Design Optimization of Reconfigurable Liquid Crystal Patch Antenna

In various fields such as the 5G antenna system and satellite communication system, there is a growing demand to develop a smart antenna with a frequency selective or beamforming function within a limited space. While antennas utilizing mechanical, electronic, and material characteristics are being...

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Bibliographic Details
Published inMaterials Vol. 14; no. 4; p. 932
Main Authors Kim, Dowon, Kim, Kitae, Kim, Hogyeong, Choi, Moonyoung, Na, Jun-Hee
Format Journal Article
LanguageEnglish
Published Switzerland MDPI 16.02.2021
MDPI AG
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Summary:In various fields such as the 5G antenna system and satellite communication system, there is a growing demand to develop a smart antenna with a frequency selective or beamforming function within a limited space. While antennas utilizing mechanical, electronic, and material characteristics are being studied, a method of having tunable frequency characteristics by applying a liquid crystal material with dielectric anisotropy to a planar patch antenna is proposed. In resonance mode, the design method for using only the minimum amount of expensive liquid crystals is systematically arranged while maximizing the amount of change in the operating frequency of the antenna by considering the electric field distribution on the surface of the patch antenna. Furthermore, to increase the dielectric anisotropy of the liquid crystal, the liquid crystal must be aligned. Simultaneously, in cases where the cell gap of the liquid crystal exceeds 100 μm, the alignment force is weakened. While compensating for this shortcoming, securing the radiation characteristics of the antenna is proposed, and simulations are performed.
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ISSN:1996-1944
1996-1944
DOI:10.3390/ma14040932