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2024-07-16
Design of 5G Multi-Frequency Antenna Based on Multi-Objective Sequential Domain Patching
By
Progress In Electromagnetics Research C, Vol. 145, 53-61, 2024
Abstract
This paper introduces a 5G multi-frequency antenna design method based on multi-objective sequential domain patching. By etching helical metamaterials on radiation patches and loading asymmetric electric-inductive-capacitive metamaterials on the transmission line side, the antenna structure is designed and optimized using electromagnetic simulation software, HFSS, and MATLAB. The resulting multi-frequency antenna operates across multiple frequency bands: n1, n41, 3.5G, and 4.9G. To ensure antenna performance and radiation efficiency, the antenna multi-frequency bands are precisely controlled. The experimental results show that the error between each operating frequency band and target frequency bands of the antenna is within 7.2%. Compared with conventional antenna design methods, the use of metamaterials and intelligent algorithms to optimize the structural parameters and loading positions of metamaterials can improve antenna performance while shortening the design cycle. Overall, this research offers novel insights into the design of 5G high-performance antennas.
Citation
Wenjian Zhu, Jiayi Chen, Panshi Hu, Zhi Song, and Yanbing Xue, "Design of 5G Multi-Frequency Antenna Based on Multi-Objective Sequential Domain Patching," Progress In Electromagnetics Research C, Vol. 145, 53-61, 2024.
doi:10.2528/PIERC24060505
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