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Ultrashort Pulse Decomposition in Hybrid Protection Devices Based on the Cascade-Connected Modal Filter and Meander Line With Broad-Side Coupling

机译:混合保护装置超短脉冲分解基于级联连接的模频滤波器和横向耦合的曲折线

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The paper considers decomposition of an ultrashort pulse (USP) in two hybrid protection devices: the first is based on a 3-conductor modal filter (MF) and a meander line (ML) with broad-side coupling connected in cascade; the second is based on a 4- conductor MF and an ML. The delays of each decomposition pulse at the end of each device were determined. The conditions for the USP decomposition were formulated for each of the hybrid devices. The analysis of the influence of cross-sectional parameters in each MF and ML on the per-unit-length delays of the modes and the output signal amplitude was carried out. The optimal parameters of the device cross-sections were found which ensure the fulfillment of the formulated conditions. As a result, the USP attenuation (relative to half of the e.m.f.) in the structure with a 3-conductor MF was 10.77 times, and in the structure with a 4-conductor MF - 11.92 times.
机译:本文考虑了两个混合保护装置中超短脉冲(USP)的分解:首先是基于3导体模滤器(MF)和具有在级联中连接的宽侧联接的曲折线(ML); 第二代基于4导体MF和ML。 确定每个器件结束时的每个分解脉冲的延迟。 为每个混合装置配制USP分解的条件。 进行分析每个MF和ML对模式的每单位长度延迟的横截面参数和输出信号幅度的影响。 发现设备横截面的最佳参数,确保了配制条件的满足。 结果,USP衰减(相对于e.m.f.的一半)在具有3导体MF的结构中为10.77倍,并且在具有4导体MF的结构中 - 11.92次。

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