地质学
遥感
数字高程模型
变形监测
环境科学
地貌学
沉积岩
采矿工程
领域(数学)
鉴定(生物学)
作者
Alisson Villca,Muhammad Ali Sammuneh,Adrien Poupardin,Georges Chapalain,Jena Jeong
标识
DOI:10.1080/01431161.2025.2607757
摘要
This research started with the objective to document and analyse the changes between spring and summer on the dyke Quenin, an earthen structure subjected to erosion by the sea waves. As test flights, two surveys were done and some conclusions were drawn from the corresponding structure from motion (SfM) pipeline outputs, orthomosaic and digital surface model (DSM). Initially, we conducted a study to assess the achievable accuracy of topographic models with the available equipment, correction networks and flight parameters. Next, we evaluated the impact of various ground control point (GCP) and checkpoint (CP) distributions on the accuracy of the DSM to identify the optimal configuration for future monitoring missions. Finally, we were able to detect changes in topography, vegetation and shallow bathymetry using only RGB images. In terms of topography, we identified areas affected by overtopping and erosion. Vegetation changes were observed using visible band vegetation indices (VVI), although these were influenced by the site lighting conditions during the missions. Shallow bathymetry, covering depths from 0 to −5 m, was derived using well-established methods based on water colour. The main contribution of this article is to demonstrate the potential of red, green and blue (RGB) imagery acquired by unmanned aerial vehicle (UAV) for monitoring changes in topography, bathymetry, armour rocks and vegetation and to define flight parameters for future monitoring missions on the dyke.
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