Title :
Simple Robust Control Invariant Tubes for Some Classes of Nonlinear Discrete Time Systems
Author :
S. V. Rakovic;A. R. Teel;D. Q. Mayne;A. Astolfi
Author_Institution :
Imperial College London, London SW7 2BT, United Kingdom. e-mail: sasa.rakovic@imperial.ac.uk
Abstract :
This paper presents an extension of recently developed robust, tube based, model predictive controllers to some classes of nonlinear discrete time systems. The simplicity of the proposed robust controller design methodology is obtained by constructing simple robust control invariant tubes corresponding to the parameterized feedback control policy. The proposed method has reduced on-line computational complexity compared with standard worst case or min-max based design methods. The resultant controller allows for fairly strong robustness properties such as robust exponential convergence to and stability of the potentially minimal robust positively invariant set for the uncertain controlled system. A simple example illustrates the proposed method
Keywords :
"Robust control","Discrete time systems","Robust stability","Design methodology","Control systems","Predictive models","Nonlinear control systems","Feedback control","Computational complexity","Convergence"
Conference_Titel :
Decision and Control, 2006 45th IEEE Conference on
Print_ISBN :
1-4244-0171-2
DOI :
10.1109/CDC.2006.377551