DocumentCode :
68000
Title :
Estimating Effective Roughness Parameters of the L-MEB Model for Soil Moisture Retrieval Using Passive Microwave Observations From SMAPVEX12
Author :
Martens, Brecht ; Lievens, Hans ; Colliander, Andreas ; Jackson, Thomas J. ; Verhoest, Niko E. C.
Author_Institution :
Lab. of Hydrol. & Water Manage., Ghent Univ., Ghent, Belgium
Volume :
53
Issue :
7
fYear :
2015
fDate :
Jul-15
Firstpage :
4091
Lastpage :
4103
Abstract :
Despite the continuing efforts to improve existing soil moisture retrieval algorithms, the ability to estimate soil moisture from passive microwave observations is still hampered by problems in accurately modeling the observed microwave signal. This paper focuses on the estimation of effective surface roughness parameters of the L-band Microwave Emission from the Biosphere (L-MEB) model in order to improve soil moisture retrievals from passive microwave observations. Data from the SMAP Validation Experiment 2012 conducted in Canada are used to develop and validate a simple model for the estimation of effective roughness parameters. Results show that the L-MEB roughness parameters can be empirically related to the observed brightness temperatures and the leaf area index of the vegetation. These results indicate that the roughness parameters are compensating for both roughness and vegetation effects. It is also shown, using a leave-one-out cross validation, that the model is able to accurately estimate the roughness parameters necessary for the inversion of the L-MEB model. In order to demonstrate the usefulness of the roughness parameterization, the performance of the model is compared to more traditional roughness formulations. Results indicate that the soil moisture retrieval error can be reduced to 0.054 m3/m3 if the roughness formulation proposed in this study is implemented in the soil moisture retrieval algorithm.
Keywords :
hydrological techniques; moisture; remote sensing; soil; vegetation; AD 2012; Canada; L-MEB model; L-MEB roughness parameters; L-band Microwave Emission from the Biosphere; SMAP Validation Experiment; SMAPVEX12; brightness temperatures; effective roughness parameters; leave-one-out cross validation; microwave signal; passive microwave observations; roughness effect; soil moisture retrieval algorithms; traditional roughness formulations; vegetation effect; vegetation leaf area index; Brightness temperature; L-band; Moisture; Rough surfaces; Soil moisture; Surface roughness; Passive Active L-band Sensor (PALS); passive microwave remote sensing; roughness modeling; soil moisture;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/TGRS.2015.2390259
Filename :
7042732
Link To Document :
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