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首页> 外文期刊>IEEE Transactions on Industry Applications >Effects of Load Magnitude on Diagnosing Broken Bar Faults in Induction Motors Using the Pendulous Oscillation of the Rotor Magnetic Field Orientation
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Effects of Load Magnitude on Diagnosing Broken Bar Faults in Induction Motors Using the Pendulous Oscillation of the Rotor Magnetic Field Orientation

机译:负载幅度对转子磁场定向摆幅振荡在感应电动机断条故障诊断中的作用

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摘要

The effects of load level on the ability to diagnose broken bar faults in squirrel-cage induction motors are studied in this paper. The pendulous oscillation of the rotor magnetic field orientation is implemented as a fault signature for rotor fault diagnostic purposes at steady-state operations. Moreover, the effects of load level on the low-side band component of the stator current spectrum, and associated diagnostic difficulties in this approach particularly in the presence of motor operation from pulsewidth-modulation drives, are reported as well. These investigations were performed through testing 2-hp and 5-hp induction motors over a wide range of load levels and control drives. Thje results of these tests and investigations demonstrate the efficacy of the pendulous oscillation signature as a diagnostic means that can be used for a wide range of motor operating conditions.
机译:研究了负载水平对鼠笼式感应电动机断条故障诊断能力的影响。转子磁场方向的摆式振荡被实现为故障标志,用于在稳态操作中进行转子故障诊断。此外,还报道了负载水平对定子电流谱的低边带分量的影响,以及这种方法中的相关诊断困难,特别是在存在来自脉宽调制驱动器的电动机操作的情况下。这些研究是通过在各种负载水平和控制驱动器上测试2 hp和5 hp感应电动机进行的。这些测试和研究的结果证明了摆动振荡信号作为一种诊断手段的有效性,该诊断手段可用于各种电动机工作条件。

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