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Consideration of Surface Relief to Model Electromagnetic Fields in Traction Networks

机译:对牵引网络中模型电磁场模拟电磁场的考虑

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The research presented in the paper is aimed at developing methods and tools for adequate consideration of surface relief when modeling electromagnetic fields in traction power supply systems. To accomplish this goal, we applied the technologies for the determination of operating conditions of the traction power supply system in phase coordinates. The technologies are based on the models of components represented by lattice equivalent circuits with fully-connected topology. These models and methods are implemented in the Fazonord software that ensures modeling of the operation of traction power supply systems of various types and determination of strengths of electromagnetic field (EMF) created by traction networks of these systems. To calculate the EMF strengths of the surface irregularities represented by such structures as embankments, cuttings and slopes, they were simulated by sets of earthed wires located on the boundary of a structure. The distances between the wires were taken to be much shorter than the distances from these wires to the observation point. The paper presents the calculation results for electromagnetic fields in the traction networks constructed along the routes characterized by uneven relief. The research demonstrates that the proposed methods enable the implementation of an effective computer technology for modeling electromagnetic fields, that makes it possible to take into account the surface irregularities. The results of modeling the specific relief features indicate that the differences with respect to the model of a flat ground surface can reach 60 percent for electric field and 54 percent for magnetic field.
机译:本文提出的研究旨在开发在牵引电源系统中的电磁场时足够考虑表面浮雕的方法和工具。为了实现这一目标,我们应用了在相位坐标中确定牵引电源系统的操作条件的技术。该技术基于具有完全连接拓扑的晶格等效电路表示的组件模型。这些模型和方法在Fazonord软件中实现,确保了各种类型的牵引电源系统的操作的建模和通过这些系统的牵引网络产生的电磁场(EMF)的强度的确定。为了计算由这种结构表示的表面不规则性的EMF强度作为堤防,切割和斜率,它们被位于结构边界的地接地线模拟。导线之间的距离比从这些导线到观察点的距离短得多。本文介绍了沿着释放特征的路线所构造的牵引网络中电磁场的计算结果。该研究表明,所提出的方法能够实现用于建模电磁场的有效计算机技术,这使得可以考虑表面不规则性。建模特定浮雕特征的结果表明,电场的电场和54%的电场可以达到扁平地面模型的差异。

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