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MIMO Smartphone Antenna with CPW-Fed Stepped Resonators for sub 6 GHz Cellular Networks

Basherlou, Haleh Jahanbakhsh; Ojaroudi Parchin, Naser; Manjakkal, Libu; See, Chan Hwang; Amar, Ahmed Sayed Ismail; Salama, Ahmed Gamal; Darwish, Mohammad

Authors

Haleh Jahanbakhsh Basherlou

Ahmed Sayed Ismail Amar

Ahmed Gamal Salama

Mohammad Darwish



Abstract

The imperative for cutting-edge multi-port MIMO antennas has surged, driven by the evolving demands of advanced technologies, notably in the context of 5G networks and beyond. This paper introduces a new MIMO antenna utilizing Coplanar Waveguide (CPW) fed resonators, exhibiting desirable characteristics for sub-6 GHz applications. The MIMO array comprises eight stepped-ring slits etched in the same layer as the ground plane, operating within 3.2-3.7 GHz, aligning with the sub-6 GHz cellular bands. Its compact footprint allows seamless integration into smartphones, offering a practical solution for space-constrained devices. Despite its size, the MIMO antenna demonstrates satisfactory performance across critical parameters.

Citation

Basherlou, H. J., Ojaroudi Parchin, N., Manjakkal, L., See, C. H., Amar, A. S. I., Salama, A. G., & Darwish, M. (2024, May). MIMO Smartphone Antenna with CPW-Fed Stepped Resonators for sub 6 GHz Cellular Networks. Presented at 14th International Conference on Electrical Engineering (ICEENG), Cairo , Egypt

Presentation Conference Type Conference Paper (published)
Conference Name 14th International Conference on Electrical Engineering (ICEENG)
Start Date May 21, 2024
End Date May 23, 2024
Acceptance Date Mar 17, 2024
Online Publication Date Jun 25, 2024
Publication Date 2024
Deposit Date Mar 24, 2024
Publisher Institute of Electrical and Electronics Engineers
Peer Reviewed Peer Reviewed
Pages 205-208
Book Title 2024 14th International Conference on Electrical Engineering (ICEENG)
ISBN 9798350343434
DOI https://doi.org/10.1109/ICEENG58856.2024.10566347
Keywords 5G , CPW-fed antenna , MIMO communications , sub 6 GHz cellular networks
Public URL http://researchrepository.napier.ac.uk/Output/3574618