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首页> 外文期刊>Journal of Microwaves, Optoelectronics and Electromagnetic Applications >Sharp Rejection and Wide Stopband Microstrip Lowpass Filters using Complementary Split Ring Resonators
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Sharp Rejection and Wide Stopband Microstrip Lowpass Filters using Complementary Split Ring Resonators

机译:使用互补开环谐振器的尖锐抑制和宽带阻带微带低通滤波器

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摘要

Chebyshev microstrip lowpass filters with improved performance, achieved by means of circular complementary split ring resonators (CSRR), are presented. CSRR particles exhibit frequency rejection bandwidths in the vicinity of their resonant frequencies that can be used to meliorate both selectivity and stopband in microstrip lowpass filters. Two configurations have been used: a stepped-impedance model and a configuration using open-circuited stubs. Microstrip filters having 5, 7 and 9 poles were designed and fabricated. Selectivity values up to 86 dB/GHz and suppression levels reaching 60 dB in the stopband were obtained. The filters have cutoff frequency around 2 GHz and rejection band up to 10 GHz. The insertion of the designed CSRR resonators in the ground plane of the filters removes all the transmission spurious observed in the analyzed frequency band. No considerable variation in the passband group delay is observed in the CSRR-based lowpass filters. A comparison is made among the filters designed in this and other referenced works, considering their number of poles and size. The measured results are in good agreement with the simulated ones. The presented filters can be candidates for applications using the VHF, UHF and L bands, being also very effective in the rejection of the S and C bands. Applications that demand the rejection of the first half of the X band can also use the filters detailed in this paper.
机译:提出了通过圆形互补开口环谐振器(CSRR)实现的性能得到改善的Chebyshev微带低通滤波器。 CSRR粒子在其谐振频率附近显示出频率抑制带宽,可用于改善微带低通滤波器中的选择性和阻带。已经使用了两种配置:步进阻抗模型和使用开路短截线的配置。设计并制造了具有5、7和9极的微带滤波器。获得的选择性值高达86 dB / GHz,阻带的抑制水平达到60 dB。滤波器的截止频率约为2 GHz,拒绝带高达10 GHz。将设计的CSRR谐振器插入滤波器的接地层可以消除在分析频带中观察到的所有传输杂散。在基于CSRR的低通滤波器中,没有观察到通带群时延的明显变化。考虑到极数和尺寸,在本工作和其他参考工作中设计的滤波器之间进行了比较。测量结果与模拟结果吻合良好。所展示的滤波器可以是使用VHF,UHF和L频段的应用的候选者,在抑制S和C频段方面也非常有效。需要拒绝X波段前半部分的应用也可以使用本文详述的滤波器。

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