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Incorporating resilience determinants in supply chain network design model

机译:将弹性决定因素纳入供应链网络设计模型

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Purpose - The purpose of this paper is to develop a decision tool that enables supply chain (SC) architects to design resilient SC networks (SCNs). Two resilience design determinants are considered: SC density and node criticality. The effect of considering these determinants on network structures is highlighted based on the ability to resist disruptions and how SC performance is affected. Design/methodology/approach - A mixed-integer non-linear programming model is proposed as a proactive strategy to develop resilient structures; design determinants are formulated and considered as constraints. An upper limit is set for each determinant, and resistance capacity and performance of the developed structures are evaluated. These upper limits are then changed until SC performance stabilizes in case of no disruption. Findings - Resilient SCN structures are achieved at relatively low design determinants levels on the expense of profit and without experiencing shortage in case of no disruption. This reduction in profit can be minimized on setting counter values for the two determinants; relatively higher SC density with lower node criticality or vice versa. At very low SC density levels, the design model will reduce the number of open facilities largely leading to only one facility open at each echelon; therefore, shortage occurs and vulnerability to disruption increases. On the other hand, at high determinants levels, SC vulnerability also increases as a result of having more geographically clustered structures with higher inbound and outbound flows for each facility. Originality/value - In this paper, a novel proactive decision tool is adopted to design resilient SCNs Previous literature used metrics for SC density and node criticality to assess resilience; in this research, determinants are incorporated directly as constraints in the design model. Results give insight to SC architects on how to set determinant values to reach resilient structures with minimum performance loss in case of no disruption.
机译:目的-本文的目的是开发一种决策工具,使供应链(SC)架构师能够设计弹性SC网络(SCN)。考虑了两个弹性设计决定因素:SC密度和节点临界度。基于抵抗中断的能力以及SC性能如何受到影响,强调了考虑这些决定因素对网络结构的影响。设计/方法/方法-提出了一种混合整数非线性规划模型,作为开发弹性结构的主动策略;设计决定因素被公式化并视为约束。为每个决定因素设置一个上限,并评估已开发结构的电阻容量和性能。然后更改这些上限,直到在不中断的情况下SC性能稳定为止。研究结果-弹性SCN结构是在相对较低的设计决定因素水平下实现的,以牺牲利润为代价,并且在不中断的情况下不会出现短缺。可以通过为两个决定因素设置计数器值来最大程度地减少利润下降。较高的SC密度和较低的节点临界值,反之亦然。在极低的SC密度水平下,该设计模型将减少开放式设施的数量,从而在每个梯队仅开放一个设施。因此,会出现短缺,并且容易受到破坏。另一方面,在较高的决定因素水平下,SC脆弱性也由于每个机构的地理位置和地理位置更加集中的结构具有更高的入站和出站流量而增加。原创性/价值-在本文中,采用了一种新颖的主动决策工具来设计弹性SCN。以前的文献使用SC密度和节点关键性的指标来评估弹性;在这项研究中,行列式直接作为约束纳入设计模型。结果为SC架构师提供了有关如何设置行列式值以在不造成干扰的情况下以最小的性能损失达到弹性结构的见解。

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