4.8 Article

On the resilience of modern power systems: A complex network perspective

期刊

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.rser.2021.111646

关键词

Power system; Complex network; Structural resilience; Operational resilience; Multilayer networks; Extreme events

资金

  1. Fundamental Research Funds for the Central Universities
  2. Zhejiang Provincial Public Welfare Technology Application Research Project [LGJ21E070001]

向作者/读者索取更多资源

This paper provides a comprehensive literature review on the application of complex network theories in resilience evaluation and enhancement of modern power systems. It decomposes resilience into structural and operational aspects, discussing structural resilience through graph modeling and analyzing static and dynamic characteristics, and investigating operational resilience through the progression of preventive, corrective, and restorative strategies in extreme events. It also extends the discussion to multilayer networks as modern power systems are increasingly interconnected with communication networks and other energy carriers. Overall, complex network theories are found to be effective in understanding and improving the structural and operational resilience of modern power systems.
This paper provides a compressive literature review on the application of complex network theories in the resilience evaluation and enhancement of modern power systems. First, the resilience property is decomposed into structural and operational aspects. On one hand, the structural resilience is explained and reviewed by modeling modern power systems as graphs and analyzing the pertinent static and dynamic characteristics. On the other hand, after converting operational data to certain networks, the operational resilience is investigated throughout the progression of an extreme event, namely, from preventive, corrective, to restorative strategies. Moreover, the discussion on resilience evaluation and enhancement is extended to multilayer networks as modern power systems are increasingly coupled with communication networks and other energy carriers. It is concluded that complex network theories serve as an effective means to comprehending and refining the structural and operational resilience of modern power systems.

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