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Intelligent flux predictive control through online stator inter-turn fault detection for fault-tolerant control of induction motor

机译:在线定子匝间故障检测的智能磁通预测控制,用于感应电动机的容错控制

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Inter-turn insulation failure in induction motor results in complete or developing winding short circuit. Stator winding fault leads to an unbalance in the three phases of the motor leading to a faulty induction motor with increased time and space harmonics of flux. This can lead to uneven distribution of air gap flux and increase in torque ripple. The condition is worsened due to an unbalance in the voltage supply depreciating the optimal performance of the drive-based It is of primary importance that the aforementioned discrepancies are taken care of while modelling a more fault tolerant motor drive system with faster processing and lower response time. This paper proposes a novel control technique to reduce the unbalance in the motor due to stator fault by taking into account the air-gap flux developed in the motor and harmonics generated. An improved swarm optimization algorithm has been used in order to efficiently predict the flux reference for the stator-flux controlled motor drive. The proposed detection scheme has been implemented on an aluminum-rotor induction motor with incipient stator inter-fault with the help of online monitoring of unhealthy conditions and using it as a feedback for the drive system, thereby a robust online detection of fault and a stable fault control system.
机译:感应电动机的匝间绝缘故障会导致绕组短路或完全短路。定子绕组故障会导致电动机三相不平衡,从而导致感应电动机出现故障,从而导致磁通量的时间和空间谐波增加。这会导致气隙通量的不均匀分布并增加转矩脉动。由于电源的不平衡导致驱动器的最佳性能下降,因此情况变得更糟。最重要的是,在建模具有更快处理速度和较低响应时间的容错能力更高的电动机驱动器系统时,应注意上述差异。 。本文提出了一种新颖的控制技术,通过考虑电动机中产生的气隙磁通和产生的谐波来减少由于定子故障而引起的电动机不平衡。为了有效地预测定子磁通量控制的电动机驱动器的磁通量参考值,已使用了改进的群体优化算法。所提出的检测方案已在具有早期定子故障的铝转子感应电动机上实施,借助于在线监测不健康状况并将其用作驱动系统的反馈,从而实现了可靠的在线故障检测和稳定的检测。故障控制系统。

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