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Distributed Filtering of Time-Delay Systems with Redundant Channels Subject to Uncertain Packet Dropout Rates

机译:具有冗余通道的时间延迟系统的分布式滤波,受不确定的数据包丢失率

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This paper is concerned with the distributed H_∞ filtering problem for a class of discrete-time systems with time-varying delays. The data communications among sensor nodes are equipped with redundant channels subject to random packet dropouts that are modeled by mutually independent Bernoulli stochastic processes. The practical phenomenon of uncertain packet dropout rate is considered, and the normbounded uncertainty of the packet dropout rate is asymmetric to the nominal rate. Sufficient conditions on the existence of the desired distributed filters are established by employing the scaled small gain theorem to ensure that the closed-loop system is stochastically stable and achieves a prescribed average H_∞ performance index. Finally, a numerical example is provided to illustrate the effectiveness of the proposed approach.
机译:本文涉及具有时变延迟的一类离散时间系统的分布式H_∞过滤问题。传感器节点之间的数据通信配备有经受随机分组丢失的冗余通道,该丢弃由相互独立的Bernoulli随机过程建模。考虑了不确定的分组辍学率的实际现象,并且数据包辍学率的Normbound的不确定度对标称速率不对称。通过采用缩放的小增益定理建立所需分布式滤波器的存在的充分条件,以确保闭环系统是随机稳定的并且实现规定的平均H_∞性能指标。最后,提供了一个数字示例以说明所提出的方法的有效性。

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