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Reliable facility location design under disruptions

机译:中断条件下可靠的设施位置设计

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Distribution networks have been facing an increased exposure to risk of unpredicted disruptions causing significant economic forfeitures. At the same time, the existing literature features very few studies which examine the impact of facility fortification for improving network reliability. In this paper, we present two related models for design of reliable distribution networks: a reliable P-median problem (RPMP) and a reliable uncapacitated fixed-charge location problem (RUFL). Both models consider heterogenous facility failure probabilities, one layer of supplier backup, and facility fortification within a finite budget. Both RPMP and RUFL are formulated as nonlinear integer programming models and proved to be .VP-hard. We develop Lagrangian relaxation-based (LR) solution algorithms and demonstrate their computational efficiency. We compare the effectiveness of the LR-based solutions to that of the solutions obtained by a myopic policy which aims to fortify most reliable facilities regardless of the demand topology. Finally, we discuss an alternative way to assess the effectiveness of the design solutions by using the rate of return on fortification investment.
机译:分销网络面临着无法预测的中断风险的增加,导致重大的经济损失。同时,现有文献中很少有研究研究设施设防对提高网络可靠性的影响。在本文中,我们为可靠的配电网络设计提供了两个相关模型:可靠的P中值问题(RPMP)和可靠的无能力固定费用定位问题(RUFL)。两种模型均考虑了异类设施的故障概率,一层供应商后备以及有限预算内的设施设防。 RPMP和RUFL都被公式化为非线性整数规划模型,并被证明是.VP-hard的。我们开发了基于拉格朗日松弛法(LR)的求解算法,并演示了它们的计算效率。我们将基于LR的解决方案与通过旨在增强最可靠设施的近视策略获得的解决方案的有效性进行比较,而与需求拓扑无关。最后,我们讨论了一种通过使用设防投资收益率来评估设计解决方案有效性的替代方法。

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