Exact formulations and algorithm for the train timetabling problem with dynamic demand
نویسندگان
چکیده
In this paper we study the design and optimization of train timetabling adapted to a dynamic demand environment. This problem arises in rapid train services which are common in most important cities. We present four formulations for the problem, with the aim of minimizing passenger average waiting time. The first one consists of a mixed integer non-linear programming model in which binary variables represent train launching times and the objective function contains a quadratic term. The other three introduce flow variables, allowing for a linear representation of the objective function. We provide incremental improvements on these formulations, which allows us to evaluate and compare the benefits and disadvantages of each modification. We present a branch-and-cut algorithm applicable to all formulations. Through extensive computational experiments on several instances derived from real data provided by the Madrid Metropolitan Railway, we show the advantages of designing a timetable adapted to the demand pattern, as opposed to a regular timetable. We also perform an extensive computational comparison of all linear formulations in terms of size, solution quality and running time.
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عنوان ژورنال:
- Computers & OR
دوره 44 شماره
صفحات -
تاریخ انتشار 2014