Optimal Maintenance Clustering for Rail Track Components Subject to Possession Capacity Constraints

C. Dao, R. Basten, A. Hartmann
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引用次数: 0

Abstract

This paper studies the optimal maintenance planning of preventive maintenance and renewal activities for components in a single railway track when the available time for maintenance is limited. The rail-track system consists of several types of components, such as rail, ballast, and switches with different preventive maintenance and renewal intervals. To perform maintenance or renewal on the track, a train free period for maintenance, called a possession, is required. Since a major possession directly affects the regular train schedule, maintenance and renewal activities are clustered as much as possible. In a highly dense and utilized railway network, the possession time on the track is critical since the demand for train operations is very high and a long possession has a severe impact on the regular train schedule. We present an optimization model and investigate the maintenance schedules with and without the possession capacity constraint. In addition, we also integrate the social-economic cost related to the effects of the maintenance time to the variable possession cost into the optimization model. A numerical example is provided to illustrate the model.
基于拥有能力约束的轨道部件最优维修聚类
研究了在维修时间有限的情况下,单线轨道部件预防性维修和更新活动的最优维修计划问题。铁路轨道系统由几种类型的部件组成,如轨道、镇流器和开关,它们具有不同的预防性维护和更新间隔。为了对轨道进行维护或更新,需要有一段火车免费维修期,称为拥有期。由于主要占有直接影响正常的列车时刻表,因此维护和更新活动尽可能集中在一起。在高度密集和利用率高的铁路网中,由于列车运行的需求非常高,长时间的占用会严重影响正常的列车时刻表,因此轨道上的占用时间至关重要。提出了一个优化模型,研究了有和无拥有容量约束的维修计划。此外,我们还将维修时间对可变拥有成本影响的社会经济成本纳入到优化模型中。给出了一个数值算例来说明该模型。
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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