DocumentCode :
3690191
Title :
Physically-based active-passive modelling and retrieval for SMAP soil moisture inversion algorithm
Author :
T. Jagdhuber;D. Entekhabi;I. Hajnsek;A. G. Konings;K. A. McColl;S. H. Alemohammad;N. N. Das;C. Montzka
Author_Institution :
German Aerospace Center, Microwaves and Radar Institute, PO BOX 1116, 82234 Wessling
fYear :
2015
fDate :
7/1/2015 12:00:00 AM
Firstpage :
1300
Lastpage :
1303
Abstract :
The NASA Soil Moisture Active Passive (SMAP) mission is designed to produce high-resolution (9 km) global mapping of surface soil moisture based on L-band radar and radiometer measurements. The multi-scale measurements are combined using time-series of active passive microwave data to retrieve the statistical regression parameters (α, β) from successive overpasses. In this study, we introduce a physically-based forward model as well as data-based retrieval of the β-parameter. The forward model stems from analyses of the scattering and loss terms occurring during bare and vegetated soil scattering/emission and allows a physically-based modelling of the β-parameter. This provides possibilities to analyze the different influences of soil roughness as well as vegetation structure and moisture on the β-parameter under different environmental conditions. In addition, a physically-based retrieval of β from one active-passive SMAP acquisition couple is proposed, circumventing lengthy time-series regressions. The key operation enabling a single-pass retrieval of the β-parameter is the vegetation correction of the backscatter signal. This can be achieved by use of the measured cross-polarized backscatter signal together with an appropriate polarimetric vegetation volume model.
Keywords :
"Vegetation mapping","Microwave radiometry","Scattering","Soil moisture","Radar","Soil measurements"
Publisher :
ieee
Conference_Titel :
Geoscience and Remote Sensing Symposium (IGARSS), 2015 IEEE International
ISSN :
2153-6996
Electronic_ISBN :
2153-7003
Type :
conf
DOI :
10.1109/IGARSS.2015.7326013
Filename :
7326013
Link To Document :
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