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Mixed model-based and signal-based approach for open-switches fault diagnostic in sensorless speed vector controlled induction motor drive using sliding mode observer

机译:基于混合式和基于信号的开关故障诊断方法无传感器速度矢量控制感应电动机驱动器使用滑模观察器

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摘要

This study deals with a mixed model-based and signal-based approach for sensorless speed-controlled induction motor drive (IM) and insulated-gate bipolar transistors open-switch fault diagnosis. In comparison to the classical sensored drive systems, this structure presents particular characteristics in post-fault operation mode which can be taken into account for fault detection and identification process designing. Firstly, the fault effects analysis is achieved in the abc frame of the IM. Based on such analysis, a diagnostic algorithm, using the measured and estimated currents, is used to define the fault indices, which allow the detection of single open-switch, multiple open-switch and open-phase faults. The sensorless control algorithm used for rotor speed estimation, as well as the fault diagnostic algorithm, are all based on a first-order sliding mode observer. In addition to the simplicity and the fast fault detection, there are no-additional sensors or extra-hardware used by the proposed method. Experimental results, based on a dSPACE DS1104 controller board and a 3-kW induction machine, are shown to validate the proposed strategy.
机译:本研究涉及基于混合的模型和基于信号的无传感器速度控制感应电动机驱动(IM)和绝缘栅双极晶体管开关故障诊断。与经典敏感的驱动系统相比,该结构在故障后操作模式中提出了特定的特性,这可以考虑到故障检测和识别过程设计。首先,在IM的ABC框架中实现了故障效应分析。基于这种分析,使用测量和估计电流的诊断算法用于定义故障指标,允许检测单个开关,多开关和开放式故障。用于转子速度估计的无传感器控制算法以及故障诊断算法全部基于一阶滑动模式观察者。除了简单和快速故障检测外,还有不附加的传感器或所提出的方法使用的超硬硬件。实验结果,基于DSPACE DS1104控制器板和3千瓦感应机,显示验证所提出的策略。

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