Millimeter Wave All-Around Antenna Based on Whispering Gallery Mode Dielectric Resonator for IoT-Based Applications

Author:

Kogut Alexander1ORCID,Annino Giuseppe2ORCID,El Bakkali Mohamed3ORCID,Laamara Rachid Ahl3ORCID,Arora Sandeep Kumar4ORCID,Naik D. S. Bhupal5ORCID,Maniraguha Fidele6ORCID

Affiliation:

1. O.Ya.Usikov Institute for Radiophysics and Electronics of NAS of Ukraine, Kharkiv, 12, Ac. Proskura St., 61085, Ukraine

2. Istituto per I Processi Chimico-Fisici, IPCF-CNR, via G. Moruzzi 1, 56124 Pisa, Italy

3. Faculty of Sciences of Rabat, Mohamed 5 University, Rabat, Morocco

4. Lovely Professional University, Phagwara, Punjab, India

5. Vignan’s Foundation for Science, Technology and Research, India

6. University of Rwanda, College of Science and Technology, Rwanda

Abstract

This work is devoted to the study of the emitting properties of azimuthally inhomogeneous segmental dielectric resonators excited by whispering gallery modes. Due to the diffraction of the azimuthal waves on local nonhomogeneities located equidistantly along the azimuthal coordinate, intense electromagnetic radiation is achieved in the azimuthal sector of the angles 0°-360°. A prototype of an all-around emitting antenna based on basis of a segmental dielectric resonator is proposed, and its characteristics in the far zone are studied. It is shown that such an antenna forms a multilobe radiation pattern (72 lobes) in the circle sector of angles. The antenna gain in the lobes at the resonant frequency reaches 12 dB. Antenna optimization is achieved in the proposed method because of the large gain produced by the antenna. It is also analyzed that these types of radiation patterns observed by antennas are well used for the Internet of Things- (IoT-) based applications.

Funder

University of Rwanda

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Information Systems

Reference50 articles.

1. Millimeter Wave Technology in Wireless PAN, LAN, and MAN

2. Digital communication systems, Ministry of Higher Education Tanta Higher Institute Of Engineering & Technology Communication & Computer Engineering Dept;S. M. Hashima

3. A review of 5G technology: architecture, security and wide applications;M. Z. Noohani;International Research Journal of Engineering and Technology (IRJET),2020

4. 5G wireless communication systems;S. Hosain;American Journal of Enhineering Reasearch,2013

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