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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Evaluation of relationship between residual charge signal and AC breakdown strength of water-tree degraded 22 to 77 kV classes XLPE cables removed from service using pulsed voltages
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Evaluation of relationship between residual charge signal and AC breakdown strength of water-tree degraded 22 to 77 kV classes XLPE cables removed from service using pulsed voltages

机译:评估残余水信号与交流电压击穿的水树退化的22至77 kV级XLPE电缆的失效电压之间的关系

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摘要

The authors have been developing a diagnostic method for water-tree degraded cross-linked polyethylene (XLPE) cables, in which pulsed voltages are used rather than the DC and AC voltages used in the conventional residual charge method. In this study, we first applied the proposed method to the diagnosis of water-tree degraded XLPE cables in classes from 22 to 77 kV, and successfully detected current signals related to water-tree degradation due to residual charges in the XLPE cables removed from service. Next, we investigated the relationship between the residual charge signal and the AC breakdown strength, and our results show that the correlation between the residual charge magnitude and the AC breakdown strength was weak, but the removed cables with a longer duration of the current signal related to water-tree degradation had a lower AC breakdown strength. Also, the ratio of the duration to the rise time of the applied pulsed voltage was strongly correlated with the AC breakdown strength. Therefore, we determined that this ratio can serve as a water-tree degradation index. Thirdly, we demonstrated the reason for this strong correlation using a simplified water tree model. Finally, to obtain greater sensitivity in current signal detection, we developed positive and negative pulse generators and confirmed that an increase in the applied voltage would increase the current signal detection sensitivity.
机译:作者已经开发出一种用于水树降解交联聚乙烯(XLPE)电缆的诊断方法,其中使用脉冲电压而不是常规残余充电方法中使用的DC和AC电压。在这项研究中,我们首先将所提出的方法用于诊断22至77 kV等级的水树退化XLPE电缆,并成功检测到由于服务中移除的XLPE电缆中的残留电荷而引起的与水树退化有关的电流信号。接下来,我们研究了残余电荷信号与交流击穿强度之间的关系,我们的结果表明残余电荷量与交流击穿强度之间的相关性较弱,但是移除的电缆与电流信号持续时间较长有关对水树的降解具有较低的交流击穿强度。另外,施加脉冲电压的持续时间与上升时间之比与AC击穿强度强烈相关。因此,我们确定该比率可以用作水树退化指数。第三,我们使用简化的水树模型演示了这种强相关性的原因。最后,为了在电流信号检测中获得更高的灵敏度,我们开发了正脉冲发生器和负脉冲发生器,并确认了施加电压的增加会增加电流信号检测的灵敏度。

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