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Integration of a cell transmission model and macroscopic fundamental diagram: Network aggregation for dynamic traffic models

机译:信元传输模型与宏观基本图的集成:动态流量模型的网络聚合

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Network size can have a significant impact on the computational performance of traffic simulation models. Due to this, methods to reduce network size can be valuable when analyzing large networks. In this research, a novel model integrating a Cell Transmission Model (CTM) with the Macroscopic Fundamental Diagram (MFD) for urban networks is proposed and its effects analyzed. The concept that underlies this work is that a road network can be classified into two types of networks: the first includes roads that are modeled using CTM, and the second are components of the network that can be aggregated into large self-contained cells that also maintain properties of the MFD. To test the proposed model and its computational efficiency, a case study involving an evacuation is introduced. The network and its demand, built from the Southeast Louisiana Hurricane Katrina evacuation event, were modeled using a combination of CTM and MFD. The spatio-temporal profiles of volume and speeds on key routes and destinations from the proposed model were compared to observed data from the event. The results suggest that the model was able to realistically capture the observed shock wave phenomena, and reproduce the spatio-temporal characteristics of the evacuation traffic. This simple methodology has considerable potential to improve computational efficiency in dynamic traffic assignment models, particularly for those large-scale networks and processes, while ensuring that the traffic dynamics are realistically modeled. (C)2015 Elsevier Ltd. All rights reserved.
机译:网络规模可能会对流量模拟模型的计算性能产生重大影响。因此,在分析大型网络时,减小网络大小的方法可能很有价值。在这项研究中,提出了一种新的模型,该模型将单元传输模型(CTM)与宏观基本图(MFD)相结合,用于城市网络,并对其效果进行了分析。这项工作的基本概念是,道路网络可以分为两种类型的网络:第一类包括使用CTM建模的道路,第二类是网络的组成部分,可以聚合成大型的独立单元,这些单元也可以维护MFD的属性。为了测试提出的模型及其计算效率,引入了涉及疏散的案例研究。该网络及其需求是从路易斯安那州东南部的卡特里娜飓风疏散事件中建立的,使用CTM和MFD的组合进行建模。将拟议模型中关键路线和目的地上的体积和速度的时空分布与事件观测数据进行比较。结果表明,该模型能够真实地捕获观察到的冲击波现象,并再现疏散交通的时空特征。这种简单的方法具有很大的潜力,可以提高动态交通分配模型中的计算效率,尤其是对于那些大型网络和流程,同时确保对交通动态进行现实建模。 (C)2015 Elsevier Ltd.保留所有权利。

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