Stable bilateral teleoperation under a time delay using a robust impedance control

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Abstract

This paper presents a new impedance controller for a bilateral teleoperation under a time delay. In the proposed controller, a dynamic characteristic at the operator-master (slave-environment) interface is designed by a desired master (slave) impedance model. To cope with the uncertainty in the slave, an impedance model is put into a sliding surface of a sliding-mode-controller. A stability condition is derived from absolute stability concept, and a parameter tuning algorithm is proposed using this. The validity of the proposed control scheme is demonstrated by experiments with a 1-DOF master/slave system. Experimental results show that the proposed control method works well with robustness. © 2005 Elsevier Ltd. All rights reserved.

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Cho, H. C., & Park, J. H. (2005). Stable bilateral teleoperation under a time delay using a robust impedance control. Mechatronics, 15(5), 611–625. https://doi.org/10.1016/j.mechatronics.2004.05.006

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