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Paving the Way for Economically Accepted and Technically Pronounced Smart Radio Environment
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作者 Mostafa Salah andreas pitsillides Ahmed S.Mubarak 《China Communications》 SCIE CSCD 2022年第8期247-266,共20页
Recently,Reconfigurable Intelligent Surfaces(RISs)have been introduced to provide the necessary flexibility for the design of the Smart Radio Environment(SRE),which can be optimally shaped to facilitate efficient sign... Recently,Reconfigurable Intelligent Surfaces(RISs)have been introduced to provide the necessary flexibility for the design of the Smart Radio Environment(SRE),which can be optimally shaped to facilitate efficient signal transmissions.In line with the concept of smart cities,SRE needs to be carefully designed with respect to the city infrastructure and utilization of resources.In this paper,we provide our vision on RIS integration into future Smart Cities by highlighting the potential technical,environmental,and economic motivations of RIS deployment in harmony with various ecosystems at a city level such as buildings facades.To this end,we are pointing out some scenarios for mitigating the conflict between RIS realization and the existing building facade’s ecosystems such as advertising display and solar cells on building walls.Also,in this fashion,the proposed vision supports a win-win relationship between all stakeholders of different ecosystems.This study presents guidelines for not only enabling seamless economically accepted RIS widespread utilization but,also more technically sounding SRE by supporting enhanced RIS features and more advanced applications that cannot be attained by traditional passive RIS.Moreover,based on the current research directions,we offer promising insights for cost-effective mass pro-duction through motivating two scenarios of“all on silicon”and“all as metasurface”fabrication technology.With this study,we aim to encourage the metasurface researchers,that for a broad deployment of the technical solution,economic,environmental,and other commercial requirements should be planned together,early on in the design phase. 展开更多
关键词 smart radio environment(SRE) reconfigurable intelligent surface(RIS) 6G passive/active metasurface
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用于纳米网络的软件定义超材料设计与开发
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作者 Christos Liaskos Ageliki Tsioliaridou +9 位作者 andreas pitsillides lan F.Akyildiz Nikolaos V.Kantartzis Antonios X.Lalas Xenofontas Dimitropoulos Sotiris loannidis Maria Kafesaki C.M.Soukoulis 陈玲璐 陈鼎鼎 《通信对抗》 2016年第2期47-56,共10页
介绍了一类可通过软件来控制电磁特性的可编程超材料。这种软件定义超材料(SDM)源于超材料与纳米网络的结合。超材料是一种人工结构,具有特殊的材料特性,在自然界中无法找到这类材料。自超材料出现以来,近几年许多研究领域都取得了突破... 介绍了一类可通过软件来控制电磁特性的可编程超材料。这种软件定义超材料(SDM)源于超材料与纳米网络的结合。超材料是一种人工结构,具有特殊的材料特性,在自然界中无法找到这类材料。自超材料出现以来,近几年许多研究领域都取得了突破性进展,例如电磁隐身(隐身衣)、辐射吸收、声波光波过滤,以及可应用于传感器和植入式通信设备的高效能天线等。然而,现有的超材料结构是"僵化"的,即,它们不具备可重构功能。这一缺陷使超材料只有少数具有精密设备的实验室才能制造,这阻碍了该领域的发展与创新,尤其是限制了超材料的应用范围,使得它只能在静态结构中应用。文章所提出的软件定义超材料类似于"可塑的"(可重构)超材料,其特性可以通过计算机接口来编程控制。这种控制是通过在超材料结构并入纳米机器网络来实现的。纳米机器可以接收来自用户的指令并对超材料外轮廓做出简单的几何调整,以达到调整超材料电磁特性的目的。文章讨论了软件定义超材料的结构、预期特性和实现方面的问题,并通过对预期性能的仿真讨论了合适的纳米组网模型,概括总结了在软件定义超材料的分析、设计、样机研究、制造和初始应用场景等方面所存在的研究难点。 展开更多
关键词 材料设计 软件定义 纳米机器 网络 电磁特性 材料结构 开发 编程控制
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