海报:毫米波车载网络的连通性分析

M. Giordani, Mattia Rebato, A. Zanella, M. Zorzi
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引用次数: 2

摘要

下一代车辆对数据传输能力的要求将远远超出当前车辆网络通信技术的能力,需要新的解决方案。在这方面,由于大量未使用的可用频谱,毫米波(mmWave)频段非常吸引人。然而,这种潜力受到毫米波信道非常困难的传播特性的阻碍,特别是在考虑高移动场景时。特别是,毫米波链路通常是定向的,以受益于由此产生的波束形成增益,并且需要在端点之间严格协调以保持或恢复波束对准,这一操作可能需要大量开销。因此,保持连接对高效车辆协议的设计具有广泛的意义,并影响网络节点的通信性能。在本文中,我们阐述了基于毫米波链路的车载方案工程解决方案时必须考虑的一些复杂而有趣的权衡。我们研究了动态系统中毫米波车载通信的性能,并分析了节点速度、对准周期、基站密度和天线几何形状等汽车特定特征对毫米波车载通信的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Poster: Connectivity analysis of millimeter wave vehicular networks
The next generations of vehicles will require data transmission capacities that go well beyond the capabilities of the current communication technologies for vehicular networks, calling for new solutions. In this regard, the millimeter-wave (mmWave) band is very appealing due to the vast amount of largely unused available spectrum. Nevertheless, the potential is hindered by the very difficult propagation characteristics of the mmWave channel, especially when considering highly mobile scenarios. In particular, mmWave links are typically directional, to benefit from the resulting beamforming gain, and require strict coordination between the endpoints to maintain or restore beam alignment, an operation which may require a significant overhead. The preservation of the connectivity has therefore widespread implications for the design of efficient vehicular protocols and affects the communication performance of the network nodes. In this paper, we illustrate some of the complex and interesting tradeoffs that have to be considered when engineering solutions for vehicular scenarios based on mmWave links. We investigate the performance of mmWave vehicular communications in dynamic systems and analyze the impact of several automotive-specific features such as the nodes speed, the alignment periodicity, the base stations density and the antenna geometry.
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