Developing a resilient, robust and efficient supply network in Africa

Q3 Decision Sciences
Jade F. Preston, Bruce A. Cox, Paul P. Rebeiz, Timothy W. Breitbach
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引用次数: 0

Abstract

PurposeSupply chains need to balance competing objectives; in addition to efficiency, supply chains need to be resilient to adversarial and environmental interference and robust to uncertainties in long-term demand. Significant research has been conducted designing efficient supply chains and recent research has focused on resilient supply chain design. However, the integration of resilient and robust supply chain design is less well studied. The purpose of the paper is to include resilience and robustness into supply chain design.Design/methodology/approachThe paper develops a method to include resilience and robustness into supply chain design. Using the region of West Africa, which is plagued with persisting logistical issues, the authors develop a regional risk assessment framework and then apply categorical risk to the countries of West Africa using publicly available data. A scenario reduction technique is used to focus on the highest risk scenarios for the model to be tractable. Next, the authors develop a mathematical model leveraging this framework to design a resilient supply network that minimizes cost while ensuring the network functions following a disruption. Finally, the authors examine the network's robustness to demand uncertainty via several plausible emergency scenarios.FindingsThe authors provide optimal sets of transshipment hubs with varying counts from 5 through 15 hubs. The authors determine there is no feasible solution that uses only five transshipment hubs. The authors' findings reinforce those seven transshipment hubs – the solution currently employed in West Africa – is the cheapest architecture to achieve resilience and robustness. Additionally, for each set of feasibility transshipment hubs, the authors provide connections between hubs and demand spokes.Originality/valueWhile, at the time of this research, three other manuscripts incorporated both resilience and robustness of the authors' research unique solved the problem as a network flow instead of as a set covering problem. Additionally, the authors establish a novel risk framework to guide the required amount of redundancy, and finally the out research proposes a scenario reduction heuristic to allow tractable exploration of 512 possible demand scenarios.
在非洲建立一个有弹性、稳健和高效的供应网络
供应链需要平衡竞争目标;除了效率之外,供应链还需要对敌对和环境干扰具有弹性,并对长期需求的不确定性具有强大的抵抗力。设计高效的供应链已经进行了大量的研究,最近的研究集中在弹性供应链设计上。然而,整合弹性和稳健的供应链设计的研究较少。本文的目的是将弹性和鲁棒性纳入供应链设计。设计/方法/途径本文开发了一种将弹性和鲁棒性纳入供应链设计的方法。这组作者以西非地区为例,开发了一个区域风险评估框架,然后利用可公开获得的数据将分类风险应用于西非国家。西非地区一直受到后勤问题的困扰。场景简化技术用于关注模型可处理的最高风险场景。接下来,作者开发了一个数学模型,利用这个框架来设计一个弹性供应网络,以最大限度地降低成本,同时确保网络在中断后的功能。最后,作者通过几种可能的紧急情况来检验网络对需求不确定性的鲁棒性。研究结果:作者提供了5到15个转运枢纽的最优集合。作者认为,不存在只使用五个转运中心的可行解决方案。这组作者的发现强化了这7个转运中心——西非目前采用的解决方案——是实现弹性和稳健性的最廉价架构。此外,对于每一组可行性转运枢纽,作者提供了枢纽和需求辐条之间的连接。原创性/价值虽然,在本研究期间,其他三篇论文结合了作者研究的弹性和鲁棒性,独特地将问题作为网络流而不是作为集合覆盖问题解决。此外,作者建立了一个新的风险框架来指导所需的冗余量,最后,我们的研究提出了一个场景简化启发式,允许对512个可能的需求场景进行可处理的探索。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.90
自引率
0.00%
发文量
5
审稿时长
12 weeks
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