集成希尔伯特单元作为DGS的小型化和优化的半模SIW带通滤波器设计

IF 0.6 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Mohammed El Amine Chaib, N. Cherif, M. Abri, H. Badaoui
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引用次数: 1

摘要

摘要本文提出了一种新型的基于希尔伯特单元的半模基片集成波导HMSIW带通选择滤波器。两个50欧姆的传统微带被用作馈线。滤波器使用CST软件进行设计和优化,其中使用参数研究来优化其几何参数。在我们的设计中,使用了六个周期性希尔伯特单元,它们与三个横向槽共同工作,以产生所需的谐振频率。所使用的电介质衬底是相对介电常数为4.3的FR4。所提出的滤波器工作频率为3.25 GHz,插入损耗约为−2 dB和从1扩展的抑制 GHz至3.2 GHz及3.4 GHz至7 电平大于−35的较低侧和较高侧分别为GHz dB。制作并测量了滤波器,其中获得的测量结果与模拟结果显示出明显的晶体相似性。所提出的滤波器被考虑用于TD LTE应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Miniaturized and optimized half mode SIW bandpass filter design integrating Hilbert cells as DGS
ABSTRACT This paper demonstrates a novel configuration of half mode substrate integrated waveguide HMSIW bandpass selective filter based on Hilbert cells as DGS. Two 50-Ohm conventional micro-strip are used as feed lines. The filter is designed and optimized using CST Software, Where a parametric study is used to optimize its geometric parameters. In our design, six periodic Hilbert cells are used, which are work collectively with three transverse slots to generate the desired resonance frequency. The used dielectric substrate is FR4 with a relative permittivity of 4.3. The proposed filter operates at the frequency of 3.25 GHz with an insertion loss about of −2 dB and a rejection extended from 1 GHz to 3.2 GHz and from 3.4 GHz to 7 GHz respectively for the lower and the higher sides with a level more than −35 dB. The filter is fabricated and measured, where the obtained measurements show a clear crystal similarity with the simulated results. The proposed filter is considered for TD LTE applications.
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来源期刊
Electromagnetics
Electromagnetics 工程技术-工程:电子与电气
CiteScore
1.60
自引率
12.50%
发文量
31
审稿时长
6 months
期刊介绍: Publishing eight times per year, Electromagnetics offers refereed papers that span the entire broad field of electromagnetics and serves as an exceptional reference source of permanent archival value. Included in this wide ranging scope of materials are developments in electromagnetic theory, high frequency techniques, antennas and randomes, arrays, numerical techniques, scattering and diffraction, materials, and printed circuits. The journal also serves as a forum for deliberations on innovations in the field. Additionally, special issues give more in-depth coverage to topics of immediate importance. All submitted manuscripts are subject to initial appraisal by the Editor, and, if found suitable for further consideration, to peer review by independent, anonymous expert referees. Submissions can be made via email or postal mail.
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