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Analysis of Geometric Multibounced Virtual Scattering Channel Model for Dense Urban Street Environments

机译:密集城市街道环境的几何多跳虚拟散射通道模型分析

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摘要

This paper presents a generalized visual scattering channel model for car-to-car (C2C) mobile radio environments, in which an asymmetric directional antenna is deployed at the mobile transmitter (MT). The signals received at the mobile receiver (MR) from the MT are assumed to experience multibounced propagation paths. More importantly, the proposed model first separates the multibounced propagation paths into odd- and even-numbered-bounced propagation conditions. General formulations of the marginal probability density functions (pdfs) of the angle of departure (AoD) at the transmitter and the angle of arrival (AoA) at the receiver have been derived for the given two conditions, respectively. From the proposed model, we derive an expression for the Doppler frequency due to the relative motion between the MT and the MR, which broadens the research of the proposed visual street scattering channel model. The results show that the proposed model can fit those of the previous scattering channel models and the measurement results for dense urban street environments very well, which validate the generalization of the proposed virtual street channel model.
机译:本文提出了一种适用于车对车(C2C)移动无线电环境的通用视觉散射信道模型,其中在移动发射机(MT)上部署了非对称定向天线。假设在移动接收机(MR)处从MT接收到的信号经历了多跳的传播路径。更重要的是,所提出的模型首先将多次反射的传播路径分为奇数和偶数反弹的传播条件。对于给定的两个条件,分别得出了发射器的离开角(AoD)和接收器的到达角(AoA)的边际概率密度函数(pdfs)的一般公式。从提出的模型中,由于MT和MR之间的相对运动,我们推导出了多普勒频率的表达式,从而拓宽了提出的视觉街道散射通道模型的研究范围。结果表明,所提出的模型能够很好地拟合先前的散射通道模型,并且在稠密的城市街道环境下的测量结果非常吻合,验证了所提出的虚拟街道通道模型的推广性。

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