基于环流的同步调相机不同位置定子匝间短路故障诊断
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TM342

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国家自然科学基金资助项目(52177042)


Fault diagnosis of stator inter-turn short-circuit of different positions in synchronous condenser based on stator circulating currents
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    摘要:

    同步调相机作为特高压直流输电系统中提供无功补偿和电压支撑的重要设备,其运行安全性与可靠性对直流输电工程意义重大。针对轻微定子匝间短路难以诊断以及故障槽难以定位的问题,文中提出一种基于定子支路环流的故障诊断方法。首先,从定子支路单个线圈磁动势出发,分析定子匝间短路故障位置对电枢磁动势以及定子支路环流的影响。其次,搭建同步调相机定子匝间短路的场-路耦合模型,对不同位置下定子匝间短路的故障特征进行仿真。最后,总结不同匝间短路故障位置下定子支路环流的变化规律。仿真和实验结果表明,在同步调相机发生相同匝数的定子匝间短路时,短路位置越靠近支路绕组轴线位置,定子支路环流幅值越大;短路位置越远离绕组轴线位置,定子支路环流幅值越小。

    Abstract:

    Synchronous condenser is an important equipment to provide reactive power compensation and voltage support in the ultra-high voltage direct current (UHVDC) transmission system. The safety and reliability of its operation are of great significance to UHVDC projects. A fault diagnosis method based on stator branch circulating current to address the challenges of diagnosing minor stator inter-turn short-circuits (SISC) and locating fault slots is proposed in this paper. Firstly, from the perspective of a single coil in the stator branch, the influence of different positions of SISC faults on the armature magnetomotive force and stator branch circulating current is analyzed. Secondly, a field-circuit coupling model for SISC in synchronous condenser is established to simulate the fault characteristics at different positions. Finally, the variation law of the stator branch circulating current is summarized at different positions. The results of simulation and experiment show that when the number of turns of SISC stays the same, the closer the short circuit position is to the axis of the branch winding, the larger the amplitude of the stator circulating current, the further the short circuit position is from the winding axis, the smaller the amplitude of the stator branch circulating current.

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李俊卿,黄涛,韩小平,张承志,苑浩,何玉灵.基于环流的同步调相机不同位置定子匝间短路故障诊断[J].电力工程技术,2026,45(1):125-133. LI Junqing, HUANG Tao, HAN Xiaoping, ZHANG Chengzhi, YUAN Hao, HE Yuling. Fault diagnosis of stator inter-turn short-circuit of different positions in synchronous condenser based on stator circulating currents[J]. Electric Power Engineering Technology,2026,45(1):125-133.

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  • 收稿日期:2025-07-26
  • 最后修改日期:2025-09-11
  • 在线发布日期: 2026-02-02
  • 出版日期: 2026-01-28
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