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An operational policy for a three-stage distributive supply chain system with retailers' backorders

机译:具有零售商缺货的三阶段分销供应链系统的操作策略

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This research deals with a production-inventory problem consisting of three-stage tree-type single-producer multi-distributor and multi-retailer supply chain network where a model has been developed for achieving the lowest total cost for operating a supply chain system with allowable shortage. In this research, the shortage is assumed to occur in a form of backorder. The refrigerator manufacturing can suitably be used to illustrate the scenario which makes the situation more rational and realistic. By assumptions, the customers will not go somewhere else, the cost of lost sale is not included in this case. The total cost of this tree-type distributive supply chain system is comprised of setup costs and holding costs at all echelons, and the backorder cost at retailer level only. A replenishment policy is sought to operate the system at a minimum cost. The problem is formulated as an unconstrained mixed-integer programming problem and a newly developed doubly hybrid meta-heuristic algorithm is adopted as the solution procedure. The solutions which determine the desired replenishment policy for the producer, distributors, and retailers are obtained to minimize the total system cost. A sensitivity analysis is performed to evaluate the outcome of the proposed solution procedure presented in this research. Numerical results are generated to demonstrate the solution procedure, and future research is indicated for further study.
机译:这项研究解决了由三级树型单生产者多分销商和多零售商供应链网络组成的生产库存问题,其中开发了一种模型,以在允许的范围内实现最低的总运营成本。短缺。在本研究中,假定短缺以延期交货的形式发生。冰箱的制造可以适当地用来说明使情况更加合理和现实的情况。通过假设,客户不会去其他地方,这种情况下不包括销售损失的成本。这种树型分布式供应链系统的总成本包括所有层级的设置成本和持有成本,以及仅零售商级别的延期交货成本。寻求补充策略以最小的成本操作系统。该问题被表述为无约束的混合整数规划问题,并且采用了新开发的双重混合元启发式算法作为求解过程。获得了为生产商,分销商和零售商确定所需补货策略的解决方案,以使总系统成本降至最低。进行敏感性分析以评估本研究中提出的解决方案的结果。数值结果表明了求解方法,并指出了今后的研究需要进一步研究。

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