Optimal Receive Beamwidth for Time Varying Vehicular Channels

Yoonseong Kang, Hyowoon Seo, Wan Choi
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引用次数: 7

Abstract

This paper studies a receive beamwidth controlling method in vehicle-to-infrastructure (V2I) wireless communication system using millimeter wave (mm-wave) band. We use a triangular beam pattern to model and characterize a mm-wave receive beam pattern. First of all, channel coherence time for line-of-sight (LoS) downlink transmission is derived under the given vehicular scenario. Then, we derive an attainable data rate for the time varying vehicular channel, by supposing that the beam is realigned whenever the channel coherence time is elapsed. In addition, the optimal receive beamwidth, which achieves the maximum point of the derived attainable data rate, is obtained. The effectiveness and feasibility of the proposed receive beamwidth controlling method is underpinned by both analytic and numerical simulation results. The results are also compared with a uniform linear array (ULA) beam pattern model and show that the triangular beam pattern model can well characterize the practical antenna model.
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时变车载信道的最优接收波束宽度
研究了毫米波(mm-wave)波段车对基础设施(V2I)无线通信系统中接收波束宽度的控制方法。我们使用三角形波束模式来模拟和表征毫米波接收波束模式。首先,推导了给定车载场景下视距下行传输的信道相干时间。然后,我们推导了时变车载信道可实现的数据速率,假设每当信道相干时间过去时波束就会重新排列。在此基础上,给出了可获得数据速率最大值的最优接收波束宽度。分析和数值仿真结果验证了所提出的接收波束宽度控制方法的有效性和可行性。并与均匀线性阵列(ULA)波束方向图模型进行了比较,结果表明三角形波束方向图模型能很好地表征实际天线模型。
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