论文标题

室内繁殖测量,用Sekisui透明反射器在28/39/120/144 GHz

Indoor Propagation Measurements with Sekisui Transparent Reflectors at 28/39/120/144 GHz

论文作者

Anjinappa, Chethan K., Ganesh, Ashwini P., Ozdemir, Ozgur, Ridenour, Kris, Khawaja, Wahab, Guvenc, Ismail, Nomoto, Hiroyuki, Ide, Yasuaki

论文摘要

使用Terahertz或毫米波无线网络操作的关键挑战之一是至少需要强烈的非线视线(NLOS)反映的路径以形成稳定的链接。最近的研究表明,增强/改善这些NLOS链接的经济方式是使用可提供强大反射的被动金属反射器。但是,尽管具有固有的无线电优势,但金属仍可以极大地影响景观的外观,尤其是室内环境。通过使用透明反射器,一种逃脱的概念视图。在这项工作中,我们第一次评估了28 GHz,39 GHz,120 GHz和144 GHz频段在室内环境中被动透明反射器的无线传播特性。特别是,我们研究了在不同频率下的穿透性损失和反射特性,并将其与其他常见的室内材料(例如天花板瓷砖,透明玻璃,干墙,胶合板和金属)进行比较。测量结果表明,除了明显的透明度优势外,透明反射器的穿透力损失比常见的室内材料(不包括金属)高,并且在反射方面的性能类似于金属。我们的实验结果直接转化为更好的反射性​​能并保留环境中的无线电波,而不是常见的室内材料,并具有潜在的无线通信应用。

One of the critical challenges of operating with the terahertz or millimeter-wave wireless networks is the necessity of at least a strong non-line-of-sight (NLoS) reflected path to form a stable link. Recent studies have shown that an economical way of enhancing/improving these NLoS links is by using passive metallic reflectors that provide strong reflections. However, despite its inherent radio advantage, metals can dramatically influence the landscape's appearance - especially the indoor environment. A conceptual view of escaping this is by using transparent reflectors. In this work, for the very first time, we evaluate the wireless propagation characteristics of passive transparent reflectors in an indoor environment at 28 GHz, 39 GHz, 120 GHz, and 144 GHz bands. In particular, we investigate the penetration loss and the reflection characteristics at different frequencies and compare them against the other common indoor materials such as ceiling tile, clear glass, drywall, plywood, and metal. The measurement results suggest that the transparent reflector, apart from an obvious advantage of transparency, has a higher penetration loss than the common indoor materials (excluding metal) and performs similarly to metal in terms of reflection. Our experimental results directly translate to better reflection performance and preserving the radio waves within the environment than common indoor materials, with potential applications in controlled wireless communication.

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