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A Novel Wideband MIMO Car-to-Car Channel Model Based on a Geometrical Semi-Circular Tunnel Scattering Model

机译:基于几何半圆隧道散射模型的宽带MIMO车对车信道模型

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In this paper, we present a wideband multiple-input multiple-output (MIMO) car-to-car (C2C) channel model based on a geometrical semi-circular tunnel (SCT) scattering model. From the geometrical SCT scattering model, a reference channel model is derived under the assumption of single-bounce scattering in line-of-sight (LOS) and non-LOS (NLOS) propagation environments. In the proposed reference channel model, it is assumed that an infinite number of scatterers are randomly distributed on the tunnel wall. Starting from the geometrical scattering model, the time-variant transfer function (TVTF) is derived, and its correlation properties in time, frequency, and space are studied. Expressions are presented for the space–time–frequency cross-correlation function (STF-CCF), the two-dimensional (2D) space CCF, the 2D time–frequency CCF (TF-CCF), the temporal autocorrelation function (ACF), and the frequency correlation function (FCF). Owing to the semi-circular geometry, we reduced the originally threefold integrals to double integrals in the computations of the correlation functions, which simplifies the numerical analysis considerably. From the TVTF characterizing the reference model, an efficient sum-of-cisoid (SOC) channel simulator is derived. Numerical results show that both the temporal ACF and the FCF of the SOC channel simulator match very well with those of the reference model. A validation of the proposed model has been done by fitting the delay spread of the reference model to that of the measured channel, which demonstrates an excellent agreement. The proposed channel simulator allows us to evaluate the performance of C2C communication systems in tunnel environments.
机译:在本文中,我们提出了基于几何半圆隧道(SCT)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SCT散射模型,在视距(LOS)和非LOS(NLOS)传播环境中假设单反弹散射的情况下,得出参考信道模型。在提出的参考通道模型中,假设无限数量的散射体随机分布在隧道壁上。从几何散射模型出发,推导了时变传递函数(TVTF),并研究了其在时间,频率和空间上的相关特性。给出了时空频率互相关函数(STF-CCF),二维(2D)空间CCF,2D时频CCF(TF-CCF),时间自相关函数(ACF),以及频率相关函数(FCF)。由于具有半圆形几何形状,我们在相关函数的计算中将原来的三重积分减少为双积分,从而大大简化了数值分析。从表征参考模型的TVTF中,可以得出有效的类固醇和(SOC)通道模拟器。数值结果表明,SOC通道模拟器的时间ACF和FCF都与参考模型非常匹配。通过将参考模型的延迟扩展与测量通道的延迟扩展进行拟合,对所提出的模型进行了验证,这表明了极好的一致性。拟议中的信道模拟器使我们能够评估隧道环境中C2C通信系统的性能。

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