A delay-variation-dependent stability criterion for discrete-time systems via a bivariate quadratic function negative-determination lemma
DOI10.1016/j.jfranklin.2022.04.023zbMath1491.93091OpenAlexW4224881263WikidataQ124802978 ScholiaQ124802978MaRDI QIDQ2148511
Kachon Hoi, Xiao Ge, Seak Weng Vong
Publication date: 24 June 2022
Published in: Journal of the Franklin Institute (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.jfranklin.2022.04.023
Discrete-time control/observation systems (93C55) Lyapunov and other classical stabilities (Lagrange, Poisson, (L^p, l^p), etc.) in control theory (93D05) Linear systems in control theory (93C05) Delay control/observation systems (93C43)
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Cites Work
- An improved summation inequality to discrete-time systems with time-varying delay
- Auxiliary function-based summation inequalities and their applications to discrete-time systems
- Note on stability of linear systems with time-varying delay
- Advanced stability criteria for linear systems with time-varying delays
- Abel lemma-based finite-sum inequality and its application to stability analysis for linear discrete time-delay systems
- Further improvement of Jensen inequality and application to stability of time-delayed systems
- Improved delay-range-dependent stability criteria for linear systems with time-varying delays
- New conditions for delay-derivative-dependent stability
- Discrete Wirtinger-based inequality and its application
- Discrete inequalities based on multiple auxiliary functions and their applications to stability analysis of time-delay systems
- Two novel general summation inequalities to discrete-time systems with time-varying delay
- An improved reciprocally convex inequality and an augmented Lyapunov-Krasovskii functional for stability of linear systems with time-varying delay
- Improved exponential stability criteria of time-delay systems via weighted integral inequalities
- Hierarchical stability conditions for time-varying delay systems via an extended reciprocally convex quadratic inequality
- Exponential stability of time delay systems based on intermediate polynomial-based weighted functions
- A novel integral inequality and its application to stability analysis of linear system with multiple time delays
- Event-triggered reliable dissipative filtering for delayed neural networks with quantization
- A relaxed quadratic function negative-determination lemma and its application to time-delay systems
- Finite-interval quadratic polynomial inequalities and their application to time-delay systems
- Stability analysis of neutral systems with mixed interval time-varying delays and nonlinear disturbances
- A new delay-variation-dependent stability criterion for delayed discrete-time systems
- An improved stability criterion of neural networks with time-varying delays in the form of quadratic function using novel geometry-based conditions
- Finite-time stability for discrete-time systems with time-varying delay and nonlinear perturbations by weighted inequalities
- A novel Lyapunov functional for stability of time-varying delay systems via matrix-refined-function
- Novel Lyapunov-Krasovskii functional with delay-dependent matrix for stability of time-varying delay systems
- Delay-Variation-Dependent Stability of Delayed Discrete-Time Systems
- Stability of Discrete-Time Systems With Time-Varying Delays via a Novel Summation Inequality
- Stability of discrete‐time systems with time‐varying delay via a novel Lyapunov‐Krasovskii functional
- Stability analysis of singular time-delay systems using the auxiliary function-based double integral inequalities
- Stability of time-delay systems
- Exponential synchronization of coupled inertial neural networks with mixed delays via weighted integral inequalities
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