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Leakage Location of Stray Current in Rail Transit Based on Differential Evolution Algorithm

机译:基于差分演进算法的轨道交通杂交电流泄漏位置

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With the acceleration of urban construction, the subway system and the urban power grid system are too close in the dense urban system. There is a big problem in the operation of subway system, that is, the load current will enter the ground from the weak insulation of the track and invade other public network systems, causing a series of adverse effects such as corrosion. For the power grid, the stray current leaking to the ground will be attracted by the AC power grid, which will make the neutral DC current of the grounding power transformer around the rail transit line change significantly. In order to obtain the intensity and location of stray current leakage point, this paper proposes the inverse location of current leakage point through the distribution of DC current in the neutral point of transformer in AC power grid. In this paper, the mathematical model of point leakage point is constructed to replace the line leakage section, the stray current leakage is monitored by the transmission network, and the actual situation of track insulation damage is reflected by analyzing the distribution characteristics of transformer neutral point DC current, which makes the maintenance and repair work of rail transit more targeted.
机译:随着城市建设的加速,地铁系统和城市电网系统在密集的城市系统中太近了。地铁系统的运行中存在一个大问题,即负载电流将从轨道的弱绝缘中进入地面并侵入其他公共网络系统,从而导致诸如腐蚀的一系列不利影响。对于电网,泄漏到地面的杂散电流将被AC电网吸引,这将使接地电力变压器的中性DC电流显着变化。为了获得杂散电流泄漏点的强度和位置,本文通过在交流电网中的变压器中的中性点中的DC电流分布来提出电流泄漏点的逆位置。在本文中,构造了点泄漏点的数学模型以更换线路泄漏部分,通过分析变压器中性点的分布特性来监测杂散电流泄漏。通过分析变压器中性点的分布特性,对轨道绝缘损坏的实际情况进行了反映直流电流,这使得铁路运输的维护和维修工作更具针对性。

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