4.6 Article

Location and Emergency Inventory Pre-Positioning for Disaster Response Operations: Min-Max Robust Model and a Case Study of Yushu Earthquake

期刊

PRODUCTION AND OPERATIONS MANAGEMENT
卷 27, 期 1, 页码 160-183

出版社

WILEY
DOI: 10.1111/poms.12789

关键词

disaster relief; facility location; network flow; inventory pre-positioning; min-max robust optimization

资金

  1. National Natural Science Foundation of China [71171047, 71222103, 71301138, 71525001]
  2. Hong Kong Research Grants Council General Research Fund [15240816E]

向作者/读者索取更多资源

Pre-positioning emergency inventory in selected facilities is commonly adopted to prepare for potential disaster threat. In this study, we simultaneously optimize the decisions of facility location, emergency inventory pre-positioning, and relief delivery operations within a single-commodity disaster relief network. A min-max robust model is proposed to capture the uncertainties in both the left- and right-hand-side parameters in the constraints. The former corresponds to the proportions of the pre-positioned inventories usable after a disaster attack, while the latter represents the demands of the inventories and the road capacities in the disaster-affected areas. We study how to solve the robust model efficiently and analyze a special case that minimizes the deprivation cost. The application of the model is illustrated by a case study of the 2010 earthquake attack at Yushu County in Qinghai Province of PR China. The advantage of the min-max robust model is demonstrated through comparison with the deterministic model and the two-stage stochastic model for the same problem. Experiment variants also show that the robust model outperforms the other two approaches for instances with significantly larger scales.

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