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Numerical Modeling, Electrical Characteristics Analysis and Experimental Validation of Severe Inter-Turn Short Circuit Fault Conditions on Stator Winding in DFIG of Wind Turbines

机译:风力涡轮机DFIG定子绕组匝间短路故障条件的数值模型,电学特性分析及实验验证

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摘要

Inter-turn short circuit fault (ITSCF) can be a great threat for the safety and effectiveness of the generator. In this paper, a simulation model with the experimental platform is established to diagnose the ITSCF in stator windings. A simulation model based on the Finite Element Method (FEM) is designed in ANSYS. Stator current is used for calculating the Root-Mean-Square (RMS) value, phase difference, symmetrical components, Park’s vector trajectory’s and Total Harmonic Distortion (THD). It was found that when ITSCF happened, three phase currents in stator is no longer symmetrical. The ratio of negative to positive sequence of current raises from 0.40 to 14.18 in simulation and 0.52 to 19.89 in the experiment from normal condition to 7 turns shorted. The same trend was seen in Park’s vector trajectory analysis where the eccentricity raises from 0.03 to 0.65 in simulation and 0.14 to 0.75 in the experiment. Phase difference of the three phases is at 120° degree deviation as the ITSCF occurs in stator winding. THD also increased with the increase in the fault level. The results show a good consistency of simulation with experimental results. It was found that the analysis performed in this research are major indications for serious fault in DFIG.
机译:转弯短路故障(ITSCF)对于发电机的安全性和有效性可能是一个很大的威胁。本文建立了一种具有实验平台的仿真模型,以诊断定子绕组中的ITSCF。基于有限元方法(FEM)的仿真模型设计在ANSYS中。定子电流用于计算根均方(RMS)值,相位差,对称分量,Park的矢量轨迹和总谐波失真(THD)。发现当ITSCF发生时,定子中的三个相电流不再对称。在实验中,从正常情况到7转向7匝,在模拟中的0.40至14.18℃下对电流的阳性序列的比例从0.40-14.18升高到7转。在公园的矢量轨迹分析中看到了相同的趋势,其中偏心率在模拟中从0.03升至0.65,实验中0.14至0.75。三相的相位差是120°程度偏差,因为ITSCF发生在定子绕组中。随着故障水平的增加,THD也增加。结果表明了实验结果的仿真一致性。结果发现,本研究中进行的分析是DFIG中严重错误的主要迹象。

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