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Analysis of Torque and Flux Ripple Factor for DTC and SVM - DTC of Induction Motor Drive

机译:DTC和SVM-感应电动机驱动器DTC的转矩和磁通波动因子分析。

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Recently induction motor control techniques have gained their importance in many industrial applications. To obtain fast dynamic torque & flux response Direct Torque Control (DTC) of Induction Motor is implemented using steady state & transient input conditions in MATLAB/Simulink. In order to control both torque and stator flux directly, they need to be predicted to limit them within hysteresis band closed to desired values. This can be realized by selecting suitable sector in space vector modulation. It can perceive that the torque is dependent on the stator flux, rotor flux and the angle between their vectors. In this paper, we have simulated and analysed torque and flux ripple factor for different conditions.
机译:最近,感应电动机控制技术已在许多工业应用中变得越来越重要。为了获得快速的动态转矩和磁通响应,在MATLAB / Simulink中使用稳态和瞬态输入条件来实现感应电动机的直接转矩控制(DTC)。为了直接控制转矩和定子磁通,需要预测它们以将它们限制在接近所需值的磁滞带内。这可以通过在空间矢量调制中选择合适的扇区来实现。可以看出,转矩取决于定子磁通量,转子磁通量及其向量之间的角度。在本文中,我们模拟并分析了不同条件下的转矩和磁通波动系数。

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