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A New Adaptive Method to Identify TA Saturation Using Grille Fractal

机译:利用格栅分形识别TA饱和度的自适应方法

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摘要

In this paper, the different singularity characteristics of differential current of transformer differential protection under inner-zone and out-zone faults are analyzed while the current transformer is saturated. Then, using grille fractal, a new approach to prevent maloperation of transformer differential protection is proposed. Combining the proposed approach with an adaptive generalized morphological filter, the singularity characteristic of the signal can be fully reserved. Meanwhile, noises and interferences can be restrained. It is not necessary for the proposed approach to accurately determine the moment when fault occurs and differential current appears. Using relative magnitude of smooth domain of maximal value and that of minimal value and by means of setting an appropriate threshold, the inner fault of the transformer can be reliably identified and the identification is not affected by inrush current. Besides, the evolved fault can be reliably identified. Results of dynamic simulation prove that the proposed approach is effective and feasible.
机译:本文分析了当电流互感器饱和时,在内部和外部故障下变压器差动保护的差动电流的不同奇异特性。然后,利用格栅分形,提出了一种防止变压器差动保护误动的新方法。结合提出的方法和自适应广义形态滤波器,可以完全保留信号的奇异特性。同时,可以抑制噪声和干扰。对于所提出的方法,没有必要精确地确定故障发生和出现差动电流的时刻。使用最大值和最小值的平滑域的相对大小并通过设置适当的阈值,可以可靠地识别变压器的内部故障,并且该识别不受浪涌电流的影响。此外,可以可靠地识别出发生的故障。动态仿真结果表明,该方法是有效可行的。

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