Geometric Targets for UAS Lidar

Lidar from small unoccupied aerial systems (UAS) is a viable method for collecting geospatial data associated with a wide variety of applications. Point clouds from UAS lidar require a means for accuracy assessment, calibration, and adjustment. In order to carry out these procedures, specific locati...

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Veröffentlicht in:Remote sensing (Basel, Switzerland) Switzerland), 2019-12, Vol.11 (24), p.3019
Hauptverfasser: Wilkinson, Benjamin, Lassiter, H. Andrew, Abd-Elrahman, Amr, Carthy, Raymond R., Ifju, Peter, Broadbent, Eben, Grimes, Nathan
Format: Artikel
Sprache:eng
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Zusammenfassung:Lidar from small unoccupied aerial systems (UAS) is a viable method for collecting geospatial data associated with a wide variety of applications. Point clouds from UAS lidar require a means for accuracy assessment, calibration, and adjustment. In order to carry out these procedures, specific locations within the point cloud must be precisely found. To do this, artificial targets may be used for rural settings, or anywhere there is a lack of identifiable and measurable features in the scene. This paper presents the design of lidar targets for precise location based on geometric structure. The targets and associated mensuration algorithm were tested in two scenarios to investigate their performance under different point densities, and different levels of algorithmic rigor. The results show that the targets can be accurately located within point clouds from typical scanning parameters to
ISSN:2072-4292
2072-4292
DOI:10.3390/rs11243019