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Stator Interturn Fault Detection of Synchronous Machines Using Field Current and Rotor Search-Coil Voltage Signature Analysis

机译:基于励磁电流和转子搜索线圈电压签名分析的同步电机定子匝间故障检测

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摘要

Our recent observations suggested that harmonics in the field current are very promising to detect stator interturn faults in synchronous machines. So far, an increase in some of the even harmonics in the field current has been reported to detect such faults. However, no explanation has been provided for the cause of these harmonics. Moreover, the even harmonics can significantly increase with supply unbalance as well as time harmonics, which can lead to a serious confusion. Hence, in this study, an in-depth investigation was conducted to determine the origin of various harmonic components in the field current and their feasibility to detect stator faults. It was found that, owing to structural asymmetries of the field winding, some of these components clearly increased with stator interturn fault. The findings are helpful to detect faults involving few turns without ambiguity, in spite of the presence of supply unbalance and time harmonics. Both simulation and experimental results are presented in this paper. The diagnosis results have also been verified using a rotor-mounted search coil, which can also be used to detect even a one-turn stator fault very effectively.
机译:我们最近的观察结果表明,励磁电流中的谐波非常有希望用于检测同步电机中的定子匝间故障。迄今为止,据报道,励磁电流中某些偶次谐波的增加可检测出此类故障。但是,没有提供这些谐波的原因的解释。此外,偶数谐波会随着电源不平衡以及时间谐波而显着增加,这可能导致严重的混乱。因此,在这项研究中,进行了深入的调查,以确定励磁电流中各种谐波分量的起源以及检测定子故障的可行性。已经发现,由于励磁绕组的结构不对称性,其中的某些分量会随着定子匝间故障而明显增加。尽管存在电源不平衡和时间谐波,但这些发现有助于检测几乎没有歧义的几匝故障。本文同时给出了仿真和实验结果。诊断结果也已通过安装在转子上的搜索线圈进行了验证,该搜索线圈也可以非常有效地检测出一匝定子故障。

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