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Curved Frequency-Selective Surface on Hemispherical Dome for Wave Bandpass Filters
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Title
Curved Frequency-Selective Surface on Hemispherical Dome for Wave Bandpass Filters
Issued Date
2022-11
Citation
Kim, Jiyeon. (2022-11). Curved Frequency-Selective Surface on Hemispherical Dome for Wave Bandpass Filters. Applied Science and Convergence Technology, 31(6), 137–140. doi: 10.5757/ASCT.2022.31.6.137
Type
Article
Author Keywords
Curved frequency-selective surfaceHemispherical domeFinite-difference time-domain methodsBandpass filter
Keywords
FSS
ISSN
1225-8822
Abstract
Frequency-selective surfaces (FSSs) are periodically arranged lattice structures on surfaces used as wave filters for electromagnetic radiation. They are applied in practice to radomes and antennas. Here, we theoretically analyzed hemispherical FSSs using the finite-difference time-domain method. The implementation of metal patch and hole array elements was demonstrated for different applications, such as bandpass or bandstop, in the frequency range of 5–25 GHz. Furthermore, the tunability of the operating frequencies for the bandpass characteristics was confirmed by controlling the periodicity and diameter of the elements. We also achieved a high selectivity at the desired frequencies to transmit and reflect electromagnetic radiation by varying the period, diameter, and radius of curvature. These results can advance theoretical modeling methods for curved FSS structures and functional wave filtering performance using hemispherical dome substrates. © 2022, Korean Vacuum Society. All rights reserved.
URI
http://hdl.handle.net/20.500.11750/17316
DOI
10.5757/ASCT.2022.31.6.137
Publisher
한국진공학회
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조창희
Cho, Chang-Hee조창희

Department of Physics and Chemistry

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