Worst-Case Interdiction Analysis of Large-Scale Electric Power Grids¶
Salmeron, J., Wood, K., & Baldick, R. (2009). Worst-Case Interdiction Analysis of Large-Scale Electric Power Grids. IEEE Transactions on Power Systems, 24(1), 96-104.
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Primes¶
- Cut
- Organizational and social analysis. A small cut between two clusters of employees identifies a structural hole or coordination weak point, and bridge-and-bond analyses locate where information flows narrowly or stops. Logistics and infrastructure. Supply-chain bottlenecks are minimum cuts of the flow graph; road congestion is decided by small cuts such as river crossings and passes; and vulnerability assessment for power and water grids locates critical-cut edges whose removal partitions the system.
This sourceFormulates power-grid vulnerability as identifying critical sets of lines (a minimum-cut/network-interdiction problem) whose removal partitions the grid and maximizes disruption.
- Organizational and social analysis. A small cut between two clusters of employees identifies a structural hole or coordination weak point, and bridge-and-bond analyses locate where information flows narrowly or stops. Logistics and infrastructure. Supply-chain bottlenecks are minimum cuts of the flow graph; road congestion is decided by small cuts such as river crossings and passes; and vulnerability assessment for power and water grids locates critical-cut edges whose removal partitions the system.
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