DocumentCode :
2697121
Title :
SWIM: A Multi-Incidence Beams Ku-band Real Aperture Radar for the Observation of the Ocean Wave Field Spectra
Author :
Enjolras, Vivien ; Caubet, Eric ; Richard, Jacques ; Lorenzo, Jerome ; Carayon, Guy ; Castillan, Patrick
Author_Institution :
Thales Alenia Space, Toulouse
Volume :
5
fYear :
2008
fDate :
7-11 July 2008
Abstract :
The instrument SWIM (Surface Waves Investigation and Monitoring) on the CFOSAT (Chinese French Oceanographic Satellite) project aims at measuring the directional spectra of ocean waves on a 180 km wide swath. Orbiting on a 500 km sun-synchronous orbit, it provides with a global full coverage of the oceans between -80 and 80deg. It consists in a real aperture radar (RAR) operating in Ku-band (13.575 GHz) on 6 distinct beams pointing at incidence angles from 0deg (nadir) to 10deg, while scanning the whole azimuth angles (0-360deg). The nadir beam is similar to the one provided by a standard altimeter. Its main objective is to measure the significant wave height and wind speed (from the measurement of the radar cross section). Radar cross-sections are also estimated from 2 to 10deg off-nadir observations, then ensuring the access to profiles dependence with incidence and azimuth angles. Appropriate processes of observations at 4 to 10deg incidence provide with an estimate of the spectral properties of the local wave field.
Keywords :
ocean waves; oceanographic techniques; radar cross-sections; remote sensing by radar; wind; CFOSAT project; Chinese French Oceanographic Satellite project; SWIM instrument; Surface Waves Investigation and Monitoring instrument; frequency 13.575 GHz; multi-incidence beams Ku-band real aperture radar; ocean wave field spectra; ocean wave height; off-nadir observations; radar cross-sections; sun-synchronous orbit; wind speed; Azimuth; Extraterrestrial measurements; Instruments; Ocean waves; Radar cross section; Sea measurements; Sea surface; Spaceborne radar; Surface waves; Velocity measurement; RF; architecture; ocean wave; performance; processing; radar;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Geoscience and Remote Sensing Symposium, 2008. IGARSS 2008. IEEE International
Conference_Location :
Boston, MA
Print_ISBN :
978-1-4244-2807-6
Electronic_ISBN :
978-1-4244-2808-3
Type :
conf
DOI :
10.1109/IGARSS.2008.4780071
Filename :
4780071
Link To Document :
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