Freight train scheduling for industrial lines with multiple railway undertakings

Daniel Haalboom, Nikola Bešinović
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Abstract

With the liberalisation of the rail freight market, the number of railway undertakings in operation is increasing. Trains run by several railway undertakings (RUs) converge at industrial lines leading up to terminals. Here, uncoordinated interaction between mainline RUs and limited infrastructure capacity leads to bottlenecks, which reduces resource utilisation of railway undertakings. Outsourcing last-mile operations to an independent local railway undertaking can improve capacity utilisation and decrease the time engines of mainline engines spend within the considered network. In this paper, we propose the Industrial Line Scheduling Problem with multiple RU, a resource scheduling model for freight trains at industrial lines. The aim is to minimise unproductive time of mainline engines and the number of deployed local engines. The results show that the potential savings per employed local engine are highly dependent the timetables of inbound and outbound trains within the network, the dwell time of railcars and on the degree of local railway undertaking involvement.

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多条铁路工业线路的货运列车调度
随着铁路货运市场的开放,运营中的铁路企业数量不断增加。多家铁路公司(RUs)运营的列车在通往终点站的工业线上汇集。在这里,干线铁路公司之间不协调的互动和有限的基础设施能力导致瓶颈,从而降低了铁路公司的资源利用率。将 "最后一英里 "的运营外包给独立的地方铁路企业,可以提高运力利用率,减少干线发动机在所考虑的网络中花费的时间。在本文中,我们提出了具有多个 RU 的工业线路调度问题,这是一种工业线路货运列车的资源调度模型。其目的是最大限度地减少干线发动机的非生产时间和部署的本地发动机数量。结果表明,每台本地发动机的潜在节余与网络内进出港列车的时刻表、轨道车的停留时间以及本地铁路企业的参与程度密切相关。
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来源期刊
CiteScore
7.10
自引率
8.10%
发文量
41
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