A reliability-related optimization problem in multidistribution multi-state logistics network

Yilin Song, Yi-Feng Niu
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Abstract

Logistics networks, as the fundamental infrastructure, play a critical role in boosting economic prosperity. In this paper, we model a logistics network as a multidistribution multi-state flow network (MFN) in which each arc has random capacity characterized by more than one probability distribution under different budget allocations. Accordingly, we construct an optimization model to minimize the total budget required for the network to achieve a given reliability value. To address this challenging reliability-related optimization problem, an effective method is developed by integrating the well-known binary-search method and an existing method that solves the budget-allocation multi-distribution MFN reliability problem. The effectiveness and time complexity of the proposed algorithm are analyzed, and a benchmark example is provided to demonstrate how to minimize the total budget under the condition that the network reliability is not below a specific threshold.
多配送多状态物流网络的可靠性优化问题
物流网络作为基础设施,对促进经济繁荣起着至关重要的作用。本文将一个物流网络建模为一个多分布多状态流网络(MFN),在不同的预算分配下,每个弧具有多个概率分布特征的随机容量。因此,我们构建了一个优化模型,以最小化网络达到给定可靠性值所需的总预算。为了解决这一具有挑战性的可靠性优化问题,将众所周知的二叉搜索方法与现有的解决预算分配多分布MFN可靠性问题的方法相结合,开发了一种有效的方法。分析了所提算法的有效性和时间复杂度,并给出了一个基准算例,说明了在网络可靠性不低于特定阈值的情况下,如何使总预算最小化。
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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