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首页> 外文期刊>International Journal of Robust and Nonlinear Control >H-infinity fault estimation with randomly occurring uncertainties, quantization effects and successive packet dropouts: The finite-horizon case
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H-infinity fault estimation with randomly occurring uncertainties, quantization effects and successive packet dropouts: The finite-horizon case

机译:具有无限不确定性,量化效应和连续丢包的H无限故障估计:有限水平情况

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摘要

In this paper, the finite-horizon H fault estimation problem is investigated for a class of uncertain nonlinear time-varying systems subject to multiple stochastic delays. The randomly occurring uncertainties (ROUs) enter into the system due to the random fluctuations of network conditions. The measured output is quantized by a logarithmic quantizer before being transmitted to the fault estimator. Also, successive packet dropouts (SPDs) happen when the quantized signals are transmitted through an unreliable network medium. Three mutually independent sets of Bernoulli-distributed white sequences are introduced to govern the multiple stochastic delays, ROUs and SPDs. By employing the stochastic analysis approach, some sufficient conditions are established for the desired finite-horizon fault estimator to achieve the specified H performance. The time-varying parameters of the fault estimator are obtained by solving a set of recursive linear matrix inequalities. Finally, an illustrative numerical example is provided to show the effectiveness of the proposed fault estimation approach. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:本文针对一类具有多个随机时滞的不确定非线性时变系统,研究了有限水平H故障估计问题。由于网络状况的随机波动,随机出现的不确定性(ROU)进入系统。测得的输出在传输给故障估计器之前由对数量化器进行量化。同样,当量化信号通过不可靠的网络介质传输时,会发生连续的数据包丢失(SPD)。引入三个相互独立的伯努利分布的白色序列集来控制多个随机延迟,ROU和SPD。通过采用随机分析方法,为所需的有限水平故障估计器建立了一些充分的条件,以实现指定的H性能。通过估计一组递归线性矩阵不等式来获得故障估计器的时变参数。最后,提供了一个示例性的数值示例来说明所提出的故障估计方法的有效性。版权所有(c)2014 John Wiley&Sons,Ltd.

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