多耦合微波带通滤波器,采用电磁仿真和线性电路优化设计

G. Lojewski, N. Militaru, M. Banciu
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引用次数: 0

摘要

本文研究了一种具有交叉耦合和一对衰减极点的带通平面滤波器。采用精确的电磁场模拟和快速线性电路优化相结合的新技术,可以精确控制带内等纹波响应和极点在频率轴上的位置,从而设计出性能更高的带通滤波器。为了说明这一过程,设计了一个微带带通滤波器,并通过电磁场仿真、制作和测试进行了验证。设计的滤波器的响应与规范很好地吻合,证实了实现具有严格控制特性的微波带通滤波器的可能性,减少了设计时间和非禁止性的计算量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microwave bandpass filters with multiple couplings, designed using electromagnetic simulations and linear circuit optimization
In this paper a bandpass planar filter, with cross-couplings and with a pair of attenuation poles, is investigated. The equi-ripple in-band response and the location of the poles on the frequency axis can be precisely controlled by using a new technique which combines accurate electromagnetic field simulations and fast linear circuit optimization, allowing the design of bandpass filters with improved performances. To illustrate the procedure, a microstrip bandpass filter was designed, verified by em-field simulation, fabricated and tested. The response of the designed filter is in good agreement with the specification, confirming the possibilities of realizing microwave bandpass filters with rigorously controlled characteristics, with reduced design time and non-prohibitive computational effort.
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