论文标题

工厂建筑中的子塞拉赫兹通道测量和表征

Sub-Terahertz Channel Measurements and Characterization in a Factory Building

论文作者

Ju, Shihao, Xing, Yunchou, Kanhere, Ojas, Rappaport, Theodore S.

论文摘要

由于大量未使用的频谱,在100 GHz和300 GHz之间的次曲张(THZ)频率被视为第六代(6G)无线通信的关键推动因。第三代合作伙伴项目(3GPP)将室内工业环境纳入了第15条以来的感兴趣的方案。本文使用定向的喇叭天线进行了最近的Sub-THZ频道测量值,使用了142 GHz的27 dbi增益,在工厂建筑中,该工厂建筑物托管设备制造初创公司。在6至40米的距离内进行了以共偏和交叉偏振天线构型的定向测量。具有两个天线极化构型的全向和方向路径损耗产生了总的交叉极化区分(XPD),平均值为27.7 dB,这表明双极极化天线阵列可以为子THZ无线系统提供良好的多路复用增益。测得的功率延迟曲线和功率角光谱显示,使用30 dB阈值的最大根平方(RMS)延迟延迟为66.0纳秒,最大RMS角度扩散为103.7度,这表明工厂场景是由于大量金属结构和物体而引起的丰富分散环境。这项工作将促进新兴的Sub-Thz应用程序,例如为未来的智能工厂进行超分辨率传感和定位。

Sub-Terahertz (THz) frequencies between 100 GHz and 300 GHz are being considered as a key enabler for the sixth-generation (6G) wireless communications due to the vast amounts of unused spectrum. The 3rd Generation Partnership Project (3GPP) included the indoor industrial environments as a scenario of interest since Release 15. This paper presents recent sub-THz channel measurements using directional horn antennas of 27 dBi gain at 142 GHz in a factory building, which hosts equipment manufacturing startups. Directional measurements with co-polarized and cross-polarized antenna configurations were conducted over distances from 6 to 40 meters. Omnidirectional and directional path loss with two antenna polarization configurations produce the gross cross-polarization discrimination (XPD) with a mean of 27.7 dB, which suggests that dual-polarized antenna arrays can provide good multiplexing gain for sub-THz wireless systems. The measured power delay profile and power angular spectrum show the maximum root mean square (RMS) delay spread of 66.0 nanoseconds and the maximum RMS angular spread of 103.7 degrees using a 30 dB threshold, indicating the factory scenario is a rich-scattering environment due to a massive number of metal structures and objects. This work will facilitate emerging sub-THz applications such as super-resolution sensing and positioning for future smart factories.

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