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An Adaptive High-Precision Tracking Controller for the Coupled Switched Reluctance Two-Finger Gripper
Journal article

An Adaptive High-Precision Tracking Controller for the Coupled Switched Reluctance Two-Finger Gripper

Y. Zou, Norbert C. Cheung, J. F. Pan and Ngai Man Cheung
IEEE transactions on magnetics, Vol.51(11), pp.1-4
11/2015

Abstract

adaptive control gripper Grippers Piezoelectric transducers Position control system identification Thumb Torque
An adaptive high-precision position control algorithm with online system identification is implemented onto the switched reluctance, two-finger gripper with coupled magnetic paths. Theoretical investigation proves that the magnetic paths from the two fingers are highly coupled. Without the introduction of any decoupling scheme, the position control performance under the proportional integral differential controller and the adaptive controller is inspected and the control results are compared. Experimental results verify that, without introducing any decoupling mechanism, the adaptive controller is capable of independent control of each finger with a high-precision and uniform position control performance.

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