Open Access
Issue
EPJ Web Conf.
Volume 374, 2026
1st International Conference on Electronic, Optical Devices and Intelligent Systems (ICEODIS 2026)
Article Number 01006
Number of page(s) 6
Section Telecommunications, RF and Optical Engineering
DOI https://doi.org/10.1051/epjconf/202637401006
Published online 24 June 2026
  1. Elabdi, A., El Ayachi, M., Rahmoun, M., & Lamkaddem, A. (2025, June). A Review of Reconfigurable Antenna Types and Mechanisms for Wireless Communications: IoT Applications. In 2025 International Conference on Circuit, Systems and Communication (ICCSC) (pp. 1-8). IEEE. [Google Scholar]
  2. Elabdi, A., Elayachi, M., & Rahmoun, M. (2024, April). Frequency Reconfigurable Miniature Antenna for IoT and 5G Applications. In International Conference on Smart Medical, IoT & Artificial Intelligence (pp. 167-175). Cham: Springer Nature Switzerland. [Google Scholar]
  3. Zhang, T., Yao, S. Y., & Wang, Y. (2014). Design of radiation-pattern-reconfigurable antenna with four beams. IEEE Antennas and wireless propagation letters, 14, 183-186. [Google Scholar]
  4. Ren, J., Zhou, Z., Wei, Z. H., Ren, H. M., Chen, Z., Liu, Y., & Yin, Y. Z. (2020). Radiation pattern and polarization reconfigurable antenna using dielectric liquid. IEEE Transactions on Antennas and Propagation, 68(12), 8174-8179. [Google Scholar]
  5. Deo, A. P., Sonker, A., & Kumar, R. (2017, July). Design of reconfigurable slot antenna using varactor diode. In 2017 International conference on computer, communications and electronics (Comptelix) (pp. 511-515). IEEE. [Google Scholar]
  6. Petit, L. (2007). Antennes reconfigurables à base de MEMS RF (Doctoral dissertation, Université Joseph-Fourier-Grenoble I). [Google Scholar]
  7. Elabdi, A., Elayachi, M., & Rahmoun, M. (2024, April). Meander-Shaped Miniature Antenna for 2.4 GHz IoT Applications. In International Conference on Smart Medical, IoT & Artificial Intelligence (pp. 160-166). Cham: Springer Nature Switzerland. [Google Scholar]
  8. S. Shankar and D. K. Upadhyay, (2023)."A Fractal Monopole Antenna With Dual Polarization Reconfigurable Characteristics for X-Band Applications, " in IEEE Access, vol. 11, pp. 9566795680. [Google Scholar]
  9. Hussain, M., Awan, W. A., Alzaidi, M. S., Hussain, N., Ali, E. M., & Falcone, F. (2023). Metamaterials and their application in the performance enhancement of reconfigurable antennas: A review. Micromachines, 14(2), 349. [Google Scholar]
  10. T. Lira-Vald’s, E. Rajo-Iglesias and F. Pizarro, (2023). "3-D-Printed Spiral Leaky Wave Antenna With Circular Polarization, " in IEEE Open Journal of Antennas and Propagation, vol. 4, pp. 427-433, [Google Scholar]
  11. Yahya, M. S., Soeung, S., Singh, N. S. S., Yunusa, Z., Chinda, F. E., Rahim, S. K. A., … & Abro, G.E.M. (2023). Triple-band reconfigurable monopole antenna for long-range IoT applications. Sensors, 23(12), 5359. [Google Scholar]
  12. Singh, P. P., Goswami, P. K., Sharma, S. K., & Goswami, G. (2020). Frequency reconfigurable multiband antenna for IoT applications in WLAN, Wi-Max, and C-band. Progress In Electromagnetics Research C, 102, 149-162. [Google Scholar]
  13. Singh, P. P., Goswami, P. K., Sharma, S. K., & Goswami, G. (2020). Frequency reconfigurable multiband antenna for IoT applications in WLAN, Wi-Max, and C-band. Progress In Electromagnetics Research C, 102, 149-162. [Google Scholar]
  14. Gençoğlan, D. N., Palandöken, M., &Çolak, Ş. (2023). Novel frequency-reconfigurable antennas with ring resonators and RF switches: enhancing versatility and adaptability in wireless communication systems. Applied Sciences, 13(18), 10237. [Google Scholar]

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