Study on Partial Discharge Characteristics of Scratched EPR Cables Based on Pulse Sequence Analysis

Ke Wang, Enxin Xiang, Limeng Xing, Xianping Zhao, Hongwen Liu, Jisheng Huang
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Abstract

The partial discharge of ethylene-propylene rubber cable insulation due to scratch defects may affect the normal operation of the cable. Based on the principle of pulse current method, the EPR cable sample discharge of simulated scratch defects is measured every 20 min at 35 kV, and at the same time, partial discharge pulse time domain spectrum is collected. The time domain characteristics of discharge pulse with discharge durations of 60 min, 140min, 220min and 300 min were analyzed separately. The discharge pulse oscillation wave extracted from the spectrums were analyzed, and the positive and negative pulse fall time $\mathrm{T}_{r}+(-)$ of each pulse oscillation wave was analyzed and rise time $\mathrm{T}_{f}+(-)$, pulse width $\mathrm{T}_{\mathrm{w}}+(-)$, duration Ti, pulse peak absolute value p, etc., respectively calculate the difference in the same characteristic quantity of the oscillation wave at different discharge times. In addition, the starting frequency, cutoff frequency and rms bandwidth of the oscillating wave power spectrum are studied. The results show that during a power frequency cycle, as the discharge time increases, the discharge pulse of the positive half cycle gradually shifts to the left; the oscillation attenuation rate is faster, and the discharge intensity is continuously enhanced; $\mathrm{T}_{r+}, \mathrm{T}_{\mathrm{w}+}, \mathrm{T}\iota$ and p have lager degrees of difference in different discharge times; the initial frequency, cutoff frequency and rms bandwidth of the power spectrum increase with the increase of discharge time, and the maximum increment is from 140 min to 220 min. Comprehensive analysis of the partial discharge pulse characteristics provides a basis for further evaluation of the EPR cable operating state.
基于脉冲序列分析的划伤EPR电缆局部放电特性研究
乙丙橡胶电缆绝缘因划伤缺陷而局部放电,可能会影响电缆的正常工作。基于脉冲电流法原理,在35kv条件下,每20min测量一次模拟划伤缺陷的EPR电缆样品放电,同时采集局部放电脉冲时域谱。分别分析了放电时间为60 min、140min、220min和300 min的放电脉冲时域特性。对从光谱中提取的放电脉冲振荡波进行分析,分析每个脉冲振荡波的正负脉冲下降时间$\mathrm{T}_{r}+(-)$和上升时间$\mathrm{T}_{f}+(-)$、脉宽$\mathrm{T}_{\mathrm{w}}+(-)$、持续时间Ti、脉冲峰值绝对值p等,分别计算不同放电时间下振荡波相同特征量的差值。此外,还研究了振荡波功率谱的起始频率、截止频率和有效值带宽。结果表明:在一个工频周期内,随着放电时间的增加,正半周期的放电脉冲逐渐向左偏移;振荡衰减速度更快,放电强度不断增强;$\mathrm{T}_{r+}、\mathrm{T}_{\mathrm{w}+}、\mathrm{T}\iota$和p在不同放电次数下差异程度较大;功率谱的起始频率、截止频率和有效值带宽随着放电时间的增加而增加,最大增量从140 min增加到220 min。对局部放电脉冲特性的综合分析,为进一步评价EPR电缆的工作状态提供了依据。
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