Design and Development of MIMO Antennas for WiGig Terminals

Author:

Shoaib SultanORCID,Shoaib NosherwanORCID,Y. Khattak Riqza Y.,Shoaib Imran,Ur Rehman MasoodORCID,Yang Xiaodong

Abstract

This article presents a design for high-gain MIMO antennas with compact geometry. The proposed design is composed of four antennas in MIMO configuration, wherein, each antenna is made up of small units of microstrip patches. The overall geometry is printed on the top layer of the substrate, i.e., Rogers RT-5880 with permittivity of 2.2, permeability of 1.0, dielectric loss of 0.0009, and depth of 0.508 mm. The proposed design covers an area of 29.5 × 61.4 mm2, wherein each antenna covers an area of 11.82 × 25.28 mm2. The dimensions of the microstrip lines in each MIMO element were optimized to achieve a good impedance matching. The design is resonating at 61 GHz, with a wide practical bandwidth of more than 7 GHz, thereby covering IEEE 802.11ad WiGig (58–65 GHz). The average value of gain ranges from 9.45 to 13.6 dBi over the entire frequency bandwidth whereas, the average value of efficiency ranges from 55.5% to 84.3%. The proposed design attains a compact volume, wide bandwidth, and good gain and efficiency performances, which makes it suitable for WiGig terminals.

Funder

Higher Education Commision, Pakistan

Publisher

MDPI AG

Subject

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

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1. A Compact Linear Microstrip Patch Beamformer Antenna Array for Millimeter-Wave Future Communication;Sensors;2024-06-22

2. Simulated Design and Analysis of Highly Isolated 5G Millimeter-Waves MIMO Antenna with Wideband Characteristic;2023 First International Conference on Microwave, Antenna and Communication (MAC);2023-03-24

3. A novel beamforming antenna array for 5G and beyond applications;2022 International Conference on Engineering and Emerging Technologies (ICEET);2022-10-27

4. Investigation on Simulation-Based Octagonal Ring MIMO Antenna for 5G Applications;2021 17th International Conference on Quality in Research (QIR): International Symposium on Electrical and Computer Engineering;2021-10-13

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