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Wheel Slip Avoidance through a Nonlinear Model Predictive Control for Object Pushing with a Mobile Robot

Filippo Bertoncelli, Fabio Ruggiero, Lorenzo Sabattini

Year
2019
Citations
7

Abstract

Wheel slip may cause a significative worsening of control performance during the movement of a mobile robot. A method to avoid wheel slip is proposed in this paper through a nonlinear model predictive control. The constraints included within the optimization problem limit the force exchanged between each wheel and the ground. The approach is validated in a dynamic simulation environment through a Pioneer 3-DX wheeled mobile robot performing a pushing manipulation of a box.

Keywords

Model predictive controlNonlinear modelSlip (aerodynamics)Mobile robotNonlinear systemComputer scienceControl theory (sociology)RobotObject (grammar)Control (management)

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