使用多端口导纳矩阵的全波耦合谐振器滤波器优化

S. Otto, A. Lauer, J. Kassner, A. Rennings
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引用次数: 9

摘要

提出了一种基于全波电磁仿真的滤波器优化策略。在滤波器模型中引入额外的内部端口,得到了多端口导纳矩阵(y矩阵)。主要优点在于滤波器的基本参数,因为有每个谐振器的谐振频率,耦合系数和外部q可以通过多端口y矩阵直接访问。这些值已知给一个广泛的洞察过滤器,并允许一个直接的优化过程,以满足合成的指定数据。此外,寄生效应和设计限制可以识别甚至量化。本文以六极切比雪夫特性的组合滤波器为例,对该技术进行了演示,并对该方法进行了验证,该方法可适用于其他类型的滤波器以及其他特性。在此基础上,对一个寄生外部耦合进行了辨识和补偿,说明了该方法的优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Full wave coupled resonator filter optimization using a multi-port admittance-matrix
A filter optimization strategy based on full wave EM simulations is proposed. With the introduction of additional internal ports in the filter model, the multi-port admittance-matrix (Y-matrix) is obtained. The main advantage lies in the fact that the filter's basic parameters, as there are the resonant frequency of each resonator, the coupling coefficients and the external Qs are directly accessible through the multi-port Y-matrix. These values are known to give a broad insight into the filter and allow a straightforward optimization procedure to meet the specified data of the synthesis. Furthermore, parasitic effects and design restrictions can be identified and even quantified. Here, an example of a combline filter with a six pole Chebyshev characteristic has been chosen to demonstrate the technique and to verify the method, which can be adapted to other types of filters as well as to other characteristics. Based on this example, a parasitic external coupling was identified and compensated illustrating the advantages of this method.
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