Increasing the performance of the Far Eastern Railway traction power supply system

N. Grigor’ev, I. Ignatenko, S. Vlasenko, V. A. Kovalev, V. Shatalov
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Abstract

Introduction. The purpose of the study is to develop measures determined by the strategic programmes for the development of Russian railway transport based on the analysis of power supply schemes for the traction network of the Far Eastern Railway, a branch of Russian Railways.Materials and methods. Evaluation of the performance of the traction power supply system was made based on the analysis of the actual performance of the Far Eastern Railway section, as well as the theories of electrical engineering and power supply of the 25 kV AC electrified railway system.Results. Based on the analysis of the joint operation of the external and traction power supply systems of the Far Eastern Railway, four traction substations with low technical and economic indicators were identified. Network sections that feed the substations are a bottleneck in the traction power supply system. It is proposed to increase the efficiency by switching the connection of the windings of transformers of traction substations to the systems of external and traction power supply according to the typical star – delta scheme. Such a connection will ensure an increase in the speed of trains, a reduction in train succession time and losses of electricity, an increase in the quality of electric energy in the external power supply system and electric networks of the Far Eastern Directorate for Energy Supply (a structural subdivision of Transenergo, a branch of Russian Railways).Discussion and conclusion. Normalisation of the connection of four traction substations according to the feeding scheme is ensured by changing the phasing in such a way that the power supply of the two legs of one winding of the power transformer is transferred to two windings. Alignment of the current modules in the windings of transformers of traction substations makes it possible to reduce the voltage drop in the most loaded phase and, accordingly, increase the voltage in the traction network, which ensures an increase in the speed of trains and a reduction in passing intervals. Switching the power supply of the arms from one winding of the transformer to two reduces the loss of electrical energy in power transformers and the external power supply system. Reducing the current unbalance in the windings of the power transformer improves the quality of electrical energy in the system of external and district power supply. An increase in the service life of the power transformer is ensured by a decrease in the intensity of thermal wear of the insulation of the most loaded winding.
提高远东铁路牵引供电系统的性能
介绍。这项研究的目的是根据对俄罗斯铁路的一个分支——远东铁路牵引网供电计划的分析,制定俄罗斯铁路运输发展战略方案所确定的措施。材料和方法。在分析远东铁路段实际性能的基础上,结合25千伏交流电气化铁路系统的电气工程和供电理论,对牵引供电系统的性能进行了评价。通过对远东铁路外部供电系统和牵引供电系统联合运行的分析,找出了4个技术经济指标较低的牵引变电站。为变电站供电的网段是牵引供电系统的瓶颈。根据典型的星形-三角形方案,提出将牵引变电所变压器绕组与外供电系统和牵引供电系统的连接进行切换,以提高效率。这种连接将确保提高列车的速度,减少列车连续时间和电力损失,提高外部电力供应系统和远东能源供应局(俄罗斯铁路公司的一个分支机构Transenergo)电网的电能质量。讨论与结论。根据馈电方案,四个牵引变电站的连接归一化是通过改变相位来保证的,这样电力变压器的一个绕组的两个支腿的电源被转移到两个绕组。牵引变电站变压器绕组中电流模块的对齐可以减少负载最大的相位的电压降,从而增加牵引网络中的电压,从而确保列车速度的提高和通过间隔的缩短。将手臂供电从变压器的一个绕组切换到两个绕组,减少了电力变压器和外部供电系统的电能损耗。减少电力变压器绕组中的电流不平衡,可以提高外部和区域供电系统的电能质量。增加电力变压器的使用寿命是通过降低负载最大的绕组绝缘的热磨损强度来保证的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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