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Broadband Millimeter-Wave Propagation Measurements and Models Using Adaptive-Beam Antennas for Outdoor Urban Cellular Communications

机译:室外城市蜂窝通信使用自适应波束天线的宽带毫米波传播测量和模型

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摘要

The spectrum crunch currently experienced by mobile cellular carriers makes the underutilized millimeter-wave frequency spectrum a sensible choice for next-generation cellular communications, particularly when considering the recent advances in low cost sub-terahertz/millimeter-wave complementary metal–oxide semiconductor circuitry. To date, however, little is known on how to design or deploy practical millimeter-wave cellular systems. In this paper, measurements for outdoor cellular channels at 38 GHz were made in an urban environment with a broadband (800-MHz RF passband bandwidth) sliding correlator channel sounder. Extensive angle of arrival, path loss, and multipath time delay spread measurements were conducted for steerable beam antennas of differing gains and beamwidths for a wide variety of transmitter and receiver locations. Coverage outages and the likelihood of outage with steerable antennas were also measured to determine how random receiver locations with differing antenna gains and link budgets could perform in future cellular systems. This paper provides measurements and models that may be used to design future fifth-generation millimeter-wave cellular networks and gives insight into antenna beam steering algorithms for these systems.
机译:<?Pub Dtl?>移动蜂窝运营商当前经历的频谱紧缩使得利用不足的毫米波频谱成为下一代蜂窝通信的明智选择,尤其是考虑到低成本亚太赫兹/毫米波互补技术的最新进展时金属氧化物半导体电路。然而,迄今为止,关于如何设计或部署实用的毫米波蜂窝系统知之甚少。在本文中,在城市环境中使用宽带(800 MHz RF通带带宽)滑动相关器信道探测仪对38 GHz室外蜂窝信道进行了测量。对于各种发射器和接收器位置,对具有不同增益和波束宽度的可控波束天线进行了广泛的到达角,路径损耗和多径时延扩展测量。还测量了覆盖中断和可控天线中断的可能性,以确定在未来的蜂窝系统中,具有不同天线增益和链路预算的随机接收器位置将如何执行。本文提供了可用于设计未来的第五代毫米波蜂窝网络的测量和模型,并深入了解了这些系统的天线波束控制算法。

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