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Continuous second order sliding mode based robust finite time tracking of a fully actuated biped robot

Harshal B. Oza, Yury Orlov, Sarah K. Spurgeon, Yannick Aoustin, Christine Chevallereau

发表年份
2014
引用次数
5

摘要

A second order sliding mode controller is modified to form a continuous homogeneous controller. Uniform finite time stability is proved by extending the homogeneity principle of discontinuous systems to the continuous case with uniformly decaying piece-wise continuous nonhomogeneous disturbances. The modified controller is then utilised to track reference trajectories for all the joints of a fully actuated biped robot where the joint torque is modeled as the control input. The modified controller ensures the attainment of a finite settling time between two successive impacts. The main contribution of the paper is to provide straightforward and realizable engineering guidelines for reference trajectory generation and for tuning a robust finite time controller in order to achieve stable gait of a biped in the presence of an external force disturbance. Such a disturbance has destabilising effects in both continuous and impact phases. Numerical simulations of a biped robot are shown to support the theoretical results.

关键词

Control theory (sociology)Robustness (evolution)Settling timeTrajectoryController (irrigation)RobotRobust controlComputer scienceSliding mode controlIntegral sliding mode

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