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一种用于GSM、4G-LTE、ISM和5G-低于6GHz频段应用的频率可重构滤波天线。

A Frequency-Reconfigurable Filtenna for GSM, 4G-LTE, ISM, and 5G-Sub 6 GHz Band Applications.

作者信息

Awan Wahaj Abbas, Hussain Niamat, Kim Sunggoo, Kim Nam

机构信息

Department of Information and Communication Engineering, Chungbuk National University, Cheongju 28644, Korea.

Department of Smart Device Engineering, Sejong University, Seoul 05006, Korea.

出版信息

Sensors (Basel). 2022 Jul 25;22(15):5558. doi: 10.3390/s22155558.

Abstract

This paper presents the design and realization of a flexible and frequency-reconfigurable antenna with harmonic suppression for multiple wireless applications. The antenna structure is derived from a quarter-wave monopole by etching slots. Afterward, the high-order unwanted harmonics are eliminated by adding a filtering stub to the feedline to avoid signal interference. Lastly, frequency reconfigurability is achieved using pin diodes by connecting and disconnecting the stubs and the rectangular patch. The antenna is fabricated on the commercially available thin (0.254 mm) conformal substrate of Rogers RT5880. The proposed antenna resonates (|S11| < −10 dB) at five different reconfigurable bands of 3.5 GHz (3.17−3.82 GHz), 2.45 GHz (2.27−2.64 GHz), 2.1 GHz (2.02−2.29 GHz), 1.9 GHz (1.81−2.05 GHz), and 1.8 GHz (1.66−1.93 GHz), which are globally used for 5G sub-6 GHz in industrial, medical, and scientific (ISM) bands, 4G long-term evolution (LTE) bands, and global system for mobile communication (GSM) bands. The simulated and measured results show that the antenna offers excellent performance in terms of good impedance matching with controllable resonant bands, high gain (>2 dBi), stable radiation patterns, and efficiency (>87%). Moreover, the conformal analysis shows that the antenna retains its performance both in flat and bending conditions, making it suitable for flexible electronics. In addition, the antenna is compared with the state-of-the-art works for similar applications to show its potential for the targeted band spectrums.

摘要

本文介绍了一种用于多种无线应用的具有谐波抑制功能的灵活且频率可重构天线的设计与实现。该天线结构由通过蚀刻缝隙的四分之一波长单极天线衍生而来。之后,通过在馈线上添加滤波短截线来消除高阶不需要的谐波,以避免信号干扰。最后,利用pin二极管连接和断开短截线与矩形贴片来实现频率可重构性。该天线制作在市售的罗杰斯RT5880薄(0.254毫米)共形基板上。所提出的天线在3.5 GHz(3.17 - 3.82 GHz)、2.45 GHz(2.27 - 2.64 GHz)、2.1 GHz(2.02 - 2.29 GHz)、1.9 GHz(1.81 - 2.05 GHz)和1.8 GHz(1.66 - 1.93 GHz)这五个不同的可重构频段产生谐振(|S11| < -10 dB),这些频段在工业、医疗和科学(ISM)频段用于全球5G低于6 GHz频段、4G长期演进(LTE)频段以及全球移动通信系统(GSM)频段。仿真和测量结果表明,该天线在良好的阻抗匹配、可控的谐振频段、高增益(>2 dBi)、稳定的辐射方向图和效率(>87%)方面具有出色的性能。此外,共形分析表明该天线在平面和弯曲条件下都能保持其性能,使其适用于柔性电子设备。此外,还将该天线与类似应用的最新技术进行了比较,以展示其在目标频段频谱方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b07c/9331397/a2259550d7f1/sensors-22-05558-g001.jpg

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