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New π–T generalised metamaterial negative refractive index transmission line for a compact coplanar waveguide triple band pass filter applications

机译:用于紧凑共面波导三带通滤波器应用的新型π–T广义超材料负折射率传输线

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摘要

This study presents, for the first time, a novel <0; – T generalised negative refractive index (NRI) transmission line (TL) configuration. It is innovated for increasing the possible passbands in designing microwave components. It is proved that the proposed transmission line can introduce up to seven passbands for completely unbalanced transmission line condition. The detailed mathematical analysis of that configuration based on the periodic network analysis and equivalent circuit model is introduced. As an application for the novel <0; – T generalised NRI TL configuration, a new compact triple band coplanar waveguide (CPW) metamaterial filter is introduced. The proposed triple bands CPW filter design steps are introduced and its performance is validated using equivalent circuit model simulation, electromagnetic full wave simulation and experimental measurements. Good agreements between the circuit modelling, electromagnetic full wave simulation and practical measurement results are achieved. All the results confirm that the proposed filter has triple passbands from 900 to 960 MHz, 1.4 to 1.48 GHz and 2.4 to 2.45 GHz. Moreover the filter size is compact whose length is only 12.1% ;B;g at first passbands, 18.2 ;B;g,/sub>% at second passbands and 31.7 /spl lamvda/g% at third passbands.
机译:这项研究首次提出了小说<0; – T广义负折射率(NRI)传输线(TL)配置。在设计微波组件时进行了创新,以增加可能的通带。实践证明,对于完全不平衡的传输线情况,该传输线最多可以引入七个通带。介绍了基于周期网络分析和等效电路模型对该配置进行的详细数学分析。作为小说<0的应用; – T广义NRI TL配置,引入了新的紧凑型三频共面波导(CPW)超材料滤波器。介绍了拟议的三波段CPW滤波器设计步骤,并使用等效电路模型仿真,电磁全波仿真和实验测量来验证其性能。在电路建模,电磁全波仿真和实际测量结果之间达成了良好的协议。所有结果均证实,所提出的滤波器具有900至960 MHz,1.4至1.48 GHz和2.4至2.45 GHz的三通带。此外,滤波器尺寸紧凑,在第一通带处的长度仅为12.1%; B; g ,在第二通带处的长度仅为18.2; B; g // sub>%和31.7 / spl lamvda / < sub> g %在第三通带。

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