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FILOSE for Svenning: A Flow Sensing Bioinspired Robot

Maarja Kruusmaa, Paolo Fiorini, William Megill, Massimo De Vittorio, Otar Akanyeti, Francesco Visentin, Lily D. Chambers, Hadi El Daou, Maria-Camilla Fiazza, Jaas Ježov, Madis Listak, Lorenzo Rossi, Taavi Salumäe, Gert Toming, R. Venturelli, David Samuel Jung, Jennifer Brown, Francesco Rizzi, Antonio Qualtieri, J L Maud

Year
2014
Citations
74
Access
Open access

Abstract

The trend of biomimetic underwater robots has emerged as a search for an alternative to traditional propeller-driven underwater vehicles. The drive of this trend, as in any other areas of bioinspired and biomimetic robotics, is the belief that exploiting solutions that evolution has already optimized leads to more advanced technologies and devices. In underwater robotics, bioinspired design is expected to offer more energy-efficient, highly maneuverable, agile, robust, and stable underwater robots. The 30,000 fish species have inspired roboticists to mimic tuna [1], rays [2], boxfish [3], eels [4], and others. The development of the first commercialized fish robot Ghostswimmer by Boston Engineering and the development of fish robots for field trials with specific applications in mind (http://www.roboshoal. com) mark a new degree of maturity of this engineering discipline after decades of laboratory trials.

Keywords

RobotRoboticsUnderwaterArtificial intelligenceAgile software developmentBiomimeticsComputer scienceEngineeringMarine engineeringSystems engineering

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