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首页> 外文期刊>AEU: Archiv fur Elektronik und Ubertragungstechnik: Electronic and Communication >Large-scale path loss models and time dispersion in an outdoor line-of-sight environment for 5G wireless communications
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Large-scale path loss models and time dispersion in an outdoor line-of-sight environment for 5G wireless communications

机译:室外视线环境中用于5G无线通信的大规模路径损耗模型和时间分散

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摘要

This paper presents path loss models and time dispersion parameters for different candidate frequencies above 6 GHz for fifth-generation (5G) wireless communications. Three well-known path loss models are compared for single-frequency and multi-frequency schemes: the close-in (CI) free space reference distance model, the floating intercept model (FI), and the alpha-beta-gamma (ABG) model. This paper also proposes a new path loss model to account for frequency attenuation (FA) with distance, which we term the FA path loss model. In this model, we introduce a frequency-dependent attenuation factor XF(f), which directly adds to the CI reference attenuation. Ultra-wideband measurements are conducted for different frequencies in the range of 10-40 GHz in an outdoor environment for line-of-sight scenarios. The time dispersion parameters mean excess delay, root mean square delay spread (RMS-DS), and maximum excess delay are estimated. The results reveal that the path loss exponent values for CI models are less than 1.4 in our experimental set-up. For the proposed FA model, with a path loss exponent of 1.4, the XF(f) attenuation factor values are less than 9.7 dB. The time dispersion findings from this work reveal that the RMS-DS values varied between 0.1 and 1.7 ns. (C) 2016 Elsevier GmbH. All rights reserved.
机译:本文介绍了第五代(5G)无线通信中高于6 GHz的不同候选频率的路径损耗模型和时间分散参数。针对单频和多频方案,比较了三种著名的路径损耗模型:近距离(CI)自由空间参考距离模型,浮动截距模型(FI)和alpha-beta-γ(ABG)模型。本文还提出了一种新的路径损耗模型,以解决随距离变化的频率衰减(FA),我们将其称为FA路径损耗模型。在此模型中,我们引入了一个与频率相关的衰减因子XF(f),它直接添加到CI参考衰减中。在室外环境中,针对视线场景,对10-40 GHz范围内的不同频率进行超宽带测量。估计时间分散参数的平均延迟时间,均方根延迟扩展(RMS-DS)和最大延迟时间。结果表明,在我们的实验设置中,CI模型的路径损耗指数值小于1.4。对于建议的FA模型,路径损耗指数为1.4,XF(f)衰减因子值小于9.7 dB。这项工作的时间色散发现表明,RMS-DS值在0.1到1.7 ns之间变化。 (C)2016 Elsevier GmbH。版权所有。

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