分布参数和集总参数杂散电流模型的比较

Fabio Fichera, A. Mariscotti, A. Ogunsola, L. Sandrolini
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引用次数: 12

摘要

直流电气化牵引系统是杂散电流的潜在来源,可能会腐蚀内部和外部金属结构和装置。杂散电流强度取决于几个因素(如牵引电流、轨道绝缘、混凝土垫层和桥墩电阻),在任何模型中估计杂散电流都需要考虑这些因素。在这种预测模型中,均匀或多层土壤的影响同样重要。在实践中,已经建立了许多模型来研究铁路杂散电流现象;根据所使用的参数模型的不同,这些模型可分为分布参数模型和块参数模型。本文对两种模型进行了比较,以突出两种方法之间的差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of distributed and lumped parameters stray current models
DC electrified traction systems are a potential source of stray current, that may corrode both internal and external metal structures and installations. The stray current intensity depends on several factors (such as traction current, rail insulation, concrete mat and pier resistance) that need to be accounted for in any model for the estimation of stray current. The effect of an uniform or multilayer soil in such predictive model is of equal importance. In practice, there are numerous models that have been developed to investigate railway stray current phenomena; these models can be categorized into two - namely distributed parameter model and lump parameter model - based on the parameter model used. In this paper, both models are compared to highlight the differences between both methods.
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