• DocumentCode
    79632
  • Title

    Secure Estimation and Control for Cyber-Physical Systems Under Adversarial Attacks

  • Author

    Fawzi, Hamza ; Tabuada, Paulo ; Diggavi, Suhas

  • Author_Institution
    Dept. of Electr. Eng. & Comput. Sci., Massachusetts Inst. of Technol., Cambridge, MA, USA
  • Volume
    59
  • Issue
    6
  • fYear
    2014
  • fDate
    Jun-14
  • Firstpage
    1454
  • Lastpage
    1467
  • Abstract
    The vast majority of today´s critical infrastructure is supported by numerous feedback control loops and an attack on these control loops can have disastrous consequences. This is a major concern since modern control systems are becoming large and decentralized and thus more vulnerable to attacks. This paper is concerned with the estimation and control of linear systems when some of the sensors or actuators are corrupted by an attacker. We give a new simple characterization of the maximum number of attacks that can be detected and corrected as a function of the pair (A,C) of the system and we show in particular that it is impossible to accurately reconstruct the state of a system if more than half the sensors are attacked. In addition, we show how the design of a secure local control loop can improve the resilience of the system. When the number of attacks is smaller than a threshold, we propose an efficient algorithm inspired from techniques in compressed sensing to estimate the state of the plant despite attacks. We give a theoretical characterization of the performance of this algorithm and we show on numerical simulations that the method is promising and allows to reconstruct the state accurately despite attacks. Finally, we consider the problem of designing output-feedback controllers that stabilize the system despite sensor attacks. We show that a principle of separation between estimation and control holds and that the design of resilient output feedback controllers can be reduced to the design of resilient state estimators.
  • Keywords
    control system synthesis; critical infrastructures; fault tolerant control; feedback; linear systems; security of data; stability; state estimation; adversarial attacks; compressed sensing; critical infrastructure; feedback control loops; linear system control; resilient output feedback controller design; resilient state estimators; secure cyber-physical system control; secure cyber-physical system estimation; secure local control loop; sensor attacks; system stabilization; Actuators; Decoding; Estimation; Sensor systems; Vectors; Algorithm; feedback controller;
  • fLanguage
    English
  • Journal_Title
    Automatic Control, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9286
  • Type

    jour

  • DOI
    10.1109/TAC.2014.2303233
  • Filename
    6727407