Rotman lens design and optimization for 5G applications

Author:

Ershadi S. E.,Keshtkar A.,Bayat A.,Abdelrahman A. H.,Xin H.

Abstract

AbstractThe next generation of wireless networks (5G) employs directional transmission at millimeter wave (mmW) frequencies to provide higher bandwidth and faster data rates. This is achieved by applying antenna arrays with proper beam steering capabilities. Rotman lens has long been used as a lens-based beamformer in electronically scanned arrays and its efficient design is important in the overall performance of the array. Minimizing the phase error on the aperture of the antenna array is an important design criterion in the lens. In this paper, a 7 × 8 wideband Rotman lens is designed. Particle swarm optimization is applied to minimize the path length error and thereby the phase error. The optimized lens operates from 25 to 31 GHz, which covers the frequency bands proposed by the Federal Communications Commission for 5G communications. The proposed optimized lens shows a maximum phase error of <0.1°. The proposed Rotman lens is a good candidate to be integrated with wideband microstrip patch antenna arrays that are suitable for 5G mmW applications.

Publisher

Cambridge University Press (CUP)

Subject

Electrical and Electronic Engineering

Cited by 15 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A Wideband Rotman Lens Design Based on Co-Simulation Technology;2024 IEEE International Conference on Computational Electromagnetics (ICCEM);2024-04-15

2. Analysis of Rotman Lens Geometry for 5G Communication;2024 IEEE Wireless Antenna and Microwave Symposium (WAMS);2024-02-29

3. Design and fabrication of waveguide‐based graded refractive index Rotman lens with an improved insertion loss at Ka‐band;IET Microwaves, Antennas & Propagation;2024-02-22

4. Analysis of 5G Rotman beamforming lens antenna for higher beam angle and minimum phase error;Frequenz;2023-12-27

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