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Cost and environmental trade-offs in supply chain network design and planning: the merit of a simulation-based approach

机译:供应链网络设计和规划中的成本和环境权衡:基于仿真的方法的优点

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We develop a simulation-based optimization methodology for the joint design and planning of globalized supply chains (SCs) under minimization objectives for cost and CO2 emissions. The assumptions required for the analytical optimization of such SCs include deterministic lead times, no-backorder occurrences at central distribution facilities, and powers-of-two replenishments of inventories at the SC nodes. The paper aims to investigate whether and how will the decisions that stem from the analytical optimization process change when these assumptions are relaxed. The proposed methodology is employed in a realistic SC structure. The results reveal that (i) the optimal order cycles of the nodes of the SC are not necessarily powers of two, (ii) the central distribution facilities have the option to operate at lower service levels, (iii) the network's cost and CO2 emissions under optimality are reduced by approximately 0.9%, and (iv) the strategic network design decisions align with those of the analytical solution.
机译:我们为成本和二氧化碳排放量最小化目标下的全球化供应链(SC)的联合设计和规划开发了基于仿真的优化方法。此类供应链的分析优化所需的假设包括确定性的交货时间,中央配电设施的无拖欠订单发生以及供应链节点的两次补货权。本文旨在研究放宽这些假设后,分析优化过程产生的决策是否以及将如何改变。所提出的方法用于实际的SC结构中。结果表明(i)SC节点的最佳订购周期不一定是2的幂,(ii)中央配电设施可以选择以较低的服务水平运行,(iii)网络的成本和CO2排放量最佳状态下的性能降低约0.9%;(iv)战略网络设计决策与分析解决方案的决策保持一致。

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