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首页> 外文期刊>Control Engineering Practice >Resilient multivariable perimeter control of urban road networks under cyberattacks
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Resilient multivariable perimeter control of urban road networks under cyberattacks

机译:Cyber​​attack下城市道路网络的弹性多变量周长控制

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摘要

The Macroscopic Fundamental Diagram (MFD) concept has become a very valuable tool for modeling the aggregated dynamic of large-scale urban traffic networks. This advance in traffic modeling has fueled the development of many urban traffic control (UTC) policies based on the MFD concept. In particular, perimeter control policies with the aim of maintaining a large-scale urban traffic network operating at its maximum capacity by manipulating the transfer flow of vehicles between adjacent homogeneous regions. In addition to achieve a satisfactory performance level, it is desirable that the control system would maintain a reliable operation under unanticipated events such as cyberattacks. It is important to note that modem UTC systems extensively rely on information technology infrastructures making them vulnerable to cyberattacks. Due to the occurrence of real-world cyberattacks affecting controlled physical systems in different fields, the threat of cyberattacks is becoming a serious and increasing concern for the proper operation of UTC. This paper presents a resilient multivariable control framework for large-scale urban traffic networks subject to several types of cyberattacks such as deception attacks and denial of service (DoS) attacks. Additionally, a feedforward-feedback control scheme combining a time-optimal controller with the resilient multivariable controller is also proposed. The aim of this feedforward-feedback controller is to steer the accumulations to their desired values after a large deviation. Finally, the performance of the proposed resilient controller is demonstrated by means of some realistic simulations of urban traffic networks, including stochastic errors in the traffic demands and in the MFD model, in addition to cyberattacks.
机译:宏观基本图(MFD)概念已成为建模大型城市交通网络的聚合动态的非常有价值的工具。交通建模的此进步推动了基于MFD概念的许多城市交通管制(UTC)政策的发展。特别地,通过操纵相邻的均质区域之间的车辆的转移流动,以维持以最大容量运行的大规模城市交通网络的目的。除了实现令人满意的性能水平之外,希望控制系统将在诸如Cyber​​attacks等意外事件下保持可靠的操作。重要的是要注意调制解调器UTC系统广泛依赖信息技术基础架构使它们容易受到网络攻击的影响。由于发生了影响不同领域的受控物理系统的现实世界范围的攻击,网络内人的威胁正在成为UTC的适当操作的严重且越来越令人担忧。本文为大型城市交通网络提供了一个有弹性的多变量控制框架,受几种类型的网络攻击,如欺骗攻击和拒绝服务(DOS)攻击。另外,还提出了一种具有弹性多变量控制器的时间最优控制器的前馈 - 反馈控制方案。该馈送反馈控制器的目的是在大偏差之后将累积转移到其所需值。最后,通过对城市交通网络的一些现实模拟来证明所提出的弹性控制器的性能,包括交通需求和MFD模型中的随机错误,以及Cyber​​attack。

著录项

  • 来源
    《Control Engineering Practice》 |2021年第4期|104718.1-104718.12|共12页
  • 作者

    Pedro Mercader; Jack Haddad;

  • 作者单位

    Technion-Israel Institute of Technology Faculty of Civil and Environmental Engineering Technion Sustainable Mobility and Robust Transportation (T-SMART) Laboratory Israel;

    Technion-Israel Institute of Technology Faculty of Civil and Environmental Engineering Technion Sustainable Mobility and Robust Transportation (T-SMART) Laboratory Israel;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Macroscopic Fundamental Diagram; Perimeter control; Cyberattacks; MIMO control; Optimal control;

    机译:宏观基础图;周边控制;网络攻击;MIMO控制;最佳控制;
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