首页> 外文期刊>International journal of antennas and propagation >A Reconfigurable Triple-Notch-Band Antenna Integrated with Defected Microstrip Structure Band-Stop Filter for Ultra-Wideband Cognitive Radio Applications
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A Reconfigurable Triple-Notch-Band Antenna Integrated with Defected Microstrip Structure Band-Stop Filter for Ultra-Wideband Cognitive Radio Applications

机译:一种可重构的三陷波天线,集成了带缺陷的微带结构带阻滤波器,适用于超宽带认知无线电应用

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A printed reconfigurable ultra-wideband (UWB) monopole antenna with triple narrow band-notched characteristics is proposed for cognitive radio applications in this paper. The triple narrow band-notched frequencies are obtained using a defected microstrip structure (DMS) band stop filter (BSF) embedded in the microstrip feed line and an invertedπ-shaped slot etched in the rectangular radiation patch, respectively. Reconfigurable characteristics of the proposed cognitive radio antenna (CRA) are achieved by means of four ideal switches integrated on the DMS-BSF and the invertedπ-shaped slot. The proposed UWB CRA can work at eight modes by controlling switches ON and OFF. Moreover, impedance bandwidth, design procedures, and radiation patterns are presented for analysis and explanation of this antenna. The designed antenna operates over the frequency band between 3.1 GHz and 14 GHz (bandwidth of 127.5%), with three notched bands from 4.2 GHz to 6.2 GHz (38.5%), 6.6 GHz to 7.0 GHz (6%), and 12.2 GHz to 14 GHz (13.7%). The antenna is successfully simulated, fabricated, and measured. The results show that it has wide impedance bandwidth, multimodes characteristics, stable gain, and omnidirectional radiation patterns.
机译:本文提出了一种具有三重窄带凹口特性的印刷可重构超宽带(UWB)单极天线,用于认知无线电应用。使用嵌入在微带馈线中的有缺陷的微带结构(DMS)带阻滤波器(BSF)和蚀刻在矩形辐射斑片中的倒置π型缝隙,可以获得三倍的窄带陷波频率。所提出的认知无线电天线(CRA)的可重配置特性是通过DMS-BSF和倒置π型缝隙上集成的四个理想开关来实现的。通过控制开关的接通和断开,建议的UWB CRA可以在八种模式下工作。此外,还提供了阻抗带宽,设计程序和辐射方向图,用于对该天线的分析和解释。设计的天线工作在3.1 GHz和14 GHz之间的带宽(带宽为127.5%)上,三个陷波频段分别为4.2 GHz至6.2 GHz(38.5%),6.6 GHz至7.0 GHz(6%)和12.2 GHz至14 GHz(13.7%)。天线已成功进行了仿真,制造和测量。结果表明,它具有宽的阻抗带宽,多模特性,稳定的增益和全向辐射图。

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