2002 · 82 citations · 10 references
Robot KinematicsEngineeringTeleoperationField RoboticsRestricted SubspaceAdvanced Motion ControlSoft RoboticsTeleoperation SystemVirtual RealityIndustrial RoboticsMotion ConstraintsSystems EngineeringKinematicsRobot LearningVirtual Ideal MechanismMechatronicsReal-time SimulationMotion ControlRobot ControlAerospace EngineeringAutomationMechanical SystemsRoboticsVirtual MechanismRobotics Simulator
In a teleoperation system, assistance can be given to the operator by constraining the telerobot position to remain within a restricted subspace of its workspace. A new approach to motion constraint is presented in this paper. The control law is established simulating a virtual ideal mechanism acting as a jig, and connected to the master and slave arms via springs and dampers. Using this approach, it is possible to impose any (sufficiently smooth) motion constraint to the system, including non-linear constraints (complex surfaces) involving coupling between translations and rotations. Physical equivalence ensures that the controller is passive. Experimental results obtained with a 6-DOF teleoperation system are given. Other applications of the virtual mechanism concept include hybrid position-force control and haptic interfaces.
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Impedance Control: An Approach to Manipulation
Neville Hogan · 1984 · 2.9K citations
Robot control: the task function approach
Choice Reviews Online · 1991 · 446 citations