第五代无线通信柔性基板上嵌入馈电多频带方形贴片天线

S. S. K., P. Aithal
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引用次数: 0

摘要

用途:十多年来,该天线因其紧凑、表面保形、易于与设备集成等众多优点,引起了人们对无线领域(涵盖工业应用、家庭自动化和移动通信)5G频段的极大兴趣。一般来说,天线可以被定义为一种导体,它暴露在可用于特定应用的空间中。本研究的目的是在柔性介质基板材料上设计5G应用的开槽贴片天线,使天线在设计方面更加紧凑。设计/方法/方法:最初,天线设计是根据现有方程使用理论框架进行的。微波工作室软件-计算机仿真技术(CST)被用来创建和模拟不同的天线。发现/结果:基于仿真模型,开槽贴片天线设计5有2个频段,分别为3.25 GHz,回波损耗为-17.47 dB, 5.89GHz,回波损耗为-21.37dB。而设计6在2.04 GHz时有4个谐振频段,回波损耗(RL)为-11.68 dB, 5.80GHz时,RL为-22.36 dB, 7.14 GHz时,RL为-28.71 dB, 8.83 GHz时,RL为-13.36 dB。开槽贴片天线设计5实现的最大带宽为5%,开槽贴片天线设计6实现的最大带宽为8%。而多缝贴片天线柔性基板设计7和设计8的最大实现带宽为10%。独创性/价值:在5G频段柔性基板上采用插入馈电方式设计开槽贴片和多开槽贴片天线。论文类型:基于设计的研究分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inset-fed Multiband Square Patch Antenna on Flexible substrate for Fifth-Generation Wireless Communication
Purpose: Over a decade, the antenna has sparked considerable interest in the 5G frequency band in the wireless domain (covering industrial applications, home automation and mobile communication) because of its numerous advantages like compact, conformal to surfaces, easily integrated with the devices, etc. In general, an Antenna can be defined as a conductor which is exposed to space operable for a specific application. The purpose of the study is to design the Slotted patch antenna for 5G applications on a flexible dielectric substrate material which makes the antenna compact in its design aspect. Design/Methodology/Approach: Initially, the antenna design is carried out using the theoretical framework based on the available equations. The microwave studio software - Computer Simulation Technology (CST) is used to create and model the different antennas. Findings/Result: Based on the simulated models, the slotted patch antenna design 5 has 2 bands namely: 3.25 GHz, the return loss is -17.47 dB, and 5.89GHz, the return loss is -21.37dB. Whereas design 6 has 4 resonant bands measured at 2.04 GHz, the return loss (RL) is -11.68 dB, at 5.80GHz, the RL is -22.36 dB, at 7.14 GHz, the RL is -28.71 dB and at 8.83 GHz, the RL is -13.36 dB. The maximum bandwidth achieved for slotted patch antenna design 5 is 5% and the maximum bandwidth achieved for slotted patch antenna design 6 is 8%. Whereas the design of Multi slotted patch antenna flexible substrate design 7 and design 8 has the maximum achieved bandwidth of 10 %. Originality/Value: The design of slotted patch and multi slotted patch antenna using inset feed method on a flexible substrate for 5G frequency band. Paper Type: Design based Research Analysis.
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