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Modeling of Electromagnetic Fields Occurring at Intersection of Traction Networks and Overhead Power Supply Lines

机译:牵引网与架空电源线相交处产生的电磁场建模

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Traction networks (TN) 25 kV generate higher electromagnetic fields (EMF) with frequency 50 Hz, the strengths of which at a standardized height of 1.8 m, as a rule, do not exceed the permissible norms for electrical personnel. In places where railroads routes intersect with high voltage overhead power supply lines (OPL), the interference of fields, generated by the traction network and OPL, occurs. This can lead to an increase in strengths and a complication of the EMF spatial structures. The article presents a methodology for determining the strengths created at intersections, and modelling results performed for typical situations when a TS of 25 or 2x25 kV is intersected by an overhead power line of 220 kV at an angle of 90 degrees. The algorithm for calculating the resulting EMF strengths includes the following steps: calculation of TN and OPL modes in phase coordinates, the results of which determine the potentials and currents of all wires; the calculation of the vertical and horizontal components of the EMF strengths; calculation of amplitude values of strengths at the intersection point taking into account possible elliptical polarization. The modelling results show that the maxima of the amplitudes of the magnetic field strength at the points of intersection by the traction network of 25 kV and OPL of 220 kV reach 83 A/m. A similar parameter for the electric field equals to 5.4 kV/m. For a 2x25 kV traction network, these values are reduced to 32 A/m and 4 kV/m, respectively. This work was financially supported by the grant “Improving the quality of electric energy and electromagnetic safety in railway power supply systems equipped with Smart Grid devices by applying methods and means of mathematical modeling based on phase coordinates”.
机译:25 kV的牵引网络(TN)会产生频率为50 Hz的更高的电磁场(EMF),通常,其标准高度为1.8 m,其强度不超过电气人员允许的标准。在铁路路线与高压架空电源线(OPL)相交的地方,会产生由牵引网络和OPL产生的磁场干扰。这会导致强度增加以及EMF空间结构的复杂化。本文介绍了一种确定相交处产生的强度的方法,并针对在25或2x25 kV的TS与220 kV架空电力线以90度角相交的典型情况下执行的建模结果进行建模。计算所得电动势强度的算法包括以下步骤:在相位坐标中计算TN和OPL模式,其结果确定所有导线的电势和电流。计算电动势强度的垂直和水平分量;考虑可能的椭圆极化,计算交点处强度的振幅值。建模结果表明,在25 kV的牵引网络和220 kV的OPL的相交点处,磁场强度的振幅最大值达到83 A / m。电场的类似参数等于5.4 kV / m。对于2x25 kV牵引网络,这些值分别降低到32 A / m和4 kV / m。这项工作得到了“通过使用基于相位坐标的数学建模方法和手段提高配备智能电网设备的铁路供电系统中的电能质量和电磁安全质量”的资助。

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