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Bayesian Selectivity Technique for Earth Fault Protection in Medium-Voltage Networks

机译:贝叶斯选择性技术在中压电网接地故障保护中的应用

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摘要

In Nordic countries, distribution networks are unearthed or compensated. Earth faults, particularly in compensated networks, provide fault currents that are low compared to the load currents. Identification of the faulty feeder is therefore difficult. A preliminary description of discrete wavelet transform (DWT)-Bayesian selectivity technique was introduced in reference 1 to identify the faulty feeder. It was dependent on a conditional probabilistic method applied to transient features extracted by using the DWT. However, a practical setting for this technique has not yet been presented. Furthermore, its sensitivity is limited to 1.5-k$Omega$ fault resistances, and is further reduced to 170 $Omega$ when considering current transformer and network noise. In this paper, the ratio between the absolute sums of the DWT detail level from each feeder is used as an input to the conditional probability approach, providing an enhanced selectivity decision. This input contributes to discriminating the faulty feeder during high resistance faults. The relay setting is introduced as a function of the number of feeders and their characteristic impedances, as the proposed algorithm is dependent on the discharge's initial transients. The performance is evaluated taking into account current-transformer and network noises. A digital implementation is experimentally verified by using two digital signal processing boards.
机译:在北欧国家,没有发掘或补偿分销网络。接地故障,特别是在补偿网络中,提供的故障电流低于负载电流。因此,很难确定故障的进纸器。在参考文献1中对离散小波变换(DWT)-贝叶斯选择性技术进行了初步描述,以识别故障馈线。它取决于应用于DWT提取的瞬态特征的条件概率方法。但是,尚未提出该技术的实际设置。此外,其灵敏度仅限于1.5kΩ的故障电阻,考虑电流互感器和网络噪声时,其灵敏度进一步降低至170Ω。在本文中,来自每个馈线的DWT详细信息级别的绝对总和之间的比率用作条件概率方法的输入,从而提供了增强的选择性决策。该输入有助于在高阻故障期间识别出故障的馈线。继电器设置是根据馈线数量及其特性阻抗而引入的,因为所提出的算法取决于放电的初始瞬变。在评估性能时要考虑电流互感器和网络噪声。通过使用两个数字信号处理板,对数字实现进行了实验验证。

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