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Distributed Consensus‐Based Robust Adaptive Formation Control for Nonholonomic Mobile Robots with Partial Known Dynamics

Zhaoxia Peng, Shichun Yang, Guoguang Wen, Ahmed Rahmani

Year
2014
Citations
13
Access
Open access

Abstract

This paper investigates the distributed consensus‐based robust adaptive formation control for nonholonomic mobile robots with partially known dynamics. Firstly, multirobot formation control problem has been converted into a state consensus problem. Secondly, the practical control strategies, which incorporate the distributed kinematic controllers and the robust adaptive torque controllers, are designed for solving the formation control problem. Thirdly, the specified reference trajectory for the geometric centroid of the formation is assumed as the trajectory of a virtual leader, whose information is available to only a subset of the followers. Finally, numerical results are provided to illustrate the effectiveness of the proposed control approaches.

Keywords

TrajectoryMobile robotControl theory (sociology)Nonholonomic systemComputer scienceKinematicsAdaptive controlConsensusRobust controlRobustness (evolution)

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