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Collection network design with capacity planning in reverse logistics: static and restricted-dynamic models

机译:逆向物流容量规划的集合网络设计:静态和限制 - 动态模型

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摘要

This study proposes two collection network design models that determine the locations and capacities of collection centres and the allocations of refuse at demand points to the opened collection centres: a single-period static model for time-invariant demands and a multi-period restricted-dynamic model for time-variant demands over a planning horizon. The capacities of collection centres are not given, but decision variables are used to obtain cost savings by minimizing surplus capacities. The maximum allowable distance between collection centres and demand points and the minimum recovery rates of collection centres are also considered. Two heuristics are proposed for each of the two problems after formulating them as integer programming models. Computational experiments were conducted on various test instances, and the results are reported. It is shown from the test results that the restricted-dynamic approach outperforms the static model significantly when the refuse demands are time variant. Finally, some managerial insights are derived.
机译:本研究提出了两个收集网络设计模型,确定收集中心的位置和能力以及需求点的垃圾分配到开放的收集中心:时间不变需求的单周期静态模型和多个时期受限 - 动态时间变体需求模型在规划地平线上需求。没有给出收集中心的能力,但决策变量用于通过最小化剩余容量来获得成本节约。还考虑了收集中心和需求点之间的最大允许距离和收集中心的最小恢复率。为整数编程模型制定它们后,为两个问题中的每一个提出了两个启发式。在各种试验实例上进行了计算实验,并报告了结果。从测试结果显示,当垃圾需求是时间变量时,受限制的动态方法显着优于静态模型。最后,派生了一些管理洞察力。

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