离散串联器件对多导体传输线串扰现象的影响

Ziya Mazloom, N. Theethayi, Rajeev Thottappillil
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引用次数: 3

摘要

通常,研究多导体传输线(MTL)中的串扰机制时,考虑的是总负载或连接在线路终端(源端或负载端)的设备,或作为线路沿线对地的分流负载,如传统电力和铁路系统网络中所见。然而,也有一些实际的系统,例如在典型的瑞典铁路系统中,其中像升压变压器(BT)这样的离散集总装置与线路串联存在。对于闪电瞬态,已经分析了影响MTL系统串扰的各种参数,例如地电导率[1]。对于现实的串扰分析,我们得出结论,应该考虑包括像BT这样的离散器件。该研究有助于更好地理解电气化铁路系统的串扰机理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of discrete series devices on crosstalk phenomena in multiconductor transmission lines
Usually the crosstalk mechanisms in multiconductor transmission lines (MTL) are studied considering lumped loads or devices connected at the line terminations (either at source or load ends) or as shunt load to ground along the lines, as seen in conventional power and railway system networks. However there are practical systems, e.g. like in typical Swedish railway systems, wherein discrete lumped devices like the booster transformer (BT) exist in series with the line. With lightning transients various parameters that influence crosstalk in MTL systems, such as the ground conductivity, have been analyzed e.g. in [1]. For realistic crosstalk analysis we conclude that inclusion of discrete devices like BT should be accounted. The study could be beneficial in better understanding of the crosstalk mechanism in the electrified railway systems.
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