On-line partial discharges monitoring of high voltage XLPE / fluid-filled transition joints

L. Testa, A. Cavallini, G. Montanari, A. Makovoz
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引用次数: 3

Abstract

Partial Discharge (PD) measurement is an effective method to detect degradation processes in medium and high voltage equipment. As an example, after-laying PD test have become mandatory in many countries as a commissioning test for high voltage cable systems. This type of test can assess the presence of defects just after installation, but thermal cycling, electrical and thermal stress as well as contamination can lead to the onset of defects at a later time. To cope with defects arising during operation, the key is PD monitoring (offline tests are often too costly in terms of equipment, personnel and loss of revenues). This paper presents the application a of permanent PD monitoring system based on a Ultra-Wide band (UWB) detector to high voltage transition joints linking old fluid-filled cables with new XLPE cable lines. These cable accessories are highly critical because of the complexity of their insulation system and the fact they are realized on field (uncontrolled environment). The innovative monitoring scheme fully exploits the benefits coming from using a UWB detector, i.e., selective tracking of PD based on PD pulse characteristics. This approach enables to trend various PD sources separately, highlighting those that are associated with degradation phenomena within the insulation system. This approach will be unraveled and demonstrated by monitoring data coming from two cable lines.
高压XLPE /充液过渡接头局部放电在线监测
局部放电(PD)测量是检测中高压设备劣化过程的有效方法。例如,敷设后PD测试已成为许多国家高压电缆系统的强制性调试测试。这种类型的测试可以在安装后评估缺陷的存在,但是热循环、电和热应力以及污染可能导致在稍后的时间出现缺陷。要应对运行过程中出现的缺陷,关键是PD监控(离线测试在设备、人员和收入损失方面往往成本过高)。本文介绍了基于超宽带(UWB)探测器的永久PD监测系统在新旧交联聚乙烯电缆高压过渡接头中的应用。由于其绝缘系统的复杂性以及在现场(非受控环境)实现的事实,这些电缆附件非常关键。创新的监测方案充分利用了使用超宽带检测器的好处,即基于PD脉冲特性对PD进行选择性跟踪。这种方法能够分别对各种PD源进行趋势分析,突出显示那些与绝缘系统内的退化现象相关的PD源。这种方法将通过监测来自两条电缆线路的数据来展开和演示。
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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