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A rolling horizon approach for disruption management of railway rolling stock
Authors:Lars Kjær Nielsen  Leo Kroon  Gábor Maróti
Institution:1. Quintiq Applications, ’s Hertogenbosch, The Netherlands;2. Rotterdam School of Management, Erasmus University Rotterdam, P.O. Box 1738, 3000 DR Rotterdam, The Netherlands;3. NS Reizigers, Process Quality and Innovation, P.O. Box 2025, 3500 HA Utrecht, The Netherlands
Abstract:This paper deals with real-time disruption management of rolling stock in passenger railway transportation. We describe a generic framework for dealing with disruptions of railway rolling stock schedules. The framework is presented as an online combinatorial decision problem, where the uncertainty of a disruption is modeled by a sequence of information updates. To decompose the problem and to reduce the computation time, we propose a rolling horizon approach: rolling stock decisions are only considered if they are within a certain time horizon from the time of rescheduling. The schedules are then revised as time progresses and new information becomes available. We extend an existing model for rolling stock scheduling to the specific requirements of the real-time situation, and we apply it in the rolling horizon framework. We perform computational tests on instances constructed from real-life cases of Netherlands Railways (NS), the main operator of passenger trains in the Netherlands. We explore the consequences of different settings of the approach for the trade-off between solution quality and computation time.
Keywords:Transportation  Railway optimization  Rolling stock  Disruption management  Rolling horizon  Integer programming
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