The Trustworthy Autonomic Interface Guardian Architecture for Cyber-Physical Systems

被引:4
作者
Lyn, Kevin G. [1 ]
Lerner, Lee W. [1 ]
McCarty, Christopher J. [2 ]
Patterson, Cameron D. [2 ]
机构
[1] Georgia Inst Technol, Atlanta, GA 30332 USA
[2] Virginia Tech, Blacksburg, VA USA
来源
CIT/IUCC/DASC/PICOM 2015 IEEE INTERNATIONAL CONFERENCE ON COMPUTER AND INFORMATION TECHNOLOGY - UBIQUITOUS COMPUTING AND COMMUNICATIONS - DEPENDABLE, AUTONOMIC AND SECURE COMPUTING - PERVASIVE INTELLIGENCE AND COMPUTING | 2015年
基金
美国国家科学基金会;
关键词
Cyber-physical systems; autonomic control; embedded device security; trust; resilience;
D O I
10.1109/CIT/IUCC/DASC/PICOM.2015.263
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
The growing connectivity of cyber-physical systems (CPSes) has led to an increased concern over the ability of cyber-attacks to inflict physical damage. Current cyber-security measures focus on preventing attacks from penetrating control supervisory networks. These reactive techniques, however, are often plagued with vulnerabilities and zero-day exploits. Embedded processors in CPS field devices often possess little security of their own, and are easily exploited once the network is penetrated. We identify four possible outcomes of a cyber-attack on a CPS embedded processor. We then discuss five trust requirements that a device must satisfy to guarantee correct behavior through the device's lifecycle. Next, we examine the Trustworthy Autonomic Interface Guardian Architecture (TAIGA) which monitors communication between the embedded controller and physical process. This autonomic architecture provides the physical process with a last line of defense against cyber-attacks. TAIGA switches process control to a trusted backup controller if an attack causes a system specification violation. We conclude with experimental results of an implementation of TAIGA on a hazardous cargo-carrying robot.
引用
收藏
页码:1804 / 1811
页数:8
相关论文
共 50 条
  • [1] RMAS Architecture for Autonomic Computing in Cyber-Physical Systems
    Bonci, Andrea
    Longhi, Sauro
    Pirani, Massimiliano
    45TH ANNUAL CONFERENCE OF THE IEEE INDUSTRIAL ELECTRONICS SOCIETY (IECON 2019), 2019, : 2996 - 3003
  • [2] A Trustworthy Communication Hub for Cyber-Physical Systems
    Latvakoski, Juhani
    Heikkinen, Jouni
    FUTURE INTERNET, 2019, 11 (10):
  • [3] Towards Trustworthy Smart Cyber-Physical Systems
    David, M. W.
    Yerkes, C. R.
    Simmons, M. E.
    Franceschini, W.
    INFORMATION AND COMMUNICATIONS SECURITY, ICICS 2016, 2016, 9977 : 392 - 399
  • [4] Trustworthy Inter-connected Cyber-Physical Systems
    Hankin, Chris
    Barrere, Martin
    CRITICAL INFORMATION INFRASTRUCTURES SECURITY, CRITIS 2020, 2020, 12332 : 3 - 13
  • [5] Trustworthy Data Management for Wireless Networks in Cyber-Physical Systems
    Li, Wenjia
    Kotut, Lindah
    2013 IEEE 32ND INTERNATIONAL PERFORMANCE COMPUTING AND COMMUNICATIONS CONFERENCE (IPCCC), 2013,
  • [6] Cognitive architecture for cognitive cyber-physical systems
    Ali, Jana Al Haj
    Lezoche, Mario
    Panetto, Herve
    Naudet, Yannick
    Gaffinet, Ben
    IFAC PAPERSONLINE, 2024, 58 (19): : 1180 - 1185
  • [7] Architecture Trace Diagrams for Cyber-Physical Systems
    Boersting, Ingo
    Hesenius, Marc
    Rehman, Shafiq Ur
    Gruhn, Volker
    13TH EUROPEAN CONFERENCE ON SOFTWARE ARCHITECTURE (ECSA 2019), VOL 2, 2019, : 253 - 260
  • [8] A Method for Building Trustworthy Hybrid Performance Models for Cyber-Physical Systems of Systems
    Modaber, Mahtab
    Hendriks, Martijn
    Geilen, Marc
    Basten, Twan
    Voeten, Jeroen
    IEEE ACCESS, 2024, 12 : 92733 - 92752
  • [9] Cyber-physical modeling and simulation: A reference architecture for designing demonstrators for industrial cyber-physical systems
    Oks, Sascha Julian
    Jalowski, Max
    Fritzsche, Albrecht
    Moeslein, Kathrin M.
    29TH CIRP DESIGN CONFERENCE 2019, 2019, 84 : 257 - 264
  • [10] A Correlation-based Approach to Trustworthy Sensing for Cyber-Physical Systems
    Wu, Dongyu
    Wang, Peng
    Zhang, Xingwu
    Yan, Ruqiang
    Gao, Robert X.
    2016 IEEE INTERNATIONAL INSTRUMENTATION AND MEASUREMENT TECHNOLOGY CONFERENCE PROCEEDINGS, 2016, : 636 - 641