列车通过绝缘段的轨道电流抑制策略

Puyang Liu, Song Xiao, Jie Liu, Chuanming Sun, Zuoqin Zhang, Junzhang Duan, Ye Cao, Jie Yu
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引用次数: 0

摘要

绝缘段是轨道电路的重要组成部分,在判断列车的位置和轨道电路信号的电气隔离方面起着很大的作用。随着高速铁路的不断提速,保持列车的高速运行必然需要更大的牵引电流。当列车通过绝缘段时,大钢轨电流会频繁出现短暂断开,轮轨之间也会经常出现电弧现象。由于牵引轨电流大、过电压高造成的电弧等级较高,会烧毁绝缘段,造成绝缘段损坏,严重时将极大地影响列车的运行安全。本文在构建“车轨”电路模型的基础上,讨论了当列车运行速度为100km/h时,开关、电阻在相邻轨间串联。然后通过控制电阻来减小列车通过绝缘段时的钢轨电流,从而降低电弧水平,减小电流对钢轨的影响,有效保证列车安全稳定运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rail Current Suppression Strategy for Trains Passing through Insulation Section
The insulation section is an important part of the track circuit and plays a great role in judging the position of the train and the electrical isolation of the track circuit signal. As high-speed railway continue to increase speed, maintaining the high-speed operation of the train will inevitably require a larger traction current. When the train passes through the insulation section, the large rail current will frequently appear to be briefly disconnected, and the arcing phenomenon will often occur between the wheel and rail. Due to the high traction rail current and overvoltage caused by the higher grade arc will burn the insulation section, resulting in damage to the insulation section, which will greatly affect the operation safety of the train when it is serious. Based on the “train-rail” circuit model constructed, this paper discusses that when the running speed of the train is 100km/h, the switch and resistance are connected in series between adjacent rails. Then the rail current when the train passes through the insulation section is reduced by controlling the resistance, so as to reduce the level of arcing, reduce the impact of current on the rail, and effectively ensure the safe and stable operation of the train.
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