Non-Uniform Spatial Alignment Errors in sUAS Imagery From Wide-Area Disasters
Thomas Manzini, Priyankari Perali, Raisa Karnik, Mihir Godbole, Hasnat Abdullah, Robin Murphy

TL;DR
This study reveals that spatial alignment errors in sUAS imagery during disaster response are non-uniform and irregular, significantly affecting geospatial applications and highlighting the need for new alignment methods.
Contribution
It provides the first quantitative analysis of non-uniform alignment errors in sUAS imagery and introduces an updated dataset with corrected spatial misalignments for future research.
Findings
Alignment errors are non-uniform and irregular.
Linear transformations are insufficient for correcting misalignments.
The updated dataset includes building polygons and correction annotations.
Abstract
This work presents the first quantitative study of alignment errors between small uncrewed aerial systems (sUAS) georectified imagery and a priori building polygons and finds that alignment errors are non-uniform and irregular, which negatively impacts field robotics systems and human-robot interfaces that rely on geospatial information. There are no efforts that have considered the alignment of a priori spatial data with georectified sUAS imagery, possibly because straight-forward linear transformations often remedy any misalignment in satellite imagery. However, an attempt to develop machine learning models for an sUAS field robotics system for disaster response from nine wide-area disasters using the CRASAR-U-DROIDs dataset uncovered serious translational alignment errors. The analysis considered 21,608 building polygons in 51 orthomosaic images, covering 16787.2 Acres (26.23 square…
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Taxonomy
TopicsGeochemistry and Geologic Mapping · Advanced Image Fusion Techniques · Satellite Image Processing and Photogrammetry
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