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Minimization of torque ripple in DTC of induction motor using fuzzy mode duty cycle controller

机译:使用模糊模式占空比控制器使感应电动机DTC中的转矩脉动最小化

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Among all control methods for induction motor drives, Direct Torque Control (DTC) seems to be particularly interesting being independent of machine rotor parameters and requiring no speed or position sensors. The DTC scheme is characterized by the absence of PI regulators, coordinate transformations, current regulators and PWM signals generators. In spite of its simplicity, DTC allows a good torque control in steady state and transient operating conditions to be obtained. However, the presence of hysterics controllers for flux and torque could determine torque and current ripple and variable switching frequency operation for the voltage source inverter. This paper is aimed to analyze DTC principles, and the problems related to its implementation, especially the torque ripple and the possible improvements to reduce this torque ripple by using a proposed fuzzy based duty cycle controller. The effectiveness of the duty ratio method was verified by simulation using Matlab/Simulink software package. The results are compared with that of the traditional DTC models.
机译:在用于感应电动机驱动的所有控制方法中,直接转矩控制(DTC)似乎特别有趣,它与机器转子参数无关并且不需要速度或位置传感器。 DTC方案的特点是没有PI调节器,坐标转换,电流调节器和PWM信号发生器。尽管简单,DTC仍可在稳态和瞬态运行条件下实现良好的转矩控制。但是,磁通量和转矩的磁滞控制器的存在可能会确定电压源逆变器的转矩和电流纹波以及可变的开关频率操作。本文旨在分析DTC原理以及与DTC原理相关的问题,尤其是转矩脉动,以及使用提出的基于模糊的占空比控制器来降低转矩脉动的可能改进方法。通过使用Matlab / Simulink软件包进行仿真,验证了占空比方法的有效性。将结果与传统DTC模型的结果进行比较。

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