Home /Research /A PRACTICAL TRAJECTORY TRACKING APPROACH FOR AUTONOMOUS MOBILE ROBOTS: NONLINEAR ADAPTIVE <i>H</i><sub>2</sub> DESIGN
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A PRACTICAL TRAJECTORY TRACKING APPROACH FOR AUTONOMOUS MOBILE ROBOTS: NONLINEAR ADAPTIVE <i>H</i><sub>2</sub> DESIGN

Yung‐Hsiang Chen, Tzuu‐Hseng S. Li, Yung Yue Chen

Year
2013
Citations
4

Abstract

A nonlinear adaptive trajectory tracking design for autonomous mobile robot and its practical implementation are presented in this paper. This approach can be applied to generate trajectory tracking control commands for autonomous mobile robot tracking predefined trajectories. The design objective is to specify one nonlinear controller with a parameter adaptive law that satisfies the adaptive H 2 optimal performance. In general, it is hard to obtain the closed-form solution from this nonlinear trajectory tracking problem. Fortunately, based on the property of the trajectory tracking error dynamic system of the autonomous mobile robot, one closed-form solution to this problem can be obtained with a very simple form for the preceding control design.

Keywords

TrajectoryControl theory (sociology)Mobile robotNonlinear systemTracking (education)Computer scienceController (irrigation)RobotControl engineeringTracking error

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