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Novel 3D Geometry-Based Stochastic Models for Non-Isotropic MIMO Vehicle-to-Vehicle Channels

机译:非等向MIMO车辆到车辆通道的基于3D几何的新型随机模型

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This paper proposes a novel three-dimensional (3D) theoretical regular-shaped geometry-based stochastic model (RS-GBSM) and the corresponding sum-of-sinusoids (SoS) simulation model for non-isotropic multiple-input multiple-output (MIMO) vehicle-to-vehicle (V2V) Ricean fading channels. The proposed RS-GBSM, combining line-of-sight (LoS) components, a two-sphere model, and an elliptic-cylinder model, has the ability to study the impact of the vehicular traffic density (VTD) on channel statistics, and jointly considers the azimuth and elevation angles by using the von Mises Fisher distribution. Moreover, a novel parameter computation method is proposed for jointly calculating the azimuth and elevation angles in the SoS channel simulator. Based on the proposed 3D theoretical RS-GBSM and its SoS simulation model, statistical properties are derived and thoroughly investigated. The impact of the elevation angle in the 3D model on key statistical properties is investigated by comparing with those of the corresponding two-dimensional (2D) model. It is demonstrated that the 3D model is more accurate to characterize real V2V channels, in particular for pico cell scenarios. Finally, close agreement is achieved between the theoretical model, SoS simulation model, and simulation results, demonstrating the utility of the proposed models.
机译:本文针对非各向同性多输入多输出(MIMO)提出了一种新颖的三维(3D)理论正则形基于几何的随机模型(RS-GBSM)和相应的正弦和(SoS)仿真模型)车对车(V2V)Ricean衰落频道。拟议的RS-GBSM结合了视线(LoS)组件,两球模型和椭圆圆柱模型,能够研究车辆交通密度(VTD)对通道统计的影响,并且通过使用von Mises Fisher分布共同考虑方位角和仰角。此外,提出了一种新颖的参数计算方法,用于在SoS通道模拟器中共同计算方位角和仰角。基于提出的3D理论RS-GBSM及其SoS仿真模型,推导并深入研究了统计特性。通过与相应的二维(2D)模型进行比较,研究了3D模型中仰角对关键统计属性的影响。事实证明,3D模型能够更准确地表征真实的V2V通道,特别是对于微微小区场景。最后,理论模型,SoS仿真模型和仿真结果之间达成了密切的一致性,证明了所提出模型的实用性。

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