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An artificial neural network approach for optical-SAR imagery fusion and landslide mapping
Yi Keng Chen,
Shou Hao Chiang
,
Chang Chung-Pai
太空及遙測研究中心
土木工程學系
客家語文暨社會科學學系
前瞻科技研究中心
地球科學學系
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Keyphrases
Active Tectonics
20%
Artificial Neural Network
20%
Artificial Neural Network Method
100%
Backscatter
20%
Bare Surfaces
20%
Deposition Pattern
20%
Detection Result
20%
Erosion Pattern
20%
Heavy Rainfall
40%
Human Activities
20%
Image Difference
20%
Image Fusion
60%
Image Segmentation
20%
Index Difference
20%
Kappa Coefficient
40%
Land Surface
20%
Landslide
60%
Landslide Detection
60%
Landslide Inventory
20%
Landslide Mapping
100%
Landslide Susceptibility
20%
Large-scale Landslide
20%
Machine Learning Techniques
20%
Mapping Practices
20%
Mapping Problem
20%
Mean Standard Deviation
20%
Mountainous Areas
40%
Normalized Difference
20%
Normalized Difference Vegetation Index
20%
Optical Aperture
20%
Optical Image
40%
Optical Synthetic Aperture
100%
Overall Accuracy
40%
Rainfall Effects
20%
River Watershed
20%
Severe Damage
20%
Sigma Naught
20%
Southern Taiwan
20%
Synthetic Aperture Radar Image
100%
Synthetic Aperture Radar Imagery
100%
Taiwan
20%
Texture Statistics
20%
Transportation Pattern
20%
Typhoon Activity
20%
Typhoon Event
20%
Typhoon Morakot (2009)
20%
Typhoon Season
20%
Earth and Planetary Sciences
Artificial Neural Network
100%
Land Surface
14%
Machine Learning
14%
Mountainous Area
14%
Normalized Difference Vegetation Index
14%
Radar Data
14%
Radar Imagery
100%
Standard Deviation
14%
Synthetic Aperture Radar
100%
Taiwan
28%
Tectonics
14%