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首页> 外文期刊>Power Delivery, IEEE Transactions on >Mitigation of Inrush Currents in Network Transformers by Reducing the Residual Flux With an Ultra-Low-Frequency Power Source
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Mitigation of Inrush Currents in Network Transformers by Reducing the Residual Flux With an Ultra-Low-Frequency Power Source

机译:通过使用超低频电源降低残留磁通来减轻网络变压器的浪涌电流

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摘要

A methodology for the reduction of the residual flux in network transformers is proposed in this paper. The purpose is the mitigation of large inrush currents taken by numerous transformers when a long feeder is energized. Time-domain simulations are used to prove that a small-power device can substantially reduce the residual flux of all transformers simultaneously. The device consists of a low-voltage dc source, a suitable power-electronic switching unit, and a simple controller. Before a feeder is re-energized, the residual flux is reduced to a minimum and, as a consequence, the large inrush currents are reduced to an acceptable level. This greatly enhances the probability for the feeder to be successfully energized when otherwise a false trip would have occurred. Inrush current reductions of more than 60% are obtained at the head of the feeder.
机译:提出了一种减少网络变压器剩余磁通的方法。目的是减轻长馈线通电时众多变压器所吸收的大浪涌电流。时域仿真用于证明小功率设备可以同时大幅降低所有变压器的剩余磁通。该设备由低压直流电源,合适的功率电子开关单元和简单的控制器组成。在给料机重新通电之前,剩余磁通量被减小到最小,因此,大的涌入电流被减小到可接受的水平。当错误的跳闸会发生时,这会大大提高给料机成功通电的可能性。馈线前端的浪涌电流降低超过60%。

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