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首页> 外文期刊>IEEE Transactions on Communications >Modeling and Analyzing Millimeter Wave Cellular Systems
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Modeling and Analyzing Millimeter Wave Cellular Systems

机译:毫米波蜂窝系统建模与分析

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摘要

We provide a comprehensive overview of mathematical models and analytical techniques for millimeter wave (mmWave) cellular systems. The two fundamental physical differences from conventional sub-6-GHz cellular systems are: 1) vulnerability to blocking and 2) the need for significant directionality at the transmitter and/or receiver, which is achieved through the use of large antenna arrays of small individual elements. We overview and compare models for both of these factors, and present a baseline analytical approach based on stochastic geometry that allows the computation of the statistical distributions of the downlink signal-to-interference-plus-noise ratio (SINR) and also the per link data rate, which depends on the SINR as well as the average load. There are many implications of the models and analysis: 1) mmWave systems are significantly more noise-limited than at sub-6 GHz for most parameter configurations; 2) initial access is much more difficult in mmWave; 3) self-backhauling is more viable than in sub-6-GHz systems, which makes ultra-dense deployments more viable, but this leads to increasingly interference-limited behavior; and 4) in sharp contrast to sub-6-GHz systems cellular operators can mutually benefit by sharing their spectrum licenses despite the uncontrolled interference that results from doing so. We conclude by outlining several important extensions of the baseline model, many of which are promising avenues for future research.
机译:我们提供了毫米波(mmWave)蜂窝系统的数学模型和分析技术的全面概述。与传统的低于6 GHz的蜂窝系统的两个基本物理区别是:1)易受阻塞影响; 2)需要在发射机和/或接收机处具有明显的方向性,这是通过使用小型个体的大型天线阵列来实现的元素。我们概述并比较了这两个因素的模型,并提出了一种基于随机几何的基线分析方法,该方法允许计算下行链路信噪比(SINR)以及每个链路的统计分布数据速率,取决于SINR以及平均负载。该模型和分析有很多含义:1)对于大多数参数配置,毫米波系统的噪声限制远低于6 GHz以下的噪声; 2)在mmWave中,初始访问要困难得多; 3)自回传比6 GHz以下系统更可行,这使得超密集部署更加可行,但这会导致干扰受限的行为日益严重;与4)与6 GHz以下系统形成鲜明对比的是,尽管运营商共享频谱许可,但互不干扰,却可以互惠互利。最后,我们概述了基线模型的几个重要扩展,其中许多是未来研究的有希望的途径。

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