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Diagnosis-oriented sequence circuit-based modeling of eccentric rotor traction induction motors accounting for cage damping and split-phase currents

机译:基于诊断的基于顺序电路的偏心转子牵引感应电动机建模,考虑了保持架阻尼和分相电流

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A 1130kW squirrel-cage induction motor used for railway traction is analyzed in this paper in case of eccentric rotor. Since the motor has parallel-connected windings, the air-gap unbalance makes rise unbalanced currents in the stator branches, and the split-phase current signature analysis can be attempted for fault detection. The split-phase currents are better analyzed when transposed in the complex domain, by using symmetrical components. Moreover, the rotor cage currents must be carefully taken in account in the model, since they develop a powerful damping effect on the signature of static eccentricity. This paper shows that the faulted machine can be represented by the superimposition of five equivalent circuits corresponding to five centered-rotor virtual machines, useful for fault-related split-phase current calculation. The mathematical modeling shown in this paper is useful to carry out a diagnostic method, as shown in a companion paper. The latter also reports confirmatory simulations of the faulted 1130kW motor, based on winding function approach.
机译:本文分析了偏心转子情况下用于铁路牵引的1130kW鼠笼式感应电动机。由于电动机具有并联的绕组,气隙不平衡会导致定子分支中的不平衡电流上升,因此可以尝试进行分相电流信号分析以进行故障检测。通过使用对称分量,当在复数域中转置时,可以更好地分析分相电流。此外,在模型中必须仔细考虑转子笼电流,因为它们会对静态偏心率产生强大的阻尼作用。本文表明,故障机器可以由与五个中心转子虚拟机相对应的五个等效电路的叠加来表示,这对于故障相关的分相电流计算很有用。如随附文件中所示,本文所示的数学建模对于执行诊断方法很有用。后者还基于绕组函数方法报告了故障的1130kW电动机的验证性仿真。

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