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首页> 外文期刊>International journal of RF and microwave computer-aided engineering >Accurate Circuit Models of CPW Coupling Elements for the Design of Compact Quarter-Wavelength Band-Pass Filters
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Accurate Circuit Models of CPW Coupling Elements for the Design of Compact Quarter-Wavelength Band-Pass Filters

机译:紧凑型四分之一波长带通滤波器设计中CPW耦合元件的精确电路模型

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摘要

Accurate equivalent-circuit models of several types of coplanar waveguide (CPW) coupling elements are presented and their parameters are derived by employing the so-called short-open calibration (SOC) technique into the full-wave method of moments (MoM). Our brief description is firstly made on the formulation of this MoM-SOC for modeling a generalized two-port CPW discontinuity in terms of its circuit network, that is, the 2- or Y-matrix. Afterwards, three sets of J- or K-inverter parameters versus frequency are extracted and obtained in order to demonstrate the comparative coupling degree of lumped-capacitive and inductive gap-coupling, as well as distributed overlapped-coupling, structures. Next, these coupling elements are utilized together in the design of compact quarter-wavelength CPW band-pass filters via a simple cascaded network topology. Our optimized results are reasonably validated by ADS simulation and both exhibit good passband behavior with broadened bandwidth of more than 20% at 5.8 GHz and an ultra-broad upper stop-band of 6.4 to 15.9 GHz.
机译:提出了几种类型的共面波导(CPW)耦合元件的精确等效电路模型,并通过将所谓的短开校准(SOC)技术应用到全波矩量法(MoM)中来推导了它们的参数。首先,我们将根据此MoM-SOC的公式进行简要描述,以根据其电路网络(即2矩阵或Y矩阵)对广义的两端口CPW不连续性进行建模。然后,提取并获得三组J或K逆变器参数与频率的关系,以证明集总电容和电感间隙耦合以及分布的重叠耦合结构的比较耦合程度。接下来,这些耦合元件通过简单的级联网络拓扑结构一起用于紧凑型四分之一波长CPW带通滤波器的设计中。我们的优化结果通过ADS仿真得到了合理验证,并且都表现出良好的通带性能,在5.8 GHz时的带宽扩展了20%以上,在6.4至15.9 GHz的超宽上限带中也是如此。

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