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Design and Implementation of Secure Networked Predictive Control Systems Under Deception Attacks

机译:受欺骗攻击的安全网络预测控制系统的设计与实现

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摘要

This brief addresses the security issues of data transmitted in networked control systems (NCSs), especially confidentiality, integrity and authenticity. A secure networked predictive control system (SNPCS) architecture is presented, which integrates the Data Encryption Standard (DES) algorithm, Message Digest (MD5) algorithm, timestamp strategy, and recursive networked predictive control (RNPC) method. The former three parts are used to form a secure transmission mechanism between the controller side and the plant side, which is responsible for enforcing the data confidentiality and checking the data integrity and authenticity. To guarantee the control system performance when suffering from deception attacks, the RNPC method based on round-trip time delays is proposed to compensate for the adverse effects introduced by the deception attacks as well as the network communication constraints, such as time-varying network delay, packet disorder and packet dropout. A theoretical result using the switched system theory is obtained for the closed-loop stability of the RNPC system. Practical experiments are performed to demonstrate the effectiveness of the proposed SNPCS.
机译:本简介解决了在网络控制系统(NCS)中传输的数据的安全性问题,尤其是机密性,完整性和真实性。提出了一种安全的网络预测控制系统(SNPCS)体系结构,该体系结构集成了数据加密标准(DES)算法,消息摘要(MD5)算法,时间戳策略和递归网络预测控制(RNPC)方法。前三个部分用于在控制器侧和工厂侧之间形成安全的传输机制,该机制负责执行数据机密性并检查数据完整性和真实性。为了保证控制系统在遭受欺骗攻击时的性能,提出了一种基于往返时延的RNPC方法,以补偿欺骗攻击带来的不利影响以及网络通信约束,如时变网络时延。 ,数据包混乱和数据包丢失。使用开关系统理论获得了RNPC系统闭环稳定性的理论结果。进行了实际实验,以证明所提出的SNPCS的有效性。

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