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Adaptive Control of Robotic arm with Hysteretic Joint

Somasundar Kannan, Souad Bezzaoucha, Serket Quintanar-Guzmán, Miguel Olivares-Mendez, Holger Voos

Year
2016
Citations
3

Abstract

This article addresses the problem of control of robotic arm with a hysteretic joint behaviour. The mechanical design of the one-degree of freedom robotic arm is presented where the joint is actuated by a Shape Memory Alloy (SMA) wire. The SMA wire based actuation of the joint makes the robotic arm lightweight but at the same time introduces hysteresis type nonlinearities. The nonlinear dynamic model of the robotic arm is introduced and an Adaptive control solution is presented to perform the joint reference tracking in the presence of unknown hysteresis behaviour. The Lyapunov stability analysis of the closed loop system is presented and finally proposed adaptive control solution is validated through simulation study on the proposed nonlinear hysteretic robotic arm.

Keywords

Robotic armSMA*Control theory (sociology)Nonlinear systemJoint (building)Adaptive controlComputer scienceControl engineeringHysteresisRobot

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