Title :
Modular Adaptive Control of Uncertain Euler–Lagrange Systems With Additive Disturbances
Author :
Patre, Parag M. ; MacKunis, William ; Dupree, Keith ; Dixon, Warren E.
Author_Institution :
Dept. of Mech. & Aerosp. Eng., Univ. of Florida, Gainesville, FL, USA
Abstract :
A novel adaptive nonlinear control design is developed which achieves modularity between the controller and the adaptive update law. Modularity between the controller/update law design provides flexibility in the selection of different update laws that could potentially be easier to implement or used to obtain faster parameter convergence and/or better tracking performance. For a general class of linear-in-the-parameters (LP) uncertain Euler-Lagrange systems subject to additive bounded non-LP disturbances, the developed controller uses a model-based feedforward adaptive term in conjunction with the recently developed robust integral of the sign of the error (RISE) feedback term. Modularity in the adaptive feedforward term is made possible by considering a generic form of the adaptive update law and its corresponding parameter estimate. This generic form of the update law is used to develop a new closed-loop error system and stability analysis that does not depend on nonlinear damping to yield the modular adaptive control result.
Keywords :
adaptive control; closed loop systems; control system synthesis; feedforward; nonlinear control systems; stability; uncertain systems; adaptive update law; closed-loop error system; model-based feedforward adaptive term; modular adaptive control; nonlinear control design; sign-of-the-error feedback term; stability analysis; uncertain Euler-Lagrange systems; Adaptive control; Asymptotic stability; Damping; Feedforward neural networks; Robots; Stability analysis; Linear-in-the-parameters (LP); robust integral of the sign of the error (RISE);
Journal_Title :
Automatic Control, IEEE Transactions on
DOI :
10.1109/TAC.2010.2081770