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Investigation into the Physical Mechanism and Influencing Factors of Sympathetic Inrush for Transformers in Series

机译:串联变压器交感器物理机理及影响因素调查

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摘要

Sympathetic inrush is a magnetizing inrush phenomenon generated in an in-service transformer, when a nearby transformer in series or in parallel is energized. This phenomenon lasts longer than the general inrush and can cause protection maloperation. The study focuses on sympathetic inrush in series transformers. Flux linkage expressions for the series transformers are derived using the Laplace transform. The residual flux, switching angle, and system impedance factors are included in the expressions. The physical mechanism of the sympathetic inrush for series transformers is explained based on the characteristics of the flux linkages. The interaction between the saturated transformers during sympathetic inrush is also investigated. Moreover, the influence of the switching angle, residual flux, system impedance, and load on the inrush currents is analyzed and validated.
机译:交感神经中涌入是在串联或并联的附近变压器通电时在役变压器中产生的磁化浪涌现象。这种现象持续时间长于一般浪涌,并可能导致保护误操作。该研究侧重于交感神经涌入串联变压器。使用LAPLACE Transform导出串联变压器的磁通连杆表达式。剩余通量,切换角度和系统阻抗因子包括在表达中。串联变压器的交感神经浪涌的物理机制是基于磁通连杆的特征来解释的。还研究了同情侵入期间饱和变压器之间的相互作用。此外,分析并验证了切换角度,残余通量,系统阻抗和浪涌电流上的负荷的影响。

著录项

  • 作者

    Fang Peng; Houlei Gao;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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