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A novel MIMO car-to-car channel model based on the geometrical curved street scattering model

机译:基于几何弯曲街道散射模型的新型MIMO车对车信道模型

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This paper introduces a novel multiple-input multiple-output (MIMO) car-to-car (C2C) channel model, which is based on a geometrical curved street scattering model. Starting from the geometrical model, a MIMO reference channel model is derived under the assumption of a combination of single- and double-bounce scattering in line-of-sight (LOS) and non-LOS (NLOS) propagation environments. The proposed channel model assumes an infinite number of scatterers, which are uniformly distributed on the outer and inner curves of the street. Expressions are presented for the three-dimensional (3D) space-time cross-correlation function (CCF), the temporal autocorrelation function (ACF), and the two-dimensional (2D) space CCF. An efficient sum-of-cisoids (SOC) channel simulator is derived from the reference model. It is shown that the temporal ACF of the SOC channel simulator fits very well to that of the reference model. The validity of the derived reference model has been verified by demonstrating an excellent match between the temporal ACF of the reference model with that of the one-ring model.
机译:本文介绍了一种基于几何弯曲街道散射模型的新型多输入多输出(MIMO)车对车(C2C)信道模型。从几何模型开始,在视距(LOS)和非LOS(NLOS)传播环境中结合单反弹和双反弹散射的假设,得出MIMO参考信道模型。拟议的渠道模型假设有无限数量的散射体,这些散射体均匀分布在街道的内外曲线上。给出了针对三维(3D)时空互相关函数(CCF),时间自相关函数(ACF)和二维(2D)空间CCF的表达式。从参考模型中可以得出有效的类固醇和(SOC)通道模拟器。结果表明,SOC通道模拟器的时间ACF非常适合参考模型。通过证明参考模型的时间ACF与单环模型的时间ACF之间的出色匹配,已验证了导出参考模型的有效性。

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