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SDMF based interference rejection and PD interpretation for simulated defects in HV cable diagnostics

机译:基于SDMF的干扰抑制和PD解释,用于高压电缆诊断中的模拟缺陷

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摘要

Partial Discharge (PD) in cable systems causes deterioration and failure, identifying the presence of PD is crucial to Asset Management. This paper presents methods for interference signals rejection and for PD interpretation for five types of artificial defect in 11 kV ethylene-propylene rubber (EPR) cable. Firstly, the physical parameters of the artificial defects used for PD signal generation are introduced. Thereafter, the sample stress regime, PD testing and detection systems, including IEC 60270 measurement system and High Frequency Current Transformer (HFCT), are outlined. Following on, a novel Synchronous Detection and Multi-information Fusion (SDMF) based signal identification method is developed, to separate PD and interference signals within raw data. Finally, a comparative PD analysis of two detection systems is carried out and several characteristics of insulation related PD signals of EPR cables are reported. The SDMF based data pre-processing and the comparative PD activity analysis contribute to improvement of PD pattern recognition and assist in on-line PD monitoring systems.
机译:电缆系统中的局部放电(PD)会导致性能下降和故障,因此确定PD的存在对于资产管理至关重要。本文介绍了11 kV乙丙橡胶(EPR)电缆中五种类型的人工缺陷的干扰信号抑制方法和PD解释方法。首先,介绍了用于PD信号产生的人工缺陷的物理参数。此后,概述了样品应力状态,PD测试和检测系统,包括IEC 60270测量系统和高频电流互感器(HFCT)。随后,开发了一种新颖的基于同步检测和多信息融合(SDMF)的信号识别方法,以在原始数据中分离PD和干扰信号。最后,对两种检测系统的局部放电进行了比较分析,并报告了EPR电缆与绝缘相关的局部放电信号的若干特性。基于SDMF的数据预处理和比较PD活动分析有助于改善PD模式识别,并有助于在线PD监视系统。

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