Non-WSSUS vehicular channel characterization in highway and urban scenarios at 5.2GHz using the local scattering function

A. Paier, T. Zemen, L. Bernadó, G. Matz, J. Karedal, N. Czink, C. Dumard, F. Tufvesson, A. Molisch, C. Mecklenbräuker
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引用次数: 129

Abstract

The fading process in high speed vehicular traffic telematic applications at 5 GHz is expected to fulfill the wide-sense stationarity uncorrelated scattering (WSSUS) assumption for very short time-intervals only. In order to test this assumption we apply the concept of a local time- and frequency-variant scattering function, which we estimate from measurements of vehicle-to-vehicle wave propagation channels by means of a multi-window spectrogram. The obtained temporal sequence of local scattering functions (LSF) is used to calculate a collinearity measure. We define the stationarity time as the support of the region where the collinearity exceeds a certain threshold. The stationarity time is the maximum time duration over which the WSSUS assumption is valid. Measurements from an highway with vehicles driving in opposite directions show stationarity times as small as 23 ms whereas vehicles driving in the same direction show stationarity times of 1479 ms.
基于局部散射函数的5.2GHz高速公路和城市场景下非wssus车辆信道特性研究
5ghz高速车载信息通信应用中的衰落过程仅满足很短时间间隔的广域平稳不相关散射(WSSUS)假设。为了验证这一假设,我们应用了局部时变和频变散射函数的概念,我们通过多窗口谱图从车对车的波传播通道的测量中估计出来。得到的局部散射函数(LSF)时间序列用于计算共线性测度。我们将平稳性时间定义为共线性超过一定阈值区域的支持度。平稳时间是指WSSUS假设有效的最大持续时间。在高速公路上进行的测量显示,车辆在相反方向行驶时的平稳时间只有23毫秒,而在同一方向行驶时的平稳时间为1479毫秒。
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