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Channel Characterization for mmWave Vehicle-to-Infrastructure Communications in Urban Street Environment

机译:城市街道环境中毫米波车辆到基础设施通信的信道表征

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Millimeter wave (mmWave) with large bandwidth is a key technology to support high-data rate vehicle-to-infrastructure (V2I) communications. In this paper, 28 GHz V2I channel is characterized for an urban street in Manhattan. By considering the recommendation in 3GPP TR 37.885, the transmitter is fixed on the street lamp with a height of 10 m, the receivers are mounted on top of the passenger car and bus with a maximum speed of 25 km/h. The ray tracing simulator with calibrated electro-magnetic parameters is employed in this work to practically conduct intensive simulations. The 3D environment model is reconstructed from OpenStreetMap. The key channel parameters, including the power delay profile, path loss, root-mean-square delay spread, K-factor, angular spreads and cross-polarization ratio, are analyzed and compared between different configurations. This work aims to helps the researchers understand the propagation channel for designing mmWave technologies and communication system in a similar scenario.
机译:大带宽的毫米波(mmWave)是支持高数据速率车对基础设施(V2I)通信的关键技术。在本文中,针对曼哈顿城市街道的特征是28 GHz V2I信道。通过考虑3GPP TR 37.885中的建议,发射器以10 m的高度固定在路灯上,接收器以25 km / h的最大速度安装在乘用车和公共汽车的顶部。具有校准的电磁参数的光线跟踪模拟器在这项工作中用于实际进行密集的模拟。 3D环境模型是从OpenStreetMap重建的。分析并比较了不同配置之间的关键信道参数,包括功率延迟曲线,路径损耗,均方根延迟扩展,K因子,角度扩展和交叉极化比。这项工作旨在帮助研究人员了解在类似情况下设计mmWave技术和通信系统的传播渠道。

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