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A fuzzy learning-Sliding mode controller for direct field-oriented induction machines

机译:直接磁场定向感应电机的模糊学习-滑模控制器

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This paper presents a direct field-oriented induction motor drive system with two distinct features: a sliding mode voltage mode flux observer (SMVMFO) and a fuzzy model reference learning controller (FMRLC). The speed of the induction motor is regulated using an FMRLC, which does not require rigorous tuning of the controller's parameters. The rotor flux estimation for the direct field orientation (DFO) is realized by a newly proposed SMVMFO, which is insensitive to the stator resistance variation. The complete drive system is shown to have very good speed tracking performance, accurate flux estimation and field orientation, and high robustness to stator resistance variation, which has been a long-standing problem in the area of motor drives. Extensive simulations are presented for performance evaluation and validation of the proposed control scheme.
机译:本文提出了一种具有两个明显特征的直接磁场定向感应电动机驱动系统:滑模电压模式磁通观测器(SMVMFO)和模糊模型参考学习控制器(FMRLC)。感应电动机的速度通过FMRLC调节,不需要严格调节控制器的参数。直接磁场定向(DFO)的转子磁通估计是通过新提出的SMVMFO实现的,该模型对定子电阻变化不敏感。完整的驱动系统显示出非常好的速度跟踪性能,准确的磁通估计和磁场方向以及对定子电阻变化的高鲁棒性,这在电机驱动领域一直是一个长期存在的问题。提出了广泛的仿真,用于性能评估和所提出的控制方案的验证。

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