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Novel Coupling Schemes for Microwave Resonator Filters

机译:微波谐振器滤波器的新型耦合方案

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摘要

This paper introduces novel coupling schemes for microwave resonator filters. It is shown that higher order filter characteristics can be obtained from lower order sections, which are connected in parallel between the source and load, by proper superposition of the individual lower order responses. This property can be used in modular filter design by focusing on separate sections of the filter one at a time. In addition, some of these coupling schemes exhibit zero-shifting properties, whereby transmission zeros can be shifted from one side of the passband to the other by simply changing the resonant frequencies of the resonators while keeping all the coupling coefficients unchanged. Several novel filter designs of different kinds (microstrip, planar waveguide cavity, and dual-mode types) are introduced to prove the new method and to give an idea of the extended design possibilities. Good agreement between measured, computed, and synthesized results is demonstrated.
机译:本文介绍了微波谐振滤波器的新型耦合方案。结果表明,通过对各个低阶响应进行适当叠加,可以从源极和负载之间并联的低阶部分获得高阶滤波器特性。此属性可用于模块化过滤器设计,一次聚焦一个过滤器的单独部分。此外,其中一些耦合方案还具有零位移特性,即只需改变谐振器的谐振频率,同时保持所有耦合系数不变,就可以将传输零点从通带的一侧移位到另一侧。介绍了几种不同种类的新型滤波器设计(微带、平面波导腔和双模类型),以证明新方法并给出扩展设计可能性的想法。测量、计算和合成结果之间具有良好的一致性。

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