Raspi$^2$USBL: An open-source Raspberry Pi-Based Passive Inverted Ultra-Short Baseline Positioning System for Underwater Robotics
Jin Huang, Yingqiang Wang, and Ying Chen

TL;DR
Raspi$^2$USBL is an open-source, Raspberry Pi-based underwater positioning system that offers high accuracy at low cost, validated through extensive experiments, and aims to advance underwater robotics research.
Contribution
The paper introduces a low-cost, open-source underwater positioning system with a modular hardware design and real-time signal processing, enabling accessible high-precision underwater navigation.
Findings
Achieves better than 0.1% slant-range accuracy
Provides within 0.1° bearing accuracy
Operates reliably up to 1.3 km distance
Abstract
Precise underwater positioning remains a fundamental challenge for underwater robotics since global navigation satellite system (GNSS) signals cannot penetrate the sea surface. This paper presents RaspiUSBL, an open-source, Raspberry Pi-based passive inverted ultra-short baseline (piUSBL) positioning system designed to provide a low-cost and accessible solution for underwater robotic research. The system comprises a passive acoustic receiver and an active beacon. The receiver adopts a modular hardware architecture that integrates a hydrophone array, a multichannel preamplifier, an oven-controlled crystal oscillator (OCXO), a Raspberry Pi 5, and an MCC-series data acquisition (DAQ) board. Apart from the Pi 5, OCXO, and MCC board, the beacon comprises an impedance-matching network, a power amplifier, and a transmitting transducer. An open-source C++ software framework provides…
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Taxonomy
TopicsUnderwater Vehicles and Communication Systems · Underwater Acoustics Research · Indoor and Outdoor Localization Technologies
