Comparison of soil moisture retrieval algorithms based on the synergy between SMAP and SMOS-IC
Idioma
en
Article de revue
Este ítem está publicado en
International Journal of Applied Earth Observation and Geoinformation. 2018, vol. 67, p. 148-160
Elsevier
Resumen en inglés
This study was carried out to evaluate possible improvements of the soil moisture (SM) retrievals from the SMAP observations, based on the synergy between SMAP and SMOS. We assessed the impacts of the vegetation and soil ...Leer más >
This study was carried out to evaluate possible improvements of the soil moisture (SM) retrievals from the SMAP observations, based on the synergy between SMAP and SMOS. We assessed the impacts of the vegetation and soil roughness parameters on SM retrievals from SMAP observations. To do so, the effects of three key input parameters including the vegetation optical depth (VOD), effective scattering albedo (to) and soil roughness (H-R) parameters were assessed with the emphasis on the synergy with the VOD product derived from SMOS-IC, a new and simpler version of the SMOS algorithm, over two years of data (April 2015 to April 2017). First, a comprehensive comparison of seven SM retrieval algorithms was made to find the best one for SM retrievals from the SMAP observations. All results were evaluated against in situ measurements over 548 stations from the International Soil Moisture Network (ISMN) in terms of four statistical metrics: correlation coefficient (R), root mean square error (RMSE), bias and unbiased RMSE (UbRMSE). The comparison of seven SM retrieval algorithms showed that the dual channel algorithm based on the additional use of the SMOS-IC VOD product (selected algorithm) led to the best results of SM retrievals over 378, 399, 330 and 271 stations (out of a total of 548 stations) in terms of R, RMSE, UbRMSE and both R & UbRMSE, respectively. Moreover, comparing the measured and retrieved SM values showed that this synergy approach led to an increase in median R value from 0.6 to 0.65 and a decrease in median UbRMSE from 0.09 m(3)/m(3) to 0.06 m(3)/m(3). Second, using the algorithm selected in a first step and defined above, the to and H-R parameters were calibrated over 218 rather homogenous ISMN stations. 72 combinations of various values of to and H-R were used for the calibration over different land cover classes. In this calibration process, the optimal values of to and H-R were found for the different land cover classes. The obtained results indicated that the impact of the VOD parameter on SM retrievals is more considerable than the effects of HR and to. Overall, the inclusion of the VOD parameter in the SMAP SM retrieval algorithm was found to be a very interesting approach and showed the large potential benefit of the synergy between SMAP and SMOS.< Leer menos
Palabras clave
SMOS-IC
synergy
calibration
Palabras clave en inglés
SMAP
vegetation optical depth (VOD)
vegetation scattering albedo (ω)
soil roughness parameter (HR)
Orígen
Importado de HalCentros de investigación