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A lattice-type reconfigurable robotic system for achieving gaits of chain-type robots

Bo Yin, Zhenning Liang, Wen Hu, Wei Xu, Shigang Wang

Year
2014
Citations
4

Abstract

Traditional lattice-type reconfigurable robots can only achieve the flow-style locomotion with low efficiency. Since gaits of chain-type robots are proved to be efficient and practical, this paper presents a novel lattice distortion approach for lattice-type reconfigurable robots to achieve locomotion gaits of chain-type robots. Using this approach, the robotic system can be actuated by local lattice distortion to move as an ensemble. In this paper, a rule that makes the lattice distortion equivalent to joint rotation is presented firstly. Then, a kind of module structure is designed according to requirements of the lattice distortion. Finally, a motion planning for achieving locomotion is developed, which works well in physics-based simulations of completing a serpentine locomotion gait of a snake-like robot and a tripod gait of a hexapod robot.

Keywords

HexapodRobotLattice (music)Control theory (sociology)Computer scienceTripod (photography)SimulationControl engineeringEngineeringArtificial intelligence

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