基于脉冲电压的电力电缆绝缘水树退化的研究与定位

Priya Selvamany, G. Varadarajan
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引用次数: 0

摘要

由于地下电力电缆的劣化机制,水树是地下电力电缆存在的一个严重问题。因此,通过模拟保温材料外表面和内表面的通风树来研究水树的影响越来越有意义。通风水树的存在是老化电缆常见的故障,导致电缆劣化。因此,在不同的绝缘生长水平下,精确模型使用有限元方法(FEM)强调水树。仍然需要诊断技术来估计电缆内存在的损坏程度。本文报道了脉冲电压在33kv交联聚乙烯(XLPE)绝缘电缆上应用诊断法的电力电缆电流情况,并以此作为仿真模型。因此,可以研究经水树反射的高频脉冲在电缆内的传播,并探索其传播速度。在不同的绝缘层生长水平上,模拟和分析计算了水树集总参数。因此,采用基于电缆电荷强度的水树检测方法,建立了相应的诊断方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Investigation and locating Water tree degradation in Power Cable Insulation based on Pulse Voltage
Water-tree is a serious problem in the underground power cables due to degradation mechanism. Therefore, it is progressively significant to study the effect of water-tree by modeling vented trees at the outer and inner surface of the insulation. The existence of a vented water tree is the common fault in aged cable leading to cable deterioration. Hence, the precise model emphasizes water trees using the Finite element method (FEM) under different levels of growth in insulation. Diagnostic techniques are still needed to enable the estimation of the level of damage present within a cable. This paper reported about the power cable current scenario of diagnostics method for pulse voltage application on 33 kV cross-linked polyethylene (XLPE) insulated cable used as a simulation model. Therefore, the propagation of high-frequency pulse within the cable that undergoes reflections from water trees could be investigated and its velocity of propagation was explored. The water tree lumped parameters are simulated and calculated analytically at different levels of growth across the insulation. Consequently, the diagnostics method developed by the way of the proper approach to detect water-tree based on charge intensity in electrical power cables.
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