Papers for

marine construction teams

Papers whose findings have a practical use for this group, as judged from the abstract. Open a paper to read what it means in practice.

Underwater robots map pools accurately using sonar and odometry

Odometry-Aided Real-Time Mapping for Underwater Robots Using Forward-Looking Sonar

Abstract: Reliable perception is essential for underwater vehicles operating in complex environments, where light attenuation and scattering often degrade visibility and compromise optical sensing. Forward-looking sonar (FLS) offers an alternative by providing high-frame-rate acoustic imaging under poor optical conditions. However, real-time FLS mapping remains challenging due to unresolved target elevation, spatially non-uniform noise, and fragmented target boundaries, which hinder feature extraction and introduce geometric ambiguity during projection. To address these challenges, we propose a cascaded feature reconstruction pipeline combining fast Fourier transform (FFT)-based denoising, fast multiscale constant false alarm rate (MCFAR) detection, and gradient-adaptive boundary connection to extract geometric features from degraded sonar images with low latency. We integrate attitude-aware geometric projection with incremental occupancy accumulation to construct a depth-referenced 2.5D map for local mapping in confined underwater environments. The sonar's vertical position is referenced to an external sensor, while target elevation is assigned under an explicit geometric assumption rather than measured directly by FLS. Experiments in a 3 m X 5 m pool demonstrate centimeter-scale planar mapping accuracy, with a root-mean-square error (RMSE) below 3 cm across three sequences and an average processing time of 42.4 ms per frame.

Mon 21 SeptRobotics
The gist
It's hard for underwater robots to see clearly because water messes up light, so instead they use sonar, which sends out sound waves to create images. The authors created a method to clean up these sonar images and connect shapes to understand the surroundings better. They also use data from the robot’s movements to build a map of underwater spaces in real time. Their method works well in a pool, creating maps that are accurate to within a few centimeters.
Open 2609.24195v1