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Single-phase-to-ground fault feeder detection based on transient current and wavelet packet

机译:基于暂态电流和小波包的单相接地故障馈线检测

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Single-phase-to-ground fault is the most frequently occurred short-circuit fault in distribution network, and it is urgent to develop new methods to detect fault feeder correctly. The paper compares the fault-feeder selection theories using transient signals with those of using steady signals, and the application of transient signal is emphasized. By analyzing the characteristics of the Peterson-coil-grounded system, the paper proposes a novel algorithm to select fault feeder based on the transient signals and wavelet packet. It records the post-fault transient zero-sequence current of each feeder, and wavelet packet is used to extract the supply fundamental frequency and high frequency components. Finally the current and its components are used to detect fault feeder. This method is accurate and adaptive for the Peterson-coil-grounded system. Case study validates the effectiveness of the new algorithm for various fault modes in neural ineffectively grounded systems.
机译:单相对地故障是分销网络中最常发生的短路故障,迫切需要开发新方法来正确检测故障送料器。本文将故障馈送器选择理论与使用稳态信号的瞬态信号进行比较,并强调瞬态信号的应用。通过分析彼得松线圈接地系统的特性,本文提出了一种基于瞬态信号和小波包选择故障进料器的新算法。它记录每个进料器的故障后瞬态零序电流,小波包用于提取供电基频和高频分量。最后,使用电流及其组件来检测故障馈线。这种方法对于Peterson-Coil接地系统准确而自适应。案例研究验证了神经无效接地系统中各种故障模式的新算法的有效性。

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