Review of active defense methods against power CPS false data injection attacks from the multiple spatiotemporal perspective

The power cyber–physical system (CPS) realizes the wide-area interconnection of new energy sources and multiple loads and the dynamic interaction of information and energy flows; however it faces increasingly severe security threats of false data injection attacks (FDIAs). In this context, the activ...

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Main Authors: Xiaoyong Bo, Zhaoyang Qu, Yaowei Liu, Yunchang Dong, Zhenming Zhang, Mingshi Cui
Format: Article
Language:English
Published: Elsevier 2022-11-01
Series:Energy Reports
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352484722016808
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author Xiaoyong Bo
Zhaoyang Qu
Yaowei Liu
Yunchang Dong
Zhenming Zhang
Mingshi Cui
author_facet Xiaoyong Bo
Zhaoyang Qu
Yaowei Liu
Yunchang Dong
Zhenming Zhang
Mingshi Cui
author_sort Xiaoyong Bo
collection DOAJ
description The power cyber–physical system (CPS) realizes the wide-area interconnection of new energy sources and multiple loads and the dynamic interaction of information and energy flows; however it faces increasingly severe security threats of false data injection attacks (FDIAs). In this context, the active defense methods against power CPS FDIAs from the multiple spatiotemporal perspective are summarized and analyzed in this paper. First, the architecture of a power CPS is abstracted and its multiple spatiotemporal coordination characteristic and FDIAs security risk are expounded upon. Then, the active defense system against FDIAs is conceived in the spatiotemporal coordinate system, and based on different spatiotemporal intersections, the six active defense methods and application examples – namely network deception, data encryption protection, vulnerability policy protection, false identification correction, traffic anomaly detection, and fault prevention control – are summarized. Finally, the limitations of existing active defense methods against FDIAs are discussed, and the linked defense methods with multiple spatiotemporal coordination are prospected.
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spelling doaj.art-766e509764dc437a8ca7ecef1458c2c92023-02-21T05:13:02ZengElsevierEnergy Reports2352-48472022-11-0181123511248Review of active defense methods against power CPS false data injection attacks from the multiple spatiotemporal perspectiveXiaoyong Bo0Zhaoyang Qu1Yaowei Liu2Yunchang Dong3Zhenming Zhang4Mingshi Cui5School of Electrical Engineering, Northeast Electric Power University, Jilin 132012, China; Electrical and Information Engineering College, Jilin Agricultural Science and Technology University, Jilin 132101, China; Jilin Province Engineering Technology Research Center of Power Big Data Intelligent Processing, Jilin 132012, ChinaSchool of Electrical Engineering, Northeast Electric Power University, Jilin 132012, China; Jilin Province Engineering Technology Research Center of Power Big Data Intelligent Processing, Jilin 132012, China; Correspondence to: Northeast Electric Power University, China.State Grid Jilin Electric Power Co., Ltd., Changchun 130012, ChinaSchool of Electrical Engineering, Northeast Electric Power University, Jilin 132012, China; Jilin Province Engineering Technology Research Center of Power Big Data Intelligent Processing, Jilin 132012, ChinaSchool of Electrical Engineering, Northeast Electric Power University, Jilin 132012, China; Jilin Province Engineering Technology Research Center of Power Big Data Intelligent Processing, Jilin 132012, ChinaState Grid East Inner Mongolia Electric Power Co., Ltd. Information and Communication Company, Hohhot 010011, ChinaThe power cyber–physical system (CPS) realizes the wide-area interconnection of new energy sources and multiple loads and the dynamic interaction of information and energy flows; however it faces increasingly severe security threats of false data injection attacks (FDIAs). In this context, the active defense methods against power CPS FDIAs from the multiple spatiotemporal perspective are summarized and analyzed in this paper. First, the architecture of a power CPS is abstracted and its multiple spatiotemporal coordination characteristic and FDIAs security risk are expounded upon. Then, the active defense system against FDIAs is conceived in the spatiotemporal coordinate system, and based on different spatiotemporal intersections, the six active defense methods and application examples – namely network deception, data encryption protection, vulnerability policy protection, false identification correction, traffic anomaly detection, and fault prevention control – are summarized. Finally, the limitations of existing active defense methods against FDIAs are discussed, and the linked defense methods with multiple spatiotemporal coordination are prospected.http://www.sciencedirect.com/science/article/pii/S2352484722016808Power cyber–physical systemFalse data injection attacksActive defenseMultiple spatiotemporal coordinationData-driven
spellingShingle Xiaoyong Bo
Zhaoyang Qu
Yaowei Liu
Yunchang Dong
Zhenming Zhang
Mingshi Cui
Review of active defense methods against power CPS false data injection attacks from the multiple spatiotemporal perspective
Energy Reports
Power cyber–physical system
False data injection attacks
Active defense
Multiple spatiotemporal coordination
Data-driven
title Review of active defense methods against power CPS false data injection attacks from the multiple spatiotemporal perspective
title_full Review of active defense methods against power CPS false data injection attacks from the multiple spatiotemporal perspective
title_fullStr Review of active defense methods against power CPS false data injection attacks from the multiple spatiotemporal perspective
title_full_unstemmed Review of active defense methods against power CPS false data injection attacks from the multiple spatiotemporal perspective
title_short Review of active defense methods against power CPS false data injection attacks from the multiple spatiotemporal perspective
title_sort review of active defense methods against power cps false data injection attacks from the multiple spatiotemporal perspective
topic Power cyber–physical system
False data injection attacks
Active defense
Multiple spatiotemporal coordination
Data-driven
url http://www.sciencedirect.com/science/article/pii/S2352484722016808
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