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Attack-tolerant control and observer-based trajectory tracking for Cyber-Physical Systems

机译:用于网络物理系统的攻击耐受控制和基于观察者的轨迹跟踪

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摘要

In the present paper, a model-based fault/attack tolerant scheme is proposed to cope with cyber-threats on Cyber-Physicals Systems. A common scheme based on observers is designed and a state feedback control based on an aperiodic event-triggered framework is given with control synthesis and condition on the switching time.Classical fault tolerant control with Bi-linear Matrix Inequality (BMI) approaches are used to achieve novel and better security strategy based on an event-triggered control implementation. The purpose of using the event-based implementation would be to reduce (limit) the total number of transmissions to only instances when the networked control system (NCS) needs attention. Simulation results on a real-time laboratory three tank system are given to show the attack-tolerant control ability despite data deception attacks on both actuators and sensors. A detection/isolation scheme based on residual observers bank is also proposed. (C) 2018 European Control Association. Published by Elsevier Ltd. All rights reserved.
机译:在本文中,提出了一种基于模型的故障/攻击耐受方案,以应对网络物理系统的网络威胁。设计了一种基于观察者的公共方案,并基于非周期性事件触发框架的状态反馈控制被给出了控制合成和切换时间的条件。使用双线性矩阵不等式(BMI)方法的Classical容错控制基于事件触发的控制实现实现新颖和更好的安全策略。使用基于事件的实现的目的是减少(限制)当网络控制系统(NCS)需要注意时,只有实例的总传输总数。尽管对致动器和传感器的数据欺骗攻击,但是,仿真结果在实时实验室三个罐系统上显示出攻击耐受控制能力。还提出了一种基于残余观察者群的检测/隔离方案。 (c)2018年欧洲控制协会。 elsevier有限公司出版。保留所有权利。

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