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Transverse resonance, standing wave, and resonator formulations of the ridge waveguide eigenvalue problem and its application to the design of E-plane finned waveguide filters

机译:脊形波导特征值问题的横向谐振,驻波和谐振器公式及其在E平面鳍状波导滤波器设计中的应用

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摘要

An accurate computer-aided design of compact, low-cost, low-insertion-loss evanescent-mode waveguide bandpass filters with bilateral metallic E-plane fins is presented. The rigorous field distribution of the ridge waveguide eigenmodes is applied to the design. The design theory takes into account the influences of both the finite fin thickness and the higher-order mode interaction at all discontinuities. The numerical advantage of the transverse resonance method for solving the related cross-sectional eigenvalue problem is demonstrated for the design of quasi-high-pass and bandpass filters of different ridge gap widths and is compared with the classical standing wave and resonator mode-matching techniques. Computer-optimized design data are given for filters with passbands in X-band (8-12 GHz) and E-band (60-90 GHz), which achieve high skirt selectivity and wide stopband. The theory is verified by measurements.
机译:提出了一种紧凑的,低成本,低插入损耗的渐逝模式波导带通滤波器的精确计算机辅助设计,该滤波器具有双边金属E平面鳍片。脊形波导本征模的严格场分布应用于设计。设计理论考虑了在所有不连续处有限的翅片厚度和高阶模态相互作用的影响。在设计不同的脊隙宽度的准高通和带通滤波器时,证明了横向共振方法解决相关截面特征值问题的数值优势,并与经典驻波和共振器模式匹配技术进行了比较。 。针对具有X波段(8-12 GHz)和E波段(60-90 GHz)的通带的滤波器提供了计算机优化的设计数据,这些滤波器可实现较高的裙边选择性和宽阻带。通过测量验证了该理论。

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