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Bilal Wehbe

8 accepted papers

2026

MV3D: Multi-View 3D Reconstruction of Objects Using Forward-Looking Sonar

ICRA 2026poster

This work proposes a method for learning features from a batch of 2D sonar images to predict a multi-view point-cloud for achieving a dense 3D-reconstruction. In comparison to vision-based sensors, acoustics are considered a reliable sensing modality in underwater environments. The output of sonars …

Cited by 0SourceScholar
2026

REACT: Real-Time Entanglement-Aware Coverage Path Planning for Tethered Underwater Vehicles

ICRA 2026poster

Inspection of underwater structures with tethered underwater vehicles is often hindered by the risk of tether entanglement. We propose REACT (real-time entanglement- aware coverage path planning for tethered underwater ve- hicles), a framework designed to overcome this limitation. REACT comprises a …

2024

SAVOR: Sonar-Aided Visual Odometry and Reconstruction for Autonomous Underwater Vehicles*

IROS 2024poster

Visual odometry (VO) relies on sequential camera images to estimate robot motion. For underwater robots, this is often complicated by turbidity, light attenuation, and environments containing scarce or repetitive features. Even ideal imagery suffers from the issue of scale ambiguity common to all mo…

Cited by 3SourceScholar
2017

Experimental evaluation of various machine learning regression methods for model identification of autonomous underwater vehicles

ICRA 2017poster

In this work we investigate the identification of a motion model for an autonomous underwater vehicle by applying different machine learning (ML) regression methods. By using the data collected from the robot's on-board navigation sensors, we train the regression models to learn the damping term whi…

Cited by 52SourceScholar
2017

Online model identification for underwater vehicles through incremental support vector regression

IROS 2017poster

This paper presents an online technique which employs incremental support vector regression to learn the damping term of an underwater vehicle motion model, subject to dynamical changes in the vehicle's body. To learn the damping term, we use data collected from the robot's on-board navigation senso…

Cited by 16SourceScholar