UIR-Loaded Dual-Mode SIW Filter with Compact Size and Controllable Transmission Zeros

Yilong Zhu, Yuandan Dong
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引用次数: 3

Abstract

A novel high performance filter architecture by loading a uniform impedance resonator (UIR) to a dual-mode substrate integrated waveguide (SIW) filter is proposed in this paper. The filter is composed of an SIW cavity, a UIR, and a perturbation metallic via, generating a three-pole passband by combining the UIR and dual-mode resonances. Two transmission zeros (TZs) can be created at the lower stopband by the nonresonant mode (TE101), which provides a direct source-to-load bypass coupling. The TZs are controllable by changing the bypass coupling magnitude. Moreover, an extra TZ is generated at the upper stopband because of the UIR. By changing the position of the perturbation via, the two TZs created by the bypass coupling could be moved to the two sides (left & right) of the passband. A second filter is then proposed and presented with enhanced the selectivity on the upper stopband. Both of the two filters are fabricated and measured, showing consistent filtering responses compared with simulations.
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尺寸紧凑、传输零点可控的uir负载双模SIW滤波器
提出了一种将均匀阻抗谐振器(UIR)加载到双模衬底集成波导(SIW)滤波器上的新型高性能滤波器结构。该滤波器由SIW腔、UIR和微扰金属通孔组成,通过结合UIR和双模共振产生三极通带。通过非谐振模式(TE101),可以在较低阻带处产生两个传输零点(TZs),从而提供直接的源-负载旁路耦合。通过改变旁路耦合幅值,可以控制tss。此外,由于UIR,在上阻带处会产生额外的TZ。通过改变微扰通孔的位置,由旁路耦合产生的两个TZs可以移动到通带的两侧(左和右)。然后提出并提出了第二种滤波器,提高了上阻带的选择性。对这两种滤波器进行了制作和测量,与仿真结果相比较,显示出一致的滤波响应。
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