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Millimeter‐wave directional‐antenna beamwidth effects on the ITU‐R building entry loss (BEL) propagation model href='#etr212219-note-0001'/>

机译:毫米波定向 - 天线波束宽度对ITU-R建筑物入口丢失(BEL)传播模型

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Assuming omnidirectional antenna reception, the ITU‐R recently developed a new propagation model on building entry loss (BEL) for 5G millimeter‐wave frequency sharing and compatibility studies, which is a simplified outdoor‐to‐indoor path loss model. Considering the utilization of high‐gain narrow‐beamwidth beamforming, the omnidirectional‐based ITU‐R BEL model may not be appropriate to predict propagation characteristics for directional beamforming scenarios. This paper studies the effects of beamwidth on the ITU‐R BEL model. This study is based on field measurements collected with four different beamwidth antennas: omnidirectional, 10° horn, 30° horn, and 60° horn. The measurement campaigns were conducted at two types of building sites: traditional and thermally efficient buildings. These sites, as well as the measurement scenarios, were carefully chosen to comply with the ITU‐R BEL measurement guidelines and the ITU‐R building types. We observed the importance of accurate beam alignment from the BEL variation range. We were able to quantify the beamwidth dependency by fitting to a model that is inversely proportional to the beamwidth.
机译:假设全向天线接收,ITU-R最近在建筑物进入损耗(BEL)上开发了一种新的传播模型,用于5G毫米波频率共享和兼容性研究,这是一种简化的室外到室内路径损耗模型。考虑到高增益窄波束宽波束形成的利用,基于全向的ITU-R Bel模型可能不适合预测定向波束形成场景的传播特性。本文研究了波束宽度对ITU-R Bel模型的影响。本研究基于与四种不同的波束天线收集的现场测量:全向,10°角,30°角和60°喇叭。测量运动是在两种建筑工地进行的:传统和热效率建筑。这些网站以及测量方案仔细选择符合ITU-R BEL测量指南和ITU-R建筑类型。我们观察到从BEL变化范围内准确的光束对齐的重要性。我们能够通过拟合到与波束宽度成反比的模型来量化波束宽度依赖性。

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