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Learning Change from Synthetic Aperture Radar Images: Performance Evaluation of a Support Vector Machine to Detect Earthquake and Tsunami-Induced Changes.

, , and . Remote. Sens., 8 (10): 792 (2016)

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Characterization of affected areas of the 2008 Iwate-Miyagi, Japan, earthquake using SAR intensity images., , and . IGARSS, page 4660-4663. IEEE, (2010)Damage Assessment of Bridges Using Post-Event High-Resolution Sar Images., , and . IGARSS, page 862-865. IEEE, (2018)Mapping the inundated area caused by the July 2018 Western Japan torrential rain using multi-temporal ALOS-2 data., , and . JURSE, page 1-4. IEEE, (2019)Shadow detection and radiometric restoration in satellite high resolution images., , , and . IGARSS, page 3744-3747. IEEE, (2004)Earthquake damage detection using high-resolution satellite images., , , , and . IGARSS, page 2280-2283. IEEE, (2004)Damage Assessment of Debris Flow in Atami City, Japan, Based on Field Survey and High-Resolution SAR Data., and . IGARSS, page 2354-2357. IEEE, (2023)Novel Unsupervised Classification of Collapsed Buildings Using Satellite Imagery, Hazard Scenarios and Fragility Functions., , , , , and . Remote. Sens., 10 (2): 296 (2018)Use of Multi-Temporal LiDAR Data to Extract Collapsed Buildings and to Monitor Their Removal Process after the 2016 Kumamoto Earthquake., , and . Remote. Sens., 14 (23): 5970 (December 2022)Automated Extraction of Inundated Areas from Multi-Temporal Dual-Polarization RADARSAT-2 Images of the 2011 Central Thailand Flood., , and . Remote. Sens., 9 (1): 78 (2017)Vehicle Extraction and Speed Detection from Digital Aerial Images., , and . IGARSS (3), page 1334-1337. IEEE, (2008)