A study of cascading failures in real and synthetic power grid topologies

Author:

SPIEWAK RUSSELLORCID,SOLTAN SALEHORCID,FORMAN YAKIR,BULDYREV SERGEY V.,ZUSSMAN GILORCID

Abstract

AbstractUsing the direct current power flow model, we study cascading failures and their spatial and temporal properties in the U.S. Western Interconnection (USWI) power grid. We show that yield (the fraction of demand satisfied after the cascade) has a bimodal distribution typical of a first-order transition. The single line failure leads either to an insignificant power loss or to a cascade which causes a major blackout with yield less than 0.8. The former occurs with high probability if line tolerance α (the ratio of the maximal load a line can carry to its initial load) is greater than 2, while a major blackout occurs with high probability in a broad range of 1 < α < 2. We also show that major blackouts begin with a latent period (with duration proportional to α) during which few lines overload and yield remains high. The existence of the latent period suggests that intervention during early stages of a cascade can significantly reduce the risk of a major blackout. Finally, we introduce the preferential Degree And Distance Attachment model to generate random networks with similar degree, resistance, and flow distributions to the USWI. Moreover, we show that the Degree And Distance Attachment model behaves similarly to the USWI against failures.

Publisher

Cambridge University Press (CUP)

Subject

Sociology and Political Science,Communication,Social Psychology

Cited by 9 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Percolation in fractal spatial networks with long-range interactions;Physical Review Research;2023-05-30

2. Predicting the cascading dynamics in complex networks via the bimodal failure size distribution;Chaos: An Interdisciplinary Journal of Nonlinear Science;2023-02-01

3. Spatio-Temporal Failure Propagation in Cyber-Physical Power Systems;2022 3rd International Conference on Smart Grid and Renewable Energy (SGRE);2022-03-20

4. Reducing power grid cascading failure propagation by minimizing algebraic connectivity in edge addition;Frontiers of Information Technology & Electronic Engineering;2022-01-24

5. Spatio-Temporal Failure Propagation in Cyber-Physical Power Systems;2022

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