Wave-Robust Passive AUV Localization Using FP-MUSIC

Venue: arXiv:2609.27712 Preprint

Year: 2026

Collaborators: Usama Saqib, Ola Rønning, Andrzej Wąsowski

Abstract

Localizing an autonomous underwater vehicle without pre-deployed seabed transponders, or direct access to onboard vehicle sensors remains a core challenge. We present a receiver-passive 3-D localization and spatial mapping system utilizing a single floating surface buoy equipped with a hydrophone array and an inertial measurement unit (IMU). The central difficulty is that surface wave motion induces six-degree-of-freedom (6-DOF) perturbations that rotate the array between snapshots, degrading conventional subspace processing. We resolve this by introducing a fixed-point iterative MUltiple SIgnal Classification algorithm (FP-MUSIC) that uses IMU measurements to de-warp snapshot covariances prior to direction-of-arrival estimation. Furthermore, we employ a subspace-projected wideband matched filter to resolve beacon ranges and use power asymmetry for independent front-back identification. Evaluations across simulated sea states demonstrate that FP-MUSIC substantially reduces localization error relative to uncompensated methods and sustains robust 3-D tracking and vehicle orientation estimation under wave-induced motion. At moderate sea state, FP-MUSIC increases the 2-m beacon-separation accuracy from approximately 45% to 75%.

BibTeX

@misc{saqib2026wave,
 title={Wave-Robust Passive {AUV} Localization Using {FP-MUSIC}},
 author={Usama Saqib and Ola R\o nning and Andrzej W\k{a}sowski},
 year={2026},
 eprint={2609.27712},
 archivePrefix={arXiv},
 primaryClass={cs.RO},
 url={https://arxiv.org/abs/2609.27712}
}