Earth and space observation at the German Antarctic Receiving Station O'Higgins. (November 2015)
- Record Type:
- Journal Article
- Title:
- Earth and space observation at the German Antarctic Receiving Station O'Higgins. (November 2015)
- Main Title:
- Earth and space observation at the German Antarctic Receiving Station O'Higgins
- Authors:
- Klügel, Thomas
Höppner, Kathrin
Falk, Reinhard
Kühmstedt, Elke
Plötz, Christian
Reinhold, Andreas
Rülke, Axel
Wojdziak, Reiner
Balss, Ulrich
Diedrich, Erhard
Eineder, Michael
Henniger, Hennes
Metzig, Robert
Steigenberger, Peter
Gisinger, Christoph
Schuh, Harald
Böhm, Johannes
Ojha, Roopesh
Kadler, Matthias
Humbert, Angelika
Braun, Matthias
Sun, Jing - Abstract:
- <abstract abstract-type="normal"> <title>ABSTRACT</title> <p>The German Antarctic Receiving Station (GARS) O'Higgins at the northern tip of the Antarctic Peninsula is a dual purpose facility for earth observation and has existed for more than 20 years. It serves as a satellite ground station for payload data downlink and telecommanding of remote sensing satellites as well as a geodetic observatory for global reference systems and global change. Both applications use the same 9 m diameter radio antenna. Major outcomes of this usage are summarised in this paper.</p> <p>The satellite ground station O'Higgins (OHG) is part of the global ground station network of the German Remote Sensing Data Centre (DFD) operated by the German Aerospace Centre (DLR). It was established in 1991 to provide remote sensing data downlink support within the missions of the European Remote Sensing Satellites ERS-1 and ERS-2. These missions provided valuable insights into the changes of the Antarctic ice shield. Especially after the failure of the on-board data recorder, OHG became an essential downlink station for ERS-2 real-time data transmission. Since 2010, OHG is manned during the entire year, specifically to support the TanDEM-X mission. OHG is a main dump station for payload data, monitoring and telecommanding of the German TerraSAR-X and TanDEM-X satellites.</p> <p>For space geodesy and astrometry the radio antenna O'Higgins significantly improves coverage over the southern hemisphere and plays<abstract abstract-type="normal"> <title>ABSTRACT</title> <p>The German Antarctic Receiving Station (GARS) O'Higgins at the northern tip of the Antarctic Peninsula is a dual purpose facility for earth observation and has existed for more than 20 years. It serves as a satellite ground station for payload data downlink and telecommanding of remote sensing satellites as well as a geodetic observatory for global reference systems and global change. Both applications use the same 9 m diameter radio antenna. Major outcomes of this usage are summarised in this paper.</p> <p>The satellite ground station O'Higgins (OHG) is part of the global ground station network of the German Remote Sensing Data Centre (DFD) operated by the German Aerospace Centre (DLR). It was established in 1991 to provide remote sensing data downlink support within the missions of the European Remote Sensing Satellites ERS-1 and ERS-2. These missions provided valuable insights into the changes of the Antarctic ice shield. Especially after the failure of the on-board data recorder, OHG became an essential downlink station for ERS-2 real-time data transmission. Since 2010, OHG is manned during the entire year, specifically to support the TanDEM-X mission. OHG is a main dump station for payload data, monitoring and telecommanding of the German TerraSAR-X and TanDEM-X satellites.</p> <p>For space geodesy and astrometry the radio antenna O'Higgins significantly improves coverage over the southern hemisphere and plays an essential role within the global Very Long Baseline Interferometry (VLBI) network. In particular the determination of the Earth Orientation Parameters (EOP) and the sky coverage of the International Celestial Reference Frame (ICRF) benefit from the location at a high southern latitude. Further, the resolution of VLBI images of active galactic nuclei (AGN), cosmic radio sources defining the ICRF, improves significantly when O'Higgins is included in the network. The various geodetic instrumentation and the long time series at O'Higgins allow a reliable determination of crustal motions. VLBI station velocities, continuous GNSS measurements and campaign-wise absolute gravity measurements consistently document a vertical rate of about 5 mm/a. This crustal uplift is interpreted as an elastic rebound due to ice loss as a consequence of the ice shelf disintegration in the Prince Gustav Channel in the late 1990s.</p> <p>The outstanding location on the Antarctic continent and its year-around operation make GARS O'Higgins in future increasingly attractive for polar orbiting satellite missions and a vitally important station for the global VLBI network. Future plans call for the development of an observatory for environmentally relevant research. That means that the portfolio of the station will be expanded including the expansion of the infrastructure and the construction and operation of new scientific instruments suitable for long-term measurements and satellite ground truthing.</p> </abstract> … (more)
- Is Part Of:
- Polar record. Volume 51:Part 6(2015)
- Journal:
- Polar record
- Issue:
- Volume 51:Part 6(2015)
- Issue Display:
- Volume 51, Issue 6, Part 6 (2015)
- Year:
- 2015
- Volume:
- 51
- Issue:
- 6
- Part:
- 6
- Issue Sort Value:
- 2015-0051-0006-0006
- Page Start:
- 590
- Page End:
- 610
- Publication Date:
- 2015-11
- Subjects:
- Scientific expeditions -- Polar regions -- Periodicals
Polar regions -- Research -- Periodicals
508.311 - Journal URLs:
- http://journals.cambridge.org/action/displayJournal?jid=POL ↗
- DOI:
- 10.1017/S0032247414000540 ↗
- Languages:
- English
- ISSNs:
- 0032-2474
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library STI - ELD Digital store
- Ingest File:
- 3950.xml