Delayed Closing Suppression Strategy of the Transformer Inrush Current Based on the Offset Principle Between Remanence and Magnetic Bias

Lei Pan, Tiejun Ma, Tianwen Zheng, Zhen Xu, Shanghui Wang
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Abstract

Traditional inrush current suppression strategy delayed closing strategy, due to the measurement error of remanence will cause the problem of poor suppression effect. Therefore, this paper proposes a delayed closing strategy that does not require the measurement of remanence and is based on the offset principle between remanence and magnetic bias. Firstly, this paper analyzed the transient processes in the transformer core after the breaker has been closed. And studied the offset principle between remanence and magnetic bias. Secondly, the limitation of the traditional delayed closing strategy is analyzed. A delayed closing inrush current suppression strategy based on the offset principle between remanence and magnetic bias is proposed, and its closing steps are studied. Finally, taking the auxiliary transformer of a nuclear power plant as the prototype, a simulation platform is constructed to simulate, and the delayed closing inrush current suppression strategy based on the offset principle between remanence and magnetic bias is simulated and analyzed. The results show that, under ideal conditions, the proposed delayed closing strategy based on the offset principle between remanence and magnetic bias, the inrush current suppression effect reaches 85% and above, almost completely suppressing the excitation inrush current.
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基于剩磁偏置原理的变压器涌流延时合闸抑制策略
传统的涌流抑制策略延时合闸策略,由于剩余量的测量误差会造成抑制效果差的问题。因此,本文提出了一种不需要测量剩磁的延时合闸策略,该策略基于剩磁与偏磁之间的偏移原理。本文首先分析了断路器合闸后变压器铁心内的暂态过程。并研究了剩余物与偏磁之间的偏移原理。其次,分析了传统延迟关闭策略的局限性。提出了一种基于剩磁与偏磁相抵消原理的延时合闸涌流抑制策略,并对其合闸步骤进行了研究。最后,以某核电站辅助变压器为原型,搭建仿真平台进行仿真,对基于剩磁与偏磁抵消原理的延时合闸涌流抑制策略进行仿真分析。结果表明,在理想条件下,所提出的基于剩磁与偏磁抵消原理的延时合闸策略,对励磁涌流的抑制效果达到85%以上,几乎完全抑制了励磁涌流。
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