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Microwave Slow-Wave Structure and Phase-Compensation Technique for Microwave Power Divider

机译:微波功率分配器的微波慢波结构和相位补偿技术

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摘要

In this paper, T-shaped electromagnetic bandgap is loaded on a coupled transmission line itself and its electric performance is studied. Results show that microwave slow-wave effect can be enhanced and therefore, size reduction of a transmission-line-based circuit is possible. However, the transmission-line-based circuits characterize varied phase responses against frequency, which becomes a disadvantage where constant phase response is required. Consequently, a phase-compensation technique is further presented and studied. For demonstration purpose, an 8-way coupled-line power divider with 22.5 degree phase shifts between adjacent output ports, based on the studied slow-wave structure and phase-compensation technique, is developed. Results show both compact circuit architecture and improved phase imbalance are realized, confirming the investigated circuit structures and analyzing methodologies.
机译:本文将T型电磁带隙加载到耦合传输线上,并研究其电性能。结果表明,可以增强微波慢波效应,因此,可以减小基于传输线的电路的尺寸。但是,基于传输线的电路具有针对频率变化的相位响应的特征,这在需要恒定相位响应的地方成为一个缺点。因此,进一步提出并研究了相位补偿技术。出于演示目的,基于研究的慢波结构和相位补偿技术,开发了一种在相邻输出端口之间具有22.5度相移的8路耦合线功率分配器。结果表明,既实现了紧凑的电路架构又改善了相位不平衡,证实了所研究的电路结构和分析方法。

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