2011 · 17 citations · 15 references
EngineeringBioroboticsMotor ControlLocomotion (Cellular Biology)KinesiologySoft RoboticsBiomechanicsBio-inspired RoboticsLegged RobotHalf WaveKinematicsBiophysicsAsymmetric OscillationHealth SciencesMechatronicsMotion SynthesisLocomotion (Animal Biomechanics)Body WaveBipedal LocomotionPattern FormationMechanical SystemsHuman MovementVibration ControlNonlinear Oscillation
This paper presents a novel mechanism to implement caterpillar-like locomotion. First, the caterpillar-like locomotive pattern in nature is investigated and analyzed systematically. From a biological point of view, caterpillar locomotion can be abstracted as a body wave, called half wave. It is simple, but efficient. In this paper, a novel control mechanism, maintaining the half wave property, is integrated into an improved central pattern generator (CPG) model. For the first time, an asymmetric oscillation is employed on the model for gait generation. The movement is proved stable according to a kinematic analysis. Modulation is able to use to change the shape of the half wave during locomotion. A series of simulation shows the feasibility of using asymmetric oscillators for locomotion. Furthermore, the latest results obtained demonstrate that the proposed asymmetric locomotion mechanism is easy to implement while offering a satisfactory motion performance in on-site experiments.
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Biologically inspired robots: snake-like locomotors and manipulators
Choice Reviews Online · 1994 · 824 citations
Locomotion With A Unit-Modular Reconfigurable Robot
Mark Yim · 1995 · 177 citations
Fast locomotion in caterpillars
J. H. Brackenbury · Journal of Insect Physiology · 1999 · 97 citations