基于快速调谐和逐步优化技术的交叉耦合谐振波导滤波器的耦合矩阵设计

IF 0.8 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Advanced Electromagnetics Pub Date : 2022-05-09 DOI:10.7716/aem.v11i2.1758
A. Boudkhil, B. Mansouri, M. Chetioui, M. Damou, A. Lallam, N. Benahmed
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引用次数: 0

摘要

本文提出了一种有效的混合滤波器建模方法,将快速调谐步骤与全局优化技术相结合,设计了一种新的四阶交叉耦合谐振腔带通微波滤波器拓扑结构。该方法可以从矩形波导谐振腔带通滤波器的电磁(EM)模拟散射参数(s参数)中快速提取耦合矩阵,并将其在计算机辅助调谐工具中实现,通过在ANSYS-HFSS内的一组顺序调谐迭代中每次连续添加一个谐振腔来模拟高性能微波带通滤波器设计。这最大限度地减少了微波滤波器结构的设计时间,并允许构建更高的波导滤波器阶数,提供复杂的交叉耦合。最后,通过实现基于em模拟器的逐步优化工具,实现滤波器参数的手动粗调整,作为对部分电路响应的理想细化的快速过程。
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Coupling Matrix Designing of a Cross-Coupled ‎Resonator Waveguide Filter Based on a Fast ‎Tuning and Step by Step Optimization ‎Technique
This paper presents an efficient hybrid method of filter modeling that combines a fast tuning step to global optimization technique to design a new topology of a 4th order cross-coupled resonator bandpass microwave filter. The method can rapidly extract the coupling matrix from the electromagnetic (EM) simulated scattering parameters (S-parameters) of a rectangular waveguide resonator bandpass filter with losses that will be implemented in a computer-aided tuning tool to develop a high performance microwave bandpass filter design simulated by successively adding a one resonator each time of a set of sequential tuning iterations within the ANSYS-HFSS. This minimizes the time of designing of the microwave filter's structure as well as permits to ‎build a higher waveguide filter's order providing a complex ‎cross-coupling‎. A filter parameters’ manual-coarse adjustment is finally achieved by implementing a step by step optimization tool based on the EM-simulator as a fast process for ideal refinement to the partial circuital response.
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来源期刊
Advanced Electromagnetics
Advanced Electromagnetics ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
2.40
自引率
12.50%
发文量
33
审稿时长
10 weeks
期刊介绍: Advanced Electromagnetics, is electronic peer-reviewed open access journal that publishes original research articles as well as review articles in all areas of electromagnetic science and engineering. The aim of the journal is to become a premier open access source of high quality research that spans the entire broad field of electromagnetics from classic to quantum electrodynamics.
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