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Simultaneous Stabilization and Tracking of Nonholonomic WMRs With Input Constraints: Controller Design and Experimental Validation

Zhuping Wang, Gangbin Li, Xiaozhen Chen, Hao Zhang, Qijun Chen

Year
2018
Citations
27

Abstract

Considering input constraints and parameter uncertainty of the nonholonomic wheeled mobile robots, a new control law has been designed in this paper to solve the tracking and stabilization control problems simultaneously. The asymptotic convergence of the stabilization or tracking errors is achieved by a smooth controller with time-varying feedback parameters subject to set conditions. A geometric-based parameter design strategy is employed to overcome the difficulties resulting from input constraints. With the parameter design strategy, the designed parameters satisfy the set conditions and the control inputs stay in the constrained domain. Experimental studies have been conducted to verify the effectiveness of the proposed control law.

Keywords

Control theory (sociology)Nonholonomic systemConvergence (economics)Controller (irrigation)Control engineeringComputer scienceTracking (education)Mobile robotRobotControl (management)

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