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无源型可重构智能表面:辐射方向图测量

Passive Type Reconfigurable Intelligent Surface: Measurement of Radiation Patterns.

作者信息

Rana Biswarup, Cho Sung-Sil, Hong Ic-Pyo

机构信息

Smart Natural Space Research Centre, Kongju National University, Cheonan 31080, Republic of Korea.

Department of Smart Information Technology Engineering, Kongju National University, Cheonan 31080, Republic of Korea.

出版信息

Micromachines (Basel). 2023 Apr 5;14(4):818. doi: 10.3390/mi14040818.

Abstract

The demand for unprecedented data and ubiquitous wireless connections have led to the adoption of new types of transmitters and receivers. Additionally, different new types of devices and technologies need to be proposed for such demand. Reconfigurable intelligent surface (RIS) is going to play a very significant role in the upcoming beyond-5G/6G communications. It is envisioned that not only the RIS will be deployed to assist and create a smart wireless environment for the upcoming communications, but also the receiver and transmitter can be fabricated using RIS to make a smart and intelligent transmitter and receiver. Thus, the latency of upcoming communications can be reduced very significantly using RIS, which is a very important factor. Artificial intelligence assists communications and shall be adopted widely for the next generation networks. In this paper, radiation pattern measurement results of our previously published RIS have been provided. This work is the extension work of our previously proposed RIS. The polarization-independent passive type of RIS working in the sub-6 GHz frequency band using low-cost FR4-substrate was designed. Each unit cell with dimensions of 42 mm × 42 mm had a single-layer substrate backed by a copper plate. A 10 × 10-unit cell array was fabricated to check the performance of the RIS. Such types of unit cells and RIS were designed to set up initial measurement facilities in our laboratory for any kinds of RIS measurements.

摘要

对前所未有的数据和无处不在的无线连接的需求促使了新型发射机和接收机的采用。此外,需要针对此类需求提出不同的新型设备和技术。可重构智能表面(RIS)将在即将到来的超5G/6G通信中发挥非常重要的作用。预计不仅将部署RIS以协助并为即将到来的通信创建智能无线环境,而且接收机和发射机也可以使用RIS制造,以打造智能的发射机和接收机。因此,使用RIS可以显著降低即将到来的通信的延迟,这是一个非常重要的因素。人工智能辅助通信,并将在下一代网络中广泛采用。在本文中,提供了我们之前发表的RIS的辐射方向图测量结果。这项工作是我们之前提出的RIS的扩展工作。设计了一种使用低成本FR4基板、工作在低于6GHz频段的与极化无关的无源型RIS。每个尺寸为42mm×42mm的单元都有一个由铜板支撑的单层基板。制作了一个10×10单元的阵列来检查RIS的性能。设计此类单元和RIS是为了在我们的实验室中建立用于任何类型RIS测量的初始测量设施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f23e/10142996/047f4b315267/micromachines-14-00818-g001.jpg

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