Title :
Disturbance rejection for nonlinear systems
Author :
Sun, Zongxuan ; Tsao, Tsu-Chin
Author_Institution :
Res. & Dev. Center, Gen. Motors Corp., Warren, MI, USA
Abstract :
Tracking or rejection of unknown exogenous signals with known generating dynamics is of major concern in feedback control design. Linear feedback control based on the internal model principle achieves asymptotic performance for linear systems with linear exogenous signal dynamics. This paper presents a control design based on the internal model principle to track or reject nonlinear exogenous signal dynamics for nonlinear systems. Necessary condition to achieve asymptotic disturbance rejection based on the proposed control structure is first derived. It is shown that the necessary condition becomes sufficient for linear systems with linear disturbance dynamics. Inspired by the unique structure of the necessary condition, sufficient conditions are then proposed. Simulations of a nonlinear plant with chaotic disturbance show the effectiveness of the proposed scheme.
Keywords :
control system synthesis; feedback; model reference adaptive control systems; nonlinear control systems; stability; asymptotic performance; chaotic disturbance; disturbance rejection; feedback control design; generating dynamics; internal model principle; linear disturbance dynamics; linear exogenous signal dynamics; nonlinear systems; unknown exogenous signal rejection; unknown exogenous signal tracking; Aerodynamics; Control design; Feedback control; Linear systems; Nonlinear equations; Nonlinear systems; Partial differential equations; Regulators; Servomechanisms; Sufficient conditions;
Conference_Titel :
American Control Conference, 2002. Proceedings of the 2002
Print_ISBN :
0-7803-7298-0
DOI :
10.1109/ACC.2002.1024466