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Front-unit-following control of a snake-like robot using screw drive mechanism based on past velocity commands

Ryo Ariizumi, Hiroaki Fukushima, Fumitoshi Matsuno

Year
2011
Citations
5

Abstract

To achieve a balanced walking for a humanoid, it is necessary to estimate the dynamic stability of the system. However, in a small size humanoid with restricted system resource, it is hard to satisfy the performance level desired by dynamics analysis. Therefore, in this paper, we propose the feasible methods to generate gait pattern and stabilize walking based on coupled oscillators which have a clear correlation between oscillator parameters and system dynamics without a real time ZMP calculation. The proposed method was tested on the open humanoid platform DARwIn-OP for the evaluation, and the result showed that a real time gait pattern generation and stabilization were realized.

Keywords

Mechanism (biology)Front (military)RobotComputer scienceControl theory (sociology)Control unitPhysicsControl (management)EngineeringMechanical engineering

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