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Control of Bipedal Walking Exploiting Postural Reflexes and Passive Dynamics

Tobias Luksch, Karsten Berns

Year
2010
Citations
8

Abstract

Abstract — Compared to human locomotion capabilities, today’s bipedal robots are still lacking in efficiency, velocity, and robustness. Thus, a control concept for dynamic walking based on insights into human motion control is suggested. Key features include the exploitation of passive dynamics, no usage of a full dynamic model, and hierarchical, distributed control. Walking robustness in presence of unknown disturbances is increased by the action of local and postural reflexes. The approach is validated on a physically simulated anthropomorphic biped with 21 DoFs and compliant actuation. Results show an efficient, fluent, and fast walking gait that can cope with considerable disturbances.

Keywords

Physical medicine and rehabilitationReflexControl (management)Dynamics (music)PsychologyComputer scienceMedicineArtificial intelligenceNeuroscience

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