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A compact 8#x00D7;8 Butler matrix based on double-layer structure

机译:基于双层结构的紧凑型8×8 Butler矩阵

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摘要

In this paper, a novel 8×8 Butler matrix based on double-layer substrate structure is presented and realized. The double-layer structure is adopted to place components on the up and down layers without crossover. Two-section stepped coupling microstrip Schiffman phase shifters with λg/8 length are used to realize wideband phase shift. A three-branch line coupler is employed as wideband bridge. The 8×8 Butler matrix sample working in C band frequency is designed and fabricated, and the measured results indicate that the return loss of each port is better than −10dB in the frequency range over 4.2GHz–5.3GHz, while the isolation is better than 17dB, the distribution error is less than ±1dB, the phase error is less than ±12° and the average measured insert loss is about 2.5dB. Compared with conventional structure using crossover, the novel Butler matrix not only has lower loss and better adaptability to large scale multi-beam forming network, but also has more size reduction.
机译:提出并实现了一种基于双层衬底结构的新型8×8 Butler矩阵。采用双层结构,将组件放置在上层和下层而不会交叉。使用具有λg/ 8长度的两段式阶梯耦合微带Schiffman相移器来实现宽带相移。三分支线路耦合器用作宽带桥。设计并制作了在C频段工作的8×8巴特勒矩阵样本,测量结果表明,在4.2GHz至5.3GHz的频率范围内,每个端口的回波损耗均优于-10dB。小于17dB,分配误差小于±1dB,相位误差小于±12°,平均测得的插入损耗约为2.5dB。与使用分频器的传统结构相比,新颖的巴特勒矩阵不仅具有较低的损耗和对大规模多波束成形网络的更好适应性,而且具有更大的尺寸减小。

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