Journal Article

·2014

Designing a large-scale emergency logistics network - a case study for Kentucky

Umut R. Tuzkaya YTU , Sunderesh S. Heragu , Gerald W. Evans , Michael P. Johnson

European J of Industrial Engineering

Abstract

During a medical emergency in the USA, critical medical supplies such as medications, vaccines, gloves, masks and ventilators, are delivered to one location within each state. The state and local governments are responsible for delivering the supplies from this location, called the receiving, staging and storage (RSS) site to the points of dispense (PODs). The supplies can be sent from the RSS to PODs directly or via regional distribution nodes (RDNs). We develop two mixed-integer programming models for this emergency logistics network (ELN) problem. These two models are simplified to obtain equivalent models that lead to the same results, but with fewer constraints. The equivalent models are much less complex and have lower computational memory and time requirements. We optimise the required number and locations of RSSs and RDNs needed to satisfy the demands at the PODs within the required time windows. Experiments are conducted to illustrate how the proposed models can be applied to a real life problem.

Keywords

RSS Integer programming Scale (ratio) Operations research Computer science State (computer science) Engineering Operations management Operating system Geography Algorithm

Subject Areas

Facility Location and Emergency Management ·Organizational Behavior and Human Resource Management ·Social Sciences
Vehicle Routing Optimization Methods ·Industrial and Manufacturing Engineering ·Physical Sciences
Urban and Freight Transport Logistics ·Building and Construction ·Physical Sciences

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