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Compact Dual-mode Microstrip Bandpass Filter Based on Greek-cross Fractal Resonator

机译:基于希腊交叉分形谐振器的紧凑型双模微带通滤波器

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摘要

A geometrically symmetrical fractal structure is presented in this paper to provide an alternative approach for the miniaturization design of microstrip bandpass filters (BPFs). The generation process of the geometric geometry is described in detail, and a new fractal resonator called Greek-cross fractal resonator (GCFR) is produced by etching the proposed fractal configuration on the surface of the conventional dual-mode meandered loop resonator. Four microstrip BPFs based on the first four iterations GCFR are modeled and simulated. The simulation results show that with the increase of the number of iterations, the central frequency of the BPF is gradually moving towards the low frequency, which indicates that the proposed fractal resonator has the characteristic of miniaturization. In addition, the parameter optimization and surface current density distribution are also analyzed in order to better understand the performance of the BPF. Finally, a compact dual-mode BPF based on the third iteration GCFR is designed, fabricated and measured. The measurement results are in good agreement with the simulation ones.
机译:本文提出了一种几何对称的分形结构,为微带通滤波器(BPF)的小型化设计提供了另一种方法。详细描述了几何几何形状的生成过程,并通过在常规双模曲折环形谐振器的表面上蚀刻提出的分形构型,生产了一种称为希腊交叉分形谐振器(GCFR)的新分形谐振器。对基于前四个迭代GCFR的四个微带BPF进行建模和仿真。仿真结果表明,随着迭代次数的增加,BPF的中心频率逐渐向低频移动,这表明所提出的分形谐振器具有小型化的特点。此外,还分析了参数优化和表面电流密度分布,以便更好地了解BPF的性能。最后,设计,制造和测量了基于第三次迭代GCFR的紧凑型双模BPF。测量结果与仿真结果吻合良好。

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