Hossain Kabir, Sabapathy Thennarasan, Jusoh Muzammil, Soh Ping Jack, Jamaluddin Mohd Haizal, Al-Bawri Samir Salem, Osman Mohamed Nasrun, Ahmad R Badlishah, Rahim Hasliza A, Mohd Yasin Mohd Najib, Saluja Nitin
Advanced Communication Engineering (ACE), Centre of Excellence, Universiti Malaysia Perlis (UniMAP), Jalan Tiga, Pengkalan Jaya Business Centre, Kangar 01000, Malaysia.
Faculty of Electronic Engineering Technology, Kampus Alam UniMAP Pauh Putra, Universiti Malaysia Perlis (UniMAP), Arau 02600, Malaysia.
Materials (Basel). 2021 Mar 8;14(5):1274. doi: 10.3390/ma14051274.
An electrically tunable, textile-based metamaterial (MTM) is presented in this work. The proposed MTM unit cell consists of a decagonal-shaped split-ring resonator and a slotted ground plane integrated with RF varactor diodes. The characteristics of the proposed MTM were first studied independently using a single unit cell, prior to different array combinations consisting of 1 × 2, 2 × 1, and 2 × 2 unit cells. Experimental validation was conducted for the fabricated 2 × 2 unit cell array format. The proposed tunable MTM array exhibits tunable left-handed characteristics for both simulation and measurement from 2.71 to 5.51 GHz and provides a tunable transmission coefficient of the MTM. Besides the left-handed properties within the frequency of interest (from 1 to 15 GHz), the proposed MTM also exhibits negative permittivity and permeability from 8.54 to 10.82 GHz and from 10.6 to 13.78 GHz, respectively. The proposed tunable MTM could operate in a dynamic mode using a feedback system for different microwave wearable applications.
本文介绍了一种基于纺织品的电可调超材料(MTM)。所提出的MTM单元由一个十边形开口环谐振器和一个集成了射频变容二极管的开槽接地平面组成。在由1×2、2×1和2×2个单元组成不同阵列组合之前,首先使用单个单元对所提出的MTM特性进行了独立研究。对制作的2×2单元阵列形式进行了实验验证。所提出的可调谐MTM阵列在2.71至5.51GHz的模拟和测量中均表现出可调谐的左手特性,并提供了MTM的可调传输系数。除了在感兴趣的频率范围内(1至15GHz)具有左手特性外,所提出的MTM在8.54至10.82GHz和10.6至13.78GHz分别还表现出负介电常数和磁导率。所提出的可调谐MTM可以使用反馈系统在动态模式下运行,用于不同的微波可穿戴应用。