Liquid Crystal-Based Reconfigurable Antenna for 5G Millimeter-Wave

Author:

Chen Peng1,Wang Dan1,Wang Lihua2,Liu Lu1,Gan Zongsheng1

Affiliation:

1. Jimei University

2. Harbin Engineering University

Abstract

Abstract This paper proposed a frequency reconfigurable antenna that utilizes a multilayer structure of liquid crystal (LC) material. This antenna design incorporates a three-layer stacked structure to create an LC-injected cavity. The inverted microstrip line structure is designed to be in contact with the LC, serving as both a radiating element and a bias electrode. A parasitic patch is placed at the top of the antenna to enhance bandwidth. To prevent interference with DC and RF sources, a bias tee is integrated into the microstrip line input. Experimental results demonstrate that the proposed antenna exhibits excellent impedance matching and stable radiation patterns within the operational frequency range. By comparing the simulated performance of the existing LC antenna with our proposed design, the bandwidth is tripled at a center frequency of 30.3 GHz. In addition, the effective area of the proposed reconfigurable antenna (154 mm2) is 24.6% of the area of the previous reconfigurable antenna (625 mm2).

Publisher

Research Square Platform LLC

Reference18 articles.

1. Liquid-Crystal-Embedded Aperture-Coupled Microstrip Antenna for 5G Applications;Jaehoon K;IEEE Antennas Wirel. Propag. Lett.,2020

2. Mao. A novel tunable microstrip patch antenna using liquid crystal;Dai JW;Progress In Electromagnetics Research C,2017

3. Microfluidically frequency-reconfigurable compact self-quadruplexing tunable antenna with high isolation based on substrate integrated waveguide;Rusan KB;Scientific Reporters,2024

4. Reconfigurable planar monopole antenna for fifth-generation mobile communication system;Chen P;Applied Computational Electromagnetics Society Journal,2021

5. Polarization- and Frequency-Reconfigurable Patch Antenna Using Gravity-Controlled Liquid Metal;Li L;IEEE Trans. Circuits Syst. II,2022

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