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Input-to-State Stabilizing Control Under Denial-of-Service

IEEE Transactions on Automatic Control · 2015 · Vol. 60(11) · pp. 2930–2944
Claudio De PersisPietro Tesi

Abstract

The issue of cyber-security has become ever more prevalent in the analysis and design of networked systems. In this paper, we analyze networked control systems in the presence of denial-of-service (DoS) attacks, namely attacks that prevent transmissions over the network. We characterize frequency and duration of the DoS attacks under which input-to-state stability (ISS) of the closed-loop system can be preserved. To achieve ISS, a suitable scheduling of the transmission times is determined. It is shown that the considered framework is flexible enough so as to allow the designer to choose from several implementation options that can be used for trading-off performance versus communication resources. Examples are given to substantiate the analysis.

Smart Grid Security and ResilienceNetwork Time Synchronization TechnologiesStability and Control of Uncertain SystemsDenial-of-service attackComputer scienceScheduling (production processes)State (computer science)Computer securityNetworked control systemStability (learning theory)Control systemControl (management)Computer network

Funding

  • Nederlandse Organisatie voor Wetenschappelijk Onderzoek
  • Stichting voor de Technische Wetenschappen
Citations
1,436
FWCI
38.12
field-weighted impact
References
46
Percentile
100%
vs. same field & year
Citations per year
References
Event-Triggered Real-Time Scheduling of Stabilizing Control Tasks
IEEE Transactions on Automatic Control · 2007 · 4,518 citations
Attack Detection and Identification in Cyber-Physical Systems
IEEE Transactions on Automatic Control · 2013 · 2,037 citations
A Survey of Recent Results in Networked Control Systems
Proceedings of the IEEE · 2007 · 3,770 citations
A state-feedback approach to event-based control
Automatica · 2009 · 1,008 citations
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