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External Q Computation by Fuzzy Inference Method;Application to Microstrip Filter Design

机译:模糊推理的外部Q计算;在微带滤波器设计中的应用

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Coupling factor of a resonator to an external circuit is described by the external Q which is an important parameter for designing microwave filters. Analytical computation of external Q needs exact determination of the field distribution around the coupling port. But the complexities of I/O portsInmicrowave/millimeter wave Filters makeThis procedure a very complicated process. On the other hand lack of analytical solution for field distributionInsome kinds of resonators such as Square Open Loop Resonators cause to increase the complexity of external Q computation.In This paper a very fast and accurate fuzzy inference method is implemented to overcomeThis drawback. The fuzzy modeling method is explained and a four pole Chebychev filter is designed as an example to show the accuracy and efficiency of the introduced method. The simulated response of the designed filter is compared with an ideal four pole Chebychev one. The results are in a very good agreement.
机译:谐振器与外部电路的耦合系数由外部Q来描述,外部Q是设计微波滤波器的重要参数。外部Q的分析计算需要精确确定耦合端口周围的场分布。但是I / O端口的复杂性微波/毫米波滤波器使此过程非常复杂。另一方面,缺乏用于场分布的解析解在诸如方形开环谐振器之类的某些谐振器中,这会增加外部Q计算的复杂性。本文采用了一种非常快速,准确的模糊推理方法来克服这一缺点。说明了模糊建模方法,并以四极点Chebychev滤波器为例,说明了所引入方法的准确性和效率。将设计的滤波器的模拟响应与理想的四极Chebychev滤波器进行比较。结果非常吻合。

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