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Application of Representation Theory to Dual-Mode Microwave Bandpass Filters

机译:表示理论在双模微波带通滤波器中的应用

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摘要

This paper discusses the physics behind the operation of dual-mode bandpass filters from a field theoretical point of view. It is argued that the two degenerate modes of the empty dual-mode cavity, commonly taken as the vertical and horizontal polarizations, become nonphysical when coupling and tuning elements are inserted. Instead, the original degenerate modes are rotated, or modified in a complex way, to generate two new modes whose characteristics depend on the coupling and tuning elements. It is shown that the tuning elements, as placed in existing dual-mode filter designs, act as both tuning and coupling elements. A working dual-mode filter can be designed with only “tuning” elements present. A physical representation of dual-mode filters in terms of the eigenresonances of the dual-mode cavities, with the tuning and coupling elements present, is introduced. Two fourth-order dual-mode rectangular cavity filters with the same response in the passband and its vicinity are also presented to demonstrate the similar role played by “tuning” and coupling elements in dual-mode cavities. The first filter uses only “tuning” elements, while the second is based only on “coupling” elements.
机译:本文从现场理论的角度讨论了双模带通滤波器工作背后的物理原理。有人认为,当插入耦合和调谐元件时,空双模腔的两个简并模(通常被视为垂直和水平极化)变得非物理的。取而代之的是,将原始的简并模式进行旋转或以复杂的方式进行修改,以生成两个新模式,其特征取决于耦合和调整元素。结果表明,放置在现有双模滤波器设计中的调谐元件既可以用作调谐元件,也可以用作耦合元件。可以在仅使用“调谐”元件的情况下设计工作的双模滤波器。介绍了根据双模腔的本征共振对双模滤波器的物理表示,并给出了调谐和耦合元件。还介绍了两个在通带及其附近具有相同响应的四阶双模矩形腔滤波器,以演示双模腔中“调谐”和耦合元件所起的相似作用。第一个过滤器仅使用“调整”元素,而第二个过滤器仅基于“耦合”元素。

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