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Evaluation of an underwater laser scanner and an air-borne laser scanner in coastal shallow waters

Abstract

Next to the known photogrammetric or acoustic measurement techniques, nowadays LiDAR is a promising option for high-resolution surveys or monitoring of underwater structures in low turbid and shallow waters. The objective of this investigation is to determine the performance of an underwater laser scanner and an air-borne bathymetric laser scanner for mobile data acquisitions. For this purpose, the underwater LiDAR (ULi) from Fraunhofer IPM is installed on a vessel. To enable the registration and georeferencing of the scan data, ULi is added by an Inertial Navigation System (INS) and two GNSS antennas. On the other hand, the air-borne bathymetric laser scanner (ABS) is integrated into an unmanned aerial system (UAS). Both systems are used to survey in the same measurement area to acquire comparable data sets. With the selected measurement settings, both systems can penetrate through water for more than 10 m and are able to resolve small underwater structures. Caused by shorter measurement ranges, ULi offers a point density which is approximately four times higher than the ABS and is able to resolve vertical underwater structures. The advantage of the UAS mounted ABS is that it can survey in shallow areas which cannot be accessed by vessels.

Translated title of the contributionÜberprüfung eines Unterwasser-Laserscanners und eines air-borne Laserscanners in flachen Küstengewässern
Original languageEnglish
Title of host publicationThe International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences
EditorsSongnian Li, Derek Lichti, Shabnam Jabari, Alper Yilmaz , Jan Dirk Wegner, Rongjun Qin
Place of PublicationToronto
PublisherCopernicus Publications
Pages989 - 995
Number of pages7
Volume49
DOIs
Publication statusPublished - 23 Jul 2026

Publication series

NameInternational Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences - ISPRS Archives
PublisherCopernicus Publications
ISSN (Print)1682-1750

Keywords

  • Bathymetric LiDAR
  • Hydrography
  • Point Cloud Quality
  • Underwater LiDAR

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