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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Guarding MV cables on-line: With travelling wave based temperature monitoring, fault location, PD location and PD related remaining life aspects
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Guarding MV cables on-line: With travelling wave based temperature monitoring, fault location, PD location and PD related remaining life aspects

机译:在线保护中压电缆:基于行波的温度监控,故障定位,局部放电位置和局部放电相关的剩余寿命方面

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摘要

On-line partial discharge (PD) detection and location has proven to be a valuable tool for assessing the condition of medium-voltage (MV) power cables in service. A few advances are discussed in this paper. It is of importance to know all factors affecting PD activity in order to judge its severity. Cable temperature, more specifically its variation due to load cycling, is one key parameter. From the variation of the signal propagation velocity along the cable it is shown that the temperature can be monitored within one degree centigrade accuracy. The PD activity was found to respond upon temperature cycling caused by load variation. Moreover, data gathered from years of field experience has led to more insight in the predictability of upcoming faults based on (trends in) PD activity. It is possible now to identify the time between the moment partial discharges appear (or reach a certain level) and a final breakdown for different types of cable insulation. Occasionally, cable faults occur without being preceded by PD activity. For distribution network operators, a quick location of a MV cable fault, either a direct complete fault or a self-healing (or intermittent) fault, will contribute to reduce the outages both in duration and frequency. The earlier applied PD location technique is extended to capture also faults based on first arrival of the associated transients. This fault pinpointing is possible for any MV power cable type within 1% of the cable length, independent of the network grounding and whether a fault is a permanent one or a self-healing one. This paper presents the various techniques and results from test cases and a real captured field fault.
机译:在线局部放电(PD)检测和定位已被证明是评估使用中的中压(MV)电力电缆状况的宝贵工具。本文讨论了一些进展。了解影响PD活动的所有因素以判断其严重性很重要。电缆温度,更具体地说是由于负载循环而引起的变化,是一个关键参数。从沿着电缆的信号传播速度的变化可以看出,温度可以在一摄氏度的精度范围内进行监控。发现PD活性对负载变化引起的温度循环有响应。此外,从多年的现场经验中收集的数据已经使基于PD活动(趋势)的即将发生的故障的可预测性有了更多的了解。现在可以确定出现局部放电(或达到一定水平)的时刻与不同类型的电缆绝缘层最终击穿之间的时间。有时,电缆故障不会在PD活动之前发生。对于配电网络运营商而言,中压电缆故障的快速定位(直接的完全故障或自愈(或间歇性)故障)将有助于减少持续时间和频率的中断。早期应用的PD定位技术已扩展为还可以基于关联瞬态的首次到达来捕获故障。在不超过网络接地以及故障是永久性故障还是自愈性故障的情况下,对于长度不超过电缆长度1%的任何MV电力电缆类型,都可以进行这种故障定位。本文介绍了测试案例和实际捕获的现场故障的各种技术和结果。

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