A Quad-Band Shared-Aperture Antenna Based on Dual-Mode Composite Quarter-Mode SIW Cavity for 5G and 6G with MIMO Capability

Author:

Altakhaineh Amjaad T.1,Alja’afreh Saqer S.1ORCID,Almatarneh Aser M.1ORCID,Almajali Eqab2,Al-Tarawneh Luae3,Yousaf Jawad4ORCID

Affiliation:

1. Electrical Engineering Department, Mutah University, Al-Karak 61710, Jordan

2. Electrical Engineering Department, University of Sharjah, Sharjah 27272, United Arab Emirates

3. Communications Engineering Department, Princess Sumaya University for Technology, Amman 11941, Jordan

4. Electrical, Computer, and Biomedical Engineering Department, Abu Dhabi University, Abu Dhabi 59911, United Arab Emirates

Abstract

This study introduces a new design for an ultra-compact shared-aperture antenna utilizing a quarter-mode substrate integrated waveguide (QMSIW) cavity. The proposed antenna operates as a 4 × 4 multi-input multi-output (MIMO) system in three 5G/6G millimeter-wave (MMw) bands, while functioning as a single element antenna for a 5.5 GHz wireless fidelity Microwave (Mw) band. The antenna comprises four QMSIW cavity resonators; each QMSIW is loaded with dual slots to produce tri-band MMw operation at 28 GHz, 38 GHz, and 0.13 THz. The four cavities are arranged to reuse the entire aperture by creating a conventional open-loop antenna that operates at a frequency of 5.5 GHz. Simulation, measurement, and co-simulation results show that the proposed antenna has a quad-band operation and exhibits favorable characteristics. The measured scattering parameters validate the simulated ones over the four bands under consideration. The lowest values of the measured total radiation efficiencies are 80%, 73%, 62%, and 72% (co-simulation) within the four covered bands, respectively. The antenna peak gains are 1.8 to 1.85 dBi, 4.0 to 4.5 dBi, 4.3 to 4.5 dBi, and 6.5 to 6.6 dBi within the covered bands. Furthermore, the design satisfies MIMO and diversity conditions (envelope correlation coefficient and branch power ratio) over frequency bands of operation. All excellent results are achieved from an ultra-compact size in terms of footprint area (0.018λ02), where λ0 represents the free space wavelength at 5.5 GHz. The antenna boasts an excellent reuse aperture utilization efficiency (RAU) of 92% and a large ratio frequency of 23, making it an ideal candidate for compact devices. With its superior performance, the proposed design is well-suited for a range ofs wireless communication systems, including mobile devices and the Internet of Things.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Hardware and Architecture,Signal Processing,Control and Systems Engineering

Cited by 6 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. A novel modified complementary metamaterial resonator based dual-band bandpass quasi-elliptic filter using half-mode SIW cavity with wide stopband rejection for wireless communication applications;AEU - International Journal of Electronics and Communications;2024-10

2. A Review of Multi-Band Flexible MIMO Antenna Design on Thin Substrate for High Diversity Performance;2024 International Conference on Electronics, Computing, Communication and Control Technology (ICECCC);2024-05-02

3. A Dual-Port, and Single-Element Planar Inverted-F Antenna for Current 4G/5G Portable Applications;2024 21st International Multi-Conference on Systems, Signals & Devices (SSD);2024-04-22

4. A Penta-band Shared Aperture Antenna with A Very Ratio Frequency for 5G and B5G Smartphone Applications;2024 18th European Conference on Antennas and Propagation (EuCAP);2024-03-17

5. The Performance of Millimeter-Wave Over FSO Communication Systems Under Adverse Atmospheric Conditions for 6G Applications;2023 14th International Conference on Information and Communication Systems (ICICS);2023-11-21

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