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Review of design elements within power infrastructure cyber–physical test beds as threat analysis environments

  • Bjorn Vaagensmith
  • , Vivek Kumar Singh
  • , Robert Ivans
  • , Daniel L. Marino
  • , Chathurika S. Wickramasinghe
  • , Jacob Lehmer
  • , Tyler Phillips
  • , Craig Rieger
  • , Milos Manic

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

Cyber–physical systems (CPSs) are an integral part of modern society; thus, enhancing these systems’ reliability and resilience is paramount. Cyber–physical testbeds (CPTs) are a safe way to test and explore the interplay between the cyber and physical domains and to cost-effectively enhance the reliability and resilience of CPSs. Here a review of CPT elements, broken down into physical components (simulators, emulators, and physical hardware), soft components (communi-cation protocols, network timing protocols), and user interfaces (visualization-dashboard design considerations) is presented. Various methods used to validate CPS performance are reviewed and evaluated for potential applications in CPT performance validation. Last, initial simulated results for a CPT design, based on the IEEE 33 bus system, are presented, along with a brief discussion on how model-based testing and fault–injection-based testing (using scaling and ramp-type attacks) may be used to help validate CPT performance.

Original languageEnglish
Article number1409
JournalEnergies
Volume14
Issue number5
DOIs
StatePublished - Mar 1 2021

Keywords

  • Communication protocols
  • Cyber–physical system
  • Cyber–physical testbed metrics
  • Data visualization
  • Network timing
  • Ramp attack
  • Scaling attack
  • Smart grid

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