Monitoring of a rockfill embankment dam using TLS and sUAS point clouds

Author:

Bolkas Dimitrios1,O’Banion Matthew2,Laughlin Jordan2,Prickett Jakeb3

Affiliation:

1. Department of Surveying Engineering , The Pennsylvania State University , Wilkes-Barre Campus , Dallas , PA , USA

2. Department of Geography and Environmental Engineering , 8531 United States Military Academy , West Point , NY , USA

3. Geographic Applications and Analysis Group, Technical Service Center , United States Bureau of Reclamation , Denver , CO , USA

Abstract

Abstract Terrestrial laser scanning (TLS) and camera-equipped small unmanned aircraft systems (sUAS) are two methods that are often used to produce dense point clouds for several monitoring applications. This paper compares the two methods in their ability to provide accurate monitoring information for rockfill embankment dams. We compare the two methods in terms of their uncertainty, data completeness, and field data acquisition/processing challenges. For both datasets, we derive an error budget that considers registration and measurement uncertainty. We also proceed to merge the TLS and sUAS data and leverage the advantages of each method. Furthermore, we conduct an analysis of the multiscale model-to-model cloud comparison (M3C2) input parameters, namely projection scale, normal scale, and sub-sampling of the reference point cloud, to show their effect on the M3C2 distance estimation. The theoretical methodologies and practical considerations of this paper can assist surveyors, who conduct monitoring of rockfill embankment dams using point clouds, in establishing reliable change/deformation estimations.

Publisher

Walter de Gruyter GmbH

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