Asynchronous secure control for singular nonhomogeneous Markov jump cyber‐physical systems against dual cyber‐attacks

Shuyu Zhang, Yanqian Wang, Guangming Zhuang, Chengxing Lv
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引用次数: 0

Abstract

In this article, based on the dynamic event‐triggered transmission protocol, the issue of asynchronous secure control for singular nonhomogeneous Markov jump cyber‐physical systems (CPSs) is studied. The matrix that is governed by the time‐varying transition rates lies in a convex polyhedron. To further degrade the transmission percentage over the network, the dynamic event‐triggered transmission protocol is developed. Besides, owing to the vulnerability of the network, the replay attack and deception attack are both considered, the occurrences of which are modelled by mutual independent random variables satisfying Bernoulli distribution. By constructing a parameter dependent and an auxiliary dynamic variable dependent Lyapunov functional, sufficient conditions of stochastic admissible for singular nonhomogeneous Markov jump CPSs are derived by parameter dependent matrix inequalities, which can be converted into the finite linear matrix inequalities. A numerical example is provided to illustrate the feasibility and effectiveness of the theoretical results.
针对双重网络攻击的奇异非齐次马尔可夫跳变网络物理系统的异步安全控制
本文基于动态事件触发传输协议,研究了奇异非齐次马尔可夫跳变网络物理系统的异步安全控制问题。由时变跃迁速率控制的矩阵位于凸多面体中。为了进一步降低网络传输百分比,开发了动态事件触发传输协议。此外,由于网络的脆弱性,我们同时考虑了重放攻击和欺骗攻击,它们的发生情况用满足伯努利分布的相互独立的随机变量来建模。通过构造参数相关和辅助动态变量相关的Lyapunov泛函,利用参数相关的矩阵不等式,导出了奇异非齐次马尔可夫跳变CPSs随机允许的充分条件,并将其转化为有限线性矩阵不等式。数值算例说明了理论结果的可行性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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