Electromagnetic Compatibility of Track Circuits with Parallel Traction Network

V. Havryliuk, Regis Nibaruta, M. A.
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Abstract

The problem considered in the work is related to ensuring the electromagnetic compatibility of track circuits and automatic locomotive signaling with nearby traction network in the areas of their approaching and parallel arrangement. A simplified model of the distribution of interference induced in rails by a nearby traction network was developed and investigated. To overcome the difficulties of modeling, associated with the longitudinal inhomogeneity of the traction network, it is proposed to carry out the simulation in two stages. At the first stage, the currents in all conductors of traction network are determined without taking into account the equipment of track circuits connected to the rails. And at the second stage, the interference induced in the rails of the track with direct current traction is specified, taking into account the actual design of the tracks and the equipment connected to the rails in the areas of interest. The method for monitoring electromagnetic interference in rails, based on the use of the Pearson correlation coefficient of input and output currents of track circuits, is considered, which allows to timely detect interference that can lead to failures in the operation of track circuits and automatic locomotive signaling. Results of the calculations by the proposed model agree satisfactorily with the measurement results.
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并联牵引网络轨道电路的电磁兼容性
工作中考虑的问题是确保轨道电路和机车自动信号在接近和并联布置方面与附近牵引网的电磁兼容。建立并研究了附近牵引网对轨道干扰分布的简化模型。为克服牵引网络纵向不均匀性带来的建模困难,提出分两个阶段进行仿真。在第一阶段,在不考虑与轨道相连的轨道电路设备的情况下,确定了牵引网络中所有导体的电流。在第二阶段,考虑到轨道的实际设计以及与轨道相连的设备在感兴趣的区域,指定了直流牵引轨道轨道中引起的干扰。考虑了利用轨道电路输入输出电流的Pearson相关系数监测轨道电磁干扰的方法,可以及时发现可能导致轨道电路运行和机车自动信号失效的干扰。该模型的计算结果与实测结果吻合较好。
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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