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Research on the compensation mode and new principal-auxiliary arc-suppression coil in the resonant grounded system

机译:谐振接地系统的补偿方式及新型主辅消弧线圈的研究

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The selection of compensation mode and the arc-suppression coil is the main problem in the operation of resonant grounded systems. This paper proposes a new compensation mode that is a combination of presetting mode and following-setting mode, which can do great help to the self-extinction of the instantaneous grounded arcs. In this mode, the arc-suppression coil is preset to some place that is about 15% over-compensation when the system is healthy, and the arc-suppression coil is quickly following-set to the full compensation point when the single-phase-to-ground fault occurs. To demonstrate this, a new principal-auxiliary arc-suppression coil is designed. The auxiliary arc-suppression coil composes of N fine-tuning coils, switched by N thyristors. The inductance of them adopts binary-weave system, which form 2/sup N/ compensation values. The results of the 10 kV physical simulating experiments and simulation with EMTP/ATP verify the reliability and validity of this compensation mode and the new principal-auxiliary arc-suppression coil proposed in this paper.
机译:补偿模式和消弧线圈的选择是谐振接地系统运行中的主要问题。本文提出了一种新的补偿模式,该模式将预置模式和跟随设置模式相结合,可以对瞬时接地电弧的自熄起到很大的帮助作用。在此模式下,将消弧线圈预设到某个位置,该位置在系统正常运行时会出现约15%的过度补偿;当单相励磁时,消弧线圈会迅速跟随其后移至全补偿点发生接地故障。为了证明这一点,设计了一种新的主​​辅助消弧线圈。辅助消弧线圈由N个可控硅开关组成的N个微调线圈组成。它们的电感采用二进制编织系统,形成2 / sup N /补偿值。 10 kV物理仿真实验和EMTP / ATP仿真的结果验证了该补偿模式和本文提出的新型主-辅助消弧线圈的可靠性和有效性。

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