Home /Research /Robust adaptive stabilization of flexible joint manipulators
MANIPULATION

Robust adaptive stabilization of flexible joint manipulators

K. Khorasani

Year
2003
Citations
9

Abstract

A robust nonlinear adaptive control strategy is proposed to stabilize a robot manipulator subject to parametric and dynamic uncertainties. This is accomplished by utilizing state feedback and applying a control space transformation to a reduced-order model without parametric uncertainty. Under appropriate assumptions on the nature of the reduced-order uncertainties, an adaptive control strategy that compensates the nonlinear uncertainties is designed for the reduced-order feedback linearized system. An advantage of the proposed technique is that it requires external (feedback) linearization and update laws to be derived only from the reduced-order model, although the control strategy is applied to the full system. Numerical results for a single-link uncertain flexible-joint manipulator are included to illustrate the implementation and testing of the proposed method.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">&gt;</ETX>

Keywords

Control theory (sociology)Parametric statisticsFeedback linearizationNonlinear systemAdaptive controlComputer scienceLinearizationControl engineeringRobust controlRobot manipulator

Related papers

Browse all MANIPULATION papers