可重构FSS中偏置线抑制谐振频率的恢复

A. Gomes Neto, J. C. Silva, D. Fernandes, Laryssa Maria de Sousa Duarte, Gabryel Jerônimo de Morais
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引用次数: 1

摘要

摘要在可重构频率选择表面FSS中,偏置线可以抑制谐振频率。这是一个缺点,因为它降低了FSS的潜在应用。本文介绍了一种恢复被抑制谐振频率的方法。考虑了一种基于四臂星形几何的FSS,并通过使用变容管实现了其可重构性,其中偏置线抑制了x偏振谐振。因此,偶极子被添加到单元几何结构中,以恢复这种共振。为了验证所提出的过程,使用变容管SMV1231(0。466 pF≤Cv<2。35pF)进行制备和表征。数值和测量结果显示了良好的一致性,证实了FSS的可重构性得到了保留,抑制的谐振得到了恢复。
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Recovering Suppressed Resonance Frequency by Bias Lines in Reconfigurable FSS
Abstract In reconfigurable frequency selective surface, FSS, bias lines can suppress a resonant frequency. This is a disadvantage, as it reduces a FSS potential application. In this paper, a procedure to recover the suppressed resonant frequency is described. A FSS based on four arms star geometry is considered and its reconfigurability is achieved by the use of varactors, for which bias lines suppress the x polarization resonance. So, dipoles are added to the unit cell geometry recovering this resonance. In order to validate the proposed procedure, a reconfigurable FSS using the varactor SMV1231 (0. 466 pF ≤ Cv < 2. 35 pF) was fabricated and characterized. Numerical and measured results shown a good agreement, confirming that the FSS reconfigurability is preserved and the suppressed resonance recovered.
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来源期刊
Journal of Microwaves, Optoelectronics and Electromagnetic Applications
Journal of Microwaves, Optoelectronics and Electromagnetic Applications Engineering-Electrical and Electronic Engineering
CiteScore
1.70
自引率
0.00%
发文量
32
审稿时长
24 weeks
期刊介绍: The Journal of Microwaves, Optoelectronics and Electromagnetic Applications (JMOe), published by the Brazilian Microwave and Optoelectronics Society (SBMO) and Brazilian Society of Electromagnetism (SBMag), is a professional, refereed publication devoted to disseminating technical information in the areas of Microwaves, Optoelectronics, Photonics, and Electromagnetic Applications. Authors are invited to submit original work in one or more of the following topics. Electromagnetic Field Analysis[...] Computer Aided Design [...] Microwave Technologies [...] Photonic Technologies [...] Packaging, Integration and Test [...] Millimeter Wave Technologies [...] Electromagnetic Applications[...] Other Topics [...] Antennas [...] Articles in all aspects of microwave, optoelectronics, photonic devices and applications will be covered in the journal. All submitted papers will be peer-reviewed under supervision of the editors and the editorial board.
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