论文标题
关于建筑物和周围MM波传播的研究
A Study on mm-wave Propagation in and around Buildings
论文作者
论文摘要
由于带宽更宽,并且有可能实现大规模的天线阵列和新的高级传输技术,例如大规模的mimo和横梁成形,这可以利用无线电通道的多维属性,因此将MM波作为5G和6G无线通信的关键推动剂。为了进一步研究MM波无线通道,与低6 GHz谱带相比,传播显示出不同的特征,在室内和室外微细胞环境中进行了关节测量和仿真运动。调查强调,传统的假设是,MM波NLOS传播是有问题的,因为在大多数室内和室外场景中,重要的反射,散射甚至传输机制都提供了良好的NLOS覆盖范围。在某些情况下,这也反映了LOS和NLOS位置之间的角度分布差异有限。最后,借助射线追踪模拟,在论文中分析了不同传播机制(反射,衍射,散射和组合)对接收功率的贡献。
mm-waves are envisaged as key enabler for 5G and 6G wireless communications, thanks to the wider bandwidth and to the possibility of implementing large-scale antenna arrays and new advanced transmission techniques, such as massive MIMO and beamforming, that can take advantage of the multidimensional properties of the wireless channel. In order to further study the mm-wave wireless channel, where propagation shows different characteristics compared to the sub-6 GHz band, a joint measurement and simulation campaigns in indoor and outdoor microcellular environments has been carried out. The investigation highlights that the traditional assumption that mm-wave NLoS propagation is problematic is not true since significant reflections, scattering and even transmission mechanisms provide good NLoS coverage in most indoor and outdoor scenarios. This also reflects in the limited angle-spread differences between LoS and NLoS locations in some cases. Finally, the contribution of different propagation mechanisms (reflection, diffraction, scattering and combination of them) to the received power is analyzed in the paper with the help of ray tracing simulations.