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research article

Time-Synchronization Attack Detection in Unbalanced Three-Phase Systems

Delcourt, Marguerite
•
Shereen, Ezzeldin
•
Dan, Gyorgy
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May 6, 2021
IEEE Transactions on Smart Grid

Phasor measurement units (PMU) rely on an accurate time-synchronization to phase-align the phasors and timestamp the voltage and current phasor measurements. Among the symmetrical components computed from the phasors in three-phase systems, the standard practice only uses the direct-sequence component for state estimation and bad data detection (BDD). Time-synchronization attacks (TSAs) can compromise the measured phasors and can, thus, significantly alter the state estimate in a manner that is undetectable by widely used power-system BDD algorithms. In this paper we investigate the potential of utilizing the three-phase model instead of the direct-sequence model for mitigating the vulnerability of state estimation to undetectable TSAs. We show analytically that if the power system is unbalanced then the use of the three-phase model as input to BDD algorithms enables to detect attacks that would be undetectable if only the direct-sequence model was used. Simulations performed on the IEEE 39-bus benchmark using real load profiles recorded on the grid of the city of Lausanne confirm our analytical results. Our results provide a new argument for the adoption of three-phase models for BDD, as their use is a simple, yet effective measure for reducing the vulnerability of PMU measurements to TSAs.

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Type
research article
DOI
10.1109/TSG.2021.3078104
Author(s)
Delcourt, Marguerite
Shereen, Ezzeldin
Dan, Gyorgy
Le Boudec, Jean-Yves
Paolone, Mario  
Date Issued

2021-05-06

Published in
IEEE Transactions on Smart Grid
Volume

12

Issue

5

Start page

4460

End page

4470

Subjects

Phasor measurement units

•

Transmission line measurements

•

State estimation

•

Synchronization

•

Power systems

•

Phase measurement

•

Measurement uncertainty

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
DESL  
LCA2  
FunderGrant Number

CTI/Innosuisse

SCCER-FURIES

Available on Infoscience
August 9, 2021
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/180489
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