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用于高效电磁通信系统的紧凑型且对偏振不敏感的卫星频段完美超材料吸波器。

Compact and Polarization Insensitive Satellite Band Perfect Metamaterial Absorber for Effective Electromagnetic Communication System.

作者信息

Afsar Md Salah Uddin, Faruque Mohammad Rashed Iqbal, Abdullah Sabirin, Al-Mugren K S

机构信息

Space Science Centre (ANGKASA), Institute of Climate Change (IPI), Universiti Kebangsaan Malaysia, Bangi 43600, Malaysia.

Directorate of Secondary and Higher Education Bangladesh (DSHE), Dhaka 1000, Bangladesh.

出版信息

Materials (Basel). 2023 Jul 2;16(13):4776. doi: 10.3390/ma16134776.

Abstract

A commercially viable metal-dielectric-metal configured triple-band metamaterial absorber is offered in this paper. It is an aggregation of four compact symmetric circles, with a swastika-shaped metal structure, which are bonded by two split-ring resonators (SRRs). Copper (annealed) of electrical conductivity 5.8 × 10 Sm is used for the ground plate and resonator portion of the top layer and an FR 4 dielectric of permittivity 4.3 is used as a substrate. The structural parameters of the unit cell were determined by a trial and error method. FIT-based 3D simulation software (CST microwave studio, 2019 version was used to characterize the proposed perfect metamaterial absorber (PMA). Three resonance peaks were observed at frequencies 3.03, 5.83 and 7.23 GHz with an absorbance of 99.84%, 99.03% and 98.26%, respectively. The numerical result has been validated by some authentic validation methods. Finally, a microwave network analyzer (PNA) of Agilent N5227 with waveguide ports were deployed for measurement. The simulation and experimental results show better harmony. The proposed PMA has a unique design and a small dimension with higher absorption compared to other contemporary studies. This special type of polarization, insensitive S- and C-band PMA, is designed for a telecommunication system via full-time raw satellite and radar feeds.

摘要

本文提出了一种具有商业可行性的金属-电介质-金属结构的三频段超材料吸波器。它由四个紧凑的对称圆形组成,带有一个十字形金属结构,通过两个开口环谐振器(SRR)连接。电导率为5.8×10 S/m的退火铜用于底层的接地平面和谐振器部分,相对介电常数为4.3的FR 4电介质用作基板。通过试错法确定了单元胞的结构参数。基于有限积分技术(FIT)的3D模拟软件(使用CST微波工作室2019版)对所提出的完美超材料吸波器(PMA)进行了表征。在频率3.03、5.83和7.23 GHz处观察到三个共振峰,吸收率分别为99.84%、99.03%和98.26%。数值结果已通过一些可靠的验证方法得到验证。最后,部署了一台带有波导端口的安捷伦N5227微波网络分析仪(PNA)进行测量。模拟和实验结果显示出较好的一致性。与其他当代研究相比,所提出的PMA具有独特的设计、小尺寸和更高的吸收率。这种特殊类型的对极化不敏感的S波段和C波段PMA专为通过全时原始卫星和雷达馈源的电信系统而设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7420/10342971/160939f70e0a/materials-16-04776-g001.jpg

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本文引用的文献

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