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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Compact Narrowband Filtering Rat-Race Coupler Using Quad-Mode Dielectric Resonator
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Compact Narrowband Filtering Rat-Race Coupler Using Quad-Mode Dielectric Resonator

机译:使用四模介电谐振器的紧凑型窄带滤波鼠型耦合器

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摘要

In this paper, we propose a method for designing the narrowband filtering rat-race couplers using the quad-mode dielectric resonator (DR) for the first time. The filtering rat-race couplers are designed in single-cavity configuration with one quad-mode DR and four feeding probes, featuring compact size. Based on the investigation on resonant frequencies of a rectangular DR, a quad-mode DR is first constructed. Electromagnetic (EM) field distributions at two resonant mode pairs are studied for guiding the filtering rat-race DR coupler realization. The desired 0° and 180° phase differences of the rat-race coupler are realized by the inherent in-phase and out-of-phase EM-fields of the DR. By properly arranging the four feeding probes, the single-cavity configuration is designed to fulfill the transmission characteristics of a rat-race coupler topology, such as the magnitude and phase properties. The detailed design method is presented. For demonstration, a filtering rat-race coupler based on the rectangular DR is fabricated and measured, showing excellent performance of filtering responses, amplitude balance, as well as the 0° and 180° phase differences. Moreover, the other filtering rat-race coupler is implemented by using a cylindrical DR with an improvedn$Q$n-factor. Comparison with other reported filtering couplers indicates that proposed designs exhibit the advantages of compact size, highn$Q$n-factor, and good filtering responses.
机译:在本文中,我们首次提出了一种使用四模式介电共振器(DR)设计窄带滤波鼠-种族耦合器的方法。滤波鼠种族耦合器设计为单腔配置,具有一个四模DR和四个馈电探头,尺寸紧凑。基于对矩形DR谐振频率的研究,首先构造了四模DR。研究了两个谐振模式对的电磁场分布,以指导滤波鼠-种族DR耦合器的实现。通过DR固有的同相和异相EM场可实现所需的鼠类耦合器0°和180°相差。通过适当地布置四个馈电探针,单腔配置可满足老鼠-种族耦合器拓扑的传输特性,例如幅度和相位特性。介绍了详细的设计方法。为了演示,制造并测量了基于矩形DR的滤波鼠-种族耦合器,该滤波器显示出出色的滤波响应,幅度平衡以及0°和180°相位差的性能。此外,另一个过滤大鼠种族耦合器是通过使用具有改进的n $ Q $ n因子。与其他已报道的滤波耦合器的比较表明,所提出的设计具有体积小,高度高的优点。 $ Q $ n因子,并具有良好的过滤响应。

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