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Geodetic SAR for Height System Unification and Sea Level Research - Observation Concept and Preliminary Results in the Baltic Sea

Gruber, Thomas (author)
Technical University of Munich
Ågren, Jonas (author)
Lantmäteriet
Angermann, Detlef (author)
Technical University of Munich
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Ellmann, Artu (author)
Tallinn University of Technology
Engfeldt, Andreas (author)
Lantmäteriet
Gisinger, Christoph (author)
German Aerospace Center
Jaworski, Leszek (author)
Polskiej Akademii Nauk
Marila, Simo (author)
Finnish Geospatial Research Institute
Nastula, Jolanta (author)
Polskiej Akademii Nauk
Nilfouroushan, Faramarz, Senior Lecturer, 1968- (author)
Högskolan i Gävle,Samhällsbyggnad,Lantmäteriet
Oikonomidou, Xanthi (author)
Technical University of Munich
Poutanen, Markku (author)
Saari, Timo (author)
Finnish Geospatial Research Institute
Schlaak, Marius (author)
Technical University of Munich
Światek, Anna (author)
Polskiej Akademii Nauk
Varbla, Sander (author)
Tallinn University of Technology
Zdunek, Ryszard (author)
Tallinn University of Technology
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 (creator_code:org_t)
2020-11-14
2020
English.
In: Remote Sensing. - : MDPI AG. - 2072-4292. ; 12:22
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Traditionally, sea level is observed at tide gauge stations, which usually also serve as height reference stations for national leveling networks and therefore define a height system of a country. One of the main deficiencies to use tide gauge data for geodetic sea level research and height systems unification is that only a few stations are connected to the geometric network of a country by operating permanent GNSS receivers next to the tide gauge. As a new observation technique, absolute positioning by SAR using active transponders on ground can fill this gap by systematically observing time series of geometric heights at tide gauge stations. By additionally knowing the tide gauge geoid heights in a global height reference frame, one can finally obtain absolute sea level heights at each tide gauge. With this information the impact of climate change on the sea level can be quantified in an absolute manner and height systems can be connected across the oceans. First results from applying this technique at selected tide gauges at the Baltic coasts are promising but also exhibit some problems related to the new technique. The paper presents the concept of using the new observation type in an integrated sea level observing system and provides some early results for SAR positioning in the Baltic sea area.

Subject headings

NATURVETENSKAP  -- Geovetenskap och miljövetenskap (hsv//swe)
NATURAL SCIENCES  -- Earth and Related Environmental Sciences (hsv//eng)

Keyword

InSAR
Sea level
Baltic Sea
Geodesy
Transponder

Publication and Content Type

ref (subject category)
art (subject category)

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