Performance of Neighborhood-Watch-Based Resilient Distributed Energy Management Algorithm Under Different Types of Cyberattacks

With the intelligence and interconnection of power systems, distributed generation (DGs) and distributed control algorithm have been developed rapidly. Virtual power plant (VPP), formed by the aggregation of multiple distributed generation agents, can perform distributed economic dispatch (EP) based...

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Published in2021 IEEE 4th International Electrical and Energy Conference (CIEEC) pp. 1 - 5
Main Authors Hou, Botao, Zeng, Siming, Xi, Bo, Jia, Shuyu, Guo, Qinglai, Xu, Luo, Sun, Hongbin
Format Conference Proceeding
LanguageEnglish
Published IEEE 28.05.2021
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Abstract With the intelligence and interconnection of power systems, distributed generation (DGs) and distributed control algorithm have been developed rapidly. Virtual power plant (VPP), formed by the aggregation of multiple distributed generation agents, can perform distributed economic dispatch (EP) based on the consensus algorithm. In order to protect the distributed economic dispatch process from communication failure or cyberattack, a resilient distributed energy management algorithm called neighborhood watch mechanism has been proposed. However, the attacker who wants to endanger the stability of the system or obtain the economic benefits, carefully designed stealthy attacks or collusion attacks may destroy the current defense strategy. This paper analyzes the performance of the resilient distributed energy management algorithm of neighborhood watch mechanism under different types of cyberattacks, and tests the specific performance through numerical examples.
AbstractList With the intelligence and interconnection of power systems, distributed generation (DGs) and distributed control algorithm have been developed rapidly. Virtual power plant (VPP), formed by the aggregation of multiple distributed generation agents, can perform distributed economic dispatch (EP) based on the consensus algorithm. In order to protect the distributed economic dispatch process from communication failure or cyberattack, a resilient distributed energy management algorithm called neighborhood watch mechanism has been proposed. However, the attacker who wants to endanger the stability of the system or obtain the economic benefits, carefully designed stealthy attacks or collusion attacks may destroy the current defense strategy. This paper analyzes the performance of the resilient distributed energy management algorithm of neighborhood watch mechanism under different types of cyberattacks, and tests the specific performance through numerical examples.
Author Guo, Qinglai
Xu, Luo
Hou, Botao
Xi, Bo
Jia, Shuyu
Sun, Hongbin
Zeng, Siming
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  fullname: Sun, Hongbin
  organization: Tsinghua University,Department of Electrical Engineering,Beijing,China
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SubjectTerms cyber-physical-system
Cyberattack
Decentralized control
Distributed databases
distributed energy management
Economics
Energy management
neighborhood-watch-based resilient control
Power system stability
Stability analysis
Title Performance of Neighborhood-Watch-Based Resilient Distributed Energy Management Algorithm Under Different Types of Cyberattacks
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