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Arcing in AC railways: a mathematical approach

机译:交流铁路的电弧:数学方法

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摘要

The growing use of electronic devices for communication and control in the new AC railways suggests a deepened study of electromagnetic interferences. Amongst the dynamic phenomena the more interesting one is the interference produced by the arcing due to the pantograph de-wiring from the contact wire. This phenomenon determines interference with a wide frequency spectrum up to several GHz, and with a not negligible magnitude. The analysis of this kind of phenomenon represents a complex issue, due to the lack of experiences and mathematical models able to describe completely and in a easy way the electromagnetic phenomena and its interaction with the electric environment. Starting from the results of previous studies, the paper shows an accurate arc resistance model for AC systems. The obtained arc model is used in an high frequency model of an AC railways and it takes into account both the power supply system and the on board traction drive. The results of some simulations are presented to highlights the EMIs (Electromagnetic Interferences) due to the arc ignition. An analysis of the voltages and currents of the system are carried out to evaluate the propagation of the disturbance along the line and the effects on other electric vehicles running on the track.
机译:在新型交流铁路中越来越多地使用电子设备进行沟通和控制,建议加深了对电磁干扰的研究。在动态现象中,越有趣的是由于电弧引起的电弧从接触线路的电弧产生的干扰。这种现象决定了对多个GHz的宽频谱的干扰,并且具有不可忽略的幅度。这种现象的分析代表了一种复杂的问题,因为缺乏能够完全描述的经验和数学模型,并且可以轻松地描述电磁现象及其与电气环境的相互作用。从先前研究的结果开始,本文显示了AC系统的精确电弧电阻模型。所获得的电弧模型用于交流铁路的高频模型,考虑到电源系统和底板牵引驱动器。提出了一些模拟的结果以突出显示由于电弧点火引起的EMIS(电磁干扰)。对系统的电压和电流进行分析,以评估沿线沿线的干扰传播及其对轨道上的其他电动车辆的影响。

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