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A Markov jump model approach to reliable event-triggered retarded dynamic output feedback H∞ control for networked systems

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TLDR
A Markov jump event-triggered retarded dynamic output feedback H ∞ controller is designed in this paper to guarantee the considered closed-loop system is stochastically stable with a prescribed H∞ performance level.
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This article is published in Nonlinear Analysis: Hybrid Systems.The article was published on 2017-11-01. It has received 109 citations till now. The article focuses on the topics: Control theory & H-infinity methods in control theory.

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Citations
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Journal ArticleDOI

Finite-time synchronization of memristor chaotic systems and its application in image encryption

TL;DR: The statistical performance analysis reflects the effectiveness of the image encryption algorithm and shows its potential applications in secure communication.
Journal ArticleDOI

New reliable nonuniform sampling control for uncertain chaotic neural networks under Markov switching topologies

TL;DR: A new stochastic reliable nonuniform sampling controller with Markov switching topologies is designed for the first time to reflect more realistic control behaviors and to guarantee that UCNNs are synchronous exponentially under probabilistic actuator and sensor faults.
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Stabilization of Networked Control Systems With Hybrid-Driven Mechanism and Probabilistic Cyber Attacks

TL;DR: A stability criterion is obtained for the system stabilization by employing Lyapunov stability theory and stochastic analysis techniques and a numerical example is exploited to demonstrate the usefulness of the proposed scheme.
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Finite-time synchronization for complex dynamic networks with semi-Markov switching topologies: An H∞ event-triggered control scheme

TL;DR: The purpose focuses on designing a controller via the event-triggered scheme, which guarantees that the resulting error networks are finite-time bounded with a prescribed level of the H∞ performance.
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Finite-time stabilization for a class of high-order stochastic nonlinear systems with an output constraint

TL;DR: Rigorous mathematical proof shows that the origin of the system is finite-time stable in probability and the constraint requirement on the output is not violated.
References
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Journal ArticleDOI

A Delay System Method for Designing Event-Triggered Controllers of Networked Control Systems

TL;DR: Simulation results have shown that the proposed event-triggering scheme is superior to some existing event- triggering schemes in the literature.
Journal ArticleDOI

A new delay system approach to network-based control

TL;DR: A sampled-data networked control system with simultaneous consideration of network induced delays, data packet dropouts and measurement quantization is modeled as a nonlinear time-delay system with two successive delay components in the state and the problem of network-based H"~ control is solved accordingly.
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Auxiliary function-based integral inequalities for quadratic functions and their applications to time-delay systems

TL;DR: This paper suggests a new class of integral inequalities for quadratic functions via intermediate terms called auxiliary functions, which produce more tighter bounds than what the Jensen inequality produces.
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Event-triggered communication and H∞ control co-design for networked control systems

TL;DR: This paper studies an event-triggered communication scheme and an H"~ control co-design method for networked control systems (NCSs) with communication delay and packet loss with a novel Lyapunov-Krasovskii functional.
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Asynchronous l 2 - l ∞ filtering for discrete-time stochastic Markov jump systems with randomly occurred sensor nonlinearities

TL;DR: The existence criterion of the desired asynchronous filter with piecewise homogeneous Markov chain is proposed in terms of a set of linear matrix inequalities and a numerical example is given to show the effectiveness and potential of the developed theoretical results.
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