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Vehicle-to-vehicle (V2V) and vehicle-to-infrastructure (V2I) communication in a heterogeneous wireless network - Performance evaluation

机译:异构无线网络中的车对车(V2V)和车对基础设施(V2I)通信-性能评估

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摘要

Connected Vehicle Technology (CVT) requires wireless data transmission between vehicles (V2V), and vehicle-to-infrastructure (V2I). Evaluating the performance of different network options for V2V and V2I communication that ensure optimal utilization of resources is a prerequisite when designing and developing robust wireless networks for CVT applications. Though dedicated short range communication (DSRC) has been considered as the primary communication option for CVT safety applications, the use of other wireless technologies (e.g., Wi-Fi, LTE, WiMAX) allow longer range communications and throughput requirements that could not be supported by DSRC alone. Further, the use of other wireless technology potentially reduces the need for costly DSRC infrastructure. In this research, the authors evaluated the performance of Het-Net consisting of Wi-Fi, DSRC and LTE technologies for V2V and V2I communications. An application layer handoff method was developed to enable Het-Net communication for two CVT applications: traffic data collection, and forward collision warning. The handoff method ensures the optimal utilization of available communication options (i.e., eliminate the need of using multiple communication options at the same time) and corresponding backhaul communication infrastructure depending on the connected vehicle application requirements. Field studies conducted in this research demonstrated that the use of Het-Net broadened the range and coverage of V2V and V2I communications. The use of the application layer handoff technique to maintain seamless connectivity for CVT applications was also successfully demonstrated and can be adopted in future Het-Net supported connected vehicle applications. A long handoff time was observed when the application switches from LTE to Wi-Fi. The delay is largely due to the time required to activate the 802.11 link and the time required for the vehicle to associate with the RSU (i.e., access point). Modifying the application to implement a soft handoff where a new network is seamlessly connected before breaking from the existing network can greatly reduce (or eliminate) the interruption of network service observed by the application. However, the use of a Het-Net did not compromise the performance of the traffic data collection application as this application does not require very low latency, unlike connected vehicle safety applications. Field tests revealed that the handoff between networks in Het-Net required several seconds (i.e., higher than 200 ms required for safety applications). Thus, Het-Net could not be used to support safety applications that require communication latency less than 200 ms. However, Het-Net could provide additional supplementary connectivity for safety applications to warn vehicles upstream to take proactive actions to avoid problem locations. To validate and establish the findings from field tests that included a limited number of connected vehicles, ns-3 simulation experiments with a larger number of connected vehicles were conducted involving a DSRC and LTE Het-Net scenario. The latency and packet delivery error trend obtained from ns-3 simulation were found to be similar to the field experiment results. Published by Elsevier Ltd.
机译:互联车辆技术(CVT)要求在车辆(V2V)和车辆到基础设施(V2I)之间进行无线数据传输。在为CVT应用程序设计和开发强大的无线网络时,评估V2V和V2I通信的不同网络选项的性能以确保资源的最佳利用是必须的。尽管专用短距离通信(DSRC)已被视为CVT安全应用的主要通信选项,但使用其他无线技术(例如Wi-Fi,LTE,WiMAX)可以实现无法满足的长距离通信和吞吐量要求仅由DSRC。此外,使用其他无线技术可能会减少对昂贵的DSRC基础架构的需求。在这项研究中,作者评估了由Wi-Fi,DSRC和LTE技术组成的Het-Net在V2V和V2I通信中的性能。开发了一种应用程序层切换方法,以实现两个CVT应用程序的Het-Net通信:交通数据收集和前向碰撞警告。切换方法可确保最佳地利用可用的通信选项(即,消除了同时使用多个通信选项的需要)和相应的回程通信基础设施,具体取决于所连接的车辆应用需求。这项研究进行的现场研究表明,使用Het-Net扩大了V2V和V2I通信的范围和覆盖范围。应用层切换技术为CVT应用程序保持无缝连接的使用也得到了成功演示,并且可以在未来受Het-Net支持的联网车辆应用程序中采用。当应用程序从LTE切换到Wi-Fi时,观察到较长的切换时间。延迟主要是由于激活802.11链路所需的时间以及车辆与RSU(即接入点)关联所需的时间。修改应用程序以实现软切换,其中在从现有网络断开连接之前无缝连接新网络可以极大地减少(或消除)应用程序观察到的网络服务中断。但是,与联网的车辆安全应用程序不同,使用Het-Net不会影响交通数据收集应用程序的性能,因为此应用程序不需要非常低的延迟。现场测试表明,Het-Net中网络之间的切换需要几秒钟(即,安全应用需要200毫秒以上)。因此,Het-Net无法用于支持要求通信延迟小于200毫秒的安全应用程序。但是,Het-Net可以为安全应用程序提供附加的补充连接性,以警告上游的车辆采取主动行动以避免出现问题的位置。为了验证并建立包含有限数量的联网车辆的现场测试结果,进行了涉及DSRC和LTE Het-Net场景的ns-3仿真实验,其中涉及大量联网车辆。发现从ns-3模拟获得的等待时间和数据包传送错误趋势与现场实验结果相似。由Elsevier Ltd.发布

著录项

  • 来源
    《Transportation research》 |2016年第7期|168-184|共17页
  • 作者单位

    Clemson Univ, Glenn Dept Civil Engn, 216 Lowly Hall, Clemson, SC 29634 USA|Clemson Univ, Dept Automot Engn, 216 Lowly Hall, Clemson, SC 29634 USA;

    Clemson Univ, Dept Elect & Comp Engn, 314 EIB, Clemson, SC 29634 USA;

    Clemson Univ, Dept Automot Engn, 216 Lowly Hall, Clemson, SC 29634 USA|Clemson Univ, Transportat, Glenn Dept Civil Engn, 216 Lowry Hall, Clemson, SC 29634 USA;

    Rowan Univ, Civil & Environm Engn, 327 Rowan Hall, Glassboro, NJ 08028 USA;

    Clemson Univ, Sch Comp, 211 McAdams Hall, Clemson, SC 29634 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Connected vehicle technology; Handoff; Het-Net; Collision warning message; DSRC; V2V and V2I;

    机译:互联汽车技术;切换;Het-Net;碰撞警告消息;DSRC;V2V和V2I;

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