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Optimal integrated production and inventory cycles in a whole green manufacturing supply chain network with coordination

机译:在整个绿色制造供应链网络中进行最佳的生产和库存整合整合

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This paper proposes integrated production and inventory cycle in a whole green manufacturing supply chain network which consists of multiple-raw materials suppliers named as tier-2 suppliers, multiple-parts suppliers named as tier-1 suppliers, a manufacturer, multiple distributors, multiple retailers and a third party product collector. In a whole manufacturing supply chain network, tier-2 suppliers supply raw materials to tier-1 suppliers producing parts. Parts from tier-1 suppliers are then supplied to a manufacturer which manufactures and assembles parts into finished products. Then, the finished products will be delivered to distributors distributing them to retailers. Because each player wishes to minimize total cost for itself and can supply multiple raw materials and parts, there is a need for coordination among players of the supply chain. The coordination which is used in this paper is for both centralized and decentralized decision processes. Due to environmental and ecological consciousness and responsibility as a result of increasingly rigid environmental legislations and growing environmental concerns in recent years, this paper also considers recovery option of finished products where some of the parts will be reused in new finished products. A mathematical model with multiple decision variables is developed. A numerical example is presented and results discussed.
机译:本文提出了一个完整的绿色制造供应链网络中的集成生产和库存周期,该网络由多个名为二级供应商的原材料供应商,多个一级供应商的多个零件供应商,一个制造商,多个分销商,多个零售商组成和第三方产品收集者。在整个制造供应链网络中,二级供应商向生产零件的一级供应商提供原材料。然后,将来自一级供应商的零件提供给制造商,该制造商将零件制造并将其组装成最终产品。然后,将成品交付给分销商,再将其分发给零售商。由于每个参与者都希望将自身的总成本降至最低,并且可以供应多种原材料和零件,因此需要在供应链的参与者之间进行协调。本文使用的协调既适用于集中决策过程,也适用于分散决策过程。由于近年来严格的环境法规和对环境日益关注的结果,由于对环境和生态的意识和责任感,本文还考虑了成品的回收方案,其中某些零件将在新的成品中重复使用。建立了具有多个决策变量的数学模型。给出了一个数值例子并讨论了结果。

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