Information from the abstract
Abstract. Small-format multi-head camera systems are increasingly deployed for UAV-based 3D mapping; however, systematic evaluations that explicitly link acquisition geometry to network robustness and façade reconstruction completeness remain scarce. This study establishes a geometry-driven, multi-dataset evaluation framework to assess such systems in topographic mapping. Six UAV datasets with varying flying altitudes, overlaps, platforms, cameras, and urbanization are analyzed using a rigorous bundle block adjustment workflow. Internal network strength is quantified using image connectivity, image ray intersection angles, and tie point multiplicity, while object-space accuracy is assessed using ground control point residuals. Reconstruction completeness is evaluated using façade-specific point density metrics, enabling a controlled comparison between nadir-only and multi-head (nadir + oblique) configurations. The results show that oblique imagery strengthens multi-directional image network geometry and substantially improves façade reconstruction. This study establishes empirical relationships between acquisition design, network stability, and object-space completeness.
Why this record is monitored
This record has an Impact Signal of 83/100 based on recency, source, collaboration, and bibliographic signals. It prioritizes monitoring and is not a judgment of research quality.
Related topics: 3D Surveying and Cultural Heritage · Remote Sensing and LiDAR Applications · Robotics and Sensor-Based Localization
Thai researcher and institutional participation
Thirawat Bannakulpiphat · Chulalongkorn University
Data limitations
This page is a bibliographic record based on abstract-level information, not a full analysis or quality assessment. Verify the DOI and original article before citation.