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Leader-following distributed control of multiple nonholonomic wheeled mobile robots

Lee Zhi Xian, Muhammad Nasiruddin Mahyuddin, Guido Herrmann

Year
2015
Citations
2

Abstract

This paper considers leader-following distributed control for nonholonomic mobile agents. The mobile agents consist of a group of wheeled mobile robots with differential drive configurations. With the aid of graph theory, various inter-agent communication scenarios are studied ranging from weakly connected to strongly connected graph. The distributed control scheme defined per agent consists of two levels; one level defines the joint-level velocity control which uses a gradient-based adaptive law to compensate for mobile robot agent dynamics and a sliding-mode control; another level defines the upper level which is responsible for Cartesian control. The consensus algorithm which executes the leader-following protocol resides within the Cartesian control. Several network topologies have been studied by applying the proposed Cooperative Control scheme.

Keywords

Mobile robotCartesian coordinate systemNonholonomic systemComputer scienceControl theory (sociology)Network topologyGraphRobotGraph theoryController (irrigation)

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