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Trajectory Tracking Control of Robot Manipulators with Revolute Joints using Only Position Measurements

Aleksandr Andreev, Olga Peregudova, Katherine Sutyrkina

Year
2018
Citations
2

Abstract

This paper deals with the problem of output feedback tracking control of revolute joined robot manipulators with unmeasurable velocities. The controller consists of three parts: (1) a feedforward term, (2) a fist-order linear dynamic compensator, and (3) a nonlinear proportionallike term. Due to the presence of angular variables, the closedloop system is shown to have a set of all equilibrium points that corresponds to the zero position in a cylindrical phase space. We provide the result on a semi-global asymptotic stability of a reference trajectory. The usefulness of our controller is demonstrated in a simulation study of a three-link spatial robot manipulator.

Keywords

Control theory (sociology)Revolute jointTrajectoryFeed forwardController (irrigation)Position (finance)RobotNonlinear systemComputer scienceExponential stability

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