COMPUTATIONAL ELECTROMAGNETIC ANALYSIS OF WAVEGUIDE-FED ANTENNAS FOR IMPROVED RADIATION AND PROPAGATION CHARACTERISTICS

Authors

  • Olarewaju Peter Ayeoribe Department of Electrical & Electronics Engineering, Federal University Oye-Ekiti, Nigeria Author https://orcid.org/0009-0007-3969-1354
  • Ayodele Sunday Oluwole Department of Electrical & Electronics Engineering, Federal University Oye-Ekiti, Nigeria Author
  • Kehinde Oluwafemi Olusuyi Department of Electrical & Electronics Engineering, Federal University Oye-Ekiti, Nigeria Author
  • Olaitan Akinsanmi Department of Computer Engineering, Federal University Oye-Ekiti, Nigeria Author
  • Adebimpe O. Esan Department of Computer Engineering, Federal University Oye-Ekiti, Nigeria Author
  • Bolaji A. Omodunbi Department of Computer Engineering, Federal University Oye-Ekiti, Nigeria Author
  • Iyiola V. Ayeoribe Department of Computer Engineering, Federal University Oye-Ekiti, Nigeria Author

DOI:

https://doi.org/10.63456/jscqt-2-2-143

Keywords:

Rectangular waveguide, waveguide-fed antenna, TE₁₀ mode, electromagnetic propagation, mmWave antenna, CST simulation, radiation characteristics.

Abstract

Accurate control of guided-wave propagation and aperture radiation is essential for achieving efficient and directional performance in waveguide-fed antennas operating at microwave and millimeter-wave frequencies. This study presents the design and full-wave electromagnetic analysis of a rectangular waveguide-fed antenna operating at 11.10 GHz. The methodology combined analytical characterization of the dominant TE₁₀ mode with computational electromagnetic simulation using CST Studio Suite 2024 and a frequency-domain solver over 8-14 GHz. For an air-filled rectangular waveguide with a broad-wall dimension of 22.86 mm, the calculated TE₁₀ cutoff frequency was 6.56 GHz. The simulation evaluated field distributions, S-parameters, VSWR, impedance bandwidth, radiation efficiency, directivity, realized gain, far-field characteristics, and electromagnetic power flow. At the operating frequency, 0.985 W of input power was accepted, while 0.922 W was radiated through the aperture, demonstrating effective electromagnetic energy transfer. The results confirmed satisfactory directional radiation and TE₁₀-mode operation, indicating the suitability of the configuration for mmWave communication. Future optimization should address bandwidth enhancement, fabrication validation, beam steering, and antenna-array integration.

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Published

2026-08-25

How to Cite

Ayeoribe, O. P. ., Oluwole, A. S. ., Olusuyi, K. O. ., Akinsanmi, O. ., Esan, A. O. ., Omodunbi, B. A. ., & Ayeoribe, I. V. . (2026). COMPUTATIONAL ELECTROMAGNETIC ANALYSIS OF WAVEGUIDE-FED ANTENNAS FOR IMPROVED RADIATION AND PROPAGATION CHARACTERISTICS. Journal of Smart Computing and Quantum Technologies, 2(2), 21-43. https://doi.org/10.63456/jscqt-2-2-143