Michael Amelunke
TELEDYNE
About the Speaker
Current Position
Serves as an initial point of contact for software/hardware
inquiries related to Teledyne Optech’s topo/bathy Lidar
systems, handles client training activities for various postprocessing
software workflows, and serves as an integral part
of the R&D team responsible for developing the topo/bathy
post-processing software.
Work Experience and Accomplishments
Aided in developing procedures for client processing
workflows including lidar geometric calibration, trajectory
processing, and other point cloud/waveform processing.
Matchmaking Information
Attending
Speaker's Sessions (1)
Date
Exhibitor event
Hydrography & LiDAR Applications
Thursday, Sep 17, 2026
12:30 PM - 12:50 PM | Europe/Berlin
Vortrag // Presentation
B5 | Main Stage | B5L033
English
Fathom: An Integrated Airborne Topo-bathy Lidar System for High‑Resolution Shallow‑Water Bathymetry in Coastal and Riverine Environments
Fathom is an advanced airborne lidar system optimized for high resolution shallow water bathymetry and topographic mapping in coastal zones, rivers, and inland waterways. It is specifically designed to support river management, sediment transport studies, environmental monitoring, coastal security, and geomorphologic investigations, where shallow depths and complex land–water transitions dominate. The system employs an integrated topo bathy architecture combining a dual frequency 60 kHz bathymetric laser (532 nm and 1064 nm) with a four channel segmented detector array optimized for shallow water. This configuration enables robust bottom detection up to 21 m in clear water (Kd ≈ 0.1) for coastal and riverine environments, while maintaining deeper water capability up to 32 m. An effective 240 kHz bathymetric sounding rate in full waveform mode is complemented by a 1.5 MHz topographic channel, allowing seamless, single pass acquisition across land and water surfaces under a unified calibration framework. This paper presents validation results from test flights over Lake Ontario and Lake Huron, using Canadian Hydrographic Service (CHS) reference data. Results demonstrate sub decimeter vertical coherence, reliable water surface detection, and shallow water performance consistent with system design expectations. The measured accuracies meet IHO S 44 Order 1a bathymetric and USACE QL0B topographic standards, confirming Fathom’s suitability for precision shallow water mapping, hydrographic charting, and rapid response operations in dynamic coastal and riverine settings.

