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Analysis of a Sort of Unusual Mal-Operation of Transformer Differential Protection Due to Removal of External Fault

机译:消除外部故障导致的一种变压器差动保护异常动作分析

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Several cases of mal-operation of transformer differential protection with second-harmonic blocking after clearance of external fault are reported. These mal-operations all occurred at the nonrestraint region of percentage restraint plane. The previous theory cannot be utilized directly to analyze this phenomenon. Therefore, a mathematical model for analyzing the transient course of external fault inception and removal, together with the CT model involving the magnetic hysteresis effect, is proposed in this paper. It is proved that the magnetic linkage of one CT core can be pushed into the region nearby the saturation point by the high fault current with aperiodic component. As soon as the external fault is removed, the magnetic linkage formed by the primary current with low amplitude is not high enough to pull the operating point of the magnetic linkage back to the linear region. This phenomenon is named as CT local transient saturation, which results in the big measuring angle error and relative smooth waveform. In this case, the transformer differential protection using second harmonic blocking inevitably mal-operates. This point of view is verified with the simulation tests.
机译:报道了在清除外部故障后,带有二次谐波闭锁的变压器差动保护误动作的几种情况。这些误操作都发生在百分比约束平面的非约束区域。先前的理论不能直接用于分析这种现象。因此,本文提出了一种用于分析外部故障产生和消除的瞬态过程的数学模型,以及涉及磁滞效应的CT模型。事实证明,具有非周期性分量的高故障电流可以将一个CT磁芯的磁链接推入饱和点附近的区域。一旦外部故障消除,由低幅值的一次电流形成的磁连杆就不够高,不足以将磁连杆的工作点拉回到线性区域。这种现象称为CT局部瞬态饱和,会导致大的测量角度误差和相对平滑的波形。在这种情况下,使用二次谐波阻断的变压器差动保护不可避免地会发生误动作。仿真测试验证了这一观点。

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