A Simulation-based Optimization Approach to Logistic and Supply Chain Network Design

Michael C. Jones, T. Mazzuchi, S. Sarkani
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Abstract

The Department of Defense (DoD) operates a world-wide supply chain, which in 2017 contained nearly 5 million items collectively valued at over $90 billion. Since at least 1990, designing and operating this supply chain, and adapting it to ever-changing military requirements, are highly complex and tightly coupled problems, which the highest levels of DoD recognize as weaknesses. Military supply chains face a wide range of challenges. Decisions made at the operational and tactical levels of logistics can alter the effectiveness of decisions made at the strategic level. Decisions must be made with incomplete information. As a result, practical solutions must simultaneously incorporate decisions made at all levels as well as take into account the uncertainty faced by the logistician. The design of modern military supply chains, particularly for large networks where many values are not known precisely, is recognized as too complex for many techniques found in the academic literature. Much of the literature in supply chain network design makes simplifying assumptions, such as constant per-unit transportation costs regardless of the size of the shipment, the shipping mode selected, the time available for the delivery, or the route taken. This article avoids these assumptions to provide an approach the practitioner can use when designing and adapting supply chain networks. This research proposes a simulation-based optimization approach to find a near-optimal solution to a large supply chain network design problem of the scale faced by a theater commander, while recognizing the complexity and uncertainty that the practicing military logistician must deal with.
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基于仿真的物流与供应链网络优化设计方法
美国国防部(DoD)运营着一个全球供应链,2017年该供应链包含近500万件物品,总价值超过900亿美元。至少自1990年以来,设计和操作这条供应链,并使其适应不断变化的军事需求,是高度复杂和紧密耦合的问题,国防部最高层认为这是弱点。军事供应链面临着广泛的挑战。在后勤的作战和战术层面上做出的决策可以改变在战略层面上做出的决策的有效性。决策必须在信息不完整的情况下做出。因此,实际的解决办法必须同时纳入各级作出的决定,并考虑到后勤人员所面临的不确定性。现代军事供应链的设计,特别是对于许多价值不精确的大型网络,对于学术文献中发现的许多技术来说,被认为过于复杂。许多关于供应链网络设计的文献都简化了假设,例如,无论货物的大小、所选择的运输模式、可用的交付时间或所采取的路线,单位运输成本都是恒定的。本文避免了这些假设,提供了从业者在设计和调整供应链网络时可以使用的方法。本研究提出了一种基于仿真的优化方法,在认识到实际军事后勤人员必须处理的复杂性和不确定性的同时,为战区指挥官面临的大规模供应链网络设计问题找到接近最优的解决方案。
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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