A Multifunctionality Reconfigurable HMSIW Filter by Using EBG Structure and Diodes for C/X-Band Application

IF 0.9 4区 工程技术 Q4 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Kioumars Pedram, Sanghoon Sim
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Abstract

This letter presents a multifunctionality reconfigurable substrate-integrated waveguide (SIW) filter embedded in a microstrip line. The proposed filter used an electromagnetic bandgap structure (EBG) to compact the size and improve the electromagnetic features. The SIW filter consists of a three-cell EBG with metallic circular-shaped connected to the ground through cylindrical vias. Firstly, the base SIW structure offers a wide passband filtering response, and then, to obtain selective passband, wide band rejection, and controllable resonance frequencies, a three-cell EBG along with four diodes has been attached. The filter is designed and printed on a Rogers 4003 substrate with a thickness of 1 mm and is experimentally validated for functionalities operated at three modes with an average 3 dB bandwidth of 115 MHz in each frequency. In addition to that, two transmission zeros (TZ) have been produced in the upper band frequency. The filter’s response is also tunable by turning the diode off or on and changing the main parameters of EBG, the gab, and the position between cells. The study explores resonance frequency alterations in a three-state system of on/off. By eliminating or diminishing specific modes, and incorporating diodes, distinct resonance behaviors are observed. Moreover, shifting frequency resonance in a multiparameter system has been investigated. Increasing B1 induces a significant shift to lower values, while an increase in D1 leads to a decrease in the first and second resonance frequencies and an upward shift in the third. The designed filter has been fabricated and tested to compare and confirm simulated responses. Simulation and measurement results are in good agreement. The S-parameters of measured results gained a good response (>15 dB) within the passbands and stopbands and an insertion loss of 1.5 dB suitable for 5G and Wi-Fi systems.

Abstract Image

利用 EBG 结构和二极管为 C/X 波段应用设计多功能可重构 HMSIW 滤波器
本文介绍了一种嵌入微带线的多功能可重构基底集成波导(SIW)滤波器。该滤波器采用电磁带隙结构(EBG),以缩小尺寸并改善电磁特性。SIW 滤波器由三单元 EBG 组成,金属圆环形通过圆柱形通孔与地相连。首先,基本 SIW 结构提供了宽通带滤波响应,然后,为了获得选择性通带、宽带抑制和可控谐振频率,附加了一个三单元 EBG 和四个二极管。该滤波器是在厚度为 1 毫米的罗杰斯 4003 衬底上设计和印刷的,并通过实验验证了在三种模式下运行的功能,每个频率的平均 3 dB 带宽为 115 MHz。此外,在高频段频率上还产生了两个传输零点(TZ)。通过关闭或打开二极管,改变 EBG 的主要参数、Gab 和单元之间的位置,滤波器的响应也是可调的。研究探讨了开/关三态系统中共振频率的变化。通过消除或减弱特定模式以及加入二极管,观察到了不同的共振行为。此外,还研究了多参数系统中的移频共振。增加 B1 会导致频率明显偏移到较低值,而增加 D1 则会导致第一和第二共振频率降低,第三共振频率上移。对设计的滤波器进行了制造和测试,以比较和确认模拟响应。模拟和测量结果非常吻合。测量结果的 S 参数在通带和止带内获得了良好的响应(15 dB),插入损耗为 1.5 dB,适用于 5G 和 Wi-Fi 系统。
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来源期刊
CiteScore
4.00
自引率
23.50%
发文量
489
审稿时长
3 months
期刊介绍: International Journal of RF and Microwave Computer-Aided Engineering provides a common forum for the dissemination of research and development results in the areas of computer-aided design and engineering of RF, microwave, and millimeter-wave components, circuits, subsystems, and antennas. The journal is intended to be a single source of valuable information for all engineers and technicians, RF/microwave/mm-wave CAD tool vendors, researchers in industry, government and academia, professors and students, and systems engineers involved in RF/microwave/mm-wave technology. Multidisciplinary in scope, the journal publishes peer-reviewed articles and short papers on topics that include, but are not limited to. . . -Computer-Aided Modeling -Computer-Aided Analysis -Computer-Aided Optimization -Software and Manufacturing Techniques -Computer-Aided Measurements -Measurements Interfaced with CAD Systems In addition, the scope of the journal includes features such as software reviews, RF/microwave/mm-wave CAD related news, including brief reviews of CAD papers published elsewhere and a "Letters to the Editor" section.
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