Marinarium: a New Arena to Bring Maritime Robotics Closer to Shore
Ignacio Torroba, David Dorner, Victor Nan Fernandez-Ayala, Mart Kartasev, Joris Verhagen, Elias Krantz, Gregorio Marchesini, Carl Ljung, Pedro Roque, Chelsea Sidrane, Linda Van der Spaa, Nicola De Carli, Petter Ogren, Christer Fuglesang, Jana Tumova, Dimos V. Dimarogonas

TL;DR
The Marinarium is a versatile, modular underwater research facility that integrates simulation, real-world testing, and multi-domain robotics to advance maritime and space robotics research.
Contribution
It introduces a novel, integrated testbed combining physical, digital, and multi-domain robotic experimentation for maritime and space robotics.
Findings
Demonstrated learning-based system identification for underwater vehicles
Executed heterogeneous robot rendezvous missions across domains
Utilized digital twin to bridge simulation-reality gap
Abstract
This paper presents the Marinarium, a modular and stand-alone underwater research facility designed to provide a realistic testbed for maritime and space-analog robotic experimentation in a resource-efficient manner. The Marinarium combines a fully instrumented underwater and aerial operational volume, extendable via a retractable roof for real-weather conditions, a digital twin in the SMaRCSim simulator and tight integration with a space robotics laboratory. All of these result from design choices aimed at bridging simulation, laboratory validation, and field conditions. We compare the Marinarium to similar existing infrastructures and illustrate how its design enables a set of experiments in four open research areas within field robotics. First, we exploit high-fidelity dynamics data from the tank to demonstrate the potential of learning-based system identification approaches applied…
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Taxonomy
TopicsUnderwater Vehicles and Communication Systems · Space Satellite Systems and Control · Maritime Navigation and Safety
