Comprehensive fault simulation method in active distribution network with the consideration of cyber security

Abstract With the many characteristics of cyber–physical systems (CPS), including the complex evolution of various dynamic processes in distribution networks (DNs), communication modes and serious network security events have become important issues. From the perspective of DN analysis, traditional...

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Main Authors: Wanxing Sheng, Keyan Liu, Ying Liang
Format: Article
Language:English
Published: Wiley 2021-03-01
Series:IET Cyber-Physical Systems
Online Access:https://doi.org/10.1049/cps2.12003
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spelling doaj-3ccf8d4b71544919af0b514a054405562021-04-20T13:45:34ZengWileyIET Cyber-Physical Systems2398-33962021-03-0161274010.1049/cps2.12003Comprehensive fault simulation method in active distribution network with the consideration of cyber securityWanxing Sheng0Keyan Liu1Ying Liang2China Electric Power Research Institute Beijing ChinaChina Electric Power Research Institute Beijing ChinaChina Electric Power Research Institute Beijing ChinaAbstract With the many characteristics of cyber–physical systems (CPS), including the complex evolution of various dynamic processes in distribution networks (DNs), communication modes and serious network security events have become important issues. From the perspective of DN analysis, traditional electrical digital simulations cannot access current models of communication systems and cyber network security events. The interactions between cyber and physical networks cannot be simulated and analysed simultaneously, which is challenging to the development of CPS simulations of DNs. To evaluate the impact of cyber networks on physical networks, a CPS simulation platform that contains physical, communication and control layers is discussed. Three‐phase short‐circuit fault processing and islanding operation control are simulated by data interactions among three‐layer models that are used to analyse the impact of communication data tampering on fault handling processes. The influence of data tampering on fault processing and the influence of false data injection and data interception on islanding operation control processes are analysed. The simulation results show that the network information security has a large impact on fault protection and islanding operation control, which leads to the expansion of the outage scope and the failure of islanding operation frequency adjustment. This article also provides a simulation basis for the analysis of CPS operation characteristics and the identification and prevention of cyber network security events.https://doi.org/10.1049/cps2.12003
collection DOAJ
language English
format Article
sources DOAJ
author Wanxing Sheng
Keyan Liu
Ying Liang
spellingShingle Wanxing Sheng
Keyan Liu
Ying Liang
Comprehensive fault simulation method in active distribution network with the consideration of cyber security
IET Cyber-Physical Systems
author_facet Wanxing Sheng
Keyan Liu
Ying Liang
author_sort Wanxing Sheng
title Comprehensive fault simulation method in active distribution network with the consideration of cyber security
title_short Comprehensive fault simulation method in active distribution network with the consideration of cyber security
title_full Comprehensive fault simulation method in active distribution network with the consideration of cyber security
title_fullStr Comprehensive fault simulation method in active distribution network with the consideration of cyber security
title_full_unstemmed Comprehensive fault simulation method in active distribution network with the consideration of cyber security
title_sort comprehensive fault simulation method in active distribution network with the consideration of cyber security
publisher Wiley
series IET Cyber-Physical Systems
issn 2398-3396
publishDate 2021-03-01
description Abstract With the many characteristics of cyber–physical systems (CPS), including the complex evolution of various dynamic processes in distribution networks (DNs), communication modes and serious network security events have become important issues. From the perspective of DN analysis, traditional electrical digital simulations cannot access current models of communication systems and cyber network security events. The interactions between cyber and physical networks cannot be simulated and analysed simultaneously, which is challenging to the development of CPS simulations of DNs. To evaluate the impact of cyber networks on physical networks, a CPS simulation platform that contains physical, communication and control layers is discussed. Three‐phase short‐circuit fault processing and islanding operation control are simulated by data interactions among three‐layer models that are used to analyse the impact of communication data tampering on fault handling processes. The influence of data tampering on fault processing and the influence of false data injection and data interception on islanding operation control processes are analysed. The simulation results show that the network information security has a large impact on fault protection and islanding operation control, which leads to the expansion of the outage scope and the failure of islanding operation frequency adjustment. This article also provides a simulation basis for the analysis of CPS operation characteristics and the identification and prevention of cyber network security events.
url https://doi.org/10.1049/cps2.12003
work_keys_str_mv AT wanxingsheng comprehensivefaultsimulationmethodinactivedistributionnetworkwiththeconsiderationofcybersecurity
AT keyanliu comprehensivefaultsimulationmethodinactivedistributionnetworkwiththeconsiderationofcybersecurity
AT yingliang comprehensivefaultsimulationmethodinactivedistributionnetworkwiththeconsiderationofcybersecurity
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