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Beam design for beam switching based millimeter wave vehicle-to-infrastructure communications

机译:基于梁切换的梁设计基于毫米波车辆到基础设施通信

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Beam alignment is a source of overhead in mobile millimeter wave communication systems due to the need for frequent repointing. Beam switching architectures can reduce the amount of repointing required by leveraging position prediction. This paper presents an optimization of beam design in terms of rate. We consider a non-congested two-lane highway scenario where road side units are installed on lighting poles. Under this scenario, line-of-sight to the road side unit is very likely and vehicle speed does not vary much. We formulate and solve numerically using a gradient descent method for an optimal beam design to maximize the data rate for non-overlap beams. The result shows close performance to the equal coverage beam design. We study the effect of the overlap on the average rate and outage and compare the equal coverage with the equal beamwidth design. Numerical examples show that the equal coverage design can achieve up to 1.5x the rate of the equal beamwidth design confirming the importance of the choice of beam design.
机译:光束对准​​是​​移动毫米波通信系统中的开销源,这是由于需要频繁地驾驶。光束切换架构可以减少利用位置预测所需的延续量。本文在速率方面提出了光束设计的优化。我们考虑一个非拥挤的双线公路场景,在照明杆上安装了道路侧单元。在这种情况下,对道路侧单元的视线很可能,车速不会变化很大。我们使用梯度下降方法在数值上配方和解决,用于最佳光束设计,以最大化非重叠波束的数据速率。结果显示了与等覆盖波束设计的紧密性能。我们研究重叠对平均速率和中断的影响,并比较与相等的波束设计的平等覆盖。数值例子表明,相同的覆盖设计可以实现高达1.5倍的相等波束设计的速率,确认光束设计的重点的重要性。

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