Journal Article

·2014

Receding horizon H ∞ control of time-delay systems

Fatma Yıldız Taşçıkaraoğlu YTU , Levent Ucun YTU , İbrahim Beklan Küçükdemiral YTU

Transactions of the Institute of Measurement and Control

Abstract

This paper deals with the disturbance rejection problem for discrete-time linear systems having time-varying state delays and control constraints. The study proposes a novel receding horizon H ∞ control method utilizing a linear matrix inequality based optimization algorithm which is solved in each step of run-time. The proposed controller attenuates disturbances having bounded energies on controlled output and ensures the closed-loop stability and dissipation while meeting the physical control input constraints. The originality of the work lies on the extension of the idea of the well-known H ∞ receding horizon control technique developed for linear discrete-time systems to interval time-delay systems having time-varying delays. The efficiency of the proposed method is illustrated through simulation studies that are carried out on a couple of benchmark problems.

Keywords

Control theory (sociology) Benchmark (surveying) Discrete time and continuous time Controller (irrigation) Interval (graph theory) Stability (learning theory) Linear matrix inequality Bounded function Horizon Model predictive control Linear system Control (management) Matrix (chemical analysis) Computer science Mathematics Mathematical optimization

Subject Areas

Stability and Control of Uncertain Systems ·Control and Systems Engineering ·Physical Sciences
Advanced Control Systems Optimization ·Control and Systems Engineering ·Physical Sciences
Control Systems and Identification ·Control and Systems Engineering ·Physical Sciences

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