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Experimental Evaluation of Low-Voltage Offline Testing for Induction Motor Rotor Fault Diagnostics

机译:低压离线测试用于异步电动机转子故障诊断的实验评估

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摘要

The offline single-phase rotor rotation test is frequently used in the field for assessing the integrity of the rotor cage without motor disassembly. However, the inconvenience of the large variable voltage supply requirement has triggered the advent of a portable low-voltage version of the test also known as the rotor influence check. This test has recently become common in the pulp and paper industry as it is convenient to use in an industrial environment. However, concerns on the reliability of the test have been raised due to frequent false test indications. The objective of this work is to provide an analysis and experimental evaluation of low-voltage rotor tests under controlled rotor fault conditions on 380-V and 6.6-kV motors. The results of the low-voltage test reveal that it cannot provide reliable diagnosis due to the low excitation flux level, particularly for motors with the closed rotor slot design. The single-phase rotation test and online current spectrum analysis are also performed under identical fault conditions to show that the fault conditions can be detected with standard tests.
机译:离线单相转子旋转测试在该领域中经常用于评估转子笼的完整性而无需拆卸电机。但是,大的可变电压电源需求带来的不便触发了便携式低压版本测试的出现,该测试也称为转子影响检查。由于在工业环境中使用方便,该测试最近在制浆和造纸工业中变得很普遍。然而,由于频繁的错误测试指示,已经引起了对测试可靠性的担忧。这项工作的目的是在380-V和6.6-kV电动机的受控转子故障条件下,对低压转子测试进行分析和实验评估。低压测试的结果表明,由于励磁通量水平低,因此无法提供可靠的诊断,特别是对于具有封闭转子槽设计的电机。还可以在相同的故障条件下执行单相旋转测试和在线电流谱分析,以表明可以使用标准测试来检测故障条件。

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