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System modelling and synthesis of stepped impedance resonators and filters

机译:步进阻抗谐振器和滤波器的系统建模和综合

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摘要

This study presents system-based models of stepped impedance resonators (SIRs) based on the singularity expansion method. Analytical expressions of the transfer function and the impulse response for two types of dual-band step resonators are derived (open-circuited lambda/2 and short-circuited lambda/4) for general impedance ratio (K). The accurate physical poles of the structures are acquired using a pole-energy-based refined matrix pencil scheme. Then, the frequency domain expression is used to develop a precise equivalent lumped element circuit model for the dual-band SIRs. Based on that, a direct pole-zero placement synthesis method is applied to design a three-stage dual band-pass filter. Very good matching between the transfer function of the system model and the frequency response data of the synthesised SIR filter is observed. The explored system-based modelling and synthesis procedures can be generalised systematically to design more complex filter structures.
机译:这项研究提出了基于奇异扩展方法的基于系统的步进阻抗谐振器(SIR)模型。对于一般的阻抗比(K),推导了两种类型的双带阶跃谐振器的传递函数和脉冲响应的解析表达式(开路λ/ 2和短路λ/ 4)。结构的精确物理极点是使用基于极点能量的精炼矩阵笔方案获取的。然后,使用频域表达式为双频SIR建立精确的等效集总元件电路模型。在此基础上,采用零极点直接放置合成方法设计了三级双带通滤波器。观察到系统模型的传递函数与合成SIR滤波器的频率响应数据之间的匹配非常好。所探索的基于系统的建模和综合过程可以系统地推广,以设计更复杂的滤波器结构。

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