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Geodetic SAR for Height System Unification and Sea Level Research - Results in the Baltic Sea Test Network

Gruber, Thomas (author)
Technical University of Munich (TUM), Germany
Ågren, Jonas, 1967- (author)
Lantmäteriet
Angermann, Detlef (author)
Technical University of Munich (TUM), Germany
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Ellmann, Artu (author)
Tallinn University of Technology (TUT), Estonia
Engfeldt, Andreas (author)
Lantmäteriet
Gisinger, Christoph (author)
German Aerospace Center (DLR)
Jaworski, Leszek (author)
Centrum Badań Kosmicznych, Polskiej Akademii Nauk (CBK-PAN), Poland
Kur, Tomasz (author)
Centrum Badań Kosmicznych, Polskiej Akademii Nauk (CBK-PAN), Poland
Marila, Simo (author)
Finnish Geospatial Research Institute (FGI)
Nastula, Jolanta (author)
Centrum Badań Kosmicznych, Polskiej Akademii Nauk (CBK-PAN), Poland
Nilfouroushan, Faramarz, 1968- (author)
Lantmäteriet
Nordman, Maria (author)
Finnish Geospatial Research Institute (FGI); Aalto University, Finland
Poutanen, Markku (author)
Finnish Geospatial Research Institute (FGI)
Saari, Timo (author)
Finnish Geospatial Research Institute (FGI)
Schlaak, Marius (author)
Technical University of Munich (TUM)
Świątek, Anna (author)
Centrum Badań Kosmicznych, Polskiej Akademii Nauk (CBK-PAN), Poland
Varbla, Sander (author)
Tallinn University of Technology (TUT)
Zdunek, Ryszard (author)
Centrum Badań Kosmicznych, Polskiej Akademii Nauk (CBK-PAN), Poland
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 (creator_code:org_t)
2022-07-06
2022
English.
In: Remote Sensing. - : MDPI. - 2072-4292. ; 14:14
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Coastal sea level is observed at tide gauge stations, which usually also serve as height reference stations for national networks. One of the main issues with using tide gauge data for sea level research is that only a few stations are connected to permanent GNSS stations needed to correct for vertical land motion. As a new observation technique, absolute positioning by SAR using off the shelf active radar transponders can be installed instead. SAR data for the year 2020 are collected at 12 stations in the Baltic Sea area, which are co-located to tide gauges or permanent GNSS stations. From the SAR data, 3D coordinates are estimated and jointly analyzed with GNSS data, tide gauge records and regional geoid height estimates. The obtained results are promising but also exhibit some problems related to the electronic transponders and their performance. At co-located GNSS stations, the estimated ellipsoidal heights agree in a range between about 2 and 50 cm for both observation systems. From the results, it can be identified that, most likely, variable systematic electronic instrument delays are the main reason, and that each transponder instrument needs to be calibrated individually. Nevertheless, the project provides a valuable data set, which offers the possibility of enhancing methods and procedures in order to develop a geodetic SAR positioning technique towards operability. 

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Naturresursteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Environmental Engineering (hsv//eng)
NATURVETENSKAP  -- Geovetenskap och miljövetenskap (hsv//swe)
NATURAL SCIENCES  -- Earth and Related Environmental Sciences (hsv//eng)

Keyword

height system unification; sea level; geodetic SAR positioning; GNSS; tide gauge; geoid; Sentinel-1; GOCE

Publication and Content Type

ref (subject category)
art (subject category)

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