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The scheduling of deliveries in a production-distribution system with multiple buyers

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  • Jiafu Tang
  • Kai-Leung Yung
  • Iko Kaku
  • Jianbo Yang

Abstract

In a real production and distribution business environment with one supplier and multiple heterogeneous buyers, the differences in buyers’ ordering cycles have influence on production arrangements. Consequently, the average inventory level (AIL) at the supplier’s end is affected by both the production policy and the ordering policy, typically by the scheduling of deliveries. Consequently, the average inventory holding cost is most deeply affected. In this paper, it is proposed that the scheduling of deliveries be formulated as a decision problem to determine the time point at which deliveries are made to buyers in order to minimize the supplier’s average inventory. A formulation of the average inventory level (AIL) in a production cycle at the supplier’s end using a lot-for-lot policy is developed. Under the lot-for-lot policy, the scheduling of deliveries ( SP) is formulated as a nonlinear programming model used to determine the first delivery point for each buyer with an objective to minimize the sum of the product of the individual demand quantity and the first delivery time for each buyer. Thus, the SP model determines not only the sequence of the first deliveries to individual buyers, but also the time when the deliveries are made. An iterative heuristic procedure ( IHP) is developed to solve the SP model assuming a given sequence of buyers. Six sequence rules are considered and evaluated via simulation. Copyright Springer Science+Business Media, LLC 2008

Suggested Citation

  • Jiafu Tang & Kai-Leung Yung & Iko Kaku & Jianbo Yang, 2008. "The scheduling of deliveries in a production-distribution system with multiple buyers," Annals of Operations Research, Springer, vol. 161(1), pages 5-23, July.
  • Handle: RePEc:spr:annopr:v:161:y:2008:i:1:p:5-23:10.1007/s10479-007-0291-0
    DOI: 10.1007/s10479-007-0291-0
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    Cited by:

    1. Bylka, StanisLaw, 2011. "Non-cooperative strategies for production and shipment lot sizing in one vendor-multi-buyer system," International Journal of Production Economics, Elsevier, vol. 131(1), pages 372-382, May.
    2. Amir Hossein Nobil & Amir Hosein Afshar Sedigh & Leopoldo Eduardo Cárdenas-Barrón, 2020. "A multiproduct single machine economic production quantity (EPQ) inventory model with discrete delivery order, joint production policy and budget constraints," Annals of Operations Research, Springer, vol. 286(1), pages 265-301, March.
    3. Stanisław Bylka, 2010. "A Stackelberg game in a production-distribution system with multiple buyers," Operations Research and Decisions, Wroclaw University of Science and Technology, Faculty of Management, vol. 20(2), pages 5-24.

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