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Detection of Bearing Faults of Induction Motor Using Park’s Vector Approach

机译:用Park矢量法检测感应电动机的轴承故障

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The reliability of an induction motor is of paramount importance in industrial, commercial, aerospace and military applications. Bearing play an important role in the reliability and performance of all motor systems. Due to close relationship between motor system development and bearing assembly performance, it is difficult to imagine the progress of modern rotating machinery without consideration of the wide application of bearing. Most faults arising in motors are often linked to bearing faults. This paper presents an experimental study to diagnose the bearing fault with help of Park's vector approach. The experiment is conducted on 0.5 hp three phase induction motor. The bearing faults are replicated in the laboratory by drilling the outer and inner race of ball bearing with help of electric discharge machining. The LabVIEW software is used in the experiment to acquire the signal. The acquired signal is analyzed with Park vector approach. The current Park's vector presentation is generated by programming in LabVIEW. The practical results show that Park's Vector approach is an effective technique to diagnose the bearing fault at early stage.
机译:感应电动机的可靠性在工业,商业,航空航天和军事应用中至关重要。轴承在所有电机系统的可靠性和性能中起着重要作用。由于电机系统的发展与轴承装配性能之间的密切关系,如果不考虑轴承的广泛应用,很难想象现代旋转机械的进步。电动机中出现的大多数故障通常与轴承故障有关。本文提出了借助Park向量法诊断轴承故障的实验研究。实验是在0.5 hp三相感应电动机上进行的。通过在电火花加工的帮助下钻出球轴承的内圈和内圈,可以在实验室中复制轴承故障。实验中使用LabVIEW软件采集信号。所获取的信号用Park矢量方法进行分析。当前Park的矢量表示是通过LabVIEW编程生成的。实际结果表明,Park的Vector方法是一种早期诊断轴承故障的有效技术。

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