Fluidically Scanned Two-Dimensional (2-D) Meta-Fluidic Antenna

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초록

This paper presents a fluidically scanned 2-dimensional meta-fluidic antenna. The proposed antenna consists of a source antenna and a bi-layered metasurface which acts as partially reflecting surface (PRS) as a superstrate. The top-layer metasurface composed of a 4× 4 square-ring element array on the top side of a thin dielectric substrate and 3-D printed fluidic channels inside the dielectric polylactic acid substrate for fluid movement as the bottom layer. It is demonstrated that proposed simple configuration generates a broadside beam that can be pointed to discrete azimuthal directions, whereas continuous elevation scanning of ±25° is also attained simultaneously for each azimuthal direction by controlling the programmable water injection inside the channels. Antenna achieved a 10-dB impedance bandwidth of 2.41-2.65 GHz, and a radiation gain of 5.7 dBi demonstrated across the operating bandwidth. To validate the concept, an antenna prototype was fabricated, and far-field measurements were performed. The simulation and measurement results showed good agreement and confirmed the proposed concept. © 2020 IEEE.

키워드

3-D printing; Beam steering; fluid; metasurface; water; Antenna arrays; Bandwidth; Dielectric materials; Microwave antennas; Scanning antennas; Azimuthal direction; Dielectric substrates; Far field measurement; Impedance bandwidths; Operating bandwidth; Partially reflecting surfaces; Simulations and measurements; Two Dimensional (2 D); Electric impedance
제목
Fluidically Scanned Two-Dimensional (2-D) Meta-Fluidic Antenna
저자
Naqvi, A.H.; Lim, Sungjoon
DOI
10.1109/IEEECONF35879.2020.9330149
발행일
2020-07
유형
Conference Paper
저널명
2020 IEEE International Symposium on Antennas and Propagation and North American Radio Science Meeting, IEEECONF 2020 - Proceedings
페이지
847 ~ 848