Research on A Transition Circuit of Vacuum On-Load Tap-Changer

Geqi Li, Ke Wang, Shuqi Zhang, F. Yang, Peng Li, Jinzhong Li, Gang Li, Xueli Liu
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Abstract

As an important component of transformers and converter transformers, vacuum on-load tap-changers directly affect the reliability of power grid operation. In order to improve the reliability of the tap-changer, it is necessary to study the transition circuit of the tap-changer and its operation method in order to improve it. This paper analyzes two kinds of transition circuits of vacuum on-load tap-changers and their operation methods, and analyzes the breaking tasks of each contact in the transition circuit. It is found that the two topologies have an imbalance in the breaking capacity of the two internal vacuum tubes. This paper proposes a type of vacuum on-load tap-changer topology, which adds a vacuum tube and a transition resistance. At the same time, an operation method is proposed, which changes the vacuum tube with heavy switching task into two vacuum tubes that operate alternately in the adjacent switching, and changes one transition resistance into two transition resistances that work alternately. It reduces the burden of a single auxiliary vacuum tube, balances the contact ablation of each vacuum tube under long-term operation, and reduces the temperature rise of the transition resistance, which improves reliability of the tap-changer.
真空有载分接开关过渡电路的研究
真空有载分接开关作为变压器和换流变压器的重要组成部分,直接影响电网运行的可靠性。为了提高分接开关的可靠性,有必要对分接开关的过渡电路及其操作方法进行研究,以改进分接开关。分析了真空有载分接开关的两种过渡电路及其操作方法,分析了过渡电路中各触点的分断任务。研究发现,两种拓扑结构在两个内部真空管的分断能力上存在不平衡。本文提出了一种真空有载分接开关拓扑结构,该拓扑结构增加了一个真空管和一个过渡电阻。同时,提出了一种操作方法,将具有繁重开关任务的真空管改为相邻开关中交替工作的两根真空管,将一个过渡电阻改为交替工作的两个过渡电阻。减轻了单个辅助真空管的负担,平衡了长期运行下各真空管的接触烧蚀,降低了过渡电阻的温升,提高了分接开关的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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