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A robust diagnosis method for speed sensor fault based on stator currents in the RFOC induction motor drive

机译:基于RFOC感应电动机驱动器的定子电流的速度传感器故障的鲁棒诊断方法

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A valid diagnosis method for the speed sensor failure (SSF) is an essential requirement to ensure the reliability of Fault-Tolerant Control (FTC) models in induction motor drive (IMD) systems. Most recent researches have focused on directly comparing the measured and estimated rotor speed signal to detect the speed sensor fault. However, using that such estimated value in both the fault diagnosis and the controller reconfiguration phases leads to the insufficient performance of FTC modes. In this paper, a novel diagnosis-technique based on the stator current model combined with a confusion prevention condition is proposed to detect the failure states of the speed sensor in the IMD systems. It helps the FTC mode to separate between the diagnosis and reconfiguration phases against a speed sensor fault. This proposed SSF diagnosis method can also effectively apply for IMs’ applications at the low-speed range where the speed sensor signal often suffers from noise. MATLAB/Simulink software has been used to implement the simulations in various speed ranges. The achieved results have demonstrated the capability and effectiveness of the proposed SSF method against speed sensor faults.
机译:速度传感器故障(SSF)的有效诊断方法是确保感应电机驱动器(IMD)系统中容错控制(FTC)模型的可靠性的必要要求。最近的研究已经集中在直接比较测量和估计的转子速度信号以检测速度传感器故障。然而,使用故障诊断和控制器重配置阶段的这种估计值导致FTC模式的性能不足。本文提出了一种基于定子电流模型的新型诊断技术与混淆预防条件相结合,以检测IMD系统中速度传感器的故障状态。它有助于FTC模式将诊断和重新配置相对于速度传感器故障分开。这提出的SSF诊断方法也可以在低速范围内有效地应用IMS的应用,其中速度传感器信号经常遭受噪声。 MATLAB / SIMULINK软件已用于在各种速度范围内实现模拟。所达到的结果已经证明了所提出的SSF方法对速度传感器故障的能力和有效性。

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