Wave Measurements using Open Source Ship Mounted Ultrasonic Altimeter and Motion Correction System during the One Ocean Expedition
Judith Thu {\O}lberg, Patrik Bohlinger, {\O}yvind Breivik and, Kai H. Christensen, Birgitte R. Furevik, Lars R. Hole, Gaute Hope, and Atle Jensen, Fabian Knoblauch, Ngoc-Thanh Nguyen, Jean Rabault

TL;DR
This paper presents a cost-effective, open-source ship-mounted ultrasonic altimeter system with motion correction, tested during a 20-month expedition, providing reliable wave measurements that align well with satellite data and models.
Contribution
The study introduces an open-source, adaptable ultrasonic altimeter system with motion correction for ship-based wave measurements, validated during a long maritime expedition.
Findings
Wave height measurements agree with satellite altimetry.
Doppler correction improves mean wave period accuracy.
System is cost-effective and adaptable for various ships.
Abstract
This study reviews the design and signal processing of ship borne ultrasonic altimeter wave measurements. The system combines a downward facing ultrasonic altimeter to capture the sea surface elevation as a time series, and an inertial measurement unit to compensate for the ship's motion. The methodology is cost-effective, open source, and adaptable to various ships and platforms. The system was installed on the barque Statsraad Lehmkuhl and recorded data continuously during the 20-month One Ocean Expedition. Results from 1-month crossing of the Tropical Atlantic are presented here. The one-dimensional wave spectrum and associated wave parameters are obtained from the sea surface elevation time series. The observed significant wave height agrees well with satellite altimetry and a spectral wave model. The agreement between observations and the spectral wave model is better for the mean…
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Taxonomy
TopicsUnderwater Acoustics Research · Ocean Waves and Remote Sensing · Maritime Navigation and Safety
