textabstractInspired by reliability issues in electric transmission networks, we use a probabilistic approach to study the occurrence of large failures in a stylized cascading line failure model. Such models capture the phenomenon where an initial line failure potentially triggers massive knock-on effects. Under certain critical conditions, the probability that the number of line failures exceeds a large threshold obeys a power-law distribution, a distinctive property observed in empiric blackout data. In this paper, we examine the robustness of the power-law behavior by exploring under which conditions this behavior prevails
International audienceTo systematically study key factors affecting cascading failures in power syst...
To systematically study key factors affecting cascading failures in power systems, this paper advanc...
International audienceTo systematically study key factors affecting cascading failures in power syst...
Inspired by reliability issues in electric transmission networks, we use a probabilistic approach to...
Inspired by reliability issues in electric transmission networks, we use a probabilistic approach to...
Inspired by reliability issues in electric transmission networks, we use a probabilistic approach to...
Inspired by reliability issues in electric transmission networks, we use a probabilistic approach to...
Inspired by reliability issues in electric transmission networks, we use a probabilistic approach to...
Inspired by reliability issues in electric transmission networks, we use a probabilistic approach to...
Inspired by reliability issues in electric transmission networks, we use a probabilistic approach to...
Inspired by reliability issues in electric transmission networks, we use a probabilistic approach to...
Inspired by reliability issues in electric transmission networks, we use a probabilistic approach to...
Abstract — We compare and test statistical estimates of failure propagation in data from versions of...
To systematically study key factors affecting cascading failures in power systems, this paper advanc...
To systematically study key factors affecting cascading failures in power systems, this paper advanc...
International audienceTo systematically study key factors affecting cascading failures in power syst...
To systematically study key factors affecting cascading failures in power systems, this paper advanc...
International audienceTo systematically study key factors affecting cascading failures in power syst...
Inspired by reliability issues in electric transmission networks, we use a probabilistic approach to...
Inspired by reliability issues in electric transmission networks, we use a probabilistic approach to...
Inspired by reliability issues in electric transmission networks, we use a probabilistic approach to...
Inspired by reliability issues in electric transmission networks, we use a probabilistic approach to...
Inspired by reliability issues in electric transmission networks, we use a probabilistic approach to...
Inspired by reliability issues in electric transmission networks, we use a probabilistic approach to...
Inspired by reliability issues in electric transmission networks, we use a probabilistic approach to...
Inspired by reliability issues in electric transmission networks, we use a probabilistic approach to...
Inspired by reliability issues in electric transmission networks, we use a probabilistic approach to...
Abstract — We compare and test statistical estimates of failure propagation in data from versions of...
To systematically study key factors affecting cascading failures in power systems, this paper advanc...
To systematically study key factors affecting cascading failures in power systems, this paper advanc...
International audienceTo systematically study key factors affecting cascading failures in power syst...
To systematically study key factors affecting cascading failures in power systems, this paper advanc...
International audienceTo systematically study key factors affecting cascading failures in power syst...