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Advanced filter design technique based on equivalent circuits and coupling matrix segmentation

机译:基于等效电路和耦合矩阵分割的高级滤波器设计技术

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摘要

This paper presents a technique for the efficient design of bandpass waveguide microwave filters using a segmentation technique applied to an equivalent circuit. The technique is based on first developing an equivalent circuit that synthesizes the desired transfer function. Then, the different parts of the real physical structure are optimized by segmenting this equivalent circuit. The technique was originally developed for in-line filters, and the main contribution of this paper is in the combination of this technique with the coupling matrix formalism. In this way, we adapt for the first time this design strategy to the design of complex coupling topologies, beyond the in-line configuration. As an example, a complex sixth-order dual-mode filter, implemented in all-inductive waveguide technology, is designed using the new coupling matrix segmentation technique, showing the effectiveness of the presented theory. A prototype of the filter has been manufactured, and the accuracy of the design technique is verified by measurements on the real prototype.
机译:本文提出了一种技术,该技术通过将分段技术应用于等效电路来有效设计带通波导微波滤波器。该技术基于首先开发出可合成所需传递函数的等效电路。然后,通过分割该等效电路来优化实际物理结构的不同部分。该技术最初是为在线滤波器开发的,本文的主要贡献在于该技术与耦合矩阵形式主义的结合。这样,我们首次将这种设计策略应用于在线配置之外的复杂耦合拓扑的设计中。例如,使用新的耦合矩阵分割技术设计了在全电感波导技术中实现的复杂的六阶双模滤波器,显示了所提出理论的有效性。已经制造出过滤器的原型,并且通过对真实原型的测量来验证设计技术的准确性。

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