DocumentCode :
168789
Title :
SAR-image derived soil moisture enhancement using GPR data
Author :
Nottebaere, M. ; Ardekani, M.R. ; Lambot, Sebastien ; Neyt, X.
Author_Institution :
Signal & Image Centre, R. Mil. Acad., Brussels, Belgium
fYear :
2014
fDate :
June 30 2014-July 4 2014
Firstpage :
223
Lastpage :
226
Abstract :
Measuring the spatial distribution of soil moisture is important for agricultural, hydrological, meteorological and climatological research and applications. In this study, a new technique is developed to create soil moisture maps, based on the inversion of SAR measurements (RADARSAT-2, fine quad polarization) combined with GPR measurements. The Integral Equation Model is used to invert the SAR measurements, assuming a constant surface roughness and correlation length for the entire field, while the GPR data are inverted using a full wave inversion method. High resolution GPR measurements taken at different times under different land and weather conditions are used to generate a relative soil moisture landscape. We assume that these soil moisture difference patterns show little variation over time. By combining the inverted SAR data with a transformation of the soil moisture difference landscape, a high resolution soil moisture map is generated. The high resolution soil moisture maps show good agreement with the measured GPR soil moisture maps. The advantage of this technique is that once the relative soil moisture difference landscape is created, it allows the creation of new high resolution soil moisture maps later, by only taking a SAR image.
Keywords :
ground penetrating radar; integral equations; radar imaging; soil; synthetic aperture radar; GPR data; GPR measurements; RADARSAT-2; SAR image; SAR measurements; agricultural research; climatological research; fine quad polarization; full wave inversion method; ground penetrating radar; hydrological research; integral equation model; meteorological research; soil moisture enhancement; spatial distribution; synthetic aperture radar; Image resolution; Moisture; Moisture measurement; Soil measurements; Soil moisture; Standards; GPR; Inversion; SAR; soil moisture retrieval;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ground Penetrating Radar (GPR), 2014 15th International Conference on
Conference_Location :
Brussels
Type :
conf
DOI :
10.1109/ICGPR.2014.6970418
Filename :
6970418
Link To Document :
بازگشت