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Dynamic model of a hyper-redundant, octopus-like manipulator for underwater applications

Rongjie Kang, Asimina Kazakidi, E. Guglielmino, David T. Branson, Dimitris P. Tsakiris, John A. Ekaterinaris, Darwin G. Caldwell

Year
2011
Citations
61

Abstract

The octopus arm is a unique tool that combines strength and flexibility. It can shorten, elongate and bend at any point along its length. To model this behavior, a hyper-redundant manipulator composed of multiple segments is proposed. Each segment is a parallel robotic mechanism with redundant actuation. The kinematics and dynamics of this manipulator are analyzed and simulated utilizing a modular computational modeling method. Simulation results for some primitive movements are presented, and the effect of hydrodynamic forces is included.

Keywords

Kinematicsoctopus (software)Modular designFlexibility (engineering)Computer scienceMechanism (biology)Manipulator (device)Point (geometry)Parallel manipulatorUnderwater

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