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A PROBABILISTIC CHARACTERIZATION OF RANDOM AND MALICIOUS COMMUNICATION FAILURES IN MULTI-HOP NETWORKED CONTROL

机译:多跳网络控制中随机和恶意通信故障的概率表征

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摘要

control problem of a linear discrete-time dynamical system over a multi-hop network is explored. The network is assumed to be subject to packet drops by malicious and nonmalicious nodes as well as random and malicious data corruption issues. We utilize asymptotic tail-probability bounds of transmission failure ratios to characterize the links and paths of a network as well as the network itself. This probabilistic characterization allows us to take into account multiple failures that depend on each other, and coordinated malicious attacks on the network. We obtain a sufficient condition for the stability of the networked control system by utilizing our probabilistic approach. We then demonstrate the efficacy of our results in different scenarios concerning transmission failures on a multi-hop network.
机译:探索了多跳网络上线性离散时间动态系统的控制问题。 假设网络受恶意和非可增数量的数据包,以及随机和恶意数据损坏问题。 我们利用传输失效比的渐近尾部概率界限,以表征网络的链路和路径以及网络本身。 此概率表征允许我们考虑多个依赖于彼此的故障,并对网络进行协调的恶意攻击。 我们利用我们的概率方法获得了对网络控制系统的稳定性的充分条件。 然后,我们展示了我们在多跳网络上的传输失败的不同场景中的结果。

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