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Impact of Return Traction Current Harmonics on the Value of the Potential of the Rail Ground for the AC Power Supply System

机译:回流牵引电流谐波对交流电源系统轨道接地潜力值的影响

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The problem of the increased potential of the rail-ground with the flow of electric trains reverse traction current operating in the area of the AC feeder is considered. The studies were caused by the need to ensure the electrical safety of the staff and the infrastructure facilities reliability when passing trains of increased weight. In the process of experimental studies of the high potentials causes in rail circuits, data were obtained indicating the complex nature of the electromagnetic interaction of reverse current harmonics with rail circuits. For studies of electromagnetic compatibility between railway subsystems, it requires the use of simulation programs that help to reveal most critical conditions for electromagnetic compatibility conditions, and allow the evaluation of electromagnetic interference from rolling stock in rails in the worst conditions. A developed the traction current harmonics distribution model in the rails is considered in this paper. The traction current harmonics distribution in the rails was calculated for a direct AC power supply of 25 kV depending on the distance from the power supply substation, the conductivity of the railway and the ground and the number of trains in the feeder zone. The results of the harmonics distribution simulation are in satisfactory agreement with the experimental data and will allow the technical measures development to reduce the rail-ground potential.
机译:考虑了利用在AC进料器面积的区域中操作的电动训练流动的轨道接地电位增加的问题。这些研究是由于在通过重量增加的列车时,需要确保工作人员的电气安全和基础设施的可靠性。在对轨道电路的高电位原因的实验研究过程中,获得了数据,指示反向电流谐波与轨道电路的电磁相互作用的复杂性。为了研究铁路子系统之间的电磁兼容性,需要使用仿真程序,有助于揭示电磁兼容性条件的最关键条件,并允许在最差条件下评估轨道上的滚动装置的电磁干扰。在本文中考虑了轨道中的牵引电流谐波分布模型。根据从电源变电站的距离,铁路的电导率以及馈线区域中的火车数量,计算轨道中的牵引电流谐波分布为25kV的直接交流电源。谐波分布仿真的结果与实验数据令人满意的协议,并将允许技术措施的开发减少铁路地电位。

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