变频感应电机空载低速转子保持架故障的无创检测

T. Wolbank, P. Nussbaumer, Hao Chen, P. Macheiner
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引用次数: 14

摘要

由于控制或负载所引入的动态特性会影响故障指示信号的使用,目前逆变式异步电机的转子保持架故障检测仍然具有挑战性。此外,通常只有当机器运行在特定负载水平以上以产生显著的转子电流大小时,才有可能进行检测。提出了一种零负荷和静止状态下转子棒体缺陷检测的新方法。该方法仅使用现代工业逆变器中已有的标准电流传感器,因此是非侵入性的。因此,它非常适合作为驱动器的启动测试。利用逆变器的开关施加暂态电压脉冲序列,测量产生的电流斜率,得到一种新的故障指示器。因此,可以清楚地识别故障引起的机器暂态电抗的不对称性。由于保持架的存在,暂态磁链无法穿透转子,但故障连杆局部影响了之字形磁链,导致磁链发生了显著变化。实测结果表明了该方法的适用性和灵敏度
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Non-invasive detection of rotor cage faults in inverter fed induction machines at no load and low speed
Rotor cage fault detection in inverter fed induction machines is still challenging nowadays as dynamics introduced by the control or the load influence the fault indicator signals usually applied. In addition, the detection is usually only possible when the machine is operated above a specific load level to generate a significant rotor current magnitude. This paper proposes a new method to detect rotor bar defects at zero load and around standstill. The method only uses the standard current sensors already available in modern industrial inverters and is thus non-invasive. It is thus well suited as start-up test for drives. By applying a transient voltage pulse sequence using the switching of the inverter and measuring the resulting current slope a new fault indicator is obtained. As a result, it is possible to clearly identify the fault-induced asymmetry in the machine transient reactances. Though the transient flux linkage cannot penetrate the rotor because of the cage, the faulty bar locally influences the zigzag flux leading to a significant change. Measurement results show the applicability and sensitivity of the proposed method
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