A universal method for the design and synthesis of wideband directional couplers using non-uniform coupled transmission lines

J. Nehring, M. Hofmann, C. Munker, R. Weigel, G. Fischer, D. Kissinger
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引用次数: 8

Abstract

In this paper a complete procedure for the design, synthesis and construction of wideband directional couplers is presented. Cascading multiple quarter-wavelength line segments leads to an increase of coupling bandwidth up to 180% but also results in discontinuities of geometry and thus in strong reflections. Furthermore, the isolation is diminished. To avoid these effects a design technique for the generation of continous, non-uniform geometries is analyzed and implemented. Two methods for the coupler synthesis are proposed and compared. One is an approximational approach and uses two sets of equations. The other uses accurate 2D field simulation of the propagating modes and is universally applicable to any kind of coupled transmission lines. The completely synthesized couplers are simulated in CST Microwave Studio and achieve very good results for coupling, isolation and return loss. A nominal -10 dB wideband coupler at a center frequency of 15GHz and a nominal bandwidth of 164% is built in a multilayer stackup. Good agreement between measurement and simulation results is observed.
采用非均匀耦合传输线设计和合成宽带定向耦合器的通用方法
本文介绍了宽带定向耦合器的设计、合成和构造的完整过程。级联多个四分之一波长线段导致耦合带宽增加高达180%,但也导致几何结构不连续,从而产生强反射。此外,隔离也减少了。为了避免这些影响,分析并实现了一种生成连续、非均匀几何形状的设计技术。提出并比较了两种耦合器的合成方法。一种是近似方法,使用两组方程。另一种方法是对传输模式进行精确的二维场模拟,普遍适用于任何类型的耦合传输线。在CST Microwave Studio中对完全合成的耦合器进行了仿真,在耦合、隔离和回波损耗方面取得了很好的效果。在多层堆叠中构建了一个中心频率为15GHz、标称带宽为164%的标称- 10db宽带耦合器。测量结果与仿真结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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