Design and Analysis of Sierpinski Fractal Antennas for Millimeter-Wave 5G and Ground-Based Radio Navigation Applications

IF 2.5 4区 计算机科学 Q3 TELECOMMUNICATIONS Transactions on Emerging Telecommunications Technologies Pub Date : 2024-10-22 DOI:10.1002/ett.70001
Arun Raj, Durbadal Mandal
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Abstract

The paper describes compact fractal antennae combined with ground defected structures (DGS) and substrate integrated waveguide (SIW) techniques for enhancing resonate and multiband behavior concerning bandwidth, gain, and radiation in the desired mm-wave region. Based on the proposed antennae, multiple good notches over wide bands depict a good radiation pattern. The antennae's ultra wide bandwidths (UWB) are 16, 16, and 11.4 GHz concerning resonant frequencies 26.34, 30.35, 34.5, 36.65 GHz; 25.8, 32.2, 35.3 GHz; 30.22, 37.68 GHz, of concerning antennae ant 1 (FA1), 4 (FA2), and 6 (FA3), respectively. The proposed antenna (FA3) with the SIW technique has a peak gain of 5.9 dBi and a peak front-to-back ratio of 20 dB, respectively. The proposed antennas are targeted to cover the practical contribution aspect, including advanced 5G bands support (24–40 GHz), broadband spectrum, frequency agility, low 3 dB beamwidth, interference reduction, and medical application suitability, respectively. The proposed antennae also cover the desired mm wave 5G region with different resonating notches over ultra-wide bandwidth, such as n257, n258, n259, n260, and n261, and ground-based radio navigation applications. Results are validated with vector network analyzer, spectrum analyzer, and power sensor in the presence of absorber, respectively.

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毫米波 5G 和地面无线电导航应用中的西尔平斯基分形天线设计与分析
本文介绍了与地面缺陷结构(DGS)和基底集成波导(SIW)技术相结合的紧凑型分形天线,用于增强所需的毫米波区域内有关带宽、增益和辐射的谐振和多频带行为。基于所提出的天线,在宽带上的多个良好缺口描绘了良好的辐射模式。天线的超宽带宽(UWB)分别为 16、16 和 11.4 GHz,涉及谐振频率 26.34、30.35、34.5、36.65 GHz;25.8、32.2、35.3 GHz;30.22、37.68 GHz,涉及天线天线 1(FA1)、天线 4(FA2)和天线 6(FA3)。采用 SIW 技术的拟议天线(FA3)的峰值增益为 5.9 dBi,峰值前后比为 20 dB。所提出的天线针对实际贡献方面,包括先进的 5G 频段支持(24-40 GHz)、宽带频谱、频率灵活性、低 3 dB 波束宽度、降低干扰和医疗应用适用性。所提出的天线还覆盖了所需的毫米波 5G 区域,在超宽频带内具有不同的谐振缺口,如 n257、n258、n259、n260 和 n261,以及地基无线电导航应用。在有吸收器的情况下,分别用矢量网络分析仪、频谱分析仪和功率传感器对结果进行了验证。
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来源期刊
CiteScore
8.90
自引率
13.90%
发文量
249
期刊介绍: ransactions on Emerging Telecommunications Technologies (ETT), formerly known as European Transactions on Telecommunications (ETT), has the following aims: - to attract cutting-edge publications from leading researchers and research groups around the world - to become a highly cited source of timely research findings in emerging fields of telecommunications - to limit revision and publication cycles to a few months and thus significantly increase attractiveness to publish - to become the leading journal for publishing the latest developments in telecommunications
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