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A control scheme for trajectory tracking of robot manipulators

Mahmoud Tarokh, H. Seraji

Year
2003
Citations
9

Abstract

The authors put forward a simple scheme for multivariable control of robot manipulators. The scheme is composed of an inner-loop stabilizing controller and an outerloop tracking controller. The inner loop utilizes a multivariable PD (proportional differential) controller to stabilize the robot by placing the poles at some desired location. The outer loop uses a multivariable PID (proportional integral differential) controller to achieve input-output decoupling and trajectory tracking. The gains of the PD and PID controllers are related directly to the linearized robot model by simple closed-form expressions. The controller gains are updated online to cope with variations in the robot model for gross motions and payload change. Alternatively, the use of high-gain controllers for gross motion and payload change are discussed.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">&gt;</ETX>

Keywords

PID controllerControl theory (sociology)Multivariable calculusTrajectoryPayload (computing)RobotController (irrigation)Decoupling (probability)Computer scienceControl engineering

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