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An Inertia-Based Data Recovery Scheme for False Data Injection Attack

  • Jiaqi Ruan
  • , Gaoqi Liang*
  • , Junhua Zhao*
  • , Jing Qiu
  • , Zhao Yang Dong
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Due to vulnerabilities exposed to cyberattacks in the cyber physical power system, increasing concerns have been paid to its cybersecurity, especially on the so-called false data injection attack. Timely recovering true values of measurements and states after encountering cyber-attacks is of paramount importance for ensuring the subsequent controls and operations of the cyber physical power system. This article, for the first time, discovers a measurement data inertia effect, and uses this effect to deduce coarse values of preattack measurements as a preliminary work for data recovery. Then, based on the deduced coarse values and suggested state bounds, an optimization model is proposed to recover the measurements and states contaminated by attacks in-time. Moreover, an error criterion named interval error is proposed to assess the entire performance of the proposed recovery scheme. Extensive and comprehensive experiments are implemented on the IEEE 30-bus test benchmark to verify the feasibility and effectiveness of the proposed recovery scheme. The numerical studies reveal that the proposed method can achieve high accuracy and efficient timeliness for data recovery. © 2005-2012 IEEE.
Original languageEnglish
Pages (from-to)7814-7823
JournalIEEE Transactions on Industrial Informatics
Volume18
Issue number11
Online published31 Jan 2022
DOIs
Publication statusPublished - Nov 2022
Externally publishedYes

Research Keywords

  • Cyber physical power system
  • cybersecurity
  • data recovery
  • measurement data inertia

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