Title :
Robust H∞ and l2-l∞ filtering for discrete time-delay systems with nonlinear disturbances
Author :
Gao, Huijun ; Wang, Changhong
Author_Institution :
Inertial Navigation Center, Harbin Inst. of Technol., China
Abstract :
This paper investigates the problem of robust H∞, and l2-l∞ filtering for a class of uncertain nonlinear discrete-time systems with multiple state delays. It is assumed that the parameter uncertainties appearing in all the system matrices reside in a polytope and the nonlinearities entering into both the state and measurement equations satisfy global Lipschitz conditions. Attention is focused on the design of robust full-order and reduced-order filters guaranteeing a prescribed noise attenuation level in an H∞ or l2-l∞ sense with respect to all energy-bounded noise disturbances for all admissible uncertainties and time delays. Sufficient conditions for the existence of such filters are formulated in terms of a couple of linear matrix inequalities (LMIs), upon which admissible filters can be obtained from the solution of convex optimization problems. A numerical example is presented to illustrate the feasibility of the developed filter design methods.
Keywords :
H∞ optimisation; delay systems; discrete time systems; filtering theory; linear matrix inequalities; nonlinear control systems; reduced order systems; uncertain systems; convex optimization problems; discrete time-delay systems; global Lipschitz conditions; l2-l∞ filtering; linear matrix inequalities; multiple state delays; noise attenuation; nonlinear disturbances; parameter uncertainties; reduced-order filters; system matrices; uncertain system; Attenuation; Delay; Filtering; Noise level; Noise reduction; Noise robustness; Nonlinear equations; Nonlinear filters; Uncertain systems; Uncertainty;
Conference_Titel :
Control, Automation, Robotics and Vision Conference, 2004. ICARCV 2004 8th
Print_ISBN :
0-7803-8653-1
DOI :
10.1109/ICARCV.2004.1468798