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Article | Open Access

Compact 5G Vivaldi Tapered Slot Filtering Antenna with Enhanced Bandwidth

Sahar Saleh1,2Mohd Haizal Jamaluddin1( )Bader Alali3,4Ayman A. Althuwayb4
Wireless Communication Centre, Universiti Teknologi Malaysia (UTM), Johor Bahru, Johor, 81310, Malaysia
Department of Electronics and Communications Engineering, Faculty of Engineering, Aden University, Aden, 5243, Yemen
Center for Wireless Communications, The Institute of Electronics, Communications and Information Technology, Queen’s University Belfast, Northern Ireland Science Park, Queen’s Rd, Queen’s Island, Belfast, Northern Ireland, UK
Department of Electrical Engineering, College of Engineering, Jouf University, Sakaka, 72388, Aljouf, Kingdom of Saudi Arabia
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Abstract

Compact fifth-generation (5G) low-frequency band filtering antennas (filtennas) with stable directive radiation patterns, improved bandwidth (BW), and gain are designed, fabricated, and tested in this research. The proposed filtennas are achieved by combining the predesigned compact 5G (5.975 – 7.125 GHz) third-order uniform and non-uniform transmission line hairpin bandpass filters (UTL and NTL HPBFs) with the compact ultrawide band Vivaldi tapered slot antenna (UWB VTSA) in one module. The objective of this integration is to enhance the performance of 5.975 – 7.125 GHz filtennas which will be suitable for modern mobile communication applications by exploiting the benefits of UWB VTSA. Based on NTL HPBF, more space is provided to add the direct current (DC) biassing circuits in cognitive radio networks (CRNs) for frequency reconfigurable applications. To overcome the mismatch between HPBFs and VTSA, detailed parametric studies are presented. Computer simulation technology (CST) software is used for the simulation in this study. Good measured S11 appeared to be < −13 and < −10.54 dB at 5.48 – 7.73 and 5.9 – 7.98 GHz with peak realized gains of 6.37 and 6.27 dBi, for VTSA with UTL and NTL HPBFs, respectively which outperforms the predesigned filters. Validation is carried out by comparing the measured and simulated results.

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Computers, Materials & Continua
Pages 5983-5999

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Cite this article:
Saleh S, Jamaluddin MH, Alali B, et al. Compact 5G Vivaldi Tapered Slot Filtering Antenna with Enhanced Bandwidth. Computers, Materials & Continua, 2023, 74(3): 5983-5999. https://doi.org/10.32604/cmc.2023.035585

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Received: 26 August 2022
Accepted: 26 October 2022
Published: 31 March 2023
© The Author 2024.

This work is licensed under a Creative Commons Attribution 4.0 International License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.