arXiv · 2608.05413
A Relaxation-Based Decomposition Approach for Solving a Supported-Evacuation Problem in Wildfires
Abstract
This study addresses the critical yet under researched area of supported evacuation for vulnerable populations during wildfires, such as hospital patients and long term care residents, by developing a two stage stochastic optimization model that optimizes facility location, fleet sizing, and vehicle routing under strict time windows. To overcome the problem NP hard complexity, the authors propose an innovative solution methodology leveraging Logic Based Benders Decomposition, featuring Combinatorial Benders Cuts and logic based inequalities. Extensive numerical experiments and real world data from a community wildfire drill in Roxborough Park, Colorado, demonstrate that the proposed approach yields high quality solutions, significantly improving shelter placement, vehicle utilization, and overall evacuation efficiency compared to alternative policies.
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Shahryar Moradi, Antoine Sauré, Jonathan Patrick. 2026-08-05. A Relaxation-Based Decomposition Approach for Solving a Supported-Evacuation Problem in Wildfires. https://arxiv.org/abs/2608.05413
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