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Fast S-transform for fault line selection in distribution network system

机译:配电网系统中故障选线的快速S变换

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The current of the distribution networks under 66kV is widely operating in small current grounding mode. The problem of extracting the fault feature in each line would be quite difficult due to the short duration of the transient zero sequence current with the non-stationary and non-linear characteristics when the single-phase-to-ground fault occurs in the system. Therefore, a novel method of single-phase-to-ground fault line selection for small current based on Fast S-transform (FST) is developed in this paper. Firstly, FST is presented to transform the transient electric current signal in each feeder, after that the one-dimension modulus and phase angle value can been obtained. Then, the feeder with the largest energy value calculated by the modulus obtained above is selected as the alternative possible fault line. Finally, line failure or bus failure can been determined by evaluating the difference of the phase angle between the fault line and the comparison line that has been selected from the non-alternative feeders before. The results of the simulative and experimental circuits reveal that the proposed method using FST can avoid the influence of neural point grounding type. Additionally, the method of line selection is quite accurate and real-time.
机译:66kV以下配电网的电流在小电流接地模式下广泛运行。当系统中发生单相接地故障时,由于具有非平稳和非线性特性的瞬态零序电流的持续时间短,因此提取每条线路中的故障特征的问题将非常困难。因此,本文提出了一种基于快速S变换(FST)的小电流单相接地故障选线方法。首先,提出了FST对每个馈线中的瞬态电流信号进行变换,然后获得一维模量和相角值。然后,将通过上述求得的模量计算出的最大能量值的馈线选为可能的故障线路。最后,可以通过评估故障线和之前从非替代馈线中选择的比较线之间的相角之差来确定线路故障或母线故障。仿真和实验电路的结果表明,所提出的使用FST的方法可以避免神经点接地类型的影响。此外,线路选择的方法非常准确且实时。

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