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Design of Wideband MIMO Car-to-Car Channel Models Based on the Geometrical Street Scattering Model

机译:基于几何街道散射模型的宽带MIMO车对车信道模型设计

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We propose a wideband multiple-input multiple-output (MIMO) car-to-car (C2C) channel model based on the geometrical street scattering model. Starting from the geometrical model, a MIMO reference channel model is derived under the assumption of single-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 in two rectangular areas located on both sides of the street. Analytical solutions are presented for the space-time-frequency cross-correlation function (STF-CCF), the two-dimensional (2D) space CCF, the time-frequency CCF (TF-CCF), the temporal autocorrelation function (ACF), and the frequency correlation function (FCF). An efficient sum-of-cisoids (SOCs) channel simulator is derived from the reference model. It is shown that the temporal ACF and the FCF of the SOC channel simulator fit very well to the corresponding correlation functions of the reference model. To validate the proposed channel model, the mean Doppler shift and the Doppler spread of the reference model have been matched to real-world measurement data. The comparison results demonstrate an excellent agreement between theory and measurements, which confirms the validity of the derived reference model. The proposed geometry-based channel simulator allows us to study the effect of nearby street scatterers on the performance of C2C communication systems.
机译:我们提出了基于几何街道散射模型的宽带多输入多输出(MIMO)车对车(C2C)信道模型。从几何模型开始,在视距(LOS)和非LOS(NLOS)传播环境中假设单反弹散射的情况下,得出了MIMO参考信道模型。拟议的通道模型假设有无数个散射体,这些散射体均匀分布在位于街道两侧的两个矩形区域中。提出了时空频率互相关函数(STF-CCF),二维(2D)空间CCF,时频CCF(TF-CCF),时间自相关函数(ACF),以及频率相关函数(FCF)。从参考模型中可以得出有效的类固醇和(SOCs)通道模拟器。结果表明,SOC通道模拟器的时间ACF和FCF非常适合参考模型的相应相关函数。为了验证所提出的信道模型,参考模型的平均多普勒频移和多普勒扩展已经与实际测量数据相匹配。比较结果证明了理论与测量之间的极佳一致性,这证实了所导出参考模型的有效性。提出的基于几何的通道模拟器使我们能够研究附近的街道散射体对C2C通信系统性能的影响。

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