2004World Automation CongressRequires access

Application of passivity based and integrator backstepping control methods on a 5 DOF robot manipulator incorporating actuator dynamics

Amir Lotfazar, Mohammad Eghtesad

Open publisher page 1 citations

Abstract

In this paper, the application of passivity based and integrator backstepping techniques for trajectory tracking of a 5 DOF robot manipulator, with revolute joints and DC motors, in the presence of parameters uncertainty, friction and disturbance, is studied. Comparison of simulation results of the two methods shows that passivity based with respect to integrator method has more smooth control commands and better trajectory tracking in presence of disturbance, friction and uncertainty by using passivity properties of the robot

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What this paper is about

In this paper, the application of passivity based and integrator backstepping techniques for trajectory tracking of a 5 DOF robot manipulator, with revolute joints and DC motors, in the presence of parameters uncertainty, friction and disturbance, is studied. Comparison of simulation results of the two methods shows that passivity based with respect to integrator method has more smooth control commands and better trajectory tracking in presence of disturbance, friction and uncertainty by using passivity properties of the robot

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Available abstract

In this paper, the application of passivity based and integrator backstepping techniques for trajectory tracking of a 5 DOF robot manipulator, with revolute joints and DC motors, in the presence of parameters uncertainty, friction and disturbance, is studied. Comparison of simulation results of the two methods shows that passivity based with respect to integrator method has more smooth control commands and better trajectory tracking in presence of disturbance, friction and uncertainty by using passivity properties of the robot

Key concepts: Passivity, Control theory (sociology), Backstepping, Integrator, Actuator, Revolute joint, Trajectory, Control engineering

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