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一种小型化四陷波超宽带天线设计与研究
引用本文:南敬昌,王艺扉,高明明,卢永. 一种小型化四陷波超宽带天线设计与研究[J]. 电波科学学报, 2021, 36(4): 611-618. DOI: 10.13443/j.cjors.2020051102
作者姓名:南敬昌  王艺扉  高明明  卢永
作者单位:辽宁工程技术大学电子与信息工程学院,葫芦岛 125105
摘    要:为有效抑制WiMAX波段、国际卫星波段、X波段以及国际电信联盟(International Telecommu-nication Union,ITU)波段等窄带通信系统的干扰,设计了一款小型化四陷波超宽带(ultra wideband,UWB)天线.采用改进矩形作为辐射贴片,背板开鱼骨形凹槽,以及在天线结构上添加T形枝...

关 键 词:超宽带(UWB)天线  四陷波  半圆形凹槽  鱼骨形凹槽  T形枝节
收稿时间:2020-05-11

Design and research of a miniaturized four notch UWB antenna
NAN Jingchang,WANG Yifei,GAO Mingming,LU Yong. Design and research of a miniaturized four notch UWB antenna[J]. Chinese Journal of Radio Science, 2021, 36(4): 611-618. DOI: 10.13443/j.cjors.2020051102
Authors:NAN Jingchang  WANG Yifei  GAO Mingming  LU Yong
Affiliation:School of Electronics and Information Engineering, Liaoning Technical University, Huludao 125105, China
Abstract:In order to effectively suppress the interference of narrow-band communication systems such as WiMAX band, international satellite band, X band and the ITU band, this paper designs a miniature ultra wideband (UWB) antenna. The improved rectangle is used as the radiation patch. The semicircular groove is dug in the upper part of the rectangle and the two corners below are cut off. The long triangle is also cut on both sides of the end of the microstrip line. The fish bone groove is well modified in the middle of the rectangular ground plate to obtain the perfect ultra wideband characteristics. By digging a semi-circular groove on the radiation patch to introduce T-shaped branches, and opening an inverted U-shaped groove in the center of the radiation patch, introducing symmetrical C-shaped open branches on both sides of the feeder line and etching U-shaped narrow gaps on the feeder line, four band notch characteristics of 3.24?3.8 GHz, 4.5?4.97 GHz, 7.24?7.76 GHz and 8.0?8.54 GHz are produced, which better suppresses the interference in the notch band, shows that the antenna can work normally in the frequency band of 3.0?13.09 GHz, and the four notch baud property of the antenna also expands the application field, which is suitable for many ultra wideband communication systems.
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