Modelling the passive microwave signature from land surfaces: A review of recent results and application to the L-band SMOS & SMAP soil moisture retrieval algorithms

Author:

Wigneron J.-P.,Jackson T.J.,O'Neill P.,De Lannoy G.,de Rosnay P.,Walker J.P.,Ferrazzoli P.,Mironov V.,Bircher S.,Grant J.P.,Kurum M.,Schwank M.,Munoz-Sabater J.,Das N.,Royer A.,Al-Yaari A.,Al Bitar A.,Fernandez-Moran R.,Lawrence H.,Mialon A.,Parrens M.,Richaume P.,Delwart S.,Kerr Y.

Funder

Centre National d’Etudes Spatiales

Publisher

Elsevier BV

Subject

Computers in Earth Sciences,Geology,Soil Science

Reference187 articles.

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3. Global-scale evaluation of two satellite-based passive microwave soil moisture datasets (SMOS and AMSR-E) with respect to land data assimilation system estimates;Al-Yaari;Remote Sens. Environ.,2014

4. A global root-zone soil moisture analysis using simulated L-band brightness temperature in preparation for the hydros satellite mission;Balsamo;J. Hydrometeorol.,2006

5. Global soil moisture from the aquarius/SAC-D satellite: description and initial assessment;Bindlish;IEEE Geosci. Remote Sens. Lett.,2015

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