DocumentCode :
12807
Title :
Rationale Behind an Optimal Field Experiment to Assess the Suitability of Soil Moisture Retrieval Algorithms for SAR Data
Author :
Barber, Matias ; Grings, Francisco ; Bruscantini, Cintia ; Karszenbaum, Haydee
Author_Institution :
Quantitative Remote Sensing Group, Inst. for Astron. & Remote Sensing, Buenos Aires, Argentina
Volume :
12
Issue :
4
fYear :
2015
fDate :
Apr-15
Firstpage :
791
Lastpage :
795
Abstract :
Validation of soil moisture products derived from synthetic aperture radar (SAR) remotely sensed observations involves a comparison against ground-truth data. This validation step helps one to state the performance of competing retrieval algorithms. Nevertheless, the design of a field experiment in the context of SAR retrieval is not straightforward. Ground-based measurements are affected by instrument errors due to both the physical limitations of the measurement technique and the uncertainties related to the spatial variability of the soil moisture. To properly assess the performance of the retrieved estimates, both of the mentioned sources of uncertainties should be considered in the ground-based sampling and in the subsequent error assessment analysis. This letter addresses the rationale behind an optimal field experiment designed to assess the suitability of soil moisture retrieval algorithms.
Keywords :
hydrological techniques; moisture; remote sensing by radar; soil; synthetic aperture radar; SAR data; SAR retrieval; field experiment design; ground-based measurements; ground-truth data; optimal field experiment; remotely sensed observations; soil moisture products; soil moisture retrieval algorithms; synthetic aperture radar; Instruments; Remote sensing; Soil measurements; Soil moisture; Synthetic aperture radar; Uncertainty; Ground-based sampling; remote sensing applications; surface soil moisture; synthetic aperture radar (SAR) estimates;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing Letters, IEEE
Publisher :
ieee
ISSN :
1545-598X
Type :
jour
DOI :
10.1109/LGRS.2014.2362758
Filename :
6936880
Link To Document :
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