4.6 Article

Resilient Event-Triggered Controller Synthesis of Networked Control Systems Under Periodic DoS Jamming Attacks

Journal

IEEE TRANSACTIONS ON CYBERNETICS
Volume 49, Issue 12, Pages 4271-4281

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TCYB.2018.2861834

Keywords

Cyber-physical systems (CPSs); denial-of-service (DoS) jamming attack; event-triggered control (ETC); networked control systems; piecewise Lyapunov functional (PLF)

Funding

  1. National Natural Science Foundation of China [61673223, 61533010, 61833008, 61773221, 61603175]
  2. Natural Science Foundation of Jiangsu Province of China [BK20151510]
  3. Qing Lan Project of Jiangsu Province of China [QL04317006]
  4. NUPTSF [XJKY15001]
  5. 1311 Talent Project of Nanjing University of Posts and Telecommunications, China

Ask authors/readers for more resources

In this paper, the event-based controller synthesis problem for networked control systems under the resilient event-triggering communication scheme (RETCS) and periodic denial-of-service (DoS) jamming attacks is studied. First, a new periodic RETCS is designed under the assumption that the DoS attacks imposed by power-constrained pulsewidth-modulated jammers are partially identified, that is, the period of the jammer and a uniform lower bound on the jammer's sleeping periods are known. Second, a new state error-dependent switched system model is constructed, including the impacts of the RETCS and DoS attacks. According to this new model, the exponential stability criteria are derived by using the piecewise Lyapunov functional. In these criteria, the relationship among DoS parameters, the triggering parameters, the sampling period, and the decay rate is quantitatively characterized. Then, a criterion is also proposed to obtain the explicit expressions of the triggering parameter and event-based state feedback controller gain simultaneously. Finally, the obtained theoretical results are verified by a satellite yaw-angles control system.

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