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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Theory of Coupled Line Coupler-Based Negative Group Delay Microwave Circuit
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Theory of Coupled Line Coupler-Based Negative Group Delay Microwave Circuit

机译:基于耦合线耦合器的负群时延微波电路理论

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摘要

A fundamental theory of coupled line coupler-based negative group delay (NGD) topology is established in this paper. The microwave circuit under study consists of the isolated-and coupled-accesses connected in a feedback loop through a lossy interconnect line. The NGD topology is built with fully distributed elements. The S-parameter model is formulated in order to derive the NGD optimal values, cutoff frequencies, and bandwidth. Thus, the NGD existence condition as a function of the coupling coefficient and the feedback interconnection attenuation is demonstrated and examined. Hence, the fundamental characteristics of the coupler-based NGD topology are described. In order to verify the feasibility of the theory, NGD prototypes were designed, fabricated, and measured. The implemented one- and two-stage microstrip circuits have NGDs of about -2.3 and -4 ns, respectively, at 1.26 GHz. The reflection coefficients are better than 10 dB and the insertion losses are, respectively, about 2.4 and 4.3 dB. The developed NGD topology, fully constructed with distributed elements without any lumped components, is particularly beneficial in terms of design simplicity. The proposed NGD circuit might find potential application in microwave signal delay correction.
机译:建立了基于耦合线耦合器的负群时延(NGD)拓扑的基本理论。所研究的微波电路由通过有损互连线以反馈回路连接的隔离和耦合接入组成。 NGD拓扑是使用完全分布式的元素构建的。制定S参数模型是为了导出NGD最佳值,截止频率和带宽。因此,论证并检验了NGD的存在条件,它是耦合系数和反馈互连衰减的函数。因此,描述了基于耦合器的NGD拓扑的基本特征。为了验证该理论的可行性,对NGD原型进行了设计,制造和测量。实施的一级和二级微带电路在1.26 GHz时的NGD分别约为-2.3和-4 ns。反射系数优于10 dB,插入损耗分别约为2.4和4.3 dB。已开发的NGD拓扑结构完全由分布式元素构成,没有任何集总组件,在设计简单性方面特别有利。提出的NGD电路可能在微波信号延迟校正中找到潜在的应用。

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