Optimizing Dual-Band E-Shaped Patch Antennas for 5G Mobile Communications: An Evolutionary Approach
PDF

Keywords

mmWave
5G
mobile commnications
patch antennas
TLBO algorithm
dual-band operation.

Categories

How to Cite

[1]
G. K. Theodorakis, A. N. Karampelas, D. T. Vlachos, K. E. Zacharopoulos, and C. A. Kostopoulos, “Optimizing Dual-Band E-Shaped Patch Antennas for 5G Mobile Communications: An Evolutionary Approach”, J. Comput. Eng., vol. 14, no. 9, Sep. 2025, Accessed: Apr. 13, 2026. [Online]. Available: https://journalofcomputerengineering.com/index.php/jce/article/view/1893

Abstract

— Fifth generation (5G) wireless technology is a promising solution for multi-Gbps data rates in future mobile communications. The new devices are expected to operate at millimeter wave frequencies. To address the 5G requirements novel antennas have to be developed. In this paper the TeachingLearning-Optimization (TLBO) algorithm is applied in order to design a dual-band E-shaped patch antenna. The geometrical parameters of the aperture-coupled antenna are the inputs of the optimization algorithm. The method gives acceptable design solutions achieving simultaneously S11 minimization and low VSWR at the frequencies of interest (25GHz and 37GHz)
PDF
Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 International License.

Copyright (c) 2025 Georgios K. Theodorakis, Andreas N. Karampelas, Dimitrios T. Vlachos, Konstantinos E. Zacharopoulos, Christos A. Kostopoulos (Author)