A Hybrid 3-D Frequency Selective Structure Featuring Enhanced Stopband Suppression and Reduced Insertion Loss

IF 2.5 3区 计算机科学 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Electromagnetic Compatibility Pub Date : 2024-08-16 DOI:10.1109/TEMC.2024.3439013
Pei Zhang;Da Li;Xiaodong An;Yudi Fan;Yan Li;Wenchao Chen;Er-Ping Li
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Abstract

This article introduces a hybrid 3-D frequency selective structure (FSS) that offers high stopband suppression and low insertion loss to mitigate pattern degradation resulting from the mutual coupling of co-aperture array antennas. Traditional 2-D FSSs exhibit good passband performance but lack cross-coupling between resonators, making it difficult to achieve strong stopband suppression at a lower frequency. In contrast, traditional 3-D FSSs provide strong stopband suppression, but the vertical structures pose challenges for impedance matching, leading to high passband loss and poor angular stability. The FSS proposed in this article combines the advantages of both 2-D and 3-D FSSs. It introduces transmission zeros by combining a vertical surface with a cross-shaped metal strip on the foundational 2-D passband FSS. This design significantly enhances the stopband suppression capability of the FSS at the frequencies of interest without compromising the low insertion loss performance in the passband. Simulation results indicate that the proposed 3-D FSS achieves a −10 dB stopband within the frequency range of 1.2 to 2.93 GHz, with a stopband suppression of −16 dB at 2.7 GHz. Furthermore, the average insertion loss within the passband frequency range of 3.3–3.8 GHz remains low, staying below 0.23 dB. The FSS's transmission response remains stable under oblique incidences ranging from 0° to 60°. The operating principle of the FSS is elucidated using an equivalent circuit model. A prototype FSS is fabricated and experimentally characterized for validation. The measured results align with the simulated ones, confirming the FSS's high stopband suppression, low insertion loss, and excellent angular stability, making it a viable solution for mitigating pattern degradation in co-aperture array antennas.
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具有增强的阻带抑制和降低的插入损耗的混合三维选频结构
本文介绍了一种混合三维频率选择结构(FSS),该结构提供高阻带抑制和低插入损耗,以减轻共孔径阵列天线相互耦合导致的方向图退化。传统的二维fss具有良好的通带性能,但谐振腔之间缺乏交叉耦合,难以在较低频率下实现强阻带抑制。相比之下,传统的3d fss具有很强的阻带抑制能力,但垂直结构给阻抗匹配带来了挑战,导致高通带损耗和角稳定性差。本文提出的FSS结合了二维和三维FSS的优点。它通过在基础二维通带FSS上结合垂直表面和十字形金属条来引入传输零点。该设计显著提高了FSS在目标频率处的阻带抑制能力,同时又不影响通带中的低插入损耗性能。仿真结果表明,在1.2 ~ 2.93 GHz频率范围内,三维FSS的阻带值为−10 dB,在2.7 GHz频率下阻带抑制值为−16 dB。此外,在3.3-3.8 GHz通带频率范围内,平均插入损耗保持在0.23 dB以下。在0°到60°的斜倾角范围内,FSS的传输响应保持稳定。利用等效电路模型阐述了FSS的工作原理。制作了FSS原型,并对其进行了实验表征。测量结果与模拟结果一致,证实了FSS具有高阻带抑制、低插入损耗和出色的角稳定性,使其成为减轻共孔径阵列天线方向图退化的可行解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.80
自引率
19.00%
发文量
235
审稿时长
2.3 months
期刊介绍: IEEE Transactions on Electromagnetic Compatibility publishes original and significant contributions related to all disciplines of electromagnetic compatibility (EMC) and relevant methods to predict, assess and prevent electromagnetic interference (EMI) and increase device/product immunity. The scope of the publication includes, but is not limited to Electromagnetic Environments; Interference Control; EMC and EMI Modeling; High Power Electromagnetics; EMC Standards, Methods of EMC Measurements; Computational Electromagnetics and Signal and Power Integrity, as applied or directly related to Electromagnetic Compatibility problems; Transmission Lines; Electrostatic Discharge and Lightning Effects; EMC in Wireless and Optical Technologies; EMC in Printed Circuit Board and System Design.
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