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A quasi-elliptic Band Pass Filter designed using quadruplet metamaterial resonators for operation in the 3 GHz (5G) Band

机译:使用四元超材料谐振器设计的准椭圆带通滤波器,用于在3 GHz(5G)带中的操作

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In this paper, we investigate the pertinent characteristics of a metamaterial square spiral resonator in realizing a compact bandpass filter operating in the 3.5-3.7 GHz 5G band. The resonators designed by analytical modelling and full wave simulations are incorporated as broad side coupled structures between two parallel input and output microstrip lines. By incorporating radial stubs in the microstrip line, the stop band performance of the filter is improved approximately up to three times the operating frequency. It exhibits competitive attenuation slopes of 79.4 and 67.46 dB/GHz in the lower and upper pass band edges respectively. Electrical size of the proposed filter is just 0.44 × 0.44 $lambda _g^2$. Operating frequency of the filter can be easily tuned by redesigning the resonators with the design guidelines presented in this article. The proposed filter uses no grounded structures, vias, defected ground or multilayer structures, and hence can be easily fabricated and integrated to microwave circuitry.
机译:在本文中,我们研究了超模螺旋谐振器的相关特性,实现了在3.5-3.7 GHz 5G带中操作的紧凑带通滤波器。通过分析建模和全波模拟设计的谐振器并入到两个平行输入和输出微带线之间的宽侧耦合结构。通过在微带线中纳入径向短管,滤波器的止动频带性能大约高达工作频率的三倍。它分别在下部和上通带边缘中显示出79.4和67.46 dB / GHz的竞争性衰减斜率。所提出的滤波器的电尺寸仅为0.44×0.44 $ lambda _g ^ 2 $。通过重新设计谐振器,可以轻松调整滤波器的工作频率,并通过本文中提供的设计指南。所提出的过滤器不使用接地结构,通孔,缺陷的地面或多层结构,因此可以容易地制造和集成到微波电路。

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