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Vehicular Channel Characterization and Its Implications for Wireless System Design and Performance

机译:车载信道特性及其对无线系统设计和性能的影响

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摘要

To make transportation safer, more efficient, and less harmful to the environment, traffic telematics services are currently being intensely investigated and developed. Such services require dependable wireless vehicle-to-infrastructure and vehicle-to-vehicle communications providing robust connectivity at moderate data rates. The development of such dependable vehicular communication systems and standards requires accurate models of the propagation channel in all relevant environments and scenarios. Key characteristics of vehicular channels are shadowing by other vehicles, high Doppler shifts, and inherent nonstationarity. All have major impact on the data packet transmission reliability and latency. This paper provides an overview of the existing vehicular channel measurements in a variety of important environments, and the observed channel characteristics (such as delay spreads and Doppler spreads) therein. We briefly discuss the available vehicular channel models and their respective merits and deficiencies. Finally, we discuss the implications for wireless system design with a strong focus on IEEE 802.11p. On the road towards a dependable vehicular network, room for improvements in coverage, reliability, scalability, and delay are highlighted, calling for evolutionary improvements in the IEEE 802.11p standard. Multiple antennas at the onboard units and roadside units are recommended to exploit spatial diversity for increased diversity and reliability. Evolutionary improvements in the physical (PHY) and medium access control (MAC) layers are required to yield dependable systems. Extensive references are provided.
机译:为了使运输更安全,更有效并且对环境的危害较小,目前正在对交通远程信息处理服务进行深入研究和开发。此类服务需要可靠的无线车辆到基础设施和车辆到车辆通信,以中等数据速率提供可靠的连接。这种可靠的车辆通信系统和标准的发展需要在所有相关环境和场景中的传播信道的精确模型。车辆通道的主要特征是其他车辆的遮挡,高多普勒频移和固有的不平稳性。所有这些都会对数据包传输的可靠性和延迟产生重大影响。本文概述了各种重要环境中现有的车辆通道测量,以及其中观察到的通道特性(例如延迟扩展和多普勒扩展)。我们简要讨论了可用的车辆通道模型及其各自的优缺点。最后,我们重点关注IEEE 802.11p,讨论无线系统设计的意义。在通往可靠的车载网络的道路上,强调了覆盖范围,可靠性,可伸缩性和延迟方面的改进空间,这要求在IEEE 802.11p标准中进行不断改进。建议在机载单元和路边单元使用多个天线,以利用空间分集来提高分集和可靠性。为了产生可靠的系统,需要对物理(PHY)和媒体访问控制(MAC)层进行不断的改进。提供了广泛的参考。

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