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Modelling of the Return Traction Current Harmonics Distribution in Rails for AC Electric Railway System

机译:交流电铁路系统中回程牵引电流谐波分布的建模

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摘要

The problem of determination of the traction current harmonics distribution in rails generated by several trains that operated in AC feeder zone is considered. The investigations were caused by necessity to ensure electromagnetic compatibility of the new types of rolling stock equipped with electronic static converters with track circuits that are used in train movement control systems for detection of their positions. The great diversity of rolling stock, power supply and return current systems, and train detection systems installed in European countries leads to consideration of the electromagnetic compatibility problem taking into account the specific railway systems used in the each country. Investigation of the electromagnetic compatibility between different railway subsystems requires the use of simulation programs that help to reveal most critical conditions for electromagnetic compatibility at an early stage and also makes it possible to estimate electromagnetic interference from rolling stock in rails under the worst-case conditions, realization of which in the operating systems will require a lot of time and cost. This work consider evolved model for distribution of the traction current harmonics in rails from several trains. To illustrate the application of the considered model, the distribution of the traction current harmonics in rails was computed for25 kV AC direct feeding network depending on distance from electrical supply substation, the rail-to-earth conductance, and the number of trains in the feeder zone. The results of modeling of the harmonics distribution are in satisfactory agreement with the experimental data.
机译:考虑了确定在AC馈线区域中运行的几列火车所产生的轨道中的牵引电流谐波分布的问题。进行这些调查的原因是,必须确保配备有带轨道电路的电子静态转换器的新型机车的电磁兼容性,该电子静态转换器具有用于火车运动控制系统中以检测其位置的轨道电路。在欧洲国家中安装的机车车辆,电源和回流系统以及列车检测系统的多样性导致考虑到每个国家使用的特定铁路系统时对电磁兼容性问题的考虑。要研究不同铁路子系统之间的电磁兼容性,需要使用仿真程序,这些程序有助于在早期揭示电磁兼容性的最关键条件,并且还可以估算最坏情况下铁路车辆产生的电磁干扰,要在操作系统中实现这些功能将需要大量的时间和成本。这项工作考虑了演化模型,用于分配来自几列火车的轨道中的牵引电流谐波。为了说明所考虑模型的应用,根据距供电变电站的距离,轨对地电导以及馈线中的列车数量,针对25 kV交流直接馈电网络计算了轨道中牵引电流谐波的分布。区。谐波分布的建模结果与实验数据令人满意。

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