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A Lagrangian heuristics for the truck scheduling problem in multi-door, multi-product Cross-Docking with constant processing time

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  • Gaudioso, Manlio
  • Monaco, Maria Flavia
  • Sammarra, Marcello

Abstract

The paper describes a Lagrangian heuristic algorithm for a cross-docking problem, where given amounts of several products must be directly transshipped from a given set of inbound trucks to a given set of outbound trucks. The cross-docking centre is equipped with some inbound and outbound doors (or gates), where the discharging/loading activities, which are assumed to require a constant time for each truck, take place. The objective is to schedule the activities and to design the transshipment plan, while minimizing the ending time of the whole process. Moving along a research line recently traced for the single-door case, the main contribution of the paper is the Lagrangian decomposition scheme for the structured integer linear model of the problem. In particular, decomposition in three subproblems is provided. For all such problems effective solution algorithms are proposed. Two repairing heuristics are embedded into the algorithm for tackling the Lagrangian dual, thus allowing calculation of both lower and upper bounds on the optimal objective function. The performance of the algorithm is evaluated through extensive computational experiments on instances of different typologies in terms of number of gates, trucks and products.

Suggested Citation

  • Gaudioso, Manlio & Monaco, Maria Flavia & Sammarra, Marcello, 2021. "A Lagrangian heuristics for the truck scheduling problem in multi-door, multi-product Cross-Docking with constant processing time," Omega, Elsevier, vol. 101(C).
  • Handle: RePEc:eee:jomega:v:101:y:2021:i:c:s0305048319311922
    DOI: 10.1016/j.omega.2020.102255
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    References listed on IDEAS

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    Cited by:

    1. Chargui, Tarik & Ladier, Anne-Laure & Bekrar, Abdelghani & Pan, Shenle & Trentesaux, Damien, 2022. "Towards designing and operating physical internet cross-docks: Problem specifications and research perspectives," Omega, Elsevier, vol. 111(C).
    2. Ji, Bin & Zhang, Zheng & Yu, Samson S. & Zhou, Saiqi & Wu, Guohua, 2023. "Modelling and heuristically solving many-to-many heterogeneous vehicle routing problem with cross-docking and two-dimensional loading constraints," European Journal of Operational Research, Elsevier, vol. 306(3), pages 1219-1235.
    3. Vanajakumari, Manoj & Sun, Haoying & Jones, Ashley & Sriskandarajah, Chelliah, 2022. "Supply chain planning: A case for Hybrid Cross-Docks," Omega, Elsevier, vol. 108(C).
    4. Tarik Chargui & Anne-Laure Ladier & Abdelghani Bekrar & Shenle Pan & Damien Trentesaux, 2022. "Towards designing and operating Physical Internet cross-docks: problem specifications and research perspectives," Post-Print hal-03624314, HAL.
    5. Li, Mingjie & Hao, Jin-Kao & Wu, Qinghua, 2024. "A flow based formulation and a reinforcement learning based strategic oscillation for cross-dock door assignment," European Journal of Operational Research, Elsevier, vol. 312(2), pages 473-492.

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