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Transformer Differential Protection by Online Core Modeling and Orthogonal Polynomials

机译:在线铁心建模和正交多项式的变压器差动保护

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摘要

By expressing the newly defined “magnetic pseudo-characteristic” in terms of orthogonal polynomials, a new method is proposed to discriminate between inrush and fault currents. In this method, the operating segment of the magnetic pseudocharacteristic is extracted over a half-cycle data window of differential current, and is then evaluated by some criteria to detect fault/inrush currents. Independence from transformer models and high accuracy are some merits of this method. The method is tested on the simulated data of wye–delta and wye–wye-connected transformers (three limb) and the results show the average fault detection delay of 16 ms (in 50-Hz base) with an accuracy above 97%. Also, for a more practical assessment, the results are compared with those of the well-known second harmonic restraint method, and this verifies greater accuracy of the proposed method. Moreover, performance of the method in noisy environments is studied. Details about efficient implementation by using fast Fourier transform algorithms are also included.
机译:通过用正交多项式表达新定义的“磁伪特性”,提出了一种区分浪涌电流和故障电流的新方法。在这种方法中,在一个差动电流的半周期数据窗口中提取了磁假特征的工作段,然后通过某些标准对其进行了评估,以检测故障/浪涌电流。这种方法具有不受变压器模型影响和准确性高的优点。该方法在星形-三角形和星形-星形连接的变压器(三肢)的模拟数据上进行了测试,结果表明平均故障检测延迟为16 ms(以50 Hz为基准),准确度高于97%。另外,为了进行更实际的评估,将结果与众所周知的二次谐波抑制方法的结果进行了比较,从而验证了所提出方法的更高准确性。此外,研究了该方法在嘈杂环境中的性能。还包括有关使用快速傅里叶变换算法进行有效实现的详细信息。

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