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Real time prelocalization of underground single-phase cable insulation failure by using the sheath behavior at fault point

机译:利用故障点的护套行为对地下单相电缆绝缘破坏进行实时预定位

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摘要

This article presents a prelocalization approach of insulation faults affecting single-phase cables by using electrical measurements of voltage and current available in one substation. This approach is based on the theory of distributed parameters for modeling the faults to the ground. The specificity of this approach is the introduction of a resistance modeling the sheath-ground insulation allowing us to study the various types of faults to the ground (frankly and resistive). The fault distance and resistances are determined by two methods numerical and analytical. Many fault scenarios applied to the 150kV underground cable connecting HTB sub-stations of Tyna-Taparoura-Sidimansour in Sfax, show a good agreement between the two methods. A simulation of the global system using the software Simulink-SimPowerSystems of Matlab is carried out giving us the voltages and currents on the source side necessary to the execution of the developed methods and the validation of the obtained results.
机译:本文通过对一个变电站中可用的电压和电流进行电气测量,提出了一种影响单相电缆的绝缘故障的预定位方法。这种方法基于用于对地面故障建模的分布式参数理论。这种方法的特殊性是引入了一种模拟接地绝缘层的电阻,使我们能够研究接地的各种类型的故障(坦率和电阻性)。故障距离和电阻通过数值和解析两种方法确定。应用于Sfax的Tyna-Taparoura-Sidimansour的HTB变电站的150kV地下电缆的许多故障场景表明,这两种方法之间具有很好的一致性。使用Matlab的Simulink-SimPowerSystems软件对全局系统进行了仿真,为我们提供了执行已开发方法和验证所获得结果所必需的源侧电压和电流。

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