A Review of 3D Printed Gradient Refractive Index Lens Antennas

Обзор линзовых антенн с градиентным показателем преломления, напечатанных на 3D-принтере
Irina Munina, Igor Grigoriev, Garret E. O’Donnell, Daniel Trimble
2023-01-01

3D printingadditive manufacturingbeam steeringgradient refractive index lens antennasmicrowave to sub-THz and THz
Gradient index lens antennas find their application in modern wireless communication including radar systems, satellite communication, etc. They can ensure highly directional beamforming, support multibeam operations and beam steering capabilities within a wide angle of view. The development of 3D printing technologies enables the implementation of complex gradient refractive index distribution with high accuracy as well as obtaining a significant reduction in the production time and cost. This paper presents the state of the art in gradient refractive index lens antenna design using different types of additive manufacturing processes. It shows the applicability of 3D printing to a wide range of operational frequency bands from microwave to sub-THz and THz.
1
3D printed GRIN lens antennas are applicable across a wide range of frequencies, from microwave to sub-THz and THz bands.
2
3D printing technologies permit accurate implementation of complex GRIN refractive index distributions in lens antennas.
3
Additive manufacturing significantly reduces production time and cost for GRIN lens antennas.
4
Gradient index (GRIN) lens antennas enable highly directional beamforming, multibeam operation, and wide-angle beam steering for wireless and radar systems.
5
The paper surveys state-of-the-art GRIN lens antenna designs realized via different additive manufacturing processes.

3D-printed gradient refractive index lens antennas

Design, fabrication (via various additive manufacturing processes), and applicability/performance of gradient refractive index lens antennas across microwave to sub-THz and THz frequency bands including beamforming, multibeam and beam-steering capabilities

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Publication Date
2023-01-01
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Authors
Irina Munina
Igor Grigoriev
Garret E. O’Donnell
Daniel Trimble
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