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Multi-Frequency Radiometer-Based Soil Moisture Retrieval and Algorithm Parameterization Using In Situ SitesL-band brightness temperature (TB) has been shown to provide the best sensitivity to soil moisture (SM) although C- and X-band based products offer a longer time-series from satellite-based measurements. Currently, global coverage SM is routinely produced from spaceborne measurements using all three frequency bands, but despite continued validation efforts of the products, the relative characteristics and performance of these observations have not been fully established. Therefore, this study focused on the parametrization of SM retrieval algorithms at L-, C- and X-bands using TB observations from the L-band radiometer on NASA's SM Active Passive (SMAP) mission and the C- and X-band channels of JAXA's Advanced Microwave Scanning Radiometer 2 (AMSR2) onboard the GCOM-W satellite. These can be applied in global SM retrieval algorithms using either one of the frequencies or a combination of them. The reference in situ SM data was obtained from 12 core validation sites across various land cover types around the world. The investigation highlighted the known challenges of retrieving SM from C- and X-band data compared to the higher sensitivity of the L-band data. Even with a site-specific retrieval algorithm parameterization, the mean correlation of the C- and X-band retrievals for the core validation site SM measurement were much lower than that for L-band, being 0.52 (0.54) and 0.45 (0.47) for vertical (horizontal) polarization, respectively, while for the L-band retrieval the corresponding values were 0.81 (0.77). The parameterization exercise showed that matching the C- and X-band TB measurements with an emission model was not difficult; the problem was relating the observations to SM under the influence of large roughness and vegetation effects. As a result, parameter optimization produced values for some sites that were not realistic or did not allow any practical sensitivity to SM at C- and X-band. Considering the L-band observations, the parameter optimization resulted in superior bias performance as compared to the operational SMAP product parameterization, but the sensitivity to SM changes (R and unbiased root mean square difference) did not improve markedly, or in some cases degraded at the expense of a smaller bias.
Document ID
20220013793
Acquisition Source
Goddard Space Flight Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
Y. Gao
(University of California, Los Angeles Los Angeles, California, United States)
A. Colliander
(Jet Propulsion Lab La Cañada Flintridge, California, United States)
M.S. Burgin
(Jet Propulsion Lab La Cañada Flintridge, California, United States)
J.P. Walker ORCID
(Monash University Melbourne, Victoria, Australia)
E. Dinnat
(Goddard Space Flight Center Greenbelt, Maryland, United States)
C. Chae
(Jet Propulsion Lab La Cañada Flintridge, California, United States)
M.H. Cosh ORCID
(Henry A. Wallace Beltsville Agricultural Research Center Maryland City, Maryland, United States)
T.G. Caldwell ORCID
(The University of Texas at Austin Austin, Texas, United States)
A. Berg ORCID
(University of Guelph Guelph, Ontario, Canada)
J. Martinez-Fernandez
(University of Salamanca Salamanca, Castilla y León, Spain)
M. Seyfried
(Agricultural Research Service Washington D.C., District of Columbia, United States)
P.J. Starks
(Agricultural Research Service Washington D.C., District of Columbia, United States)
D.D. Bosch ORCID
(Agricultural Research Service Washington D.C., District of Columbia, United States)
H. McNairn
(Agriculture and Agriculture-Food Canada Ottawa, Ontario, Canada)
Z. Su
(University of Twente Enschede, Overijssel, Netherlands)
R. van der Velde
(University of Twente Enschede, Overijssel, Netherlands)
Date Acquired
September 8, 2022
Publication Date
June 21, 2022
Publication Information
Publication: Remote Sensing of Environment
Publisher: Elsevier
Volume: 279
Issue Publication Date: September 15, 2022
ISSN: 0034-4257
Subject Category
Geosciences (General)
Earth Resources And Remote Sensing
Funding Number(s)
CONTRACT_GRANT: 80NSSC18K1443
PROJECT: PID2020-114623RB-C33
PROJECT: NWO-ENW ENWWW.2018.5
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
Single Expert
Keywords
passive microwave
radiometer
soil moisture
parameterization
calibration
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