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Propagation Path Loss Modeling and Outdoor Coverage Measurements Review in Millimeter Wave Bands for 5G Cellular Communications

机译:用于5G蜂窝通信的毫米波波段中的传播路径损耗建模和室外覆盖范围测量综述

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The global bandwidth inadequacy facing wireless carriers has motivated the exploration of the underutilized millimeter wave (mm-wave) frequency spectrum for future broadband cellular communication networks, and mmWave band is one of the promising candidates due to wide spectrum. This paper presents propagation path loss and outdoor coverage and link budget measurements for frequencies above 6 GHz (mm-wave bands) using directional horn antennas at the transmitter and omnidirectional antennas at the receiver. This work presents measurements showing the propagation time delay spread and path loss as a function of separation distance for different frequencies and antenna pointing angles for many types of real-world environments. The data presented here show that at 28 GHz, 38 GHz and 60 GHz, unobstructed Line of Site (LOS) channels obey free space propagation path loss while non-LOS (NLOS) channels have large multipath delay spreads and can utilize many different pointing angles to provide propagation links. At 60 GHz, there is more path loss and smaller delay spreads. Power delay profiles PDPs were measured at every individual pointing angle for each TX and RX location, and integrating each of the PDPs to obtain received power as a function of pointing angle. The result shows that the mean RMS delay spread varies between 7.2 ns and 74.4 ns for 60 GHz and 28 GHz respectively in NLOS scenario.
机译:无线运营商所面临的全球带宽不足已经激发了对未充分利用的毫米波(mm-wave)频谱的探索,以用于未来的宽带蜂窝通信网络,而mmWave频段由于其频谱范围广而成为很有前途的候选者之一。本文介绍了使用发射机处的定向喇叭天线和接收机处的全向天线,对6 GHz以上(毫米波段)以上频率的传播路径损耗和室外覆盖范围以及链路预算的测量。这项工作提出的测量结果表明,对于许多类型的真实环境,不同频率和天线指向角的传播时间延迟扩展和路径损耗与间隔距离的函数有关。此处显示的数据表明,在28 GHz,38 GHz和60 GHz处,无障碍站点线(LOS)信道遵循自由空间传播路径损耗,而非LOS(NLOS)信道具有较大的多径延迟扩展,并且可以利用许多不同的指向角度提供传播链接。在60 GHz时,路径损耗更大,延迟扩展更小。在每个TX和RX位置的每个单独的指向角处测量功率延迟曲线PDP,并对每个PDP进行积分以获得作为指向角函数的接收功率。结果表明,在非视距情况下,对于60 GHz和28 GHz,平均RMS延迟扩展分别在7.2 ns和74.4 ns之间变化。

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