3-D-Printed Dielectric Resonator Antenna Arrays Based on Standing-Wave Feeding Approach

A novel feeding method for a dielectric resonator array antenna is introduced. Unlike in a corporate feed network, power dividers or quarter-wave transformers are not needed in the new feeding scheme as the design is based on the standing-wave concept. Consequently, the feed network is greatly simpl...

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Veröffentlicht in:IEEE antennas and wireless propagation letters 2019-10, Vol.18 (10), p.2180-2183
Hauptverfasser: Althuwayb, Ayman A., Abdalmalak, Kerlos A., Lee, Choon S., Santamaria-Botello, Gabriel, Garcia-Castillo, Luis E., Segovia-Vargas, Daniel, Garcia-Munoz, Luis E.
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container_issue 10
container_start_page 2180
container_title IEEE antennas and wireless propagation letters
container_volume 18
creator Althuwayb, Ayman A.
Abdalmalak, Kerlos A.
Lee, Choon S.
Santamaria-Botello, Gabriel
Garcia-Castillo, Luis E.
Segovia-Vargas, Daniel
Garcia-Munoz, Luis E.
description A novel feeding method for a dielectric resonator array antenna is introduced. Unlike in a corporate feed network, power dividers or quarter-wave transformers are not needed in the new feeding scheme as the design is based on the standing-wave concept. Consequently, the feed network is greatly simplified, and undesired spurious radiation in the feeding network is minimized. The simulated and measured results are in good agreement. A 3-D printer is utilized where the entire array structure is fabricated as a single piece with a dielectric material of polylactic acid. The 3-D printer provides a cost-efficient, simple, and rapid manufacturing process.
doi_str_mv 10.1109/LAWP.2019.2939734
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subjects 3-D printer
3-D printers
Antenna arrays
Antenna measurements
Array antenna feed
Bridges
dielectric resonator antenna (DRA)
Dielectric resonator antennas
Dielectrics
Feeds
Gain
Microstrip antennas
planar array
Polylactic acid
Power dividers
Printers
Radio antennas
Rapid manufacturing
Resonators
standing wave
Three dimensional printing
title 3-D-Printed Dielectric Resonator Antenna Arrays Based on Standing-Wave Feeding Approach
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