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首页> 外文期刊>International Journal of Engineering and Technology >Design of Integrated Triple Band-notched for Ultra-wideband Microstrip Antenna
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Design of Integrated Triple Band-notched for Ultra-wideband Microstrip Antenna

机译:超宽带微带天线集成三频陷波设计

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Ultra-wideband (UWB) is one of the recent topics that received a great concern from academia and industry. However, UWB found many difficulties to be standardized due to the overlay working that made UWB an important potential interference source to many licensed and unlicensed spectrum throughout the band 3.1-to-10.6 GHz. This make many industries worried about deploying and standardizing this promising technology. Many techniques have been introduced by academia a friendly UWB design that can mitigate interference. One of these technologies recently proposed is band-notched technique. In this paper we propose a compact ultra-wideband microstrip antenna with triple bandnotched 5.32 GHz, 8.45 GHz and 10.83 GHz. The proposed antenna consists of a rectangular patch with a partial ground plane that is fed by 50 O microstrip line. A band-stop function is created by inserting overlapped two u-shape slots on the radiator patch, added additional patch to ground plane side and slit in truncate ground plane. The proposed antenna is simulated in both the frequency domain and time domain. The achieved results show that the antenna performance has good impedance matching and stably performs omni-directional pattern in (x, z) plane over a bandwidth of 3.1 to 10.6 GHz. The proposed antenna could potentially minimize frequency interference from many underlying technologies i.e. WLAN, WiMAX and Aeronautical mobile bands.
机译:超宽带(UWB)是最近引起学术界和工业界高度关注的主题之一。但是,由于覆盖工作使UWB成为3.1至10.6 GHz整个频带内许多许可和未许可频谱的重要潜在干扰源,因此UWB发现许多标准化困难。这使许多行业担心部署和标准化这项有前途的技术。学术界已经引入了许多技术,一种可以减轻干扰的友好的UWB设计。最近提出的这些技术之一是带隙技术。在本文中,我们提出了一种紧凑的超宽带微带天线,该天线具有5.32 GHz,8.45 GHz和10.83 GHz三带凹口。拟议的天线由一个矩形贴片组成,该贴片的局部接地平面由50 O微带线馈电。通过在散热器贴片上插入重叠的两个U形槽,在接地平面侧添加附加的贴片并在截断的接地平面上切开来创建带阻功能。所提出的天线在频域和时域中都进行了仿真。获得的结果表明,天线性能具有良好的阻抗匹配,并且在3.1至10.6 GHz的带宽上稳定地在(x,z)平面上执行全向模式。所提出的天线可以潜在地最小化来自许多基础技术即WLAN,WiMAX和航空移动频带的频率干扰。

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