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Three-Dimensional MIMO Channel Model with High-Mobility Wireless Communication Systems Using Leaky Coaxial Cable in Rectangular Tunnel

机译:具有矩形隧道泄漏同轴电缆的高迁移无线通信系统的三维MIMO通道模型

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With the rapid development of high-mobility wireless communication systems, e.g., high-speed train (HST) and metro wireless communication systems, more and more attention has been paid to the wireless communication technology in tunnel-like scenarios. In this paper, we propose a three-dimensional (3D) nonstationary multiple-input multiple-output (MIMO) channel model with high-mobility wireless communication systems using leaky coaxial cable (LCX) inside a rectangular tunnel over the 1.8?GHz band. Taking into account single-bounce scattering under line-of-sight (LoS) and non-line-of-sight (NLoS) propagations condition, the analytical expressions of the channel impulse response (CIR) and temporal correlation function (T-CF) are derived. In the proposed channel model, it is assumed that a large number of scatterers are randomly distributed on the sidewall of the tunnel and the roof of the tunnel. We analyze the impact of various model parameters, including LCX spacing, time separation, movement velocity of Rx, and K-factor, on the T-CF of the MIMO channel model. For HST, the results of some further studies on the maximum speed of 360?km/h are given. By comparing the T-CF between the dipole MIMO system and the LCX-MIMO system, we can see that the performance of the LCX-MIMO system is better than that of the dipole MIMO system.
机译:随着高迁移率无线通信系统的快速发展,例如,高速列车(HST)和地铁无线通信系统,在隧道状场景中越来越多地关注无线通信技术。在本文中,我们提出了一种三维(3D)非间断的多输入多输出(MIMO)信道模型,其使用在1.8的矩形隧道内使用泄漏的同轴电缆(LCX)内的高移动性无线通信系统。考虑到在视线(LOS)和非视线(NLOS)传播条件下的单反冲散射,通道脉冲响应(CIR)和时间相关函数(T-CF)的分析表达式派生。在所提出的频道模型中,假设大量散射体随机分布在隧道的侧壁和隧道的屋顶上。我们在MIMO信道模型的T-CF上分析各种模型参数,包括LCX间距,时间分离,Rx和K系数的时间分离,移动速度的影响。对于HST,给出了一些关于360 km / h的最大速度的进一步研究的结果。通过比较偶极MIMO系统与LCX-MIMO系统之间的T-CF,我们可以看出LCX-MIMO系统的性能优于偶极MIMO系统的性能。

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