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
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