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Current Sensor Fault-Tolerant Control for Direct Torque Control of Induction Motor Drive Using Flux-Linkage Observer

机译:磁链观测器用于感应电动机驱动的直接转矩控制的电流传感器容错控制

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摘要

This paper proposes a novel fault-tolerant control (FTC) scheme for direct torque control of induction motor (IM) drives against the line current sensor failures. Three major steps involved in the proposed FTC scheme are the detection of sensor fault, isolation of the same, and finally, the reconfiguration by proper estimation. Third-difference operator employed in the motor line current is found suitable for the detection of the sensor fault, while flux-linkage observer-based current estimation scheme performs the task of estimation of line current post the occurrence of the fault. Furthermore, a decision-making logic circuitry isolates the faulty signal and simultaneously selects the appropriate estimated current signal to make the drive fault-tolerant. The proposed current sensor FTC scheme is simple and unique in nature. Moreover, it can be universally applied with any speed control schemes involving IM drive. The proposed scheme is simulated and extensively tested in MATLAB/Simulink. The obtained simulation results are also verified using a dSPACE-1104-based IM drive laboratory prototype to show the effectiveness of the scheme.
机译:本文提出了一种新颖的容错控制(FTC)方案,用于感应电动机(IM)驱动器的直接转矩控制,以防止线路电流传感器发生故障。提议的FTC方案涉及的三个主要步骤是检测传感器故障,对其进行隔离,最后是通过适当的估计进行重新配置。发现在电动机线路电流中采用的三阶差分算子适用于传感器故障的检测,而基于磁链的基于观测器的电流估算方案则在故障发生后执行估算线路电流的任务。此外,决策逻辑电路隔离故障信号,并同时选择适当的估计电流信号以使驱动器具有容错能力。所提出的电流传感器FTC方案本质上是简单而独特的。此外,它可以普遍应用于涉及IM驱动的任何速度控制方案。所提出的方案在MATLAB / Simulink中进行了仿真和广泛测试。还使用基于dSPACE-1104的IM驱动器实验室原型验证了获得的仿真结果,以证明该方案的有效性。

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