论文标题

在功率约束的Terahertz操作软件定义的超材料中定位

Localization in Power-Constrained Terahertz-Operating Software-Defined Metamaterials

论文作者

Lemic, Filip, Abadal, Sergi, Han, Chong, Marquez-Barja, Johann, Alarcón, Eduard, Famaey, Jeroen

论文摘要

软件定义的超材料(SDMS)具有推进电磁波的工程控制的强大潜力。因此,他们设想,在智能纺织品领域,高分辨率结构监测以及在充满挑战的环境中感知到各种令人兴奋的应用程序。许多应用程序设想了SDM结构的变形,例如它们的弯曲,拉伸或滚动,这意味着超材料元素的位置将相对于彼此而变化。在本文中,我们认为,如果将超材料元素准确地本地化,则可以使用此位置信息来启用新颖的SDM应用程序,并用于优化对元素本身的控制。为了实现它们的本地化,我们假设这些元素通过Terahertz(THZ) - 操作纳米网络无线控制。我们认为这些要素是受力约束的,它们的唯一动力选择是从不同的环境来源收集能量。通过仿真,我们证明了基于双向飞行时间(TOF)的本地化以及服务的高可用性(即始终超过80%的时间)的亚毫米准确性,这是由于本地化过程中消耗的低能量的结果。最后,我们定性地描述了拟议的本地化服务的延迟,并概述了一些挑战和未来的研究方向。

Software-Defined Metamaterials (SDMs) show a strong potential for advancing the engineered control of electromagnetic waves. As such, they are envisioned to enable a variety of exciting applications, among others in the domains of smart textiles, high-resolution structural monitoring, and sensing in challenging environments. Many of the applications envisage deformations of the SDM structures, such as their bending, stretching or rolling, which implies that the locations of metamaterial elements will be changing relative to one another. In this paper, we argue that if the metamaterial elements would be accurately localizable, this location information could potentially be utilized for enabling novel SDM applications, as well as for optimizing the control of the elements themselves. To enable their localization, we assume that these elements are controlled wirelessly through a Terahertz (THz)-operating nanonetwork. We consider the elements to be power-constrained, with their sole powering option being to harvest energy from different environmental sources. By means of simulation, we demonstrate sub-millimeter accuracy of the two-way Time of Flight (ToF)-based localization, as well as high availability of the service (i.e., consistently more than 80% of the time), which is a result of the low energy consumed in the localization process. Finally, we qualitatively characterize the latency of the proposed localization service, as well as outline several challenges and future research directions.

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