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Series Arc Fault Detection Using Novel Signal Processing Technique

机译:使用新型信号处理技术的串联电弧故障检测

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A low current electric fault can be considered as a potentially hazardous phenomenon typically caused by loose connections, damaged wiring or degrading insulation in a power distribution system which can create high intensity heat capable of igniting the surrounding material such as curtains, wood framing or insulation. It can have detrimental effects on the electrical equipment also and can cause loss of property and life. To be able to develop an algorithm which can detect such low current electrical arc faults, it is imperative to investigate the behavior and characteristics of the current signal. Also, advancement in signal processing has enabled viable solutions for the reliable detection of low current faults. A detection algorithm for such faults has been proposed which is capable of differentiating fault condition from loads causing similar current signatures under normal operating conditions. This has become more common as we use a greater array of electronic appliances at our homes.The presence of series arcing causes imbalance in magnitude as well as frequency content of current in the power line. The paper is intended to explore signal processing approach by analysing power frequency and high frequency noise separately during series arc faults and also investigate the effectiveness of detection approach for a variety of loads. The occurrence of faults will be verified by using the experimental data for a variety of loads and compared with the technique present.
机译:低电流电气故障可被认为是潜在的危险现象,通常是由配电系统中的松动连接,损坏的接线或绝缘性能下降所引起的,该配电系统会产生高强度的热量,从而能够点燃周围的材料,如窗帘,木框架或绝缘材料。它也会对电气设备产生有害影响,并可能导致财产损失和生命损失。为了能够开发出一种能够检测出这种低电流电弧故障的算法,必须研究电流信号的行为和特性。此外,信号处理的进步为可靠检测低电流故障提供了可行的解决方案。已经提出了用于这种故障的检测算法,该算法能够在正常工作条件下将故障条件与引起相似电流信号的负载区分开。随着我们在家庭中使用更多的电子设备,这种情况变得越来越普遍。串联电弧的存在会导致电力线中电流的幅度和频率含量不平衡。本文旨在通过分别分析串联电弧故障期间的电源频率和高频噪声来探索信号处理方法,并探讨针对各种负载的检测方法的有效性。将通过使用各种负载的实验数据来验证故障的发生,并与现有技术进行比较。

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