Path loss and RMS delay spread model for 5G channel at 19 GHz

A. Al-Samman, T. Rahman, Marwan Hadri, M. N. Hindia
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引用次数: 8

Abstract

The past couple of years have seen an explosion in mobile data traffic as a result of the growth of mobile devices such as smartphones, tablets, and those that are capable of monitoring, record, provide, and transfer Zetta Bytes of data on a yearly basis. As a solution, researchers focus toward the frequency band above 6 GHz bands to propose a new band that can offer larger bandwidth. However, to choose the optimum operation frequency for 5G network needs several channel investigations in terms of large scale and small scale model. In this paper, the power decay is investigated based on path loss and the dispersion of 5G wideband channel. The path loss and time dispersion are estimated for 5G channel at 19 GHz frequency for a line of sight (LOS) and non-line of sight (NLOS) environment. An extensive measurement is conducted using wideband channel sounder within 1 GHz bandwidth. Two different types of antennas are used for collect the received signal directional and omnidirectional antenna. The results reveal that the path loss exponent values in the range of 0.2 to 2.1 depend on the antenna configuration and environment scenarios. For time dispersion analysis, it is found that the omnidirectional antenna is more suitable for RMS delay spread than using the horn antenna at the receiver side.
19 GHz 5G信道的路径损耗和RMS延迟扩展模型
过去几年,由于智能手机、平板电脑等移动设备的发展,以及那些能够每年监控、记录、提供和传输数据的设备,移动数据流量出现了爆炸式增长。作为解决方案,研究人员将重点放在6 GHz以上的频段上,提出了一个可以提供更大带宽的新频段。然而,选择5G网络的最佳运行频率需要在大规模和小规模模型上进行多次信道调查。本文研究了基于路径损耗和5G宽带信道色散的功率衰减问题。估计了19 GHz频率下5G信道在视线(LOS)和非视线(NLOS)环境下的路径损耗和时间色散。利用1ghz带宽的宽带信道测深仪进行了广泛的测量。接收信号采用两种不同类型的天线,定向天线和全向天线。结果表明,路径损耗指数的取值范围为0.2 ~ 2.1,与天线配置和环境有关。在时间色散分析中,发现全向天线比喇叭天线更适合于接收机侧的RMS延迟扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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