Evaluating the performance of an advanced train dispatching system

A. D’Ariano, F. Corman, I. Hansen
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引用次数: 3

Abstract

In the last years, real-time railway traffic optimization experienced an increasing interest due to the expected growth of traffic and the limited possibilities of enhancing the infrastructure, which ask for a more efficient use of resources and the application of more advanced decision support tools. This paper presents a computerized train dispatching system, called ROMA (Railway traffic Optimization by Means of Alternative graphs), for supporting railway traffic controllers during operations. Innovative scheduling and rerouting algorithms have been developed in order to globally optimize disturbed railway traffic conditions. ROMA can anticipate the evolution of traffic, including the propagation of delays in a regional railway network, and can estimate the effects of different dispatching measures during a period of about 15 minutes ahead. Therefore, ROMA would enable traffic controllers to frequently perform incremental changes to the actual timetable to accommodate changes in traffic patterns due to disturbances, such as train delays and blocked tracks. An extensive computational study is carried out, based on a dispatching area of the Dutch railway network, to show the high potential of our train dispatching system as a support tool to improve punctuality.
先进列车调度系统的性能评价
在过去的几年里,由于交通的预期增长和增强基础设施的有限可能性,实时铁路交通优化经历了越来越多的兴趣,这要求更有效地利用资源和应用更先进的决策支持工具。本文提出了一种计算机化的列车调度系统,称为ROMA(铁路交通优化方法替代图),用于在运行期间支持铁路交通控制员。为了全局优化受干扰的铁路交通状况,人们开发了创新的调度和改道算法。ROMA可以预测交通的演变,包括区域铁路网的延误传播,并可以估计在大约15分钟内不同调度措施的影响。因此,ROMA将使交通管制员能够经常对实际时间表进行渐进式更改,以适应由于火车延误和轨道堵塞等干扰而导致的交通模式的变化。以荷兰铁路网络的调度区域为基础进行了广泛的计算研究,以显示我们的火车调度系统作为提高准点率的支持工具的巨大潜力。
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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