DocumentCode :
2153664
Title :
On precise GNSS-based sea surface monitoring systems
Author :
Galas, R. ; Schone, Tilo ; Cokrlic, M. ; Semmling, M.
Author_Institution :
Tech. Univ. Berlin, Berlin, Germany
fYear :
2013
fDate :
25-27 Sept. 2013
Firstpage :
323
Lastpage :
326
Abstract :
The paper describes some selected GNSS-based precise technologies developed and used for various maritime applications. Firstly two PVT projects are presented. GNSS-based buoys developed at GFZ Potsdam have been used for calibration of satellite altimeters and for monitoring of sea- and river water levels. Performance and accuracy of PVT can be dramatically degraded by ionospheric threads. Thus, ionospheric mitigation approaches in the PVT solutions are discussed here as well. Finally GNSS remote-sensing technology for monitoring of sea surface roughness and sea level, using reflections of GNSS signals is described. A long-term coastal experiment has been conducted in winter season 2008/09 at Disko Bay with partners (IEEC Barcelona, GFZ Potsdam and ESTEC Nordwijk) as part of the GPS-SIDS project (GPS for Sea Ice and Dry Snow remote sensing). Altimetric and scatterometric applications of ocean reflected signals have been studied to estimate instantaneous sea surface height (SSH) and sea-ice coverage. Reflection analysis revealed ocean tide signatures in SSH estimates and changes in ocean roughness during sea-ice development.
Keywords :
calibration; marine communication; oceanographic techniques; radioaltimeters; remote sensing; satellite navigation; sea level; Disko Bay; GFZ Potsdam; GNSS remote-sensing technology; GNSS signals; GNSS-based buoys; GNSS-based precise technology; GNSS-based sea surface monitoring systems; GPS-SIDS project; PVT projects; PVT solutions; SSH estimates; calibration; dry snow remote sensing; ionospheric mitigation; ionospheric threads; long-term coastal experiment; maritime applications; ocean reflected signals; ocean roughness; ocean tide signatures; reflection analysis; river water level monitoring; satellite altimeters; sea ice remote sensing; sea surface height; sea surface roughness monitoring; sea-ice coverage; sea-ice development; sea-water level monitoring; winter season; Global Navigation Satellite Systems; Monitoring; Reflection; Rough surfaces; Sea surface; Tsunami; Early Warning Systems; GNSS; GNSS Remote Sensing; GNSS buoys; Ionospheric Threads;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
ELMAR, 2013 55th International Symposium
Conference_Location :
Zadar
ISSN :
1334-2630
Print_ISBN :
978-953-7044-14-5
Type :
conf
Filename :
6658379
Link To Document :
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