Combined Data Integrity and Availability Attacks on State Estimation in Cyber-Physical Power Grids

Conference Paper (2016)
Author(s)

Kaikai Pan (TU Delft - Electrical Engineering, Mathematics and Computer Science)

André Herdeiro Teixeira (TU Delft - Technology, Policy and Management)

Milos Cvetkovic (TU Delft - Electrical Engineering, Mathematics and Computer Science)

Peter Palensky (TU Delft - Electrical Engineering, Mathematics and Computer Science)

Research Group
Intelligent Electrical Power Grids
DOI related publication
https://doi.org/10.1109/SmartGridComm.2016.7778773 Final published version
More Info
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Publication Year
2016
Language
English
Research Group
Intelligent Electrical Power Grids
Pages (from-to)
271-277
Event
7th IEEE International Conference on Smart Grid Communications (SmartGridComm 2016) (2016-11-06 - 2016-11-09), Sydney, Australia
Downloads counter
176

Abstract

This paper introduces combined data integrity and availability attacks to expand the attack scenarios against power system state estimation. The goal of the adversary, who uses the combined attack, is to perturb the state estimates while remaining hidden from the observer. We propose security metrics that quantify vulnerability of power grids to combined data attacks under single and multi-path routing communication models. In order to evaluate the proposed security metrics, we formulate them as mixed integer linear programming (MILP) problems. The relation between the security metrics of combined data attacks and pure data integrity attacks is analyzed, based on which we show that, when data availability and data integrity attacks have the same cost, the two metrics coincide. When data availability attacks have a lower cost than data integrity attacks, we show that a combined data attack could be executed with less attack resources compared to pure data integrity attacks. Furthermore, it is shown that combined data attacks would bypass integrity-focused mitigation schemes. These conclusions are supported by the results obtained on a power system model with and without a communication model with single or multi-path routing.