The International Journal of Robotics Research · 2007 · 449 citations · 28 references
Multi-robot TeamRobotic SystemsEngineeringCollision AvoidanceAerospace EngineeringField RoboticsMechanical SystemsFeedback LawDistributed RoboticsSystems EngineeringAutonomous SystemsFormation ControlMulti-agent Non-holonomic SystemsRoboticsFormation FlyingSwarm RoboticsMultirobot System
The paper presents theoretical and experimental results on controlling multi‑agent non‑holonomic systems. The authors design a decentralized control scheme based on a Lyapunov‑type feedback law that guarantees collision avoidance and trajectory tracking for single and multiple non‑holonomic robots, enabling formation, leader‑follower, and coordinated tracking. Experimental results confirm the effectiveness of the proposed scheme in formation control, leader‑follower control, and coordinated tracking.
In this paper we present a theoretical and experimental result on the control of multi-agent non-holonomic systems. We design and implement a novel decentralized control scheme that achieves dynamic formation control and collision avoidance for a group of non-holonomic robots. First, we derive a feedback law using Lyapunov-type analysis that guarantees collision avoidance and tracking of a reference trajectory for a single robot. Then we extend this result to the case of multiple non-holonomic robots, and show how different multi-agent problems, such as formation control and leader—follower control, can be addressed in this framework. Finally, we combine the above results to address the problem of coordinated tracking for a group of agents. We give extensive experimental results that validate the effectiveness of our results in all three cases.
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