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Triple-Band Cavity Bandpass Filters

机译:三通腔带通滤波器

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摘要

This paper presents a new class of cavity-based triple-band filters employing resonators that support three operation modes. The proposed triple-band filters do not require junctions and can achieve an equivalent Chebyshev performance with fewer cavities, thus significantly reducing the footprint when compared to traditional approaches. The filter facilitates a systematic design approach starting from the coupling-matrix generation to the overall response optimization. The concept is potentially applicable to most triple-mode resonators and is demonstrated in this paper using waveguide and dielectric resonators. The first design is an inline structure employing elliptical waveguide cavities, whereas the second design is a folded structure using rectangular waveguide cavities. The third design is implemented by dielectric loaded cavity resonators. All the proposed triple-band filter designs offer high Q and allow for independent control of each frequency and coupling parameter. To verify the concept, three triple-band filter examples with different realizations are designed, manufactured, and tested to allow comparisons.
机译:本文提出了一种新型的基于腔的三频滤波器,它采用了支持三种工作模式的谐振器。所提出的三频带滤波器不需要结点,并且可以用更少的腔体实现等效的切比雪夫性能,因此与传统方法相比,显着减少了占位面积。该滤波器有助于从耦合矩阵生成到整体响应优化的系统设计方法。该概念可能适用于大多数三模谐振器,并在本文中使用波导谐振器和介电谐振器进行了演示。第一种设计是采用椭圆形波导腔的嵌入式结构,而第二种设计是采用矩形波导腔的折叠结构。第三种设计是通过装有介质的空腔谐振器实现的。所有建议的三频滤波器设计均提供高Q值,并允许独立控制每个频率和耦合参数。为了验证这一概念,设计,制造和测试了三个具有不同实现方式的三频滤波器示例,以进行比较。

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