计算机科学
无线
瓦片
软件
电磁辐射
极化(电化学)
路径损耗
电信
光学
物理
艺术
物理化学
视觉艺术
化学
程序设计语言
作者
Christos Liaskos,Shuai Nie,Ageliki Tsioliaridou,Andreas Pitsillides,Sotiris Ioannidis,Ian F. Akyildiz
出处
期刊:IEEE Communications Magazine
[Institute of Electrical and Electronics Engineers]
日期:2018-09-01
卷期号:56 (9): 162-169
被引量:1134
标识
DOI:10.1109/mcom.2018.1700659
摘要
Electromagnetic waves undergo multiple uncontrollable alterations as they propagate within a wireless environment. Free space path loss, signal absorption, as well as reflections, refractions, and diffractions caused by physical objects within the environment highly affect the performance of wireless communications. Currently, such effects are intractable to account for and are treated as probabilistic factors. This article proposes a radically different approach, enabling deterministic, programmable control over the behavior of wireless environments. The key enabler is the so-called HyperSurface tile, a novel class of planar meta-materials that can interact with impinging electromagnetic waves in a controlled manner. The HyperSurface tiles can effectively re-engineer electromagnetic waves, including steering toward any desired direction, full absorption, polarization manipulation, and more. Multiple tiles are employed to coat objects such as walls, furniture, and overall, any objects in indoor and outdoor environments. An external software service calculates and deploys the optimal interaction types per tile to best fit the needs of communicating devices. Evaluation via simulations highlights the potential of the new concept.
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