城市交通网络中的工作区域调度问题

D. Teodorovic, M. Nikolic
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引用次数: 0

摘要

高速公路和街道的拥堵很大一部分是由工作区造成的。根据建筑和/或修复活动的类型,街道的通行能力可能会显著下降,或者街道可能会完全关闭。工作区域在进行维修的街道上造成交通延误。此外,由于许多司机改变路线,工作区会给邻近街道带来额外的交通流量。有许多可能的工作区域时间表。所有网络用户的总旅行时间高度依赖于所选择的工作区域时间表。工作区调度问题具有自然的嵌套结构,需要将其建模为双层问题。我们考虑了双层工作区的调度问题。上层的目标函数表示所有网络用户的总旅行时间,我们试图使其最小化。在较低层次的关系,帮助我们计算用户均衡流。提出了一种基于整数规划和启发式流量分配算法相结合的解决方案。所开发模型的输出由每个工作区的开始时间组成。苏福尔斯基准网络用于说明所提出的程序和实现的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Work Zone Scheduling Problem in the Urban Traffic Networks
Abstract A significant part of highway and street congestion is produced by work zones. Depending on the type of construction and/or rehabilitation activity, street capacity could be significantly decreased, or the street could be completely closed. The work zone generates traffic delays in the street where maintenance is performed. Additionally, the work zone generates additional traffic on the neighboring streets, since many drivers change their routes. There are numerous possible work zone schedules. The total travel time of all network users highly depends on the chosen work zones schedule. Work zones scheduling problem has a natural nested structure that requires to be modeled as a bi-level problem. We considered the bi-level work zones scheduling problem. The objective function in the upper level, which we try to minimize, represents the total travel time of all network users. Relations in the lower level, help us to compute User Equilibrium flows. The proposed solution to the problem is based on the combination of Integer Programming and a heuristic traffic assignment algorithm. The output of the developed model consists of the start time of each work zone. The Sioux Falls benchmark network is used to illustrate the proposed procedures and the achieved performances.
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