Ziemer, Friedwart
Author_Institution :
V2T (Vision to Technol. GmbH), Geesthacht
Volume :
46
Issue :
8
fYear :
2008
Firstpage :
2267
Lastpage :
2279
Abstract :
Morphodynamic processes in coastal areas are affected by tidal currents and sea state. The continuous observation of near coastal areas is important in order to monitor dangerous current-regime and bathymetry changes. Therefore, there is an urgent need for remote sensing techniques delivering the important hydrographic parameters with a high spatial resolution. Dispersive surface classificator (DiSC) is a newly developed method based on the analysis of nautical X-band radar image sequences of sea surface waves to determine spatial maps of hydrographic parameters, e.g., spatial maps of the bathymetry and the ocean current field. The method DiSC is described and is illustrated by the presentation of results based on a dataset acquired with a ground-based X-band radar installation mounted on the Island of Sylt in the German Bight. The calculated bathymetric maps are verified by multibeam echo sounder observations.
Keywords :
bathymetry; erosion; geomorphology; oceanographic regions; remote sensing by radar; AD 2007 11; DiSC; German Bight; Sylt Island; X-band radar installation; bathymetric maps; coastal areas; current maps; dispersive surface classificator; hydrographic parameters; morphodynamic process; multibeam echo sounding; nautical X-band radar image sequences; ocean current field; remote sensing; sea surface; tidal currents; Geophysical inverse problems; geophysical measurements; geophysical signal processing; marine radar; waves;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/TGRS.2008.916474
Filename :
4558037
Link To Document :
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