用于不确定应用的Wi-Fi和无线电高度计的多槽分形结构天线

L. Devi, C. Subbarao, Boppana Swathi Lakshmi, T. Sushma
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引用次数: 0

摘要

多槽分形天线设计确定了天线的通信效率和多功能活动。未来的智能芯片应用需要高速小型通信设备,因此研究人员已经采用了新的和创造性的天线设计。天线是通信系统的关键部件,用于提高通信参数,如增益、效率和带宽。由于现代天线的高带宽和增益平衡设计非常困难,因此需要一种自适应天线阵列芯片的设计。本研究实现了一种分形几何设计的同轴馈电天线,用于Wi-Fi和无线电高度计。在不确定应用中,采用了辐射结构中多槽的分形几何。根据良好的阻抗匹配条件(50欧姆)选择了同轴馈电位置。上述天线在FR4基板上的整体尺寸约为50X50X1.6 mm,本文对基板材料的变化进行了性能特性分析。天线发射双频谐振频率,FR4衬底材料谐振在3.1 GHz和4.3 GHz,谐振频带随衬底变化而变化。该天线在安立VNA工具上进行了样机设计,并进行了对比分析,结果表明该天线的驻波比提高了12%,反射系数提高了9.4%,3d增益提高了6.2%,表面电流提高了9.3%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiple Slot Fractal Structured Antenna for Wi-Fi and Radio Altimeter for uncertain Applications
A multiple slot fractal antenna design has been determined communication efficiency and its multi-function activities.  High-speed small communication devices have been required for future smart chip applications, so that researchers have been employed new and creative antenna design. Antennas are key part in communication systems, those are used to improve communication parameters like gain, efficiency, and bandwidth. Consistently, modern antennas design with high bandwidth and gain balancing is very difficult, therefore an adaptive antenna array chip design is required. In this research work a coaxial fed antenna with fractal geometry design has been implemented for Wi-Fi and Radio altimeter application. The fractal geometry has been taken with multiple numbers of slots in the radiating structure for uncertain applications. The coaxial feeding location has been selected based on the good impedance matching condition (50 Ohms). The overall dimension mentioned for antenna are approximately 50X50X1.6 mm on FR4 substrate and performance characteristic analysis is performed with change in substrate material presented in this work. Dual-band resonant frequency is being emitted by the antenna with resonance at 3.1 and 4.3 GHz for FR4 substrate material and change in the resonant bands is obtained with change in substrate. The proposed Antenna is prototyped on Anritsu VNA tool and presented the comparative analysis like VSWR 12%, reflection coefficient 9.4%,3D-Gain 6.2% and surface current 9.3% had been improved.
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