基于贝叶斯网络优化算法的低压配电线路电弧高阻抗接地故障特征提取

IF 1.7 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS
Jing Sun
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引用次数: 0

摘要

为了准确提取低压配电线路电弧高阻抗接地的故障特征,判断低压配电线路弧高阻抗接地线的故障特征类型,提出了一种基于贝叶斯网络优化算法的低压配电线路圆弧高阻抗接地网故障特征提取方法。根据基于汤姆逊原理的电弧高阻抗接地故障模型,提取了电弧高阻抗故障中各传输信号的参数信息。通过基于组合滤波器的电弧高阻抗接地信号去噪方法,消除了电弧高阻抗故障时传输信号的噪声信息,提高了信号的纯度。采用基于贝叶斯网络优化算法的低压配电线路电弧高阻抗接地故障特征检测与识别方法,对去噪后的输电信号的异常特征进行故障特征检测和判断,完成故障特征提取。经过测试,该方法能够准确、实时地提取低压配电线路电弧高阻抗接地的故障特征,具有应用价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Feature extraction of arc high impedance grounding fault of low-voltage distribution lines based on Bayesian network optimisation algorithm

Feature extraction of arc high impedance grounding fault of low-voltage distribution lines based on Bayesian network optimisation algorithm

In order to accurately extract the fault features of arc high impedance grounding of low-voltage distribution lines and judge the fault feature types of arc high impedance grounding of low-voltage distribution lines, a fault feature extraction method for arc high impedance grounding of low-voltage distribution lines based on Bayesian network optimisation algorithm is proposed. According to the model of arc high impedance grounding fault based on Thomson’s principle, the parameter information of each transmission signal in arc high impedance grounding fault is extracted. Through the denoising method of arc high impedance grounding signal based on combined filter, the noise information of transmission signal in case of arc high impedance grounding fault is removed and the signal purity is improved. The detection and recognition method for fault characteristics of arc high impedance grounding of low-voltage distribution lines based on Bayesian network optimisation algorithm is used to detect and judge the fault characteristics of the abnormal characteristics of the denoised transmission signal, and complete the fault feature extraction. After testing, this method can accurately and real-time extract the fault characteristics of arc high impedance grounding of low-voltage distribution lines, and has application value.

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来源期刊
IET Cyber-Physical Systems: Theory and Applications
IET Cyber-Physical Systems: Theory and Applications Computer Science-Computer Networks and Communications
CiteScore
5.40
自引率
6.70%
发文量
17
审稿时长
19 weeks
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