Reducing Power Losses by Voltage Stabilization at the DC Rolling Stock Current Collector

D. Tugay, Alina Trotsai, O. Shkurpela, I. Kostenko
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Abstract

The invention relates to an energy-efficient method for voltage stabilization at the electric rolling stock current collector through traction substation control means which provide a nominal voltage value during the electric train movement by an interstation section. The dependence of potential distribution in the contact wire during the electric rolling stock movement by an interstation section was investigated. Also researched and developed are the new ways of voltage stabilization at the current collector of the electric rolling stock based on synchronous (the same for two adjacent traction substations) and asynchronous paths of voltage regulation at DC buses of traction substations related to one synchronous and two asynchronous ways of voltage stabilization in the contact network with obtaining the energy performance describing them. The energy performance of the investigated methods of voltage stabilization in the contact network is compared, and the energy efficiency of each of them is determined. It is proved that the use of modern types of semiconductor converters such as an active rectifier – voltage source in the power equipment of DC traction substations will enable to implement adaptive voltage stabilization systems at the rolling stock current collector, providing nominal voltage values of traction motors on the interstation section without using additional equipment on the rolling stock and, as a consequence, justification and application of these methods is suitable for upgrading the existing and designing new traction substations.
通过直流机车集流器稳压降低功率损耗
本发明涉及一种通过牵引变电所控制装置在电动列车通过站间段运行期间提供标称电压值的电动机车车辆集流处稳压的节能方法。研究了电气化机车车辆通过车站间段时接触导线电位分布的依赖关系。研究和开发了基于同步(相邻两个牵引变电站相同)和异步牵引变电站直流母线稳压路径的电车集流稳压新方法,涉及接触网的一种同步和两种异步稳压方法,并获得了描述它们的能量性能。比较了所研究的接触网络稳压方法的能量性能,并确定了每种方法的能量效率。事实证明,在直流牵引变电站的电力设备中使用现代类型的半导体变换器,如有源整流电压源,将能够在机车车辆集流器上实现自适应电压稳定系统,在车站间段提供牵引电动机的标称电压值,而无需在机车车辆上使用额外的设备,因此,这些方法的论证和应用适用于现有牵引变电站的改造和新建牵引变电站的设计。
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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