DocumentCode :
1785070
Title :
Advances in calibration of the SMOS zero-baseline radiometers
Author :
Colliander, A. ; Chun Sik Chae ; Kainulainen, Juha ; Dinnat, Emmanuel ; Torres, F. ; Corbella, I. ; Oliva, R. ; Martin-Neira, Manuel
Author_Institution :
Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA, USA
fYear :
2014
fDate :
24-27 March 2014
Firstpage :
201
Lastpage :
204
Abstract :
Over the course of the more than four-year mission several enhancements have been developed for the calibration of the zero-baseline radiometers of ESA´s SMOS (Soil Moisture Ocean Salinity) mission. Here a particular advancement in adjusting the antenna loss parameters is highlighted. Two methods that enable estimation of the antenna loss are utilized to update the calibration parameters. The impact of the new parameters is evaluated with respect to synthesized antenna temperature which is based on the simulator developed for the Aquarius instrument. The results indicate that the new parameters yield measurements which are significantly closer to the simulated values over the life-time of the mission. This suggests that the new parameters indeed improve the performance of the zero-baseline measurement of SMOS which improves the overall accuracy and stability of the SMOS brightness temperature products.
Keywords :
atmospheric measuring apparatus; atmospheric techniques; calibration; radiometers; remote sensing; Aquarius instrument; ESA SMOS mission; SMOS brightness temperature products; SMOS zero-baseline measurement; SMOS zero-baseline radiometers; antenna loss estimation; antenna loss parameters; calibration parameters; synthesized antenna temperature; Antenna measurements; Antennas; Calibration; Extraterrestrial measurements; Ocean temperature; Radiometers; Temperature measurement; Aquarius; SMOS; inter-calibration;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Microwave Radiometry and Remote Sensing of the Environment (MicroRad), 2014 13th Specialist Meeting on
Conference_Location :
Pasadena, CA
Print_ISBN :
978-1-4799-4645-7
Type :
conf
DOI :
10.1109/MicroRad.2014.6878939
Filename :
6878939
Link To Document :
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