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A Node Model Capturing Turning Lane Capacity and Physical Queuing for the Dynamic Network Loading Problem

机译:动态网络负荷问题的捕获转弯道通行能力和物理排队的节点模型

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摘要

An analytical dynamic node-based model is proposed to represent flows on a traffic network and to be utilized as an integral part of a dynamic network loading (DNL) process by solving a continuous DNL problem. The proposed model formulation has an integrate base to be structured with a link load computing component, where physical queuing and its influence were explicitly taken into account by dividing a link into two parts: running part and queuing part. The solution to the model is obtained by a hybridization algorithm of simulation and analytical approach, where an iteration process is conducted to update time-dependent network flow conditions after a reasonable discretization of the problem. The performance of the proposed model, as a DNL model, is tested on a sample network. It is seen that the proposed model provides consistent approximations to link flow dynamics. The dynamic node model proposed in this paper is unique in that it explicitly models directional queue in each turning lane and the First-In-First-Out (FIFO) rule at lane level rather than link level is pursued.
机译:提出了一种基于动态节点的解析模型来表示交通网络上的流量,并通过解决连续DNL问题将其用作动态网络负载(DNL)过程的组成部分。所提出的模型公式具有要由链接负载计算组件构成的集成基础,其中通过将链接分为两个部分:运行部分和排队部分,明确考虑了物理排队及其影响。通过模拟和分析方法的混合算法获得模型的解,其中在合理离散化问题之后,进行迭代过程以更新时间相关的网络流量条件。建议的模型作为DNL模型的性能在示例网络上进行了测试。可以看出,提出的模型为链接流动力学提供了一致的近似值。本文提出的动态节点模型是独特的,因为它显式地对每个转弯车道中的定向队列进行建模,并在车道级别而不是在链路级别上采用先进先出(FIFO)规则。

著录项

  • 来源
    《Mathematical Problems in Engineering》 |2012年第9期|542459.1-542459.14|共14页
  • 作者

    Mingxia Gao;

  • 作者单位

    School of Traffic and Transportation, Lanzhou Jiaotong University, Lanzhou 730070, China;

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  • 正文语种 eng
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