Metamaterial-Based LTCC Compressed Luneburg Lens Antenna at 60 GHz for Wireless Communications

Author:

Zelenchuk Dmitry1ORCID,Kirillov Vitalii2ORCID,Kärnfelt Camilla3ORCID,Gallée Francois3,Munina Irina4

Affiliation:

1. Centre for Wireless Innovations, Queen’s University of Belfast, Belfast BT3 9DT, UK

2. Tyndall National Institute, T12 R5CP Cork, Ireland

3. Lab-STICC, IMT Atlantique, UMR CNRS 6285, 29238 Brest, France

4. Department of Mechanical, Manufacturing & Biomedical Engineering, Trinity College Dublin, D02 KF66 Dublin, Ireland

Abstract

In this study, a metamaterial-based LTCC compressed Luneburg lens was designed, manufactured and measured. The lens was designed at 60 GHz to utilize the unlicensed mm-wave spectrum available for short-range high-capacity wireless communication networks. The transformation optics method was applied to ensure the compression of the Luneburg lens antenna and thus maintain a low-profile structure. The two different types of unit cells for low and high permittivity regions were considered. The parametric study of the effect of compression on lens performance was presented. The antenna is implemented with a standard high-permittivity LTCC process, and details of the manufacturing process for the metamaterial lens are discussed. The low-profile lens is thinner than 2 mm and measures 19 mm in diameter. A size reduction of 63.6% in comparison with a spherical lens was achieved. The near-field to far-field mm-wave measurement technique is presented, and the measurement results show a peak antenna gain of 16 dBi at 60 GHz and a beam-scanning capacity with 1 dB scan loss within a 50° field of view.

Funder

Department for the Economy of Northern Ireland

EPSRC

EU Horizon 2020 under the Marie Skłodowska-Curie grant agreement

European Union through the European Fund for Economic and Regional Development

the Ministry of Education, Higher Education and Research, the Region of Brittany and Brest Metropole through the CPER project “SOPHIE/STIC & Ondes” and the “Fonds de Concours à la Recherche”

the Departmental Council of Finistère through the Aid to Emerging Research Programs (AAPRE) and the Carnot funds

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Hardware and Architecture,Signal Processing,Control and Systems Engineering

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