论文标题
将智能反射器表面发展为公共卫生的6G:应用空气传播病毒检测
Evolving Intelligent Reflector Surface towards 6G for Public Health: Application in Airborne Virus Detection
论文作者
论文摘要
尽管基于元图的智能反射表面(IRS)是对后代无线连接本身的重要新兴技术,但这些表面大规模部署的计划激发了与其他需要大量扩散的新型和新兴的技术的集成问题。这个集成问题和未来沟通系统作为公共卫生的宝贵组成部分的愿景促使我们新的智能反射器病毒检测器(IR-VD)的概念。在这个新颖的方案中,我们提出了智能反射器的部署,并在反射表面瓷砖之间放置了基于受体的病毒探测器条。我们提出的方法使用梁偏差之间的时间变化来代表消息来编码病毒的信息,以忽略反射光束的角度。该信息包括病毒的存在,其位置和负载大小。该论文介绍了模拟,以证明基于与IR-VD结合的病毒数量的不同数量的编码过程。
While metasurface based intelligent reflecting surfaces (IRS) are an important emerging technology for future generations of wireless connectivity in its own right, the plans for the mass deployment of these surfaces motivate the question of their integration with other new and emerging technologies that would require mass proliferation. This question of integration and the vision of future communication systems as an invaluable component for public health motivated our new concept of Intelligent Reflector-Viral Detectors (IR-VD). In this novel scheme, we propose deployment of intelligent reflectors with strips of receptor-based viral detectors placed between the reflective surface tiles. Our proposed approach encodes information of the virus by flicking the angle of the reflected beams, using time variations between the beam deviations to represent the messages. This information includes the presence of the virus, its location and load size. The paper presents simulation to demonstrate the encoding process based on varying quantity of virus that have bound onto the IR-VD.