超宽带微带带通滤波器及其等效电路

Shita Fitria Nurjihan, Yenniwarti Rafsyam
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引用次数: 0

摘要

为了获得良好的性能,微带滤波器可以采用多种设计方法,如缺陷接地结构、开放式槽、平面边缘耦合、带接地面窗的分环谐振器等。本文采用缺陷接地结构(DGS)方法,在接地面上增加一个圆槽,设计了一种超宽带微带带通滤波器。增加圆槽是为了改善初始滤波器设计中没有圆槽时S参数(回波损耗和插入损耗)的值。在仿真过程中,通过改变滤波器元件的贴片长度、厚度、圆槽宽度等参数值进行优化。仿真结果表明,该微带带通滤波器可以通过1.4 GHz ~ 5.7 GHz的频率,带宽响应为4.3 GHz。此外,滤波分析也可以用电容和电感串联或并联形式的集总元件元件表示的等效电路来完成。仿真结果表明,等效电路具有更宽的带宽,能够通过1.2 GHz ~ 6.1 GHz的频率,带宽响应为4.9 GHz。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultra-Wideband Microstrip Bandpass Filter and Its Equivalent Circuit
Microstrip filters can be designed with various methods to obtain good performances, such as defected ground structure, open-ended slot, planar edge coupled, and split ring resonator with groundplane windowing. In this paper, the design of an ultra-wideband microstrip bandpass filter used the defected ground structure (DGS) method by adding a circular slot to the groundplane. The addition of the circular slot was carried out to improve the value of S parameter (return loss and insertion loss) from the initial filter design without a circular slot. In the simulation process, optimization was carried out by changing the value of filter component parameters such as patch length and thickness and circular slot width. The simulation results showed that the microstrip bandpass filter could pass frequencies in the range of 1.4 GHz to 5.7 GHz with the bandwidth response of 4.3 GHz. In addition, filter analysis could also be done with an equivalent circuit represented by lumped element components in the form of capacitors and inductors connected in series or parallel. The simulation results of the equivalent circuit had a wider bandwidth, which was able to pass frequencies in the range of 1.2 GHz to 6.1 GHz with a bandwidth response of 4.9 GHz.
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