一种新型的超宽带混合分形天线设计

Rafael A. Lituma-Guartan, Josue B. Benavides-Aucapiña, Danilo F. Poveda-Pulla, L. F. Guerrero-Vásquez, Paul A. Chasi-Pesántez
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引用次数: 7

摘要

本文将介绍Chakana、“安第斯十字”或“印卡十字”形状天线的最新设计,并对其进行细致的分析。设计的基础结构是平面单极子,由于其主要特性小型化、可操作性、自相似性和空间填充性,它伴随着与分形几何概念相关的不同修改。利用Koch分形在地平面的二次迭代和Sierpinski在贴片中的二次迭代,可以通过获取联邦通信委员会(FCC)指定的3.1至10.6 GHz范围内的反射来改善超宽带(UWB)特性。为了改善高频反射,采用了地平面陷波;此外,为了抑制IEEE 802.11A、WLAN-HIPERLAN/2和工业、科学和医疗频段(ISM频段)在5.15 ~ 5.82 GHz之间的频段,在贴片上实现了h形陷波滤波器。该分形天线的优化尺寸为30mmx33mm,安装在介电常数为$\varepsilon r=4.4$、厚度为h=1.5、损耗正切为(j= 0)的FR4衬底上。02,在除ISM拒绝频率外的整个频率范围内,获得3.25 ~ 11.36 GHz的带宽,驻波比<2。此外,有效长度约为23.14 mm的h形陷波滤波器位于距离馈线约4 mm处,以确保在5.41 GHz中心频率下的最佳抑制为- 4.85 dB。因此,在结合Koch和Sierpinski提出的分形几何的基础上,提出了一种新的用于UWB应用的混合分形天线设计,该天线具有几乎全向的辐射方向图,在整个UWB范围内具有足够的50阻抗和小于- 10dB的良好回波损耗。
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A Novel Hybrid Fractal Antenna Design for Ultra-Wideband Application
In this article, the up-to-date design of an antenna in the shape of Chakana, “Andes Cross” or “Inka Cross” will be presented and meticulously analyzed. The design base-structure is a planar monopole that goes along with different modifications related to fractal geometry concepts due to its main properties miniaturization, operability, self-similarity, and space-filling. The utilization of the second iteration of Koch fractal in the ground plane and Sierpinski second iteration in the patch allows an improvement of the Ultra-Wideband (UWB)characteristics by acquiring reflection in all of the 3.1 to 10.6 GHz range designated by the Federal Communications Commission (FCC). In order to improve the reflection present in high frequencies a ground-plane Notch is used; furthermore, so as to reject the frequency band considered for IEEE 802.11A, WLAN-HIPERLAN/2 and the Industrial, Scientific and Medical band (ISM band)located between 5.15 and 5.82 GHz, the implementation of an H-shaped Notch filter on the patch is carried out. The dimensions optimized for this fractal antenna are 30mmx33mm, mounted on an FR4 substrate with dielectric constant $\varepsilon r=4.4$, a thickness of h=1.5 and a tangent of losses of (j=O.02, obtaining a bandwidth of 3.25 to 11.36 GHz with a VSWR<2 over the entire frequency range except for the rejected frequencies for ISM. Also, the H-Shaped Notch filter with an effective length of approximately 23.14 mm is positioned around of 4 mm from the feed line to ensure an optimal rejection of −4.85 dB at the center frequency of 5.41 GHz. Therefore, based on the combination of the fractal geometries Koch and Sierpinski proposed, a new Hybrid Fractal Antenna Design for UWB application with a nearly omnidirectional radiation pattern, adequate 50 impedance and good return loss less than −10dB over the entire UWB range is presented.
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