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基于哑铃形结构加载修正圆环谐振器的完美超材料吸收体,用于S、X和Ku波段微波传感应用。

Dumbbell shaped structure loaded modified circular ring resonator based perfect metamaterial absorber for S, X and Ku band microwave sensing applications.

作者信息

Rabbani Md Golam, Islam Mohammad Tariqul, Moniruzzaman Md, Alamri Saeed, Rahman Abdullah Al Mahfazur, Moubark Asraf Mohamed, Islam Md Shabiul, Soliman Mohamed S

机构信息

Department of Electrical, Electronic and Systems Engineering, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia, 43600, Bangi, Selangor, Malaysia.

Department of Electrical and Electronic Engineering, College of Engineering and Technology, International University of Business Agriculture and Technology, Uttara, Dhaka, 1230, Bangladesh.

出版信息

Sci Rep. 2024 Mar 7;14(1):5588. doi: 10.1038/s41598-024-56251-7.

Abstract

In this paper, a new metamaterial absorber (MMA) is presented that exhibits peak absorptions at 3.26 GHz, 11.6 GHz, and 17.13 GHz within S, X, and Ku bands. The unit cell of the proposed MMA is constructed on an FR4 substrate having an electrical dimension of 0.144λ × 0.144λ, where wavelength, λ is calculated at the lowest absorption frequency. The unique structural design of the unit cell consists of two concentric copper rings with which dumbbell-shaped structures are attached. The rotating symmetrical structural design of this MMA provides around 93.8%, 96.47%, and 99.95% peak absorptance in the mentioned frequencies, which is invariable with the change of incident angle as well as polarization angle. The metamaterial properties of the proposed absorber are studied along with the surface current analysis. The MMA shows single negative behaviour and it also exhibits high-quality factors (Q factor) of 21.73, 41.42, and 51.90 at maximum absorptance frequencies. The MMA is analysed by it's equivalent circuit to understand the resonance phenomenon, which is verified through simulation in Advanced Design Systems (ADS) software. The testing is done on the developed prototype of the proposed MMA. Measurement results are in close proximity to the simulation results. Due to its high Q factor, high EMR, and insensitivity to polarization and angle of incidence, it can be utilized as a part of miniaturized microwave device. In addition, the proposed MMA can exhibit high sensing performance and flexibility to differentiate different oils in S, X, and Ku bands.

摘要

本文提出了一种新型超材料吸收体(MMA),它在S、X和Ku波段分别于3.26 GHz、11.6 GHz和17.13 GHz处呈现出峰值吸收。所提出的MMA的单元结构构建在FR4基板上,其电尺寸为0.144λ×0.144λ,其中波长λ是在最低吸收频率下计算得出的。单元结构的独特设计由两个同心铜环组成,并附着有哑铃形结构。这种MMA的旋转对称结构设计在上述频率下提供了约93.8%、96.47%和99.95%的峰值吸收率,且吸收率不随入射角和极化角的变化而改变。结合表面电流分析对所提出吸收体的超材料特性进行了研究。该MMA表现出单负特性,并且在最大吸收频率下还呈现出21.73、41.42和51.90的高品质因数(Q因子)。通过其等效电路对MMA进行分析以理解共振现象,并在高级设计系统(ADS)软件中通过仿真进行了验证。对所提出的MMA的开发原型进行了测试。测量结果与仿真结果非常接近。由于其高Q因子、高电磁辐射以及对极化和入射角不敏感,它可被用作小型化微波器件的一部分。此外,所提出的MMA在S、X和Ku波段能够展现出高传感性能以及区分不同油类的灵活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f22f/10920875/a77e0f086b6e/41598_2024_56251_Fig1_HTML.jpg

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