Millimeter-Wave Antenna with Integrated Phase-Controlled Metasurface for Adaptive B5G Applications
https://doi.org/10.35596/1729-7648-2026-24-4-29-37
Abstract
A millimeter-wave antenna design with an integrated phase-controlled metasurface for advanced B5G adaptive wireless communication systems is presented. The antenna system combines a planar antenna array of 32 patch antennas with an active metasurface based on microresonators with embedded varicaps, which provides a highly focused beam and its electronic deflection in various directions. The power supply network ensures in-phase excitation of the emitters with a phase spread of no more than 16° and an amplitude imbalance of less than 3.8 dB at a frequency of 25.7 GHz. The metasurface unit cell implements a Huygens resonance, resulting in a transmission coefficient no worse than –3.5 dB and a reflection coefficient of less than –15 dB. By varying the varicap bias voltage from 0 to 20 V, an electronic phase tuning range of approximately 304° is achieved, enabling dynamic beam direction control. Numerical simulation confirmed the feasibility of forming a narrow beam with electronic deflection over a wide range of angles (up to 40°). The proposed design has a low profile, is easy to manufacture, and meets the requirements of adaptive antenna systems for advanced communication standards to improve energy efficiency and spatial multiplexing. The results demonstrate the high potential for using the developed antenna in reconfigurable millimeter-wave antenna systems.
About the Authors
I. FanyaevBelarus
Fanyaev Ivan, Cand. Sci. (Tech.), Associate Professor of the Department of Radiophysics and Electronics
246028, Gomel, Sovetskaya St., 104
Tel.: +375 44 754-01-57
A. Timoshenko
Belarus
Timoshenko A., Student
246028, Gomel, Sovetskaya St., 104
S. Khakhomov
Belarus
Khakhomov S., Dr. Sci. (Phys. and Math.), Associate Professor of the Department of Optics
246028, Gomel, Sovetskaya St., 104
References
1. Akbar M. S., Hussain Z., Ikram M., Sheng Q. Z., Mukhopadhyay S. C. (2025) On Challenges of Sixth- Generation (6G) Wireless Networks: A Comprehensive Survey of Requirements, Applications, and Security Issues. Journal of Network and Computer Applications. (233).
2. Pourgholamhossein Z., Denidni T. A. (2024) Reconfigurable Huygens’ Metasurface-Based Unit-Cell and Electronically Steerable Active Flat-Lens Antenna at the Ka-Band. IEEE Transactions on Antennas and Propagation. 73 (5), 2791–2803.
3. Wang Z., Ge Y., Pu J., Chen X., Li G., Wang Y., et al. (2020) 1 Bit Electronically Reconfigurable Folded Reflectarray Antenna Based on Pin Diodes for Wide-Angle Beam-Scanning Applications. IEEE Transactions on Antennas and Propagation. 68 (9), 6806–6810.
4. Rotshild D., Abramovich A. (2021) Realization and Validation of Continuous Tunable Metasurface for High Resolution Beam Steering Reflector at K‐Band Frequency. International Journal of RF and Microwave Computer‐Aided Engineering. 31 (4).
5. Verho S., Chung J. Y. (2024) Design of a Compact and Minimalistic Intermediate Phase Shifting Feed Network for Ka-Band Electrical Beam Steering. Sensors. 24 (4).
6. Emara M. K., Kundu D., Macdonell K., Rufail L. M., Gupta S. (2023) Dynamic Metasurface Reflectors Based on Coupled Resonators for Simultaneous Magnitude and Phase Control. IEEE Access. 11, 129552–129565.
7. Ge Y., Lin C., Liu Y. (2018) Broadband Folded Transmitarray Antenna Based on an Ultrathin Transmission Polarizer. IEEE Transactions on Antennas and Propagation. 66 (11), 5974–5981.
8. Fanyaev I. A., Timoshenko A. A., Samofalov A. L., Semchenko I. V., Khakhomov S. A. (2026) Comparative Analysis of Ka-Band Antenna Systems with a Feed Network Based on Asymmetric and Symmetric Striplines. Proceedings of Francisk Skorina Gomel State University. (3), 117–122 (in Russian).
9. Fanyaev I. A., Timoshenko A. A., Samofalov A. L., Khakhomov S. A., Semchenko I. V., Jihong Gu, et al. (2025) Active Transmitting Bianisotropic Metasurface with Phase Control Function for B5G/6G Applications of Wireless Communications. Problems of Physics, Mathematics and Technics. 65 (4), 103–107 (in Russian).
Review
For citations:
Fanyaev I., Timoshenko A., Khakhomov S. Millimeter-Wave Antenna with Integrated Phase-Controlled Metasurface for Adaptive B5G Applications. Doklady BGUIR. 2026;24(4):29-37. (In Russ.) https://doi.org/10.35596/1729-7648-2026-24-4-29-37
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