Lightweight 3D-Printed Fractal Gradient-Index Lens Antenna with Stable Gain Performance

Citations

WEB OF SCIENCE

5
Citations

SCOPUS

5

초록

This paper proposes a millimeter-wave lens antenna using 3-dimensional (3D) printing technology to reduce weight and provide stable gain performance. The antenna consists of a four-layer cylindrical gradient-index (GRIN) lens fed by a wideband Yagi antenna. We designed a fractal cell geometry to achieve the desired effective permittivity for a GRIN lens. Among different candidates, the honeycomb structure is chosen to provide high mechanical strength with light weight, low dielectric loss, and lens dispersion for a lens antenna. Therefore, the measured peak gain was relatively flat at 16.86 ± 0.5 dBi within 25−31.5 GHz, corresponding to 1 dB gain bandwidth = 23%. The proposed 3D-printed GRIN lens is cost-effective, with rapid and easy manufacturing.

키워드

fractal unit cell; lens antenna; millimeter-wave antenna; three-dimensional printing; Yagi–Uda antenna; WAVE; DESIGN; ARRAY; COMPACT
제목
Lightweight 3D-Printed Fractal Gradient-Index Lens Antenna with Stable Gain Performance
저자
Kim, Y.; Pham, D.A.; Phon, R.; Lim, Sungjoon
DOI
10.3390/fractalfract6100551
발행일
2022-10
유형
Article
저널명
Fractal and Fractional
권
6
호
10

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