Journal Article10.1016/J.INS.2008.01.019
Quantized output feedback control for networked control systems
Engang Tian,Dong Yue,Chen Peng +2 more
198
TL;DR: Based on a new model and an improved separation lemma, the observer-based controller is developed for the asymptotical stabilization of the NCSs, which are shown in terms of nonlinear matrices inequalities.
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About: This article is published in Information Sciences. The article was published on 20 Jun 2008. The article focuses on the topics: Nonlinear control & Networked control system.
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Citations
Network-Induced Constraints in Networked Control Systems—A Survey
TL;DR: The main methodologies suggested in the literature to cope with typical network-induced constraints, namely time delays, packet losses and disorder, time-varying transmission intervals, competition of multiple nodes accessing networks, and data quantization are surveyed.
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Extended Dissipative State Estimation for Markov Jump Neural Networks With Unreliable Links
TL;DR: The aim of this paper is to contribute with a Markov switching estimator design method, which ensures that the resulting error system is extended stochastically dissipative, in the simultaneous presences of packet dropouts and signal quantization stemmed from unreliable communication links.
488
Analysis and synthesis of networked control systems: A survey of recent advances and challenges.
TL;DR: This paper attempts to present an overview of recent advances and unify them in a framework of network-induced issues such as signal sampling, data quantization, communication delay, packet dropouts, medium access constraints, channel fading and power constraint, and present respective solution approaches to each of these issues.
416
Quantized $H_{\infty }$ Control for Nonlinear Stochastic Time-Delay Systems With Missing Measurements
TL;DR: In this paper, the quantized H∞ control problem for a class of nonlinear stochastic time-delay network-based systems with probabilistic data missing is investigated, where the measured output and the input signals are quantized by two logarithmic quantizers, respectively.
Event-Triggered State Estimation for Discrete-Time Multidelayed Neural Networks With Stochastic Parameters and Incomplete Measurements
Bo Shen,Zidong Wang,Hong Qiao +2 more
TL;DR: An event-triggered state estimator is constructed and a sufficient condition is given under which the estimation error dynamics is exponentially ultimately bounded in the mean square, and the characterization of the desired estimator gain is designed in terms of the solution to a certain matrix inequality.
References
Stability of networked control systems
TL;DR: This work model NCSs with packet dropout and multiple-packet transmission as asynchronous dynamical systems and analyze their stability using stability regions and a hybrid systems technique, and discusses methods to compensate network-induced delay.
3.6K
A cone complementarity linearization algorithm for static output-feedback and related problems
TL;DR: This paper describes a linear matrix inequality (LMI)-based algorithm for the static and reduced-order output-feedback synthesis problems of nth-order linear time-invariant (LTI) systems with n/sub u/ and n/ sub y/) independent inputs (respectively, outputs).
2K
Stability analysis of networked control systems
TL;DR: A novel control network protocol, try-once-discard (TOD), is introduced for multiple-input-multiple-output (MIMO) networked control systems (NCSs), and an analytic proof of global exponential stability is provided for both the new protocol and the more commonly used (statically scheduled) access methods.
1.8K
Quantized feedback stabilization of linear systems
TL;DR: A new control design methodology is proposed, which relies on the possibility of changing the sensitivity of the quantizer while the system evolves, which yields global asymptotic stability.
The sector bound approach to quantized feedback control
Minyue Fu,Lihua Xie +1 more
TL;DR: The coarsest quantization densities for stabilization for multiple-input-multiple-output systems in both state feedback and output feedback cases are derived and conditions for quantized feedback control for quadratic cost and H/sub /spl infin// performances are derived.
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