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Dual-Band High Q-Factor Complementary Split-Ring Resonators Using Substrate Integrated Waveguide Method and Their Applications

机译:双频带高Q因子互补分体环谐振器,使用基板集成波导法及其应用

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摘要

In modern microwave telecommunication systems, especially in low phase noise oscillators, there is a need for resonators with low insertion losses and high Q-factor. More specifically, it is of high interest to design resonators with high group delay. In this paper, three novel dual-band complementary split-ring resonators (CSRRs) featuring high group delay etched on the waveguide surface by using substrate integrated waveguides are investigated and proposed. They are designed for a frequency range of 4.5-5.5 GHz. Group delay rates for the first, second, and third resonators were approximated as much as 23 ns, 293 ns, and 90 ns, respectively. We also proposed a new practical method to develop a wide tuning range SIW CSRR cavity resonator with a small tuning voltage in the second resonator, which leads to about 19% and 1% of tuning frequency band in the first and second bands, respectively. Finally, some of their applications in the design of filter, diplexer, and low phase noise oscillator will be investigated.
机译:在现代微波通信系统中,特别是在低相位噪声振荡器中,需要具有低插入损耗和高Q系数的谐振器。更具体地,设计具有高群延迟的谐振器具有高兴趣。在本文中,采用使用基板集成波导,研究了三种新型双频互补分体环谐振器(CSRRS)通过使用基板集成波导在波导表面上蚀刻的高组延迟。它们设计用于4.5-5.5 GHz的频率范围。第一,第二和第三谐振器的组延迟速率分别近似为23ns,293ns和90ns。我们还提出了一种新的实用方法,可以在第二谐振器中开发具有小调谐电压的宽调谐范围SiW CSRR腔谐振器,其分别导致第一和第二带中的调谐频带的约19%和1%。最后,将研究其在过滤器,双工器和低相位噪声振荡器设计中的一些应用。

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