IEEE Access (Jan 2020)

A Wideband Folded Reflectarray Antenna Based on Single-Layered Polarization Rotating Metasurface

  • Wei Su,
  • Wenhao Luo,
  • Zhenhua Nie,
  • Wen-Wen Liu,
  • Zhen-Hua Cao,
  • Zhi Wang

DOI
https://doi.org/10.1109/ACCESS.2020.3019822
Journal volume & issue
Vol. 8
pp. 158579 – 158584

Abstract

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A wideband folded reflectarray antenna (FRA) based on single-layered polarization rotating metasurface (PRM) is proposed. The FRA is composed of a wideband polarization grid (PG), a wideband PRM and a wideband circular waveguide as the primary source. First, a wideband polarization rotating unit cell consisting of rhombus-shaped metal patch etched on dielectric substrate is designed, which can be used to rotate polarization of the reflective wave 90° relative to that of the incident wave. The element and its mirror image can provide 0°, 90°, 180° and 270° phase shifts with 2-bit phase quantization and relatively higher polarization conversion rates in the Ku band. Due to the introduction of PG and PRM, the distance between the PG surface and the feed phase center can be reduced to about 1/2 of the distance between the imaginary feed and PRM reflectarray. Finally, a wideband FRA consisting of 315 elements with circular aperture is designed, fabricated and measured. The measured results indicate that the proposed antenna achieves 39.5% 3-dB gain bandwidth with 25.5 dBi peak gain at 15 GHz. Its maximum aperture efficiency is about 40%. Low-profile and wideband features of the FRA make it be a candidate in the wireless communication systems.

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