冲击电压作用下电缆介电响应特性及绝缘状态的评价

Wei Bai, Guangbin Chu, Jianqi Li, Tengfei Li, Q. Qu, Shaohe Wang, Yao Fu
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引用次数: 1

摘要

针对传统频域谱(FDS)技术在电缆绝缘测试中的不足,提出了一种基于脉冲电压下电缆介电响应特性的电缆绝缘状态评估新方法,并对其进行了理论和实验验证。通过分析冲击信号的频谱特性和绝缘介质的极化特性,论证了用冲击介质谱法评估绝缘状态的可行性;利用电磁瞬变程序(EMTP)模拟了不同水树长度电缆的介电响应规律,从理论上验证了该方法的可行性;通过水树加速老化培养不同水树长度的短索试件,搭建冲击实验平台进行实验测试。实验结果表明:利用1000 Hz以下的介电频谱可以有效识别不同老化程度的短电缆样品,利用复电容虚部分频谱可以有效识别长电缆样品,判断是否存在局部老化缺陷。研究结果表明,冲击下的介质响应特性可以有效地评价电缆的绝缘老化状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of the Dielectric Response Characteristics and Insulation State of Cables Under Impulse Voltage
To address the shortcomings of the traditional frequency domain spectroscopy (FDS) in cable insulation testing, a new method is proposed to evaluate the cable insulation status based on the dielectric response characteristics of cables under impulse voltage, and its theoretical and experimental validation is carried out. By analyzing the spectral characteristics of the shock signal and the polarization characteristics of the insulation medium, the feasibility of the shock dielectric spectrum method of insulation state assessment is demonstrated; the dielectric response law of cables with different water tree lengths is simulated by using electromagnetic transient program (EMTP), and the feasibility of the method is verified theoretically; the short cable specimens with different water tree lengths are cultivated through the water tree accelerated aging, and an impact experimental platform was built for experimental testing. The experimental results show that: the short cable samples with different degrees of aging can be effectively identified by using the dielectric-frequency spectrum below 1,000 Hz, and the long cable can be effectively determined by using the complex capacitance imaginary part-frequency spectrum to determine whether there are local aging defects. The results of the study show that the dielectric response characteristics under shock can effectively evaluate the insulation aging status of cables.
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