首页> 外文期刊>Transportation Research Part B: Methodological >The relationship between car following string instability and traffic oscillations in finite-sized platoons and its use in easing congestion via connected and automated vehicles with IDM based controller
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The relationship between car following string instability and traffic oscillations in finite-sized platoons and its use in easing congestion via connected and automated vehicles with IDM based controller

机译:在有限尺寸的凝固夹下面的弦稳定性和流量振荡之后的汽车之间的关系及其在通过基于IDM的控制器的连接和自动化车辆缓解拥塞

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摘要

This paper focuses on two fundamental issues in traffic flow modelling: string stability of car following (CF), and oscillation of traffic flow. Its aim is to explore the complementary use of CF instability analysis and oscillation analysis to compress and ease traffic congestion in a connected environment. Each of these topics has been extensively investigated in the literature. However, each topic has been investigated separately and, despite the inherent conceptual and empirical closeness of the two concepts, little effort has been devoted to untangling their relationship. To address this failing, we first define four types of oscillation - amplitude-decay oscillation, amplitude-ceiling oscillation, speed-deviation ceiling oscillation, and speed-deviation growth oscillation - and reveal their similarities and dissimilarities to CF instability. Based on the stability criterion, we then develop oscillation criteria to identify different types of oscillation by relaxing two unrealistic assumptions used in CF stability analysis (i.e., infinitely-long platoon and long-wavelength perturbation). Finally, to demonstrate how CF instability analysis and oscillation analysis can be combined to influence individual vehicle stability and improve traffic oscillations in a connected environment, a platoon of vehicles that experience an oscillation in the NGSIM data is used in a case study. In this case study, different control factors are used for different vehicle types: connected (but human-driven) vehicles, and automated vehicles.Our analysis shows that a higher stability of some individual vehicles can alleviate the oscillation severity for the platoon. It also shows that desired time gap and maximum acceleration are two promising parameters that can be used to both improve individual vehicle stability and significantly smooth the oscillation of the platoon in a connected and/or automated environment. Of particular note, when considering all of the factors explored in our analysis, adjustment of the desired time gap is the most effective factor in smoothing traffic oscillations. (c) 2020 Elsevier Ltd. All rights reserved.
机译:本文重点介绍了交通流量建模中的两个基本问题:车弦稳定性跟随(CF),以及交通流量的振荡。其目的是探讨CF不稳定性分析和振荡分析的补充使用,以压缩和缓解连接环境中的交通拥堵。这些主题中的每一个都在文献中被广泛调查。但是,每个主题都分别调查,尽管这两个概念的固有概念和经验近似,但很少努力已经致力于不包含他们的关系。为了解决这一故障,我们首先定义四种类型的振荡 - 振幅衰减振荡,幅度 - 上限振荡,速度偏差天花板振荡,以及速度偏差的生长振荡 - 并揭示它们的相似性和不稳定性的异常性和异化。基于稳定性标准,我们通过放松CF稳定性分析中使用的两个不切实际的假设(即无限长的排和长波长扰动)来开发振荡标准以识别不同类型的振荡。最后,为了演示CF不稳定性分析和振荡分析如何组合以影响各个车辆稳定性并改善连接环境中的交通振荡,在案例研究中使用了在NGSIM数据中经历振荡的一排车辆。在这种情况下,不同的控制因素用于不同的车辆类型:连接(但人类驱动的)车辆和自动车辆。我们的分析表明,一些单独的车辆的稳定性可以缓解排振荡的振荡严重程度。它还表明,所需的时间间隙和最大加速度是两个有希望的参数,其可以用于改善单独的车辆稳定性,并且在连接和/或自动化环境中显着平滑排的振荡。特别注意,在考虑我们分析中探讨的所有因素时,调整所需的时间间隙是平滑交通振荡的最有效因素。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
  • 作者

    Sun Jie; Zheng Zuduo; Sun Jian;

  • 作者单位

    Tongji Univ Minist Educ Dept Traff Engn 4800 Caoan Rd Shanghai 201804 Peoples R China|Tongji Univ Minist Educ Key Lab Rd & Traff Engn 4800 Caoan Rd Shanghai 201804 Peoples R China|Univ Queensland Sch Civil Engn Brisbane Qld 4072 Australia;

    Univ Queensland Sch Civil Engn Brisbane Qld 4072 Australia;

    Tongji Univ Minist Educ Dept Traff Engn 4800 Caoan Rd Shanghai 201804 Peoples R China|Tongji Univ Minist Educ Key Lab Rd & Traff Engn 4800 Caoan Rd Shanghai 201804 Peoples R China;

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

    Car-following; Stability; Traffic oscillation; Connected vehicles; IDM;

    机译:汽车之后;稳定性;交通振荡;连接的车辆;IDM;

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