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Stability of two-dimensional Roesser systems with time-varying delays via novel 2D finitesum inequalities
Version 2 2024-05-30, 09:38Version 2 2024-05-30, 09:38
Version 1 2016-08-03, 10:23Version 1 2016-08-03, 10:23
journal contribution
posted on 2024-05-30, 09:38 authored by LV Hien, Hieu TrinhHieu TrinhThis study considers the problem of stability analysis of discrete-time two-dimensional (2D) Roesser systems with interval time-varying delays. New 2D finite-sum inequalities, which provide a tighter lower bound than the existing ones based on 2D Jensen-type inequalities, are first developed. Based on an improved Lyapunov-Krasovskii functional, the newly derived inequalities are then utilised to establish delay-range-dependent linear matrix inequality-based stability conditions for a class of discrete time-delay 2D systems. The effectiveness of the obtained results is demonstrated by numerical examples.
History
Journal
IET Control Theory and ApplicationsVolume
10Pagination
1665-1674Location
Hertfordshire, Eng.Publisher DOI
ISSN
1751-8644eISSN
1751-8652Language
EnglishPublication classification
C Journal article, C1 Refereed article in a scholarly journalCopyright notice
2016, Institution of Engineering and TechnologyIssue
14Publisher
INST ENGINEERING TECHNOLOGY-IETUsage metrics
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Keywords
Science & TechnologyTechnologyAutomation & Control SystemsEngineering, Electrical & ElectronicInstruments & InstrumentationEngineeringstabilitymultidimensional systemstime-varying systemsdelaysdiscrete time systemsLyapunov methodsfunctional equationslinear matrix inequalities2D finite-sum inequalitiesstability analysisdiscrete-time two-dimensional Roesser systemsdiscrete-time 2D Roesser systemsinterval time-varying delaystight-lower boundimproved Lyapunov-Krasovskii functionaldelay-range-dependent linear matrix inequality-based stability conditionsdiscrete time-delay 2D systemsDEPENDENT ROBUST STABILITYITERATIVE LEARNING CONTROL2-D DISCRETE-SYSTEMSLMI-BASED CRITERIONFM LSS MODELEXPONENTIAL STABILITYPERFORMANCE ANALYSISNONLINEAR-SYSTEMSSTABILIZATIONSATURATION010203 Calculus of Variations, Systems Theory and Control Theory010204 Dynamical Systems in Applications090602 Control Systems, Robotics and Automation970109 Expanding Knowledge in EngineeringDP130101532School of Engineering4901 Applied mathematics
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