Miniaturized triple-band monopole antenna loaded with a via-less MTM for 3G, WIMAX, and WLAN applications

Author:

Kasmaei Mohammadsadegh,Zareian-Jahromi Ehsan,Basiri Raheleh,Mashayekhi ValiollahORCID

Abstract

Abstract In this paper, a tri-band metamaterial (MTM) loaded compact monopole antenna is proposed. In the first step of design procedure, a rectangular monopole antenna is improved by replacing the corresponding rectangular patch with a ring resonator. As a result, the first obtained operating frequency is decreased from 2.95 to 2.46 GHz. Then, this operating frequency is reduced to 2.02 GHz utilizing an MTM geometry in the antenna structure. The geometry parameters of the proposed antenna are optimized to provide the applicability for 3G, WLAN, and WiMAX applications. The impedance bandwidths of 600, 1080, and 220 MHz are obtained at 2.02–2.62, 3.48–4.56, and 5.12–5.34 GHz, respectively. Moreover, the equivalent circuit of the proposed antenna has been extracted. The proposed equivalent circuit model is validated through a comparison with corresponding simulation results. The proposed antenna is compact, low profile, via-less, and provides easy fabrication. Considering the first resonance frequency, a compactness of 32% is achieved in comparison to the corresponding unloaded monopole antenna.

Publisher

Cambridge University Press (CUP)

Subject

Electrical and Electronic Engineering

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Penta-band rectangular slot antenna for multi-function wireless communication with linear and circular polarizations;International Journal of Microwave and Wireless Technologies;2023-01-16

2. Triple-band stub loaded patch antenna with high gain for 5G Sub-6 GHz, WLAN and WiMAX applications using DGS;Facta universitatis - series: Electronics and Energetics;2023

3. Miniaturized tri‐wideband antenna loaded with metamaterial meander lines;Microwave and Optical Technology Letters;2022-12-29

4. AQuad-Band Monopole Antenna using Metamaterial Inspired SRRs for Mobile Applications;2022 IEEE Microwaves, Antennas, and Propagation Conference (MAPCON);2022-12-12

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