DocumentCode
1509704
Title
ESA´S POLarimetric Airborne Radar Ice Sounder (POLARIS): design and first results
Author
Dall, Jorgen ; Kristensen, S.S. ; Krozer, V. ; Hernandez, C.C. ; Vidkjr, J. ; Kusk, A. ; Balling, J. ; Skou, N. ; Sbjrg, S.S. ; Christensen, E.L.
Author_Institution
Nat. Space Inst., Tech. Univ. of Denmark, Lyngby, Denmark
Volume
4
Issue
3
fYear
2010
fDate
6/1/2010 12:00:00 AM
Firstpage
488
Lastpage
496
Abstract
The Technical University of Denmark has developed and tested a P-band ice sounding radar for European Space Agency (ESA). With the recent by the International Telecommunication Union (ITU) allocation of a radar band at 435 MHz, increased interest in space-based sounding of the Earth s ice caps has been encountered. ESA s POLarimetric Airborne Radar Ice Sounder (POLARIS) is intended to provide a better understanding of P-band scattering and propagation through ice sheets and to verify novel surface clutter suppression techniques in preparation for a potential space-based ice sounding mission. POLARIS is a nadir-looking, fully polarimetric radar featuring aperture synthesis, a multi-aperture antenna for surface clutter suppression and a large dynamic range based on a shallow/deep sounding approach. The system is installed in a De Haviland DHC-6 Twin Otter aircraft, and in May 2008, a proof-of-concept campaign was conducted in Greenland. This study outlines the design and implementation of the system, and based on first results it is concluded that in the central dry snow zone of Greenland, POLARIS can resolve shallow and deep internal ice layers, penetrate the thickest ice encountered and detect the bedrock.
Keywords
airborne radar; aperture antennas; interference suppression; multifrequency antennas; radar clutter; radar polarimetry; Denmark; P-band ice sounding radar; P-band scattering; POLARIS; european space agency; international telecommunication union; multi-aperture antenna; polarimetric airborne radar ice sounder; surface clutter suppression techniques;
fLanguage
English
Journal_Title
Radar, Sonar & Navigation, IET
Publisher
iet
ISSN
1751-8784
Type
jour
DOI
10.1049/iet-rsn.2009.0035
Filename
5481584
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