Miniaturized six‐ring elliptical monopole‐based MIMO antenna for ultrawideband applications

Author:

Amroun A.1,Zebiri C.1,Sayad Djamel2,Elfergani Issa T. E.34ORCID,Desai A.56,Bouknia M. L.1,Zegadi R.1ORCID,Rodriguez J.3

Affiliation:

1. Laboratoire d'Electronique de puissance et commande industrielle (LEPCI), Department of Electronics University of Ferhat Abbas Sétif Algeria

2. Laboratoire d'Electrotechnique de Skikda (LES) University 20 Aout 1955‐Skikda Skikda Algeria

3. The Instituto de Telecomunicações Campus Universitário de Santiago Aveiro Portugal

4. School of Engineering and Informatics University of Bradford Bradford UK

5. International College of Semiconductor Technology National Yang Ming Chiao Tung University Hsinchu Taiwan

6. Department of Electronics and Communication Engineering, CSPIT Charotar University of Science and Technology (CHARUSAT) Changa India

Abstract

SummaryThis paper proposes a miniature two‐element Multiple Input Multiple Output (MIMO) antenna dedicated to UWB applications. The proposed MIMO design has a very low profile of 30 × 20 × 1.6 mm3. The proposed antenna is carefully designed and optimized using HFSS simulation software. As a proof of concept, the proposed design is realized and experimentally tested for MIMO applications. The proposed structure, printed on an FR4 substrate, comprises two symmetrical elliptical conductive patches on the upper side and a modified ground plane on the lower one. Each radiating element includes six elliptical rings. The modified ground plane consists of a T‐shaped strip and two semielliptical slots etched opposite the feed line. All the parameters of the design are carefully optimized to achieve an ultrawide bandwidth antenna spanning from (136.08%) 3.1 to 16.3 GHz. The results are discussed and analyzed in terms of bandwidth, gain, efficiency, radiation pattern, diversity gain, envelope correlation coefficient (ECC), total active reflection coefficient (TARC), and mean effective gain (MEG). All simulated results are found to be in good accordance with experiments. The design reveals attractive features for UWB applications. A good isolation (17 dB) between the two radiators is achieved despite the close proximity using the suggested ground plane geometry.

Funder

Horizon 2020 Framework Programme

Direction Générale de la Recherche Scientifique et du Développement Technologique

Ministry of Higher Education and Scientific Research

Fundação para a Ciência e a Tecnologia

National Science and Technology Council

Publisher

Wiley

Subject

Electrical and Electronic Engineering,Computer Networks and Communications

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