Sensorless Flux Observer-Based Fault Detection of Induction Machines

J. M. Masala, K. Busawon, M. Jovanović, R. Binns
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Abstract

In this paper, we introduce a strategy for the design of a sensorless flux observer-based fault detection system for use with induction motors. To synthesise the flux observer for this machine, we use a third order model for induction machines expressed in term of complex differential equations. Since the equation of the rotor speed of the induction motor is complicated to analyse, we replace it by its behavioural model for the design of the flux observer. Moreover, we use the synthesised observer in order to investigate the effects of two common types of faults (i.e. voltage sag and the stator inter-turn short-circuit) that can occur in these machines. The validity of the proposed methodology is assessed via simulation results using a model of the induction motor.
基于无传感器磁链观测器的感应电机故障检测
本文介绍了一种基于磁链观测器的无传感器异步电动机故障检测系统的设计策略。为了综合该电机的磁链观测器,我们采用了用复微分方程表示的感应电机三阶模型。由于异步电动机的转子转速方程分析比较复杂,我们用它的行为模型代替它来设计磁链观测器。此外,我们使用综合观测器来研究这些机器中可能发生的两种常见故障类型(即电压骤降和定子匝间短路)的影响。通过使用感应电机模型的仿真结果评估了所提出方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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