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H∞ state estimation for time-varying networks with probabilistic delay in measurements

机译:H∞调节概率延迟时断网络的状态估计

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This paper is concerned with the H∞ state estimation problem for the time-varying networks with probabilistic delay over a finite horizon. The measurements for the proposed network experience randomly occurring delays (RODs) with changeable probabilities, which could be described by a time-varying Bernoulli distribution stochastic sequence. Stochastic analysis and probability-dependent method are utilized to develop sufficient criteria under which the prescribed H∞ performance can be achieved. It is worth mentioning that, based on the available lower and upper bounds of the varying probabilities, the target estimator gains are transformed into a convex optimization problem subjecting to a set of recursive matrix inequalities which can be applied in a more robust situation. Finally, a simulation example is provided to show the effectiveness of the obtained results.
机译:本文涉及在有限范围内具有概率延迟的时变网络的H∞状态估计问题。所提出的网络的测量值经常发生具有可变概率的随机发生的延迟(棒),其可以通过时变的Bernoulli分布随机序列来描述。利用随机分析和概率依赖性方法来制定足够的标准,在该标准下可以实现规定的H∞性能。值得一提的是,基于变化概率的可用下限和上限,目标估计器增益转换为经过一组递归矩阵不等式的凸优化问题,这可以以更强大的情况应用。最后,提供了一种模拟示例以显示所获得的结果的有效性。

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