Modeling Traffic Congestion Using Simulation Software

Seongho Kim, W. Suh
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引用次数: 2

Abstract

Traffic simulations are being increasingly utilized as transportation systems have become more complex and congested. However, most simulation models have limitations in overcapacity demand conditions. When traffic in a congested area "fills" the available roadway space additional traffic demand may never be allowed to enter the network. The intent of this paper is to explore one possible means to address the issue of unserved vehicles in overcapacity conditions using the VISSIM trip chain. The VISSIM trip chain feature is used for this analysis as it has the advantage of not eliminating a vehicle when congestion hinders its entrance onto a network, instead holding the vehicle until an acceptable gap exists on the entry link. A sample network is built to investigate the difference between standard traffic flow inputs and the trip chain method in overcapacity conditions. Also, simulations with different minimum space headway parameters in the priority rules are analyzed, allowing for an initial investigation into the sensitivity of the model to this parameter. Based on the analysis conducted it is concluded that, with appropriate calibrations, the trip chain feature in VISSIM is a potentially useful method to provide realistic modeling of various overcapacity conditions.
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利用仿真软件建模交通拥堵
随着交通系统变得越来越复杂和拥挤,交通模拟越来越多地被利用。然而,大多数仿真模型在产能过剩需求条件下存在局限性。当拥挤区域的交通“填满”了可用的道路空间时,额外的交通需求可能永远不会被允许进入网络。本文的目的是探索一种可能的方法来解决在产能过剩条件下使用VISSIM行程链的无人服务车辆的问题。VISSIM出行链特性用于此分析,因为它的优点是,当拥堵阻碍车辆进入网络时,不会取消车辆,而是保留车辆,直到进入链路上存在可接受的间隙。建立了一个样本网络,研究了在产能过剩条件下标准交通流输入与行程链方法之间的差异。此外,还分析了优先规则中不同最小车头距参数的仿真,从而初步研究了该模型对该参数的敏感性。基于所进行的分析,得出结论,通过适当的校准,VISSIM中的行程链特征是一种潜在的有用方法,可以提供各种产能过剩条件的真实建模。
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