Ultra-wide stopband waveguide bandpass filter based on out-of-band staggered tuning coupling technology

IF 0.6 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Electromagnetics Pub Date : 2022-07-04 DOI:10.1080/02726343.2022.2118429
Huan Zou, Haiyang Wang, Jingyi Wu, Rui Xiong, Xiaoqin Liu
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Abstract

ABSTRACT A design method of greatly widening the stopband of waveguide bandpass filter is proposed in this paper. The parasitic passband of the filter mainly comes from the high-order oscillation mode of the resonant unit. Based on the theory of capacitance loading shortening of the transmission line and the transmission characteristics of each mode in the resonant cavity, a pair of transverse one-dimensional uniform capacitive diaphragms are placed in the center of the resonant cavity to shorten the resonant cavity and suppress the high-order modes. By changing the width of the waveguide and the height of the waveguide on the distribution of out-of-band transmission poles, the out-of-band transmission poles of each resonator can be staggered, which destroys or weakens the high-order oscillation coupling transmission conditions between the resonant units of the filter and further expands the stopband width of the filter. The results show that the length of the X-band waveguide bandpass filter (center frequency 9.5 GHz, bandwidth 400 MHz) is reduced by 54%, and the 40 dB stopband rejection bandwidth is 5.7 times the cutoff frequency of the transmission waveguide, compared with the prototype half-wavelength direct-coupled filter of the conventional Chebyshev filter.
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基于带外交错调谐耦合技术的超宽阻带波导带通滤波器
本文提出了一种大幅度加宽波导带通滤波器阻带的设计方法。滤波器的寄生通带主要来自谐振单元的高阶振荡模式。基于传输线电容负载缩短的理论和谐振腔中每个模式的传输特性,在谐振腔的中心放置一对横向一维均匀电容膜片,以缩短谐振腔并抑制高阶模式。通过改变波导的宽度和波导的高度对带外传输极点的分布,每个谐振器的带外传输磁极可以交错,这破坏或削弱了滤波器谐振单元之间的高阶振荡耦合传输条件,并进一步扩大了滤波器的阻带宽度。结果表明,与传统切比雪夫滤波器的原型半波长直接耦合滤波器相比,X波段波导带通滤波器(中心频率9.5GHz,带宽400MHz)的长度减少了54%,40dB阻带抑制带宽是传输波导截止频率的5.7倍。
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来源期刊
Electromagnetics
Electromagnetics 工程技术-工程:电子与电气
CiteScore
1.60
自引率
12.50%
发文量
31
审稿时长
6 months
期刊介绍: Publishing eight times per year, Electromagnetics offers refereed papers that span the entire broad field of electromagnetics and serves as an exceptional reference source of permanent archival value. Included in this wide ranging scope of materials are developments in electromagnetic theory, high frequency techniques, antennas and randomes, arrays, numerical techniques, scattering and diffraction, materials, and printed circuits. The journal also serves as a forum for deliberations on innovations in the field. Additionally, special issues give more in-depth coverage to topics of immediate importance. All submitted manuscripts are subject to initial appraisal by the Editor, and, if found suitable for further consideration, to peer review by independent, anonymous expert referees. Submissions can be made via email or postal mail.
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