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The Neutral Grounding Resistor Sizing Using an Analytical Method Based on Nonlinear Transformer Model for Inrush Current Mitigation

机译:使用基于非线性变压器模型的浪涌电流缓解的非线性变压器模型的中性接地电阻尺寸

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It was found that a neutral resistor together with 'simultaneous' switching didn't have any. effect on either the magnitudes or the time constant of inrush currents. The pre-insertion resistors were recommended as the most effective means of controlling inrush currents. Through simulations, it was found that the neutral resistor had little effect on reducing the inrush current peak or even the rate of decay as compared to the cases without a neutral resistor. The use of neutral impedances was concluded to be ineffective compared to the use of pre-insertion resistors. This finding was explained by the low neutral current value as compared to that of high phase currents during inrush. The inrush currents could be mitigated by using a neutral resistor when sequential switching is implemented. From the sequential energizing scheme performance, the neutral resistor size plays the significant role in the scheme effectiveness. Through simulation, it was found that a few ohms neutral grounding resistor can effectively achieve inrush currents reduction. If the neutral resistor is directly selected to minimize the peak of the actual inrush current, a much lower resistor value could be found. This paper presents an analytical method to select optimal neutral grounding resistor for mitigation of inrush current. In this method nonlinearity and core loss of the transformer has been modeled and derived analytical equations.
机译:结果发现,与“同时”切换的中性电阻器一起没有任何。在任一大小或冲击电流的时间常数的效果。预插入电阻器被推荐为控制冲击电流的最有效手段。通过计算机模拟,发现中性电阻对降低浪涌电流峰值,甚至相比,案件无中性电阻衰减的速度影响很小。使用中性阻抗的结论相比,使用预插入电阻器是无效的。这一发现已被低的中性线电流值解释为相比于浪涌期间高相电流。所述浪涌电流可以通过使用中性电阻器时顺序切换被实施来减轻。从连续供电方案的性能,中性电阻器的大小起着方案有效性的显著作用。通过仿真,发现几欧姆中性点接地电阻可以有效地实现浪涌电流减少。如果中性电阻器直接选择为最小化实际的浪涌电流的峰值,低得多的电阻器值可以被发现。本文提出一种分析方法来选择用于浪涌电流的缓解最佳中性点接地电阻。在该方法中的非线性和变压器的磁心损耗已经被模型和派生的分析方程。

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