This paper aims to identify the vulnerability of electrical cyber-physical systems (CPSs) through fault propagation under cyber attacks. First, we propose a fault propagation model mainly considering the impact of interruptions on some nodes of the cyber networkon the electrical physical systems. Secondly, two graphs,i.e. propagation graph and attack graph are proposed to reveal the physical fault propagation mechanisms and analyze the attack intensity of combinations of different communication nodes, respectively. Thirdly, a set of traditional vulnerable indices based on the propagation and attack graphs are employed to identify both the criticalphysicalbranchesandcommunicationnodesintheCPS.Finally,comparativeanalyseswithandwithout consideringtheCPSonbothIEEE118-and300-bussystemsshowthatthefaultpropagationamongaremore sophisticated and the wrong decisions that the control center makes causes the higher vulnerability of the electrical network due to the interruption of the transmission information in the cyber system under cyber attacks.

Integrated fault propagation model based vulnerability assessment of the electrical cyber-physical system under cyber attacks / Zang, T.; Gao, S.; Liu, B.; Huang, T.; Wang, T.; Wei, X.. - In: RELIABILITY ENGINEERING & SYSTEM SAFETY. - ISSN 0951-8320. - 189:(2019), pp. 232-241. [10.1016/j.ress.2019.04.024]

Integrated fault propagation model based vulnerability assessment of the electrical cyber-physical system under cyber attacks

Huang T.;
2019

Abstract

This paper aims to identify the vulnerability of electrical cyber-physical systems (CPSs) through fault propagation under cyber attacks. First, we propose a fault propagation model mainly considering the impact of interruptions on some nodes of the cyber networkon the electrical physical systems. Secondly, two graphs,i.e. propagation graph and attack graph are proposed to reveal the physical fault propagation mechanisms and analyze the attack intensity of combinations of different communication nodes, respectively. Thirdly, a set of traditional vulnerable indices based on the propagation and attack graphs are employed to identify both the criticalphysicalbranchesandcommunicationnodesintheCPS.Finally,comparativeanalyseswithandwithout consideringtheCPSonbothIEEE118-and300-bussystemsshowthatthefaultpropagationamongaremore sophisticated and the wrong decisions that the control center makes causes the higher vulnerability of the electrical network due to the interruption of the transmission information in the cyber system under cyber attacks.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2765735
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