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Sensorless stator field oriented-direct torque control with SVM for induction motor based on MRAS and fuzzy logic regulation

机译:基于MRAS和模糊逻辑的SVM无传感器定子磁场定向直接转矩控制。

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This paper deals with improvement of Direct Torque Control strategy for induction motor (IM) drive. Since the main disadvantages of the classical DTC are high torque/flux ripples and current distortion, this paper inserts the space vector modulation in order to reduce the ripples by maintaining a constant switching frequency. Besides, the fuzzy logic controllers will replace the traditional proportional-integral (PI) controllers for stator flux and torque regulation and to ensure an accurate reference tracking and a robust response against different uncertainties such as external disturbance and parameters variation. Furthermore, a stator flux based Model Reference Adaptive System (SF-MRAS) is designed as a sensorless algorithm for the estimation of rotor speed. This estimator can improve the performance of the controlled system by increasing its reliability and decreasing the cost of the speed sensor. The global control algorithm has been investigated via numerical simulation and real-time experimentation using Matlab/Simulink with dSpace 1104 signal card.
机译:本文针对感应电动机(IM)驱动的直接转矩控制策略进行了改进。由于传统DTC的主要缺点是高转矩/磁通纹波和电流失真,因此本文插入了空间矢量调制,以通过保持恒定的开关频率来减少纹波。此外,模糊逻辑控制器将取代用于定子磁通和转矩调节的传统比例积分(PI)控制器,并确保精确的参考跟踪和对不同不确定性(如外部干扰和参数变化)的鲁棒响应。此外,基于定子磁通的模型参考自适应系统(SF-MRAS)被设计为用于估算转子速度的无传感器算法。该估计器可以通过提高受控系统的可靠性并降低速度传感器的成本来提高其性能。通过数值模拟和实时实验,使用Matlab / Simulink和dSpace 1104信号卡对全局控制算法进行了研究。

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