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Observer-based trajectory tracking control for a wheeled mobile robot

J. H. Koo, Seungjoon Choi, Sangchul Won

Year
2009
Citations
5

Abstract

In this paper, nonlinear observer based trajectory tracking control for a wheeled mobile robot is proposed. The nonlinear observer is designed for not only an unmeasurable orientation error but current position error. This full-order observer shows robustness to measurement noise. Besides, a controller which exponentially stabilize the tracking error is considered. The controller-observer combination scheme globally asymptotically stabilize the system without PE condition of angular velocity, ω r . The proof of stability is shown by means of cascaded system theory. The simulation results are given.

Keywords

Control theory (sociology)Robustness (evolution)Mobile robotObserver (physics)TrajectoryNonlinear systemComputer scienceAngular velocityExponential stabilityTracking error

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