Spaceborne Insar and Optical Observations Improve Uncertainty Estimation in 3d Geomorphic Change Detection Using High-Resolution Topography

Author:

Walker Simon,McVicar Tim R.,Castellazzi Pascal,Wilkinson Scott,Khan Sana

Publisher

Elsevier BV

Reference113 articles.

1. Comparing high accuracy t-LiDAR and UAV-SfM derived point clouds for geomorphological change detection;S Alexiou;ISPRS International Journal of Geo-Information,2021

2. Comparison of Ground Point Filtering Algorithms for High-Density Point Clouds Collected by Terrestrial LiDAR;G Bailey;Remote Sensing,2022

3. Refining fine sediment source identification through integration of spatial modelling, concentration monitoring and source tracing: A case study in the Great Barrier Reef catchments;Z Bainbridge;Science of The Total Environment,2023

4. Coupled influence of tectonics, climate, and surface processes on landscape evolution in southwestern North America;A Bahadori;Structure from Motion (SfM) methods. Earth Surface Processes and Landforms,2017

5. Priority-flood: An optimal depression-filling and watershed-labeling algorithm for digital elevation models;R Barnes;Computers & Geosciences,2014

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