Abstract
In this paper, a dual-band dual-polarized antenna array based on magneto-electric (ME) dipoles is proposed, which is simply excited by two orthogonal L -shaped strips. The antenna element has a compact size of 0.45λ × 0.45λ × 0.12λ at 34 GHz. By adding inductive blind vias at the four corners of the ground plane, better impedance matching, larger front-to-back ratio (FBR) and higher gain at the low frequency band are achieved. Due to the resonances of the magnetic dipole and the electric dipole, large bandwidths of 24.4-28.9 GHz and 34.2-43.4 GHz are obtained for the ±45° polarized antennas, covering the n258 and n260 bands for 5G communications. At the same time, a stable radiation pattern is retained, with a high gain of above 5 dBi over the operating band for both polarizations. With the 1×4 array, the beam scanning range from -60° to +60° is retained at 26.5 GHz, whereas it is from -53° to +53° at 39 GHz, making it competitive for implementations in mobile handsets.
Author supplied keywords
Cite
CITATION STYLE
Li, H., Liu, C., Lv, S., & Wu, F. (2023). Compact Magneto-Electric Dipole Array With Wide Beam Scanning Range for 5G NR Bands. IEEE Access, 11, 88489–88497. https://doi.org/10.1109/ACCESS.2023.3305500
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.