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A Novel Transformer Protection Scheme Based on Equivalent Excitation Impedance Characteristics

机译:基于等效励磁阻抗特性的新型变压器保护方案

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摘要

A new power transformer protection scheme based on equivalent excitation impedance is proposed to improve the performance of transformer protection. Firstly, the equivalent excitation impedance is defined and analyzed. Analysis of characteristics of transformer equivalent excitation impedance shows that the equivalent excitation impedance fluctuates sharply in a power frequency period when inrush current occurs in transformer; when internal faults occur, the equivalent excitation impedance drops to a lower level and the fluctuation is small; when normal operation or external faults occur, the equivalent excitation impedance is large and the fluctuation is small. Therefore the transformer protection scheme is constructed using the mean square error and mean of the equivalent excitation impedance, which is calculated by the half-wave Fourier algorithm. PSCAD simulation results verify the effectiveness of the proposed scheme. Without obtaining internal parameters of the transformer, the proposed scheme can discriminate inrush current from internal faults fast and accurately.
机译:提出了一种基于等效励磁阻抗的电力变压器保护方案,以提高变压器保护的性能。首先,定义并分析了等效激励阻抗。变压器等效励磁阻抗特性分析表明,当变压器中出现涌入电流时,等效励磁阻抗在工频周期内急剧波动。当发生内部故障时,等效励磁阻抗下降到较低水平,波动很小;当正常运行或发生外部故障时,等效励磁阻抗很大,波动很小。因此,使用均方误差和等效励磁阻抗的均值构造变压器保护方案,该均方根误差和等效励磁阻抗由半波傅里叶算法计算得出。 PSCAD仿真结果验证了该方案的有效性。在不获取变压器内部参数的情况下,该方案可以快速,准确地将涌流与内部故障区分开。

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