Bi-level mixed-integer linear programming algorithm for evaluating the impact of load-redistribution attacks on Volt-VAR optimization in high- and medium-voltage distribution systems

•A bi-level framework of load-redistribution attacks on VVO in an HMVDS is proposed.•A BMILP model to evaluate the impact of the load-redistribution attacks is developed.•An RBRD algorithm is designed and applied to solve the BMILP model.•Results show the impact of the attacks and the effectiveness...

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Published inInternational journal of electrical power & energy systems Vol. 128; p. 106683
Main Authors Shen, Zhijun, Liu, Mingbo, Xu, Lixin, Lu, Wentian
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.06.2021
Subjects
Online AccessGet full text
ISSN0142-0615
1879-3517
DOI10.1016/j.ijepes.2020.106683

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Abstract •A bi-level framework of load-redistribution attacks on VVO in an HMVDS is proposed.•A BMILP model to evaluate the impact of the load-redistribution attacks is developed.•An RBRD algorithm is designed and applied to solve the BMILP model.•Results show the impact of the attacks and the effectiveness of the proposed method. The increasing integration of distributed generators into distribution systems (DSs) poses significant challenges to the stable operation and cyber-physical security of integrated high- and medium-voltage distribution system (HMVDS), leaving Volt-VAR optimization (VVO) vulnerable to load-redistribution attacks. This study focused on VVO in an HMVDS subject to the load-redistribution attack. The VVO under load-redistribution attack was formulated as a single-leader-multi-follower bi-level mixed-integer linear programming (BMILP) model that captured the interaction between the attacker and DS operators. The attacker in the upper level aimed to maximize voltage deviations and load curtailment through load-redistribution attack, while the DS operators aimed to minimize the voltage deviations in the lower levels. A relaxation-based bi-level reformulation and decomposition algorithm was designed to solve the BMILP model through replacing each mixed-integer linear programming lower-level problem with multiple linear programming lower-level problems, and using nonnegative relaxation variables and penalty functions to ensure equivalence. Finally, case studies on a constructed HMVDS and a real-world HMVDS were conducted to illustrate the impact of load-redistribution attacks on VVO and verify the effectiveness of the proposed methods.
AbstractList •A bi-level framework of load-redistribution attacks on VVO in an HMVDS is proposed.•A BMILP model to evaluate the impact of the load-redistribution attacks is developed.•An RBRD algorithm is designed and applied to solve the BMILP model.•Results show the impact of the attacks and the effectiveness of the proposed method. The increasing integration of distributed generators into distribution systems (DSs) poses significant challenges to the stable operation and cyber-physical security of integrated high- and medium-voltage distribution system (HMVDS), leaving Volt-VAR optimization (VVO) vulnerable to load-redistribution attacks. This study focused on VVO in an HMVDS subject to the load-redistribution attack. The VVO under load-redistribution attack was formulated as a single-leader-multi-follower bi-level mixed-integer linear programming (BMILP) model that captured the interaction between the attacker and DS operators. The attacker in the upper level aimed to maximize voltage deviations and load curtailment through load-redistribution attack, while the DS operators aimed to minimize the voltage deviations in the lower levels. A relaxation-based bi-level reformulation and decomposition algorithm was designed to solve the BMILP model through replacing each mixed-integer linear programming lower-level problem with multiple linear programming lower-level problems, and using nonnegative relaxation variables and penalty functions to ensure equivalence. Finally, case studies on a constructed HMVDS and a real-world HMVDS were conducted to illustrate the impact of load-redistribution attacks on VVO and verify the effectiveness of the proposed methods.
ArticleNumber 106683
Author Liu, Mingbo
Xu, Lixin
Shen, Zhijun
Lu, Wentian
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  givenname: Wentian
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  organization: School of Electric Power Engineering, South China University of Technology, Guangzhou 510640, China
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Keywords Load-redistribution attack
Volt-VAR optimization
High- and medium-voltage distribution system
Bi-level mixed-integer linear programming
Relaxation-based bi-level reformulation and decomposition
Language English
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Snippet •A bi-level framework of load-redistribution attacks on VVO in an HMVDS is proposed.•A BMILP model to evaluate the impact of the load-redistribution attacks is...
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StartPage 106683
SubjectTerms Bi-level mixed-integer linear programming
High- and medium-voltage distribution system
Load-redistribution attack
Relaxation-based bi-level reformulation and decomposition
Volt-VAR optimization
Title Bi-level mixed-integer linear programming algorithm for evaluating the impact of load-redistribution attacks on Volt-VAR optimization in high- and medium-voltage distribution systems
URI https://dx.doi.org/10.1016/j.ijepes.2020.106683
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