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Accurate target tracking control for a mobile robot: A robust adaptive approach for off-road motion

Roland Lenain, Benoit Thuilot, Audrey Guillet, B. Benet

Year
2014
Citations
9

Abstract

In this paper a control strategy for a mobile robot enabling to track a manually driven vehicle or a moving target is proposed in the context of natural environment. In such a context, the motion does not meet classical assumptions usually proposed for mobile robots, since the terrain geometry is not necessarily flat and wheels are subject to sliding. As a result, in order to preserve the accuracy of tracking, it appears necessary to account for such phenomena in the control law. Several observer-based approaches have already been developed in the framework of path following in off-road conditions, but suffer from several limitations. In particular, the velocity should not be null, which appears to be an important drawback in the proposed application: the tracking of a non-autonomous vehicle indeed imposes possible stops. In this paper, a new observation strategy is proposed allowing to avoid non-observable situations (null velocity). This permits to achieve an accurate vehicle tracking whatever its velocity, its trajectory and the grip conditions.

Keywords

Computer scienceMobile robotTrajectoryContext (archaeology)Tracking (education)Control theory (sociology)RobotTerrainComputer visionMotion control

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