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首页> 外文期刊>Microwave and Wireless Components Letters, IEEE >Investigation in Open Circuited Metal Lines Embedded in Defected Ground Structure and Its Applications to UWB Filters
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Investigation in Open Circuited Metal Lines Embedded in Defected Ground Structure and Its Applications to UWB Filters

机译:埋入有缺陷地面结构的开路金属线的研究及其在超宽带滤波器中的应用

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摘要

A novel method for notch implementation in ultra- wideband (UWB) bandpass filter (BPF) using open circuited metal lines embedded in a defected ground structure (DGS) is proposed. Distinct from traditional notch implementation, the proposed method uses the additional metal lines with half waveguide length embedded in defected ground structure to produce additional notch band behavior based on the DGS bandpass behavior. Furthermore, the equivalent circuit model of the proposed UWB BPF with notch implementation is established for explaining the circuit behaviors more explicitly. In this way, the proposed circuit has a very small size, only amounting to 0.41 by 0.22 guided wavelength at the center frequency of 6.85 GHz. The experimental filter has a notchband frequency of 5.5 GHz, with two observable attenuation poles at 1.65 and 11.36 GHz, respectively. The measured BPF insertion loss is less than 1.0 dB throughout the passband of 3.1 to 10.6 GHz, and the variation of group delay is less than 0.2 ns in this band, except for the notched band.
机译:提出了一种新方法,用于在超宽带(UWB)带通滤波器(BPF)中使用嵌入缺陷接地结构(DGS)中的开路金属线进行陷波实现。与传统的陷波实施方式不同,该方法使用嵌入缺陷接地结构中的具有一半波导长度的附加金属线,以基于DGS带通行为产生其他陷波带行为。此外,建立了采用陷波实现的拟议UWB BPF的等效电路模型,以更明确地说明电路行为。以此方式,所提出的电路具有非常小的尺寸,在6.85GHz的中心频率处仅等于0.41乘以0.22的引导波长。实验滤波器的陷波频率为5.5 GHz,两个可观察到的衰减极点分别为1.65 GHz和11.36 GHz。在3.1至10.6 GHz的整个通带中,测得的BPF插入损耗均小于1.0 dB,在该频带中,除陷波频带外,群时延的变化均小于0.2 ns。

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