Communication Security of Autonomous Ground Vehicles Based on Networked Control Systems: The Optimized LMI Approach

Kaibo Shi, Xiao Cai, Kun She, S. Zhong, Shixian Wen, Yuanlun Xie
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引用次数: 1

Abstract

This study focuses on the networked control systems (NCSs) under Denial of Service (DoS) attacks with periodicity and attack intensity. A DoS attack with attack strength is studied, which has important research significance for establishing a suitable defense mechanism. First, the construction of appropriate Lyapunov-Krasovskii functionals (LKFs) can reduce the constraints of the basic conditions and help lower the criterion's conservatism. Then, the selection problem of the trigger threshold is transformed into an optimization problem with constraints, and the gradient descent algorithm (GDA) is used to select the trigger threshold to save sampling resources better. Next, an intelligent event-triggered controller (IETC) is designed to ensure the safe operation of the system under DoS attacks. Finally, the correctness of the method is verified through the experiment of the autonomous ground vehicle (AGV) system based on the Simulink platform.
基于网络化控制系统的自主地面车辆通信安全:优化LMI方法
研究了具有周期性和攻击强度的网络控制系统在DoS攻击下的性能。研究了一种具有攻击强度的DoS攻击,这对于建立合适的防御机制具有重要的研究意义。首先,适当的Lyapunov-Krasovskii泛函(LKFs)的构造可以减少基本条件的约束,降低准则的保守性。然后,将触发阈值的选择问题转化为带约束的优化问题,利用梯度下降算法(GDA)选择触发阈值,以更好地节省采样资源;其次,设计了智能事件触发控制器(intelligent event-triggered controller, IETC),保证系统在DoS攻击下的安全运行。最后,通过基于Simulink平台的自主地面车辆(AGV)系统的实验验证了该方法的正确性。
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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