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Localization of Deviations in Cable Geometry Using FDA Fault Localization Method

机译:使用FDA故障定位方法定位电缆几何形状中的偏差

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Frequency domain analysis (FDA) is a possible method to detect, classify, and localize the faults in cable systems. This method extracts the frequency response of the cable by applying a sweep voltage. Principle of this method is based on transmission line theory and could detect changes in the core, conducting screen, semi-conductor layers, and especially changes in the insulation bulk. Changes in the insulation of a cable alters its electrical parameters, which leads to a deviation in the frequency response of the damaged cable compared to the response of a healthy cable system. It is common to consider faults in cables just as a resistive fault, but in reality, most of the faults in cables cause a deviation in geometry of the cable at the fault position. This can be interpreted as a change in the capacitance, inductance, and conductance of the cable. These variations in the cable parameters must be taken into account to localize the faults precisely. In this contribution, the sensitivity of the FDA method to the abnormalities and deviations in the cable geometry is demonstrated. Several measurements on a long MV cable were performed to examine the sensitivity of the FDA method in real cases. The used MV cable is damaged and a small part of its geometry is slightly deviated, which could not be detected using common fault localization methods, e.g., time domain reflectometry (TDR). The FDA method however, was applied and could successfully detect and localize the change in the cable geometry.
机译:频域分析(FDA)是检测,分类和定位电缆系统中故障的一种可能方法。该方法通过施加扫描电压来提取电缆的频率响应。该方法的原理基于传输线理论,可以检测铁心,导电屏蔽层,半导体层的变化,尤其是绝缘体的变化。电缆绝缘的变化会改变其电气参数,与正常电缆系统的响应相比,这会导致受损电缆的频率响应出现偏差。通常将电缆中的故障视为电阻性故障,但实际上,电缆中的大多数故障都会导致电缆在故障位置处的几何形状出现偏差。这可以解释为电缆电容,电感和电导率的变化。必须考虑电缆参数的这些变化,以精确地定位故障。在此贡献中,证明了FDA方法对电缆几何形状异常和偏差的敏感性。在长的MV电缆上进行了几次测量,以检查FDA方法在实际情况下的灵敏度。用过的MV电缆已损坏,并且其几何形状的一小部分略有偏离,这是使用常见的故障定位方法(例如时域反射仪(TDR))无法检测到的。但是,采用了FDA方法,可以成功地检测和定位电缆几何形状的变化。

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