A distributionally robust multi-stage model for dynamic transmission line switching under wildfire risk, with decision-dependent line survival probabilities, is solved by a nested decomposition algorithm and shown to reduce load shedding versus two-stage alternatives.
Resilient expansion planning of electricity grid under prolonged wildfire risk
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Dynamic Transmission Line Switching Amidst Wildfire-Prone Weather Under Decision-Dependent Uncertainty
A distributionally robust multi-stage model for dynamic transmission line switching under wildfire risk, with decision-dependent line survival probabilities, is solved by a nested decomposition algorithm and shown to reduce load shedding versus two-stage alternatives.