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Design of high-performance hybrid branch-line couplers for wideband and space-limited applications

机译:宽带和空间受限应用的高性能混合支线耦合器设计

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摘要

This study presents a new design method of high-performance broadband equal-split branch-line couplers with compact footprints. Size reduction as well as wideband operation are achieved here by using cascaded slow-wave cells in place of conventional transmission lines that are basic building blocks of a reference structure. The initial stage of the design process involves numerical optimisation of the reference coupler equivalent circuit model to enhance its performance and account for practical design limitations. The next stage concerns determination of a repetition factor of the recurrent slow-wave structure that provides sufficient bandwidth and phase characteristics to be a suitable substitute for a conventional line. The subsequent steps include cell optimisation using fine electromagnetic simulations, local response surface modelling of the single cell, and surrogate-based optimisation of the recurrent slow-wave structure composed of cascaded cell approximation models. Additionally, minor T-junction and proximity effects that deteriorate the performance of the compact coupler are compensated by means of surrogate-assisted design closure. The proposed method is demonstrated by two numerical examples. The compact couplers obtained in this study illustrate the highest bandwidth-to-size ratio when compared against state-of-the-art wideband couplers from the literature. Experimental verification of one of the examples confirms the reliability of the proposed design approach.
机译:这项研究提出了一种新的设计方法,即占用空间紧凑的高性能宽带等分支线耦合器。在此,通过使用级联的慢波单元代替作为参考结构基本组成部分的常规传输线,可以实现尺寸减小以及宽带操作。设计过程的初始阶段涉及参考耦合器等效电路模型的数值优化,以增强其性能并解决实际设计限制。下一阶段涉及确定递归慢波结构的重复因子,该因子提供足够的带宽和相位特性,以替代常规线路。后续步骤包括使用精细电磁模拟进行单元优化,对单个单元格进行局部响应表面建模以及对由级联单元格近似模型组成的递归慢波结构进行基于代理的优化。另外,通过替代辅助设计闭合可以补偿使紧凑型耦合器性能下降的微小T形结和邻近效应。通过两个数值例子证明了该方法的有效性。与文献中最先进的宽带耦合器相比,本研究中获得的紧凑型耦合器显示出最高的带宽与尺寸之比。实例之一的实验验证证实了所提出设计方法的可靠性。

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