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Using Clarke Vector Approach for Stator Current and Voltage Analysis on Induction Motors with Broken Rotor Bars

机译:基于Clarke矢量法的转子断条感应电动机定子电流和电压分析。

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Condition monitoring and diagnostic of induction motors has become an important issue for companies and industries whose production depends on the reliability of electrical drives. As the number of induction motors is growing in time, so is the importance of their diagnostics. The majority of all stator and rotor faults are caused by a combination of various stresses, which can be thermal, electromagnetic, residual, dynamic, mechanical or environmental [1]. Broken rotor bars of squirrel-cage induction motors can be classified as one of the most common faults along with bearing faults and gearbox failures. Broken rotors bars can lead to vibration problems, but more likely, in severe cases, the bar pounds out of the slot and makes contact with the stator core or winding [1]. If not detected and treated in time, fault such as cracking or broken rotor bars will propagate until the whole rotor cage is destroyed. During the last years many papers have been written about condition monitoring of induction machines. However, even though thermal and vibration monitoring have been utilized for decades, most of the recent research has been directed toward electrical monitoring of the motor with the emphasis on inspecting the stator current [2]. It has been suggested that stator current monitoring can provide the same indications as vibration based monitoring, but it can be done without requiring access to the motor. This is a very important benefit of such diagnostic approach, as the motors that are diagnosed will not suffer any changes in their working cycle and all the processes can be continued completely undisturbed. As stator current pattern is highly dependent from the supply quality and load conditions of the motor, authors of this paper have tried to find solutions for improving the diagnostic possibilities of induction motors using simple mathematic methods such as Clarke vector approach. To lessen the impact of the factors mentioned before, implication of Clarke vector approach on stator voltage is proposed. Using voltage as an indicator for detection of broken rotor bars can have its own advantages which are described latter in this paper.
机译:对于异步电动机的状态监视和诊断,对于其生产取决于电气驱动器可靠性的公司和行业来说,已经成为一个重要的问题。随着感应电动机数量的不断增加,其诊断的重要性也在不断提高。所有定子和转子故障中的大多数都是由各种应力共同引起的,这些应力可能是热应力,电磁应力,残余应力,动态应力,机械应力或环境应力[1]。鼠笼式感应电动机的转子条损坏,连同轴承故障和变速箱故障,可被视为最常见的故障之一。损坏的转子棒会导致振动问题,但是在严重的情况下,棒可能会从槽中掉出来并与定子铁芯或绕组接触[1]。如果不及时检测和处理,故障会蔓延,例如裂纹或转子条断裂,直至整个转子笼被破坏。在过去的几年中,已经写了许多关于感应电机状态监测的论文。然而,尽管热和振动监测已经使用了数十年,但最近的大多数研究还是针对电机的电气监测,重点是检查定子电流[2]。已经提出,定子电流监控可以提供与基于振动的监控相同的指示,但是可以在不接触电动机的情况下完成。这是这种诊断方法的一个非常重要的好处,因为被诊断的电动机在工作周期中不会受到任何改变,并且所有过程都可以完全不受干扰地继续进行。由于定子电流模式高度依赖于电动机的供电质量和负载条件,因此本文的作者试图使用诸如Clarke矢量法之类的简单数学方法找到改善感应电动机诊断可能性的解决方案。为了减轻上述因素的影响,提出了克拉克矢量方法对定子电压的影响。使用电压作为检测转子条损坏的指示器可以具有其自身的优点,本文稍后将对此进行介绍。

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