Electromagnetic time reversal for online partial discharge location in power cables: Influence of interfering reflections from grid components

IF 1.4 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Antonella Ragusa, Peter A. A. F. Wouters, Hugh Sasse, Alistair Duffy, Farhad Rachidi, Marcos Rubinstein
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Abstract

In online single-sided partial discharge (PD) location, the measured PD reflection patterns are affected by the characteristics of all the components of the associated power network. This paper analyses the performance of a PD location method based on electromagnetic time reversal (EMTR) theory, when interfering reflections contribute to the transient signals emitted by the PD event. The topology analysed is formed from a ring main unit (RMU) in a medium voltage grid with mixed cross-linked polyethylene and paper-insulated lead-covered (PILC) cable sections. The PD reflection patterns, observed at the RMU, are disturbed by the reflections coming from the impedance discontinuities of the circuit and by the reflections coming from the cable ends of the PILC cables connected to the RMU. The simulated configuration is chosen such that classical location techniques tend to fail due to overlapping peaks and other signal distortion. This is because the classic techniques are based on identifying individual reflection peaks from which the PD source can be determined via differences in time of arrival. The numerical investigation shows that the accuracy of the EMTR-based location method is robust against these effects, achieving a PD localisation with an error less than the 0.1%. The results also show that the EMTR-based method can localise PDs using a PD monitoring point located somewhere along the network and not necessarily at the line termination.

Abstract Image

用于电力电缆局部放电在线定位的电磁时间反转:电网元件干扰反射的影响
在在线单侧局部放电(PD)定位中,测得的局部放电反射模式会受到相关电力网络所有组件特性的影响。本文分析了基于电磁时间反转(EMTR)理论的局部放电定位方法在干扰反射对局部放电事件发出的瞬态信号有影响时的性能。所分析的拓扑结构是由中压电网中的环形主单元(RMU)与混合交联聚乙烯和纸绝缘铅包(PILC)电缆部分组成的。在 RMU 观察到的 PD 反射模式受到来自电路阻抗不连续性的反射以及来自连接 RMU 的 PILC 电缆端部的反射的干扰。所选择的模拟配置会导致传统定位技术因峰值重叠和其他信号失真而失效。这是因为传统技术基于识别单个反射峰,通过到达时间的差异确定 PD 源。数值研究表明,基于 EMTR 的定位方法的准确性能够抵御这些影响,实现误差小于 0.1% 的 PD 定位。结果还表明,基于 EMTR 的方法可以使用位于网络某处的 PD 监测点来定位 PD,而不一定要在线路终端。
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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来源期刊
Iet Science Measurement & Technology
Iet Science Measurement & Technology 工程技术-工程:电子与电气
CiteScore
4.30
自引率
7.10%
发文量
41
审稿时长
7.5 months
期刊介绍: IET Science, Measurement & Technology publishes papers in science, engineering and technology underpinning electronic and electrical engineering, nanotechnology and medical instrumentation.The emphasis of the journal is on theory, simulation methodologies and measurement techniques. The major themes of the journal are: - electromagnetism including electromagnetic theory, computational electromagnetics and EMC - properties and applications of dielectric, magnetic, magneto-optic, piezoelectric materials down to the nanometre scale - measurement and instrumentation including sensors, actuators, medical instrumentation, fundamentals of measurement including measurement standards, uncertainty, dissemination and calibration Applications are welcome for illustrative purposes but the novelty and originality should focus on the proposed new methods.
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