Publication | Closed Access
Manipulability, force, and compliance analysis for planar continuum manipulators
148
Citations
28
References
2002
Year
Robot KinematicsEngineeringDexterous ManipulationMechanicsBio-inspired DesignMechanical EngineeringBiomechanicsMechanical SystemsField RoboticsCompliance AnalysisContinuum RobotsElephant TrunksBiomimetic ActuatorBio-inspired RoboticsKinematicsContinuum ManipulatorsRobotics
Continuum manipulators, inspired by the natural capabilities of elephant trunks and octopus tentacles, may find niche applications in areas like human-robot interaction, multiarm manipulation, and unknown environment exploration. However, their true capabilities will remain largely inaccessible without proper analytical tools to evaluate their unique properties. Ellipsoids have long served as one of the foremost analytical tools available to the robotics researcher, and the purpose of this paper is to first formulate, and then to examine, three types of ellipsoids for continuum robots: manipulability, force, and compliance.
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