Vehicle platooning is considered as one of the key use cases for vehicle-to-vehicle (V2V) communications. However, its benefits can be realized only with highly reliable wireless transmission. As the 5.9GHz frequency band used for V2V suffers from high congestion, in this paper, we consider the use of the terrestrial TV frequencies for intra-platoon communications. In order to be able to evaluate the potential of the new bands fully, propagation models for V2V communications at such frequencies are needed. Therefore, this paper reports new V2V propagation measurements and their modeling results. Particularly, we propose a Double Slope Double Shadowing model as the most accurate one, based on a comparison of various models using the Bayesian Information Criteria. We also investigate the space-time autocorrelation properties of the shadowing, which turned out to be dependent on the speed of vehicles. The proposed path loss and shadowing model differs from the ones proposed for the 5.9GHz band. Mostly, in favor of the TV band, as shown by, e.g., no statistically significant impact of a blocking car.
翻译:车辆排队被认为是车辆对车辆(V2V)通信的主要使用案例之一,然而,只有高度可靠的无线传输,才能实现其效益。由于V2V使用的5.9GHz频率频带非常拥挤,在本文件中,我们考虑将地面电视频率用于广场内通信,为了能够充分评价新波段的潜力,需要在这些波段内进行V2V通信的传播模式。因此,本文报告新的V2V传播测量及其模型结果。特别是,我们建议采用双层双层阴影模型作为最准确的模式,以使用Bayesian信息标准对各种模型进行比较为基础。我们还调查阴影的时态自动变异特性,这种变化取决于车辆的速度。拟议的路径丢失和阴影模型不同于5.9GHz频段的拟议模式。多数情况下,支持电视波段,例如,封锁汽车没有统计上显著的影响。