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Wideband Measurement-Based Modeling of Inter-Vehicle Channels in the 5-GHz Band

机译:基于宽带测量的5 GHz频带内车辆间通道的建模

摘要

In this paper, we describe a new wideband singleinput– single-output (SISO) channel model for vehicle-to-vehicle (V2V) channels, based on an extensive measurement campaign carried out at 5.2 GHz around Helsinki, Finland, in August 2007. Both the currently well-known non-stationary behavior and the measured characteristics of the V2V channel motivate the use of a geometry-based stochastic channel modeling (GSCM) approach rather than a classical tapped delay line (TDL) approach. For the time-variant contributions stemming from discrete scatterers, the propagation distance can be deterministically estimated (i.e., geometrically), whereas the fading can be modeled as the combination of a distance-decaying process and two stochastic small- and large-scale processes. The complete parameterization of the V2V wideband channel model, the recipe for its implementation, and the analysis of its validity are also provided in this paper.
机译:在本文中,我们基于2007年8月在芬兰赫尔辛基附近以5.2 GHz频率进行的广泛测量活动,描述了一种新的车载至车辆(V2V)通道的宽带单输入单输出(SISO)通道模型。当前众所周知的非平稳行为和V2V通道的测量特性都促使使用基于几何的随机通道建模(GSCM)方法,而不是经典的抽头延迟线(TDL)方法。对于来自离散散射体的时变贡献,可以确定性地(即,以几何方式)估计传播距离,而可以将衰落过程建模为距离衰减过程和两个随机的小规模和大规模过程的组合。本文还提供了V2V宽带信道模型的完整参数化,实现方法和有效性分析。

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