Biblio
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ICEWATCH - Real-time Sea ice Monitoring in the Northern Sea Route a Cooperative earth observation project between the Russian and European Space Agencies. Earth Observation and Remote Sensing 16, 269-291 (2000).
ICEWATCH - Real-time sea ice monitoring of the Northern Sea Route using satellite radar technology. In proceedings Third ERS Symposium on Space at the service of our Environment, Florence, 14. - 21. March 1997, ESA SP-414 3, 907-916 (1997).
ICEWATCH - Real-time Sea ice Monitoring of the Northern Sea Route using Satellite Radar Technology. Proceedings from POAC´99, Helsinki, August 23-27, Vol. 2 498-507 (1999).
Methodology of Complex Analysis of Sea Ice SAR Images. ESA Living Planet Symposium (2010).at <http://www.esa.int/SPECIALS/Living_Planet_Symposium_2010/index.html>
Methods of ice drift determination from remote sensing data. Satellite methods of sea ice cover characteristics determination 4 (2011).
Monitoring, Evaluating and Modelling Sea Ice and Climate Changes in the Arctic. NERSC Technical report no. 223 (2002).
Monitoring sea ice motion by sequential satellite images. In proceedings for the 27th International Symposium on Remote Sensing of the Environment Information for Sustainabilty, Tromsø, Norway, organized by International Symposia on Remote Sensing of Environment (ISRSE) and the Norwegian Space Centre 67-70 (1998).
MONRUK SAR data analysis report: Monitoring the marine environment in Russia, Ukraine and Kazakhstan using Synthetic Aperture Radar. NERSC Technical report no. 310 (2010). Download: rep310.pdf (5.7 MB)
Multisensor approach to automated classification of sea ice image data. IEEE Transactions on geoscience and remote sensing 43, 1648-1664 (2005). Abstract
Download: bog05.pdf (2.31 MB)
Operational Sea Ice Monitoring in Support of Navigation and Off-shore Operations in the Northern Sea Route. Proceedings for the 27th International Symposium on Remote Sensing of Environment Information for Sustainabilty Tromsø, Norway, organized by International Symposia on Remote Sensing of Environment (ISRSE) and the Norwegian Space Centre 28-32 (1998).
Practical demonstration of real-time RADARSAT SAR data for Ice Navigation on the Northern Sea Route. INSROP Working Paper, 2-4 February 1999 32 (1999).
Radar signatures distinctive features of ice of the Gulf of Finland, Ladoga and Onega Lakes as retrieved from ERS images. Earth Observation and Remote Sensing 1-10 (2002).
The relation between sea ice thickness and freeboard in the Arctic. The Cryosphere 4, (2010). Abstract
Download: The relation between sea ice thickness and freeboard in the Arctic.pdf (560.36 KB)
Remote Sensing of Sea Ice in the Northern Sea Route - Studies and Applications. Nansen Centers Polar Series no. 4 (2007).doi:10.1007/978-3-540-48840-8_6 Download: cover-medium.gif (4.7 KB); front-matter.pdf (485.83 KB); fulltext-3.pdf (2.04 MB)
Retrieval of backscattering coefficients for various sea ice types from ENVISAT ASAR images. Seas of high latitudes and marine cryoshere p. 16 (2007).
Retrieval of ice thickness from radar-altimeter data based on empirical relation between ice thickness and freeboard. Geophysical Research Abstracts, EGU-2009 (2009).
Retrieval of ice thickness using satellite altimeters. Satellite methods of sea ice cover characteristics determination 10 (2011).
Review of Ice Charting and Ship Routing Methods. ICE ROUTES deliverable D2. NERSC Technical Report no. 151 (1998).