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A novel super compact half-mode substrate-integrated waveguide filter using modified complementary split-ring resonator

机译:一种新型超紧凑型半导体基板 - 集成波导滤波器,使用改进的互补分体环谐振器

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摘要

A novel super compact filter based on half-mode substrate-integrated waveguide (HMSIW) technology loaded by the modified complementary split-ring resonator (MCSRR) is proposed. The working principle of the proposed filter is based on the evanescent-mode propagation technique. According to this technique, by loading the complementary split-ring resonator (CSRR) on the metal surface of the substrate-integrated waveguide (SIW) structure, an additional passband below the SIW cutoff frequency can be obtained. In order to miniaturize the physical size of the conventional CSRR, a new method is introduced. In the proposed MCSRR unit-cell, the meander slots are carved inside all of the interior space of the ring. Accordingly, the length of the slot is increased which leads to an increase in the inductor and capacitor of the proposed structure without occupying the extra space. Therefore, the electrical size of the proposed MCSRR unit-cell is reduced. Consequently, the resonance frequency of the proposed MCSRR unit-cell is decreased compared to the conventional CSRR with the same sizes. Namely, the lower resonance frequencies can be achieved by using this technique without increasing the size of the unit-cell. In order to confirm the miniaturization technique, two HMSIW filters loaded by the proposed MCSRR unit-cell are designed, fabricated, and experimental verifications are provided. The results show that a miniaturization about 67% is achieved.
机译:提出了一种基于修改的互补分体环谐振器(MCSRR)的半模式基板集成波导(HMSIW)技术的新型超紧凑型过滤器。所提出的滤波器的工作原理基于渐逝模式传播技术。根据该技术,通过将互补分体环谐振器(CSRR)加载在基板集成波导(SIW)结构的金属表面上,可以获得在SIW截止频率下方的附加通带。为了小型化传统CSRR的物理尺寸,介绍了一种新方法。在所提出的MCSRR单元单元中,曲折槽雕刻在环的所有内部空间内。因此,增加了槽的长度,这导致所提出的结构的电感器和电容器的增加而不占据额外空间。因此,降低了所提出的MCSRR单元单元的电尺寸。因此,与具有相同尺寸的传统CSRR相比,所提出的MCSRR单元单元的共振频率降低。即,通过使用该技术可以通过不增加单元单元的尺寸来实现较低的共振频率。为了确认小型化技术,提供了由所提出的MCSRR单元单元加载的两个HMSIW滤波器,提供,制造,实验验证。结果表明,实现了大约67%的小型化。

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