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Automated Monitoring of Airgap Eccentricity for Inverter-Fed Induction Motors Under Standstill Conditions

机译:自动监测停滞条件下变频馈电感应电机的气隙偏心率

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There are many limitations to applying online spectrum analysis techniques for diagnosis of closed-loop inverter-fed induction motors due to variable load or frequency operation, and the masking effect of the current regulator. In this paper, a new automated approach for testing inverter-fed induction machines for airgap eccentricity is proposed. The main concept is to use the inverter to excite the machine with a pulsating field at multiple angular positions to observe the variation of equivalent impedance due to eccentricity, whenever the motor is stopped. It is shown that the increase in the value of the equivalent (leakage) inductance under standstill excitation can be used as an indicator of increasing airgap eccentricity. Standstill testing can provide reliable assessment of eccentricity that is independent of variations in operating conditions, load interferences, or motor type. An experimental study on a 7.5-hp induction motor verifies that eccentricity can be detected with high sensitivity and reliability without additional hardware.
机译:由于可变负载或频率运行以及电流调节器的掩蔽效应,应用在线频谱分析技术来诊断闭环变频器馈电感应电机存在许多局限性。本文提出了一种新的自动化方法,用于测试变频器馈电感应电机的气隙偏心率。主要概念是利用逆变器在多个角度位置用脉动场激励机器,以观察电机停止时由于偏心率引起的等效阻抗的变化。结果表明,静止激励下等效(漏感)值的增加可以作为气隙偏心率增加的指标。静止测试可以提供可靠的偏心率评估,不受运行条件、负载干扰或电机类型的变化的影响。对 7.5 马力感应电机的实验研究证实,无需额外的硬件即可以高灵敏度和可靠性检测偏心率。

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