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Analytical characterization of multi-state effective discharge rates for bus-only lane conversion scheduling problem

机译:用于唯一的公共汽车车道转换调度问题的多状态有效放电速率的分析特征

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摘要

An accurate quantification of traffic flow characteristics with and without bus-only lane is important for determining transit priority strategies. Examinations of real-world vehicle trajectory data, like those from the NGSIM dataset, found that an effective dischar ge rate may be discounted when merging or lane-changing behaviors are observed. To deal with this, this manuscript analytically derives the effective dischar ge rate of a roadway segment by considering multi-stage merging behavior and vehicular traffic kinematics near a side entrance, for optimal bus-only lane conversion. The classic fluid-based approximation model by Newell that characterizes the queuing and dissipation process is extended to a multi-state queuing analysis framework. Three effective discharge rate discount factors are explicitly derived, for bus-only lane, general-purpose lane, and mixed-traffic lane, respectively. The derived effective discharge rates are represented by mathematically-simple expressions in a closed-form, and correctly account for the effects of demand inputs, such as arrival rate and the ratio of vehicles of different types, vehicular performance (such as acceleration rate), and traffic flow characteristics (such as backward wave speed and jam density). The bus-only lane conversion scheduling problem is then formulated as an optimization model to minimize total traffic delay. Validation, using NGSIM data, showed that our model reduced the effective discharge rate estimation error significantly on both arterials and freeways. Sensitivity analysis revealed that the optimal bus-only lane scheduling time varied in response to traffic demand and vehicle ratios, and the developed optimization model was always beneficial when compared with the demand-oriented strategy.(c) 2021 Elsevier Ltd. All rights reserved.
机译:流量的准确定量流量特性有和没有公交专用车道是确定公交优先战略的重要。真实世界的车辆轨迹数据的考试,像那些从NGSIM数据集,发现一种有效的dischar GE率可被合并时或换道的行为观察打折扣。为了解决这个问题,这个手稿分析得出道路段的考虑多级合并附近的侧门行为和车辆运动,以达到最佳公交专用车道转换的有效dischar GE率。通过纽厄尔经典基于流体的近似模型表征排队和耗散过程扩展到一个多状态排队分析框架。三个有效放电率折现因子解析表达式,为公交专用车道,通用车道和混合车道,分别。所导出的有效排放率是由数学上简单的表达式中的闭合形式表示,并且正确地占需求输入的影响,如到达率和不同的类型,车辆的性能(例如加速速率)的车辆的比率,和交通流特性(如向后波速度和果酱密度)。然后,公交专用车道转换调度问题转化为一个优化模型,以总流量的延迟最小化。验证,使用NGSIM数据,表明我们的模型显著两个干道和高速公路降低了有效放电率估计误差。敏感性分析表明,最佳公交专用车道的调度时间响应业务需求和车辆的比例变化,当与以需求为导向的战略比较发达的优化模型总是有益的。版权所有(C)2021爱思唯尔有限公司保留所有权利。

著录项

  • 来源
    《Transportation Research Part B: Methodological》 |2021年第6期|106-131|共26页
  • 作者单位

    Missouri Univ Sci & Technol Dept Civil Architectural & Environm Engn 1401 N Pine St Rolla MO 65401 USA;

    Missouri Univ Sci & Technol Dept Civil Architectural & Environm Engn 1401 N Pine St Rolla MO 65401 USA;

    Arizona State Univ Sch Sustainable Engn & Built Environm Coll Ave Commons Room 474 660 S Coll Ave Tempe AZ 85287 USA;

    Arizona State Univ Sch Sustainable Engn & Built Environm Coll Ave Commons Room 474 660 S Coll Ave Tempe AZ 85287 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bus-only lane; optimal scheduling; queuing profile; shockwave propagation;

    机译:公共汽车车道;最优调度;排队概况;冲击波传播;

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