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The Research of Traction Inverter Fault Diagnosis Based on the Analysis of Motor Vibration Signals

机译:基于电机振动信号分析的牵引逆变器故障诊断研究

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The main circuit simulation model of three-level traction inverter based on SVPWM strategy is established. Taking the power switch elements as the object, the structural fault modes of the inverter are simulated, and the analysis results show that the inverter faults have a great influence on the harmonic content of the output current of the AC side, the content 5, 7, 11 and 13 octave of the fundamental frequency of current increases greatly. After the current harmonic inputting the traction motor, 5, 7 octave and 11, 13 octave harmonics are converted into 6 octave and 12 octave ripple torque acting on the motor respectively, making the motor output vibration contain 6P(1 - s) and 12P(1 - s) current harmonic frequency, which is determined by the logarithm of the magnetic pole P and slip rate s. The vibration signals on the actual operation of the high-speed EMU traction motor were analyzed, and the results show that in the normal mode of inverter, the motor vibration contains current harmonic frequency not obviously, while in the fault mode, it is obviously. It is verified that the main influence of inverter fault on traction motor vibration is current harmonic frequency, therefore, the traction inverter can be fault diagnosed by monitoring and analyzing the motor vibration signal.
机译:建立了基于SVPWM策略的三级牵引变频器的主电路仿真模型。将电源开关元件作为对象,模拟逆变器的结构故障模式,分析结果表明,逆变器故障对交流侧的输出电流的谐波含量有很大影响,内容5,7电流的基本频率的11和13倍频度大大增加。在电流谐波进入牵引电动机,5,7倍仪和11,13倍率谐波后,分别转换为6个八度音程和12个倍频程纹波转矩,分别在电动机上作用,使电动机输出振动包含6P(1 - S)和12P( 1 - S)电流谐波频率,由磁极P和滑动速率S的对数决定。分析了高速EMU牵引电动机实际操作的振动信号,结果表明,在正常的逆变器模式下,电机振动包含电流谐波频率,而在故障模式下,显然是显而易见的。验证了逆变器故障对牵引电动机振动的主要影响是电流谐波频率,因此,牵引逆变器可以通过监测和分析电动机振动信号来诊断。

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