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Studies on the Stator Single-Phase-to-Ground Fault Protection for a High-Voltage Cable-Wound Generator

机译:高压线绕发电机定子单相接地故障保护的研究

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A new criterion to detect the stator single-phase-to-ground fault for Powerformer is proposed in this paper, which is based on the direction of leakage currents, magnitude of leakage currents, and fault point energy dissipation. New fault characteristics of Powerformer are analyzed and a novel criterion is put forward. The proposed approach detects the ground fault by analyzing the direction, magnitude, and energy of leakage current, which is the difference of zero-sequence current fault component between the neutral and the terminal of Powerformer. The fundamental component and the third-harmonic component of leakage current are combined to realize 100% coverage of fault detection for the stator windings of Powerformer. Simulation results have shown that, under different fault conditions, the new scheme can distinguish internal faults from external faults reliably, and can detect in which machine a stator single-phase-to-ground fault is occurring even if the fault resistance is at 5?kΩ.
机译:根据泄漏电流的方向,泄漏电流的大小以及故障点的能量耗散,提出了一种新的Powerformer定子单相接地故障检测准则。分析了Powerformer的新故障特征,并提出了新的判据。该方法通过分析漏电流的方向,大小和能量来检测接地故障,漏电流是中性点与Powerformer端子之间的零序电流故障分量之差。泄漏电流的基本成分和三次谐波成分相结合,以实现Powerformer定子绕组故障检测的100%覆盖。仿真结果表明,在不同故障条件下,新方案都能可靠地区分内部故障和外部故障,即使故障电阻为5Ω,也能检测出哪台电机发生定子单相接地故障。 kΩ。

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