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A Method to Automatically Detect Changes in Multitemporal Spectral Indices: Application to Natural Disaster Damage Assessment., , and . Remote. Sens., 12 (17): 2681 (2020)An Automatic Processing Chain for Near Real-Time Mapping of Burned Forest Areas Using Sentinel-2 Data., , , , , , , , and . Remote. Sens., 12 (4): 674 (2020)Sentinel-1 InSAR Coherence to Detect Floodwater in Urban Areas: Houston and Hurricane Harvey as A Test Case., , , , , and . Remote. Sens., 11 (2): 107 (2019)Modeling Microwave Fully Polarimetric Passive Observations of the Sea Surface: A Neural Network Approach., , and . IEEE Trans. Geosci. Remote. Sens., 45 (7-1): 2098-2107 (2007)Comparing Scatterometric and Radiometric Simulations With Geophysical Model Functions to Tune a Sea Wave Spectrum Model., and . IEEE Trans. Geosci. Remote. Sens., 46 (11): 3756-3767 (2008)Radar Bistatic Configurations for Soil Moisture Retrieval: A Simulation Study., , , and . IEEE Trans. Geosci. Remote. Sens., 46 (10): 3252-3264 (2008)Multitemporal soil moisture retrieval from 3-days ERS-2 data: Comparison with ASCAT, SMOS and in situ measurements., , and . IGARSS, page 2459-2462. IEEE, (2014)Empirical algorithms to retrieve surface rain-rate from Special Sensor Microwave Imager over a mid-latitude basin., , , , , , and . IGARSS, page 1872-1874. IEEE, (2002)Flood mapping by SAR: Possible approaches to mitigate errors due to ambiguous radar signatures., , , , , and . IGARSS, page 3850-3853. IEEE, (2014)Integration of SAR intensity and coherence data to improve flood mapping., , , and . IGARSS, page 1385-1388. IEEE, (2015)