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Design and Implementation of Attack-Resilient Cyberphysical Systems: With a Focus on Attack-Resilient State Estimators

Publication ,  Journal Article
Pajic, M; Weimer, J; Bezzo, N; Sokolsky, O; Pappas, GJ; Lee, I
Published in: IEEE Control Systems
April 1, 2017

Recent years have witnessed a significant increase in the number of securityrelated incidents in control systems. These include high-profile attacks in a wide range of application domains, from attacks on critical infrastructure, as in the case of the Maroochy Water breach [1], and industrial systems (such as the StuxNet virus attack on an industrial supervisory control and data acquisition system [2], [3] and the German Steel Mill cyberattack [4], [5]), to attacks on modern vehicles [6]-[8]. Even high-Assurance military systems were shown to be vulnerable to attacks, as illustrated in the highly publicized downing of the RQ-170 Sentinel U.S. drone [9]-[11]. These incidents have greatly raised awareness of the need for security in cyberphysical systems (CPSs), which feature tight coupling of computation and communication substrates with sensing and actuation components. However, the complexity and heterogeneity of this next generation of safety-critical, networked, and embedded control systems have challenged the existing design methods in which security is usually consider as an afterthought.

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Published In

IEEE Control Systems

DOI

ISSN

1066-033X

Publication Date

April 1, 2017

Volume

37

Issue

2

Start / End Page

66 / 81

Related Subject Headings

  • 4007 Control engineering, mechatronics and robotics
  • 0906 Electrical and Electronic Engineering
  • 0902 Automotive Engineering
 

Citation

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Pajic, M., Weimer, J., Bezzo, N., Sokolsky, O., Pappas, G. J., & Lee, I. (2017). Design and Implementation of Attack-Resilient Cyberphysical Systems: With a Focus on Attack-Resilient State Estimators. IEEE Control Systems, 37(2), 66–81. https://doi.org/10.1109/MCS.2016.2643239
Pajic, M., J. Weimer, N. Bezzo, O. Sokolsky, G. J. Pappas, and I. Lee. “Design and Implementation of Attack-Resilient Cyberphysical Systems: With a Focus on Attack-Resilient State Estimators.” IEEE Control Systems 37, no. 2 (April 1, 2017): 66–81. https://doi.org/10.1109/MCS.2016.2643239.
Pajic M, Weimer J, Bezzo N, Sokolsky O, Pappas GJ, Lee I. Design and Implementation of Attack-Resilient Cyberphysical Systems: With a Focus on Attack-Resilient State Estimators. IEEE Control Systems. 2017 Apr 1;37(2):66–81.
Pajic, M., et al. “Design and Implementation of Attack-Resilient Cyberphysical Systems: With a Focus on Attack-Resilient State Estimators.” IEEE Control Systems, vol. 37, no. 2, Apr. 2017, pp. 66–81. Scopus, doi:10.1109/MCS.2016.2643239.
Pajic M, Weimer J, Bezzo N, Sokolsky O, Pappas GJ, Lee I. Design and Implementation of Attack-Resilient Cyberphysical Systems: With a Focus on Attack-Resilient State Estimators. IEEE Control Systems. 2017 Apr 1;37(2):66–81.

Published In

IEEE Control Systems

DOI

ISSN

1066-033X

Publication Date

April 1, 2017

Volume

37

Issue

2

Start / End Page

66 / 81

Related Subject Headings

  • 4007 Control engineering, mechatronics and robotics
  • 0906 Electrical and Electronic Engineering
  • 0902 Automotive Engineering