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Dynamic Feedforward Based Fractional Order Impedance Control for Robot Manipulator

Yixiao Ding, Ying Luo

Year
2022
Citations
2

Abstract

Impedance control is an important method for robot manipulator to control the contact force. By expanding the traditional integer order impedance model to the fractional order model, a fractional order impedance (FO-impedance) controller is presented first in this paper. A FO-impedance controller parameters tunning strategy based on the frequency-domain is presented. A systematic FO-impedance control simulation system with robot manipulator, servo system, dynamic disturbance and dynamic feedforward is constructed. The influence of time-varying dynamic characteristics for robot FO-impedance system is analyzed. In order to achieve desired dynamic response and high robustness performance, a dynamic feedforward method is proposed and the effectiveness is verified in the simulation.

Keywords

Control theory (sociology)Feed forwardImpedance controlElectrical impedanceController (irrigation)Robustness (evolution)Frequency domainRobotTime domainComputer science

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