The simultaneous berth and quay crane allocation problem
This paper addresses efficient berth and crane allocation scheduling at a multi-user container terminal. First, we introduce a formulation for the simultaneous berth and crane allocation problem. Next, by employing genetic algorithm we develop a heuristic to find an approximate solution for the problem. The fitness value of a chromosome is obtained by crane transfer scheduling across berths, which is determined by a maximum flow problem-based algorithm based on a berth allocation problem solution defined by the chromosome. The results of numerical experiments show that the proposed heuristic is applicable to solve this difficult but essential terminal operation problem.
Year of publication: |
2008
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Authors: | Imai, Akio ; Chen, Hsieh Chia ; Nishimura, Etsuko ; Papadimitriou, Stratos |
Published in: |
Transportation Research Part E: Logistics and Transportation Review. - Elsevier, ISSN 1366-5545. - Vol. 44.2008, 5, p. 900-920
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Publisher: |
Elsevier |
Keywords: | Berth allocation Crane scheduling Terminal management Container transportation Mathematical programming |
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