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High impedance fault line selection method for resonant grounding system based on wavelet packet analysis

机译:基于小波包分析的谐振接地系统高阻抗断裂线选择方法

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Distribution network resonant grounding system of high resistance grounding fault handling has been a research focus, due to the uncertainty of the weak fault current, fault occurrence time, affected by the circuit parameters and random factors such as reason, has been a lack of reliable high resistance grounding fault line selection method. According to the fault characteristics of single phase high impedance grounding of resonant grounding system, wavelet packet analysis and energy entropy are combined to analyze the transient zero sequence current, set the energy entropy be the transient characteristic of single phase high resistance ground fault, so we can analyze the uncertainty of transient fault quantitatively. Analyzing the law of energy entropy distribution of zero sequence current transient signal, and defining the mean energy entropy is to calculate the complexity of signal energy, then proposing a fault model classification method based on average energy entropy. Single-phase high resistance earth fault can be divided into 2 fault types, and according to the different fault types, using different algorithms for fault line selection, finally use simulation data to prove the correctness and feasibility of the method.
机译:配电网络谐振接地系统的高电阻接地故障处理已经是一项研究重点,由于弱故障电流的不确定性,受电路参数影响的故障发生时间和因素,如原因,已经缺乏可靠的高电平电阻接地故障线选择方法。根据谐振接地系统的单相高阻抗接地的故障特性,组合小波分组分析和能量熵分析瞬态零序电流,设定能量熵是单相高电阻接地故障的瞬态特性,所以我们可以定量分析瞬态故障的不确定性。归零归零电流瞬态信号的能量熵分布规律,定义平均能熵是计算信号能量的复杂性,然后提出基于平均能量熵的故障模型分类方法。单相高电阻接地故障可分为2个故障类型,并根据不同的故障类型,使用不同的算法进行故障行选择,最后使用模拟数据来证明方法的正确性和可行性。

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