Proactive Measures for Cyber-Physical Systems Cybersecurity

被引:0
|
作者
Taha, Kamal [1 ]
机构
[1] Khalifa Univ, Dept Elect Engn & Comp Sci, Abu Dhabi, U Arab Emirates
关键词
Cyber-physical systems; sustainable information security; network sharing; Cyberattacks; clustering coefficient; COMMUNITY DETECTION; INFORMATION; SPREADERS;
D O I
10.1109/CSR57506.2023.10224929
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Reactive security measures for cyber-physical systems (CPS) are ineffective. It is imperative for replacing these measures with proactive ones for the sustainability of the CPS cybersecurity. We introduce a novel proactive methodology for CPS cybersecurity. We implemented this methodology in a system called CPM-CPS. The methodology is summarized as follows: (a) clustering the CPS devices with LAN-based network sharing, (b) identifying the influential devices in each cluster, and (c) identifying the central devices at the WAN level that have network sharing with the influential devices in the different clusters. The file sharing of the identified influential devices at both LAN and WAN levels needs to be paid more attention to. Such measures can help in detecting potential security risks and preventing cyberattacks against these influential devices before they share their infected files with other devices. Security equipment like intrusion detection systems can be provided to these influential devices. We introduce in this paper novel k- clique-based modeling techniques for clustering LAN devices. We introduce novel techniques for identifying LAN and WAN influential devices using coefficient-based and Independent Cascades-based modeling techniques. We experimentally evaluated our system CPM-CPS and compared it with four methods. Results showed marked improvement.
引用
下载
收藏
页码:353 / 358
页数:6
相关论文
共 50 条
  • [41] The Cyber-Physical Systems Revolution
    Serpanos, Dimitrios
    COMPUTER, 2018, 51 (03) : 70 - 73
  • [42] Education for Cyber-Physical Systems
    Henkel, Jorg
    IEEE DESIGN & TEST, 2020, 37 (06) : 4 - 4
  • [43] Survey on Cyber-physical Systems
    Li H.-Y.
    Wei M.-H.
    Huang J.
    Qiu B.-H.
    Zhao Y.
    Luo W.-C.
    He X.
    He X.
    Zidonghua Xuebao/Acta Automatica Sinica, 2019, 45 (01): : 37 - 50
  • [44] A Calculus of Cyber-Physical Systems
    Lanotte, Ruggero
    Merro, Massimo
    LANGUAGE AND AUTOMATA THEORY AND APPLICATIONS (LATA 2017), 2017, 10168 : 115 - 127
  • [45] Composition of cyber-physical systems
    Sztipanovits, Janos
    ECBS 2007: 14th Annual IEEE International Conference and Workshops on the Engineering of Computer-Based Systems, Proceedings: RAISING EXPECTATIONS OF COMPUTER-BASES SYSTEMS, 2007, : 3 - 4
  • [46] Communication in Cyber-Physical Systems
    Mois, George
    Folea, Silviu
    Sanislav, Teodora
    Miclea, Liviu
    2015 19TH INTERNATIONAL CONFERENCE ON SYSTEM THEORY, CONTROL AND COMPUTING (ICSTCC), 2015, : 303 - 307
  • [47] Engineering Cyber-Physical Systems
    Gruhn, Volker
    Gries, Stefan
    Hesenius, Marc
    Ollesch, Julius
    Ur Rehman, Shafiq
    Schwenzfeier, Nils
    Wahl, Christian
    Wessling, Florian
    NEW TRENDS IN INTELLIGENT SOFTWARE METHODOLOGIES, TOOLS AND TECHNIQUES, 2017, 297 : 3 - 18
  • [48] Review on Cyber-physical Systems
    Liu, Yang
    Peng, Yu
    Wang, Bailing
    Yao, Sirui
    Liu, Zihe
    IEEE-CAA JOURNAL OF AUTOMATICA SINICA, 2017, 4 (01) : 27 - 40
  • [49] Cyber-Physical Systems – Security
    Tanja Zseby
    e & i Elektrotechnik und Informationstechnik, 2018, 135 (3) : 249 - 249
  • [50] Quantum cyber-physical systems
    Javier Villalba-Diez
    Ana González-Marcos
    Joaquín Ordieres-Meré
    Scientific Reports, 12