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A novel wideband microstrip branch-line coupler with compact footprint

机译:新型紧凑型宽带微带支线耦合器

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In this paper, we present a novel structure of a compact wideband branch-line coupler. The reduced component size is obtained by using cascaded slow-wave structures as substitutes for the main lines of the coupler, and meander lines to shorten the high-impedance branches. We exploit a surrogate-based optimization concept to design the coupler at a low computational cost. This involves electromagnetic models of the slow-wave structure elementary cells and their cascades, as well as local response surface approximations of both types of sub-components. The final design operates over a 50% bandwidth with excellent performance, and occupies only 35% of the area of the reference structure. The overall cost of the design process corresponds (in terms of CPU time) to less than three EM simulations of the entire compact coupler.
机译:在本文中,我们提出了一种紧凑型宽带分支线耦合器的新型结构。通过使用级联的慢波结构代替耦合器的主线,并使用曲折的线来缩短高阻抗分支,可以减小组件的尺寸。我们利用基于代理的优化概念以较低的计算成本来设计耦合器。这涉及慢波结构基本单元及其级联的电磁模型,以及两种类型的子组件的局部响应面近似。最终设计可在50%的带宽上运行,并具有出色的性能,并且仅占参考结构面积的35%。设计过程的总成本(就CPU时间而言)相当于整个紧凑型耦合器的少于EM次仿真(少于3次)。

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