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一种基于创新紧凑型分裂环谐振器的用于四频段无线通信的旋耕机轮形超材料。

An Innovative Compact Split-Ring-Resonator-Based Power Tiller Wheel-Shaped Metamaterial for Quad-Band Wireless Communication.

作者信息

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

机构信息

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

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

出版信息

Materials (Basel). 2023 Jan 28;16(3):1137. doi: 10.3390/ma16031137.

Abstract

A split-ring resonator (SRR)-based power tiller wheel-shaped quad-band ℇ-negative metamaterial is presented in this research article. This is a new compact metamaterial with a high effective medium ratio (EMR) designed with three modified octagonal split-ring resonators (OSRRs). The electrical dimension of the proposed metamaterial (MM) unit cell is 0.086λ × 0.086λ, where λ is the wavelength calculated at the lowest resonance frequency of 2.35 GHz. Dielectric RT6002 materials of standard thickness (1.524 mm) were used as a substrate. Computer simulation technology (CST) Microwave Studio simulator shows four resonance peaks at 2.35, 7.72, 9.23 and 10.68 GHz with magnitudes of -43.23 dB -31.05 dB, -44.58 dB and -31.71 dB, respectively. Moreover, negative permittivity (ℇ) is observed in the frequency ranges of 2.35-3.01 GHz, 7.72-8.03 GHz, 9.23-10.02 GHz and 10.69-11.81 GHz. Additionally, a negative refractive index is observed in the frequency ranges of 2.36-3.19 GHz, 7.74-7.87 GHz, 9.26-10.33 GHz and 10.70-11.81 GHz, with near-zero permeability noted in the environments of these frequency ranges. The medium effectiveness indicator effective medium ratio (EMR) of the proposed MM is an estimated 11.61 at the lowest frequency of 2.35 GHz. The simulated results of the anticipated structure are validated by authentication processes such as array orientation, HFSS and ADS for an equivalent electrical circuit model. Given its high EMR and compactness in dimensions, the presented metamaterial can be used in S-, C- and X-band wireless communication applications.

摘要

本研究文章介绍了一种基于裂环谐振器(SRR)的动力耕耘机轮形四频段负介电常数超材料。这是一种新型紧凑型超材料,具有高有效介质比(EMR),由三个改进的八角形裂环谐振器(OSRR)设计而成。所提出的超材料(MM)单元胞的电气尺寸为0.086λ×0.086λ,其中λ是在最低谐振频率2.35 GHz处计算得出的波长。使用标准厚度(1.524 mm)的介电RT6002材料作为基板。计算机模拟技术(CST)微波工作室模拟器显示在2.35、7.72、9.23和10.68 GHz处有四个谐振峰,幅度分别为-43.23 dB、-31.05 dB、-44.58 dB和-31.71 dB。此外,在2.35 - 3.01 GHz、7.72 - 8.03 GHz、9.23 - 10.02 GHz和10.69 - 11.81 GHz频率范围内观察到负介电常数(ε)。此外,在2.36 - 3.19 GHz、7.74 - 7.87 GHz、9.26 - 10.33 GHz和10.70 - 11.81 GHz频率范围内观察到负折射率,并且在这些频率范围的环境中观察到近零磁导率。所提出的MM的介质有效性指标有效介质比(EMR)在最低频率2.35 GHz时估计为11.61。通过诸如阵列方向、用于等效电路模型的HFSS和ADS等验证过程,对预期结构的模拟结果进行了验证。鉴于其高EMR和紧凑的尺寸,所呈现的超材料可用于S波段、C波段和X波段无线通信应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb14/9919866/3798a3f03db6/materials-16-01137-g001.jpg

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