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Electromagnetics

Opportunistic Control of a Slotted Hexagonal MIMO Structure Antenna for Lower Sub-6 GHz 5G Applications

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Pages 5628-5636 | Published online: 17 Aug 2021
 

Abstract

In this research article, a high-performance and compact 2-port slotted hexagonal structure multiple-input multiple-output (MIMO) system is presented. This structure is designed by using novel technology that includes the hexagonal structure with a slotted rotate C-shape structure for obtaining better isolation parameters and commercial 5G applications. The overall design size is 40 × 26 mm2, which is effectively miniaturized at a resonant frequency of 3.5 GHz for a lower sub-6 GHz. Moreover, dual-band characteristics are achieved in the hexagonal MIMO structure by embedding an inverted C-shape structure and monopole rectangular ground planes on the bottom sides of the patches. In addition, the hexagonal MIMO structure shows better diversity performance and high isolation in terms of the Total Active Reflection Coefficient, Envelope Correlation Coefficient, channel capacity loss, mean effective gain, and diversity gain. For the slotted hexagonal MIMO structures established, a better trade-off is achieved and it is found that the MIMO design is the best candidate for applications of wireless communication.

Additional information

Notes on contributors

G. Naga Jyothi Sree

G Naga Jyothi Sree is currently a research scholar in the Department of Electronics and Communication Engineering at Vignan Foundation for Science and Technology, Guntur, India. Her areas of interest include the design of microstrip and dielectric resonator antennas for MIMO applications. She has contributed more than 5 research articles in various peer-reviewed international journals and conferences.

Suman Nelaturi

N Suman is currently working as an assistant professor in the Department of Electronics and Communication Engineering at Vignan Foundation for Science and Technology, Guntur, India. He earned his PhD degree from NITW, Warangal, India. His areas of interest include the design of microstrip and dielectric resonator antennas for MIMO applications. He has contributed more than 35 research articles in various peer-reviewed international journals and conferences. Email: [email protected]

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