Title :
Optimal supply location selection and routing for emergency material delivery with uncertain demands
Author :
Han, Yunjun ; Guan, Xiaohong ; Shi, Leyuan
Author_Institution :
Center for Intell. & Networked Syst., Tsinghua Univ., Beijing, China
Abstract :
The supply location selection and routing (SLSR) problem integrates warehouse selection, and fleet routing and scheduling to optimize the supply chain and guarantee timely material delivery for disaster areas. Demand uncertainties are the inherent nature of the emergency material supply. In this paper, the SLSR problem is studied in considering uncertain demand and formulated as a probabilistic constrained integer programming (PCIP) model. The uncertainty is measured by the joint demand satisfactory level of disaster areas. The PCIP problem is intractable in general for its nonlinear and nonconvex property introduced by the probabilistic constraints and integer variables. With the introduction of p-efficient points an equivalent deterministic integer programming model is derived. A two-level solution scheme is developed to address the challenge of unknown and possibly a large number of p-efficient points simultaneously with high computational complexity. Numerical testing results show that the new method is efficient, and can be applied to solve large scale stochastic SLSR problem.
Keywords :
concave programming; facility location; integer programming; nonlinear programming; scheduling; supply and demand; supply chain management; emergency material delivery; fleet routing; nonconvex property; nonlinear programming; optimal supply location selection; p-efficient point; probabilistic constrained integer programming; scheduling problem; supply chain; uncertain demand; Testing; Topology;
Conference_Titel :
Information Networking and Automation (ICINA), 2010 International Conference on
Conference_Location :
Kunming
Print_ISBN :
978-1-4244-8104-0
Electronic_ISBN :
978-1-4244-8106-4
DOI :
10.1109/ICINA.2010.5636428