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基于恒模算法(CMA)的双模天线设计及用于5G网络的宽带双极化天线

Design of dual mode antenna using CMA and broadband dual-polarized antenna for 5G networks.

作者信息

Sathishkumar N, Palanisamy SatheeshKumar, Natarajan Rajesh, Ouahada Khmaies, Hamam Habib

机构信息

Department of Electronics and Communication Engineering, KPR Institute of Engineering and Technology, Coimbatore, Tamil Nadu, 641407, India.

Department of Electronics and Communication Engineering, BMS Institute of Technology & Management, Yelahanka, Bengaluru, 560064, Karnataka, India.

出版信息

Sci Rep. 2024 Jul 5;14(1):15553. doi: 10.1038/s41598-024-66515-x.

Abstract

This article proposes a dual mode dual-polarized antenna configuration for IRNSS and fifth generation (5G) applications, operating at a frequency of 3.5 GHz based on characteristic mode analysis (CMA), and aims to provide broadband dual-polarized functionality. The original design of the antenna is a traditional patch antenna, and its dual-polarized features are determined using characteristic mode analysis. The full-wave method is used to stimulate both orthogonal modes using a 50 Ω coaxial input line at 3.5 GHz. In this design, the circular patch has been extended into an elliptical patch through a process of mode separation. The circular patch exhibits resonance at a frequency of 2.5 GHz, whereas the extended elliptical radiator demonstrates two resonance modes at 2.5 GHz and 3.5 GHz. The operational mechanism is elucidated by modal analysis and characteristic angle. This antenna operates on two different frequencies at the 2.5 GHz IRNSS band with horizontal polarization and the 3.5 GHz 5G service with vertical polarization. The maximum gain achieved with these frequency ranges is 5.31 dBi and 4.72 dBi, respectively. A ring resonator is chosen to improve the axial ratio and impedance bandwidth of the suggested prototype. The antenna's ground plane is shaped like a rectangle and features a V-shaped slot in the radiating patch. The antenna's physical footprint is 50 mm × 50 mm × 1.6 mm and an FR4 dielectric substrate serves as its foundation. Through its interaction with a PIN diode, the diode modifies the polarization of the antenna. The antenna functions as a right-handed circular polarization (RHCP), when the diode is operational. The bandwidth from 4.3 to 7.5 GHz is covered. On the other hand, it generates linear polarization (LP) between 4.2 and 5.3 GHz. The experimental antenna is evaluated and examined for its performance characteristics. The simulations are carried out utilizing the CST simulator. A prototype antenna has been manufactured and its performance has been validated against simulated findings.

摘要

本文基于特征模式分析(CMA)提出了一种用于印度区域导航卫星系统(IRNSS)和第五代(5G)应用的双模式双极化天线配置,工作频率为3.5GHz,旨在提供宽带双极化功能。该天线的原始设计是传统贴片天线,其双极化特性通过特征模式分析来确定。采用全波方法,在3.5GHz频率下使用50Ω同轴输入线激励两个正交模式。在该设计中,圆形贴片通过模式分离过程扩展为椭圆形贴片。圆形贴片在2.5GHz频率处呈现谐振,而扩展后的椭圆形辐射器在2.5GHz和3.5GHz处展示出两个谐振模式。通过模态分析和特征角阐明了其工作机制。该天线在2.5GHz的IRNSS频段以水平极化以及在3.5GHz的5G服务频段以垂直极化在两个不同频率上工作。在这些频率范围内实现的最大增益分别为5.31dBi和4.72dBi。选择环形谐振器来改善所建议原型的轴比和阻抗带宽。天线的接地平面形状为矩形,并且在辐射贴片上具有一个V形槽。天线的物理尺寸为50mm×50mm×1.6mm,以FR4介质基板为基础。通过与PIN二极管的相互作用,二极管改变天线的极化。当天线工作时,二极管使天线作为右旋圆极化(RHCP)工作,覆盖4.3至7.5GHz的带宽。另一方面,它在4.2至5.3GHz之间产生线性极化(LP)。对实验天线的性能特性进行了评估和测试。使用CST模拟器进行了仿真。制造了一个原型天线,并根据仿真结果验证了其性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e37/11226603/b35e98c870fc/41598_2024_66515_Fig1_HTML.jpg

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