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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Novel Compact Microstrip Stepped-Impedance Resonator Using Computational Approach and Application to Dual-Band Bandpass Filters
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Novel Compact Microstrip Stepped-Impedance Resonator Using Computational Approach and Application to Dual-Band Bandpass Filters

机译:计算方法的新型紧凑型微带步进阻抗谐振器及其在双频带通滤波器中的应用

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摘要

This paper discusses a novel multi-stub-loaded stepped-impedance resonator (MSLSIR) with a specific feeding structure. The fundamental and higher order modes of resonant frequencies of the stepped-impedance resonator are key parameters involved in the design of a dual-band bandpass filter (DBPF). However, since resonant frequencies are dependent on each other, the overall structure is not compact. The proposed MSLSIR has the advantage of flexible control over one resonant frequency while the other frequency is fixed. Furthermore, the utilization of isosceles right-angled triangular (IRT) and short-circuited stubs as loaded elements improves size miniaturization of DBPF when a low permittivity substrate is used. The analysis of the IRT stub is based on the coupling impedance formulas derived by integration of the associated Green's function. As an application, a DBPF is presented, which operates at 3.5 and 5.2GHz, corresponding to the WiMAX and WLAN applications, respectively. In addition, a good stopband rejection, up to 3f(1), is obtained using the defected ground structure technique. An overall good agreement between the calculated, simulated and measured results is observed, thereby confirming the effectiveness of the proposed method.
机译:本文讨论了一种具有特定馈电结构的新型多管负载步进阻抗谐振器(MSLSIR)。步进阻抗谐振器的谐振频率的基本模式和高阶模式是双带通滤波器(DBPF)设计中涉及的关键参数。但是,由于谐振频率相互依赖,所以整体结构并不紧凑。所提出的MSLSIR具有在一个谐振频率上灵活控制而另一频率固定的优点。此外,当使用低介电常数基板时,利用等腰直角三角形(IRT)和短路短截线作为负载元素可提高DBPF的尺寸小型化。 IRT存根的分析基于通过关联格林函数的积分得出的耦合阻抗公式。作为一种应用,提出了一种DBPF,其工作频率为3.5 GHz和5.2 GHz,分别对应于WiMAX和WLAN应用。此外,使用有缺陷的接地结构技术可获得高达3f(1)的良好阻带抑制性能。观察到在计算,模拟和测量结果之间的总体良好一致性,从而证实了所提出方法的有效性。

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