5G应用边缘端口激励超材料贴片天线

P. Satarkar, R. Lohani
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引用次数: 1

摘要

微带贴片天线是一种窄带天线,通过在铜等元素的金属痕迹中蚀刻天线元件图案而制成,该元素与绝缘介质衬底结合,在衬底的另一侧形成接地面的连续金属层。电磁超材料是一种在介质基板上由不同类型结构设计而成的人工材料。在本文中,通过设计和模拟一个包含方形分裂环谐振器的单负超材料电池,进行了广泛而精细化的研究。这种超材料电池在特定频率范围内呈现负的磁导率。这些单元在微带贴片天线的设计中显示出极大的应用价值。在带地平面的微带贴片天线基片上加载方形分环谐振器,对传统贴片天线和新型贴片天线进行了仿真分析,并对其参数进行了性能比较。提出了基于边缘端口馈电超材料的矩形微带贴片天线和圆形贴片天线,设计频率为26 GHz,适用于5G应用。两种天线均设计在介电常数为2.2的RT Duroid 5880衬底上。与传统天线相比,加载超材料的矩形微带贴片天线和圆形贴片天线的带宽、增益和回波损耗等参数明显增加。比较两种天线的参数,发现矩形微带贴片天线的性能优于圆形贴片天线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Edge Port Excited Metamaterial Based Patch Antennas for 5G Application
Microstrip Patch Antenna is a narrowband antenna fabricated by etching the antenna element pattern in metal trace of elements like copper bonded to an insulating dielectric substrate with a continuous metal layer on the opposite side of the substrate which forms a ground plane. Electromagnetic Metamaterial is an artificial material that is made up of different types of structural designs on dielectric substrates. In this paper, a broad and elite investigation is being carried out by designing and simulating a single negative metamaterial cell comprising a square split ring resonator. This metamaterial cell depicts negative values of permeability for a specific range of frequencies. These cells show exceptionally great applications in the design of microstrip patch antenna. The substrate of the microstrip patch antenna with a ground plane is loaded with a square split-ring resonator, Conventional and proposed patch antennas are simulated, analyzed, and reported for performance comparison of its parameters. The proposed edge port feed metamaterial based Rectangular microstrip patch antenna and Circular patch antenna designed at 26 GHz resonance frequency useful for 5G applications. Both antennas are designed on RT Duroid 5880 Substrate with 2.2, dielectric constants. The parameters such as bandwidth, gain and return loss of metamaterial loaded rectangular microstrip patch antenna and Circular patch antenna increases considerably compared to conventional antennas. Comparing parameters of both antennas, the performance of the rectangular microstrip patch antenna is found to be better than circular patch antenna.
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