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Second-order sliding mode based sensor fault-tolerant control of induction motor drives

机译:基于二阶滑模的感应电动机驱动器传感器容错控制

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This paper presents a fault-tolerant control method for induction motor (IM) based on higher order sliding mode (HOSM) observer. Traditional current control involves the regulation of the d-q synchronous reference frame currents with or without a decoupling compensator. The compensation voltages, which require speed and motor parameters cancel the coupling terms. When the speed is not available, this approach leads to a degraded performance of the controller. In the proposed scheme, a HOSM observer is designed to estimate the compensation voltages, which further estimates the motor speed through algebraic calculations. The estimated speed is then employed as feedback when speed sensor is faulty. Simulations on a 1/4-hp three-phase IM highlights the performance of the proposed approach.
机译:提出了一种基于高阶滑模观测器的感应电动机的容错控制方法。传统的电流控制涉及带有或不带有去耦补偿器的d-q同步参考框架电流的调节。需要速度和电机参数的补偿电压取消了耦合项。当速度不可用时,此方法会导致控制器性能下降。在提出的方案中,设计了一个HOSM观测器来估算补偿电压,该补偿电压通过代数计算进一步估算电动机速度。然后,当速度传感器出现故障时,将估算的速度用作反馈。在1/4马力的三相IM上进行的仿真突出了所提出方法的性能。

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