DocumentCode
3020738
Title
Refinement of SMOS multi-angular brightness temperature and its analysis over reference targets
Author
Tianjie Zhao ; Jiancheng Shi ; Bindlish, Rajat ; Jackson, Thomas ; Kerr, Yann ; Qian Cui ; Yunqing Li ; Tao Che
Author_Institution
Inst. of Remote Sensing & Digital Earth, Beijing, China
fYear
2013
fDate
21-26 July 2013
Firstpage
49
Lastpage
52
Abstract
The Soil Moisture Ocean Salinity (SMOS) mission has been providing L-band multi-angular brightness temperature observations at a global scale since its launch in November 2009 and has performed well in the retrieval of soil moisture. The multiple incidence angle observations are not obtained at fixed values and the resolution and accuracy change with the grid locations over SMOS snapshot images. Radio frequency interference issues and aliasing at lower look angles increases the uncertainty of observations and thereby affects the soil moisture retrieval that utilizes observations at specific angles. In this study, we propose a processing chain that uses a mixed objective function based on SMOS L1c data products to refine the characteristics of multi-angular observations. The approach was validated using simulations from a radiative transfer model and analyzed over three external targets: Amazon rainforest, Sahara desert, and Antarctic ice. These results could provide insights for selecting and utilizing external targets as part of the upcoming Soil Moisture Active Passive (SMAP) mission.
Keywords
geophysical techniques; remote sensing; AD 2009 11; Amazon rainforest; Antarctic ice; L-band multiangular brightness temperature observations; SMAP mission; SMOS L1c data products; SMOS mission; SMOS multiangular brightness temperature; SMOS snapshot images; Sahara desert; Soil Moisture Active Passive mission; mixed objective function; radio frequency interference issues; soil moisture ocean salinity; soil moisture retrieval; Brightness temperature; L-band; Ocean temperature; Snow; Soil moisture; Vegetation mapping; Brightness Temperature; Intercomparisons; SMOS; Soil Moisture; WindSat;
fLanguage
English
Publisher
ieee
Conference_Titel
Geoscience and Remote Sensing Symposium (IGARSS), 2013 IEEE International
Conference_Location
Melbourne, VIC
ISSN
2153-6996
Print_ISBN
978-1-4799-1114-1
Type
conf
DOI
10.1109/IGARSS.2013.6721089
Filename
6721089
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