A sequential phase energization technique for transformer inrush current reduction part 1: simulation and experimental results
Yu Cui, S.G. Abdulsalam, S.-D. Chen, Wilsun Xu
Abstract
Yu Cui, S.G. Abdulsalam, S.-D. Chen, Wilsun Xu
Abstract
Summary form only given. This paper presents a new, simple and low cost method to reduce inrush currents caused by transformer energization. The method uses a grounding resistor connected at a transformer neutral point. By energizing each phase of the transformer in sequence, the neutral resistor behaves as a series-inserted resistor and thereby significantly reduces the energization inrush currents. The proposed method has been tested by computer simulation and laboratory experiments. Both results show that the method has a performance similar to that of the resistor pre-insertion scheme. The proposed method is much less expensive, however, since there is only one resistor involved and the resistor carries only a small neutral current in steady-state.
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Summary form only given. This paper presents a new, simple and low cost method to reduce inrush currents caused by transformer energization. The method uses a grounding resistor connected at a transformer neutral point. By energizing each phase of the transformer in sequence, the neutral resistor behaves as a series-inserted resistor and thereby significantly reduces the energization inrush currents. The proposed method has been tested by computer simulation and laboratory experiments. Both results show that the method has a performance similar to that of the resistor pre-insertion scheme. The proposed method is much less expensive, however, since there is only one resistor involved and the resistor carries only a small neutral current in steady-state.
Key concepts: Inrush current, Resistor, Transformer, Electrical engineering, Ground, Voltage, Delta-wye transformer, Control theory (sociology)