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A simple frequency selective surface structure for performance improvement of ultra-wideband antenna in frequency and time domains

机译:用于频率和时域的超宽带天线性能改进的简单频率选择性表面结构

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This article demonstrates a new type of annular ring shaped cylindrical dielectric resonator (ARCDR) loaded printed ultra-wideband (UWB) antenna which is further loaded with a new type of two-layer UWB frequency selective surface (FSS) structure. The proposed FSS helps to improve the peak gain of the standalone hybrid antenna significantly (about 4.45 dB). The proposed FSS loaded hybrid antenna provides measured impedance bandwidth (IBW) and measured peak gain about 115.5% (S_(11) ≤ -10 dB, 3.75 to 14 GHz) and 10.3 dBi respectively. The top layer of FSS structure employs a square loop configuration integrated with “+” sign, staged in 45° angle. Bottom layer of FSS consists of a square loop. The standalone proposed FSS structure also provides large transmission (S_(21) ≤ -10 dB, 108%, measured) bandwidth (BW) from 3.5 to 11 .75 GHz. The behavior of the proposed UWB antenna geometry has been studied in both frequency and time domains. The newly proposed FSS structure and integrated antenna have been fabricated and there is a close agreement between the simulated and the measured performances.
机译:本文演示了一种新型环形环形圆柱形介质谐振器(ArcDR)负载的印刷超宽带(UWB)天线,其进一步装载了一种新型的双层UWB频率选择表面(FSS)结构。所提出的FSS有助于显着提高独立杂交天线的峰值增益(约4.45dB)。所提出的FSS加载的混合天线提供测量的阻抗带宽(IBW),并分别测量了峰值增益约115.5%(S_(11)≤-10dB,3.75至14GHz)和10.3 dBi。 FSS结构的顶层采用平方环形配置与“+”标志集成,在45°角上分阶段。 FSS的底层由一个方形循环组成。独立提出的FSS结构还提供3.5到11 .75 GHz的大传输(S_(21)≤-10dB,108%,测量)带宽(BW)。已经在频率和时间域中研究了所提出的UWB天线几何形状的行为。已经制造了新提出的FSS结构和集成天线,并且模拟和测量的性能之间存在密切一致。

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