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基于石墨烯的希尔伯特形多频带 MIMO 天线在太赫兹光谱应用中的数值研究。

A Numerical Investigation of Graphene-Based Hilbert-Shaped Multi-Band MIMO Antenna for the Terahertz Spectrum Applications.

机构信息

Department of Electrical Engineering, College of Engineering, Jouf University, Sakaka 72388, Saudi Arabia.

Faculty of Engineering and Technology, Parul Institute of Engineering and Technology, Parul University, Waghodia Road, Vadodara 391760, India.

出版信息

Sensors (Basel). 2022 Dec 20;23(1):37. doi: 10.3390/s23010037.

Abstract

We proposed the numerical investigation of Hilbert-shaped multiple-input multi-output (MIMO) with multi-band operation characteristics using graphene resonator material, which operates on the band of 1 to 30 THz of the frequency range. This numerical investigation of antenna structure was carried out for the multiple antenna types, consisting of graphene as a regular patch, Hilbert order 1, and Hilbert order 2 designs. This antenna is investigated for the multiple physical parameters, such as return loss, gain, bandwidth, radiation response, Envelope Correlation Coefficient (ECC), Total Active Reflection Coefficient (TARC), Mean Effective Gain (MEG), Directivity Gain (DG), and Channel Capacity Loss (CCL). These variables are also determined to verify compatibility and the difficulties connected with communicating over a short distance. The THz MIMO antenna that was recommended offers strong isolation values in addition to an operational band. The maximum gain of ~10 dBi for the band of <15 THz and ~17 dBi for the band of the >15 THz frequency range of the proposed antenna structures. The proposed antennas are primarily operated in three bands over 1 to 30 THz of frequency. This work aims to create a brand new terahertz antenna structure capable of providing an extraordinarily wider bandwidth and high gain while keeping a typical compact antenna size suited for terahertz applications.

摘要

我们提出了使用石墨烯谐振器材料对具有多带操作特性的希尔伯特形状多输入多输出(MIMO)进行数值研究,其工作频率范围在 1 到 30 THz 之间。这种对天线结构的数值研究是针对多种天线类型进行的,包括作为常规贴片的石墨烯、希尔伯特阶 1 和希尔伯特阶 2 设计。该天线针对多个物理参数进行了研究,例如回波损耗、增益、带宽、辐射响应、包络相关系数(ECC)、总有源反射系数(TARC)、有效平均增益(MEG)、定向增益(DG)和信道容量损耗(CCL)。这些变量也被确定为验证兼容性以及在短距离内进行通信的困难。所推荐的太赫兹 MIMO 天线除了工作频带外,还具有很强的隔离值。所提出天线结构的 15THz 以下频段的最大增益约为 10dBi,15THz 以上频段的最大增益约为 17dBi。所提出的天线主要在 1 到 30 THz 的三个频段内工作。本工作旨在创建一种全新的太赫兹天线结构,该结构能够在保持适用于太赫兹应用的典型紧凑天线尺寸的同时,提供极宽的带宽和高增益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b873/9823485/b500618bf96c/sensors-23-00037-g001.jpg

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