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Output feedback controlled synchronization problems for a class of nonlinear unstable systems under information constraints imposed by limited capacity of the communication channel are analyzed. A binary time-varying coder-decoder scheme is described and a theoretical analysis for multidimensional master-slave systems represented in Lurie form (linear part plus nonlinearity depending only on measurable outputs) is provided. An output feedback control law is proposed based on the Passification Theorem. It is shown that the synchronization error exponentially tends to zero for sufficiantly high transmission rate (channel capacity). The results obtained for synchronization problem can be extended to tracking problems in a straightforward manner, if the reference signal is described by an external (exogenous) state space model. The results are illustrated by controlled synchronization of two chaotic Chua systems via a communication channel with limited capacity. © 2008 IEEE.

Original publication

DOI

10.1109/CDC.2008.4738588

Type

Conference paper

Publication Date

01/01/2008

Pages

441 - 446