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Queens University

Miniaturized Antenna for Satellite Broadband Application

Abstract

dc:description.abstract

User antenna is a crucial component of a high-speed satellite internet system. High directivity, broadband characteristics, and circularly polarized radiations are essential for a user antenna to maintain a reliable connection with the overhead LEO satellite constellation. For commercialization and portability, the antenna is preferred to be planar, lightweight, and low-cost. This thesis expands on a type of complementary antenna, designed for 26-30 GHz, which is chosen for the application after an extensive survey of wideband, circularly polarized antenna elements. The magneto-electric dipole antenna or MEDA is a broadband antenna and can be made linearly or circularly polarized depending on the application. Although MEDA also offers a stable gain of 8.5 dBi over the desired range of frequencies, yet it is not high enough for the satellite internet application. Cavity antennas with different types of superstrates are explored here to increase the directivity of the MEDA element. An optimized cavity antenna is presented, with MEDA as a primary radiator, and 5.5 dBi of gain enhancement is reported. Electrical steerability is essential for a user antenna to connect to the LEO satellite constellation, requiring an array of antennas. An array is also needed to increase the total gain of the antenna. However, due to the large size of MEDA, the antenna element cannot be arranged in a planar lattice without generating grating lobes. A novel dielectric material with relative permittivity of 5.7 is coated on the MEDA to significantly reduce the size of the antenna without disrupting its broadband characteristics, to make the MEDA compatible with planar array configuration. The miniaturized antenna element is fabricated in an external facility, whereas the dielectric material is developed in-house. Simulations were conducted with ANSYS EDT (HFSS), which agree with the measured results.

Degree

thesis:*
Department dc:contributor.department
Electrical and Computer Engineering

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Deva, Utkarsh
Advisors dc:contributor.supervisor
  • Antar, Yahia
  • Freundorfer, Alois

Subjects

dc:subject × 18

Rights

dc:rights
Statement dc:rights
  • Queen's University's Thesis/Dissertation Non-Exclusive License for Deposit to QSpace and Library and Archives Canada
  • ProQuest PhD and Master's Theses International Dissemination Agreement
  • Intellectual Property Guidelines at Queen's University
  • Copying and Preserving Your Thesis
  • This publication is made available by the authority of the copyright owner solely for the purpose of private study and research and may not be copied or reproduced except as permitted by the copyright laws without written authority from the copyright owner.
  • CC0 1.0 Universal
Language dc:language.iso
eng

Identifiers

dc:identifier.*
Handle dc:identifier.uri
http://hdl.handle.net/1974/29920
OAI identifier oai:identifier
oai:queensu.scholaris.ca:1974/29920

Chain of custody

source
Harvested from
Queens University
Base URL
qspace.library.queensu.ca/server/oai/request
Last updated
2026-07-27
Source record
OAI-PMH GetRecord
citation

Deva, Utkarsh. Miniaturized Antenna for Satellite Broadband Application. http://hdl.handle.net/1974/29920