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Stability analysis of linear systems with time-varying delays: Delay uncertainty and quenching
49
Citations
22
References
2007
Year
Unknown Venue
Stability AnalysisTime Delay SystemLinear SystemsEngineeringSystem StabilitySystems EngineeringSemidefinite ProgrammingDelay UncertaintyStabilization TechniqueLyapunov AnalysisApproximation TheoryRobust StabilityStability
This paper addresses the problem of stability analysis of a class of linear systems with time-varying delays. We develop conditions for robust stability that can be tested using semidefinite programming using the sum of squares decomposition of multivariate polynomials and the Lyapunov-Krasovskii theorem. We show how appropriate Lyapunov-Krasovskii functionals can be constructed algorithmically to prove stability of linear systems with a variation in delay, by using bounds on the size and rate of change of the delay. We also explore the quenching phenomenon, a term used to describe the difference in behaviour between a system with fixed delay and one whose delay varies with time. Numerical examples illustrate changes in the stability window as a function of the bound on the rate of change of delay.
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