5.8 GHz车对车通信的多普勒和路径损耗特性

Okechukwu Onubogu, K. Ziri-Castro, D. Jayalath, S. Demmel, Hajime Suzuki
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引用次数: 5

摘要

由于车辆事故和交通拥堵的显著增加,基于智能交通系统(ITS)的车对车通信(V2V)被引入,旨在显著减少车辆事故和交通拥堵。然而,为了有效地设计和实现可靠的车载通信系统,深入了解不同环境下的传播信道特性是至关重要的,特别是多普勒和路径损耗参数。本文介绍了在澳大利亚布里斯班的现实城市、郊区和高速公路驾驶条件下进行的经验V2V通道表征和测量。基于林成统计多普勒模型(LCDM),给出了由于V2V信道的时间选择性而导致的RMS多普勒扩频和相干时间的取值。此外,基于对数距离幂律模型,报告了城市、郊区和高速公路环境下的平均路径损失指数和阴影标准差。V2V通道参数可用于系统设计者评估、模拟和开发新的协议和系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Doppler and pathloss characterization for vehicle-to-vehicle communications at 5.8 GHz
Due to significant increase in vehicular accident and traffic congestions, vehicle to vehicle (V2V) communication based on the intelligent transport system (ITS) was introduced aiming to significantly reduce vehicular accident and traffic congestion. However, to carry out efficient design and implementation of a reliable vehicular communication systems, a deep knowledge of the propagation channel characteristics in different environments is crucial, in particular the Doppler and pathloss parameters. This paper presents an empirical V2V channel characterization and measurement performed under realistic urban, suburban and highway driving conditions in Brisbane, Australia. Based on Lin Cheng statistical Doppler Model (LCDM), values for the RMS Doppler spread and coherence time due to time selective nature of V2V channels are presented. Also, based on log-distance power law model, values for the mean pathloss exponent and the standard deviation of shadowing were reported for urban, suburban and highway environments. The V2V channel parameters can be useful to system designers for the purpose of evaluating, simulating and developing new protocols and systems.
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