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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Three-Way Multiple-Mode Cavity Filtering Crossover for Narrowband and Broadband Applications
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Three-Way Multiple-Mode Cavity Filtering Crossover for Narrowband and Broadband Applications

机译:适用于窄带和宽带应用的三路多模腔滤波分频器

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摘要

In this paper, the design of a cavity crossover with three intersecting channels is presented. The three fundamental modes of a cavity resonator, namely, TE011, TE101, and TM110 modes, are adopted to resonate at each of three channels, respectively. Due to the modal orthogonality of these fundamental modes, high isolation among three channels can be achieved. Two kinds of crossovers, for narrowband and broadband applications, are presented. For the narrowband case, the proposed crossover resonates at 2.91 GHz with the fractional bandwidth of 1.4%. For the broadband case, the proposed crossover resonates at 3 GHz with the fractional bandwidth of 24%. The isolations of both designs reach more than 50 dB. For a proof of concept, the broadband example of the cavity crossover structures is fabricated and measured. A good agreement between the simulated and the measured results verifies the accuracy of the proposed design methodology.
机译:在本文中,提出了具有三个相交通道的空腔交叉的设计。腔谐振器的三个基本模式,即TE011,TE101和TM110模式,分别用于在三个通道中的每个谐振。由于这些基本模式的模态正交性,可以实现三个通道之间的高度隔离。提出了两种针对窄带和宽带应用的分频器。对于窄带情况,建议的分频器在2.91 GHz处产生谐振,分数带宽为1.4%。对于宽带情况,建议的分频器在3 GHz处以24%的分数带宽谐振。两种设计的隔离度均超过50 dB。为了进行概念验证,制造并测量了腔交叉结构的宽带示例。仿真结果与测量结果之间的良好一致性验证了所提出设计方法的准确性。

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