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Development of Inverse Dynamic Controller for Industrial robots with HyRoHILS system

Je Sung Yeon, Eui Jin Kim, Sang-Hun Lee, Jong Hyeon Park, Jong-Sung Hur

Year
2005
Citations
11

Abstract

Abstract: In this work, an inverse dynamic control method is developed to enhance tracking performance of industrial robots, which effectively deal with the nonlinear dynamic interferential forces. In general, the DFF (Dynamic Feed-Forward) controller and the CTM (Computed-Torque Method) controller are used for dynamic control for industrial robots. We study on the practical issues for implementing these inverse dynamic controllers via simulations and experiments. We develop the dynamic models in two different ways. One is a model designed through Newton-Euler method for real time computation and the other is a model designed through SimMechanics for evaluating the developed controller via simulations. We evaluate the nominal performance and robustness of the controller via simulations and experiments using serial 4-DOF HyRoHILS (Hyundai Robot Hardware-In-the-Loop Simulation) system. The results show that the inverse dynamic controller is effective and practically useful for a real control structure.

Keywords

Inverse dynamicsControl theory (sociology)Robustness (evolution)Control engineeringRobotComputer scienceController (irrigation)ComputationNonlinear systemInverse

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