4.7 Article

The mixed capacitated general routing problem under uncertainty

Journal

EUROPEAN JOURNAL OF OPERATIONAL RESEARCH
Volume 240, Issue 2, Pages 382-392

Publisher

ELSEVIER
DOI: 10.1016/j.ejor.2014.07.023

Keywords

Routing problem; Mixed graph; Neighborhood search; Probabilistic constraints

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We study the General Routing Problem defined on a mixed graph and with stochastic demands. The problem under investigation is aimed at finding the minimum cost set of routes to satisfy a set of clients whose demand is not deterministically known. Since each vehicle has a limited capacity, the demand uncertainty occurring at some clients affects the satisfaction of the capacity constraints, that, hence, become stochastic. The contribution of this paper is twofold: firstly we present a chance-constrained integer programming formulation of the problem for which a deterministic equivalent is derived. The introduction of uncertainty into the problem poses severe computational challenges addressed by the design of a branch-and-cut algorithm, for the exact solution of limited size instances, and of a heuristic solution approach exploring promising parts of the search space. The effectiveness of the solution approaches is shown on a probabilistically constrained version of the benchmark instances proposed in the literature for the mixed capacitated general routing problem. (C) 2014 Elsevier B.V. All rights reserved.

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