2013 · 68 citations · 26 references
Robot KinematicsEngineeringField RoboticsIntelligent RoboticsMotor ControlRobust TerrainKinesiologySoft RoboticsTensegrity RobotBiomechanicsBio-inspired RoboticsLegged RobotNew ModeCentral Pattern GeneratorsKinematicsRobot LearningHumanoid RobotHealth SciencesMechatronicsMotion SynthesisModular Tensegrity RobotBipedal LocomotionRobot ControlMechanical SystemsCompliant SpineRoboticsVibration Control
In order to produce a new mode of robust robotic locomotion and better understand how vertebrates coordinate motion with a compliant spine, we are developing a modular tensegrity robot inspired by the spine. The robot, called Tetraspine, is composed of rigid tetrahedron-shaped segments connected by six strings. Distributed impedance controllers coupled with central pattern generators (CPGs) generate tunable motion in the structure, making this the first mobile terrestrial tensegrity robot controlled by CPGs to the authors' knowledge. By eliminating rigid joints between segments and increasing compliance in the structure, Tetraspine is robust to perturbations; it traverses several types of irregular terrain successfully in simulation. Experiments in prototype hardware have proven the viability of the impedance controller and overall structure for locomotion.
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From Swimming to Walking with a Salamander Robot Driven by a Spinal Cord Model
Auke Jan Ijspeert, Alessandro Crespi, Dimitri Ryczko et al. · Science · 2007 · 1.2K citations · Full text
Donald E. Ingber · Scientific American · 1998 · 542 citations
Architectural Design, Existentialism, Architecture Evolution +2