InsSo3D: Inertial Navigation System and 3D Sonar SLAM for turbid environment inspection

Fuente: arXiv
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Autori principali: Archieri, Simon, Cinar, Ahmet, Pan, Shu, Willners, Jonatan Scharff, Grimaldi, Michele, Carlucho, Ignacio, Petillot, Yvan
Natura: Preprint
Pubblicazione: 2026
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author Archieri, Simon
Cinar, Ahmet
Pan, Shu
Willners, Jonatan Scharff
Grimaldi, Michele
Carlucho, Ignacio
Petillot, Yvan
author_facet Archieri, Simon
Cinar, Ahmet
Pan, Shu
Willners, Jonatan Scharff
Grimaldi, Michele
Carlucho, Ignacio
Petillot, Yvan
contents This paper presents InsSo3D, an accurate and efficient method for large-scale 3D Simultaneous Localisation and Mapping (SLAM) using a 3D Sonar and an Inertial Navigation System (INS). Unlike traditional sonar, which produces 2D images containing range and azimuth information but lacks elevation information, 3D Sonar produces a 3D point cloud, which therefore does not suffer from elevation ambiguity. We introduce a robust and modern SLAM framework adapted to the 3D Sonar data using INS as prior, detecting loop closure and performing pose graph optimisation. We evaluated InsSo3D performance inside a test tank with access to ground truth data and in an outdoor flooded quarry. Comparisons to reference trajectories and maps obtained from an underwater motion tracking system and visual Structure From Motion (SFM) demonstrate that InsSo3D efficiently corrects odometry drift. The average trajectory error is below 21cm during a 50-minute-long mission, producing a map of 10m by 20m with a 9cm average reconstruction error, enabling safe inspection of natural or artificial underwater structures even in murky water conditions.
format Preprint
id arxiv_https___arxiv_org_abs_2601_05805
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle InsSo3D: Inertial Navigation System and 3D Sonar SLAM for turbid environment inspection
Archieri, Simon
Cinar, Ahmet
Pan, Shu
Willners, Jonatan Scharff
Grimaldi, Michele
Carlucho, Ignacio
Petillot, Yvan
Robotics
This paper presents InsSo3D, an accurate and efficient method for large-scale 3D Simultaneous Localisation and Mapping (SLAM) using a 3D Sonar and an Inertial Navigation System (INS). Unlike traditional sonar, which produces 2D images containing range and azimuth information but lacks elevation information, 3D Sonar produces a 3D point cloud, which therefore does not suffer from elevation ambiguity. We introduce a robust and modern SLAM framework adapted to the 3D Sonar data using INS as prior, detecting loop closure and performing pose graph optimisation. We evaluated InsSo3D performance inside a test tank with access to ground truth data and in an outdoor flooded quarry. Comparisons to reference trajectories and maps obtained from an underwater motion tracking system and visual Structure From Motion (SFM) demonstrate that InsSo3D efficiently corrects odometry drift. The average trajectory error is below 21cm during a 50-minute-long mission, producing a map of 10m by 20m with a 9cm average reconstruction error, enabling safe inspection of natural or artificial underwater structures even in murky water conditions.
title InsSo3D: Inertial Navigation System and 3D Sonar SLAM for turbid environment inspection
topic Robotics
url https://arxiv.org/abs/2601.05805