Publication | Closed Access
Bilateral Teleoperation of Multiple Mobile Agents: Coordinated Motion and Collision Avoidance
158
Citations
21
References
2009
Year
Robot ControlMulti-robot TeamEngineeringRobot NetworkCollision AvoidanceTeleoperationSingle Master RobotAutomationField RoboticsMultiple Mobile AgentsHumanrobot CollaborationBilateral TeleoperationDistributed RoboticsKinematicsRobot LearningRoboticsMaster RobotMultirobot System
This paper presents theoretical and experimental results on bilateral teleoperation of multiple mobile slave agents coupled to a single master robot. We first design a passifying proportional-derivative (PD) controller to enforce motion tracking and formation control of master and slave vehicles under constant, bounded communication delays. Then, we incorporate avoidance functions to guarantee collision-free transit through obstructed spaces. The unified control framework is validated by experiments with two coaxial helicopters as slave agents and a haptic device as the master robot.
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