Velocity Scheduling Controller for a Nonholonomic Mobile Robot
D. Buccieri, Ph. Müllhaupt, Zhong‐Ping Jiang, Dominique Bonvin
- Year
- 2006
- Citations
- 5
Abstract
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.
Keywords
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