2009 · 27 citations · 19 references
New DesignEngineeringUnderwater VehicleAerospace EngineeringUnderwater RoboticsSurf Zone EnvironmentsBioroboticsField RoboticsAutomationExtreme ChallengesBio-inspired RoboticsSurface RoboticsBioinspired RoboticsKinematicsUnderwater TechnologyDifferential Wheeled RobotRoboticsUnderwater Robot
Surf zone environments pose extreme challenges to robot operation. A robot that could autonomously navigate through the rocky terrain, constantly changing underwater currents, hard-packed moist sand, and loose dry sand characterizing this environment, would have very significant utility for a range of defence and civilian missions. The study of animal locomotion mechanisms can elucidate specific movement principles that can be applied to address these demands. In this work, we report on the design and optimization of a biologically inspired autonomous robot for deployment and operation in an ocean beach environment. Based on recent success with beach environment autonomy and a new rugged waterproof robotic platform, we propose a new design that will fuse a range of insect-inspired passive mechanisms with active autonomous control architectures to seamlessly adapt to and traverse through a range of challenging substrates both in and out of the water.
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Series elastic actuator development for a biomimetic walking robot
David Robinson, Jerry Pratt, Daniel Paluska et al. · 1999 · 413 citations
Engineering, Mechanical Engineering, Computational Mechanics +23
AmphiBot I: an amphibious snake-like robot
Alessandro Crespi, André Badertscher, André Guignard et al. · Robotics and Autonomous Systems · 2004 · 329 citations · Full text
Highly mobile and robust small quadruped robots
Jeremy Morrey, B. Larribrecht, Andrew D. Horchler et al. · 2004 · 194 citations