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Synchronization of Multi-links Memristor-Based Switching Networks Under Uniform Random Attacks

机译:均匀随机攻击下基于多链路忆阻器的交换网络的同步

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A variety of influence factors are common to the support networks which are used as cyber-physical systems. In this paper, we consider the problem of finite-time and exponential synchronization for the memristor-based switching networks (MSNs) with multi-links and multiple time-varying delays under uniform random attacks via asymptotic controller and adaptive controller. We propose a more general system model and utilize an analytical method which is different from the classical analytical techniques like set-valued mappings technique and differential inclusions to preprocess the MSNs to a class of switching networks with some uncertain parameters. Then, based on appropriate Lyaponov functionals and linear matrix inequality, several useful criteria ensuring the finite-time synchronization or asymptotic synchronization of MSNs with multi-links and time-varying delays under uniform random attacks via designed control law are obtained. Finally, two numerical examples are designed to show the feasibility and the correctness of our proposed results.
机译:对于用作网络物理系统的支持网络,共有多种影响因素。本文考虑了渐近控制器和自适应控制器在均匀随机攻击下具有多链路和多个时变时滞的基于忆阻器的交换网络(MSN)的有限时间和指数同步问题。我们提出了一个更通用的系统模型,并利用一种不同于经典分析技术(例如集值映射技术和微分包含)的分析方法将MSN预处理为具有某些不确定参数的一类交换网络。然后,基于适当的Lyaponov泛函和线性矩阵不等式,通过设计的控制律,获得了一些有用的准则,以确保在均匀随机攻击下具有多链路和时变时延的MSN的有限时间同步或渐近同步。最后,设计了两个数值例子来说明我们提出的结果的可行性和正确性。

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