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Compact Substrate Integrated Waveguide Cubical Dielectric Resonator Antenna for fifth-generation applications

Nida Nasir*, Mohd Haizal Jamaluddin*, Nor Hidayu Shahadan, Syed Muzahir Abbas, Hamza Ahmad

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

A comprehensive analysis of a wideband Cubical Dielectric Resonator Antenna is presented, specifically designed for 5G-NR wireless communication applications, focusing on the N257, and N258 frequency bands. This antenna exhibits symmetrical radiation patterns, a wider bandwidth, improved efficiency, and substantial gain characteristics. The design employs a low-loss substrate-integrated waveguide structure to enhance gain while reducing cross-polarization effects. This is accomplished through an innovative approach of establishing boundary conditions using copper wire stitching for vias, superseding the conventional soldering iron method, which guarantees minimal radiation leakage, compact dimensions, and reduced losses. The perforated dielectric resonator antenna possesses higher mode excitations, and implementing metallic strips on two resonator surfaces facilitates the simultaneous excitation of fundamental and higher-order modes, thereby yielding a broadband response. The overall dimensions of the antenna are 15.29 × 8.42 × 3.8 mm3(1.3×0.7×0.3)λ03, which facilitates a measured impedance bandwidth of 8.2 GHz, spanning from 24.4 to 32.6 GHz (28.7%), accompanied by a high gain of 8.1 dBi and efficiency levels reaching up to 94%. The prototype is constructed utilizing the standard printed circuit board technique, and simulation outcomes are derived using the High-Frequency Structure Simulator (HFSS).

Original languageEnglish
Article number155551
Pages (from-to)1-13
Number of pages13
JournalAEU - International Journal of Electronics and Communications
Volume187
DOIs
Publication statusPublished - Dec 2024

Keywords

  • 5G-NR (new radio)
  • Cubical Dielectric Resonator Antenna (cub DRA)
  • fundamental mode
  • higher-order mode
  • metal strip
  • Millimeter (mm) wave band
  • perforation
  • Substrate Integrated Waveguide (SIW)

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