Liner shipping network design with emission control areas: A genetic algorithm-based approach

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Abstract

To curb emissions, containerized shipping lines face the traditional trade-off between cost and emissions (CO2 and SOx) reduction. This paper considers this element in the context of liner service design and proposes a mixed integer linear programming (MILP) model based on a multi-commodity pickup and delivery arc-flow formulation. The objective is to maximize the profit by selecting the ports to be visited, the sequence of port visit, the cargo flows between ports, as well as the number/operating speeds of vessels on each arc of the selected route. The problem also considers that Emission Control Areas (ECAs) exist in the liner network and accounts for the vessel carrying capacity. In addition to using the MILP solver of CPLEX, we develop in the paper a specific genetic algorithm (GA) based heuristic and show that it gives the possibility to reach an optimal solution when solving large size instances.

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Cariou, P., Cheaitou, A., Larbi, R., & Hamdan, S. (2018). Liner shipping network design with emission control areas: A genetic algorithm-based approach. Transportation Research Part D: Transport and Environment, 63, 604–621. https://doi.org/10.1016/j.trd.2018.06.020

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