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High Impedance Grounding Fault Detection in Resonance Grounding System Based on Nonlinear Distortion of Zero-sequence Current

机译:基于零序电流非线性失真的谐振接地系统高阻抗接地故障检测

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When the high-impedance grounding fault (HIGF) occurs in the resonant grounding system, the fault current is weak, and the traditional relay protection device cannot identify and remove the fault reliably. A HIGF detection method based on nonlinear distortion characteristics of zero-sequence current is proposed in this paper. When a HIGF occurs, the zero-sequence current waveform is distorted near the zero-crossing point; hence the linear correlation coefficient between the zero-sequence current and the time is small, while the distortion degree is big. For the zero-sequence current caused by other reasons, its waveform is close to a straight line near the zero-crossing point, and the linear correlation coefficient is big and the distortion degree is small. Based on this feature, the identification criterion of HIGF is given. Moreover, the zero-crossing point localization method is proposed to deal with the zero-crossing point deviation caused by attenuation DC component and waveform distortion. Simulation results show that the proposed algorithm has high accuracy and sensitivity.
机译:当在谐振接地系统中发生高阻抗接地故障(HIGF)时,故障电流很弱,传统的继电保护装置无法可靠地识别和消除故障。提出了一种基于零序电流非线性畸变特性的HIGF检测方法。当发生HIGF时,零序电流波形在零交叉点附近失真;反之,则为零。因此,零序电流与时间之间的线性相关系数较小,而失真度较大。由于其他原因引起的零序电流,其波形接近过零点附近的直线,线性相关系数大,失真度小。基于此特征,给出了HIGF的鉴定标准。此外,提出了一种过零点定位方法,以处理由于衰减直流分量和波形失真引起的过零点偏差。仿真结果表明,该算法具有较高的准确性和灵敏度。

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