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Velocity Scheduling Controller for a Nonholonomic Mobile Robot

D. Buccieri, Ph. Müllhaupt, Zhong‐Ping Jiang, Dominique Bonvin

发表年份
2006
引用次数
5

摘要

An improvement over classical dynamic feedback linearization for the control of a nonholonomic mobile robot is proposed. The use of a state extension of higher dimension than in the case of dynamic feedback linearization helps reject constant disturbances on the rotational axis of the robot. The proposed dynamic extension acts as a velocity scheduler for the robot. It specifies at each time instant the ideal translational velocity that the robot should have. By having a two-dimensional state extension, both the magnitude and the orientation of the velocity vector can be generated, which accounts for improved robustness.

关键词

Control theory (sociology)Nonholonomic systemMobile robotFeedback linearizationRobustness (evolution)RobotComputer scienceLinearizationRobot controlControl engineering

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