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Train design and routing optimization for evaluating criticality of freight railroad infrastructures

机译:用于评估货运铁路基础设施关键性的列车设计和路线优化

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Freight transportation by railroads is an integral part of the U.S. economy. Identifying critical rail infrastructures can help stakeholders prioritize protection initiatives or add necessary redundancy to maximize rail network resiliency. The criticality of an infrastructure element, link or yard, is based on the increased cost (delay) incurred when that element is disrupted. An event of disruption can cause heavy congestion so that the capacity at links and yards should be considered when freight is re-routed. This paper proposes an optimization model for making-up and routing of trains in a disruptive situation to minimize the system-wide total cost, including classification time at yards and travel time along links. Train design optimization seeks to determine the optimal number of trains, their routes, and associated blocks, subject to various capacity and operational constraints at rail links and yards. An iterative heuristic algorithm is proposed to attack the computational burden for real-world networks. The solution algorithm considers the impact of volume on travel time in a congested or near-congested network. The proposed heuristics provide quality solutions with high speed, demonstrated by numerical experiments for small instances. A case study is conducted for the network of a major U.S. Class-I railroad based on publicly available data. The paper provides maps showing the criticality of infrastructure in the study area from the viewpoint of strategic planning. (C) 2014 Elsevier Ltd. All rights reserved.
机译:铁路货运是美国经济不可分割的一部分。确定关键的铁路基础设施可以帮助利益相关者确定保护计划的优先级或增加必要的冗余度,以最大化铁路网络的弹性。基础结构元素,链路或堆场的重要性基于该元素被破坏时增加的成本(延迟)。中断事件可能导致严重的拥堵,因此在重新安排货运路线时,应考虑连接处和堆场的容量。本文提出了一种用于在颠覆性情况下编组和安排火车的优化模型,以最大程度地降低整个系统的总成本,包括院子内的分类时间和沿路段的旅行时间。火车设计优化旨在确定火车的最佳数量,它们的路线以及相关的街区,但要受铁路连接线和货场的各种容量和运营限制的影响。提出了一种迭代启发式算法来应对现实网络的计算负担。解决方案算法考虑了拥塞或接近拥塞的网络中流量对旅行时间的影响。所提出的启发式方法可提供高速,高质量的解决方案,通过针对小实例的数值实验证明。根据公开数据,对美国主要I类铁路网络进行了案例研究。本文提供了从战略规划的角度显示研究区域基础设施的关键性的地图。 (C)2014 Elsevier Ltd.保留所有权利。

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