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- W1734856981 abstract "Abstract The problem of quantized H ∞ control for networked control systems ( NCSs ) subject to time‐varying delay and multiple packet dropouts is investigated in this paper. Both the control input and the measurement output signals are quantized before being transmitted and the quantized errors are described as sector bound uncertainties. The measurement channel and the control channel packet dropouts are considered simultaneously, and the stochastic variables satisfying Bernoulli random binary distribution are utilized to model the random multiple packet dropouts. Sufficient conditions for the existence of an observer‐based controller are established to ensure the exponential mean‐square stablility of the closed‐loop system and achieve the optimal H ∞ disturbance attenuation level. By using a globally convergent algorithm involving convex optimization, the nonconvex feasibility can be solved successfully. Finally, a numerical example is given to illustrate the effectiveness and applicability of the proposed method." @default.
- W1734856981 created "2016-06-24" @default.
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- W1734856981 date "2013-07-11" @default.
- W1734856981 modified "2023-10-18" @default.
- W1734856981 title "Quantized<i>H</i><sub>∞</sub>Control for Networked Systems with Communication Constraints" @default.
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- W1734856981 doi "https://doi.org/10.1002/asjc.762" @default.
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