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Passive/active unified dynamic walking for biped locomotion

Qingjiu Huang, Takamasa Hase, Kyosuke Ono

Year
2007
Citations
4

Abstract

In order to implement walking efficiency and environmental adapting ability to a biped locomotion, it is required to combine passive dynamic walking and active one. In this paper, a passive/active unified dynamic walking for biped locomotion was proposed. Firstly, a passive/active unified actuator that has a torque detector and is actively controlled by zero torque feedback control was proposed and developed. Next, a free moving joint used in passive motion was implemented analytically and experimentally to a one-joint one-link and a two-joint two-link mechanism with a reduction gear using this developed actuator. Furthermore, in order to apply it to a biped walking robot, a passive/active unified dynamic walking control algorithm was proposed. Moreover, 2-D passive/active unified dynamic walking of a three-joint four-link biped robot was implemented experimentally by applying self-excited control to the passive walking phase of the swing leg. Finally, we showed the energy-efficient walking using the proposed method by comparing Specific Cost of other types of dynamic walking, and mentioned its adaptability to disturbances and unknown environment.

Keywords

Control theory (sociology)ActuatorTorqueRobotComputer scienceSwingJoint (building)AdaptabilitySimulationEngineering

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