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Neural Networks Enhanced Adaptive Admittance Control of Optimized Robot–Environment Interaction

Chenguang Yang, Guangzhu Peng, Yanan Li, Rongxin Cui, Long Cheng, Zhijun Li

Year
2018
Citations
194

Abstract

In this paper, an admittance adaptation method has been developed for robots to interact with unknown environments. The environment to be interacted with is modeled as a linear system. In the presence of the unknown dynamics of environments, an observer in robot joint space is employed to estimate the interaction torque, and admittance control is adopted to regulate the robot behavior at interaction points. An adaptive neural controller using the radial basis function is employed to guarantee trajectory tracking. A cost function that defines the interaction performance of torque regulation and trajectory tracking is minimized by admittance adaptation. To verify the proposed method, simulation studies on a robot manipulator are conducted.

Keywords

AdmittanceControl theory (sociology)RobotTrajectoryTorqueController (irrigation)Adaptation (eye)Radial basis functionComputer scienceControl engineering

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