有效的路线规划与临时驾驶禁令,道路封闭,和额定停车区

A. Kleff, F. Schulz, Jakob Wagenblatt, Tim Zeitz
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引用次数: 4

摘要

我们研究了当某些街道或地区在某些时间关闭时,道路网络中的路线规划问题。对于重型车辆,这些区域可能非常大,因为许多欧洲国家在夜间或周末实行临时驾驶禁令。在这种情况下,可行的路线可能需要在停车区域等待,并且可能存在几种可行的路线,在封闭区域周围的等待和驾驶绕道之间存在不同的权衡。我们提出了一种新的模型,该模型将驾驶和等待成本分配为抽象成本,并且等待成本是位置相关的,以反映停车区域的不同质量。我们的目标是找到关于到达目的地时间和总成本的帕累托最优路线。我们研究了模型的复杂性,并确定了代价参数的必要约束,使得问题在多项式时间内可解。我们提出了一个彻底的工程实现,并在一个生产级的真实世界数据集上进行了实验。实验表明,我们的实现可以在1秒或更短的时间内回答实际问题,具有实际应用的可行性。
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Efficient Route Planning with Temporary Driving Bans, Road Closures, and Rated Parking Areas
We study the problem of planning routes in road networks when certain streets or areas are closed at certain times. For heavy vehicles, such areas may be very large since many European countries impose temporary driving bans during the night or on weekends. In this setting, feasible routes may require waiting at parking areas, and several feasible routes with different trade-offs between waiting and driving detours around closed areas may exist. We propose a novel model in which driving and waiting are assigned abstract costs, and waiting costs are location-dependent to reflect the different quality of the parking areas. Our goal is to find Pareto-optimal routes with regards to arrival time at the destination and total cost. We investigate the complexity of the model and determine a necessary constraint on the cost parameters such that the problem is solvable in polynomial time. We present a thoroughly engineered implementation and perform experiments on a production-grade real world data set. The experiments show that our implementation can answer realistic queries in around a second or less which makes it feasible for practical application.
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