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Electromagnetic Analysis and Electrical Signature-Based Detection of Rotor Inter-Turn Faults in Salient-Pole Synchronous Machine

机译:凸极同步电机转子间匝间故障的电磁分析和基于电签名的检测

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In this paper, rotor inter-turn faults in salient-pole synchronous machines are investigated using finite-element analysis. The machine under study is a 22 MVA eight-pole hydropower generator with fractional-slot windings. Simulated faulty cases include 1, 2, 5, 10, and 20 short-circuited turns (out of 58 turns) in one rotor pole. In the electromagnetic analysis, the effect of faults on airgap flux density and radial forces is studied. Furthermore, this paper investigates online detection of inter-turn faults using spectral analysis of stator voltage or current is studied. The amplitude of fault-related harmonics is investigated at various fault severities, as well as at no-load and full-load operations. This paper also discusses the effects of damper bars, an influence of parallel circuits in the stator windings, and influence of the pole pair number. In addition, a comparison between fault-related harmonics in the case of dynamic eccentricity and rotor inter-turn faults is presented.
机译:本文利用有限元分析方法研究了凸极同步电机转子间故障。被研究的机器是一台22 MVA八极水力发电机,带有分数槽绕组。模拟的故障情况包括在一个转子极中发生1、2、5、10和20短路匝数(共58匝)。在电磁分析中,研究了断层对气隙通量密度和径向力的影响。此外,本文研究了使用定子电压或电流的频谱分析对匝间故障进行在线检测的方法。在各种故障严重程度以及空载和满载运行情况下,研究与故障相关的谐波的幅度。本文还讨论了阻尼条的影响,定子绕组中并联电路的影响以及极对数的影响。另外,提出了在动态偏心情况下与故障有关的谐波与转子匝间故障之间的比较。

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