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A novel selectivity technique for high impedance arcing fault detection in compensated MV networks

机译:补偿MV网络中用于高阻抗电弧故障检测的新选择性技术

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摘要

In this paper, the initial transients due to arc reignitions associated with high impedance faults caused by leaning trees are extracted using discrete wavelet transform (DWT). In this way, the fault occurrence is localized. The feature extraction is carried out for the phase quantities corresponding to a band frequency 12.5-6.25 kHz. The detection security is enhanced because the DWT corresponds to the periodicity of these transients. The selectivity term of the faulty feeder is based on a novel technique, in which the power polarity is examined. This power is mathematically processed by multiplying the DWT detail coefficients of the phase voltage and current for each feeder. Its polarity identifies the faulty feeder. In order to reduce the computational burden of the technique, the extraction of the fault features from the residual components is examined. The same methodology of computing the power is considered by taking into account the residual voltage and current detail coefficients where the proposed algorithm performs best. Test cases provide evidence of the efficacy of the proposed technique.
机译:在本文中,使用离散小波变换(DWT)提取了与倾斜树引起的高阻抗故障相关的电弧再燃引起的初始瞬变。这样,故障发生就可以定位了。对于对应于12.5-6.25 kHz频带频率的相位量执行特征提取。由于DWT对应于这些瞬变的周期性,因此增强了检测安全性。故障馈线的选择项基于一种新颖的技术,其中检查了电源极性。通过将每个馈线的相电压和电流的DWT详细系数相乘,可以在数学上处理此功率。其极性可识别出故障的进纸器。为了减轻该技术的计算负担,研究了从残余分量中提取故障特征的方法。通过考虑所提出算法表现最佳的残余电压和电流细节系数,可以考虑计算功率的相同方法。测试案例提供了所提出技术有效性的证据。

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