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Analysis of stator winding parallel-connected branches circulating current and its application in generator fault diagnosis

机译:定子绕组并联支路环流分析及其在发电机故障诊断中的应用

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Through calculating the generator parameters of air-gap magnetomotive force, magnetic permeability, magnetic flux density, stator winding parallel-connected branches electromotive force distribution, the characteristics of the stator winding parallel-connected branches circulating current are analyzed. The results discover that the second harmonics circulating current will increase when the rotor winding inter-turn short circuit fault occurs, and the fundamental circulating current will increase when the stator winding inter-turn short circuit fault or the air-gap eccentricity fault occurs, neither being strongly affected by the imbalance fault Considering the differences of the circulating current characteristics caused by different generator faults, a method of generator fault diagnosis, based on the stator winding parallel-connected branches circulating current characteristics, is developed. Finally, the circulating current of a type SDF-9 generator is measured in the laboratory to verify the theoretical analysis presented above.
机译:通过计算气隙磁通势,磁导率,磁通密度,定子绕组并联支路电动势分布的发电机参数,分析了定子绕组并联支路的环流特性。结果发现,当发生转子绕组匝间短路故障时,二次谐波循环电流将增加;而当发生定子绕组匝间短路故障或气隙偏心故障时,基本谐波电流将增加,而两者均没有。受不平衡故障的严重影响考虑到不同发电机故障引起的循环电流特性差异,提出了一种基于定子绕组并联支路循环电流特性的发电机故障诊断方法。最后,在实验室中对SDF-9型发生器的循环电流进行了测量,以验证上述理论分析。

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