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A Novel 3D Non-stationary Channel Model with UPA for Massive MIMO V2V Communication in Crossroads Scattering Environments

机译:具有UPA的新型3D非平稳信道模型,用于十字路口散射环境中的大规模MIMO V2V通信

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In this paper, we propose a novel three-dimensional (3D) non-stationary geometry-based channel model with a uniform planar antenna array (UPA) for massive multiple-input multiple-output (MIMO) vehicle-to-vehicle (V2V) communication in crossroads scattering environments. Considering the nearfield effect, we first calculate the received phases and Doppler frequency variations caused by movements under the spherical wavefront assumption. In this case, we adopt a two-ring and four-quarter-cylinder model to characterize the moving vehicles and static scatterers on the building, respectively. Then, we derive the closed-form expressions of channel impulse responses (CIRs) of the proposed model and discuss statistical properties in detail, e.g., temporal auto-correlation function (ACF) and spatial crosscorrelation function (CCF). Furthermore, the impacts of the movements, distribution of scatterers and setting of UPA on channel statistical properties are studied. Finally, our numerical and simulation results show that our proposed model with limited scatterers can capture the characteristics of massive MIMO V2V communication in crossroads scattering environments while agreeing well with the theoretical model, thereby demonstrating the efficiency of our model.
机译:在本文中,我们为大型多输入多输出(MIMO)车对车(V2V)提出了一种具有统一平面天线阵列(UPA)的新颖的基于三维(3D)非平稳几何的信道模型十字路口分散环境中的通信。考虑到近场效应,我们首先计算在球形波前假设下的运动引起的接收相位和多普勒频率变化。在这种情况下,我们采用两环和四分之四圆柱体模型分别表征建筑物上的移动车辆和静态散射体。然后,我们导出所提出模型的信道冲激响应(CIR)的闭式表达式,并详细讨论统计属性,例如时间自相关函数(ACF)和空间互相关函数(CCF)。此外,研究了运动,散射体的分布以及UPA的设置对信道统计特性的影响。最终,我们的数值和仿真结果表明,我们提出的有限散射体模型可以捕获十字路口散射环境中大规模MIMO V2V通信的特征,同时与理论模型相吻合,从而证明了模型的有效性。

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