Electrical Tree Growth Behavior Under AC and DC High Voltage in Power Cables

M. Saleh, S. Refaat, M. Olesz, H. Abu-Rub
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引用次数: 1

Abstract

This work investigates the impact of an applied AC and DC high voltage on the electrical tree behavior in extruded cross-linked polyethylene (XLPE) insulation based on simulation and experimental validation. Extensive partial discharge (PD) testing methods are being implemented for high voltage cables under AC voltage for monitoring their condition. However, these PD testing methods cannot be utilized for power cables under DC voltages. DC voltages is considered in this study because of the rising implementation of HVDC cables worldwide. Therefore, it is of paramount importance to study the PD behavior originating from defects under DC voltages. Hence, classifying and diagnosing the defects taking place becomes crucial. In this paper, a 3D finite element analysis (FEA)-based modeling is considered to study the electrical treeing behavior using an embedded needle electrode in the XLPE insulation. The experiment entails PD tests with different applied high DC voltages (2.5, 5, 10, 11, and 12 kV) to study the impact on the initiation of PDs and ultimately tree growth. PD measurements were also investigated under AC voltages (7.1, 9.9, 11.3, 12.7, 14.1, and 17 kV) to compare them with PD results obtained with the applied DC voltage. The time-resolved partial discharge (TRPD) patterns are acquired for classifying the severity of the defect present in the XLPE insulation.
交直流高压下电力电缆中树的生长特性
本研究基于仿真和实验验证,研究了施加交流和直流高压对挤压交联聚乙烯(XLPE)绝缘电气树行为的影响。为了监测高压电缆在交流电压下的状态,广泛的局部放电(PD)测试方法正在被应用。然而,这些PD测试方法不能用于直流电压下的电力电缆。由于高压直流电缆在世界范围内的普及,本研究考虑了直流电压。因此,研究直流电压下缺陷引起的局部放电行为具有重要意义。因此,对发生的缺陷进行分类和诊断变得至关重要。本文采用基于三维有限元分析(FEA)的建模方法研究了嵌套针电极在XLPE绝缘中的电树行为。本实验通过施加不同的高压直流电压(2.5、5、10、11和12 kV)进行局部放电试验,研究对局部放电起始和最终树木生长的影响。还研究了交流电压(7.1、9.9、11.3、12.7、14.1和17 kV)下的局部放电测量结果,并将其与施加直流电压下的局部放电结果进行比较。时间分辨局部放电(TRPD)模式是获得分类的严重程度的缺陷存在于XLPE绝缘。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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