DocumentCode
1128481
Title
A Change Detection Algorithm for Retrieving High-Resolution Soil Moisture From SMAP Radar and Radiometer Observations
Author
Piles, Maria ; Entekhabi, Dara ; Camps, Adriano
Author_Institution
Dept. de Teor. del Senyal i Comunicacions, Univ. Politec. de Catalunya, Barcelona, Spain
Volume
47
Issue
12
fYear
2009
Firstpage
4125
Lastpage
4131
Abstract
A change detection algorithm has been developed in order to obtain high-resolution soil moisture estimates from future Soil Moisture Active and Passive (SMAP) L-band radar and radiometer observations. The approach combines the relatively noisy 3-km radar backscatter coefficients and the more accurate 36-km radiometer brightness temperature into an optimal 10-km product. In preparation for the SMAP mission, an observation system simulation experiment (OSSE) and field experimental campaigns using the Passive and Active L- and S-band Airborne Sensor (PALS) have been conducted. We use the PALS airborne observations and OSSE data to test the algorithm and develop an error budget table. When applied to four-month OSSE data, the change detection method is shown to perform better than direct inversion of the radiometer brightness temperatures alone, improving the root mean square error by 2% volumetric soil moisture content. The main assumptions of the algorithm are verified using PALS data from the soil moisture experiments held during June-July 2002 (Soil Moisture Experiment 2002) in Iowa. The algorithm error budget is estimated and shown to meet SMAP science requirements.
Keywords
geophysical techniques; moisture; radiometry; remote sensing by radar; soil; AD 2002 06 to 07; Iowa; OSSE data; PALS airborne observations; SMAP radar observations; change detection algorithm; high resolution soil moisture retrieval; observation system simulation experiment; radar backscatter coefficients; radiometer observations; Change detection; Soil Moisture Active and Passive (SMAP) mission; microwave remote sensing; observation system simulation experiment (OSSE); radar; radiometer;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/TGRS.2009.2022088
Filename
5159494
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