The nonlinear dielectric response of water tree degradation in a medium voltage power cable

N. Hussain, N. M. Nor, M. F. Abdullah, K. Ashraf, Z. A. Baloch, S. K. Bizanjo
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Abstract

Medium voltage (MV) cross linked polyethylene (XLPE) insulated power cables are being used in electrical power distribution system networks throughout the world. Deterioration like voids, cracks, delimitation, protrusions and contaminants in the cable insulation may initiate water tree, electrical tree and partial discharge. Water treeing is the main cause of insulation failure in MV power cables. The nonlinear dielectric response of water tree generates harmonics in the AC loss current. This paper presents a detailed study of the characterization of XLPE cable insulation. The morphological study of XLPE cable samples has been carried out by using the Scanning Electron Microscope (SEM) and the chemical analysis has been carried out by using Fourier Transform Infrared spectroscopy (FTIR). The MATLAB/SIMULINK program has been used to model and simulate degradation in the power cable due to water tree. This model is simulated with supply frequencies at 50 Hz, 100 Hz and 150 Hz. The 3rd harmonic current has been recorded from the total current flowing through the cable insulation. The generated harmonics have a good relationship with degradation caused by water tree.
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中压电力电缆中水树退化的非线性介电响应
中压交联聚乙烯(XLPE)绝缘电力电缆在世界各地的配电系统网络中得到广泛应用。电缆绝缘中的空洞、裂缝、划界、突出和污染物等劣化可能引发水树、电树和局部放电。水树是中压电力电缆绝缘失效的主要原因。水树的非线性介电响应在交流损耗电流中产生谐波。本文对交联聚乙烯电缆绝缘特性进行了详细的研究。利用扫描电子显微镜(SEM)对XLPE电缆样品进行了形貌研究,并用傅里叶变换红外光谱(FTIR)对其进行了化学分析。利用MATLAB/SIMULINK软件对电力电缆的水树退化问题进行了建模和仿真。该模型在50hz, 100hz和150hz的电源频率下进行了仿真。从流经电缆绝缘的总电流中记录了三次谐波电流。产生的谐波与水树引起的退化有很好的关系。
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