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Wideband Metasurface-Based MIMO antenna for Sub-6 GHz 5G Applications

Thi, T.-N.H. and Viet, D.-N.T. and Tran, H.-H. (2023) Wideband Metasurface-Based MIMO antenna for Sub-6 GHz 5G Applications. In: UNSPECIFIED.

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Abstract

A compact MIMO antenna utilizing a metasurface (MS) is introduced for sub-6 GHz applications, offering wideband functionality and high isolation characteristics. Each individual element of the antenna consists of a slot coupled with 2times 2 unit cells of the MS. To effectively reduce mutual coupling, metallic vias are occupied so that the MS of each MIMO element is grounded at certain points. The proposed antenna stands out from other reported designs due to its simplicity in the decoupling structure without requiring additional space, its compact size, and its ability to operate across a wide frequency range. The overall dimensions of the proposed antenna are 0.85lambdactimes 0.48lambdactimes 0.03lambdac (where lambdac is the free-space wavelength at center operating frequency), with a center-to-center element spacing of 0.43lambdac. The antenna offers an operating bandwidth of 17.1 (3.64-4.32 GHz) and achieves high isolation of over 27 dB. The proposed decoupling method is also applicable to multi-element MIMO antennas. © 2023 IEEE.

Item Type: Conference or Workshop Item (UNSPECIFIED)
Divisions: Offices > Office of International Cooperation
Identification Number: 10.1109/ATC58710.2023.10318850
Uncontrolled Keywords: 5G mobile communication systems; Microwave antennas, Compact; High isolation; Isolation characteristics; Metallics; Metasurface; MIMO-antennas; Mutual coupling; Shorting vias; Unit cells; Wide-band, Slot antennas
Additional Information: cited By 0; Conference of 16th International Conference on Advanced Technologies for Communications, ATC 2023 ; Conference Date: 19 October 2023 Through 21 October 2023; Conference Code:194622
URI: http://eprints.lqdtu.edu.vn/id/eprint/11027

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