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Vehicular Grouping Access Strategy for Supporting Roadway Planning in IEEE 802.11p Wireless Vehicular Networks

机译:在IEEE 802.11p无线车辆网络中支持道路规划的车辆分组访问策略

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摘要

Wireless access vehicle environment (WAVE) architecture of intelligent transportation system has been standardized in IEEE 802.11p standard and it is going to be widely deployed in many roadway environments in order to provide convenient services. However, the IEEE 802.11p contention-based medium access control protocol would significantly downgrade transmission efficiency between road side unit (RSU) and on-board units (OBUs) because the number of OBUs served by a RSU could be large and the transmission rate between RSU and an OBU may be different from the others. This paper processes a simple vehicular grouping access (VGA) strategy to reduce access latency and opportunities of collisions on a service channel (SCH) by equally distribute vehicles onto multiple SCHs. Since the RSU periodically broadcast the WAVE service advertisement (WSA) frames on the control channel (CCH), the proposed VGA strategy makes an OBU determine to join an appropriate SCH according to the RSSI threshold information of each SCH, which is carried in WSA frame, and the signal strength indicator (RSSI) while receiving WSA frame. Using appropriate RSSI thresholds, the system could equally allocate OBUs to all available SCHs. This paper futher investigates the appropriate thresholds for three popular roadway scenarios to achieve the goal of load balancing. Simulation results demonstrate that the proposed VGA strategy not only improves the channel capacity but also provides useful information on roadway planning in IEEE 802.1 lp wireless vehicular networks.
机译:智能交通系统的无​​线访问车辆环境(WAVE)体系结构已在IEEE 802.11p标准中进行了标准化,并且将在许多道路环境中广泛部署,以提供便捷的服务。但是,基于IEEE 802.11p竞争的媒体访问控制协议会大大降低路边单元(RSU)和车载单元(OBU)之间的传输效率,因为RSU服务的OBU数量可能很大并且之间的传输速率RSU和OBU可能彼此不同。本文处理一种简单的车辆分组访问(VGA)策略,以通过将车辆平均分配到多个SCH上来减少访问等待时间和在服务通道(SCH)上发生冲突的机会。由于RSU会在控制信道(CCH)上定期广播WAVE服务广告(WSA)帧,因此建议的VGA策略根据WSA帧中携带的每个SCH的RSSI阈值信息使OBU确定加入适当的SCH。 ,以及接收WSA帧时的信号强度指示器(RSSI)。使用适当的RSSI阈值,系统可以将OBU平等地分配给所有可用的SCH。本文进一步研究了三种常见巷道场景的适当阈值,以实现负载均衡的目标。仿真结果表明,所提出的VGA策略不仅可以提高信道容量,而且还可以为IEEE 802.1 lp无线车载网络中的道路规划提供有用的信息。

著录项

  • 来源
    《Journal of Information Recording》 |2010年第3期|P.933-950|共18页
  • 作者单位

    Department of Communication Engineering National Central University Chungli, 320 Taiwan;

    Department of Communication Engineering National Central University Chungli, 320 Taiwan;

    Department of Communication Engineering National Central University Chungli, 320 Taiwan;

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

    CSMA/CA; grouping; IEEE 802.11p; RSSI; WAVE;

    机译:CSMA / CA;分组IEEE 802.11p;RSSI;波;
  • 入库时间 2022-08-18 02:07:44

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