...
首页> 外文期刊>Wireless Networks >Channel model for simultaneous backhaul and access for mmWave 5G outdoor street canyon channel
【24h】

Channel model for simultaneous backhaul and access for mmWave 5G outdoor street canyon channel

机译:MMWAVE 5G户外街峡谷频道同时回程和访问的频道模型

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Millimeter waves (mmWaves) with very wide frequency bands are proposed for 5G new radio to deliver higher data-speed and capacity. Transmission using mmWaves suffers significant path loss and can be compensated by employing directional antennas. The narrow-beam directional antennas act as spatial filters that filter out multipaths falling outside their beam area. This, together with the insignificance of diffraction and diffused scattering in urban outdoors causes mmWave outdoor channel multipath to be spatially sparse with few specular reflections, posing unique requirements on channel modeling. In this paper, we have derived a low complexity mmWave directional channel model based on ray tracing for the urban microcell street canyon environment. A comprehensive characterization of outdoor links in various realistic scenarios including, line of sight (LOS)on-LOS, beam aligned/unaligned and road canyon with/without crossroads is presented. The model captures azimuth and elevation directions of propagation in 3D plane by using a highly directional horn antenna design. Atmospheric absorption loss of mmWave is also modeled to enhance the model's accuracy and generality. The model is validated against measurements reported in the literature. Furthermore, the channel is studied for varying propagation conditions, antenna beamwidths and polarizations, transmitter/receiver heights and positions, and street deployment parameters. Additionally, we propose a metaheuristic algorithm called particle swarm optimization to simultaneously optimize the deployment parameters that minimize path loss as the objective function. The proposed model helps in mmWave system evaluation without the necessity for any costly measurement setup or complex off-the-shelf ray tracing model.
机译:提出了具有非常宽频带的毫米波(MMWaves)为5G新的无线电提供更高的数据速度和容量。使用MMWaves的传输遭受了显着的路径损耗,并且可以通过采用定向天线来补偿。窄梁定向天线充当空间过滤器,该空间过滤器过滤掉落在其光束区域外部的多径。这与城市户外衍射和扩散散射的微不足道,导致MMWave户外通道多路径在空间稀疏,镜头型镜头造成独特的要求。在本文中,我们基于城市微小区街道峡谷环境的射线跟踪来源了低复杂性MMWAVE定向通道模型。展示了各种现实情景中的户外链路的全面表征,包括视线(LOS)/非LOS,梁对齐/未对准和带有/无交叉路的道路峡谷。通过使用高度定向的喇叭天线设计,模型捕获3D平面中传播的方位角和高度方向。 MMWAVE的大气吸收损失也建模,以提高模型的准确性和一般性。该模型针对文献中报告的测量验证。此外,研究信道以改变传播条件,天线波束宽度和偏振,发射机/接收器高度和位置以及街道部署参数。此外,我们提出了一种称为粒子群优化的成群质算法,同时优化可将路径损耗最小化为目标函数的部署参数。该建议的模型有助于MMWAVE系统评估,无需任何昂贵的测量设置或复杂的离上射线跟踪模型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号