铁路运输非牵引用户供电系统双接地故障模式建模

A. Kryukov, I. S. Ovechkin, K. Suslov
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引用次数: 0

摘要

目的开发数字模型,以确定 6-10 千伏架空信号线路中供应信号、集中和自动闭塞设施的双接地故障模式。 方法: 为了创建模型,使用了电力系统多相建模方法,其基础是使用根据完整图形电路连接的 RLC 元件的晶格等效电路。建模时使用了伊尔库茨克国立交通大学开发的工业软件包 Fazonord。所开发的模型正确反映了影响双接地故障模式的所有因素,包括牵引网络电磁影响的增加。与已知方法不同的是,这些影响因素的动态变化是由列车运行过程中牵引负荷的变化引起的。所提出的双接地故障模式建模方法具有通用性,可用于标准牵引供电系统以及前景广阔的高压牵引网络。所获得的结果可用于实际配置架空信号线路的继电保护装置,以便可靠地检测双接地故障模式并采取措施加以消除。此外,文章中介绍的建模方法可用于选择提高信号和自动闭塞设施供电可靠性的措施,以确保列车运行安全,还可用于开发方法和算法,以确定馈电信号设施、集中和自动闭塞的架空电力线双接地故障点的距离。研究结果证实了所提出的双接地故障模式建模方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling of double ground fault modes in power supply systems of non-traction consumers of railway transport
THE PURPOSE. Development of digital models to determine the modes of double ground faults in 6-10 kV overhead signaling lines supplying signaling, centralization and automatic blocking facilities.METHODS. To create the models, methods of multiphase modeling of electric power systems were used, based on the use of lattice equivalent circuits from RLCelements connected according to complete graph circuits. For modeling, the industrial software package Fazonord, developed at the Irkutsk State Transport University, was used.RESULTS. The developed models provide correct accounting of all factors influencing the modes of double ground faults, including increased electromagnetic influences of the traction network. In contrast to known approaches, the dynamics of changes in these influences caused by variations in traction loads during train movement are modeled.CONCLUSION. The proposed approach to modeling double ground fault modes is universal and can be used for standard traction power supply systems, as well as promising high-voltage traction networks. The results obtained can be used in practice to configure relay protection devices for overhead signaling lines in order to reliably detect double ground fault modes and take measures to eliminate them. In addition, the modeling methodology presented in the article can be used when selecting measures to improve the reliability of power supply to signaling and automatic blocking facilities that ensure the safety of train traffic, as well as to develop methods and algorithms for determining distances to places of double ground faults in overhead power lines feeding signaling facilities , centralization and autoblocking. The presented results confirmed the effectiveness of the proposed approach for modeling double ground fault modes.
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