毫米波车载通信:综述

Vutha Va, Takayuki Shimizu, G. Bansal, R. Heath
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引用次数: 191

摘要

未来的车辆将需要大规模的传感能力。然而,在拥挤的环境中,仅利用车载传感器是具有挑战性的,因为传感器的视野受到阻碍。一个潜在的解决方案是在车辆和基础设施之间共享传感器数据。这样做的好处是为车辆提供了更大的视野,并提供了额外的冗余,以提高传感器数据的可靠性。共享传感器数据的一个主要挑战是提供交换原始传感器数据所需的高数据速率。毫米波频率的大频谱通道提供了实现更高数据速率的手段。本专著概述了毫米波车载通信,重点介绍了信道测量、物理层和介质访问控制MAC层的结果。主要目标是总结每个领域的主要发现,特别注意确定未来研究的重要主题。除了对现有工作进行调查外,还提供了一些新的仿真结果,以深入了解方向性和阻塞的影响,这是毫米波车载信道的两个显着特征。本专著的一个主要结论是,鉴于对高速车辆连接的重新关注,毫米波车辆网络的设计仍然存在许多挑战。
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Millimeter Wave Vehicular Communications: A Survey
Future vehicles will require massive sensing capability. Leveraging only onboard sensors, though, is challenging in crowded environments where the sensing field-of-view is obstructed. One potential solution is to share sensor data among the vehicles and infrastructure. This has the benefits of providing vehicles with an enhanced field-of-view and also additional redundancy to provide more reliability in the sensor data. A main challenge in sharing sensor data is providing the high data rates required to exchange raw sensor data. The large spectral channels at millimeter wave mmWave frequencies provide a means of achieving much higher data rates. This monograph provides an overview of mmWave vehicular communication with an emphasis on results on channel measurements, the physical PHY layer, and the medium access control MAC layer. The main objective is to summarize key findings in each area, with special attention paid to identifying important topics of future research. In addition to surveying existing work, some new simulation results are also presented to give insights on the effect of directionality and blockage, which are the two distinguishing features of mmWave vehicular channels. A main conclusion of this monograph is that given the renewed interest in high rate vehicle connectivity, many challenges remain in the design of a mmWave vehicular network.
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