27-GHz Transmitarray Antenna Based on a Modified Cross Dipole Unit Cell for Beamsteering

In this work, a novel metamaterial unit cell based on a Modified Cross Dipole has been designed to switch a linear polarized beam into a cross-polarized one. In particular, the unit cell is constituted by two orthogonal wire layers separated by a phase compensator section. This unit cell has been employed for designing a 16 × 16 transmitarray antenna, allowing beamsteering with linear polarization. A 2-bit phase compensation approach has been chosen to improve the phase front of radiated waves. The transmitarray antenna has been fabricated and characterized, providing a measured realized gain of 21.6 dBi. The beamsteering of ±22° with a scan loss of −3 dB in both the E-plane and H-plane was obtained by shifting the primary radiator along the x- and y-axis. The results are in good agreement with the simulations.

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Publication Details

Journal
Applied Sciences
Published
2026-09-11
DOI
https://doi.org/10.3390/app16189016
Primary Topic
Advanced Antenna and Metasurface Technologies
Type
article
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article

27-GHz Transmitarray Antenna Based on a Modified Cross Dipole Unit Cell for Beamsteering

Francesco Anelli, Francesco Prudenzano, Antonella Maria Loconsole, Federico Moscatelli
Applied Sciences
Advanced Antenna and Metasurface Technologies
article

27-GHz Transmitarray Antenna Based on a Modified Cross Dipole Unit Cell for Beamsteering

Francesco Anelli, Francesco Prudenzano, Antonella Maria Loconsole, Federico Moscatelli
article en

Abstract

In this work, a novel metamaterial unit cell based on a Modified Cross Dipole has been designed to switch a linear polarized beam into a cross-polarized one. In particular, the unit cell is constituted by two orthogonal wire layers separated by a phase compensator section. This unit cell has been employed for designing a 16 × 16 transmitarray antenna, allowing beamsteering with linear polarization. A 2-bit phase compensation approach has been chosen to improve the phase front of radiated waves. The transmitarray antenna has been fabricated and characterized, providing a measured realized gain of 21.6 dBi. The beamsteering of ±22° with a scan loss of −3 dB in both the E-plane and H-plane was obtained by shifting the primary radiator along the x- and y-axis. The results are in good agreement with the simulations.

Applied SciencesVol. 16(18)
Polytechnic University of Bari (IT)
Openalex Percentile: Top 7%
Advanced Antenna and Metasurface Technologies
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27-GHz Transmitarray Antenna Based on a Modified Cross Dipole Unit Cell for Beamsteering — Francesco Anelli, Francesco Prudenzano, et al. · Applied Sciences (2026) | TGRS Research Map | TGRS