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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Differential Dual-Band Filters With Flexible Frequency Ratio Using Asymmetrical Shunt Branches for Wideband CM Suppression
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Differential Dual-Band Filters With Flexible Frequency Ratio Using Asymmetrical Shunt Branches for Wideband CM Suppression

机译:使用非对称并联支路的具有灵活频率比的差分双频带滤波器用于宽带CM抑制

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摘要

In this paper, a group of differential dual-band bandpass filters based on a single quad-mode stub-loaded twin-ring resonator (TRR) are presented, which utilize asymmetrical shunt branches for common-mode (CM) suppression. Under differential-mode (DM) operation, the stub-loaded TRR manifests quad-mode characteristic for dual-band design. The frequency ratio of the two passbands can be flexibly selected according to the form of the loaded stubs. Different from the inline topology, differential multimode structures inevitably suffer from the hardship in CM suppression, especially for dual-band designs. Despite previous work fulfilled moderate CM suppression via embedded defected ground structure units, but the CM noise in the DM lower band can just be shifted away rather than suppressed. Instead, a novel CM-suppression approach is devised attributing to the asymmetrical short-terminated branches along the bisection line of the TRR. The transmission of the CM noise near the DM passbands can be blocked effectively. Furthermore, multiple CM notches can be obtained by the cooperation of the asymmetrical branches and source-load coupling, leading to the favorable CM suppression in a wide frequency range. For verification, a prototype differential dual-band filter based on the open stub-loaded TRR has been realized with frequency ratio which is larger than two. Similarly, a differential dual-band filter using the short-circuited stub-loaded TRR is also presented as an extension for frequency ratio which is smaller than two. The simulation and experiment results of the two demonstrated filters are given, showcasing a good agreement.
机译:本文提出了一组基于单四模式短负载双环谐振器(TRR)的差分双带通滤波器,它们利用非对称并联支路进行共模(CM)抑制。在差模(DM)操作下,存根加载的TRR表现出用于双频段设计的四模式特性。可以根据负载短截线的形式灵活选择两个通带的频率比。与串联拓扑不同,差分多模结构不可避免地遭受CM抑制的困难,特别是对于双频段设计。尽管先前的工作通过嵌入缺陷的地面结构单元实现了适度的CM抑制,但是DM较低频带中的CM噪声只能被移走而不是被抑制。取而代之的是,设计了一种新颖的CM抑制方法,将其归因于沿着TRR对分线的不对称短端分支。可以有效地阻止DM通带附近CM噪声的传输。此外,通过不对称分支和源-负载耦合的配合,可以获得多个CM陷波,从而在较宽的频率范围内实现了良好的CM抑制。为了验证,已经实现了基于开路存根加载TRR的原型差分双频滤波器,其频率比大于2。类似地,使用短路的短负载TRR的差分双频带滤波器也被提出作为频率比的扩展,该比小于2。给出了两个演示滤波器的仿真和实验结果,显示出很好的一致性。

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