Experiences with diagnostics on complete in-service MV cable feeders

Peter C. J. M. van der Wielen Kema, E. Steennis
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引用次数: 4

Abstract

By using an on-line continuous condition monitoring system, many problems in cable connections can be detected before leading to an outage. The system used for the experiments in this paper is capable of detecting and locating weak spots in complete cable feeders, continuously and while the cable remains on-line, by using only two sensors for the complete cable connection. The system uses partial discharges (PDs) that originate from weak spots in the cable as its diagnostic principle. For MV cables, joints en terminations, detection of partial discharges is proven to be a reliable method. However, this statement is only valid if the PDs are measured correctly and interpreted reliably. The paper summarizes the measuring principles that guarantee the correct detection of partial discharges. The main part of the paper discusses field experiences and results. The system was designed for application on existing, sometimes old, cable connections. However, some interesting phenomena have been observed in new cable feeders too. This, together with the basic principles behind the technology, makes the system extremely applicable in the majority of practical field situations. From the first field experiences important lessons have been learned to increase the reliability of the interpretation. Partial discharge signals are being measured, but risks on failures are produced.
具有在役中压电缆馈线的诊断经验
通过使用在线连续状态监测系统,在电缆连接能被探测到的许多问题导致停机。本文实验中使用的系统能够连续检测和定位完整电缆馈线中的弱点,当电缆保持在线状态时,整个电缆连接仅使用两个传感器。该系统以电缆薄弱部位产生的局部放电(pd)作为诊断原理。关节在终止妊娠,MV电缆局部放电检测是被证明是一个可靠的方法。然而,这种说法只有在pd被正确测量和可靠解释的情况下才有效。本文综述了测量原则,保证正确的局部放电检测。论文的主要部分论述了现场经验和成果。该系统设计用于现有的(有时是旧的)电缆连接。然而,在新的电缆馈线中也观察到一些有趣的现象。加之背后的基本原理技术,使得系统非常适用于大多数的实际现场情况。从最初的实地经验中,我们吸取了重要的教训,以提高解释的可靠性。目前正在测量局部放电信号,但产生了故障风险。
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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