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Development and evaluation of Advanced Traveler Information System (ATIS) using vehicle-to-vehicle (V2V) communication system.

机译:使用车对车(V2V)通信系统开发和评估高级旅行者信息系统(ATIS)。

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摘要

This research develops and evaluates an Advanced Traveler Information System (ATIS) model using a Vehicle-to-Vehicle (V2V) communication system (referred to as the GATIS-V2V model) with the off-the-shelf microscopic simulation model, VISSIM. The GATIS-V2V model is tested on notional small traffic networks (non-signalized and signalized) and a 6X6 typical urban grid network (signalized traffic network). The GATIS-V2V model consists of three key modules: vehicle communication, on-board travel time database management, and a Dynamic Route Guidance System (DRGS). In addition, the system performance has been enhanced by applying three complementary functions: Autonomous Automatic Incident Detection (AAID), a minimum sample size algorithm, and a simple driver behavior model. To select appropriate parameter ranges for the complementary functions a sensitivity analysis has been conducted. The GATIS-V2V performance has been investigated relative to three underlying system parameters: traffic flow, communication radio range, and penetration ratio of participating vehicles. Lastly, the enhanced GATIS-V2V model is compared with the centralized traffic information system.;This research found that the enhanced GATIS-V2V model outperforms the basic model in terms of travel time savings and produces more consistent and robust system output under non-recurrent traffic states (i.e., traffic incident) in the simple traffic network. This research also identified that the traffic incident detection time and driver's route choice rule are the most crucial factors influencing the system performance. As expected, as traffic flow and penetration ratio increase, the system becomes more efficient, with non-participating vehicles also benefiting from the re-routing of participating vehicles. The communication radio ranges considered were found not to significantly influence system operations in the studied traffic network. Finally, it is found that the decentralized GATIS-V2V model has similar performance to the centralized model even under low flow, short radio range, and low penetration ratio cases. This implies that a dynamic infrastructure-based traffic information system could replace a fixed infrastructure-based traffic information system, allowing for considerable savings in fixed costs and ready expansion of the system off of the main network corridors.
机译:这项研究使用现成的微观仿真模型VISSIM开发并评估了使用车对车(V2V)通信系统(称为GATIS-V2V模型)的高级旅行者信息系统(ATIS)模型。 GATIS-V2V模型在概念性小型交通网络(非信号化和信号化)和6X6典型城市网格网络(信号化交通网络)上进行了测试。 GATIS-V2V模型包含三个关键模块:车辆通信,车载旅行时间数据库管理和动态路线引导系统(DRGS)。此外,通过应用三个补充功能来增强系统性能:自治自动事件检测(AAID),最小样本量算法和简单的驾驶员行为模型。为了为补充功能选择合适的参数范围,进行了灵敏度分析。已针对三个基本系统参数对GATIS-V2V性能进行了研究:交通流量,通信无线电范围和参与车辆的穿透率。最后,将增强型GATIS-V2V模型与集中式交通信息系统进行了比较;研究发现,增强型GATIS-V2V模型在节省旅行时间方面优于基本模型,并且在非经常性情况下产生了更一致,更强大的系统输出简单交通网络中的交通状态(即交通事故)。研究还确定,交通事故检测时间和驾驶员的选路规则是影响系统性能的最关键因素。正如预期的那样,随着交通流量和渗透率的增加,该系统将变得更加高效,非参与车辆也将从参与车辆的重新路由中受益。发现所考虑的通信无线电范围不会显着影响所研究交通网络中的系统运行。最后,发现分散的GATIS-V2V模型即使在低流量,短无线电范围和低穿透率情况下也具有与集中模型相似的性能。这意味着基于动态基础结构的交通信息系统可以替代基于固定基础结构的交通信息系统,从而可以节省大量固定成本,并可以将系统扩展到主要网络通道之外。

著录项

  • 作者

    Kim, Hoe Kyoung.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 197 p.
  • 总页数 197
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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