Multiscale nonlinear dynamic characteristics of leakage current for monitoring polymer insulators in salt-fog conditions

Yong Liu, B. Du, Nan Chen, Z. Yin
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Abstract

Based on the present investigation of leakage current for evaluating and monitoring outdoor insulators, the multiscale nonlinear technique is proposed to analyze the dynamic characteristics of leakage current through the artificial contamination experiments. Contamination tests were conducted in a laboratory by employing heavy salt fog without the deposition of non-soluble contamination. Based on the corresponding relationship between the leakage current and the behavior in heavy-fog conditions, the temporal series of leakage current are extended to two phase space by using a phase-space reconstructed method. In accordance with the dynamic behaviors on the insulator surface, the multiscale entropy of leakage current is obtained to investigate the underlying nonlinear characteristics in relation with the variation of contamination degree, ambient temperature and relative humidity. Associated with the quantitative analysis of mutiscale technique, the results can be helpful to improve the accuracy of insulator monitoring for reducing the accidents.
盐雾条件下聚合物绝缘子泄漏电流监测的多尺度非线性动态特性
针对目前室外绝缘子泄漏电流评价与监测的研究现状,提出了多尺度非线性技术,通过人工污染实验分析泄漏电流的动态特性。污染试验在实验室中进行,采用重盐雾,没有不溶性污染的沉积。基于泄漏电流与重雾条件下行为的对应关系,采用相空间重构方法将泄漏电流的时间序列扩展到两相空间。根据绝缘子表面的动态特性,得到了泄漏电流的多尺度熵,研究了泄漏电流随污染程度、环境温度和相对湿度变化的非线性特性。结合多尺度技术的定量分析,有助于提高绝缘子监测的准确性,减少事故的发生。
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