Machine learning assisted dual port metasurface loaded MIMO antenna with linearly polarized to circularly polarized conversion features for n257 band of 5G mm‐wave applications

Author:

Dwivedi Ajay Kumar1ORCID,Singh Suyash Kumar2,Ranjan Pinku3ORCID,Sharma Anand4ORCID,Singh Vivek1ORCID

Affiliation:

1. Department of Electronics & Communication Nagarjuna College of Engineering and Technology Bengaluru India

2. Department of Electronics & Communication Indian Institute of Information Technology Allahabad Prayagraj India

3. Department of Electronics & Communication Atal Bihari Vajpayee‐Indian Institute of Information Technology and Management Gwalior India

4. Department of Electronics & Communication Motilal Nehru National Institute of Engineering & Technology Allahabad Prayagraj India

Abstract

SummaryIn this communication, a dual port printed multi‐input and multi‐output (MIMO) antenna with high isolation of dimension 12 × 8.5 × 0.8 mm3 is designed, analyzed, and investigated for 28‐GHz 5G mm‐wave applications. The metasurface layer is suspended over the MIMO antenna to convert the linearly polarized (LP) wave to a circularly polarized (CP) wave. The unit cell of the metasurface consists of a square‐shaped conducting strip with one side of diagonal points interconnected. The conducting strip and rectangular gap between the strips etched on the substrate are capable of generating the π/2 phase shifted electric field components (Ex and Ey) resulting in polarization conversion from LP to CP. The machine learning concept is used to characterize the dimensional configuration of the antenna to achieve the optimum throughput. The MIMO diversity performance parameters and antenna essential results are validated by the measured counterparts.

Publisher

Wiley

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