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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Slow-Wave Effect of Substrate Integrated Waveguide Patterned With Microstrip Polyline
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Slow-Wave Effect of Substrate Integrated Waveguide Patterned With Microstrip Polyline

机译:微带折线构图的基片集成波导的慢波效应

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摘要

A class of slow-wave substrate integrated waveguide (SIW) structures patterned with microstrip polyline is presented, theoretically studied, and experimentally validated, which demonstrates some interesting slow-wave propagation effects. The slow-wave SIW (SW-SIW) enables the size reduction of a physically large circuit without sacrificing its performance. A size reduction of 40% of the lateral dimension is achieved with reference to that of the conventional SIW counterpart at the same cutoff frequency. Meanwhile, the phase velocity of the waveguide is also reduced by 40%, resulting in a smaller longitudinal dimension for a given electrical length. Both lateral and longitudinal effects give rise to a total size reduction, largely extending the operation range of SIW structures in the low-frequency region, which has often been restrained by a physical dimension-related cutoff frequency. Also, a transmission line-based two-dimensional (2-D) equivalent-circuit model is proposed and deployed for the modeling and analysis of the slow-wave mechanism. The results from the equivalent-circuit model agrees very well with that from the full-wave simulations. Furthermore, a broadband microstrip to SW-SIW taper with good return loss is designed for measurement verification. Using the proposed SW-SIW structure, the size of conventional SIW-based microwave circuits such as power splitters, couplers, and filters can be further reduced in addition to the existing size-reduction techniques.
机译:提出了一类用微带折线构图的慢波基片集成波导(SIW)结构,并进行了理论研究和实验验证,证明了一些有趣的慢波传播效应。慢波SIW(SW-SIW)可以在不牺牲其性能的情况下减小物理大型电路的尺寸。在相同的截止频率下,与传统的SIW对应件相比,可将横向尺寸减小40%。同时,波导的相速度也降低了40%,因此对于给定的电长度,纵向尺寸较小。横向效应和纵向效应都导致总尺寸的减小,从而大大扩展了低频区域中SIW结构的工作范围,而该范围通常受到与物理尺寸相关的截止频率的限制。此外,提出了基于传输线的二维(2-D)等效电路模型,并将其用于慢波机制的建模和分析。等效电路模型的结果与全波仿真的结果非常吻合。此外,为测量验证设计了具有良好回波损耗的SW-SIW锥度宽带微带。使用提出的SW-SIW结构,除了现有的尺寸减小技术之外,还可以进一步减小传统的基于SIW的微波电路(例如功率分配器,耦合器和滤波器)的尺寸。

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