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Optimising container storage processes at multimodal terminals

Author

Listed:
  • B Casey

    (Queensland University of Technology, Brisbane, Queensland, Australia)

  • E Kozan

    (Queensland University of Technology, Brisbane, Queensland, Australia)

Abstract

Multimodal Container Terminals (MMCT) require comprehensive planning, programming and control in order to operate an efficient storage system. In this paper, a model has been developed for the storage system of the MMCT. It is an extension of the Blocks Relocation Problem, with incoming as well as outgoing containers, or ‘blocks’. The model deals with assigning containers to positions within the storage area, rehandling of containers to be retrieved, and calculation of the processing times in order to perform these actions. A number of constructive heuristics are presented in order to produce good initial solutions for this problem. Meta-heuristics are also used to improve on these solutions. Results from the various heuristics on a few case study problems are compared and discussed. This research will also provide a core piece of technology for the development of autonomous container handling systems for terminals.

Suggested Citation

  • B Casey & E Kozan, 2012. "Optimising container storage processes at multimodal terminals," Journal of the Operational Research Society, Palgrave Macmillan;The OR Society, vol. 63(8), pages 1126-1142, August.
  • Handle: RePEc:pal:jorsoc:v:63:y:2012:i:8:p:1126-1142
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    Citations

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    Cited by:

    1. Damla Kizilay & Deniz Türsel Eliiyi, 2021. "A comprehensive review of quay crane scheduling, yard operations and integrations thereof in container terminals," Flexible Services and Manufacturing Journal, Springer, vol. 33(1), pages 1-42, March.
    2. Gharehgozli, Amir & Zaerpour, Nima, 2018. "Stacking outbound barge containers in an automated deep-sea terminal," European Journal of Operational Research, Elsevier, vol. 267(3), pages 977-995.
    3. Carlo, Héctor J. & Vis, Iris F.A. & Roodbergen, Kees Jan, 2014. "Storage yard operations in container terminals: Literature overview, trends, and research directions," European Journal of Operational Research, Elsevier, vol. 235(2), pages 412-430.
    4. Vitalii Naumov & Igor Taran & Yana Litvinova & Marek Bauer, 2020. "Optimizing Resources of Multimodal Transport Terminal for Material Flow Service," Sustainability, MDPI, vol. 12(16), pages 1-13, August.
    5. M. Hakan Akyüz & Chung‐Yee Lee, 2014. "A mathematical formulation and efficient heuristics for the dynamic container relocation problem," Naval Research Logistics (NRL), John Wiley & Sons, vol. 61(2), pages 101-118, March.
    6. Guvenc Dik & Erhan Kozan, 2017. "A flexible crane scheduling methodology for container terminals," Flexible Services and Manufacturing Journal, Springer, vol. 29(1), pages 64-96, March.
    7. Andresson Silva Firmino & Ricardo Martins Abreu Silva & Valéria Cesário Times, 2019. "A reactive GRASP metaheuristic for the container retrieval problem to reduce crane’s working time," Journal of Heuristics, Springer, vol. 25(2), pages 141-173, April.
    8. Gharehgozli, A.H. & Roy, D. & de Koster, M.B.M., 2014. "Sea Container Terminals," ERIM Report Series Research in Management ERS-2014-009-LIS, Erasmus Research Institute of Management (ERIM), ERIM is the joint research institute of the Rotterdam School of Management, Erasmus University and the Erasmus School of Economics (ESE) at Erasmus University Rotterdam.

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