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Fault diagnosis and location of electrified railway grounding grids based on intelligent algorithm

机译:基于智能算法的电气化铁路接地网的故障诊断与位置

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摘要

Faults in electrified railway grounding grids can lead to significant surface potential rise, which threatens railway transportation and operation security. In order to efficiently diagnose the grounding status of the grounding grid and locate the fault location, this paper firstly presents the development of a mathematical model to reveal the earth surface potential distribution of grounding grids. Furthermore, a simulation model is built specifically for this study using CDEGS software to calculate the earth surface potential distribution of grounding grids under fault conditions. The simulation model has been used to validate the developed mathematical model by a comparison study. Finally, an intelligent algorithm based on grey incidence degree and fuzzy theory is proposed. This algorithm facilitates the fault condition diagnosis and the fault conductor position location. Using the fault condition data calculated by the simulation model, a few common grounding grids' fault conditions are diagnosed and located effectively by the proposed method. The results identify that the proposed method can ensure the safe operation of the traction substation.
机译:电气化铁路接地网格中的故障可能导致显着的表面潜在升高,这威胁到铁路运输和操作安全性。为了有效地诊断接地网格的接地状态并定位故障位置,本文首先提出了一种数学模型的发展,以揭示接地网格的地球表面电位分布。此外,使用CDEGS软件专门针对该研究建立了模拟模型,以计算故障条件下接地网格的地球表面电位分布。仿真模型已被用于通过比较研究验证开发的数学模型。最后,提出了一种基于灰色入射度和模糊理论的智能算法。该算法有助于故障状况诊断和故障导体位置位置。使用由仿真模型计算的故障条件数据,通过所提出的方法诊断出一些公共接地网格的故障条件并有效地定位。结果确定所提出的方法可以确保牵引变电站的安全操作。

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