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DTC based on SVM for induction motor sensorless drive with fuzzy sliding mode speed controller

机译:DTC基于SVM用于带有模糊滑模速度控制器的感应电机无传感器驱动

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By using the direct torque control (DTC), robust response in ac drives can be produced. Ripples of currents, torque and flux are oberved in steady state. space vector modulation (SVM) applied in DTC and used for a sensorless induction motor (IM) with fuzzy sliding mode speed controller (FSMSC) is studied in this paper. This control can minimize the torque, flux, current and speed pulsations in steady state. To estimate the rotor speed and stator flux the model reference adaptive system (MRAS) is used that is designed from identified voltages and currents. The FSMSC is used to enhance the efficiency and the robustness of the presented system. The DTC transient advantage are maintained, while better quality steady-state performance is produced in sensorless implementation for a wide speed range. The drive system performances have been checked by using Matlab Simultaion, and successful results have been obtained. It is deduced that the proposed control system produces better results than the classical DTC.
机译:通过使用直接扭矩控制(DTC),可以产生AC驱动器中的鲁棒响应。电流涟漪,扭矩和磁通量处于稳态状态。本文研究了在DTC中施加的空间矢量调制(SVM)并用于无传感器感应电机(IM),采用模糊滑模速度控制器(FSMSC)。该控制可以使稳定状态下的扭矩,磁通量,电流和速度脉动最小化。为了估计转子速度和定子磁通,使用模型参考自适应系统(MRAS),其由识别的电压和电流设计。 FSMSC用于增强所呈现的系统的效率和鲁棒性。维持DTC瞬态优势,而在无传感器实现中产生更好的质量稳态性能,以实现宽速度范围。通过使用MATLAB同时检查驱动系统性能,并获得了成功的结果。推导出所提出的控制系统比经典DTC产生更好的结果。

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